forked from mirrors/qmk_firmware
Add support for driving unselected row/col. (#16278)
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4 changed files with 19 additions and 139 deletions
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@ -61,6 +61,8 @@ This is a C header file that is one of the first things included, and will persi
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* pins unused by the keyboard for reference
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* `#define MATRIX_HAS_GHOST`
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* define is matrix has ghost (unlikely)
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* `#define MATRIX_UNSELECT_DRIVE_HIGH`
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* On un-select of matrix pins, rather than setting pins to input-high, sets them to output-high.
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* `#define DIODE_DIRECTION COL2ROW`
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* COL2ROW or ROW2COL - how your matrix is configured. COL2ROW means the black mark on your diode is facing to the rows, and between the switch and the rows.
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* `#define DIRECT_PINS { { F1, F0, B0, C7 }, { F4, F5, F6, F7 } }`
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@ -29,6 +29,8 @@
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#define MATRIX_ROW_PINS { B4, B3, A15, A14, A13 }
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#define MATRIX_COL_PINS { C14, C15, A0, A1, A2, A3, A4, A5, A6, A7, B0, B1, A8, A9, H3 }
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#define MATRIX_UNSELECT_DRIVE_HIGH
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/* DIP switch */
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#define DIP_SWITCH_MATRIX_GRID { {4, 4} }
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@ -1,139 +0,0 @@
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/* Copyright 2021 @ Keychron (https://www.keychron.com)
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*
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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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* the Free Software Foundation, either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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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 <string.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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#ifdef MATRIX_ROW_PINS
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static pin_t row_pins[MATRIX_ROWS] = MATRIX_ROW_PINS;
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#endif // MATRIX_ROW_PINS
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#ifdef MATRIX_COL_PINS
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static pin_t col_pins[MATRIX_COLS] = MATRIX_COL_PINS;
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#endif // MATRIX_COL_PINS
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#define ROWS_PER_HAND (MATRIX_ROWS)
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/* matrix state(1:on, 0:off) */
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extern matrix_row_t raw_matrix[MATRIX_ROWS]; // raw values
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extern matrix_row_t matrix[MATRIX_ROWS]; // debounced values
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static inline void setPinOutput_writeLow(pin_t pin) {
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ATOMIC_BLOCK_FORCEON {
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setPinOutput(pin);
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writePinLow(pin);
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}
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}
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static inline void setPinOutput_writeHigh(pin_t pin) {
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ATOMIC_BLOCK_FORCEON {
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setPinOutput(pin);
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writePinHigh(pin);
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}
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}
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static inline void setPinInputHigh_atomic(pin_t pin) {
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ATOMIC_BLOCK_FORCEON { setPinInputHigh(pin); }
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}
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static inline uint8_t readMatrixPin(pin_t pin) {
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if (pin != NO_PIN) {
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return readPin(pin);
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} else {
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return 1;
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}
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}
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static bool select_col(uint8_t col) {
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pin_t pin = col_pins[col];
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if (pin != NO_PIN) {
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setPinOutput_writeLow(pin);
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return true;
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}
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return false;
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}
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static void unselect_col(uint8_t col) {
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pin_t pin = col_pins[col];
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if (pin != NO_PIN) {
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setPinOutput_writeHigh(pin);
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}
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}
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static void unselect_cols(void) {
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for (uint8_t x = 0; x < MATRIX_COLS; x++) {
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unselect_col(x);
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}
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}
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void matrix_init_pins(void) {
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unselect_cols();
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for (uint8_t x = 0; x < ROWS_PER_HAND; x++) {
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if (row_pins[x] != NO_PIN) {
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setPinInputHigh_atomic(row_pins[x]);
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}
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}
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}
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void matrix_read_rows_on_col(matrix_row_t current_matrix[], uint8_t current_col) {
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bool key_pressed = false;
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// Select col
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if (!select_col(current_col)) { // select col
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return; // skip NO_PIN col
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}
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matrix_output_select_delay();
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// For each row...
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for (uint8_t row_index = 0; row_index < ROWS_PER_HAND; row_index++) {
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// Check row pin state
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if (readMatrixPin(row_pins[row_index]) == 0) {
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// Pin LO, set col bit
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current_matrix[row_index] |= (MATRIX_ROW_SHIFTER << current_col);
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key_pressed = true;
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} else {
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// Pin HI, clear col bit
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current_matrix[row_index] &= ~(MATRIX_ROW_SHIFTER << current_col);
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}
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}
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// Unselect col
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unselect_col(current_col);
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matrix_output_unselect_delay(current_col, key_pressed); // wait for all Row signals to go HIGH
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}
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void matrix_init_custom(void) {
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// initialize key pins
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matrix_init_pins();
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}
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bool matrix_scan_custom(matrix_row_t current_matrix[]) {
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matrix_row_t curr_matrix[MATRIX_ROWS] = {0};
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// Set col, read rows
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for (uint8_t current_col = 0; current_col < MATRIX_COLS; current_col++) {
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matrix_read_rows_on_col(curr_matrix, current_col);
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}
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bool changed = memcmp(current_matrix, curr_matrix, sizeof(curr_matrix)) != 0;
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if (changed) memcpy(current_matrix, curr_matrix, sizeof(curr_matrix));
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return (uint8_t)changed;
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}
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@ -82,6 +82,13 @@ static inline void setPinOutput_writeLow(pin_t pin) {
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}
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}
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static inline void setPinOutput_writeHigh(pin_t pin) {
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ATOMIC_BLOCK_FORCEON {
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setPinOutput(pin);
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writePinHigh(pin);
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}
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}
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static inline void setPinInputHigh_atomic(pin_t pin) {
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ATOMIC_BLOCK_FORCEON { setPinInputHigh(pin); }
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}
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@ -141,7 +148,11 @@ static bool select_row(uint8_t row) {
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static void unselect_row(uint8_t row) {
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pin_t pin = row_pins[row];
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if (pin != NO_PIN) {
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# ifdef MATRIX_UNSELECT_DRIVE_HIGH
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setPinOutput_writeHigh(pin);
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# else
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setPinInputHigh_atomic(pin);
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# endif
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}
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}
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@ -200,7 +211,11 @@ static bool select_col(uint8_t col) {
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static void unselect_col(uint8_t col) {
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pin_t pin = col_pins[col];
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if (pin != NO_PIN) {
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# ifdef MATRIX_UNSELECT_DRIVE_HIGH
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setPinOutput_writeHigh(pin);
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# else
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setPinInputHigh_atomic(pin);
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# endif
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}
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}
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