keymap.c 9.5 KB

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  1. #include <stdarg.h>
  2. #include QMK_KEYBOARD_H
  3. #include "led.h"
  4. #include "action_layer.h"
  5. #include "action_util.h"
  6. /*
  7. *WINDOWS SWEDISH
  8. */
  9. /*
  10. *WINDOWS SWEDISH
  11. */
  12. #define KN_HALF KC_GRV // 1/2
  13. #define KN_PLUS KC_MINS // +
  14. #define KN_ACUT KC_EQL // ´
  15. #define KN_AO KC_LBRC // Å
  16. #define KN_UMLA KC_RBRC // ¨
  17. #define KN_OE KC_SCLN // Ö
  18. #define KN_AE KC_QUOT // Ä
  19. #define KN_QUOT KC_NUHS // '
  20. #define KN_LABK KC_NUBS // <
  21. #define KN_MINS KC_SLSH // -
  22. #define KN_EXLM LSFT(KC_1) // !
  23. #define KN_DQT LSFT(KC_2) // "
  24. #define KN_AT RALT(KC_2) // @
  25. #define KN_HASH LSFT(KC_3) // #
  26. #define KN_EUR LSFT(KC_4) // €
  27. #define KN_DLR RALT(KC_4) // $
  28. #define KN_PERC LSFT(KC_5) // %
  29. #define KN_AMPR LSFT(KC_6) // &
  30. #define KN_SLSH LSFT(KC_7) // /
  31. #define KN_LPRN LSFT(KC_8) // (
  32. #define KN_RPRN LSFT(KC_9) // )
  33. #define KN_EQL LSFT(KC_0) // =
  34. #define KN_UNDS LSFT(KN_MINS) // _
  35. #define KN_QUES LSFT(KN_PLUS) // ?
  36. #define KN_GRAV LSFT(KN_ACUT) // `
  37. #define KN_LCBR RALT(KC_7) // {
  38. #define KN_RCBR RALT(KC_0) // }
  39. #define KN_LBRC RALT(KC_8) // [
  40. #define KN_RBRC RALT(KC_9) // ]
  41. #define KN_RABK LSFT(KN_LABK) // <
  42. #define KN_COLN LSFT(KC_DOT) // :
  43. #define KN_SCLN LSFT(KC_COMM) // :
  44. #define KN_PIPE RALT(KN_LABK) // |
  45. #define KN_QUES LSFT(KN_PLUS) // ?
  46. #define KN_CIRC LSFT(KN_UMLA) // ^
  47. #define KN_ASTR LSFT(KN_QUOT) // *
  48. #define KN_TILD RALT(KN_UMLA) // ~
  49. #define KN_BSLS RALT(KN_PLUS) //
  50. #define OSM_LCTL OSM(MOD_LCTL)
  51. #define OSM_LALT OSM(MOD_LALT)
  52. #define OSM_LSFT OSM(MOD_LSFT)
  53. #define KC_HYP LSFT(LALT(LCTL(KC_LGUI)))
  54. #define KC_COPY LCTL(KC_C)
  55. #define KC_PASTE LCTL(KC_V)
  56. #define KC_UNDO LCTL(KC_Z)
  57. #define KC_REDO LCTL(LSFT(KC_Z))
  58. // Layers
  59. enum {
  60. BASE = 0,
  61. NAV,
  62. SYM
  63. };
  64. //Macros
  65. enum {
  66. KF_1 = 0, // 1, F1
  67. KF_2, // ...
  68. KF_3,
  69. KF_4,
  70. KF_5,
  71. KF_6,
  72. KF_7,
  73. KF_8,
  74. KF_9,
  75. KF_10,
  76. KF_11,
  77. KF_12
  78. };
  79. // Tapdance
  80. enum {
  81. TD_FUN = 0,
  82. TD_EQ
  83. };
  84. //State and timers
  85. uint16_t kf_timers[12];
  86. const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
  87. [BASE] = LAYOUT(
  88. M(KF_11), M(KF_1), M(KF_2), M(KF_3), M(KF_4), M(KF_5), M(KF_6), M(KF_7), M(KF_8), M(KF_9), M(KF_10), M(KF_12),
  89. KC_TAB, KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KN_AO,
  90. OSM_LCTL, KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KN_OE, KN_AE,
  91. OSM_LSFT, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KN_MINS, OSM_LSFT,
  92. MO(NAV), OSM_LCTL, OSM_LALT, KC_LGUI, MO(SYM), KC_BSPC, KC_DEL, KC_ENT, KC_SPC, MO(SYM), KC_LEAD, KC_LALT, KC_LCTRL, KC_HYP
  93. ),
  94. [NAV] = LAYOUT(
  95. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
  96. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_HOME, KC_PGDN, KC_PGUP, KC_END, KC_TRNS, KC_TRNS,
  97. KC_TRNS, KC_LSFT, KC_LCTL, KC_LALT, KC_L, KC_TRNS, KC_LEFT, KC_DOWN, KC_UP, KC_RIGHT, KC_TRNS, KC_TRNS,
  98. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
  99. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_VOLD, KC_VOLU
  100. ),
  101. [SYM] = LAYOUT(
  102. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, TD(TD_EQ), TD(TD_FUN), KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
  103. KC_TRNS, KN_LABK, KN_RABK, KN_LCBR, KN_RCBR, KN_PLUS, KN_AT, KN_DQT, KN_QUOT, KN_GRAV, KN_SLSH, KC_TRNS,
  104. KC_TRNS, KN_EXLM, KN_EQL, KN_LPRN, KN_RPRN, KN_MINS, KN_UNDS, KN_CIRC, KN_DLR, KN_AMPR, KN_PIPE, KC_TRNS,
  105. KC_TRNS, KN_EUR, KN_PERC, KN_LBRC, KN_RBRC, KN_ASTR, KN_HASH, KN_SCLN, KN_COLN, KN_QUES, KN_BSLS, KC_TRNS,
  106. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS
  107. )
  108. };
  109. #define TAP_ONCE(code) \
  110. register_code (code); \
  111. unregister_code (code)
  112. static void m_tapn (uint8_t code, ...) {
  113. uint8_t kc = code;
  114. va_list ap;
  115. va_start(ap, code);
  116. do {
  117. register_code(kc);
  118. unregister_code(kc);
  119. wait_ms(50);
  120. kc = va_arg(ap, int);
  121. } while (kc != 0);
  122. va_end(ap);
  123. }
  124. static void m_handle_kf (keyrecord_t *record, uint8_t id) {
  125. uint8_t code = id - KF_1;
  126. if (record->event.pressed) {
  127. kf_timers[code] = timer_read ();
  128. } else {
  129. uint8_t kc_base;
  130. uint8_t long_press = (kf_timers[code] && timer_elapsed (kf_timers[code]) > TAPPING_TERM);
  131. kf_timers[code] = 0;
  132. switch(id){
  133. case KF_1 ... KF_10:
  134. if (long_press) {
  135. // Long press
  136. kc_base = KC_F1;
  137. } else {
  138. kc_base = KC_1;
  139. }
  140. code += kc_base;
  141. break;
  142. case KF_11:
  143. code = long_press ? KC_F11 : KC_ESC;
  144. break;
  145. case KF_12:
  146. code = long_press ? KC_F12 : KN_PLUS;
  147. break;
  148. }
  149. register_code (code);
  150. unregister_code (code);
  151. }
  152. }
  153. const macro_t *action_get_macro(keyrecord_t *record, uint8_t id, uint8_t opt)
  154. {
  155. switch (id) {
  156. case KF_1 ... KF_12:
  157. m_handle_kf(record, id);
  158. break;
  159. }
  160. return MACRO_NONE;
  161. };
  162. // Custom keycodes
  163. bool process_record_user(uint16_t keycode, keyrecord_t *record) {
  164. bool queue = true;
  165. //Cancle one-shot mods.
  166. switch (keycode) {
  167. case KC_ESC:
  168. if (record->event.pressed && get_oneshot_mods() && !has_oneshot_mods_timed_out()) {
  169. clear_oneshot_mods();
  170. queue = false;
  171. }
  172. break;
  173. }
  174. return queue;
  175. }
  176. // TAP DANCE SETTINGS
  177. void dance_eq (qk_tap_dance_state_t *state, void *user_data) {
  178. switch (state->count) {
  179. case 1: // ===
  180. register_code(KC_LSHIFT);
  181. m_tapn(KC_0, KC_0, KC_0, 0);
  182. unregister_code(KC_LSHIFT);
  183. break;
  184. case 2:
  185. register_code(KC_LSHIFT);
  186. m_tapn(KC_1, KC_0, KC_0, 0);
  187. unregister_code(KC_LSHIFT);
  188. break;
  189. default:
  190. reset_tap_dance(state);
  191. }
  192. }
  193. void dance_fun (qk_tap_dance_state_t *state, void *user_data) {
  194. switch (state->count) {
  195. case 1: // =>
  196. register_code(KC_LSHIFT);
  197. m_tapn(KC_0, KN_LABK, 0);
  198. unregister_code(KC_LSHIFT);
  199. break;
  200. case 2: // () => {}
  201. register_code(KC_LSHIFT);
  202. m_tapn(KC_8, KC_9, KC_SPC, KC_0, KN_LABK, KC_SPC, 0);
  203. unregister_code(KC_LSHIFT);
  204. register_code(KC_RALT);
  205. m_tapn(KC_7, 0);
  206. unregister_code(KC_RALT);
  207. TAP_ONCE(KC_ENT);
  208. break;
  209. default:
  210. reset_tap_dance(state);
  211. }
  212. }
  213. qk_tap_dance_action_t tap_dance_actions[] = {
  214. [TD_FUN] = ACTION_TAP_DANCE_FN (dance_fun),
  215. [TD_EQ] = ACTION_TAP_DANCE_FN (dance_eq)
  216. };
  217. // Runs just one time when the keyboard initializes.
  218. void matrix_init_user(void) {
  219. set_unicode_input_mode(UC_WINC);
  220. };
  221. LEADER_EXTERNS();
  222. // Runs constantly in the background, in a loop.
  223. void matrix_scan_user(void) {
  224. LEADER_DICTIONARY() {
  225. leading = false;
  226. leader_end();
  227. SEQ_ONE_KEY(KC_L){
  228. register_code(KC_RGUI);
  229. TAP_ONCE(KC_L);
  230. unregister_code(KC_RGUI);
  231. };
  232. SEQ_TWO_KEYS (KC_A, KC_W) {
  233. //Web - chrome
  234. register_code (KC_LGUI); TAP_ONCE (KC_1); unregister_code (KC_LGUI);
  235. }
  236. SEQ_TWO_KEYS (KC_A, KC_P) {
  237. //sPotify
  238. register_code (KC_LGUI); TAP_ONCE (KC_2); unregister_code (KC_LGUI);
  239. }
  240. SEQ_TWO_KEYS (KC_A, KC_T) {
  241. //Total Commander
  242. register_code (KC_LGUI); TAP_ONCE (KC_3); unregister_code (KC_LGUI);
  243. }
  244. SEQ_TWO_KEYS (KC_A, KC_A) {
  245. //Atom
  246. register_code (KC_LGUI); TAP_ONCE (KC_4); unregister_code (KC_LGUI);
  247. }
  248. SEQ_TWO_KEYS (KC_A, KC_E) {
  249. //Emacs
  250. register_code (KC_LGUI); TAP_ONCE (KC_5); unregister_code (KC_LGUI);
  251. }
  252. SEQ_TWO_KEYS (KC_A, KC_C) {
  253. //Cmdr
  254. register_code (KC_LGUI); TAP_ONCE (KC_6); unregister_code (KC_LGUI);
  255. }
  256. SEQ_TWO_KEYS (KC_A, KC_S) {
  257. //Slack
  258. register_code (KC_LGUI); TAP_ONCE (KC_7); unregister_code (KC_LGUI);
  259. }
  260. SEQ_TWO_KEYS (KC_U, KC_L) {
  261. set_unicode_input_mode(UC_LNX);
  262. }
  263. SEQ_TWO_KEYS (KC_U, KC_W) {
  264. set_unicode_input_mode(UC_WINC);
  265. }
  266. SEQ_TWO_KEYS (KC_S, KC_S) {
  267. // ¯\_(ツ)_/¯
  268. unicode_input_start(); register_hex(0xaf); unicode_input_finish();
  269. register_code (KC_LALT);
  270. register_code (KC_LCTL);
  271. TAP_ONCE (KN_PLUS);
  272. unregister_code (KC_LCTL);
  273. unregister_code (KC_LALT);
  274. register_code (KC_RSFT); TAP_ONCE (KC_8); unregister_code (KC_RSFT);
  275. unicode_input_start (); register_hex(0x30c4); unicode_input_finish();
  276. register_code (KC_RSFT); TAP_ONCE (KC_9); TAP_ONCE(KC_7); unregister_code (KC_RSFT);
  277. unicode_input_start (); register_hex(0xaf); unicode_input_finish();
  278. }
  279. SEQ_TWO_KEYS (KC_S, KC_F) {
  280. // 凸(ツ)凸
  281. unicode_input_start(); register_hex(0x51F8); unicode_input_finish();
  282. register_code (KC_RSFT); TAP_ONCE (KC_8); unregister_code (KC_RSFT);
  283. unicode_input_start (); register_hex(0x30c4); unicode_input_finish();
  284. register_code (KC_RSFT); TAP_ONCE (KC_9); unregister_code (KC_RSFT);
  285. unicode_input_start (); register_hex(0x51F8); unicode_input_finish();
  286. }
  287. SEQ_TWO_KEYS (KC_S, KC_L) {
  288. // λ
  289. unicode_input_start();
  290. register_hex(0x03bb);
  291. unicode_input_finish();
  292. }
  293. };
  294. };