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author | KoenGoe <koen.goe@hotmail.com> | 2022-04-19 13:02:21 +0200 |
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committer | GitHub <noreply@github.com> | 2022-04-19 21:02:21 +1000 |
commit | 671b62efab9d73cde791cc7b0b2c877516de6012 (patch) | |
tree | 26c024e980f56a66c9eb6275cd61cfcabad3b5ea | |
parent | 2a4db15f62dfccac8fca3d009874899491be95e4 (diff) | |
download | qmk_firmware-671b62efab9d73cde791cc7b0b2c877516de6012.tar.gz qmk_firmware-671b62efab9d73cde791cc7b0b2c877516de6012.zip |
Fixes #16705 : digital rain follows val (#16716)
Co-authored-by: Drashna Jaelre <drashna@live.com>
-rw-r--r-- | quantum/rgb_matrix/animations/digital_rain_anim.h | 22 |
1 files changed, 15 insertions, 7 deletions
diff --git a/quantum/rgb_matrix/animations/digital_rain_anim.h b/quantum/rgb_matrix/animations/digital_rain_anim.h index 4633145ff6..7d3b22f697 100644 --- a/quantum/rgb_matrix/animations/digital_rain_anim.h +++ b/quantum/rgb_matrix/animations/digital_rain_anim.h @@ -10,11 +10,13 @@ RGB_MATRIX_EFFECT(DIGITAL_RAIN) bool DIGITAL_RAIN(effect_params_t* params) { // algorithm ported from https://github.com/tremby/Kaleidoscope-LEDEffect-DigitalRain const uint8_t drop_ticks = 28; - const uint8_t pure_green_intensity = 0xd0; - const uint8_t max_brightness_boost = 0xc0; - const uint8_t max_intensity = 0xff; + const uint8_t pure_green_intensity = (((uint16_t)rgb_matrix_config.hsv.v) * 3) >> 2; + const uint8_t max_brightness_boost = (((uint16_t)rgb_matrix_config.hsv.v) * 3) >> 2; + const uint8_t max_intensity = rgb_matrix_config.hsv.v; + const uint8_t decay_ticks = 0xff / max_intensity; - static uint8_t drop = 0; + static uint8_t drop = 0; + static uint8_t decay = 0; if (params->init) { rgb_matrix_set_color_all(0, 0, 0); @@ -22,6 +24,7 @@ bool DIGITAL_RAIN(effect_params_t* params) { drop = 0; } + decay++; for (uint8_t col = 0; col < MATRIX_COLS; col++) { for (uint8_t row = 0; row < MATRIX_ROWS; row++) { if (row == 0 && drop == 0 && rand() < RAND_MAX / RGB_DIGITAL_RAIN_DROPS) { @@ -30,7 +33,9 @@ bool DIGITAL_RAIN(effect_params_t* params) { g_rgb_frame_buffer[row][col] = max_intensity; } else if (g_rgb_frame_buffer[row][col] > 0 && g_rgb_frame_buffer[row][col] < max_intensity) { // neither fully bright nor dark, decay it - g_rgb_frame_buffer[row][col]--; + if (decay == decay_ticks) { + g_rgb_frame_buffer[row][col]--; + } } // set the pixel colour uint8_t led[LED_HITS_TO_REMEMBER]; @@ -48,6 +53,9 @@ bool DIGITAL_RAIN(effect_params_t* params) { } } } + if (decay == decay_ticks) { + decay = 0; + } if (++drop > drop_ticks) { // reset drop timer @@ -59,9 +67,9 @@ bool DIGITAL_RAIN(effect_params_t* params) { g_rgb_frame_buffer[row][col]--; } // check if the pixel above is bright - if (g_rgb_frame_buffer[row - 1][col] == max_intensity) { + if (g_rgb_frame_buffer[row - 1][col] >= max_intensity) { // Note: can be larger than max_intensity if val was recently decreased // allow old bright pixel to decay - g_rgb_frame_buffer[row - 1][col]--; + g_rgb_frame_buffer[row - 1][col] = max_intensity - 1; // make this pixel bright g_rgb_frame_buffer[row][col] = max_intensity; } |