145 lines
3.8 KiB
C
145 lines
3.8 KiB
C
#include QMK_KEYBOARD_H
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// Declarations for inactivity tracking
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#define INACTIVITY_STEPS {0, 100, 60000, 20, 300000, 0}
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#define TIME_TO_CHANGE_BETWEEN_STEPS 10000
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uint32_t activity_timer;
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bool is_led_dimmed = 0;
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float led_edge_brightness_pre_dim;
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float led_gcr_desired_pre_dim;
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void handle_activity(void);
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void handle_inactivity(void);
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void reset_after_inactivity(void);
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void update_during_inactivity(void);
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float get_desired_percentage(void);
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float get_desired_gcr_desired(void);
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float get_desired_led_edge_brightness(void);
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void update_activity_timer(void);
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uint32_t get_inactive_time(void);
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void led_increase_key_brightness(void);
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void led_increase_edge_brightness(void);
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void led_decrease_key_brightness(void);
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void led_decrease_edge_brightness(void);
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// Inactivity tracking
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void handle_activity(void) {
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update_activity_timer();
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if (is_led_dimmed) {
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reset_after_inactivity();
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}
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}
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void handle_inactivity(void) {
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if (!is_led_dimmed) {
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led_edge_brightness_pre_dim = led_edge_brightness;
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led_gcr_desired_pre_dim = gcr_desired;
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}
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update_during_inactivity();
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}
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void reset_after_inactivity(void) {
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gcr_desired = led_gcr_desired_pre_dim;
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led_edge_brightness = led_edge_brightness_pre_dim;
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is_led_dimmed = 0;
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}
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void update_during_inactivity(void) {
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float desired_gcr_desired = get_desired_gcr_desired();
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float desired_led_edge_brightness = get_desired_led_edge_brightness();
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if (!is_led_dimmed && (desired_gcr_desired < led_gcr_desired_pre_dim || desired_led_edge_brightness < led_edge_brightness_pre_dim)) {
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is_led_dimmed = 1;
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}
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if (desired_led_edge_brightness < led_edge_brightness) {
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led_decrease_edge_brightness();
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}
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if (desired_gcr_desired < gcr_desired) {
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led_decrease_key_brightness();
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}
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}
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float get_desired_percentage(void) {
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static int steps[] = INACTIVITY_STEPS;
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static int size = sizeof steps / sizeof steps[0];
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uint32_t inactive_time = get_inactive_time();
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int last_target = steps[1];
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int time_offset = steps[0];
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int target = steps[1];
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for (int i = 2; i < size; i += 2) {
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if (steps[i] > inactive_time) {
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break;
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}
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last_target = target;
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time_offset = steps[i];
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target = steps[i+1];
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}
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uint32_t time_into_current_target = inactive_time - time_offset;
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time_into_current_target = time_into_current_target > TIME_TO_CHANGE_BETWEEN_STEPS ? TIME_TO_CHANGE_BETWEEN_STEPS : time_into_current_target;
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time_into_current_target = time_into_current_target < 0 ? 0 : time_into_current_target;
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return (float)last_target + ((float)time_into_current_target / (float)TIME_TO_CHANGE_BETWEEN_STEPS) * (float)(target - last_target);
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}
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float get_desired_gcr_desired(void) {
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float pct = get_desired_percentage();
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return pct * LED_GCR_MAX / 100;
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}
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float get_desired_led_edge_brightness(void) {
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float pct = get_desired_percentage();
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return pct / 100;
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}
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void update_activity_timer(void) {
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activity_timer = timer_read32();
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}
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uint32_t get_inactive_time(void) {
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return timer_read32() - activity_timer;
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}
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// Lighting stuff for inactivity tracking
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// Increase
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void led_increase_key_brightness(void) {
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if (LED_GCR_STEP > LED_GCR_MAX - gcr_desired) gcr_desired = LED_GCR_MAX;
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else gcr_desired += LED_GCR_STEP;
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if (led_animation_breathing) gcr_breathe = gcr_desired;
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}
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void led_increase_edge_brightness(void) {
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led_edge_brightness += 0.1;
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if (led_edge_brightness > 1) { led_edge_brightness = 1; }
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}
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// Decrease
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void led_decrease_key_brightness(void) {
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if (LED_GCR_STEP > gcr_desired) gcr_desired = 0;
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else gcr_desired -= LED_GCR_STEP;
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if (led_animation_breathing) gcr_breathe = gcr_desired;
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}
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void led_decrease_edge_brightness(void) {
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led_edge_brightness -= 0.1;
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if (led_edge_brightness < 0) { led_edge_brightness = 0; }
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} |