286 lines
13 KiB
C
286 lines
13 KiB
C
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#include QMK_KEYBOARD_H
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#include <string.h>
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#include <stdio.h>
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#include "taphold.h"
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#include "ds1307.h"
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/* Note: don't forget there's some more code in qmk_firmware/users/anderson dir */
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#define _MAIN 0
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#define _ALPHA 1
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#define _BETA 2
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enum custom_keycodes {
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KC_MAIN = SAFE_RANGE,
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KC_ALPHA,
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KC_BETA,
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KC_SET_TIME,
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};
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/* TapHold is my own implementation of the `LT` macro. It's processed in `process_record_user()`. */
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#define TAPHOLD_CONFIG_SIZE 3
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taphold_t taphold_config[TAPHOLD_CONFIG_SIZE] = {
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{.key=KC_ALPHA, .mode=TAPHOLD_LAYER, .shortAction=KC_ESC, .longAction=_ALPHA},
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{.key=KC_BETA, .mode=TAPHOLD_LAYER, .shortAction=KC_EQL, .longAction=_BETA},
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{.key=KC_RCTRL, .mode=TAPHOLD_MOD, .shortAction=KC_MINS, .longAction=KC_LCTRL},
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};
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uint16_t taphold_config_size = TAPHOLD_CONFIG_SIZE;
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uint32_t taphold_timeout = 90;
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/* Colors */
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uint32_t layer_colors[3] = {
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[_MAIN] = 0xFF0010,
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[_ALPHA] = 0x4020FF,
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[_BETA] = 0x20FF00,
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};
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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/* Main layer
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│MUTE │ │L_MOD│
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┏━━━━━┳━━━━━┯━━━━━┯━━━━━┯━━━━━┯━━━━━┳━━━━━┯━━━━━┯━━━━━┯━━━━━┯━━━━━┳━━━━━┓
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┃ TAB ┃ Q │ W │ E │ R │ T ┃ Y │ U │ I │ O │ P ┃ BSP ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃𝛼/ESC┃ A │ S │ D │ F │ G ┃ H │ J │ K │ L │ ; ┃ RET ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃SHIFT┃ Z │ X │ C │ V │ B ┃ N │ M │ , │ . │ / ┃CTL/-┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃LCTRL┃ │ │ ALT │ GUI │SPACE┃SPACE│ 𝛽/= │ ' │ │ ┃ \ ┃
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┗━━━━━┻━━━━━┷━━━━━┷━━━━━┷━━━━━┷━━━━━┻━━━━━┷━━━━━┷━━━━━┷━━━━━┷━━━━━┻━━━━━┛
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*/
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[_MAIN] = LAYOUT( \
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KC_MUTE, _______, \
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KC_TAB, KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KC_BSPC, \
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KC_ALPHA,KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KC_SCLN, KC_ENT, \
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KC_LSFT, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KC_SLSH, KC_RCTRL,\
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KC_LCTRL,_______, _______, KC_LALT, KC_LGUI, KC_SPC, KC_SPC, KC_BETA, KC_QUOT, _______, _______, KC_BSLS \
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),
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/* Alpha layer (𝛼)
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│ │ │ │
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┏━━━━━┳━━━━━┯━━━━━┯━━━━━┯━━━━━┯━━━━━┳━━━━━┯━━━━━┯━━━━━┯━━━━━┯━━━━━┳━━━━━┓
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┃ ┃PREV │PLAY │NEXT │ │NUMLK┃ - │ ^^^ │ ^ │ vvv │ ~ ┃ DEL ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃ ┃ │VOL -│VOL +│ │CPSLK┃HOME │ <-- │ v │ --> │ ` ┃ \ ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃ ┃ │ │ │ │SCRLK┃ END │ = │ [ │ ] │ ( ┃ ) ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃ ┃ │ │ │ │ ┃ │ │ │ │ ┃ ┃
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┗━━━━━┻━━━━━┷━━━━━┷━━━━━┷━━━━━┷━━━━━┻━━━━━┷━━━━━┷━━━━━┷━━━━━┷━━━━━┻━━━━━┛
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*/
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[_ALPHA] = LAYOUT( \
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_______, _______, \
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_______, KC_MPRV, KC_MPLY, KC_MNXT, _______, KC_NLCK, KC_MINS, KC_PGUP, KC_UP, KC_PGDN, KC_TILD, KC_DEL, \
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_______, _______, KC_VOLD, KC_VOLU, _______, KC_CAPS, KC_HOME, KC_LEFT, KC_DOWN, KC_RIGHT,KC_GRV, KC_BSLS, \
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_______, _______, _______, _______, _______, KC_SLCK, KC_END, KC_EQL, KC_LBRC, KC_RBRC, KC_LPRN ,KC_RPRN, \
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_______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______ \
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),
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/* Beta layer (𝛽)
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│ │ │ │
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┏━━━━━┳━━━━━┯━━━━━┯━━━━━┯━━━━━┯━━━━━┳━━━━━┯━━━━━┯━━━━━┯━━━━━┯━━━━━┳━━━━━┓
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┃ RGB ┃ 1 │ 2 │ 3 │ 4 │ 5 ┃ 6 │ 7 │ 8 │ 9 │ 0 ┃ F12 ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃L_MOD┃ F1 │ F2 │ F3 │ F4 │ F5 ┃ F6 │ F7 │ F8 │ F9 │ F10 ┃ F11 ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃ ┃RESET│DEBUG│ │ │TIME ┃SLEEP│ │ { │ } │PTSCR┃ ┃
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┣━━━━━╉─────┼─────┼─────┼─────┼─────╂─────┼─────┼─────┼─────┼─────╊━━━━━┫
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┃ ┃ │ │ │ │ ┃ │ │ │ │ ┃ ┃
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┗━━━━━┻━━━━━┷━━━━━┷━━━━━┷━━━━━┷━━━━━┻━━━━━┷━━━━━┷━━━━━┷━━━━━┷━━━━━┻━━━━━┛
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*/
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[_BETA] = LAYOUT( \
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_______, _______, \
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RGB_TOG, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_F12,
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_______, KC_F1, KC_F2, KC_F3, KC_F4, KC_F5, KC_F6, KC_F7, KC_F8, KC_F9, KC_F10, KC_F11, \
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_______, RESET, DEBUG, _______, _______, KC_SET_TIME,KC_SLEP,_______,KC_LCBR,KC_RCBR, KC_PSCR, _______, \
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_______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______ \
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)
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};
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static bool alpha_pressed = false;
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static bool beta_pressed = false;
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static bool ctrl_pressed = false;
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static bool alt_pressed = false;
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static bool shift_pressed = false;
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static bool gui_pressed = false;
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void keyboard_post_init_user(void) {
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/* debug_enable = true; */
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/* debug_matrix = true; */
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}
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void eeconfig_init_user(void) {
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set_unicode_input_mode(UC_LNX);
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}
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static uint32_t last_update = 0;
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static uint8_t hours, minutes, seconds;
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void matrix_scan_user(void) {
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uint32_t now = timer_read32();
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if (now - last_update > 500) {
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ds1307_get_time(&hours, &minutes, &seconds);
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last_update = now;
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}
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}
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static bool is_in_set_time = false;
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static char new_time[6];
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static uint8_t new_time_index = 0;
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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if (keycode == KC_SET_TIME && record->event.pressed) {
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is_in_set_time = true;
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new_time_index = 0;
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} else if (is_in_set_time) {
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if (!record->event.pressed && keycode >= KC_1 && keycode <= KC_0) {
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new_time[new_time_index++] = (keycode == KC_0) ? 0 : keycode - KC_1 + 1;
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if (new_time_index == 6) {
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is_in_set_time = false;
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ds1307_set_time(
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(new_time[0]) * 10 + (new_time[1]),
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(new_time[2]) * 10 + (new_time[3]),
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(new_time[4]) * 10 + (new_time[5])
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);
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for (int i = 0; i < 6; i++) {
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tap_code(KC_BSPACE);
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}
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}
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}
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}
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if (keycode == KC_LCTRL || keycode == KC_RCTRL) {
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ctrl_pressed = record->event.pressed;
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} else if (keycode == KC_LALT) {
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alt_pressed = record->event.pressed;
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} else if (keycode == KC_LSFT) {
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shift_pressed = record->event.pressed;
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} else if (keycode == KC_LGUI) {
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gui_pressed = record->event.pressed;
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} else if (keycode == KC_ALPHA) {
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alpha_pressed = record->event.pressed;
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} else if (keycode == KC_BETA) {
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beta_pressed = record->event.pressed;
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}
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if (keycode == RESET) {
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rgblight_setrgb(255, 255, 0);
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}
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if (keycode == KC_LCTRL) {
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/* Some Overlay1_Enable fuckery! */
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(record->event.pressed ? register_code : unregister_code)(KC_LCTRL);
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return false;
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}
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return taphold_process(keycode, record);
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}
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void encoder_update_user(uint8_t index, bool clockwise) {
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if (index == 0) {
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if (!alpha_pressed) {
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tap_code(clockwise ? KC_VOLD : KC_VOLU);
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} else {
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tap_code(clockwise ? KC_MPRV : KC_MNXT);
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}
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} else if (index == 1) {
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if (!alpha_pressed) {
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tap_code(clockwise ? KC_UP : KC_DOWN);
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} else {
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tap_code(clockwise ? KC_PGUP : KC_PGDN);
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}
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}
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}
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#ifdef OLED_DRIVER_ENABLE
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oled_rotation_t oled_init_user(oled_rotation_t rotation) {
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return OLED_ROTATION_0;
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}
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void oled_task_user(void) {
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/* Host Keyboard Layer Status */
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uint8_t current_layer = get_highest_layer(layer_state);
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/* Layer */
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static const char PROGMEM icons[4][3][6] = {
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{
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{ 0x80, 0x81, 0x82, 0x83, 0x84, 0 },
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{ 0xa0, 0xa1, 0xa2, 0xa3, 0xa4, 0 },
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{ 0xc0, 0xc1, 0xc2, 0xc3, 0xc4, 0 }
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},
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{
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{ 0x85, 0x86, 0x87, 0x88, 0x89, 0 },
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{ 0xa5, 0xa6, 0xa7, 0xa8, 0xa9, 0 },
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{ 0xc5, 0xc6, 0xc7, 0xc8, 0xc9, 0 }
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},
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{
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{ 0x8a, 0x8b, 0x8c, 0x8d, 0x8e, 0 },
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{ 0xaa, 0xab, 0xac, 0xad, 0xae, 0 },
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{ 0xca, 0xcb, 0xcc, 0xcd, 0xce, 0 }
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},
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{
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{ 0x8f, 0x90, 0x91, 0x92, 0x93, 0 },
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{ 0xaf, 0xb0, 0xb1, 0xb2, 0xb3, 0 },
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{ 0xcf, 0xd0, 0xd1, 0xd2, 0xd3, 0 }
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}
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};
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uint8_t icon_index = current_layer == _MAIN ? 3 : current_layer == _ALPHA ? 1 : 2;
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for (int i = 0; i < 3; i++) {
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oled_set_cursor(0, i + 1);
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oled_write_P(icons[icon_index][i], false);
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}
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/* Time */
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oled_set_cursor(6, 0);
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// oled_write_P(PSTR("-D48 Custom-\n"), false);
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char buf[16];
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sprintf(
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buf,
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"%02d:%02d:%02d", hours, minutes, seconds
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);
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oled_write(buf, false);
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/* Modifiers */
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static const char PROGMEM mods[][2] = {
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{0x94, 0x95}, // CTL
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{0x96, 0x97}, // ALT
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{0x98, 0x99}, // GUI
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{0x9a, 0x9b}, // SFT
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/* {0x9c, 0x9d}, // EMPTY */
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};
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char mod_data[13] = "\x9c\x9d\x9c\x9d\x9c\x9d\x9c\x9d \x07\x07\x07\0";
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if (ctrl_pressed) strncpy(mod_data, mods[0], 2);
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if (alt_pressed) strncpy(mod_data + 2, mods[1], 2);
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if (gui_pressed) strncpy(mod_data + 4, mods[2], 2);
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if (shift_pressed) strncpy(mod_data + 6, mods[3], 2);
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led_t led_usb_state = host_keyboard_led_state();
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if (led_usb_state.num_lock) mod_data[9] = 'N';
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if (led_usb_state.caps_lock) mod_data[10] = 'C';
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if (led_usb_state.scroll_lock) mod_data[11] = 'S';
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oled_set_cursor(6, 1);
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oled_write(mod_data, false);
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/* Matrix */
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static const char PROGMEM matrix_chars[] = {
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0xb4, // None
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0xb5, // Upper
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0xb6, // Lower
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0xb7 // Both
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};
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for (uint8_t row = 1; row < MATRIX_ROWS; row += 2) {
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// Skip first row because it's used by the encoders.
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uint16_t bits1 = matrix_get_row(row);
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uint16_t bits2 = matrix_get_row(row + 1);
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for (uint8_t col = 0; col < MATRIX_COLS; col++) {
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uint8_t matrix_char = matrix_chars[((bits1 & (1 << col)) ? 1 : 0) | ((bits2 & (1 << col)) ? 2 : 0)];
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oled_set_cursor(6 + col, 2 + (row - 1) / 2);
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oled_write_char(matrix_char, false);
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}
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}
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}
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#endif
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