led
parent
1c6770f18c
commit
d9a1b9086f
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@ -348,7 +348,7 @@ void register_code(uint8_t code)
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return;
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return;
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}
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}
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#ifdef LOCKING_SUPPORT_ENABLE
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#ifdef LOCKING_SUPPORT_ENABLE
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else if (KC_LOCKING_CAPS == code) {
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else if (KC_LOCKING_CAPS == code) {
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#ifdef LOCKING_RESYNC_ENABLE
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#ifdef LOCKING_RESYNC_ENABLE
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// Resync: ignore if caps lock already is on
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// Resync: ignore if caps lock already is on
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@ -26,6 +26,7 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#define USB_LED_SCROLL_LOCK 2
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#define USB_LED_SCROLL_LOCK 2
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#define USB_LED_COMPOSE 3
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#define USB_LED_COMPOSE 3
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#define USB_LED_KANA 4
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#define USB_LED_KANA 4
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#define USB_LED_FUNCTION 5
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void led_set(uint8_t usb_led);
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void led_set(uint8_t usb_led);
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@ -38,47 +38,15 @@ extern const uint16_t fn_actions[];
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* K2C, K31 and K3C are extra keys for ISO
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* K2C, K31 and K3C are extra keys for ISO
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*/
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*/
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#define KEYMAP( \
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#define KEYMAP( \
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K00, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, K0B, K0C, K0D, \
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K00, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, K0B, \
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K10, K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, K1C, K1D, \
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K10, K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, \
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K20, K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A, K2B, K2C, K2D, \
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K20, K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A, K2B, \
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K30, K31, K32, K33, K34, K35, K36, K37, K38, K39, K3A, K3B, K3C, K3D, \
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K30, K31, K32, K33, K34, K35, K37, K38, K39, K3A, K3B \
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K40, K41, K42, K45, K49, K4A, K4B, K4C, K4D \
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) { \
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) { \
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{ KC_##K00, KC_##K01, KC_##K02, KC_##K03, KC_##K04, KC_##K05, KC_##K06, KC_##K07, KC_##K08, KC_##K09, KC_##K0A, KC_##K0B, KC_##K0C, KC_##K0D }, \
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{ KC_##K00, KC_##K01, KC_##K02, KC_##K03, KC_##K04, KC_##K05, KC_##K06, KC_##K07, KC_##K08, KC_##K09, KC_##K0A, KC_##K0B }, \
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{ KC_##K10, KC_##K11, KC_##K12, KC_##K13, KC_##K14, KC_##K15, KC_##K16, KC_##K17, KC_##K18, KC_##K19, KC_##K1A, KC_##K1B, KC_##K1C, KC_##K1D }, \
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{ KC_##K10, KC_##K11, KC_##K12, KC_##K13, KC_##K14, KC_##K15, KC_##K16, KC_##K17, KC_##K18, KC_##K19, KC_##K1A, KC_##K1B }, \
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{ KC_##K20, KC_##K21, KC_##K22, KC_##K23, KC_##K24, KC_##K25, KC_##K26, KC_##K27, KC_##K28, KC_##K29, KC_##K2A, KC_##K2B, KC_##K2C, KC_##K2D }, \
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{ KC_##K20, KC_##K21, KC_##K22, KC_##K23, KC_##K24, KC_##K25, KC_##K26, KC_##K27, KC_##K28, KC_##K29, KC_##K2A, KC_##K2B }, \
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{ KC_##K30, KC_##K31, KC_##K32, KC_##K33, KC_##K34, KC_##K35, KC_##K36, KC_##K37, KC_##K38, KC_##K39, KC_##K3A, KC_##K3B, KC_##K3C, KC_##K3D }, \
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{ KC_##K30, KC_##K31, KC_##K32, KC_##K33, KC_##K34, KC_NO, KC_##K35, KC_##K37, KC_##K38, KC_##K39, KC_##K3A, KC_##K3B } \
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{ KC_##K40, KC_##K41, KC_##K42, KC_NO, KC_NO, KC_##K45, KC_NO, KC_NO, KC_NO, KC_##K49, KC_##K4A, KC_##K4B, KC_##K4C, KC_##K4D } \
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}
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}
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/* ANSI valiant. No extra keys for ISO */
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#define KEYMAP_ANSI( \
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K00, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, K0B, K0C, K0D, \
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K10, K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, K1C, K1D, \
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K20, K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A, K2B, K2D, \
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K30, K32, K33, K34, K35, K36, K37, K38, K39, K3A, K3B, K3D, \
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K40, K41, K42, K45, K4A, K4B, K4C, K4D \
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) KEYMAP( \
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K00, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, K0B, K0C, K0D, \
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K10, K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, K1C, K1D, \
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K20, K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A, K2B, NO, K2D, \
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K30, NO, K32, K33, K34, K35, K36, K37, K38, K39, K3A, K3B, NO, K3D, \
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K40, K41, K42, K45, NO, K4A, K4B, K4C, K4D \
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)
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#define KEYMAP_HHKB( \
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K00, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, K0B, K0C, K0D, K49,\
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K10, K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, K1C, K1D, \
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K20, K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A, K2B, K2D, \
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K30, K32, K33, K34, K35, K36, K37, K38, K39, K3A, K3B, K3D, K3C, \
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K40, K41, K42, K45, K4A, K4B, K4C, K4D \
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) KEYMAP( \
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K00, K01, K02, K03, K04, K05, K06, K07, K08, K09, K0A, K0B, K0C, K0D, \
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K10, K11, K12, K13, K14, K15, K16, K17, K18, K19, K1A, K1B, K1C, K1D, \
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K20, K21, K22, K23, K24, K25, K26, K27, K28, K29, K2A, K2B, NO, K2D, \
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K30, NO, K32, K33, K34, K35, K36, K37, K38, K39, K3A, K3B, K3C, K3D, \
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K40, K41, K42, K45, K49, K4A, K4B, K4C, K4D \
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)
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#endif
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#endif
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@ -22,7 +22,7 @@ const uint16_t PROGMEM fn_actions[] = {
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[1] = ACTION_DEFAULT_LAYER_SET(0), // set Qwerty layout
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[1] = ACTION_DEFAULT_LAYER_SET(0), // set Qwerty layout
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[2] = ACTION_DEFAULT_LAYER_SET(1), // set Photoshop presets
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[2] = ACTION_DEFAULT_LAYER_SET(1), // set Photoshop presets
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[3] = ACTION_LAYER_ON_OFF(2), // Photoshop function layer
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[3] = ACTION_LAYER_ON_OFF(2), // Photoshop function layer
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[4] = ACTION_MODS_KEY(MOD_LSFT | MOD_LCTL | MOD_LALT, KC_F9), // photo folder AHK
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[4] = ACTION_MODS_KEY(MOD_LSFT | MOD_LCTL | MOD_LALT, KC_F9), // photo folder AHK
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[5] = ACTION_MODS_KEY(MOD_LSFT | MOD_LCTL, KC_I), // select inverse
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[5] = ACTION_MODS_KEY(MOD_LSFT | MOD_LCTL, KC_I), // select inverse
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[6] = ACTION_MODS_KEY(MOD_LSFT, KC_M), // marquee select
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[6] = ACTION_MODS_KEY(MOD_LSFT, KC_M), // marquee select
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@ -22,13 +22,13 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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void led_set(uint8_t usb_led)
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void led_set(uint8_t usb_led)
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{
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{
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if (usb_led & (1<<USB_LED_CAPS_LOCK)) {
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if (usb_led & (1<<USB_LED_FUNCTION)) {
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// output low
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// Output high.
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DDRB |= (1<<2);
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DDRF |= (1<<0);
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PORTB &= ~(1<<2);
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PORTF |= (1<<0);
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} else {
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} else {
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// Hi-Z
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// Output low.
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DDRB &= ~(1<<2);
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DDRF &= ~(1<<0);
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PORTB &= ~(1<<2);
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PORTF &= ~(1<<0);
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}
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}
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}
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}
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@ -22,6 +22,7 @@ along with this program. If not, see <http://www.gnu.org/licenses/>.
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#include <stdbool.h>
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#include <stdbool.h>
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#include <avr/io.h>
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#include <avr/io.h>
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#include <util/delay.h>
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#include <util/delay.h>
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#include "action_layer.h"
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#include "print.h"
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#include "print.h"
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#include "debug.h"
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#include "debug.h"
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#include "util.h"
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#include "util.h"
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return MATRIX_COLS;
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return MATRIX_COLS;
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}
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}
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static
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void setup_leds(void) {
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DDRF |= 0x00;
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PORTF |= 0x00;
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}
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void matrix_init(void)
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void matrix_init(void)
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{
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{
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// initialize row and col
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// initialize row and col
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unselect_rows();
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unselect_rows();
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init_cols();
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init_cols();
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setup_leds();
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// initialize matrix state: all keys off
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// initialize matrix state: all keys off
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for (uint8_t i=0; i < MATRIX_ROWS; i++) {
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for (uint8_t i=0; i < MATRIX_ROWS; i++) {
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matrix[i] = 0;
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matrix[i] = 0;
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}
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}
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}
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}
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// uint8_t layer = biton32(default_layer_state);
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switch (default_layer_state) {
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case 1:
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DDRF &= ~(1<<0);
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PORTF &= ~(1<<0);
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break;
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case 2:
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DDRF |= (1<<0);
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PORTF |= (1<<0);
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break;
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}
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return 1;
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return 1;
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}
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}
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