Refactoring frenchdev
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de80e2c756
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a3f151b8e9
@ -18,29 +18,30 @@ void matrix_init_kb(void) {
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PORTD |= (1<<5 | 1<<4);
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PORTE |= (1<<6);
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ergodox_blink_all_leds();
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frenchdev_blink_all_leds();
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frenchdev_blink_all_leds();
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frenchdev_blink_all_leds();
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frenchdev_blink_all_leds();
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matrix_init_user();
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}
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void ergodox_blink_all_leds(void)
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void frenchdev_blink_all_leds(void)
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{
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ergodox_led_all_off();
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ergodox_led_all_set(LED_BRIGHTNESS_HI);
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ergodox_right_led_1_on();
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frenchdev_led_all_off();
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frenchdev_led_all_set(LED_BRIGHTNESS_HI);
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frenchdev_led_1_on();
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_delay_ms(50);
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ergodox_right_led_2_on();
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frenchdev_led_2_on();
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_delay_ms(50);
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ergodox_right_led_3_on();
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frenchdev_led_3_on();
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_delay_ms(50);
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ergodox_right_led_1_off();
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frenchdev_led_1_off();
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_delay_ms(50);
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ergodox_right_led_2_off();
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frenchdev_led_2_off();
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_delay_ms(50);
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ergodox_right_led_3_off();
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//ergodox_led_all_on();
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//_delay_ms(333);
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ergodox_led_all_off();
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frenchdev_led_3_off();
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frenchdev_led_all_off();
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}
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uint8_t init_mcp23018(void) {
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@ -10,7 +10,7 @@
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#define CPU_PRESCALE(n) (CLKPR = 0x80, CLKPR = (n))
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#define CPU_16MHz 0x00
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// I2C aliases and register addresses (see "mcp23018.md")
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// I2C aliases and register addresses (see "mcp23018.md" on tmk repository)
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#define I2C_ADDR 0b0100000
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#define I2C_ADDR_WRITE ( (I2C_ADDR<<1) | I2C_WRITE )
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#define I2C_ADDR_READ ( (I2C_ADDR<<1) | I2C_READ )
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@ -25,57 +25,56 @@
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extern uint8_t mcp23018_status;
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void init_ergodox(void);
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void ergodox_blink_all_leds(void);
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void init_frenchdev(void);
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void frenchdev_blink_all_leds(void);
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uint8_t init_mcp23018(void);
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uint8_t ergodox_left_leds_update(void);
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#define LED_BRIGHTNESS_LO 15
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#define LED_BRIGHTNESS_HI 255
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inline void ergodox_board_led_on(void) { DDRD |= (1<<6); PORTD |= (1<<6); }
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inline void ergodox_right_led_1_on(void) { DDRB |= (1<<5); PORTB |= (1<<5); }
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inline void ergodox_right_led_2_on(void) { DDRB |= (1<<6); PORTB |= (1<<6); }
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inline void ergodox_right_led_3_on(void) { DDRB |= (1<<7); PORTB |= (1<<7); }
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inline void ergodox_right_led_on(uint8_t led) { DDRB |= (1<<(led+4)); PORTB |= (1<<(led+4)); }
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inline void frenchdev_board_led_on(void) { DDRD |= (1<<6); PORTD |= (1<<6); }
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inline void frenchdev_led_1_on(void) { DDRB |= (1<<5); PORTB |= (1<<5); }
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inline void frenchdev_led_2_on(void) { DDRB |= (1<<6); PORTB |= (1<<6); }
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inline void frenchdev_led_3_on(void) { DDRB |= (1<<7); PORTB |= (1<<7); }
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inline void frenchdev_led_on(uint8_t led) { DDRB |= (1<<(led+4)); PORTB |= (1<<(led+4)); }
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inline void ergodox_board_led_off(void) { DDRD &= ~(1<<6); PORTD &= ~(1<<6); }
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inline void ergodox_right_led_1_off(void) { DDRB &= ~(1<<5); PORTB &= ~(1<<5); }
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inline void ergodox_right_led_2_off(void) { DDRB &= ~(1<<6); PORTB &= ~(1<<6); }
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inline void ergodox_right_led_3_off(void) { DDRB &= ~(1<<7); PORTB &= ~(1<<7); }
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inline void ergodox_right_led_off(uint8_t led) { DDRB &= ~(1<<(led+4)); PORTB &= ~(1<<(led+4)); }
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inline void frenchdev_board_led_off(void) { DDRD &= ~(1<<6); PORTD &= ~(1<<6); }
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inline void frenchdev_led_1_off(void) { DDRB &= ~(1<<5); PORTB &= ~(1<<5); }
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inline void frenchdev_led_2_off(void) { DDRB &= ~(1<<6); PORTB &= ~(1<<6); }
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inline void frenchdev_led_3_off(void) { DDRB &= ~(1<<7); PORTB &= ~(1<<7); }
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inline void frenchdev_led_off(uint8_t led) { DDRB &= ~(1<<(led+4)); PORTB &= ~(1<<(led+4)); }
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inline void ergodox_led_all_on(void)
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inline void frenchdev_led_all_on(void)
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{
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ergodox_board_led_on();
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ergodox_right_led_1_on();
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ergodox_right_led_2_on();
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ergodox_right_led_3_on();
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frenchdev_board_led_on();
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frenchdev_led_1_on();
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frenchdev_led_2_on();
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frenchdev_led_3_on();
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}
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inline void ergodox_led_all_off(void)
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inline void frenchdev_led_all_off(void)
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{
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ergodox_board_led_off();
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ergodox_right_led_1_off();
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ergodox_right_led_2_off();
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ergodox_right_led_3_off();
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frenchdev_board_led_off();
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frenchdev_led_1_off();
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frenchdev_led_2_off();
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frenchdev_led_3_off();
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}
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inline void ergodox_right_led_1_set(uint8_t n) { OCR1A = n; }
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inline void ergodox_right_led_2_set(uint8_t n) { OCR1B = n; }
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inline void ergodox_right_led_3_set(uint8_t n) { OCR1C = n; }
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inline void ergodox_right_led_set(uint8_t led, uint8_t n) {
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inline void frenchdev_led_1_set(uint8_t n) { OCR1A = n; }
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inline void frenchdev_led_2_set(uint8_t n) { OCR1B = n; }
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inline void frenchdev_led_3_set(uint8_t n) { OCR1C = n; }
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inline void frenchdev_led_set(uint8_t led, uint8_t n) {
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(led == 1) ? (OCR1A = n) :
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(led == 2) ? (OCR1B = n) :
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(OCR1C = n);
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}
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inline void ergodox_led_all_set(uint8_t n)
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inline void frenchdev_led_all_set(uint8_t n)
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{
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ergodox_right_led_1_set(n);
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ergodox_right_led_2_set(n);
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ergodox_right_led_3_set(n);
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frenchdev_led_1_set(n);
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frenchdev_led_2_set(n);
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frenchdev_led_3_set(n);
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}
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#define KEYMAP( \
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@ -374,18 +374,18 @@ uint8_t old_layer=_BASE;
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void matrix_scan_user(void) {
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uint8_t layer = biton32(layer_state);
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ergodox_right_led_1_off();
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ergodox_right_led_2_off();
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frenchdev_led_1_off();
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frenchdev_led_2_off();
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switch (layer) {
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case _BASE:
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ergodox_right_led_2_on();
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frenchdev_led_2_on();
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break;
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case _SYMBOLS:
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ergodox_right_led_1_on();
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frenchdev_led_1_on();
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break;
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case _MEDIA:
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ergodox_right_led_1_on();
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ergodox_right_led_2_on();
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frenchdev_led_1_on();
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frenchdev_led_2_on();
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default:
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// none
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break;
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@ -399,9 +399,9 @@ bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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void led_set_user(uint8_t usb_led) {
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if (usb_led & (1<<USB_LED_CAPS_LOCK)){
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ergodox_right_led_3_on();
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frenchdev_led_3_on();
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} else {
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ergodox_right_led_3_off();
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frenchdev_led_3_off();
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}
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return ;
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}
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@ -1,15 +1,17 @@
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/*
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Note to self: adapted from ergodox EZ matrix
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The "column" and "row" in here actually refers to the opposite on the keyboard
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see definition of KEYMAP in v1.h, the grid is transposed so that a "row" in here is actually a "column" on the physical keyboard
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Nicolas
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Note for ErgoDox EZ customizers: Here be dragons!
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This is not a file you want to be messing with.
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All of the interesting stuff for you is under keymaps/ :)
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Love, Erez
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Note to self, the "column" and "row" in here actually refers to the opposite on the keyboard
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see definition of KEYMAP in v1.h, the grid is transposed so that a "row" in here is actually a "column" on the physical keyboard
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Nicolas
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Copyright 2013 Oleg Kostyuk <cub.uanic@gmail.com>
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Copyright 2013 Nicolas Poirey <nicolas.poirey@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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@ -164,7 +166,7 @@ uint8_t matrix_scan(void)
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print("left side not responding\n");
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} else {
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print("left side attached\n");
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ergodox_blink_all_leds();
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frenchdev_blink_all_leds();
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}
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}
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}
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@ -75,7 +75,7 @@ MOUSEKEY_ENABLE ?= yes # Mouse keys(+4700)
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EXTRAKEY_ENABLE ?= yes # Audio control and System control(+450)
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CONSOLE_ENABLE ?= yes # Console for debug(+400)
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COMMAND_ENABLE ?= yes # Commands for debug and configuration
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CUSTOM_MATRIX ?= yes # Custom matrix file (taken and adapted from the ErgoDox EZ to acomodate custom number of columns)
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CUSTOM_MATRIX ?= yes # Custom matrix file (taken and adapted from the ErgoDox EZ to handle custom number of columns)
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SLEEP_LED_ENABLE ?= no # Breathing sleep LED during USB suspend
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NKRO_ENABLE ?= yes # USB Nkey Rollover - if this doesn't work, see here: https://github.com/tmk/tmk_keyboard/wiki/FAQ#nkro-doesnt-work
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UNICODE_ENABLE ?= yes # Unicode
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