tmk_keyboard/converter/pc98_usb/matrix.c

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/*
Copyright 2012 Jun Wako <wakojun@gmail.com>
This program is free software: you can redistribute it and/or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 2 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program. If not, see <http://www.gnu.org/licenses/>.
*/
#include <stdint.h>
#include <stdbool.h>
#include <avr/io.h>
#include <util/delay.h>
#include "print.h"
#include "util.h"
#include "matrix.h"
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#include "led.h"
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#include "debug.h"
#include "protocol/serial.h"
/*
* Matrix Array usage:
*
* ROW: 16(4bits)
* COL: 8(3bits)
*
* 8bit wide
* +---------+
* 0|00 ... 07|
* 1|08 ... 0F|
* :| ... |
* :| ... |
* E|70 ... 77|
* F|78 ... 7F|
* +---------+
*/
static uint8_t matrix[MATRIX_ROWS];
#define ROW(code) ((code>>3)&0xF)
#define COL(code) (code&0x07)
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static void pc98_send(uint8_t data)
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{
PC98_RDY_PORT |= (1<<PC98_RDY_BIT);
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_delay_ms(1);
serial_send(data);
_delay_ms(1);
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PC98_RDY_PORT &= ~(1<<PC98_RDY_BIT);
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}
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static int16_t pc98_wait_response(void)
{
int16_t code = -1;
uint8_t timeout = 255;
while (timeout-- && (code = serial_recv2()) == -1) _delay_ms(1);
return code;
}
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static void pc98_inhibit_repeat(void)
{
uint16_t code;
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// clear recv buffer
while (serial_recv()) ;
RETRY:
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_delay_ms(100);
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pc98_send(0x9C);
code = pc98_wait_response();
if (code != -1) xprintf("PC98: send 9C: %02X\n", code);
if (code != 0xFA) goto RETRY;
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_delay_ms(100);
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pc98_send(0x70);
code = pc98_wait_response();
if (code != -1) xprintf("PC98: send 70: %02X\n", code);
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if (code != 0xFA) goto RETRY;
}
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void matrix_init(void)
{
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debug_keyboard = true;
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PC98_RST_DDR |= (1<<PC98_RST_BIT);
PC98_RDY_DDR |= (1<<PC98_RDY_BIT);
PC98_RTY_DDR |= (1<<PC98_RTY_BIT);
PC98_RST_PORT |= (1<<PC98_RST_BIT);
PC98_RDY_PORT |= (1<<PC98_RDY_BIT);
PC98_RTY_PORT |= (1<<PC98_RTY_BIT);
serial_init();
// PC98 reset
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/*
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PC98_RST_PORT &= ~(1<<PC98_RST_BIT);
_delay_us(15);
PC98_RST_PORT |= (1<<PC98_RST_BIT);
_delay_us(13);
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PC98_RDY_PORT &= ~(1<<PC98_RDY_BIT);
*/
_delay_ms(500);
pc98_inhibit_repeat();
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// PC98 ready
PC98_RDY_PORT &= ~(1<<PC98_RDY_BIT);
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// initialize matrix state: all keys off
for (uint8_t i=0; i < MATRIX_ROWS; i++) matrix[i] = 0x00;
debug("init\n");
return;
}
uint8_t matrix_scan(void)
{
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uint16_t code;
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PC98_RDY_PORT |= (1<<PC98_RDY_BIT);
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//_delay_us(30);
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code = serial_recv2();
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PC98_RDY_PORT &= ~(1<<PC98_RDY_BIT);
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if (code == -1) return 0;
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print_hex8(code); print(" ");
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if (code&0x80) {
// break code
if (matrix_is_on(ROW(code), COL(code))) {
matrix[ROW(code)] &= ~(1<<COL(code));
}
} else {
// make code
if (!matrix_is_on(ROW(code), COL(code))) {
matrix[ROW(code)] |= (1<<COL(code));
}
}
return code;
}
inline
uint8_t matrix_get_row(uint8_t row)
{
return matrix[row];
}
void led_set(uint8_t usb_led)
{
#ifdef PC98_LED_CONTROL
uint8_t led_state = 0x70;
if (usb_led & (1<<USB_LED_NUM_LOCK)) led_state |= (1<<0);
if (usb_led & (1<<USB_LED_CAPS_LOCK)) led_state |= (1<<2);
xprintf("led_set: %02X\n", led_state);
pc98_send(0x9D);
_delay_ms(100);
pc98_send(led_state);
// responses(FA or FC) will be ignored in matrix_scan()
#endif
}