forked from forks/qmk_firmware
230 lines
11 KiB
C
230 lines
11 KiB
C
/*
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* Dan's Magicforce 68 (MF68) QMK Keyboard
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* Copyright (C) Dan <https://github.com/delivrance>
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*
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* This file is part of Dan's MF68 QMK Keyboard.
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*
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* Dan's MF68 QMK Keyboard is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 3 of the License, or
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* (at your option) any later version.
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*
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* Dan's MF68 QMK Keyboard is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with Dan's MF68 QMK Keyboard. If not, see <https://www.gnu.org/licenses/>.
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*/
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#include QMK_KEYBOARD_H
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#define KC_FN1 MO(_FN)
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#define KC_FN2 LT(_FN, KC_CAPS)
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#define KC_BLUP BL_UP // Backlight increase
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#define KC_BLDN BL_DOWN // Backlight decrease
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#define KC_BLTOG BL_TOGG // Backlight toggle
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#define KC_REC1 DM_REC1 // Record macro 1
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#define KC_PLY1 DM_PLY1 // Play macro 1
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#define KC_REC2 DM_REC2 // Record macro 2
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#define KC_PLY2 DM_PLY2 // Play macro 1
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#define KC_RSTP DM_RSTP // Stop macro recording
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enum {
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_QWERTY,
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_FN
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};
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/* ┏━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━━━━━┓ ┏━━━━┳━━━━┓
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┃Esc ┃ 1! ┃ 2@ ┃ 3# ┃ 4$ ┃ 5% ┃ 6^ ┃ 7& ┃ 8* ┃ 9( ┃ 0) ┃ -_ ┃ =+ ┃ ←─ ┃ ┃Ins ┃PgUp┃
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┣━━━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━━━━━┫ ┣━━━━╋━━━━┫
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┃ Tab ┃ Q ┃ W ┃ E ┃ R ┃ T ┃ Y ┃ U ┃ I ┃ O ┃ P ┃ [{ ┃ ]} ┃ \| ┃ ┃Del ┃PgDn┃
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┣━━━━━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━━━━━━┫ ┗━━━━┻━━━━┛
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┃ Caps ┃ A ┃ S ┃ D ┃ F ┃ G ┃ H ┃ J ┃ K ┃ L ┃ ;: ┃ '" ┃ Enter ┃ Magicforce
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┣━━━━━━━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━━━━━━━━━┫ ┏━━━━┓
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┃ Shift ┃ Z ┃ X ┃ C ┃ V ┃ B ┃ N ┃ M ┃ ,< ┃ .> ┃ /? ┃ Shift ┃ ┃ ↑ ┃ Dan
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┣━━━━━┳━━━━┻┳━━━┻━┳━━┻━━━━┻━━━━┻━━━━┻━━━━┻━━━━┻━━━┳┻━━━━╋━━━━┻┳━━━━━┳━━┳━━┻━╋━━━━╋━━━━┓
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┃Ctrl ┃ GUI ┃ Alt ┃ ━━━━━ ┃ Alt ┃ Fn ┃Ctrl ┃ ┃ ← ┃ ↓ ┃ → ┃
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┗━━━━━┻━━━━━┻━━━━━┻━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━┻━━━━━┻━━━━━┻━━━━━┛ ┗━━━━┻━━━━┻━━━━┛ */
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// clang-format off
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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[_QWERTY] = LAYOUT_68_ansi( /* Default layer
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┏━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━━━━━┓ ┏━━━━┳━━━━┓ */
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QK_GESC, KC_1 , KC_2 , KC_3 , KC_4 , KC_5 , KC_6 , KC_7 , KC_8 , KC_9 , KC_0 ,KC_MINS,KC_EQL , KC_BSPC , KC_INS ,KC_PGUP, /*
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┣━━━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━━━━━┫ ┣━━━━╋━━━━┫ */
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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_LBRC,KC_RBRC, KC_BSLS , KC_DEL ,KC_PGDN, /*
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┣━━━━━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━━━━━━┫ ┗━━━━┻━━━━┛ */
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KC_FN2 , KC_A , KC_S , KC_D , KC_F , KC_G , KC_H , KC_J , KC_K , KC_L ,KC_SCLN,KC_QUOT, KC_ENTER , /*
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┣━━━━━━━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━┳━━┻━━━━━━━━━┫ ┏━━━━┓ */
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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_RSFT , KC_UP , /*
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┣━━━━━┳━━━━┻┳━━━┻━┳━━┻━━━━┻━━━━┻━━━━┻━━━━┻━━━━┻━━━┳┻━━━━╋━━━━┻┳━━━━━┳━━┳━━┻━╋━━━━╋━━━━┓ */
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KC_LCTL ,KC_LGUI ,KC_LALT , KC_SPACE ,KC_RALT , KC_FN1 ,KC_RCTL , KC_LEFT,KC_DOWN,KC_RGHT /*
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┗━━━━━┻━━━━━┻━━━━━┻━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━━┻━━━━━┻━━━━━┻━━━━━┛ ┗━━━━┻━━━━┻━━━━┛ */),
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[_FN] = LAYOUT_68_ansi( /* FN & CAPS layer
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┏━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━┳━━━━━━━━┓ ┏━━━━┳━━━━┓ */
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KC_GRV , KC_F1 , KC_F2 , KC_F3 , KC_F4 , KC_F5 , KC_F6 , KC_F7 , KC_F8 , KC_F9 , KC_F10, KC_F11, KC_F12, KC_RSTP , KC_PSCR,KC_HOME, /*
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┣Esc ┻ 1! ┻ 2@ ┻ 3# ┻ 4$ ┻ 5% ┻ 6^ ┻ 7& ┻ 8* ┻ 9( ┻ 0) ┻ -_ ┻ =+ ┻━┳━ ←─ ━┫ ┣Ins ╋PgUp┫ */
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_______ ,KC_PLY1,KC_PLY2,KC_TRNS,KC_TRNS,KC_TRNS,KC_TRNS,KC_TRNS, KC_7 , KC_8 , KC_9 ,KC_BLDN,KC_BLUP,KC_BLTOG ,KC_TRNS ,KC_END , /*
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┣ Tab ━┻ Q ━┻ W ━┻ E ━┻ R ━┻ T ━┻ Y ━┻ U ━┻ I ━┻ O ━┻ P ━┻ [{ ┻ ]} ┻━ \| ━┫ ┗Del ┻PgDn┛ */
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_______ ,KC_TRNS,KC_TRNS,KC_TRNS,KC_TRNS,KC_TRNS,KC_TRNS,KC_TRNS, KC_4 , KC_5 , KC_6 ,KC_TRNS, KC_TRNS , /*
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┣━ Caps ━┻ A ━┻ S ━┻ D ━┻ F ━┻ G ━┻ H ━┻ J ━┻ K ━┻ L ━┻ ;: ┻ '" ┻━ Enter ━┫ ┏━━━━┓ */
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_______ ,KC_REC1,KC_REC2,KC_TRNS,KC_TRNS,KC_MSTP,KC_TRNS,KC_MUTE, KC_1 , KC_2 , KC_3 ,KC_TRNS , KC_VOLU, /*
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┣━━ Shift ━┻ Z ━┻ X ━┻ C ━┻ V ━┻ B ━┻ N ━┻ M ━┻ ,< ┻ .> ╋ /? ┻┳━━ Shift ━━┻━╋ ↑ ━╋━━━━┓ */
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_______,KC_TRNS ,KC_TRNS , KC_MPLY , KC_0 ,KC_TRNS ,KC_TRNS , KC_MPRV,KC_VOLD,KC_MNXT /*
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┗Ctrl ┻ GUI ┻ Alt ┻━━━━━━━━━━━━ Space ━━━━━━━━━━━━┻ Alt ┻ Fn ━┻Ctrl ┛ ┗ ← ━┻ ↓ ━┻ → ━┛ */)
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};
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// clang-format on
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// Initialization code
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// -------------------
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void keyboard_post_init_user(void) {
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backlight_level(2);
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}
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// Custom backlight driver
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// -----------------------
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// http://jared.geek.nz/2013/feb/linear-led-pwm
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float cie1931(float x) {
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x *= 100.0 / BACKLIGHT_LEVELS;
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float y;
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if (x < 8) {
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y = x / 902.3;
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} else {
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y = (x + 16.0) / 116.0;
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y = y * y * y;
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}
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return round(y * 255);
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}
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void backlight_init_ports(void) {
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setPinOutput(BACKLIGHT_PIN);
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writePinLow(BACKLIGHT_PIN);
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TCCR1A = _BV(COM1A1) | _BV(WGM11);
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TCCR1B = _BV(WGM13) | _BV(WGM12) | _BV(CS10);
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ICR1 = 0xFFU; // Set PWM levels to 255 (enables high-frequency PWM)
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}
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void backlight_set(uint8_t level) {
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if (level > BACKLIGHT_LEVELS) {
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level = BACKLIGHT_LEVELS;
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}
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if (level == 0) {
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TCCR1A &= ~(_BV(COM1A1)); // Disable PWM
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} else {
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TCCR1A |= _BV(COM1A1); // Enable PWM
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}
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OCR1A = cie1931(level);
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}
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// Custom macro hooks
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// ------------------
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// Redefine with lower delay
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void led_blink(void) {
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backlight_toggle();
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wait_ms(25);
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backlight_toggle();
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}
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void dynamic_macro_record_start_user(int8_t direction) {
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led_blink();
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}
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void dynamic_macro_play_user(int8_t direction) {
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led_blink();
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}
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void dynamic_macro_record_key_user(int8_t direction, keyrecord_t *record) {
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led_blink();
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}
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void dynamic_macro_record_end_user(int8_t direction) {
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led_blink();
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}
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// Custom Caps Lock backlight behaviour
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// ------------------------------------
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void led_set_user(uint8_t usb_led) {
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// This exists because I don't like the backlight to turn OFF when the Caps Lock is ON.
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// That is, this will turn the backlight ON (at half the brightness) when the Caps Lock is ON as well.
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static bool prev_is_caps_on;
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bool is_caps_on = IS_LED_ON(usb_led, USB_LED_CAPS_LOCK);
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if (prev_is_caps_on != is_caps_on) {
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prev_is_caps_on = is_caps_on;
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if (is_caps_on) {
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backlight_set(BACKLIGHT_LEVELS / 2);
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} else {
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if (is_backlight_enabled()) {
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backlight_set(get_backlight_level());
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} else {
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backlight_set(0);
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}
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}
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}
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// Turn on the Pro Micro's on-board LEDs for Caps Lock
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if (IS_LED_ON(usb_led, USB_LED_CAPS_LOCK)) {
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// Set to low
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setPinOutput(B0);
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writePinLow(B0);
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setPinOutput(D5);
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writePinLow(D5);
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} else {
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// Set to Hi-Z
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setPinInput(B0);
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setPinInput(D5);
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}
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}
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// Backlight idle timeout feature
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// ------------------------------
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static uint32_t timer;
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static bool is_idle;
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void matrix_scan_user(void) {
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// Check the timer only if the keyboard is not idle
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if (!is_idle) {
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if (timer_elapsed32(timer) >= (uint32_t) BACKLIGHT_IDLE_TIMEOUT * 1000) {
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is_idle = true;
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// Both backlight_level and backlight_level_noeeprom modify the global backlight config (not useful)
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// Instead, use backlight_set in order to restore the current backlight level later on
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backlight_set(0);
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}
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}
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}
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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// Reset timer on each keypress
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timer = timer_read32();
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// Enable backlight back only when keyboard is idling (which implies the backlight was turned off previously)
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if (is_idle) {
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is_idle = false;
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// Set back the original backlight level only if it is actually enabled globally
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if (is_backlight_enabled()) {
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// The current backlight level can be obtained with get_backlight_level
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backlight_set(get_backlight_level());
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}
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}
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return true;
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}
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