2 #ifdef RGB_MATRIX_KEYREACTIVE_ENABLED
3 #if !defined(DISABLE_RGB_MATRIX_SOLID_REACTIVE_NEXUS) || !defined(DISABLE_RGB_MATRIX_SOLID_REACTIVE_MULTINEXUS)
5 extern rgb_led g_rgb_leds[DRIVER_LED_TOTAL];
6 extern rgb_config_t rgb_matrix_config;
7 extern last_hit_t g_last_hit_tracker;
9 static bool rgb_matrix_solid_reactive_multinexus_range(uint8_t start, effect_params_t* params) {
10 RGB_MATRIX_USE_LIMITS(led_min, led_max);
12 HSV hsv = { rgb_matrix_config.hue, rgb_matrix_config.sat, 0 };
13 uint8_t count = g_last_hit_tracker.count;
14 for (uint8_t i = led_min; i < led_max; i++) {
16 point_t point = g_rgb_leds[i].point;
17 for (uint8_t j = start; j < count; j++) {
18 RGB_MATRIX_TEST_LED_FLAGS();
19 int16_t dx = point.x - g_last_hit_tracker.x[j];
20 int16_t dy = point.y - g_last_hit_tracker.y[j];
21 uint8_t dist = sqrt16(dx * dx + dy * dy);
23 uint16_t effect = scale16by8(g_last_hit_tracker.tick[j], rgb_matrix_config.speed) - dist;
28 if ((dx > dist2 || dx < -dist2) && (dy > dist2 || dy < -dist2))
30 hsv.v = qadd8(hsv.v, 255 - effect);
31 hsv.h = rgb_matrix_config.hue + dy / 4;
33 hsv.v = scale8(hsv.v, rgb_matrix_config.val);
34 RGB rgb = hsv_to_rgb(hsv);
35 rgb_matrix_set_color(i, rgb.r, rgb.g, rgb.b);
37 return led_max < DRIVER_LED_TOTAL;
40 bool rgb_matrix_solid_reactive_multinexus(effect_params_t* params) {
41 return rgb_matrix_solid_reactive_multinexus_range(0, params);
44 bool rgb_matrix_solid_reactive_nexus(effect_params_t* params) {
45 return rgb_matrix_solid_reactive_multinexus_range(qsub8(g_last_hit_tracker.count, 1), params);
48 #endif // !defined(DISABLE_RGB_MATRIX_SOLID_REACTIVE_NEXUS) || !defined(DISABLE_RGB_MATRIX_SOLID_REACTIVE_MULTINEXUS)
49 #endif // RGB_MATRIX_KEYREACTIVE_ENABLED