Add unicode mode change callbacks (#18235)
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@ -206,6 +206,17 @@ The functions for starting and finishing Unicode input on your platform can be o
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You can find the default implementations of these functions in [`process_unicode_common.c`](https://github.com/qmk/qmk_firmware/blob/master/quantum/process_keycode/process_unicode_common.c).
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### Input Mode Callbacks
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There are callbacks functions available that are called whenever the unicode input mode changes. The new input mode is passed to the function.
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|Callback |Description |
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|---------------------------------------------------|-----------------------------------------------------|
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| `unicode_input_mode_set_kb(uint8_t input_mode)` | Callback for unicode input mode set, for keyboard. |
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| `unicode_input_mode_set_user(uint8_t input_mode)` | Callback for unicode input mode set, for users. |
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This feature can be used, for instance, to implement LED indicators for the current unicode input mode.
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### Input Key Configuration
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You can customize the keys used to trigger Unicode input for macOS, Linux and WinCompose by adding corresponding defines to your `config.h`. The default values match the platforms' default settings, so you shouldn't need to change this unless Unicode input isn't working, or you want to use a different key (e.g. in order to free up left or right Alt).
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@ -29,6 +29,20 @@ static int8_t selected_count = ARRAY_SIZE(selected);
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static int8_t selected_index;
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#endif
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/** \brief Uunicode input mode set at user level
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*
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* Run user code on unicode input mode change
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*/
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__attribute__((weak)) void unicode_input_mode_set_user(uint8_t input_mode) {}
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/** \brief unicode input mode set at keyboard level
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*
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* Run keyboard code on unicode input mode change
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*/
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__attribute__((weak)) void unicode_input_mode_set_kb(uint8_t input_mode) {
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unicode_input_mode_set_user(input_mode);
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}
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void unicode_input_mode_init(void) {
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unicode_config.raw = eeprom_read_byte(EECONFIG_UNICODEMODE);
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#if UNICODE_SELECTED_MODES != -1
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@ -50,6 +64,7 @@ void unicode_input_mode_init(void) {
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unicode_config.input_mode = selected[selected_index = 0];
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# endif
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#endif
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unicode_input_mode_set_kb(unicode_config.input_mode);
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dprintf("Unicode input mode init to: %u\n", unicode_config.input_mode);
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}
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@ -60,6 +75,7 @@ uint8_t get_unicode_input_mode(void) {
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void set_unicode_input_mode(uint8_t mode) {
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unicode_config.input_mode = mode;
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persist_unicode_input_mode();
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unicode_input_mode_set_kb(mode);
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dprintf("Unicode input mode set to: %u\n", unicode_config.input_mode);
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}
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@ -73,6 +89,7 @@ void cycle_unicode_input_mode(int8_t offset) {
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# if UNICODE_CYCLE_PERSIST
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persist_unicode_input_mode();
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# endif
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unicode_input_mode_set_kb(unicode_config.input_mode);
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dprintf("Unicode input mode cycle to: %u\n", unicode_config.input_mode);
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#endif
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}
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@ -87,6 +87,9 @@ void unicode_input_start(void);
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void unicode_input_finish(void);
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void unicode_input_cancel(void);
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void unicode_input_mode_set_user(uint8_t input_mode);
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void unicode_input_mode_set_kb(uint8_t input_mode);
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void register_hex(uint16_t hex);
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void register_hex32(uint32_t hex);
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void register_unicode(uint32_t code_point);
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@ -112,8 +112,7 @@ void do_rgb_layers(layer_state_t state, uint8_t start, uint8_t end) {
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}
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}
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void do_rgb_unicode(void) {
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uint8_t uc_mode = get_unicode_input_mode();
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void do_rgb_unicode(uint8_t uc_mode) {
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for (uint8_t i = 0; i < UC__COUNT; i++) {
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bool is_on = i == uc_mode;
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rgblight_set_layer_state(UNICODE_OFFSET + i, is_on);
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@ -123,7 +122,7 @@ void do_rgb_unicode(void) {
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void do_rgb_all(void) {
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do_rgb_layers(default_layer_state, LAYER_BASE_DEFAULT, LAYER_BASE_REGULAR);
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do_rgb_layers(layer_state, LAYER_BASE_REGULAR, LAYER_BASE_END);
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do_rgb_unicode();
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do_rgb_unicode(get_unicode_input_mode());
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rgblight_set_layer_state(MISC_OFFSET + 0, spi_gflock);
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rgblight_set_layer_state(MISC_OFFSET + 1, spi_replace_mode != SPI_NORMAL);
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}
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@ -148,7 +147,7 @@ extern rgblight_status_t rgblight_status;
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# define STARTUP_ANIMATION_CYCLE_STEP 2
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# define STARTUP_ANIMATION_RAMP_TO_STEPS 70
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# define STARTUP_ANIMATION_STEP_TIME 10
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# define STARTUP_ANIMATION_INITIAL_DELAY 0 // milliseconds, must be < 255 * STEP_TIME
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# define STARTUP_ANIMATION_INITIAL_DELAY 0 // milliseconds, must be < 255 * STEP_TIME
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// clang-format off
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typedef enum {
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@ -382,6 +381,13 @@ bool led_update_user_rgb(led_t led_state) {
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return true;
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}
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#if defined(UNICODE_COMMON_ENABLE)
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void unicode_input_mode_set_user_rgb(uint8_t input_mode) {
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rgb_layer_ack(ACK_MEH);
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do_rgb_unicode(input_mode);
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}
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#endif
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void rgb_layer_ack_yn(bool yn) { rgb_layer_ack(yn ? ACK_YES : ACK_NO); }
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void rgb_layer_ack(layer_ack_t n) {
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@ -458,7 +464,7 @@ void post_process_record_user_rgb(uint16_t keycode, keyrecord_t *record) {
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break;
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case RGB_TOG:
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// Hack - we only get called on the press for RGB_TOG,
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// Hack - we only get called on the press for RGB_TOG,
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// but the flag is only flipped on the release...
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rgb_layer_ack_yn(!rgblight_config.enable);
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break;
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@ -476,20 +482,5 @@ void post_process_record_user_rgb(uint16_t keycode, keyrecord_t *record) {
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rgb_layer_ack_yn(keymap_config.nkro);
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break;
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#endif
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#if defined(UNICODE_COMMON_ENABLE)
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case UC_M_MA:
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case UC_M_LN:
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case UC_M_WI:
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case UC_M_BS:
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case UC_M_WC:
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case UC_M_EM:
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case UC_MOD:
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case UC_RMOD:
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rgb_layer_ack(ACK_MEH);
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do_rgb_unicode();
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break;
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#endif
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}
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}
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@ -98,14 +98,14 @@ bool process_record_glyph_replacement(uint16_t keycode, keyrecord_t *record, uin
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clear_oneshot_mods();
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#endif
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bool caps = host_keyboard_led_state().caps_lock;
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bool caps = host_keyboard_led_state().caps_lock;
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uint32_t base = ((shifted == caps) ? baseAlphaLower : baseAlphaUpper);
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_register(base + (keycode - KC_A));
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set_mods(temp_mod);
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}
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return false;
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case KC_0:
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if (shifted) { // skip shifted numbers, so that we can still use symbols etc.
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if (shifted) { // skip shifted numbers, so that we can still use symbols etc.
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return true;
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}
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if (record->event.pressed) {
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@ -113,7 +113,7 @@ bool process_record_glyph_replacement(uint16_t keycode, keyrecord_t *record, uin
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}
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return false;
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case KC_1 ... KC_9:
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if (shifted) { // skip shifted numbers, so that we can still use symbols etc.
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if (shifted) { // skip shifted numbers, so that we can still use symbols etc.
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return true;
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}
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if (record->event.pressed) {
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@ -122,7 +122,7 @@ bool process_record_glyph_replacement(uint16_t keycode, keyrecord_t *record, uin
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return false;
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case KC_SPACE:
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if (record->event.pressed) {
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_register(spaceGlyph); // em space
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_register(spaceGlyph); // em space
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}
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return false;
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}
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@ -338,7 +338,7 @@ bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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set_mods(mods);
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return false;
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}
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} else { // on release of KC_BSPC
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} else { // on release of KC_BSPC
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// In case KC_DEL is still being sent even after the release of KC_BSPC
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if (delkey_registered) {
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unregister_code(KC_DEL);
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@ -387,3 +387,11 @@ bool led_update_user(led_t led_state) {
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return true;
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#endif
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}
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#if defined(UNICODE_COMMON_ENABLE)
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void unicode_input_mode_set_user(uint8_t input_mode) {
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# ifdef RGBLIGHT_ENABLE
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unicode_input_mode_set_user_rgb(input_mode);
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# endif
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}
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#endif
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@ -17,9 +17,9 @@ enum userspace_layers {
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};
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enum custom_keycodes {
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CH_CPNL = SAFE_RANGE, // AL Control Panel
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CH_ASST, // AL Context-aware Desktop Assistant
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CH_SUSP, // Suspend
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CH_CPNL = SAFE_RANGE, // AL Control Panel
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CH_ASST, // AL Context-aware Desktop Assistant
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CH_SUSP, // Suspend
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SPI_NORMAL,
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SPI_WIDE,
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@ -65,6 +65,11 @@ void rgb_layer_ack(layer_ack_t n);
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void rgb_layer_ack_yn(bool yn);
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void clear_rgb_layers(void);
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void shutdown_user_rgb(void);
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# if defined(UNICODE_COMMON_ENABLE)
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void unicode_input_mode_set_user_rgb(uint8_t input_mode);
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# endif
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#endif
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#ifdef UNICODEMAP_ENABLE
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