@ -1,138 +1,77 @@
# include "curry.h"
# include "rgb_stuff.h"
# include "eeprom.h"
# include "rgb_lighting_user.h"
# if defined(RGBLIGHT_ENABLE)
extern rgblight_config_t rgblight_config ;
bool has_initialized ;
void rgblight_sethsv_default_helper ( uint8_t index ) { rgblight_sethsv_at ( rgblight_config . hue , rgblight_config . sat , rgblight_config . val , index ) ; }
# endif // RGBLIGHT_ENABLE
# if defined(RGB_MATRIX_ENABLE)
static uint32_t hypno_timer ;
# if defined(SPLIT_KEYBOARD) || defined(KEYBOARD_ergodox_ez) || defined(KEYBOARD_crkbd)
# define RGB_MATRIX_REST_MODE RGB_MATRIX_CYCLE_OUT_IN_DUAL
# else
# define RGB_MATRIX_REST_MODE RGB_MATRIX_CYCLE_OUT_IN
# endif
void suspend_power_down_keymap ( void ) { rgb_matrix_set_suspend_state ( true ) ; }
void suspend_wakeup_init_keymap ( void ) { rgb_matrix_set_suspend_state ( false ) ; }
void check_default_layer ( uint8_t mode , uint8_t type ) {
switch ( get_highest_layer ( default_layer_state ) ) {
case _QWERTY :
rgb_matrix_layer_helper ( HSV_CYAN , mode , rgb_matrix_config . speed , type ) ;
break ;
case _COLEMAK :
rgb_matrix_layer_helper ( HSV_MAGENTA , mode , rgb_matrix_config . speed , type ) ;
break ;
case _DVORAK :
rgb_matrix_layer_helper ( HSV_SPRINGGREEN , mode , rgb_matrix_config . speed , type ) ;
break ;
}
}
void rgb_matrix_indicators_user ( void ) {
if ( userspace_config . rgb_layer_change & &
# ifdef RGB_DISABLE_WHEN_USB_SUSPENDED
! g_suspend_state & &
# endif
# if defined(RGBLIGHT_ENABLE)
( ! rgblight_config . enable & & rgb_matrix_config . enable )
# else
rgb_matrix_config . enable
# endif
) {
switch ( get_highest_layer ( layer_state ) ) {
case _RAISE :
rgb_matrix_layer_helper ( HSV_YELLOW , 0 , rgb_matrix_config . speed , LED_FLAG_UNDERGLOW ) ;
break ;
case _LOWER :
rgb_matrix_layer_helper ( HSV_GREEN , 0 , rgb_matrix_config . speed , LED_FLAG_UNDERGLOW ) ;
break ;
case _ADJUST :
rgb_matrix_layer_helper ( HSV_RED , 0 , rgb_matrix_config . speed , LED_FLAG_UNDERGLOW ) ;
break ;
default : {
check_default_layer ( IS_LAYER_ON ( _MODS ) , LED_FLAG_UNDERGLOW ) ;
break ;
}
}
check_default_layer ( 0 , LED_FLAG_MODIFIER ) ;
}
}
# endif
/* Custom indicators for modifiers.
* This allows for certain lights to be lit up , based on what mods are active , giving some visual feedback .
* This is especially useful for One Shot Mods , since it ' s not always obvious if they ' re still lit up .
*/
# ifdef RGBLIGHT_ENABLE
# ifdef INDICATOR_LIGHTS
# if defined(INDICATOR_LIGHTS)
void set_rgb_indicators ( uint8_t this_mod , uint8_t this_led , uint8_t this_osm ) {
if ( userspace_config . rgb_layer_change & & get_highest_layer ( layer_state ) = = 0 ) {
if ( ( this_mod | this_osm ) & MOD_MASK_SHIFT | | this_led & ( 1 < < USB_LED_CAPS_LOCK ) ) {
# ifdef SHFT_LED1
# ifdef SHFT_LED1
rgblight_sethsv_at ( 120 , 255 , 255 , SHFT_LED1 ) ;
# endif // SHFT_LED1
# ifdef SHFT_LED2
# endif // SHFT_LED1
# ifdef SHFT_LED2
rgblight_sethsv_at ( 120 , 255 , 255 , SHFT_LED2 ) ;
# endif // SHFT_LED2
# endif // SHFT_LED2
} else {
# ifdef SHFT_LED1
# ifdef SHFT_LED1
rgblight_sethsv_default_helper ( SHFT_LED1 ) ;
# endif // SHFT_LED1
# ifdef SHFT_LED2
# endif // SHFT_LED1
# ifdef SHFT_LED2
rgblight_sethsv_default_helper ( SHFT_LED2 ) ;
# endif // SHFT_LED2
# endif // SHFT_LED2
}
if ( ( this_mod | this_osm ) & MOD_MASK_CTRL ) {
# ifdef CTRL_LED1
# ifdef CTRL_LED1
rgblight_sethsv_at ( 0 , 255 , 255 , CTRL_LED1 ) ;
# endif // CTRL_LED1
# ifdef CTRL_LED2
# endif // CTRL_LED1
# ifdef CTRL_LED2
rgblight_sethsv_at ( 0 , 255 , 255 , CTRL_LED2 ) ;
# endif // CTRL_LED2
# endif // CTRL_LED2
} else {
# ifdef CTRL_LED1
# ifdef CTRL_LED1
rgblight_sethsv_default_helper ( CTRL_LED1 ) ;
# endif // CTRL_LED1
# ifdef CTRL_LED2
# endif // CTRL_LED1
# ifdef CTRL_LED2
rgblight_sethsv_default_helper ( CTRL_LED2 ) ;
# endif // CTRL_LED2
# endif // CTRL_LED2
}
if ( ( this_mod | this_osm ) & MOD_MASK_GUI ) {
# ifdef GUI_LED1
# ifdef GUI_LED1
rgblight_sethsv_at ( 51 , 255 , 255 , GUI_LED1 ) ;
# endif // GUI_LED1
# ifdef GUI_LED2
# endif // GUI_LED1
# ifdef GUI_LED2
rgblight_sethsv_at ( 51 , 255 , 255 , GUI_LED2 ) ;
# endif // GUI_LED2
# endif // GUI_LED2
} else {
# ifdef GUI_LED1
# ifdef GUI_LED1
rgblight_sethsv_default_helper ( GUI_LED1 ) ;
# endif // GUI_LED1
# ifdef GUI_LED2
# endif // GUI_LED1
# ifdef GUI_LED2
rgblight_sethsv_default_helper ( GUI_LED2 ) ;
# endif // GUI_LED2
# endif // GUI_LED2
}
if ( ( this_mod | this_osm ) & MOD_MASK_ALT ) {
# ifdef ALT_LED1
# ifdef ALT_LED1
rgblight_sethsv_at ( 240 , 255 , 255 , ALT_LED1 ) ;
# endif // ALT_LED1
# ifdef GUI_LED2
# endif // ALT_LED1
# ifdef GUI_LED2
rgblight_sethsv_at ( 240 , 255 , 255 , ALT_LED2 ) ;
# endif // GUI_LED2
# endif // GUI_LED2
} else {
# ifdef GUI_LED1
# ifdef GUI_LED1
rgblight_sethsv_default_helper ( ALT_LED1 ) ;
# endif // GUI_LED1
# ifdef GUI_LED2
# endif // GUI_LED1
# ifdef GUI_LED2
rgblight_sethsv_default_helper ( ALT_LED2 ) ;
# endif // GUI_LED2
# endif // GUI_LED2
}
}
}
@ -143,9 +82,9 @@ void matrix_scan_indicator(void) {
set_rgb_indicators ( get_mods ( ) , host_keyboard_leds ( ) , get_oneshot_mods ( ) ) ;
}
}
# endif // INDICATOR_LIGHTS
# endif // INDICATOR_LIGHTS
# ifdef RGBLIGHT_TWINKLE
# if defined(RGBLIGHT_TWINKLE)
static rgblight_fadeout lights [ RGBLED_NUM ] ;
__attribute__ ( ( weak ) ) bool rgblight_twinkle_is_led_used_keymap ( uint8_t index ) { return false ; }
@ -153,40 +92,40 @@ __attribute__((weak)) bool rgblight_twinkle_is_led_used_keymap(uint8_t index) {
/* This function checks for used LEDs. This way, collisions don't occur and cause weird rendering */
bool rgblight_twinkle_is_led_used ( uint8_t index ) {
switch ( index ) {
# ifdef INDICATOR_LIGHTS
# ifdef SHFT_LED1
# ifdef INDICATOR_LIGHTS
# ifdef SHFT_LED1
case SHFT_LED1 :
return true ;
# endif // SHFT_LED1
# ifdef SHFT_LED2
# endif // SHFT_LED1
# ifdef SHFT_LED2
case SHFT_LED2 :
return true ;
# endif // SHFT_LED2
# ifdef CTRL_LED1
# endif // SHFT_LED2
# ifdef CTRL_LED1
case CTRL_LED1 :
return true ;
# endif // CTRL_LED1
# ifdef CTRL_LED2
# endif // CTRL_LED1
# ifdef CTRL_LED2
case CTRL_LED2 :
return true ;
# endif // CTRL_LED2
# ifdef GUI_LED1
# endif // CTRL_LED2
# ifdef GUI_LED1
case GUI_LED1 :
return true ;
# endif // GUI_LED1
# ifdef GUI_LED2
# endif // GUI_LED1
# ifdef GUI_LED2
case GUI_LED2 :
return true ;
# endif // GUI_LED2
# ifdef ALT_LED1
# endif // GUI_LED2
# ifdef ALT_LED1
case ALT_LED1 :
return true ;
# endif // ALT_LED1
# ifdef ALT_LED2
# endif // ALT_LED1
# ifdef ALT_LED2
case ALT_LED2 :
return true ;
# endif // ALT_LED2
# endif // INDICATOR_LIGHTS
# endif // ALT_LED2
# endif // INDICATOR_LIGHTS
default :
return rgblight_twinkle_is_led_used_keymap ( index ) ;
}
@ -259,8 +198,7 @@ void start_rgb_light(void) {
rgblight_sethsv_at ( light - > hue , 255 , light - > life , light_index ) ;
}
# endif
# endif // RGBLIGHT_ENABLE
# endif
bool process_record_user_rgb ( uint16_t keycode , keyrecord_t * record ) {
uint16_t temp_keycode = keycode ;
@ -269,15 +207,8 @@ bool process_record_user_rgb(uint16_t keycode, keyrecord_t *record) {
temp_keycode & = 0xFF ;
}
# if defined(RGB_MATRIX_ENABLE) && defined(RGB_MATRIX_FRAMEBUFFER_EFFECTS)
hypno_timer = timer_read32 ( ) ;
if ( userspace_config . rgb_matrix_idle_anim & & rgb_matrix_get_mode ( ) = = RGB_MATRIX_REST_MODE ) {
rgb_matrix_mode_noeeprom ( RGB_MATRIX_TYPING_HEATMAP ) ;
}
# endif
switch ( temp_keycode ) {
# if def RGBLIGHT_TWINKLE
# if defined(RGBLIGHT_TWINKLE)
case KC_A . . . KC_SLASH :
case KC_F1 . . . KC_F12 :
case KC_INSERT . . . KC_UP :
@ -290,7 +221,6 @@ bool process_record_user_rgb(uint16_t keycode, keyrecord_t *record) {
break ;
# endif // RGBLIGHT_TWINKLE
case KC_RGB_T : // This allows me to use underglow as layer indication, or as normal
# if defined(RGBLIGHT_ENABLE) || defined(RGB_MATRIX_ENABLE)
if ( record - > event . pressed ) {
userspace_config . rgb_layer_change ^ = 1 ;
dprintf ( " rgblight layer change [EEPROM]: %u \n " , userspace_config . rgb_layer_change ) ;
@ -299,38 +229,16 @@ bool process_record_user_rgb(uint16_t keycode, keyrecord_t *record) {
layer_state_set ( layer_state ) ; // This is needed to immediately set the layer color (looks better)
}
}
# endif // RGBLIGHT_ENABLE
break ;
case RGB_IDL : // This allows me to use underglow as layer indication, or as normal
# if defined(RGB_MATRIX_ENABLE) && defined(RGB_MATRIX_FRAMEBUFFER_EFFECTS)
if ( record - > event . pressed ) {
userspace_config . rgb_matrix_idle_anim ^ = 1 ;
dprintf ( " RGB Matrix Idle Animation [EEPROM]: %u \n " , userspace_config . rgb_matrix_idle_anim ) ;
eeconfig_update_user ( userspace_config . raw ) ;
if ( userspace_config . rgb_matrix_idle_anim ) {
rgb_matrix_mode_noeeprom ( RGB_MATRIX_TYPING_HEATMAP ) ;
}
}
# endif
break ;
case RGB_MODE_FORWARD . . . RGB_MODE_GRADIENT : // quantum_keycodes.h L400 for definitions
if ( record - > event . pressed ) {
bool is_eeprom_updated = false ;
# ifdef RGBLIGHT_ENABLE
// This disables layer indication, as it's assumed that if you're changing this ... you want that disabled
if ( userspace_config . rgb_layer_change ) {
userspace_config . rgb_layer_change = false ;
dprintf ( " rgblight layer change [EEPROM]: %u \n " , userspace_config . rgb_layer_change ) ;
is_eeprom_updated = true ;
}
# endif
# if defined(RGB_MATRIX_ENABLE) && defined(RGB_MATRIX_FRAMEBUFFER_EFFECTS)
if ( userspace_config . rgb_matrix_idle_anim ) {
userspace_config . rgb_matrix_idle_anim = false ;
dprintf ( " RGB Matrix Idle Animation [EEPROM]: %u \n " , userspace_config . rgb_matrix_idle_anim ) ;
is_eeprom_updated = true ;
}
# endif
if ( is_eeprom_updated ) {
eeconfig_update_user ( userspace_config . raw ) ;
}
@ -341,8 +249,7 @@ bool process_record_user_rgb(uint16_t keycode, keyrecord_t *record) {
}
void keyboard_post_init_rgb ( void ) {
# if defined(RGBLIGHT_ENABLE)
# if defined(RGBLIGHT_STARTUP_ANIMATION)
# if defined(RGBLIGHT_STARTUP_ANIMATION)
bool is_enabled = rgblight_config . enable ;
if ( userspace_config . rgb_layer_change ) {
rgblight_enable_noeeprom ( ) ;
@ -361,44 +268,27 @@ void keyboard_post_init_rgb(void) {
rgblight_disable_noeeprom ( ) ;
}
# endif
layer_state_set_user ( layer_state ) ;
# endif
# if defined(RGB_MATRIX_ENABLE) && defined(RGB_MATRIX_FRAMEBUFFER_EFFECTS)
if ( userspace_config . rgb_matrix_idle_anim ) {
rgb_matrix_mode_noeeprom ( RGB_MATRIX_REST_MODE ) ;
}
# endif
layer_state_set_user ( layer_state ) ;
}
void matrix_scan_rgb ( void ) {
# ifdef RGBLIGHT_ENABLE
# ifdef RGBLIGHT_TWINKLE
# if defined(RGBLIGHT_TWINKLE)
scan_rgblight_fadeout ( ) ;
# endif // RGBLIGHT_ENABLE
# endif // RGBLIGHT_ENABLE
# ifdef INDICATOR_LIGHTS
# if defined(INDICATOR_LIGHTS)
matrix_scan_indicator ( ) ;
# endif
# endif
# if defined(RGB_MATRIX_ENABLE) && defined(RGB_MATRIX_FRAMEBUFFER_EFFECTS)
if ( userspace_config . rgb_matrix_idle_anim & & rgb_matrix_get_mode ( ) = = RGB_MATRIX_TYPING_HEATMAP & & timer_elapsed32 ( hypno_timer ) > 15000 ) {
rgb_matrix_mode_noeeprom ( RGB_MATRIX_REST_MODE ) ;
}
# endif
}
# ifdef RGBLIGHT_ENABLE
void rgblight_set_hsv_and_mode ( uint8_t hue , uint8_t sat , uint8_t val , uint8_t mode ) {
rgblight_sethsv_noeeprom ( hue , sat , val ) ;
wait_us ( 175 ) ; // Add a slight delay between color and mode to ensure it's processed correctly
rgblight_mode_noeeprom ( mode ) ;
}
# endif
layer_state_t layer_state_set_rgb ( layer_state_t state ) {
# ifdef RGBLIGHT_ENABLE
if ( userspace_config . rgb_layer_change ) {
switch ( get_highest_layer ( state ) ) {
case _RAISE :
@ -420,6 +310,9 @@ layer_state_t layer_state_set_rgb(layer_state_t state) {
case _DVORAK :
rgblight_set_hsv_and_mode ( HSV_SPRINGGREEN , mode ) ;
break ;
case _WORKMAN :
rgblight_set_hsv_and_mode ( HSV_GOLDENROD , mode ) ;
break ;
default :
rgblight_set_hsv_and_mode ( HSV_CYAN , mode ) ;
break ;
@ -428,44 +321,5 @@ layer_state_t layer_state_set_rgb(layer_state_t state) {
}
}
}
# endif // RGBLIGHT_ENABLE
return state ;
}
# ifdef RGB_MATRIX_ENABLE
# include "lib / lib8tion / lib8tion.h"
extern led_config_t g_led_config ;
void rgb_matrix_layer_helper ( uint8_t hue , uint8_t sat , uint8_t val , uint8_t mode , uint8_t speed , uint8_t led_type ) {
HSV hsv = { hue , sat , val } ;
if ( hsv . v > rgb_matrix_config . hsv . v ) {
hsv . v = rgb_matrix_config . hsv . v ;
}
switch ( mode ) {
case 1 : // breathing
{
uint16_t time = scale16by8 ( g_rgb_counters . tick , speed / 8 ) ;
hsv . v = scale8 ( abs8 ( sin8 ( time ) - 128 ) * 2 , hsv . v ) ;
RGB rgb = hsv_to_rgb ( hsv ) ;
for ( uint8_t i = 0 ; i < DRIVER_LED_TOTAL ; i + + ) {
if ( HAS_FLAGS ( g_led_config . flags [ i ] , led_type ) ) {
rgb_matrix_set_color ( i , rgb . r , rgb . g , rgb . b ) ;
}
}
break ;
}
default : // Solid Color
{
RGB rgb = hsv_to_rgb ( hsv ) ;
for ( uint8_t i = 0 ; i < DRIVER_LED_TOTAL ; i + + ) {
if ( HAS_FLAGS ( g_led_config . flags [ i ] , led_type ) ) {
rgb_matrix_set_color ( i , rgb . r , rgb . g , rgb . b ) ;
}
}
break ;
}
}
}
# endif