keymap.c 3.0 KB

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  1. #include QMK_KEYBOARD_H
  2. #define _BL 0
  3. #define _FN1 1
  4. #define _FN2 2
  5. #define MODS_CTRL_MASK (MOD_BIT(KC_LSHIFT)|MOD_BIT(KC_RSHIFT))
  6. const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
  7. [_BL] = LAYOUT_ortho(
  8. F(0), KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KC_BSPC,
  9. KC_TAB, KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KC_SCLN, KC_QUOT,
  10. KC_LSFT, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KC_SLSH, KC_ENT,
  11. KC_CAPS, KC_LCTL, KC_LALT, KC_LGUI, MO(1), KC_SPC, KC_SPC, MO(2), KC_LEFT, KC_DOWN, KC_UP, KC_RGHT),
  12. [_FN1] = LAYOUT_ortho(
  13. KC_GRV, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_BSPC,
  14. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_LBRC, KC_RBRC, KC_MINS, KC_EQL, KC_BSLS, KC_DEL,
  15. KC_TRNS, KC_TRNS, KC_TRNS, M(1), M(1), KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_HOME, KC_END, KC_TRNS,
  16. KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_MNXT, KC_VOLD, KC_VOLU, KC_MPLY),
  17. [_FN2] = LAYOUT_ortho(
  18. KC_PWR, KC_F1, KC_F2, KC_F3, KC_F4, KC_F5, KC_F6, KC_F7, KC_F8, KC_F9, KC_F10, KC_TRNS,
  19. KC_TRNS, BL_TOGG, BL_STEP, BL_INC, BL_DEC, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_DEL,
  20. KC_TRNS, RGB_TOG, RGB_MOD, RGB_VAI, RGB_VAD, RGB_HUI, RGB_HUD, RGB_SAI, RGB_SAD, KC_HOME, KC_END, KC_TRNS,
  21. RESET, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_MNXT, KC_PGDN, KC_PGUP, KC_MPLY),
  22. };
  23. const macro_t *action_get_macro(keyrecord_t *record, uint8_t id, uint8_t opt) {
  24. switch (id) {
  25. case 1:
  26. if (record->event.pressed) {
  27. return MACRO( D(LCTL), T(C), U(LCTL), END );
  28. }
  29. break;
  30. case 2:
  31. if (record->event.pressed) {
  32. return MACRO( D(LCTL), T(V), U(LCTL), END );
  33. }
  34. break;
  35. }
  36. return MACRO_NONE;
  37. }
  38. void matrix_init_user(void) {
  39. }
  40. void matrix_scan_user(void) {
  41. }
  42. bool process_record_user(uint16_t keycode, keyrecord_t *record) {
  43. return true;
  44. }
  45. void led_set_user(uint8_t usb_led) {
  46. if (usb_led & (1 << USB_LED_NUM_LOCK)) {
  47. } else {
  48. }
  49. if (usb_led & (1 << USB_LED_CAPS_LOCK)) {
  50. } else {
  51. }
  52. if (usb_led & (1 << USB_LED_SCROLL_LOCK)) {
  53. } else {
  54. }
  55. if (usb_led & (1 << USB_LED_COMPOSE)) {
  56. } else {
  57. }
  58. if (usb_led & (1 << USB_LED_KANA)) {
  59. } else {
  60. }
  61. }
  62. enum function_id {
  63. SHIFT_ESC,
  64. };
  65. const uint16_t PROGMEM fn_actions[] = {
  66. [0] = ACTION_FUNCTION(SHIFT_ESC),
  67. };
  68. void action_function(keyrecord_t *record, uint8_t id, uint8_t opt) {
  69. static uint8_t shift_esc_shift_mask;
  70. switch (id) {
  71. case SHIFT_ESC:
  72. shift_esc_shift_mask = get_mods()&MODS_CTRL_MASK;
  73. if (record->event.pressed) {
  74. if (shift_esc_shift_mask) {
  75. add_key(KC_GRV);
  76. send_keyboard_report();
  77. } else {
  78. add_key(KC_ESC);
  79. send_keyboard_report();
  80. }
  81. } else {
  82. if (shift_esc_shift_mask) {
  83. del_key(KC_GRV);
  84. send_keyboard_report();
  85. } else {
  86. del_key(KC_ESC);
  87. send_keyboard_report();
  88. }
  89. }
  90. break;
  91. }
  92. }