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  1. #include "spacebarracecar.h"
  2. #ifdef GERMAN_ENABLE
  3. // These indicate if left and right shift are physically pressed
  4. bool lshift = false;
  5. bool rshift = false;
  6. // Interrupt and times for space cadet shift
  7. bool lshiftp = false;
  8. bool rshiftp = false;
  9. uint16_t lshift_timer = 0;
  10. uint16_t rshift_timer = 0;
  11. // Number of items that are saved in prev_kcs
  12. uint8_t prev_indx = 0;
  13. // Used to save the last 6 actual keycodes activated by frankenkeycodes
  14. uint16_t prev_kcs[6] = {0, 0, 0, 0, 0, 0};
  15. // If true the deadkey characters grave and circonflexe are not automatically escaped
  16. bool esct = false;
  17. /*
  18. Used to add a keycode to a prev_kcs to remember it.
  19. When full the last code gets discarded and replaced by
  20. the new one.
  21. */
  22. void add_to_prev(uint16_t kc){
  23. for (int i=0; i<prev_indx; i++){
  24. if (kc == prev_kcs[i])
  25. return;
  26. }
  27. if (prev_indx == 6){
  28. for (int i=5; i>0; i--){
  29. prev_kcs[i] = prev_kcs[i-1];
  30. }
  31. prev_kcs[0] = kc;
  32. } else {
  33. prev_kcs[prev_indx] = kc;
  34. prev_indx++;
  35. }
  36. }
  37. /*
  38. Unregisters all codes saved in prev_kcs and resets prev_indx.
  39. gets called on multiple occasions mainly when shift is released
  40. and when frankenkeycodes are pressed. Prevents output of
  41. wrong characters when really specific key combinations
  42. that would never occur during normal usage are pressed.
  43. */
  44. void unreg_prev(void){
  45. if (prev_indx == 0)
  46. return;
  47. for (int i=0; i<prev_indx; i++){
  48. unregister_code(prev_kcs[i]);
  49. }
  50. prev_indx = 0;
  51. }
  52. #endif
  53. // Interrupt and times for Nav/Esc
  54. bool navesc = false;
  55. uint16_t navesc_timer = 0;
  56. // If true Gui keys and Space Cadet Shift get disabled
  57. bool game = false;
  58. // Interrupts all timers
  59. void timer_timeout(void){
  60. #ifdef GERMAN_ENABLE
  61. lshiftp = false;
  62. rshiftp = false;
  63. #endif
  64. navesc = false;
  65. timer_timeout_keymap();
  66. }
  67. __attribute__((weak))
  68. void timer_timeout_keymap(void){
  69. }
  70. bool process_record_user(uint16_t keycode, keyrecord_t *record) {
  71. switch (keycode) {
  72. case CU_GAME:
  73. if(record->event.pressed) {
  74. timer_timeout();
  75. game = !game;
  76. }
  77. // allows keymap to execute further commands when CU_GAME is pressed, for example enabling a macro layer
  78. return process_record_keymap(keycode, record) && false;
  79. case KC_LGUI:
  80. case KC_RGUI:
  81. if (record->event.pressed)
  82. timer_timeout();
  83. if (game)
  84. return false;
  85. else
  86. return true;
  87. case CU_NAV:
  88. if(record->event.pressed) {
  89. navesc = true;
  90. navesc_timer = timer_read();
  91. layer_on(_NAV);
  92. } else {
  93. if (timer_elapsed(navesc_timer) < TAPPING_TERM && navesc) {
  94. register_code(KC_ESC);
  95. unregister_code(KC_ESC);
  96. }
  97. layer_off(_NAV);
  98. }
  99. return false;
  100. case KC_P00:
  101. if(record->event.pressed) {
  102. timer_timeout();
  103. register_code(KC_P0);
  104. unregister_code(KC_P0);
  105. register_code(KC_P0);
  106. unregister_code(KC_P0);
  107. }
  108. return false;
  109. #ifdef RGBLIGHT_ENABLE
  110. case CU_RGBV:
  111. if(record->event.pressed) {
  112. timer_timeout();
  113. if (rgblight_get_val()+32>255)
  114. rgblight_sethsv(rgblight_get_hue(), rgblight_get_sat(), 31);
  115. else
  116. rgblight_sethsv(rgblight_get_hue(), rgblight_get_sat(), rgblight_get_val()+32);
  117. }
  118. return false;
  119. #endif
  120. #ifdef GERMAN_ENABLE
  121. case CU_LSFT:
  122. if(record->event.pressed) {
  123. lshiftp = true;
  124. lshift_timer = timer_read();
  125. unregister_code(KC_LSFT);
  126. register_code(KC_LSFT);
  127. lshift = true;
  128. } else {
  129. if (timer_elapsed(lshift_timer) < TAPPING_TERM && lshiftp && !game) {
  130. register_code(KC_LSFT);
  131. register_code(KC_8);
  132. unregister_code(KC_8);
  133. unregister_code(KC_LSFT);
  134. }
  135. unreg_prev();
  136. if (!rshift)
  137. unregister_code(KC_LSFT);
  138. lshift = false;
  139. }
  140. return false;
  141. case CU_RSFT:
  142. if(record->event.pressed) {
  143. rshiftp = true;
  144. rshift_timer = timer_read();
  145. unregister_code(KC_LSFT);
  146. register_code(KC_LSFT);
  147. rshift = true;
  148. } else {
  149. if (timer_elapsed(rshift_timer) < TAPPING_TERM && rshiftp && !game) {
  150. register_code(KC_LSFT);
  151. register_code(KC_9);
  152. unregister_code(KC_9);
  153. unregister_code(KC_LSFT);
  154. }
  155. unreg_prev();
  156. if (!lshift)
  157. unregister_code(KC_LSFT);
  158. rshift = false;
  159. }
  160. return false;
  161. case CU_ESCT:
  162. if(record->event.pressed) {
  163. timer_timeout();
  164. esct = !esct;
  165. }
  166. return false;
  167. case CU_AE:
  168. UML(DE_ADIA)
  169. case CU_OE:
  170. UML(DE_ODIA)
  171. case CU_UE:
  172. UML(DE_UDIA)
  173. case CU_SS:
  174. if(record->event.pressed) {
  175. timer_timeout();
  176. unregister_code(KC_LSFT);
  177. register_code(DE_SS);
  178. unregister_code(DE_SS);
  179. if (lshift || rshift)
  180. register_code(KC_LSFT);
  181. layer_off(_DEADKEY);
  182. }
  183. return false;
  184. case CU_DDQ:
  185. if(record->event.pressed) {
  186. timer_timeout();
  187. register_code(KC_LSFT);
  188. register_code(KC_2);
  189. unregister_code(KC_2);
  190. if (!lshift && !rshift)
  191. unregister_code(KC_LSFT);
  192. layer_off(_DEADKEY);
  193. }
  194. return false;
  195. case CU_ED:
  196. if(record->event.pressed) {
  197. timer_timeout();
  198. layer_off(_DEADKEY);
  199. }
  200. return false;
  201. case CU_GRV:
  202. if(record->event.pressed) {
  203. timer_timeout();
  204. if (lshift || rshift){
  205. unregister_code(KC_LSFT);
  206. register_code(KC_ALGR);
  207. unregister_code(DE_PLUS);
  208. register_code(DE_PLUS);
  209. unregister_code(DE_PLUS);
  210. unregister_code(KC_ALGR);
  211. register_code(KC_LSFT);
  212. } else {
  213. register_code(KC_LSFT);
  214. unregister_code(DE_ACUT);
  215. register_code(DE_ACUT);
  216. unregister_code(DE_ACUT);
  217. unregister_code(KC_LSFT);
  218. if (!esct) {
  219. register_code(KC_SPC);
  220. unregister_code(KC_SPC);
  221. }
  222. }
  223. }
  224. return false;
  225. case CU_CIRC:
  226. if(record->event.pressed) {
  227. timer_timeout();
  228. unregister_code(KC_LSFT);
  229. unregister_code(DE_CIRC);
  230. register_code(DE_CIRC);
  231. unregister_code(DE_CIRC);
  232. if (!esct) {
  233. register_code(KC_SPC);
  234. unregister_code(KC_SPC);
  235. }
  236. if (lshift || rshift)
  237. register_code(KC_LSFT);
  238. }
  239. return false;
  240. case CU_QUOT:
  241. if(record->event.pressed){
  242. timer_timeout();
  243. register_code(KC_LSFT);
  244. if (lshift || rshift){
  245. layer_on(_DEADKEY);
  246. } else {
  247. unregister_code(DE_HASH);
  248. register_code(DE_HASH);
  249. add_to_prev(DE_HASH);
  250. }
  251. } else {
  252. unregister_code(DE_HASH);
  253. unreg_prev();
  254. if (lshift || rshift)
  255. register_code(KC_LSFT);
  256. else
  257. unregister_code(KC_LSFT);
  258. }
  259. return false;
  260. case CU_6:
  261. if(record->event.pressed){
  262. timer_timeout();
  263. unregister_code(KC_LSFT);
  264. if (lshift || rshift){
  265. unregister_code(DE_CIRC);
  266. register_code(DE_CIRC);
  267. unregister_code(DE_CIRC);
  268. if (!esct) {
  269. register_code(KC_SPC);
  270. unregister_code(KC_SPC);
  271. }
  272. register_code(KC_LSFT);
  273. } else {
  274. register_code(DE_6);
  275. }
  276. } else {
  277. unregister_code(DE_6);
  278. }
  279. return false;
  280. case CU_COMM:
  281. SHIFT_NO(DE_COMM, DE_LABK)
  282. case CU_DOT:
  283. SHIFT_NORM(DE_DOT, DE_LABK)
  284. case CU_SLSH:
  285. SHIFT_ALL(DE_7, DE_SS)
  286. case CU_SCLN:
  287. SHIFT_ALL(DE_COMM, DE_DOT)
  288. case CU_3:
  289. SHIFT_NO(DE_3, DE_HASH)
  290. case CU_7:
  291. SHIFT_NORM(DE_7, DE_6)
  292. case CU_8:
  293. SHIFT_NORM(DE_8, DE_PLUS)
  294. case CU_9:
  295. SHIFT_NORM(DE_9, DE_8)
  296. case CU_0:
  297. SHIFT_NORM(DE_0, DE_9)
  298. case CU_EQL:
  299. SHIFT_SWITCH(DE_0, DE_PLUS)
  300. case CU_LBRC:
  301. SHIFT_ALGR(DE_8, DE_7)
  302. case CU_RBRC:
  303. SHIFT_ALGR(DE_9, DE_0)
  304. case CU_BSLS:
  305. SHIFT_ALGR(DE_SS, DE_LABK)
  306. case CU_Z:
  307. CTRL(DE_Z, KC_Z)
  308. case CU_Y:
  309. CTRL(DE_Y, KC_Y)
  310. case KC_LCTL:
  311. case KC_RCTL:
  312. if(!record->event.pressed) {
  313. timer_timeout();
  314. unregister_code(KC_Z);
  315. unregister_code(KC_Y);
  316. }
  317. return true;
  318. #endif
  319. default:
  320. if(record->event.pressed) {
  321. timer_timeout();
  322. #ifdef GERMAN_ENABLE
  323. if (lshift || rshift)
  324. register_code(KC_LSFT);
  325. else
  326. unregister_code(KC_LSFT);
  327. #endif
  328. }
  329. return process_record_keymap(keycode, record);
  330. }
  331. }
  332. __attribute__((weak))
  333. bool process_record_keymap(uint16_t keycode, keyrecord_t *record) {
  334. return true;
  335. }