forked from mirrors/qmk_userspace
		
	[Keyboard] Convert ZSA's Moonlander keyboard to matrix lite (#14667)
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					 2 changed files with 29 additions and 116 deletions
				
			
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					@ -16,55 +16,26 @@
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 * along with this program.  If not, see <http://www.gnu.org/licenses/>.
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					 * along with this program.  If not, see <http://www.gnu.org/licenses/>.
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*/
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					*/
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#include <stdint.h>
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#include <stdbool.h>
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#include <string.h>
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#include <hal.h>
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#include "timer.h"
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#include "wait.h"
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#include "print.h"
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#include "matrix.h"
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#include "action.h"
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#include "keycode.h"
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#include <string.h>
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#include "moonlander.h"
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					#include "moonlander.h"
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#include "i2c_master.h"
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					#include "i2c_master.h"
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#include "debounce.h"
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/*
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					/*
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#define MATRIX_ROW_PINS { B10, B11, B12, B13, B14, B15 } outputs
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					#define MATRIX_ROW_PINS { B10, B11, B12, B13, B14, B15 } outputs
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#define MATRIX_COL_PINS { A0, A1, A2, A3, A6, A7, B0 }   inputs
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					#define MATRIX_COL_PINS { A0, A1, A2, A3, A6, A7, B0 }   inputs
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 */
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					 */
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/* matrix state(1:on, 0:off) */
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					/* matrix state(1:on, 0:off) */
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static matrix_row_t matrix[MATRIX_ROWS];
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					extern matrix_row_t matrix[MATRIX_ROWS];      // debounced values
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static matrix_row_t matrix_debouncing[MATRIX_ROWS];
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					extern matrix_row_t raw_matrix[MATRIX_ROWS];  // raw values
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static matrix_row_t matrix_debouncing_right[MATRIX_COLS];
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					static matrix_row_t raw_matrix_right[MATRIX_COLS];
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static bool         debouncing            = false;
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static uint16_t     debouncing_time       = 0;
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static bool         debouncing_right      = false;
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static uint16_t     debouncing_time_right = 0;
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#define ROWS_PER_HAND (MATRIX_ROWS / 2)
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					#define ROWS_PER_HAND (MATRIX_ROWS / 2)
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					#ifndef MOONLANDER_I2C_TIMEOUT
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#ifndef MATRIX_IO_DELAY
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					#    define MOONLANDER_I2C_TIMEOUT 100
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#    define MATRIX_IO_DELAY 20
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#endif
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					#endif
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extern bool mcp23018_leds[3];
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					extern bool mcp23018_leds[3];
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extern bool is_launching;
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					extern bool is_launching;
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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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__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_io_delay(void) { wait_us(MATRIX_IO_DELAY); }
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bool           mcp23018_initd = false;
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					bool           mcp23018_initd = false;
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static uint8_t mcp23018_reset_loop;
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					static uint8_t mcp23018_reset_loop;
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					@ -81,14 +52,14 @@ void mcp23018_init(void) {
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    mcp23018_tx[1] = 0b00000000;  // A is output
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					    mcp23018_tx[1] = 0b00000000;  // A is output
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    mcp23018_tx[2] = 0b00111111;  // B is inputs
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					    mcp23018_tx[2] = 0b00111111;  // B is inputs
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    if (MSG_OK != i2c_transmit(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx, 3, I2C_TIMEOUT)) {
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					    if (MSG_OK != i2c_transmit(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx, 3, MOONLANDER_I2C_TIMEOUT)) {
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        dprintf("error hori\n");
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					        dprintf("error hori\n");
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    } else {
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					    } else {
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        mcp23018_tx[0] = 0x0C;        // GPPUA
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					        mcp23018_tx[0] = 0x0C;        // GPPUA
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        mcp23018_tx[1] = 0b10000000;  // A is not pulled-up
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					        mcp23018_tx[1] = 0b10000000;  // A is not pulled-up
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        mcp23018_tx[2] = 0b11111111;  // B is pulled-up
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					        mcp23018_tx[2] = 0b11111111;  // B is pulled-up
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        if (MSG_OK != i2c_transmit(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx, 3, I2C_TIMEOUT)) {
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					        if (MSG_OK != i2c_transmit(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx, 3, MOONLANDER_I2C_TIMEOUT)) {
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            dprintf("error hori\n");
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					            dprintf("error hori\n");
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        } else {
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					        } else {
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            mcp23018_initd = is_launching = true;
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					            mcp23018_initd = is_launching = true;
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					@ -96,10 +67,9 @@ void mcp23018_init(void) {
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    }
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					    }
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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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    dprintf("matrix init\n");
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					    dprintf("matrix init\n");
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    // debug_matrix = true;
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					    // debug_matrix = true;
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    // outputs
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					    // outputs
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    setPinOutput(B10);
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					    setPinOutput(B10);
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    setPinOutput(B11);
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					    setPinOutput(B11);
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					@ -117,16 +87,10 @@ void matrix_init(void) {
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    setPinInputLow(A7);
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					    setPinInputLow(A7);
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    setPinInputLow(B0);
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					    setPinInputLow(B0);
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    memset(matrix, 0, MATRIX_ROWS * sizeof(matrix_row_t));
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    memset(matrix_debouncing, 0, MATRIX_ROWS * sizeof(matrix_row_t));
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    memset(matrix_debouncing_right, 0, MATRIX_COLS * sizeof(matrix_row_t));
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    mcp23018_init();
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					    mcp23018_init();
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    matrix_init_quantum();
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}
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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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					    bool changed = false;
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    // Try to re-init right side
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					    // Try to re-init right side
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					@ -172,7 +136,7 @@ uint8_t matrix_scan(void) {
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            mcp23018_tx[1] = (0b01111111 & ~(1 << (row))) | ((uint8_t)!mcp23018_leds[2] << 7);       // activate row
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					            mcp23018_tx[1] = (0b01111111 & ~(1 << (row))) | ((uint8_t)!mcp23018_leds[2] << 7);       // activate row
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            mcp23018_tx[2] = ((uint8_t)!mcp23018_leds[1] << 6) | ((uint8_t)!mcp23018_leds[0] << 7);  // activate row
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					            mcp23018_tx[2] = ((uint8_t)!mcp23018_leds[1] << 6) | ((uint8_t)!mcp23018_leds[0] << 7);  // activate row
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            if (MSG_OK != i2c_transmit(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx, 3, I2C_TIMEOUT)) {
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					            if (MSG_OK != i2c_transmit(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx, 3, MOONLANDER_I2C_TIMEOUT)) {
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                dprintf("error hori\n");
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					                dprintf("error hori\n");
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                mcp23018_initd = false;
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					                mcp23018_initd = false;
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            }
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					            }
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					@ -180,21 +144,22 @@ uint8_t matrix_scan(void) {
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            // read col
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					            // read col
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            mcp23018_tx[0] = 0x13;  // GPIOB
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					            mcp23018_tx[0] = 0x13;  // GPIOB
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            if (MSG_OK != i2c_readReg(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx[0], &mcp23018_rx[0], 1, I2C_TIMEOUT)) {
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					            if (MSG_OK != i2c_readReg(MCP23018_DEFAULT_ADDRESS << 1, mcp23018_tx[0], &mcp23018_rx[0], 1, MOONLANDER_I2C_TIMEOUT)) {
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                dprintf("error vert\n");
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					                dprintf("error vert\n");
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                mcp23018_initd = false;
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					                mcp23018_initd = false;
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            }
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					            }
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            data = ~(mcp23018_rx[0] & 0b00111111);
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					            data = ~(mcp23018_rx[0] & 0b00111111);
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            // data = 0x01;
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					            // data = 0x01;
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					        } else {
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					            data = 0;
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					        }
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            if (matrix_debouncing_right[row] != data) {
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					        if (raw_matrix_right[row] != data) {
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                matrix_debouncing_right[row] = data;
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					            raw_matrix_right[row] = data;
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                debouncing_right             = true;
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                debouncing_time_right        = timer_read();
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            changed         = true;
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					            changed         = true;
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        }
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					        }
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        }
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        // left side
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					        // left side
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        if (row < ROWS_PER_HAND) {
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					        if (row < ROWS_PER_HAND) {
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					@ -224,79 +189,28 @@ uint8_t matrix_scan(void) {
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                case 6: break;
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					                case 6: break;
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            }
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					            }
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            if (matrix_debouncing[row] != data) {
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					            if (current_matrix[row] != data) {
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                matrix_debouncing[row] = data;
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					                current_matrix[row]    = data;
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                debouncing             = true;
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                debouncing_time        = timer_read();
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                changed                = true;
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					                changed                = true;
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            }
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					            }
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        }
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					        }
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    }
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					    }
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					    for (uint8_t row = 0; row < ROWS_PER_HAND; row++) {
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    // Debounce both hands
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					        current_matrix[11 - row] = 0;
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    if (debouncing && timer_elapsed(debouncing_time) > DEBOUNCE) {
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					        for (uint8_t col = 0; col < MATRIX_COLS; col++) {
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        for (int row = 0; row < ROWS_PER_HAND; row++) {
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					            current_matrix[11 - row] |= ((raw_matrix_right[6 - col] & (1 << row) ? 1 : 0) << col);
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            matrix[row] = matrix_debouncing[row];
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        }
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        debouncing = false;
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    }
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    if (debouncing_right && timer_elapsed(debouncing_time_right) > DEBOUNCE && mcp23018_initd) {
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        for (int row = 0; row < ROWS_PER_HAND; row++) {
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            matrix[11 - row] = 0;
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            for (int col = 0; col < MATRIX_COLS; col++) {
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                matrix[11 - row] |= ((matrix_debouncing_right[6 - col] & (1 << row) ? 1 : 0) << col);
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        }
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					        }
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    }
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					    }
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        debouncing_right = false;
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					    return changed;
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    }
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    matrix_scan_quantum();
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    return (uint8_t)changed;
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}
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bool matrix_is_on(uint8_t row, uint8_t col) { return (matrix[row] & (1 << col)); }
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matrix_row_t matrix_get_row(uint8_t row) { return matrix[row]; }
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void matrix_print(void) {
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    dprintf("\nr/c 01234567\n");
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    for (uint8_t row = 0; row < MATRIX_ROWS; row++) {
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        dprintf("%X0: ", row);
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        matrix_row_t data = matrix_get_row(row);
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        for (int col = 0; col < MATRIX_COLS; col++) {
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            if (data & (1 << col))
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                dprintf("1");
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            else
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                dprintf("0");
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        }
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        dprintf("\n");
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    }
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}
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					}
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// DO NOT REMOVE
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					// DO NOT REMOVE
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// Needed for proper wake/sleep
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					// Needed for proper wake/sleep
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void matrix_power_up(void) {
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					void matrix_power_up(void) {
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    bool temp_launching = is_launching;
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					    bool temp_launching = is_launching;
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    // outputs
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    setPinOutput(B10);
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    setPinOutput(B11);
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    setPinOutput(B12);
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    setPinOutput(B13);
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    setPinOutput(B14);
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    setPinOutput(B15);
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    // inputs
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					    matrix_init_custom();
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    setPinInputLow(A0);
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    setPinInputLow(A1);
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    setPinInputLow(A2);
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    setPinInputLow(A3);
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    setPinInputLow(A6);
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    setPinInputLow(A7);
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    setPinInputLow(B0);
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    mcp23018_init();
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    is_launching = temp_launching;
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					    is_launching = temp_launching;
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    if (!is_launching) {
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					    if (!is_launching) {
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        ML_LED_1(false);
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					        ML_LED_1(false);
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					@ -19,8 +19,7 @@ NKRO_ENABLE = yes           # USB Nkey Rollover
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BACKLIGHT_ENABLE = no       # Enable keyboard backlight functionality
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					BACKLIGHT_ENABLE = no       # Enable keyboard backlight functionality
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RGBLIGHT_ENABLE = no        # Enable keyboard RGB underglow
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					RGBLIGHT_ENABLE = no        # Enable keyboard RGB underglow
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AUDIO_ENABLE = yes          # Audio output
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					AUDIO_ENABLE = yes          # Audio output
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CUSTOM_MATRIX = yes
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					CUSTOM_MATRIX = lite
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DEBOUNCE_TYPE = custom
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SWAP_HANDS_ENABLE = yes
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					SWAP_HANDS_ENABLE = yes
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RGB_MATRIX_ENABLE = yes
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					RGB_MATRIX_ENABLE = yes
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RGB_MATRIX_DRIVER = IS31FL3731
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					RGB_MATRIX_DRIVER = IS31FL3731
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