Implement backlight scheme of TentaPad
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1fe0ffc5be
commit
641490bbd2
@ -253,15 +253,13 @@ ISR(TIMER1_COMPA_vect)
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{
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static uint8_t pwm = 0;
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pwm++;
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// LED on
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if (pwm == 0) {
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for (uint8_t i = 0; i < LED_COUNT; i++) {
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for (uint8_t i = 0; i < LED_COUNT; i++) {
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// LED on
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if (pwm == 0) {
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softpwm_led_on(i);
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softpwm_led_ocr[i] = softpwm_led_ocr_buff[i];
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}
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}
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// LED off
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for (uint8_t i = 0; i < LED_COUNT; i++) {
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// LED off
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if (pwm == softpwm_led_ocr[i]) {
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softpwm_led_off(i);
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}
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@ -20,35 +20,87 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#include <avr/pgmspace.h>
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#include "backlight.h"
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#include "softpwm_led.h"
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#include "action.h"
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#include "keymap_common.h"
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#ifdef BACKLIGHT_ENABLE
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static const uint8_t backlight_table[] PROGMEM = {
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0, 16, 128, 255
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static uint8_t backlight_mode;
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static const uint8_t backlight_brightness = 0xFF;
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enum {
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LED_KEY_1 = 0,
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LED_KEY_2,
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LED_KEY_SIDE,
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LED_BOARD_SIDE
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};
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void backlight_set(uint8_t level)
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{
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backlight_mode = level;
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softpwm_led_set_all(0);
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fading_led_set_duration(2);
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fading_led_set_direction(FADING_LED_FADE_OUT);
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breathing_led_set_duration(3);
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switch (level) {
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case 1:
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case 2:
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case 3:
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softpwm_led_enable();
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case 0:
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softpwm_led_disable();
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fading_led_disable_all();
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breathing_led_disable_all();
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softpwm_led_set_all(pgm_read_byte(&backlight_table[level]));
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softpwm_led_on(LED_KEY_SIDE);
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softpwm_led_on(LED_BOARD_SIDE);
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break;
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case 1:
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softpwm_led_set(LED_BOARD_SIDE, backlight_brightness);
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fading_led_disable_all();
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fading_led_enable(LED_KEY_SIDE);
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breathing_led_disable_all();
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softpwm_led_enable();
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break;
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case 2:
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softpwm_led_set(LED_KEY_SIDE, backlight_brightness);
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fading_led_disable_all();
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fading_led_enable(LED_BOARD_SIDE);
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breathing_led_disable_all();
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softpwm_led_enable();
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break;
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case 3:
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fading_led_disable_all();
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breathing_led_disable_all();
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breathing_led_enable(LED_KEY_SIDE);
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breathing_led_enable(LED_BOARD_SIDE);
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softpwm_led_enable();
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break;
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case 4:
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case 5:
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case 6:
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softpwm_led_set(LED_KEY_SIDE, backlight_brightness);
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breathing_led_disable_all();
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breathing_led_enable(LED_BOARD_SIDE);
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fading_led_disable_all();
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softpwm_led_enable();
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breathing_led_enable_all();
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breathing_led_set_duration_all(6 - level);
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break;
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case 0:
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default:
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case 5:
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softpwm_led_set(LED_BOARD_SIDE, backlight_brightness);
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breathing_led_disable_all();
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breathing_led_enable(LED_KEY_SIDE);
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fading_led_disable_all();
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softpwm_led_enable();
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break;
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case 6:
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fading_led_disable_all();
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breathing_led_disable_all();
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softpwm_led_disable();
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break;
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case 7:
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fading_led_disable_all();
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breathing_led_disable_all();
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softpwm_led_disable();
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break;
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case 8:
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softpwm_led_set_all(16);
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fading_led_disable_all();
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breathing_led_disable_all();
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softpwm_led_enable();
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break;
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}
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}
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@ -67,9 +119,20 @@ void softpwm_led_init(void)
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void softpwm_led_on(uint8_t index)
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{
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#ifndef EXPERIMENTAL
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PORTD |= (1<<PD0);
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PORTB |= (1<<PB7);
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PORTC |= (1<<PD5 | 1<<PD6);
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switch (index) {
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case LED_KEY_1:
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PORTC |= (1<<PC5);
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break;
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case LED_KEY_2:
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PORTC |= (1<<PC6);
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break;
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case LED_KEY_SIDE:
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PORTB |= (1<<PB7);
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break;
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case LED_BOARD_SIDE:
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PORTD |= (1<<PD0);
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break;
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}
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#else
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PORTB |= (1<<PB6);
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#endif
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@ -78,13 +141,65 @@ void softpwm_led_on(uint8_t index)
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void softpwm_led_off(uint8_t index)
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{
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#ifndef EXPERIMENTAL
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PORTD &= ~(1<<PD0);
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PORTB &= ~(1<<PB7);
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PORTC &= ~(1<<PD5 | 1<<PD6);
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switch (index) {
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case LED_KEY_1:
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PORTC &= ~(1<<PC5);
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break;
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case LED_KEY_2:
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PORTC &= ~(1<<PC6);
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break;
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case LED_KEY_SIDE:
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PORTB &= ~(1<<PB7);
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break;
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case LED_BOARD_SIDE:
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PORTD &= ~(1<<PD0);
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break;
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}
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#else
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PORTB &= ~(1<<PB6);
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#endif
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}
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#endif
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extern uint8_t config_mode;
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void action_keyevent(keyevent_t event)
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{
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if (config_mode) return;
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if (event.key.col < 2) {
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if (event.pressed) {
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switch (backlight_mode) {
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case 0: case 6:
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softpwm_led_on(event.key.col);
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break;
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case 1 ... 5:
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softpwm_led_set(event.key.col, backlight_brightness);
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break;
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}
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}
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else {
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switch (backlight_mode) {
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case 0: case 6:
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softpwm_led_off(event.key.col);
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break;
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case 1 ... 5:
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softpwm_led_set(event.key.col, 0);
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break;
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}
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}
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}
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switch (backlight_mode) {
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case 1:
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if (event.pressed) {
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softpwm_led_increase(LED_KEY_SIDE, 32);
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}
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break;
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case 2:
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if (event.pressed) {
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softpwm_led_increase(LED_BOARD_SIDE, 32);
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}
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break;
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}
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}
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#endif
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@ -68,42 +68,89 @@ uint16_t fn_actions_count(void) {
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}
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#endif
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uint8_t config_mode = 0;
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static uint8_t layer = 0;
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static uint8_t backlight = 0;
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static uint8_t layer_modified = 0;
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static uint8_t backlight_modified = 0;
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extern backlight_config_t backlight_config;
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void enter_config_mode(void);
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void exit_config_mode(void);
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void switch_layout(void);
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void switch_backlight(void);
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void action_function(keyrecord_t *record, uint8_t id, uint8_t opt)
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{
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static uint8_t config_mode = 0;
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static uint8_t layer = 0;
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static uint8_t backlight = 0;
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switch (id) {
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case CONFIG_MODE:
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if (record->event.pressed) {
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if (config_mode) {
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config_mode = 0;
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layer_off(CONFIG_LAYER);
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exit_config_mode();
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}
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else {
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config_mode = 1;
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layer = 0;
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backlight = 0;
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layer_on(CONFIG_LAYER);
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enter_config_mode();
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}
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}
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break;
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case SWITCH_LAYOUT:
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if (record->event.pressed) {
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if (config_mode) {
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default_layer_set(1UL<<layer);
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eeconfig_write_default_layer(1UL<<layer);
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layer = (layer + 1) % (last_layer() + 1);
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switch_layout();
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}
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}
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break;
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case SWITCH_BACKLIGHT:
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if (record->event.pressed) {
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if (config_mode) {
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backlight_level(backlight);
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backlight = (backlight + 1) % (BACKLIGHT_LEVELS + 1);
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switch_backlight();
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}
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}
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break;
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}
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}
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void enter_config_mode(void)
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{
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config_mode = 1;
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layer_modified = 0;
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backlight_modified = 0;
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backlight = backlight_config.level;
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backlight_level(8);
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layer_on(CONFIG_LAYER);
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}
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void exit_config_mode(void)
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{
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config_mode = 0;
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backlight_level(backlight);
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layer_off(CONFIG_LAYER);
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if (layer_modified) {
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default_layer_set(1UL<<layer);
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eeconfig_write_default_layer(1UL<<layer);
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}
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}
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void switch_layout(void)
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{
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if (!layer_modified) {
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layer = 0;
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layer_modified = 1;
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}
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else {
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layer = (layer + 1) % (last_layer() + 1);
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}
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softpwm_led_set(0, 32 * (layer + 1));
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}
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void switch_backlight(void)
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{
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if (!backlight_modified) {
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backlight = 0;
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backlight_modified = 1;
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}
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else {
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backlight = (backlight + 1) % (BACKLIGHT_LEVELS);
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}
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softpwm_led_set(1, 32 * (backlight + 1));
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}
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