forked from forks/qmk_firmware
396 lines
14 KiB
C
396 lines
14 KiB
C
/* Copyright 2020 Christopher Courtney, aka Drashna Jael're (@drashna) <drashna@live.com>
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*
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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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*
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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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*
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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 "drashna.h"
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#ifdef BACKLIGHT_ENABLE
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enum planck_keycodes {
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BACKLIT = NEW_SAFE_RANGE,
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TH_LVL,
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};
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#else
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# define BACKLIT OSM(MOD_LSFT)
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enum planck_keycodes {
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TH_LVL = NEW_SAFE_RANGE,
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};
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#endif
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#ifdef KEYBOARD_planck_ez
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# define PLNK_1 BK_LWER
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# define PLNK_2 SP_LWER
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# define PLNK_3 KC_NO
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# define PLNK_4 ET_RAIS
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#else
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# define PLNK_1 SP_LWER
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# define PLNK_2 BK_LWER
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# define PLNK_3 DL_RAIS
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# define PLNK_4 ET_RAIS
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#endif
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/*
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* The `LAYOUT_ortho_4x12_base` macro is a template to allow the use of identical
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* modifiers for the default layouts (eg QWERTY, Colemak, Dvorak, etc), so
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* that there is no need to set them up for each layout, and modify all of
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* them if I want to change them. This helps to keep consistency and ease
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* of use. K## is a placeholder to pass through the individual keycodes
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*/
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// clang-format off
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#define LAYOUT_ortho_4x12_wrapper(...) LAYOUT_ortho_4x12(__VA_ARGS__)
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#define LAYOUT_ortho_4x12_base( \
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K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, \
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K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, \
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K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A \
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) \
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LAYOUT_ortho_4x12_wrapper( \
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KC_ESC, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, KC_DEL, \
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LALT_T(KC_TAB), K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, RALT_T(K1B), \
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KC_MLSF, CTL_T(K21), K22, K23, K24, K25, K26, K27, K28, K29, RCTL_T(K2A), KC_ENT, \
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BACKLIT, OS_LCTL, OS_LALT, OS_LGUI, PLNK_1, PLNK_2, PLNK_3, PLNK_4, KC_LEFT, KC_DOWN, KC_UP, KC_RGHT \
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)
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#define LAYOUT_base_wrapper(...) LAYOUT_ortho_4x12_base(__VA_ARGS__)
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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[_DEFAULT_LAYER_1] = LAYOUT_base_wrapper(
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_________________QWERTY_L1_________________, _________________QWERTY_R1_________________,
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_________________QWERTY_L2_________________, _________________QWERTY_R2_________________,
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_________________QWERTY_L3_________________, _________________QWERTY_R3_________________
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),
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[_DEFAULT_LAYER_2] = LAYOUT_base_wrapper(
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______________COLEMAK_MOD_DH_L1____________, ______________COLEMAK_MOD_DH_R1____________,
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______________COLEMAK_MOD_DH_L2____________, ______________COLEMAK_MOD_DH_R2____________,
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______________COLEMAK_MOD_DH_L3____________, ______________COLEMAK_MOD_DH_R3____________
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),
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[_DEFAULT_LAYER_3] = LAYOUT_base_wrapper(
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_________________COLEMAK_L1________________, _________________COLEMAK_R1________________,
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_________________COLEMAK_L2________________, _________________COLEMAK_R2________________,
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_________________COLEMAK_L3________________, _________________COLEMAK_R3________________
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),
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[_DEFAULT_LAYER_4] = LAYOUT_base_wrapper(
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_________________DVORAK_L1_________________, _________________DVORAK_R1_________________,
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_________________DVORAK_L2_________________, _________________DVORAK_R2_________________,
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_________________DVORAK_L3_________________, _________________DVORAK_R3_________________
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),
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[_LOWER] = LAYOUT_ortho_4x12_wrapper(
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KC_TILD, _________________LOWER_L1__________________, _________________LOWER_R1__________________, KC_BSPC,
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KC_DEL, _________________LOWER_L2__________________, _________________LOWER_R2__________________, KC_PIPE,
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_______, _________________LOWER_L3__________________, _________________LOWER_R3__________________, _______,
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_______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______, _______
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),
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[_RAISE] = LAYOUT_ortho_4x12_wrapper(
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KC_GRV, _________________RAISE_L1__________________, _________________RAISE_R1__________________, KC_BSPC,
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KC_DEL, _________________RAISE_L2__________________, _________________RAISE_R2__________________, KC_BSLS,
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_______, _________________RAISE_L3__________________, _________________RAISE_R3__________________, _______,
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_______, _______, _______, _______, _______, _______, _______, _________________RAISE_R3__________________
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),
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[_ADJUST] = LAYOUT_ortho_4x12_wrapper(
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KC_MAKE, _________________ADJUST_L1_________________, _________________ADJUST_R1_________________, KC_RST,
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VRSN, _________________ADJUST_L2_________________, _________________ADJUST_R2_________________, EEP_RST,
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TH_LVL, _________________ADJUST_L3_________________, _________________ADJUST_R3_________________, RGB_IDL,
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HPT_TOG, _______, _______, _______, _______, KC_NUKE, _______, _______, _______, _______, _______, TG_MODS
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)
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};
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#ifdef ENCODER_MAP_ENABLE
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const uint16_t PROGMEM encoder_map[][NUM_ENCODERS][2] = {
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[_DEFAULT_LAYER_1] = { { KC_DOWN, KC_UP } },
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[_DEFAULT_LAYER_2] = { { _______, _______ } },
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[_DEFAULT_LAYER_3] = { { _______, _______ } },
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[_DEFAULT_LAYER_4] = { { _______, _______ } },
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[_GAMEPAD] = { { _______, _______ } },
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[_DIABLO] = { { _______, _______ } },
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[_MOUSE] = { { KC_WH_D, KC_WH_U } },
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[_MEDIA] = { { _______, _______ } },
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[_RAISE] = { { KC_VOLD, KC_VOLU } },
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[_LOWER] = { { RGB_MOD, RGB_RMOD} },
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[_ADJUST] = { { CK_DOWN, CK_UP } },
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};
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#endif
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// clang-format on
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bool process_record_keymap(uint16_t keycode, keyrecord_t *record) {
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switch (keycode) {
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#ifdef BACKLIGHT_ENABLE
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case BACKLIT:
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if (record->event.pressed) {
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register_code(KC_RSFT);
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# ifdef BACKLIGHT_ENABLE
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backlight_step();
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# endif
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} else {
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unregister_code(KC_RSFT);
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}
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break;
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#endif
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#ifdef KEYBOARD_planck_ez
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case TH_LVL:
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if (record->event.pressed) {
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keyboard_config.led_level++;
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if (keyboard_config.led_level > 4) {
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keyboard_config.led_level = 0;
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}
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planck_ez_right_led_level((uint8_t)keyboard_config.led_level * 255 / 4);
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planck_ez_left_led_level((uint8_t)keyboard_config.led_level * 255 / 4);
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eeconfig_update_kb(keyboard_config.raw);
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layer_state_set_kb(layer_state);
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}
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break;
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#endif
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}
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return true;
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}
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bool music_mask_user(uint16_t keycode) {
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switch (keycode) {
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case RAISE:
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case LOWER:
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case BK_LWER:
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case SP_LWER:
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case DL_RAIS:
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case ET_RAIS:
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return false;
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default:
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return true;
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}
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}
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#ifdef RGB_MATRIX_ENABLE
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# ifdef KEYBOARD_planck_rev6
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// clang-format off
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led_config_t g_led_config = {
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{
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// Key Matrix to LED Index
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{ NO_LED, 6, NO_LED, NO_LED, 5, NO_LED },
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{ NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED },
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{ NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, 0 },
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{ NO_LED, 7, NO_LED, NO_LED, 2, NO_LED },
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{ NO_LED, 4, NO_LED, NO_LED, 3, NO_LED },
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{ NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED },
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{ NO_LED, NO_LED, NO_LED, NO_LED, NO_LED, NO_LED },
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{ NO_LED, 1, NO_LED, NO_LED, 8, NO_LED }
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}, {
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// LED Index to Physical Position
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{112, 39}, {148, 60}, {206, 53}, {206, 3}, {150, 3}, {74, 3}, {18, 3}, {18, 54}, {77, 60}
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}, {
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// LED Index to Flag
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LED_FLAG_ALL, LED_FLAG_ALL, LED_FLAG_ALL, LED_FLAG_ALL, LED_FLAG_ALL,
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LED_FLAG_ALL, LED_FLAG_ALL, LED_FLAG_ALL, LED_FLAG_ALL
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}
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};
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// clange-format on
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# endif
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// clang-format off
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void suspend_power_down_keymap(void) {
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rgb_matrix_set_suspend_state(true);
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}
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void suspend_wakeup_init_keymap(void) {
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rgb_matrix_set_suspend_state(false);
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}
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// clang-format on
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void rgb_matrix_indicators_advanced_user(uint8_t led_min, uint8_t led_max) {
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uint8_t this_mod = get_mods();
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uint8_t this_led = host_keyboard_leds();
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uint8_t this_osm = get_oneshot_mods();
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bool is_ez;
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# ifdef KEYBOARD_planck_ez
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is_ez = true;
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# endif
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# if defined(RGBLIGHT_ENABLE)
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if (!userspace_config.rgb_layer_change)
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# else
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if (userspace_config.rgb_layer_change)
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# endif
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{
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switch (get_highest_layer(layer_state)) {
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case _GAMEPAD:
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rgb_matrix_layer_helper(HSV_ORANGE, 1, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _DIABLO:
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rgb_matrix_layer_helper(HSV_RED, 1, rgb_matrix_config.speed * 8, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _RAISE:
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rgb_matrix_layer_helper(HSV_YELLOW, 1, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _LOWER:
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rgb_matrix_layer_helper(HSV_GREEN, 1, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _ADJUST:
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rgb_matrix_layer_helper(HSV_RED, 1, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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default:
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{
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switch (get_highest_layer(default_layer_state)) {
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case _DEFAULT_LAYER_1:
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rgb_matrix_layer_helper(DEFAULT_LAYER_1_HSV, 0, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _DEFAULT_LAYER_2:
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rgb_matrix_layer_helper(DEFAULT_LAYER_2_HSV, 0, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _DEFAULT_LAYER_3:
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rgb_matrix_layer_helper(DEFAULT_LAYER_3_HSV, 0, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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case _DEFAULT_LAYER_4:
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rgb_matrix_layer_helper(DEFAULT_LAYER_4_HSV, 0, rgb_matrix_config.speed, LED_FLAG_MODIFIER, led_min, led_max);
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break;
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}
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break;
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}
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}
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}
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switch (get_highest_layer(default_layer_state)) {
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case _DEFAULT_LAYER_1:
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RGB_MATRIX_INDICATOR_SET_COLOR((is_ez ? 41 : 42), 0x00, 0xFF, 0xFF);
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break;
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case _DEFAULT_LAYER_2:
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RGB_MATRIX_INDICATOR_SET_COLOR((is_ez ? 41 : 42), 0xFF, 0x00, 0xFF);
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break;
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case _DEFAULT_LAYER_3:
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RGB_MATRIX_INDICATOR_SET_COLOR((is_ez ? 41 : 42), 0x00, 0xFF, 0x00);
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break;
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case _DEFAULT_LAYER_4:
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RGB_MATRIX_INDICATOR_SET_COLOR((is_ez ? 41 : 42), 0xD9, 0xA5, 0x21);
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break;
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}
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if ((this_mod | this_osm) & MOD_MASK_SHIFT || this_led & (1 << USB_LED_CAPS_LOCK)) {
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if (!layer_state_cmp(layer_state, _ADJUST)) {
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RGB_MATRIX_INDICATOR_SET_COLOR(24, 0x00, 0xFF, 0x00);
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}
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RGB_MATRIX_INDICATOR_SET_COLOR(36, 0x00, 0xFF, 0x00);
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}
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if ((this_mod | this_osm) & MOD_MASK_CTRL) {
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RGB_MATRIX_INDICATOR_SET_COLOR(25, 0xFF, 0x00, 0x00);
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RGB_MATRIX_INDICATOR_SET_COLOR(34, 0xFF, 0x00, 0x00);
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RGB_MATRIX_INDICATOR_SET_COLOR(37, 0xFF, 0x00, 0x00);
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}
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if ((this_mod | this_osm) & MOD_MASK_GUI) {
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RGB_MATRIX_INDICATOR_SET_COLOR(39, 0xFF, 0xD9, 0x00);
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}
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if ((this_mod | this_osm) & MOD_MASK_ALT) {
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RGB_MATRIX_INDICATOR_SET_COLOR(38, 0x00, 0x00, 0xFF);
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}
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}
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void matrix_init_keymap(void) {
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# ifdef KEYBOARD_planck_light
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writePinLow(D6);
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# endif
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// rgblight_mode(RGB_MATRIX_MULTISPLASH);
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}
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#else // RGB_MATRIX_INIT
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void matrix_init_keymap(void) {
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# if !defined(CONVERT_TO_PROTON_C) && !defined(KEYBOARD_planck)
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setPinOutput(D5);
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writePinHigh(D5);
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setPinOutput(B0);
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writePinHigh(B0);
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# endif
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}
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#endif // RGB_MATRIX_INIT
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#ifdef ENCODER_ENABLE
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bool encoder_update_user(uint8_t index, bool clockwise) {
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switch (get_highest_layer(layer_state)) {
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case _RAISE:
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clockwise ? tap_code(KC_VOLD) : tap_code(KC_VOLU);
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break;
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case _LOWER:
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# ifdef RGB_MATRIX_ENABLE
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clockwise ? rgb_matrix_step() : rgb_matrix_step_reverse();
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# else
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clockwise ? tap_code(KC_PGDN) : tap_code(KC_PGUP);
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# endif
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break;
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case _ADJUST:
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# ifdef AUDIO_CLICKY
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clockwise ? clicky_freq_up() : clicky_freq_down();
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# endif
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break;
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default:
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clockwise ? tap_code(KC_DOWN) : tap_code(KC_UP);
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}
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# ifdef AUDIO_CLICKY
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clicky_play();
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# endif
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return true;
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}
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#endif // ENCODER_ENABLE
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#ifdef KEYBOARD_planck_rev6
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bool dip_switch_update_user(uint8_t index, bool active) {
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switch (index) {
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case 0:
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if (active) {
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audio_on();
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} else {
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audio_off();
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}
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break;
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case 1:
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if (active) {
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clicky_on();
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} else {
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clicky_off();
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}
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break;
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case 2:
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keymap_config.swap_lctl_lgui = keymap_config.swap_rctl_rgui = active;
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break;
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case 3:
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userspace_config.nuke_switch = active;
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break;
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}
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return true;
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}
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#endif // KEYBOARD_planck_rev6
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#ifdef KEYBOARD_planck_ez
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layer_state_t layer_state_set_keymap(layer_state_t state) {
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planck_ez_left_led_off();
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planck_ez_right_led_off();
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switch (get_highest_layer(state)) {
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case _LOWER:
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planck_ez_left_led_on();
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break;
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case _RAISE:
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planck_ez_right_led_on();
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break;
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case _ADJUST:
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planck_ez_right_led_on();
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planck_ez_left_led_on();
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break;
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default:
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break;
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}
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return state;
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}
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#endif
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