led_matrix.c 13 KB

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  1. /* Copyright 2017 Jason Williams
  2. * Copyright 2017 Jack Humbert
  3. * Copyright 2018 Yiancar
  4. * Copyright 2019 Clueboard
  5. *
  6. * This program is free software: you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation, either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * This program is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  18. */
  19. #include "led_matrix.h"
  20. #include "progmem.h"
  21. #include "config.h"
  22. #include "eeprom.h"
  23. #include <string.h>
  24. #include <math.h>
  25. #include "led_tables.h"
  26. #include <lib/lib8tion/lib8tion.h>
  27. led_eeconfig_t led_matrix_eeconfig;
  28. #ifndef MAX
  29. # define MAX(X, Y) ((X) > (Y) ? (X) : (Y))
  30. #endif
  31. #ifndef MIN
  32. # define MIN(a, b) ((a) < (b) ? (a) : (b))
  33. #endif
  34. #if defined(LED_DISABLE_AFTER_TIMEOUT) && !defined(LED_DISABLE_TIMEOUT)
  35. # define LED_DISABLE_TIMEOUT (LED_DISABLE_AFTER_TIMEOUT * 1200UL)
  36. #endif
  37. #ifndef LED_DISABLE_TIMEOUT
  38. # define LED_DISABLE_TIMEOUT 0
  39. #endif
  40. #ifndef LED_DISABLE_WHEN_USB_SUSPENDED
  41. # define LED_DISABLE_WHEN_USB_SUSPENDED false
  42. #endif
  43. #if !defined(LED_MATRIX_MAXIMUM_BRIGHTNESS) || LED_MATRIX_MAXIMUM_BRIGHTNESS > UINT8_MAX
  44. # undef LED_MATRIX_MAXIMUM_BRIGHTNESS
  45. # define LED_MATRIX_MAXIMUM_BRIGHTNESS UINT8_MAX
  46. #endif
  47. #if !defined(LED_MATRIX_VAL_STEP)
  48. # define LED_MATRIX_VAL_STEP 8
  49. #endif
  50. #if !defined(LED_MATRIX_SPD_STEP)
  51. # define LED_MATRIX_SPD_STEP 16
  52. #endif
  53. #if !defined(LED_MATRIX_STARTUP_MODE)
  54. # define LED_MATRIX_STARTUP_MODE LED_MATRIX_UNIFORM_BRIGHTNESS
  55. #endif
  56. #if !defined(LED_MATRIX_STARTUP_VAL)
  57. # define LED_MATRIX_STARTUP_VAL LED_MATRIX_MAXIMUM_BRIGHTNESS
  58. #endif
  59. #if !defined(LED_MATRIX_STARTUP_SPD)
  60. # define LED_MATRIX_STARTUP_SPD UINT8_MAX / 2
  61. #endif
  62. bool g_suspend_state = false;
  63. // Global tick at 20 Hz
  64. uint32_t g_tick = 0;
  65. // Ticks since this key was last hit.
  66. uint8_t g_key_hit[DRIVER_LED_TOTAL];
  67. // Ticks since any key was last hit.
  68. uint32_t g_any_key_hit = 0;
  69. void eeconfig_read_led_matrix(void) { eeprom_read_block(&led_matrix_eeconfig, EECONFIG_LED_MATRIX, sizeof(led_matrix_eeconfig)); }
  70. void eeconfig_update_led_matrix(void) { eeprom_update_block(&led_matrix_eeconfig, EECONFIG_LED_MATRIX, sizeof(led_matrix_eeconfig)); }
  71. void eeconfig_update_led_matrix_default(void) {
  72. dprintf("eeconfig_update_led_matrix_default\n");
  73. led_matrix_eeconfig.enable = 1;
  74. led_matrix_eeconfig.mode = LED_MATRIX_STARTUP_MODE;
  75. led_matrix_eeconfig.val = LED_MATRIX_STARTUP_VAL;
  76. led_matrix_eeconfig.speed = LED_MATRIX_STARTUP_SPD;
  77. eeconfig_update_led_matrix();
  78. }
  79. void eeconfig_debug_led_matrix(void) {
  80. dprintf("led_matrix_eeconfig EEPROM\n");
  81. dprintf("led_matrix_eeconfig.enable = %d\n", led_matrix_eeconfig.enable);
  82. dprintf("led_matrix_eeconfig.mode = %d\n", led_matrix_eeconfig.mode);
  83. dprintf("led_matrix_eeconfig.val = %d\n", led_matrix_eeconfig.val);
  84. dprintf("led_matrix_eeconfig.speed = %d\n", led_matrix_eeconfig.speed);
  85. }
  86. uint8_t g_last_led_hit[LED_HITS_TO_REMEMBER] = {255};
  87. uint8_t g_last_led_count = 0;
  88. __attribute__((weak)) uint8_t led_matrix_map_row_column_to_led_kb(uint8_t row, uint8_t column, uint8_t *led_i) { return 0; }
  89. uint8_t led_matrix_map_row_column_to_led(uint8_t row, uint8_t column, uint8_t *led_i) {
  90. uint8_t led_count = led_matrix_map_row_column_to_led_kb(row, column, led_i);
  91. uint8_t led_index = g_led_config.matrix_co[row][column];
  92. if (led_index != NO_LED) {
  93. led_i[led_count] = led_index;
  94. led_count++;
  95. }
  96. return led_count;
  97. }
  98. void led_matrix_update_pwm_buffers(void) { led_matrix_driver.flush(); }
  99. void led_matrix_set_value(int index, uint8_t value) {
  100. #ifdef USE_CIE1931_CURVE
  101. led_matrix_driver.set_value(index, pgm_read_byte(&CIE1931_CURVE[value]));
  102. #else
  103. led_matrix_driver.set_value(index, value);
  104. #endif
  105. }
  106. void led_matrix_set_value_all(uint8_t value) {
  107. #ifdef USE_CIE1931_CURVE
  108. led_matrix_driver.set_value_all(pgm_read_byte(&CIE1931_CURVE[value]));
  109. #else
  110. led_matrix_driver.set_value_all(value);
  111. #endif
  112. }
  113. bool process_led_matrix(uint16_t keycode, keyrecord_t *record) {
  114. if (record->event.pressed) {
  115. uint8_t led[8];
  116. uint8_t led_count = led_matrix_map_row_column_to_led(record->event.key.row, record->event.key.col, led);
  117. if (led_count > 0) {
  118. for (uint8_t i = LED_HITS_TO_REMEMBER; i > 1; i--) {
  119. g_last_led_hit[i - 1] = g_last_led_hit[i - 2];
  120. }
  121. g_last_led_hit[0] = led[0];
  122. g_last_led_count = MIN(LED_HITS_TO_REMEMBER, g_last_led_count + 1);
  123. }
  124. for (uint8_t i = 0; i < led_count; i++) g_key_hit[led[i]] = 0;
  125. g_any_key_hit = 0;
  126. } else {
  127. #ifdef LED_MATRIX_KEYRELEASES
  128. uint8_t led[8];
  129. uint8_t led_count = led_matrix_map_row_column_to_led(record->event.key.row, record->event.key.col, led);
  130. for (uint8_t i = 0; i < led_count; i++) g_key_hit[led[i]] = 255;
  131. g_any_key_hit = 255;
  132. #endif
  133. }
  134. return true;
  135. }
  136. void led_matrix_set_suspend_state(bool state) {
  137. if (LED_DISABLE_WHEN_USB_SUSPENDED && state) {
  138. led_matrix_set_value_all(0); // turn off all LEDs when suspending
  139. }
  140. g_suspend_state = state;
  141. }
  142. bool led_matrix_get_suspend_state(void) { return g_suspend_state; }
  143. // All LEDs off
  144. void led_matrix_all_off(void) { led_matrix_set_index_value_all(0); }
  145. // Uniform brightness
  146. void led_matrix_uniform_brightness(void) { led_matrix_set_index_value_all(led_matrix_eeconfig.val); }
  147. void led_matrix_custom(void) {}
  148. void led_matrix_task(void) {
  149. if (!led_matrix_eeconfig.enable) {
  150. led_matrix_all_off();
  151. led_matrix_indicators();
  152. return;
  153. }
  154. g_tick++;
  155. if (g_any_key_hit < 0xFFFFFFFF) {
  156. g_any_key_hit++;
  157. }
  158. for (int led = 0; led < DRIVER_LED_TOTAL; led++) {
  159. if (g_key_hit[led] < 255) {
  160. if (g_key_hit[led] == 254) g_last_led_count = MAX(g_last_led_count - 1, 0);
  161. g_key_hit[led]++;
  162. }
  163. }
  164. // Ideally we would also stop sending zeros to the LED driver PWM buffers
  165. // while suspended and just do a software shutdown. This is a cheap hack for now.
  166. bool suspend_backlight = ((g_suspend_state && LED_DISABLE_WHEN_USB_SUSPENDED) || (LED_DISABLE_TIMEOUT > 0 && g_any_key_hit > LED_DISABLE_TIMEOUT));
  167. uint8_t effect = suspend_backlight ? 0 : led_matrix_eeconfig.mode;
  168. // this gets ticked at 20 Hz.
  169. // each effect can opt to do calculations
  170. // and/or request PWM buffer updates.
  171. switch (effect) {
  172. case LED_MATRIX_UNIFORM_BRIGHTNESS:
  173. led_matrix_uniform_brightness();
  174. break;
  175. default:
  176. led_matrix_custom();
  177. break;
  178. }
  179. if (!suspend_backlight) {
  180. led_matrix_indicators();
  181. }
  182. // Tell the LED driver to update its state
  183. led_matrix_driver.flush();
  184. }
  185. void led_matrix_indicators(void) {
  186. led_matrix_indicators_kb();
  187. led_matrix_indicators_user();
  188. }
  189. __attribute__((weak)) void led_matrix_indicators_kb(void) {}
  190. __attribute__((weak)) void led_matrix_indicators_user(void) {}
  191. void led_matrix_init(void) {
  192. led_matrix_driver.init();
  193. // Wait half a second for the driver to finish initializing
  194. wait_ms(500);
  195. // clear the key hits
  196. for (int led = 0; led < DRIVER_LED_TOTAL; led++) {
  197. g_key_hit[led] = 255;
  198. }
  199. if (!eeconfig_is_enabled()) {
  200. dprintf("led_matrix_init_drivers eeconfig is not enabled.\n");
  201. eeconfig_init();
  202. eeconfig_update_led_matrix_default();
  203. }
  204. eeconfig_read_led_matrix();
  205. if (!led_matrix_eeconfig.mode) {
  206. dprintf("led_matrix_init_drivers led_matrix_eeconfig.mode = 0. Write default values to EEPROM.\n");
  207. eeconfig_update_led_matrix_default();
  208. }
  209. eeconfig_debug_led_matrix(); // display current eeprom values
  210. }
  211. void led_matrix_toggle_eeprom_helper(bool write_to_eeprom) {
  212. led_matrix_eeconfig.enable ^= 1;
  213. if (write_to_eeprom) {
  214. eeconfig_update_led_matrix();
  215. }
  216. dprintf("led matrix toggle [%s]: led_matrix_eeconfig.enable = %u\n", (write_to_eeprom) ? "EEPROM" : "NOEEPROM", led_matrix_eeconfig.enable);
  217. }
  218. void led_matrix_toggle_noeeprom(void) { led_matrix_toggle_eeprom_helper(false); }
  219. void led_matrix_toggle(void) { led_matrix_toggle_eeprom_helper(true); }
  220. void led_matrix_enable(void) {
  221. led_matrix_enable_noeeprom();
  222. eeconfig_update_led_matrix();
  223. }
  224. void led_matrix_enable_noeeprom(void) { led_matrix_eeconfig.enable = 1; }
  225. void led_matrix_disable(void) {
  226. led_matrix_disable_noeeprom();
  227. eeconfig_update_led_matrix();
  228. }
  229. void led_matrix_disable_noeeprom(void) { led_matrix_eeconfig.enable = 0; }
  230. uint8_t led_matrix_is_enabled(void) { return led_matrix_eeconfig.enable; }
  231. void led_matrix_mode_eeprom_helper(uint8_t mode, bool write_to_eeprom) {
  232. if (!led_matrix_eeconfig.enable) {
  233. return;
  234. }
  235. if (mode < 1) {
  236. led_matrix_eeconfig.mode = 1;
  237. } else if (mode >= LED_MATRIX_EFFECT_MAX) {
  238. led_matrix_eeconfig.mode = LED_MATRIX_EFFECT_MAX - 1;
  239. } else {
  240. led_matrix_eeconfig.mode = mode;
  241. }
  242. if (write_to_eeprom) {
  243. eeconfig_update_led_matrix();
  244. }
  245. dprintf("led matrix mode [%s]: %u\n", (write_to_eeprom) ? "EEPROM" : "NOEEPROM", led_matrix_eeconfig.mode);
  246. }
  247. void led_matrix_mode_noeeprom(uint8_t mode) { led_matrix_mode_eeprom_helper(mode, false); }
  248. void led_matrix_mode(uint8_t mode) { led_matrix_mode_eeprom_helper(mode, true); }
  249. uint8_t led_matrix_get_mode(void) { return led_matrix_eeconfig.mode; }
  250. void led_matrix_step_helper(bool write_to_eeprom) {
  251. uint8_t mode = led_matrix_eeconfig.mode + 1;
  252. led_matrix_mode_eeprom_helper((mode < LED_MATRIX_EFFECT_MAX) ? mode : 1, write_to_eeprom);
  253. }
  254. void led_matrix_step_noeeprom(void) { led_matrix_step_helper(false); }
  255. void led_matrix_step(void) { led_matrix_step_helper(true); }
  256. void led_matrix_step_reverse_helper(bool write_to_eeprom) {
  257. uint8_t mode = led_matrix_eeconfig.mode - 1;
  258. led_matrix_mode_eeprom_helper((mode < 1) ? LED_MATRIX_EFFECT_MAX - 1 : mode, write_to_eeprom);
  259. }
  260. void led_matrix_step_reverse_noeeprom(void) { led_matrix_step_reverse_helper(false); }
  261. void led_matrix_step_reverse(void) { led_matrix_step_reverse_helper(true); }
  262. void led_matrix_set_val_eeprom_helper(uint8_t val, bool write_to_eeprom) {
  263. if (!led_matrix_eeconfig.enable) {
  264. return;
  265. }
  266. led_matrix_eeconfig.val = (val > LED_MATRIX_MAXIMUM_BRIGHTNESS) ? LED_MATRIX_MAXIMUM_BRIGHTNESS : val;
  267. if (write_to_eeprom) {
  268. eeconfig_update_led_matrix();
  269. }
  270. dprintf("led matrix set val [%s]: %u\n", (write_to_eeprom) ? "EEPROM" : "NOEEPROM", led_matrix_eeconfig.val);
  271. }
  272. void led_matrix_set_val_noeeprom(uint8_t val) { led_matrix_set_val_eeprom_helper(val, false); }
  273. void led_matrix_set_val(uint8_t val) { led_matrix_set_val_eeprom_helper(val, true); }
  274. uint8_t led_matrix_get_val(void) { return led_matrix_eeconfig.val; }
  275. void led_matrix_increase_val_helper(bool write_to_eeprom) { led_matrix_set_val_eeprom_helper(qadd8(led_matrix_eeconfig.val, LED_MATRIX_VAL_STEP), write_to_eeprom); }
  276. void led_matrix_increase_val_noeeprom(void) { led_matrix_increase_val_helper(false); }
  277. void led_matrix_increase_val(void) { led_matrix_increase_val_helper(true); }
  278. void led_matrix_decrease_val_helper(bool write_to_eeprom) { led_matrix_set_val_eeprom_helper(qsub8(led_matrix_eeconfig.val, LED_MATRIX_VAL_STEP), write_to_eeprom); }
  279. void led_matrix_decrease_val_noeeprom(void) { led_matrix_decrease_val_helper(false); }
  280. void led_matrix_decrease_val(void) { led_matrix_decrease_val_helper(true); }
  281. void led_matrix_set_speed_eeprom_helper(uint8_t speed, bool write_to_eeprom) {
  282. led_matrix_eeconfig.speed = speed;
  283. if (write_to_eeprom) {
  284. eeconfig_update_led_matrix();
  285. }
  286. dprintf("led matrix set speed [%s]: %u\n", (write_to_eeprom) ? "EEPROM" : "NOEEPROM", led_matrix_eeconfig.speed);
  287. }
  288. void led_matrix_set_speed_noeeprom(uint8_t speed) { led_matrix_set_speed_eeprom_helper(speed, false); }
  289. void led_matrix_set_speed(uint8_t speed) { led_matrix_set_speed_eeprom_helper(speed, true); }
  290. uint8_t led_matrix_get_speed(void) { return led_matrix_eeconfig.speed; }
  291. void led_matrix_increase_speed_helper(bool write_to_eeprom) { led_matrix_set_speed_eeprom_helper(qadd8(led_matrix_eeconfig.speed, LED_MATRIX_SPD_STEP), write_to_eeprom); }
  292. void led_matrix_increase_speed_noeeprom(void) { led_matrix_increase_speed_helper(false); }
  293. void led_matrix_increase_speed(void) { led_matrix_increase_speed_helper(true); }
  294. void led_matrix_decrease_speed_helper(bool write_to_eeprom) { led_matrix_set_speed_eeprom_helper(qsub8(led_matrix_eeconfig.speed, LED_MATRIX_SPD_STEP), write_to_eeprom); }
  295. void led_matrix_decrease_speed_noeeprom(void) { led_matrix_decrease_speed_helper(false); }
  296. void led_matrix_decrease_speed(void) { led_matrix_decrease_speed_helper(true); }