#include QMK_KEYBOARD_H
enum keyboard_layers {
BASE, ARROWFN, MOUSE, MIDI_BASE, MIDI_CHORDS, MORSE, };
enum morse_macros {
MC_0 = M(0),
MC_1 = M(1),
MC_2 = M(2),
MC_3 = M(3),
MC_4 = M(4),
MC_5 = M(5),
MC_6 = M(6),
MC_7 = M(7),
MC_8 = M(8),
MC_9 = M(9),
MC_A = M(10),
MC_B = M(11),
MC_C = M(12),
MC_D = M(13),
MC_E = M(14),
MC_F = M(15),
MC_G = M(16),
MC_H = M(17),
MC_I = M(18),
MC_J = M(19),
MC_K = M(20),
MC_L = M(21),
MC_M = M(22),
MC_N = M(23),
MC_O = M(24),
MC_P = M(25),
MC_Q = M(26),
MC_R = M(27),
MC_S = M(28),
MC_T = M(29),
MC_U = M(30),
MC_V = M(31),
MC_W = M(32),
MC_X = M(33),
MC_Y = M(34),
MC_Z = M(35),
MC_DOT = M(36),
MC_COMM = M(37),
MC_APOS = M(38),
MC_SLSH = M(39),
MC_SCLN = M(40),
MC_EQL = M(41),
MC_MINS = M(42),
MC_SPACE = M(43),
};
enum custom_keys {
TFS = LCTL(LALT(KC_DEL)), MAGSYS = SAFE_RANGE, MC_LSFT, MC_RSFT,
MI_CH_C,
MI_CH_Cs,
MI_CH_Db = MI_CH_Cs,
MI_CH_D,
MI_CH_Ds,
MI_CH_Eb = MI_CH_Ds,
MI_CH_E,
MI_CH_F,
MI_CH_Fs,
MI_CH_Gb = MI_CH_Fs,
MI_CH_G ,
MI_CH_Gs,
MI_CH_Ab = MI_CH_Gs,
MI_CH_A,
MI_CH_As,
MI_CH_Bb = MI_CH_As,
MI_CH_B,
MI_CH_Cm,
MI_CH_Csm,
MI_CH_Dbm = MI_CH_Csm,
MI_CH_Dm,
MI_CH_Dsm,
MI_CH_Ebm = MI_CH_Dsm,
MI_CH_Em,
MI_CH_Fm,
MI_CH_Fsm,
MI_CH_Gbm = MI_CH_Fsm,
MI_CH_Gm,
MI_CH_Gsm,
MI_CH_Abm = MI_CH_Gsm,
MI_CH_Am,
MI_CH_Asm,
MI_CH_Bbm = MI_CH_Asm,
MI_CH_Bm,
MI_CH_CDom7,
MI_CH_CsDom7,
MI_CH_DbDom7 = MI_CH_CsDom7,
MI_CH_DDom7,
MI_CH_DsDom7,
MI_CH_EbDom7 = MI_CH_DsDom7,
MI_CH_EDom7,
MI_CH_FDom7,
MI_CH_FsDom7,
MI_CH_GbDom7 = MI_CH_FsDom7,
MI_CH_GDom7,
MI_CH_GsDom7,
MI_CH_AbDom7 = MI_CH_GsDom7,
MI_CH_ADom7,
MI_CH_AsDom7,
MI_CH_BbDom7 = MI_CH_AsDom7,
MI_CH_BDom7,
MI_CH_CDim7,
MI_CH_CsDim7,
MI_CH_DbDim7 = MI_CH_CsDim7,
MI_CH_DDim7,
MI_CH_DsDim7,
MI_CH_EbDim7 = MI_CH_DsDim7,
MI_CH_EDim7,
MI_CH_FDim7,
MI_CH_FsDim7,
MI_CH_GbDim7 = MI_CH_FsDim7,
MI_CH_GDim7,
MI_CH_GsDim7,
MI_CH_AbDim7 = MI_CH_GsDim7,
MI_CH_ADim7,
MI_CH_AsDim7,
MI_CH_BbDim7 = MI_CH_AsDim7,
MI_CH_BDim7,
};
const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
[BASE] = LAYOUT(
KC_ESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_LBRC, KC_RBRC, KC_BSLS, KC_GRV, \
KC_TAB, KC_QUOT, KC_COMM, KC_DOT, KC_P, KC_Y, KC_F, KC_G, KC_C, KC_R, KC_L, KC_SLSH, KC_EQL, KC_BSPC, \
CTL_T(KC_ESC), KC_A, KC_O, KC_E, KC_U, KC_I, KC_D, KC_H, KC_T, KC_N, KC_S, KC_MINS, KC_NO, MT(MOD_RCTL, KC_ENT), \
KC_LSPO, KC_NO, KC_SCLN, KC_Q, KC_J, KC_K, KC_X, KC_B, KC_M, KC_W, KC_V, KC_Z, KC_RSPC, KC_NO, \
MO(2), KC_LGUI, KC_LALT, LT(1, KC_SPACE), ALGR_T(KC_APP), KC_RGUI, OSM(MOD_LCTL | MOD_LSFT), OSM(MOD_LCTL | MOD_LALT)
),
[ARROWFN] = LAYOUT(
KC_TRNS, KC_F1, KC_F2, KC_F3, KC_F4, KC_F5, KC_F6, KC_F7, KC_F8, KC_F9, KC_F10, KC_F11, KC_F12, TO(3), TO(5), \
KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_PGUP, KC_UP, KC_NO, KC_NO, KC_NO, KC_INS, KC_DEL, \
KC_CAPS, KC_HOME, KC_NO, KC_END, KC_NO, KC_NO, KC_NO, KC_LEFT, KC_DOWN, KC_RIGHT, KC_NO, KC_NO, KC_TRNS, \
KC_TRNS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_SPACE, KC_PGDN, KC_PSCR, KC_SLCK, KC_PAUS, KC_NO, KC_TRNS, KC_NO, \
KC_NO, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS
),
[MOUSE] = LAYOUT(
RESET, KC_F13, KC_F14, KC_F15, KC_F16, KC_F17, KC_F18, KC_F19, KC_F20, KC_F21, KC_F22, KC_F23, KC_F24, KC_NO, KC_NO, \
DEBUG, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_BTN1, KC_MS_UP, KC_BTN2, KC_WH_U, KC_NO, KC_NO, KC_NO, \
TFS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_MS_LEFT, KC_MS_DOWN, KC_MS_RIGHT, KC_WH_D, KC_BTN3, KC_NO, KC_TRNS, \
MAGSYS, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_NO, KC_TRNS, KC_NO, \
KC_TRNS, KC_TRNS, KC_TRNS, KC_POWER, KC_TRNS, KC_TRNS, KC_NO, KC_NO
),
[MIDI_BASE] = LAYOUT(
TO(0), MI_CH_C, MI_CH_G, MI_CH_D, MI_CH_A, MI_CH_E, MI_CH_B, MI_CH_Gb, MI_CH_Db, MI_CH_Ab, MI_CH_Eb, MI_CH_Bb, MI_CH_F, KC_NO, TO(4), \
MI_OCTU, KC_NO, MI_Cs, MI_Ds, KC_NO, MI_Fs, MI_Gs, MI_As, KC_NO, MI_Cs_1, MI_Ds_1, KC_NO, KC_NO, KC_NO, \
MI_OCTD, MI_C, MI_D, MI_E, MI_F, MI_G, MI_A, MI_B, MI_C_1, MI_D_1, MI_E_1, MI_F_1, KC_NO, KC_NO, \
MI_CH_Cm, KC_NO, MI_CH_Gm, MI_CH_Dm, MI_CH_Am, MI_CH_Em, MI_CH_Bm, MI_CH_Gbm, MI_CH_Dbm, MI_CH_Abm, MI_CH_Ebm, MI_CH_Bbm, MI_CH_Fm, KC_NO, \
KC_NO, KC_NO, KC_NO, MI_ALLOFF, KC_NO, KC_NO, KC_NO, KC_NO
),
[MIDI_CHORDS] = LAYOUT(
TO(0), MI_CH_C, MI_CH_G, MI_CH_D, MI_CH_A, MI_CH_E, MI_CH_B, MI_CH_Gb, MI_CH_Db, MI_CH_Ab, MI_CH_Eb, MI_CH_Bb, MI_CH_F, TO(3), KC_NO, \
MI_OCTU, MI_CH_Cm, MI_CH_Gm, MI_CH_Dm, MI_CH_Am, MI_CH_Em, MI_CH_Bm, MI_CH_Gbm, MI_CH_Dbm, MI_CH_Abm, MI_CH_Ebm, MI_CH_Bbm, MI_CH_Fm, KC_NO, \
MI_OCTD, MI_CH_CDom7, MI_CH_GDom7, MI_CH_DDom7, MI_CH_ADom7, MI_CH_EDom7, MI_CH_BDom7, MI_CH_GbDom7, MI_CH_DbDom7, MI_CH_AbDom7, MI_CH_EbDom7, MI_CH_BbDom7, KC_NO, MI_CH_FDom7, \
MI_CH_CDim7, KC_NO, MI_CH_GDim7, MI_CH_DDim7, MI_CH_ADim7, MI_CH_EDim7, MI_CH_BDim7, MI_CH_GbDim7, MI_CH_DbDim7, MI_CH_AbDim7, MI_CH_EbDim7, MI_CH_BbDim7, MI_CH_FDim7, KC_NO, \
KC_NO, KC_NO, KC_NO, MI_ALLOFF, KC_NO, KC_NO, KC_NO, KC_NO
),
[MORSE] = LAYOUT(
TO(0), MC_1, MC_2, MC_3, MC_4, MC_5, MC_6, MC_7, MC_8, MC_9, MC_0, KC_NO, KC_NO, KC_NO, KC_NO, \
KC_TAB, MC_APOS, MC_COMM, MC_DOT, MC_P, MC_Y, MC_F, MC_G, MC_C, MC_R, MC_L, MC_SLSH, MC_EQL, KC_BSPC, \
KC_NO, MC_A, MC_O, MC_E, MC_U, MC_I, MC_D, MC_H, MC_T, MC_N, MC_S, MC_MINS, KC_NO, KC_ENT, \
MC_LSFT, KC_NO, MC_SCLN, MC_Q, MC_J, MC_K, MC_X, MC_B, MC_M, MC_W, MC_V, MC_Z, MC_RSFT, KC_NO, \
KC_NO, KC_NO, KC_NO, MC_SPACE, KC_NO, KC_NO, KC_NO, KC_NO
),
};
int mc_shift_on = false;
const macro_t *action_get_macro(keyrecord_t *record, uint8_t id, uint8_t opt) {
switch(id) {
case 0: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(MINS), T(DOT), T(MINS), T(MINS), T(DOT), T(MINS), T(SPACE), END); }
else {
return MACRO(T(MINS), T(MINS), T(MINS), T(MINS), T(MINS), T(SPACE), END); }
}
break;
case 1: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(MINS), T(DOT), T(MINS), T(DOT), T(MINS), T(MINS), T(SPACE), END); }
else {
return MACRO(T(DOT), T(MINS), T(MINS), T(MINS), T(MINS), T(SPACE), END); }
}
break;
case 2: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(MINS), T(MINS), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
else {
return MACRO(T(DOT), T(DOT), T(MINS), T(MINS), T(MINS), T(SPACE), END); }
}
break;
case 3: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(DOT), T(MINS), T(MINS), T(SPACE), END); }
break;
case 4: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(DOT), T(DOT), T(MINS), T(DOT), T(DOT), T(MINS), T(SPACE), END); }
else {
return MACRO(T(DOT), T(DOT), T(DOT), T(DOT), T(MINS), T(SPACE), END); }
}
break;
case 5: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
break;
case 6: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
break;
case 7: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(MINS), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
else {
return MACRO(T(MINS), T(MINS), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
}
break;
case 8: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(MINS), T(DOT), T(DOT), T(SPACE), END); }
break;
case 9: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(MINS), T(DOT), T(MINS), T(MINS), T(DOT), T(SPACE), END); }
else {
return MACRO(T(MINS), T(MINS), T(MINS), T(MINS), T(DOT), T(SPACE), END); }
}
break;
case 10: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(SPACE), END); }
break;
case 11: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
break;
case 12: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
break;
case 13: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(DOT), T(SPACE), END); }
break;
case 14: if (record->event.pressed) {
return MACRO(T(DOT), T(SPACE), END); }
break;
case 15: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
break;
case 16: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(DOT), T(SPACE), END); }
break;
case 17: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
break;
case 18: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(SPACE), END); }
break;
case 19: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(MINS), T(MINS), T(SPACE), END); }
break;
case 20: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(MINS), T(SPACE), END); }
break;
case 21: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(DOT), T(DOT), T(SPACE), END); }
break;
case 22: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(SPACE), END); }
break;
case 23: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(SPACE), END); }
break;
case 24: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(MINS), T(SPACE), END); }
break;
case 25: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(MINS), T(DOT), T(SPACE), END); }
break;
case 26: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(DOT), T(MINS), T(SPACE), END); }
break;
case 27: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(DOT), T(SPACE), END); }
break;
case 28: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(DOT), T(SPACE), END); }
break;
case 29: if (record->event.pressed) {
return MACRO(T(MINS), T(SPACE), END); }
break;
case 30: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(MINS), T(SPACE), END); }
break;
case 31: if (record->event.pressed) {
return MACRO(T(DOT), T(DOT), T(DOT), T(MINS), T(SPACE), END); }
break;
case 32: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(MINS), T(SPACE), END); }
break;
case 33: if (record->event.pressed) {
return MACRO(T(MINS), T(DOT), T(DOT), T(MINS), T(SPACE), END); }
break;
case 34: if (record->event.pressed) {
if (mc_shift_on == true) {
}
return MACRO(T(MINS), T(DOT), T(MINS), T(MINS), T(SPACE), END); }
break;
case 35: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(DOT), T(DOT), T(SPACE), END); }
break;
case 36: if (record->event.pressed) {
return MACRO(T(DOT), T(MINS), T(DOT), T(MINS), T(DOT), T(MINS), T(SPACE), END); }
break;
case 37: if (record->event.pressed) {
return MACRO(T(MINS), T(MINS), T(DOT), T(DOT), T(MINS), T(MINS), T(SPACE), END); }
break;
case 38: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(MINS), T(DOT), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
else {
return MACRO(T(DOT), T(MINS), T(MINS), T(MINS), T(MINS), T(DOT), T(SPACE), END); }
}
break;
case 39: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(DOT), T(MINS), T(MINS), T(DOT), T(DOT), T(SPACE), END); }
else {
return MACRO(T(MINS), T(DOT), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
}
break;
case 40: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(MINS), T(MINS), T(MINS), T(DOT), T(DOT), T(DOT), T(SPACE), END); }
else {
return MACRO(T(MINS), T(DOT), T(MINS), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
}
break;
case 41: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(MINS), T(DOT), T(MINS), T(DOT), T(SPACE), END); }
else {
return MACRO(T(MINS), T(DOT), T(DOT), T(DOT), T(MINS), T(SPACE), END); }
}
break;
case 42: if (record->event.pressed) {
if (mc_shift_on == true) {
return MACRO(T(DOT), T(DOT), T(MINS), T(MINS), T(DOT), T(MINS), T(SPACE), END); }
else {
return MACRO(T(MINS), T(DOT), T(DOT), T(DOT), T(DOT), T(MINS), T(SPACE), END); }
}
break;
case 43: if (record->event.pressed) {
return MACRO(T(BSLS), T(SPACE), END); }
break;
}
return MACRO_NONE;
}
bool process_record_user (uint16_t keycode, keyrecord_t *record) {
uint16_t root_note = MIDI_INVALID_NOTE;
switch(keycode) {
case MAGSYS: if (record->event.pressed) {
if (keyboard_report->mods & (MOD_BIT(KC_LALT))) {
unregister_code(KC_PSCR);
unregister_code(KC_LALT);
} else {
register_code(KC_LALT);
register_code(KC_PSCR);
}
}
break;
case MC_LSFT ... MC_RSFT:
if (record->event.pressed) {
mc_shift_on = true;
}
else {
mc_shift_on = false;
}
break;
case MI_CH_C ... MI_CH_B: root_note = keycode - MI_CH_C + MI_C;
process_midi(root_note, record);
process_midi(root_note + 4, record); process_midi(root_note + 7, record); break;
case MI_CH_Cm ... MI_CH_Bm: root_note = keycode - MI_CH_Cm + MI_C;
process_midi(root_note, record);
process_midi(root_note + 3, record); process_midi(root_note + 7, record); break;
case MI_CH_CDom7 ... MI_CH_BDom7: root_note = keycode - MI_CH_CDom7 + MI_C;
process_midi(root_note, record);
process_midi(root_note + 4, record); process_midi(root_note + 10, record); break;
case MI_CH_CDim7 ... MI_CH_BDim7: root_note = keycode - MI_CH_CDim7 + MI_C;
process_midi(root_note, record);
process_midi(root_note + 3, record); process_midi(root_note - 3, record); break;
}
return true;
}