[Keyboard] Misc tidyups for Chidori (#8091)
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707c04b4ab
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3b1f29a5d6
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@ -141,8 +141,6 @@ inline bool board_is_master(board_info_t* board) {
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return false;
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}
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inline uint8_t matrix_rows(void) { return MATRIX_ROWS; }
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inline uint8_t matrix2board(uint8_t row) { return row % NUM_ROWS; }
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inline uint8_t board_index(uint8_t row) { return row / NUM_ROWS; }
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@ -13,3 +13,5 @@
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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 "chidori.h"
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@ -13,6 +13,7 @@
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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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#pragma once
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#include "quantum.h"
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@ -23,8 +24,7 @@
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L07, L08, L09, L10, L11, L12, R07, R08, R09, R10, R11, R12, \
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L13, L14, L15, L16, L17, L18, R13, R14, R15, R16, R17, R18, \
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L19, L20, L21, L22, L23, L24, R19, R20, R21, R22, R23, R24 \
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) \
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{ \
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) { \
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{ L01, L02, L03, L04, L05, L06 }, \
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{ L07, L08, L09, L10, L11, L12 }, \
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{ L13, L14, L15, L16, L17, L18 }, \
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@ -33,15 +33,14 @@
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{ R07, R08, R09, R10, R11, R12 }, \
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{ R13, R14, R15, R16, R17, R18 }, \
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{ R19, R20, R21, R22, R23, R24 } \
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}
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}
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#define LAYOUT_extended( \
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L01, L02, L03, L04, L05, L06, M01, M02, M03, M04, M05, M06, R01, R02, R03, R04, R05, R06, \
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L07, L08, L09, L10, L11, L12, M07, M08, M09, M10, M11, M12, R07, R08, R09, R10, R11, R12, \
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L13, L14, L15, L16, L17, L18, M13, M14, M15, M16, M17, M18, R13, R14, R15, R16, R17, R18, \
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L19, L20, L21, L22, L23, L24, M19, M20, M21, M22, M23, M24, R19, R20, R21, R22, R23, R24 \
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) \
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{ \
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) { \
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{ L01, L02, L03, L04, L05, L06 }, \
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{ L07, L08, L09, L10, L11, L12 }, \
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{ L13, L14, L15, L16, L17, L18 }, \
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@ -54,6 +53,5 @@
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{ R07, R08, R09, R10, R11, R12 }, \
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{ R13, R14, R15, R16, R17, R18 }, \
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{ R19, R20, R21, R22, R23, R24 } \
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}
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}
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// clang-format on
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@ -162,15 +162,9 @@ 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 (IS_LED_ON(usb_led, USB_LED_CAPS_LOCK)) {
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board_set_led_by_index(0, LED_YELLOW, true);
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} else {
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board_set_led_by_index(0, LED_YELLOW, false);
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}
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if (IS_LED_ON(usb_led, USB_LED_SCROLL_LOCK)) {
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board_set_led_by_index(1, LED_YELLOW, true);
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} else {
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board_set_led_by_index(1, LED_YELLOW, false);
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}
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bool led_update_user(led_t led_state) {
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board_set_led_by_index(0, LED_YELLOW, led_state.caps_lock);
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board_set_led_by_index(1, LED_YELLOW, led_state.scroll_lock);
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return false;
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}
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@ -162,20 +162,10 @@ 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 (IS_LED_ON(usb_led, USB_LED_CAPS_LOCK)) {
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board_set_led_by_index(0, LED_YELLOW, true);
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} else {
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board_set_led_by_index(0, LED_YELLOW, false);
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}
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if (IS_LED_ON(usb_led, USB_LED_SCROLL_LOCK)) {
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board_set_led_by_index(1, LED_YELLOW, true);
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} else {
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board_set_led_by_index(1, LED_YELLOW, false);
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}
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if (IS_LED_ON(usb_led, USB_LED_NUM_LOCK)) {
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board_set_led_by_index(2, LED_YELLOW, true);
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} else {
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board_set_led_by_index(2, LED_YELLOW, false);
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}
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bool led_update_user(led_t led_state) {
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board_set_led_by_index(0, LED_YELLOW, led_state.caps_lock);
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board_set_led_by_index(1, LED_YELLOW, led_state.scroll_lock);
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board_set_led_by_index(2, LED_YELLOW, led_state.num_lock);
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return false;
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}
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@ -14,100 +14,23 @@ 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 <stdint.h>
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#include <stdbool.h>
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#include "wait.h"
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#include "print.h"
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#include "debug.h"
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#include "util.h"
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#include "matrix.h"
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#include "debounce.h"
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#include "quantum.h"
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#include "matrix.h"
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#include "board.h"
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#if (MATRIX_COLS <= 8)
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# define print_matrix_header() print("\nr/c 01234567\n")
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# define print_matrix_row(row) print_bin_reverse8(matrix_get_row(row))
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# define matrix_bitpop(i) bitpop(matrix[i])
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# define ROW_SHIFTER ((uint8_t)1)
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#elif (MATRIX_COLS <= 16)
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# define print_matrix_header() print("\nr/c 0123456789ABCDEF\n")
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# define print_matrix_row(row) print_bin_reverse16(matrix_get_row(row))
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# define matrix_bitpop(i) bitpop16(matrix[i])
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# define ROW_SHIFTER ((uint16_t)1)
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#elif (MATRIX_COLS <= 32)
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# define print_matrix_header() print("\nr/c 0123456789ABCDEF0123456789ABCDEF\n")
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# define print_matrix_row(row) print_bin_reverse32(matrix_get_row(row))
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# define matrix_bitpop(i) bitpop32(matrix[i])
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# define ROW_SHIFTER ((uint32_t)1)
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#endif
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#ifdef MATRIX_MASKED
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extern const matrix_row_t matrix_mask[];
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#endif
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/* matrix state(1:on, 0:off) */
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static matrix_row_t raw_matrix[MATRIX_ROWS]; // raw values
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static matrix_row_t matrix[MATRIX_ROWS]; // debounced values
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__attribute__((weak)) void matrix_init_quantum(void) { matrix_init_kb(); }
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__attribute__((weak)) void matrix_scan_quantum(void) { matrix_scan_kb(); }
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__attribute__((weak)) void matrix_init_kb(void) { matrix_init_user(); }
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__attribute__((weak)) void matrix_scan_kb(void) { matrix_scan_user(); }
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__attribute__((weak)) void matrix_init_user(void) {}
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__attribute__((weak)) void matrix_scan_user(void) {}
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inline matrix_row_t matrix_get_row(uint8_t row) {
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// Matrix mask lets you disable switches in the returned matrix data. For example, if you have a
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// switch blocker installed and the switch is always pressed.
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#ifdef MATRIX_MASKED
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return matrix[row] & matrix_mask[row];
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#else
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return matrix[row];
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#endif
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}
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void matrix_print(void) {
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print_matrix_header();
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for (uint8_t row = 0; row < MATRIX_ROWS; row++) {
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phex(row);
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print(": ");
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print_matrix_row(row);
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print("\n");
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}
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}
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void matrix_init(void) {
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void matrix_init_custom(void) {
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// initialize key pins
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board_init();
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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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raw_matrix[i] = 0;
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matrix[i] = 0;
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}
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debounce_init(MATRIX_ROWS);
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matrix_init_quantum();
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}
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uint8_t matrix_scan(void) {
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bool matrix_scan_custom(matrix_row_t current_matrix[]) {
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bool changed = false;
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// Set row, read cols
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for (uint8_t current_row = 0; current_row < MATRIX_ROWS; current_row++) {
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changed |= board_read_cols_on_row(raw_matrix, current_row);
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changed |= board_read_cols_on_row(current_matrix, current_row);
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}
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debounce(raw_matrix, matrix, MATRIX_ROWS, changed);
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matrix_scan_quantum();
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return 1;
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return changed;
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}
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@ -1,9 +1,5 @@
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# MCU name
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MCU = atmega328p
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ARCH = AVR8
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F_USB = $(F_CPU)
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OPT_DEFS += -DINTERRUPT_CONTROL_ENDPOINT
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# Bootloader selection
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# Teensy halfkay
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@ -36,7 +32,7 @@ AUDIO_ENABLE = no # Audio output on port C6
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FAUXCLICKY_ENABLE = no # Use buzzer to emulate clicky switches
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HD44780_ENABLE = no # Enable support for HD44780 based LCDs
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CUSTOM_MATRIX = yes
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CUSTOM_MATRIX = lite
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# project specific files
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SRC += matrix.c
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@ -109,21 +109,10 @@ section at the end of this file).
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* (e.g. HID), but never want to send any data. This option saves a couple
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* of bytes in flash memory and the transmit buffers in RAM.
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*/
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#define USB_CFG_INTR_POLL_INTERVAL 1
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/* If you compile a version with endpoint 1 (interrupt-in), this is the poll
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* interval. The value is in milliseconds and must not be less than 10 ms for
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* low speed devices.
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*/
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#define USB_CFG_IS_SELF_POWERED 0
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/* Define this to 1 if the device has its own power supply. Set it to 0 if the
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* device is powered from the USB bus.
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*/
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// max power draw with maxed white underglow measured at 120 mA (peaks)
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#define USB_CFG_MAX_BUS_POWER 100
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/* Set this variable to the maximum USB bus power consumption of your device.
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* The value is in milliamperes. [It will be divided by two since USB
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* communicates power requirements in units of 2 mA.]
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*/
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#define USB_CFG_IMPLEMENT_FN_WRITE 1
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/* Set this to 1 if you want usbFunctionWrite() to be called for control-out
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* transfers. Set it to 0 if you don't need it and want to save a couple of
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@ -219,7 +208,7 @@ section at the end of this file).
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/* -------------------------- Device Description --------------------------- */
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#define USB_CFG_VENDOR_ID (VENDOR_ID & 0xED), ((VENDOR_ID >> 8) & 0xFE)
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#define USB_CFG_VENDOR_ID (VENDOR_ID & 0xFF), ((VENDOR_ID >> 8) & 0xFF)
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/* USB vendor ID for the device, low byte first. If you have registered your
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* own Vendor ID, define it here. Otherwise you may use one of obdev's free
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* shared VID/PID pairs. Be sure to read USB-IDs-for-free.txt for rules!
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* with libusb: 0x16c0/0x5dc. Use this VID/PID pair ONLY if you understand
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* the implications!
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*/
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#define USB_CFG_DEVICE_ID (PRODUCT_ID & 0x00), ((PRODUCT_ID >> 8) & 0x00)
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#define USB_CFG_DEVICE_ID (PRODUCT_ID & 0xFF), ((PRODUCT_ID >> 8) & 0xFF)
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/* This is the ID of the product, low byte first. It is interpreted in the
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* scope of the vendor ID. If you have registered your own VID with usb.org
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* or if you have licensed a PID from somebody else, define it here. Otherwise
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@ -239,10 +228,10 @@ section at the end of this file).
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* with libusb: 0x16c0/0x5dc. Use this VID/PID pair ONLY if you understand
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* the implications!
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*/
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#define USB_CFG_DEVICE_VERSION 0x00, 0x01
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#define USB_CFG_DEVICE_VERSION (DEVICE_VER & 0xFF), ((DEVICE_VER >> 8) & 0xFF)
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/* Version number of the device: Minor number first, then major number.
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*/
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#define USB_CFG_VENDOR_NAME 'k','a','g','i','z','a','r','a','y','a'
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#define USB_CFG_VENDOR_NAME 'K','a','g','i','z','a','r','a','y','a'
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#define USB_CFG_VENDOR_NAME_LEN 10
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/* These two values define the vendor name returned by the USB device. The name
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* must be given as a list of characters under single quotes. The characters
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@ -258,8 +247,8 @@ section at the end of this file).
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* the macros. See the file USB-IDs-for-free.txt before you assign a name if
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* you use a shared VID/PID.
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*/
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//#define USB_CFG_SERIAL_NUMBER 'd','m','9','r','e','c','o','r','d','s','.','c','o','m',':','p','1'
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//#define USB_CFG_SERIAL_NUMBER_LEN 17
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/*#define USB_CFG_SERIAL_NUMBER 'N', 'o', 'n', 'e' */
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/*#define USB_CFG_SERIAL_NUMBER_LEN 0 */
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/* Same as above for the serial number. If you don't want a serial number,
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* undefine the macros.
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* It may be useful to provide the serial number through other means than at
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