keymap.c 7.7 KB

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  1. #include QMK_KEYBOARD_H
  2. #ifdef AUDIO_ENABLE
  3. float mushroom[][2] = SONG(MARIO_MUSHROOM);
  4. #endif
  5. extern keymap_config_t keymap_config;
  6. // Complex Tapdance hoopla
  7. typedef struct {
  8. bool is_press_action;
  9. int state;
  10. } tap;
  11. enum {
  12. SINGLE_TAP = 1,
  13. SINGLE_HOLD = 2,
  14. DOUBLE_TAP = 3,
  15. DOUBLE_HOLD = 4,
  16. TRIPLE_TAP = 5,
  17. TRIPLE_HOLD = 6,
  18. };
  19. // Tap dance enums
  20. enum {
  21. X_AT_FUN = 0,
  22. RSHIFT,
  23. LSHIFT,
  24. TD_S
  25. };
  26. int cur_dance (qk_tap_dance_state_t *state);
  27. void x_finished (qk_tap_dance_state_t *state, void *user_data);
  28. void x_reset (qk_tap_dance_state_t *state, void *user_data);
  29. void lshift_finished (qk_tap_dance_state_t *state, void *user_data);
  30. void lshift_reset(qk_tap_dance_state_t *state, void *user_data);
  31. bool is_alt_tab_active = false;
  32. uint16_t alt_tab_timer = 0;
  33. // Modified Programmer Dvorak enums
  34. enum planck_layers {
  35. _PDVORAK,
  36. _UPPER,
  37. _LOWER,
  38. _FUNCTION,
  39. };
  40. enum custom_keycodes {
  41. PDVK = SAFE_RANGE,
  42. KC_LAST,
  43. ALT_TAB
  44. };
  45. // For getting the last arg in shell line (SUPER THANKS to Drashna over on Discord)
  46. bool process_record_user(uint16_t keycode, keyrecord_t *record) {
  47. static uint16_t macro_timer;
  48. switch (keycode) {
  49. case ALT_TAB:
  50. if (record->event.pressed) {
  51. if (!is_alt_tab_active) {
  52. is_alt_tab_active = true;
  53. register_code(KC_LALT);
  54. }
  55. alt_tab_timer = timer_read();
  56. register_code(KC_TAB);
  57. } else {
  58. unregister_code(KC_TAB);
  59. }
  60. break;
  61. }
  62. switch (keycode){
  63. case KC_LAST:
  64. if(record->event.pressed){
  65. macro_timer = timer_read();
  66. register_mods(MOD_BIT(KC_LCTRL));
  67. } else {
  68. unregister_mods(MOD_BIT(KC_LCTRL));
  69. if (timer_elapsed(macro_timer) < 150) {
  70. SEND_STRING("!$");
  71. }
  72. }
  73. return false;
  74. }
  75. return true;
  76. }
  77. void matrix_scan_user(void) {
  78. if (is_alt_tab_active) {
  79. if (timer_elapsed(alt_tab_timer) > 1000) {
  80. unregister_code16(KC_LALT);
  81. is_alt_tab_active = false;
  82. }
  83. }
  84. }
  85. #define PDVORAK MO(_PDVORAK)
  86. #define LOWER MO(_LOWER)
  87. #define UPPER MO(_UPPER)
  88. const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
  89. /* Programmer Dvorak */
  90. [_PDVORAK] = LAYOUT_planck_grid(
  91. KC_GESC, KC_SCOLON, KC_COMMA, KC_DOT, KC_P, KC_Y, KC_F, KC_G, KC_C, KC_R, KC_L, KC_BSPC,
  92. KC_LAST, KC_A, KC_O, KC_E, KC_U, KC_I, KC_D, KC_H, KC_T, KC_N, TD(TD_S), KC_SLASH,
  93. TD(LSHIFT), KC_QUOT, KC_Q, KC_J, KC_K, KC_X, KC_B, KC_M, KC_W, KC_V, KC_Z, TD(RSHIFT),
  94. TD(X_AT_FUN), KC_LEFT, KC_DOWN, KC_UP, KC_RIGHT, ALT_TAB, KC_SPACE, KC_ENTER, MT(MOD_LCTL | MOD_LSFT, KC_LGUI), KC_PGUP, KC_PGDN, LT(_LOWER, KC_PLUS)
  95. ),
  96. [_UPPER] = LAYOUT_planck_grid(
  97. KC_GRAVE, KC_AMPR, KC_PERC, KC_NO, KC_NO, KC_EQL, KC_ASTR, KC_NO, KC_NO, KC_EXLM, KC_HASH, KC_TRNS,
  98. KC_PLUS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_BSLASH,
  99. KC_TRNS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO,
  100. KC_TRNS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_TRNS
  101. ),
  102. [_LOWER] = LAYOUT_planck_grid(
  103. KC_DLR, KC_7, KC_5, KC_3, KC_1, KC_9, KC_0, KC_2, KC_4, KC_6, KC_8, KC_TRNS,
  104. KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO,
  105. KC_NO, CK_DOWN, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO,
  106. KC_TRNS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_TRNS
  107. ),
  108. [_FUNCTION] = LAYOUT_planck_grid(
  109. KC_F11, KC_F7, KC_F5, KC_F3, KC_F1, KC_F9, KC_F12, KC_F2, KC_F4, KC_F6, KC_F8, RESET,
  110. KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO,
  111. KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO,
  112. KC_TRNS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_TRNS
  113. ),
  114. };
  115. // Super crazy tap dancing stuff - see quad dance in feature_tap_dance.md
  116. int cur_dance (qk_tap_dance_state_t *state) {
  117. if (state->count == 1) {
  118. if (state->interrupted || !state->pressed) return SINGLE_TAP;
  119. // key not interrupted, but still held sends 'HOLD'
  120. else return SINGLE_HOLD;
  121. }
  122. else if (state->count == 2) {
  123. if (state->interrupted || !state->pressed) return DOUBLE_TAP;
  124. else return DOUBLE_HOLD;
  125. }
  126. else if (state->count == 3) {
  127. if (state->interrupted || !state->pressed)return TRIPLE_TAP;
  128. else return TRIPLE_HOLD;
  129. }
  130. else return 8; // magic number that i dont believe works.
  131. }
  132. // instance of tap for the 'X' dance.
  133. static tap xtap_state = {
  134. .is_press_action = true,
  135. .state = 0
  136. };
  137. // registering keypresses
  138. void x_finished (qk_tap_dance_state_t *state, void *user_data) {
  139. xtap_state.state = cur_dance(state);
  140. switch (xtap_state.state) {
  141. case SINGLE_TAP: register_code16(KC_AT); break;
  142. case SINGLE_HOLD: set_oneshot_layer(_UPPER, ONESHOT_START); break;
  143. case DOUBLE_TAP: set_oneshot_layer(_FUNCTION, ONESHOT_START); break;
  144. case DOUBLE_HOLD: reset_keyboard(); break;
  145. }
  146. }
  147. void lshift_finished (qk_tap_dance_state_t *state, void *user_data) {
  148. xtap_state.state = cur_dance(state);
  149. switch (xtap_state.state) {
  150. case SINGLE_TAP: register_code16(KC_LSFT); register_code16(KC_9); break;
  151. case SINGLE_HOLD: register_code16(KC_LSFT); break;
  152. case DOUBLE_TAP: register_code16(KC_LBRC); break;
  153. case TRIPLE_TAP: register_code16(KC_LSFT); register_code16(KC_LBRC); break;
  154. }
  155. }
  156. void s_finished (qk_tap_dance_state_t *state, void *user_data) {
  157. xtap_state.state = cur_dance(state);
  158. switch (xtap_state.state) {
  159. case SINGLE_TAP: register_code16(KC_S); break;
  160. case DOUBLE_TAP: register_code16(KC_MINUS); break;
  161. case TRIPLE_TAP: register_code16(KC_LSFT); register_code16(KC_MINUS); break;
  162. }
  163. }
  164. void rshift_finished (qk_tap_dance_state_t *state, void *user_data) {
  165. xtap_state.state = cur_dance(state);
  166. switch (xtap_state.state) {
  167. case SINGLE_TAP: register_code16(KC_LSFT); register_code16(KC_0); break;
  168. case SINGLE_HOLD: register_code16(KC_RSFT); break;
  169. case DOUBLE_TAP: register_code16(KC_RBRC); break;
  170. case TRIPLE_TAP: register_code16(KC_LSFT); register_code16(KC_RBRC); break;
  171. }
  172. }
  173. // forgetting keypresses
  174. void x_reset (qk_tap_dance_state_t *state, void *user_data) {
  175. switch (xtap_state.state) {
  176. case SINGLE_TAP: unregister_code16(KC_AT); break;
  177. case SINGLE_HOLD: clear_oneshot_layer_state(ONESHOT_PRESSED); break;
  178. case DOUBLE_TAP: clear_oneshot_layer_state(ONESHOT_PRESSED); break;
  179. case DOUBLE_HOLD: reset_keyboard(); break;
  180. }
  181. xtap_state.state = 0;
  182. }
  183. void lshift_reset (qk_tap_dance_state_t *state, void *user_data) {
  184. switch (xtap_state.state) {
  185. case SINGLE_TAP: unregister_code16(KC_9); unregister_code16(KC_LSFT); break;
  186. case SINGLE_HOLD: unregister_code16(KC_LSFT); break;
  187. case DOUBLE_TAP: unregister_code16(KC_LBRC); break;
  188. case TRIPLE_TAP: unregister_code16(KC_LBRC); unregister_code16(KC_LSFT); break;
  189. }
  190. xtap_state.state = 0;
  191. }
  192. void rshift_reset (qk_tap_dance_state_t *state, void *user_data) {
  193. switch (xtap_state.state) {
  194. case SINGLE_TAP: unregister_code16(KC_0); unregister_code16(KC_LSFT); break;
  195. case SINGLE_HOLD: unregister_code16(KC_RSFT); break;
  196. case DOUBLE_TAP: unregister_code16(KC_RBRC); break;
  197. case TRIPLE_TAP: unregister_code16(KC_RBRC); unregister_code16(KC_LSFT); break;
  198. }
  199. xtap_state.state = 0;
  200. }
  201. void s_reset (qk_tap_dance_state_t *state, void *user_data) {
  202. switch (xtap_state.state) {
  203. case SINGLE_TAP: unregister_code16(KC_S); break;
  204. case DOUBLE_TAP: unregister_code16(KC_MINUS); break;
  205. case TRIPLE_TAP: unregister_code16(KC_MINUS); unregister_code16(KC_LSFT); break;
  206. }
  207. xtap_state.state = 0;
  208. }
  209. qk_tap_dance_action_t tap_dance_actions[] = {
  210. [X_AT_FUN] = ACTION_TAP_DANCE_FN_ADVANCED(NULL, x_finished, x_reset),
  211. [LSHIFT] = ACTION_TAP_DANCE_FN_ADVANCED(NULL, lshift_finished, lshift_reset),
  212. [RSHIFT] = ACTION_TAP_DANCE_FN_ADVANCED(NULL, rshift_finished, rshift_reset),
  213. [TD_S] = ACTION_TAP_DANCE_FN_ADVANCED(NULL, s_finished, s_reset),
  214. };
  215. void shutdown_user(void) { clear_keyboard(); }