Support for the Paladin64 PCB (#2639)
* Support for the Paladin64 PCB * Paladin64: Added readme. Added the bootloader option to rules.mk * Fixed the formatting * fixed the flash command
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#ifndef CONFIG_H
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#define CONFIG_H
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#include "config_common.h"
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/* USB Device descriptor parameter */
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#define VENDOR_ID 0xFEED
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#define PRODUCT_ID 0x6060
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#define DEVICE_VER 0x0001
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#define MANUFACTURER inachie
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#define PRODUCT paladin64
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#define DESCRIPTION Paladin64 ALPS 64 keyboard with trackpoint and underglow
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/* key matrix size */
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#define MATRIX_ROWS 8
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#define MATRIX_COLS 8
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#ifdef PS2_USE_USART
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#define PS2_CLOCK_PORT PORTD
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#define PS2_CLOCK_PIN PIND
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#define PS2_CLOCK_DDR DDRD
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#define PS2_CLOCK_BIT 5
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#define PS2_DATA_PORT PORTD
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#define PS2_DATA_PIN PIND
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#define PS2_DATA_DDR DDRD
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#define PS2_DATA_BIT 2
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/* synchronous, odd parity, 1-bit stop, 8-bit data, sample at falling
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* edge */
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/* set DDR of CLOCK as input to be slave */
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#define PS2_USART_INIT() do { \
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PS2_CLOCK_DDR &= ~(1<<PS2_CLOCK_BIT); \
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PS2_DATA_DDR &= ~(1<<PS2_DATA_BIT); \
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UCSR1C = ((1 << UMSEL10) | \
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(3 << UPM10) | \
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(0 << USBS1) | \
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(3 << UCSZ10) | \
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(0 << UCPOL1)); \
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UCSR1A = 0; \
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UBRR1H = 0; \
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UBRR1L = 0; \
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} while (0)
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#define PS2_USART_RX_INT_ON() do { \
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UCSR1B = ((1 << RXCIE1) | \
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(1 << RXEN1)); \
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} while (0)
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#define PS2_USART_RX_POLL_ON() do { \
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UCSR1B = (1 << RXEN1); \
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} while (0)
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#define PS2_USART_OFF() do { \
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UCSR1C = 0; \
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UCSR1B &= ~((1 << RXEN1) | \
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(1 << TXEN1)); \
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} while (0)
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#define PS2_USART_RX_READY (UCSR1A & (1<<RXC1))
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#define PS2_USART_RX_DATA UDR1
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#define PS2_USART_ERROR (UCSR1A & ((1<<FE1) | (1<<DOR1) | (1<<UPE1)))
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#define PS2_USART_RX_VECT USART1_RX_vect
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#endif
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#ifdef PS2_USE_INT
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#define PS2_CLOCK_PORT PORTD
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#define PS2_CLOCK_PIN PIND
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#define PS2_CLOCK_DDR DDRD
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#define PS2_CLOCK_BIT 2
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#define PS2_DATA_PORT PORTD
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#define PS2_DATA_PIN PIND
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#define PS2_DATA_DDR DDRD
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#define PS2_DATA_BIT 5
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#define PS2_INT_INIT() do { \
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EICRA |= ((1<<ISC21) | \
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(0<<ISC20)); \
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} while (0)
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#define PS2_INT_ON() do { \
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EIMSK |= (1<<INT2); \
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} while (0)
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#define PS2_INT_OFF() do { \
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EIMSK &= ~(1<<INT2); \
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} while (0)
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#define PS2_INT_VECT INT2_vect
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#endif
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/* key matrix pins */
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#define MATRIX_ROW_PINS { C6, B6, B5, B4, D7, D6, B0, D3 }
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#define MATRIX_COL_PINS { C7, F7, F6, F5, F4, F1, F0, D1 }
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#define UNUSED_PINS
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/* COL2ROW or ROW2COL */
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#define DIODE_DIRECTION COL2ROW
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/* number of backlight levels */
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#ifdef BACKLIGHT_PIN
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#define BACKLIGHT_LEVELS 3
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#endif
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/* Set 0 if debouncing isn't needed */
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#define DEBOUNCING_DELAY 5
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/* Mechanical locking support. Use KC_LCAP, KC_LNUM or KC_LSCR instead in keymap */
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#define LOCKING_SUPPORT_ENABLE
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/* Locking resynchronize hack */
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#define LOCKING_RESYNC_ENABLE
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/* key combination for command */
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#define IS_COMMAND() ( \
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keyboard_report->mods == (MOD_BIT(KC_LSHIFT) | MOD_BIT(KC_RSHIFT)) \
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)
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/* prevent stuck modifiers */
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#define PREVENT_STUCK_MODIFIERS
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#define RGB_DI_PIN D0
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#ifdef RGB_DI_PIN
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#define RGBLIGHT_ANIMATIONS
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#define RGBLED_NUM 14
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#define RGBLIGHT_HUE_STEP 10
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#define RGBLIGHT_SAT_STEP 17
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#define RGBLIGHT_VAL_STEP 12
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#endif
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#endif
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#include "paladin64.h"
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const uint16_t PROGMEM fn_actions[] = {};
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const uint16_t PROGMEM keymaps[][MATRIX_ROWS][MATRIX_COLS] = {
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/* QWERTY */
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KEYMAP(
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KC_ESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_MINS, KC_EQL, KC_GRV, KC_BSLS,
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KC_TAB, KC_Q, KC_W, KC_E, KC_R, KC_T, KC_Y, KC_U, KC_I, KC_O, KC_P, KC_LBRC, KC_RBRC, KC_BSPC,
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MO(3), KC_A, KC_S, KC_D, KC_F, KC_G, KC_H, KC_J, KC_K, KC_L, KC_SCLN, KC_QUOT, KC_ENT,
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KC_LSFT, KC_NUBS, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_N, KC_M, KC_COMM, KC_DOT, KC_SLSH, KC_LSFT, MO(3),
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KC_LCTL, KC_LALT, KC_LGUI, KC_SPC, KC_APP, KC_RGUI, KC_RALT, KC_LCTL),
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/* DVORAK */
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KEYMAP(
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KC_ESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_LBRC, KC_RBRC, KC_GRV, KC_BSLS,
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KC_TAB, KC_QUOT, KC_COMM, KC_DOT, KC_P, KC_Y, KC_F, KC_G, KC_C, KC_R, KC_L, KC_SLSH, KC_EQL, KC_BSPC,
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MO(3), KC_A, KC_O, KC_E, KC_U, KC_I, KC_D, KC_H, KC_T, KC_N, KC_S, KC_MINS, KC_ENT,
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KC_LSFT, KC_NUBS, KC_SCLN, KC_Q, KC_J, KC_K, KC_X, KC_B, KC_M, KC_W, KC_V, KC_Z, KC_LSFT, MO(3),
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KC_LCTL, KC_LALT, KC_LGUI, KC_SPC, KC_APP, KC_RGUI, KC_RALT, KC_RCTL),
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/* COLEMAK */
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KEYMAP(
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KC_ESC, KC_1, KC_2, KC_3, KC_4, KC_5, KC_6, KC_7, KC_8, KC_9, KC_0, KC_MINS, KC_EQL, KC_GRV, KC_BSLS,
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KC_TAB, KC_Q, KC_W, KC_F, KC_P, KC_G, KC_J, KC_L, KC_U, KC_Y, KC_SCLN, KC_LBRC, KC_RBRC, KC_BSPC,
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MO(3), KC_A, KC_R, KC_S, KC_T, KC_D, KC_H, KC_N, KC_E, KC_I, KC_O, KC_QUOT, KC_ENT,
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KC_LSFT, KC_NUBS, KC_Z, KC_X, KC_C, KC_V, KC_B, KC_K, KC_M, KC_COMM, KC_DOT, KC_SLSH, KC_LSFT, MO(3),
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KC_LCTL, KC_LALT, KC_LGUI, KC_SPC, KC_APP, KC_RGUI, KC_RALT, KC_RCTL),
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/* FUNCTION */
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KEYMAP(
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KC_GRV, KC_F1, KC_F2, KC_F3, KC_F4, KC_F5, KC_F6, KC_F7, KC_F8, KC_F9, KC_F10, KC_F11, KC_F12, KC_TRNS, KC_TRNS,
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KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, RESET, KC_TRNS, KC_TRNS, KC_PGUP, KC_UP, KC_PGDN, KC_PSCR, KC_SLCK, KC_PAUS, KC_BSPC,
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KC_TRNS, KC_TRNS, KC_MPRV, KC_MPLY, KC_MNXT, KC_TRNS, KC_HOME, KC_LEFT, KC_DOWN, KC_RGHT, KC_TRNS, KC_TRNS, KC_TRNS,
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KC_CAPS, KC_TRNS, KC_TRNS, KC_MUTE, KC_VOLD, KC_VOLU, KC_TRNS, KC_END, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
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KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, RGB_MOD, KC_TRNS, RGB_TOG),
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/* AutoMouse */
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KEYMAP(
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KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
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KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_BTN1, KC_BTN2, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
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KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
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KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS,
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KC_TRNS, KC_TRNS, KC_TRNS, KC_BTN3, KC_TRNS, KC_TRNS, KC_TRNS, KC_TRNS)
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};
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const macro_t *action_get_macro(keyrecord_t *record, uint8_t id, uint8_t opt) {
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// keyevent_t event = record->event;
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switch (id) {
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}
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return MACRO_NONE;
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}
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void matrix_init_user(void) {
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}
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void matrix_scan_user(void) {
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}
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bool process_record_user(uint16_t keycode, keyrecord_t *record) {
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return true;
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}
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void led_set_user(uint8_t usb_led) {
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if (usb_led & (1 << USB_LED_NUM_LOCK)) {
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} else {
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}
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if (usb_led & (1 << USB_LED_CAPS_LOCK)) {
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} else {
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}
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if (usb_led & (1 << USB_LED_SCROLL_LOCK)) {
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} else {
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}
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if (usb_led & (1 << USB_LED_COMPOSE)) {
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} else {
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}
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if (usb_led & (1 << USB_LED_KANA)) {
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} else {
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}
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}
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#include "paladin64.h"
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#ifndef PALADIN64_H
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#define PALADIN64_H
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#include "quantum.h"
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#define KEYMAP( \
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K36, K37, K46, K47, K56, K57, K66, K67, K76, K77, K06, K07, K17, K26, K27, \
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K34, K35, K44, K45, K54, K55, K64, K65, K75, K05, K15, K16, K25, K24, \
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K32, K33, K43, K52, K53, K63, K73, K74, K03, K04, K13, K14, K23, \
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K31, K41, K42, K51, K61, K62, K71, K72, K01, K02, K11, K12, K21, K22, \
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K30, K40, K50, K60, K70, K00, K10, K20 \
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) { \
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{ K00, K01, K02, K03, K04, K05, K06, K07 }, \
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{ K10, K11, K12, K13, K14, K15, K16, K17 }, \
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{ K20, K21, K22, K23, K24, K25, K26, K27 }, \
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{ K30, K31, K32, K33, K34, K35, K36, K37 }, \
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{ K40, K41, K42, K43, K44, K45, K46, K47 }, \
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{ K50, K51, K52, K53, K54, K55, K56, K57 }, \
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{ K60, K61, K62, K63, K64, K65, K66, K67 }, \
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{ K70, K71, K72, K73, K74, K75, K76, K77 } \
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}
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#endif
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# Paladin64 ALPS PCB by /u/iNachie
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Firmware for the Paladin64 ALPS64 PCB, with underglow and an optional
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trackpoint module.
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Keyboard Maintainer: [/u/iNachie](https://github.com/nachie)
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Hardware Supported: Paladin64 ALPS PCB by iNachie
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Hardware Availability: [/u/iNachie](https://www.reddit.com/user/inachie/)
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Make example for this keyboard (after setting up your build environment):
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make paladin64:default
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Or to make and flash:
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make paladin64:default:dfu
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See [build environment setup](https://docs.qmk.fm/build_environment_setup.html) then the [make instructions](https://docs.qmk.fm/make_instructions.html) for more information.
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# MCU name
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MCU = atmega32u4
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# Processor frequency.
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# This will define a symbol, F_CPU, in all source code files equal to the
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# processor frequency in Hz. You can then use this symbol in your source code to
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# calculate timings. Do NOT tack on a 'UL' at the end, this will be done
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# automatically to create a 32-bit value in your source code.
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#
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# This will be an integer division of F_USB below, as it is sourced by
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# F_USB after it has run through any CPU prescalers. Note that this value
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# does not *change* the processor frequency - it should merely be updated to
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# reflect the processor speed set externally so that the code can use accurate
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# software delays.
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F_CPU = 16000000
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#
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# LUFA specific
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#
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# Target architecture (see library "Board Types" documentation).
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ARCH = AVR8
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# Input clock frequency.
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# This will define a symbol, F_USB, in all source code files equal to the
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# input clock frequency (before any prescaling is performed) in Hz. This value may
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# differ from F_CPU if prescaling is used on the latter, and is required as the
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# raw input clock is fed directly to the PLL sections of the AVR for high speed
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# clock generation for the USB and other AVR subsections. Do NOT tack on a 'UL'
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# at the end, this will be done automatically to create a 32-bit value in your
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# source code.
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#
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# If no clock division is performed on the input clock inside the AVR (via the
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# CPU clock adjust registers or the clock division fuses), this will be equal to F_CPU.
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F_USB = $(F_CPU)
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# Interrupt driven control endpoint task(+60)
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OPT_DEFS += -DINTERRUPT_CONTROL_ENDPOINT
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# Boot Section Size in *bytes*
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OPT_DEFS += -DBOOTLOADER_SIZE=4096
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BOOTLOADER = atmel-dfu
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# Build Options
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# comment out to disable the options.
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#
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BOOTMAGIC_ENABLE ?= yes # Virtual DIP switch configuration(+1000)
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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 ?= no # Commands for debug and configuration
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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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BACKLIGHT_ENABLE ?= no # Enable keyboard backlight functionality
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AUDIO_ENABLE ?= no
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RGBLIGHT_ENABLE ?= yes
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#PS2_MOUSE_ENABLE ?= yes
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#PS2_USE_USART ?= yes
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#PS2_USE_INT ?= yes
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