keymap.c 12 KB

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  1. /*
  2. Copyright 2020 Joel Elkins <joel@elkins.com>
  3. This program is free software: you can redistribute it and/or modify
  4. it under the terms of the GNU General Public License as published by
  5. the Free Software Foundation, either version 2 of the License, or
  6. (at your option) any later version.
  7. This program is distributed in the hope that it will be useful,
  8. but WITHOUT ANY WARRANTY; without even the implied warranty of
  9. MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  10. GNU General Public License for more details.
  11. You should have received a copy of the GNU General Public License
  12. along with this program. If not, see <http://www.gnu.org/licenses/>.
  13. */
  14. #include QMK_KEYBOARD_H
  15. #include "print.h"
  16. // Idle handling
  17. #define IDLE_TIMEOUT 360
  18. uint16_t rgb_idle_seconds = 0;
  19. uint16_t rgb_timer;
  20. uint8_t save_layer;
  21. #define NUMLOCK_ON (host_keyboard_leds() & (1<<USB_LED_NUM_LOCK))
  22. #define MODS_SHIFT (get_mods() & MOD_MASK_SHIFT)
  23. #define MODS_CTRL (get_mods() & MOD_MASK_CTRL)
  24. // Macro keycodes
  25. enum alt_keycodes {
  26. KB_BOOT = SAFE_RANGE,
  27. };
  28. enum layers {
  29. _QWERTY,
  30. _ADJUST,
  31. };
  32. // Layers
  33. const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
  34. [_QWERTY] = LAYOUT(
  35. KC_GESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_MINS, KC_EQL, KC_BSPC, KC_DEL,
  36. KC_TAB, KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KC_LBRC, KC_RBRC, KC_BSLS, KC_HOME,
  37. KC_CAPS, KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KC_SCLN, KC_QUOT, KC_ENT, KC_PGUP,
  38. KC_LSFT, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KC_SLSH, KC_RSFT, KC_UP, KC_PGDN,
  39. KC_LCTL, KC_LALT, KC_LGUI, KC_SPC, KC_RALT, MO(_ADJUST),KC_LEFT, KC_DOWN, KC_RGHT
  40. ),
  41. [_ADJUST] = LAYOUT(
  42. KC_GRV, KC_F1, KC_F2, KC_F3, KC_F4, KC_F5, KC_F6, KC_F7, KC_F8, KC_F9, KC_F10, KC_F11, KC_F12, KC_F13, KC_INS,
  43. _______, RGB_SPD, RGB_VAI, RGB_SPI, RGB_HUI, RGB_SAI, _______, _______, _______, _______, KC_PSCR, KC_SLCK, KC_PAUS, KC_CALC, KC_END,
  44. _______, RGB_RMOD,RGB_VAD, RGB_MOD, RGB_HUD, RGB_SAD, _______, _______, _______, _______, _______, _______, _______, KC_MPLY,
  45. _______, RGB_TOG, _______, _______, _______, KB_BOOT, _______, _______, _______, _______, _______, _______, KC_VOLU, KC_MUTE,
  46. _______, _______, _______, _______, _______, _______, KC_MPRV, KC_VOLD, KC_MNXT
  47. ),
  48. /*
  49. [X] = LAYOUT(
  50. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  51. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  52. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  53. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  54. _______, _______, _______, _______, _______, _______, _______, _______, _______
  55. ),
  56. */
  57. };
  58. #ifdef _______
  59. #undef _______
  60. #endif
  61. #define RGB_NULL 254, 254, 254
  62. #define RGB_IS_NULL(rgb) ((rgb).r == 254 && (rgb).g == 254 && (rgb).b == 254)
  63. #define DEFAULT_HSV 255, 255, 128
  64. #define R(COL) { RGB_ ## COL }
  65. #define _______ R(NULL)
  66. #define xxxxxxx R(BLACK)
  67. struct layer_rgb PROGMEM rgbs[] = {
  68. [_QWERTY] = LAYOUT_hsv(LED_FLAG_ALL, RGB_MATRIX_CYCLE_ALL, DEFAULT_HSV),
  69. [_ADJUST] = LAYOUT_rgb(LED_FLAG_NONE, RGB_MATRIX_SOLID_COLOR,
  70. R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN),
  71. R(GREEN), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(WHITE), R(GREEN),
  72. R(GREEN), xxxxxxx, R(BLUE), R(YELLOW), R(BLUE), R(GREEN), R(ORANGE),xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, R(GREEN),
  73. xxxxxxx, R(MAGENTA),R(YELLOW), R(MAGENTA),R(GREEN),R(ORANGE),xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, R(BLUE),
  74. R(GREEN), xxxxxxx, R(WHITE), xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, R(YELLOW),R(ORANGE), R(GREEN),
  75. R(GREEN), xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, xxxxxxx, R(RED), R(YELLOW),R(RED), R(GREEN),
  76. R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN), R(GREEN)
  77. ),
  78. /*
  79. [X] = LAYOUT_rgb(
  80. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  81. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  82. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  83. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  84. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  85. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______,
  86. _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______
  87. ),
  88. */
  89. };
  90. #undef _______
  91. #define _______ KC_TRANS
  92. static void set_rgb_layer(int layer) {
  93. const struct layer_rgb *cur = &rgbs[layer];
  94. switch (cur->type) {
  95. case type_hsv:
  96. for (uint8_t i = 0; i < DRIVER_LED_TOTAL ; i++) {
  97. if (!(g_led_config.flags[i] & cur->flags))
  98. rgb_matrix_set_color(i, 0, 0, 0);
  99. }
  100. rgb_matrix_set_flags(cur->flags);
  101. if (cur->mode >= RGB_MATRIX_EFFECT_MAX)
  102. rgb_matrix_mode_noeeprom(rgbs[cur->mode - RGB_MATRIX_EFFECT_MAX].mode);
  103. else
  104. rgb_matrix_mode_noeeprom(cur->mode);
  105. rgb_matrix_sethsv_noeeprom(cur->hsv.h, cur->hsv.s, cur->hsv.v);
  106. break;
  107. case type_rgb:
  108. rgb_matrix_set_flags(cur->flags);
  109. if (cur->mode >= RGB_MATRIX_EFFECT_MAX)
  110. rgb_matrix_mode_noeeprom(rgbs[cur->mode - RGB_MATRIX_EFFECT_MAX].mode);
  111. else
  112. rgb_matrix_mode_noeeprom(cur->mode);
  113. for (uint8_t i = 0; i < DRIVER_LED_TOTAL; i++) {
  114. const RGB *m = &cur->rgb[i];
  115. if (!RGB_IS_NULL(*m))
  116. rgb_matrix_set_color(i, m->r, m->g, m->b);
  117. }
  118. break;
  119. }
  120. }
  121. // Runs just one time when the keyboard initializes.
  122. void matrix_init_keymap(void) {
  123. set_rgb_layer(_QWERTY);
  124. // force numlock on upon startup
  125. if (!NUMLOCK_ON) {
  126. tap_code(KC_NUMLOCK);
  127. }
  128. };
  129. // Runs constantly in the background, in a loop.
  130. void matrix_scan_keymap(void) {
  131. if (rgb_matrix_get_flags() != LED_FLAG_NONE && timer_elapsed(rgb_timer) > 1000) {
  132. rgb_idle_seconds++;
  133. rgb_timer = timer_read();
  134. }
  135. if (rgb_idle_seconds > IDLE_TIMEOUT) {
  136. rgb_matrix_disable_noeeprom();
  137. rgb_idle_seconds = 0;
  138. }
  139. };
  140. layer_state_t layer_state_set_keymap(layer_state_t state) {
  141. set_rgb_layer(get_highest_layer(state));
  142. if (layer_state_cmp(state, _QWERTY))
  143. save_layer = _QWERTY;
  144. return state;
  145. }
  146. bool process_record_keymap(uint16_t keycode, keyrecord_t *record) {
  147. static uint32_t boot_timer;
  148. struct layer_rgb *rgb_base_layer = &rgbs[save_layer];
  149. rgb_idle_seconds = 0;
  150. rgb_matrix_enable_noeeprom();
  151. switch (keycode) {
  152. case KB_BOOT:
  153. if (!get_mods()) {
  154. if (record->event.pressed) {
  155. boot_timer = timer_read32();
  156. } else {
  157. if (timer_elapsed32(boot_timer) >= 750) {
  158. reset_keyboard();
  159. }
  160. }
  161. return false;
  162. }
  163. break;
  164. case RGB_MOD:
  165. if (record->event.pressed) {
  166. if (++rgb_base_layer->mode >= RGB_MATRIX_EFFECT_MAX)
  167. rgb_base_layer->mode = RGB_MATRIX_NONE;
  168. set_rgb_layer(save_layer);
  169. }
  170. return false;
  171. case RGB_RMOD:
  172. if (record->event.pressed) {
  173. if (--rgb_base_layer->mode <= RGB_MATRIX_NONE)
  174. rgb_base_layer->mode = RGB_MATRIX_EFFECT_MAX - 1;
  175. set_rgb_layer(save_layer);
  176. }
  177. return false;
  178. case RGB_HUI:
  179. if (rgb_base_layer->type == type_hsv && record->event.pressed) {
  180. if (rgb_base_layer->hsv.h > 235)
  181. rgb_base_layer->hsv.h = 255;
  182. else
  183. rgb_base_layer->hsv.h += 20;
  184. }
  185. set_rgb_layer(save_layer);
  186. return false;
  187. case RGB_HUD:
  188. if (rgb_base_layer->type == type_hsv && record->event.pressed) {
  189. if (rgb_base_layer->hsv.h < 20)
  190. rgb_base_layer->hsv.h = 0;
  191. else
  192. rgb_base_layer->hsv.h -= 20;
  193. }
  194. set_rgb_layer(save_layer);
  195. return false;
  196. case RGB_SAI:
  197. if (rgb_base_layer->type == type_hsv && record->event.pressed) {
  198. if (rgb_base_layer->hsv.s > 235)
  199. rgb_base_layer->hsv.s = 255;
  200. else
  201. rgb_base_layer->hsv.s += 20;
  202. }
  203. set_rgb_layer(save_layer);
  204. return false;
  205. case RGB_SAD:
  206. if (rgb_base_layer->type == type_hsv && record->event.pressed) {
  207. if (rgb_base_layer->hsv.s < 20)
  208. rgb_base_layer->hsv.s = 0;
  209. else
  210. rgb_base_layer->hsv.s -= 20;
  211. }
  212. set_rgb_layer(save_layer);
  213. return false;
  214. case RGB_VAI:
  215. if (rgb_base_layer->type == type_hsv && record->event.pressed) {
  216. if (rgb_base_layer->hsv.v > 235)
  217. rgb_base_layer->hsv.v = 255;
  218. else
  219. rgb_base_layer->hsv.v += 20;
  220. }
  221. set_rgb_layer(save_layer);
  222. return false;
  223. case RGB_VAD:
  224. if (rgb_base_layer->type == type_hsv && record->event.pressed) {
  225. if (rgb_base_layer->hsv.v < 20)
  226. rgb_base_layer->hsv.v = 0;
  227. else
  228. rgb_base_layer->hsv.v -= 20;
  229. }
  230. set_rgb_layer(save_layer);
  231. return false;
  232. case RGB_TOG:
  233. if (record->event.pressed) {
  234. switch (rgb_base_layer->flags) {
  235. case LED_FLAG_ALL:
  236. rgb_base_layer->flags = LED_FLAG_KEYLIGHT;
  237. break;
  238. case LED_FLAG_KEYLIGHT:
  239. rgb_base_layer->flags = LED_FLAG_UNDERGLOW;
  240. break;
  241. case LED_FLAG_UNDERGLOW:
  242. rgb_base_layer->flags = LED_FLAG_NONE;
  243. break;
  244. default:
  245. rgb_base_layer->flags = LED_FLAG_ALL;
  246. break;
  247. }
  248. }
  249. set_rgb_layer(save_layer);
  250. return false;
  251. default:
  252. return true; //Process all other keycodes normally
  253. }
  254. return true;
  255. }