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					101 lines
				
				3.0 KiB
			
		
		
			
		
	
	
					101 lines
				
				3.0 KiB
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											7 years ago
										 
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								/*
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								Copyright 2019 Alex Ong<the.onga@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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								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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								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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								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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								/*
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								Basic per-row algorithm. Uses an 8-bit counter per row.
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								After pressing a key, it immediately changes state, and sets a counter.
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								No further inputs are accepted until DEBOUNCE milliseconds have occurred.
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								*/
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								#include "matrix.h"
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								#include "timer.h"
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								#include "quantum.h"
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								#include <stdlib.h>
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								#ifndef DEBOUNCE
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								  #define DEBOUNCE 5
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								#endif
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								#define debounce_counter_t uint8_t
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								static debounce_counter_t *debounce_counters;
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								#define DEBOUNCE_ELAPSED 251
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								#define MAX_DEBOUNCE (DEBOUNCE_ELAPSED - 1)
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								void update_debounce_counters(uint8_t num_rows, uint8_t current_time);
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								void transfer_matrix_values(matrix_row_t raw[], matrix_row_t cooked[], uint8_t num_rows, uint8_t current_time);
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								//we use num_rows rather than MATRIX_ROWS to support split keyboards
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								void debounce_init(uint8_t num_rows)
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								{
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								  debounce_counters = (debounce_counter_t*)malloc(num_rows*sizeof(debounce_counter_t));  
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								  for (uint8_t r = 0; r < num_rows; r++)
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								  {    
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								    debounce_counters[r] = DEBOUNCE_ELAPSED;
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								  }
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								}
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								void debounce(matrix_row_t raw[], matrix_row_t cooked[], uint8_t num_rows, bool changed)
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								{
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								  uint8_t current_time = timer_read() % MAX_DEBOUNCE;
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								  update_debounce_counters(num_rows, current_time);
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								  transfer_matrix_values(raw, cooked, num_rows, current_time);
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								}
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								//If the current time is > debounce counter, set the counter to enable input.
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								void update_debounce_counters(uint8_t num_rows, uint8_t current_time)
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								{
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								  debounce_counter_t *debounce_pointer = debounce_counters;
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								  for (uint8_t row = 0; row < num_rows; row++)
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								  {    
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								    if (*debounce_pointer != DEBOUNCE_ELAPSED)
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								    {
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								      if (TIMER_DIFF(current_time, *debounce_pointer, MAX_DEBOUNCE) >= DEBOUNCE) {
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								        *debounce_pointer = DEBOUNCE_ELAPSED;
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								      }
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								    }
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								    debounce_pointer++;
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								  }
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								}
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								// upload from raw_matrix to final matrix;
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								void transfer_matrix_values(matrix_row_t raw[], matrix_row_t cooked[], uint8_t num_rows, uint8_t current_time)
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								{
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								  debounce_counter_t *debounce_pointer = debounce_counters;
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								  for (uint8_t row = 0; row < num_rows; row++)
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								  {
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								    matrix_row_t existing_row = cooked[row]; 
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								    matrix_row_t raw_row = raw[row];
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								    //determine new value basd on debounce pointer + raw value
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								    if (*debounce_pointer == DEBOUNCE_ELAPSED &&
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								      (existing_row != raw_row))
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								    {
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								      *debounce_pointer = current_time;
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								      existing_row = raw_row; 
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								    }
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								    cooked[row] = existing_row;
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								    debounce_pointer++;
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								  }  
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								}
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								bool debounce_active(void)
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								{
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								  return true;
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								}
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