[m65] add via, new mcu gd32f303, stm32f401 weact support for encoder and led strip (#14381)
Co-authored-by: James Young <18669334+noroadsleft@users.noreply.github.com>
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										251
									
								
								keyboards/mlego/m65/keymaps/uk/keymap.c
									
										
									
									
									
										Normal file
									
								
							
							
						
						
									
										251
									
								
								keyboards/mlego/m65/keymaps/uk/keymap.c
									
										
									
									
									
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/*
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Copyright 2021-2022 Alin M Elena <alinm.elena@gmail.com>
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program.  If not, see <http://www.gnu.org/licenses/>.
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*/
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#include QMK_KEYBOARD_H
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#include "keymap_uk.h"
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enum layer_names {
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    _QW = 0,
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    _LWR,
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    _RSE,
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    _ADJ
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};
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#ifdef CONSOLE_ENABLE
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#include "print.h"
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#endif
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#ifdef RGBLIGHT_ENABLE
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const rgblight_segment_t PROGMEM my_qwerty_layer[] = RGBLIGHT_LAYER_SEGMENTS({0, RGBLED_NUM, HSV_PURPLE});
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const rgblight_segment_t PROGMEM my_lwr_layer[]    = RGBLIGHT_LAYER_SEGMENTS({0, RGBLED_NUM, HSV_CYAN});
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const rgblight_segment_t PROGMEM my_rse_layer[]    = RGBLIGHT_LAYER_SEGMENTS({0, RGBLED_NUM, HSV_RED});
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const rgblight_segment_t PROGMEM my_adj_layer[]    = RGBLIGHT_LAYER_SEGMENTS({0, RGBLED_NUM, HSV_GREEN});
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const rgblight_segment_t* const PROGMEM my_rgb_layers[] = RGBLIGHT_LAYERS_LIST(my_qwerty_layer, my_lwr_layer, my_rse_layer, my_adj_layer);
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#endif
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const uint32_t PROGMEM unicode_map[] = {
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    [la] = 0x03B1,  // å
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    [lA] = 0x0391,  // Å
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    [lb] = 0x03B2,  // β
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    [lB] = 0x0392,  // Β
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    [lc] = 0x03C7,  //
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    [lC] = 0x0307,  //
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    [ld] = 0x03B4,   [lD] = 0x2202, [le] = 0x03B5, [lE] = 0x2107,
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    [lf]  = 0x03C6,   //
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    [lF]  = 0x03C8,   //
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    [lg]  = 0x03B3,   //
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    [lG]  = 0x0393,   //
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    [lh]  = 0x210F,   //
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    [lH]  = 0x1D4D7,  //
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    [li]  = 0x222B,   //
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    [lI]  = 0x222E,   //
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    [lj]  = 0x2208,   //
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    [lJ]  = 0x2209,   //
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    [lk]  = 0x03F0,   //
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    [lK]  = 0x2206,   //
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    [ll]  = 0x03BB,   //
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    [lL]  = 0x039B,   //
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    [lm]  = 0x03BC,   //
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    [lM]  = 0x2218,   //
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    [ln]  = 0x03B7,   //
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    [lN]  = 0x222A,   //
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    [lo]  = 0x221E,   //
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    [lO]  = 0x2297,   //
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    [lp]  = 0x03C0,   //
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    [lP]  = 0x220F,   //
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    [lq]  = 0x03C3,   //
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    [lQ]  = 0x03D5,   //
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    [lr]  = 0x03C1,   //
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    [lR]  = 0x2207,   //
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    [ls]  = 0x2211,   //
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    [lS]  = 0x2A0B,   //
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    [lt]  = 0x03D1,   //
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    [lT]  = 0x03B8,   //
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    [lu]  = 0x03C4,   //
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    [lU]  = 0x2102,   //
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    [lv]  = 0x03BD,   //
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    [lV]  = 0x039D,   //
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    [lw]  = 0x03C9,   //
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    [lW]  = 0x03A9,   //
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    [lx]  = 0x03BE,   //
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    [lX]  = 0x039E,   //
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    [ly]  = 0x211d,
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    [lY]  = 0x2124,   //
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    [lz]  = 0x03B6,   //
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    [lZ]  = 0x2221,   //
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    [lZ]  = 0x2221,   //
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    [lc1] = 0x224A,   //
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    [lC1] = 0x2248,   //
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    [lp1] = 0x00B1,   //
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    [lP1] = 0x2213,   //
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    [lq1] = 0x00D7,   //
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    [lQ1] = 0x22C5,   //
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    [ll1] = 0x1D53C,  //
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    [lL1] = 0x212b,   //
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    [lk1] = 0x221D,   //
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    [lK1] = 0x2112,   //
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    [rc]  = 0x00E7,   // ç
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    [rC]  = 0x00C7,   // Ç
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};
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// clang-format off
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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  [_QW] = LAYOUT_ortho_5x13(
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       KC_ESC, UK_1   , UK_2    , UK_3   , UK_4    , UK_5  , UK_6  , UK_7  , UK_8   , UK_9   , UK_0   , UK_MINS, KC_BSPC ,
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       KC_TAB, UK_Q   , UK_W    , UK_E   , UK_R    , UK_T  , UK_Y  , UK_U  , UK_I   , UK_O   , UK_P   , UK_LBRC, UK_RBRC ,
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      UK_HASH, UK_A   , UK_S    , UK_D   , UK_F    , UK_G  , UK_H  , UK_J  , UK_K   , UK_L   , UK_SCLN, UK_QUOT, KC_ENT  ,
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      KC_LSPO, UK_BSLS, UK_Z    , UK_X   , UK_C    , UK_V  , UK_B  , UK_N  , UK_M   , UK_COMM, UK_DOT , KC_UP  , UK_SLSH ,
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      KC_LCTL, KC_LGUI, TT(_LWR), KC_LALT, TT(_RSE), KC_SPC, KC_SPC, KC_SPC, KC_RALT, KC_RSPC, KC_LEFT, KC_DOWN, KC_RGHT),
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  [_LWR] = LAYOUT_ortho_5x13(
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     KC_GRV , KC_MUTE, KC_VOLU, KC_VOLD, KC_MPRV, KC_MPLY, KC_MNXT, G(KC_P), KC_SLEP, KC_WAKE, KC_PSCR, KC_DEL , UK_EQL  ,
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     KC_BTN3, XP(lq  , lQ)    , XP(lw  , lW)    , XP(le  , lE)    , XP(lr  , lR)    , XP(lt  , lT)    , XP(ly  , lY)     , XP(lu, lU)  , XP(li, lI)   , XP(lo, lO)   , XP(lp , lP)    , _______, _______,
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     KC_BTN2, XP(la  , lA)    , XP(ls  , lS)    , XP(ld  , lD)    , XP(lf  , lF)    , XP(lg  , lG)    , XP(lh  , lH)     , XP(lj, lJ)  , XP(lk, lK)   , XP(ll, lL)   , XP(ll1, lL1)   , XP(lk1 , lK1)   , _______,
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     _______, KC_BTN1, XP(lz  , lZ)    , XP(lx  , lX)    , XP(lc  , lC)    , XP(lv  , lV)    , XP(lb  , lB)    , XP(ln   , lN)  , XP(lm, lM)  , XP(lc1, lC1) , XP(lp1, lP1)  , KC_MS_U, XP(lq1 , lQ1)   ,
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     _______, KC_BTN4, _______, _______, _______, _______, _______, _______, _______, _______, KC_MS_L, KC_MS_D, KC_MS_R),
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  [_RSE] = LAYOUT_ortho_5x13(
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      KC_ESC , KC_F1  , KC_F2  , KC_F3  ,  KC_F4  , KC_F5  , KC_F6  , KC_F7  , KC_F8  , KC_F9  , KC_F10 , KC_F11 , KC_F12  ,
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      _______, _______, _______, _______,  _______, _______, _______, _______, _______, _______, _______, _______, _______ ,
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      KC_CAPS, _______, _______, _______,  _______, _______, _______, _______, _______, _______, _______, _______, _______ ,
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      _______, _______, _______, _______,XP(rc,rC), _______, _______, _______, _______, _______, _______, KC_WH_U, _______ ,
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      _______, _______, _______, _______,  _______, _______, _______, _______, _______, _______, KC_WH_L, KC_WH_D, KC_WH_R),
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  [_ADJ] = LAYOUT_ortho_5x13(
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      RGB_MOD, RGB_RMOD, A(KC_F2), _______, _______, _______, _______, _______, _______, _______, _______, _______ , RGB_M_SW,
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      RGB_HUI, RGB_HUD , RGB_M_P , _______, RESET  , RGB_M_T, _______, _______, _______, _______, _______, _______ , RGB_M_SN,
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      RGB_SAI, RGB_SAD , RGB_M_B , _______, _______, _______, _______, _______, _______, _______, _______, _______ , RGB_M_K ,
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      RGB_VAI, RGB_VAD , RGB_M_R , _______, _______, _______, _______, _______, _______, _______, _______, _______ , RGB_M_X ,
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      RGB_TOG, _______ , _______ , _______, _______, _______, _______, _______, _______, _______, _______, RGB_M_TW, RGB_M_G),
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};
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// clang-format on
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// let us assume we start with both layers off
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bool toggle_lwr = false;
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bool toggle_rse = false;
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bool led_update_user(led_t led_state) {
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    // Disable the default LED update code, so that lock LEDs could be reused to show layer status.
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    return false;
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}
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void matrix_scan_user(void) {
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    led_lwr(toggle_lwr);
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    led_rse(toggle_rse);
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    led_t led_state = host_keyboard_led_state();
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    led_caps(led_state.caps_lock);
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    if (layer_state_is(_ADJ)) {
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        led_lwr(true);
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        led_rse(true);
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    }
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}
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bool process_record_user(uint16_t keycode, keyrecord_t* record) {
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#ifdef CONSOLE_ENABLE
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    uprintf("KL: kc: 0x%04X, col: %u, row: %u, pressed: %b, time: %u, interrupt: %b, count: %u\n", keycode, record->event.key.col, record->event.key.row, record->event.pressed, record->event.time, record->tap.interrupted, record->tap.count);
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#endif
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    switch (keycode) {
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        case (TT(_LWR)):
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            if (!record->event.pressed && record->tap.count == TAPPING_TOGGLE) {
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                // This runs before the TT() handler toggles the layer state, so the current layer state is the opposite of the final one after toggle.
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                toggle_lwr = !layer_state_is(_LWR);
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            }
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            return true;
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            break;
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        case (TT(_RSE)):
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            if (record->event.pressed && record->tap.count == TAPPING_TOGGLE) {
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                toggle_rse = !layer_state_is(_RSE);
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            }
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            return true;
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            break;
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        default:
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            return true;
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    }
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}
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layer_state_t layer_state_set_user(layer_state_t state) {
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#ifdef RGBLIGHT_ENABLE
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    rgblight_set_layer_state(0, layer_state_cmp(state, _QW));
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    rgblight_set_layer_state(1, layer_state_cmp(state, _LWR));
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    rgblight_set_layer_state(2, layer_state_cmp(state, _RSE));
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    rgblight_set_layer_state(3, layer_state_cmp(state, _ADJ));
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#endif
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    return update_tri_layer_state(state, _LWR, _RSE, _ADJ);
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}
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#ifdef RGBLIGHT_ENABLE
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layer_state_t default_layer_state_set_user(layer_state_t state) {
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    rgblight_set_layer_state(0, layer_state_cmp(state, _QW));
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    return state;
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}
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void keyboard_post_init_user(void) {
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    // Enable the LED layers
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    rgblight_layers = my_rgb_layers;
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#ifdef CONSOLE_ENABLE
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    debug_enable   = true;
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    debug_matrix   = true;
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    debug_keyboard = true;
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#endif
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}
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#endif
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#ifdef ENCODER_ENABLE
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#    define MEDIA_KEY_DELAY 10
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static inline void my_encoders(const uint8_t index, const bool clockwise) {
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    if (index == 0) { /* First encoder */
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        if (IS_LAYER_ON(_LWR)) {
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            if (clockwise) {
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                rgblight_decrease_val_noeeprom();
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            } else {
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                rgblight_increase_val_noeeprom();
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            }
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        } else if (IS_LAYER_ON(_RSE)) {
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            if (clockwise) {
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                rgblight_decrease_hue_noeeprom();
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            } else {
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                rgblight_increase_hue_noeeprom();
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            }
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        } else {
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            if (clockwise) {
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                tap_code_delay(KC_VOLD, MEDIA_KEY_DELAY);
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            } else {
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                tap_code_delay(KC_VOLU, MEDIA_KEY_DELAY);
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            }
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        }
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    }
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}
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bool encoder_update_user(uint8_t index, bool clockwise) {
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    my_encoders(index, clockwise);
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    return true;
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}
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#endif
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