1118 |
mija |
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/* mija 2008 |
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nanotern02A |
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f osc 1Mhz |
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timer1 PWM |
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ver.: 1.0 |
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/n .. goto 1,1 |
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/r .. goto 1,2 |
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/f .. clear lcd |
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*/ |
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//************************************************************* |
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#include <avr/io.h> |
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#include <util/delay.h> |
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#include <avr/interrupt.h> |
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#include <avr/eeprom.h> |
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//#include <avr/sleep.h> |
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#include "lcd.h" |
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//************************************************************* |
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void line_feed(void); |
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void PWM_init(void); |
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void COMP_init(void); |
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ISR(ANA_COMP_vect); |
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int main(void); |
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//************************************************************* |
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#define TEXT1 "setup" |
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#define MAX_BUF 16 |
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#define FIRST 40 // *16ms time next key |
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#define REPEAT 10 // *16ms time repeat key |
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#define LIGHT PB5 // tlacitko A |
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#define PORT_LIGHT PORTB // nutne definovat PORT,DDR,PIN |
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#define DDR_LIGHT DDRB |
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#define TL_A PD6 // tlacitko A |
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#define PORT_A PORTD // nutne definovat PORT,DDR,PIN |
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#define DDR_A DDRD |
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#define PIN_A PIND |
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#define TL_B PB0 // tlacitko B |
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#define PORT_B PORTB // nutne definovat PORT,DDR,PIN |
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#define DDR_B DDRB |
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#define PIN_B PINB |
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#define TL_C PB2 // tlacitko C |
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#define PORT_C PORTB // nutne definovat PORT,DDR,PIN |
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#define DDR_C DDRB |
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#define PIN_C PINB |
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#define TL_D PD3 // tlacitko D |
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#define PORT_D PORTB // nutne definovat PORT,DDR,PIN |
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#define DDR_D DDRB |
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#define PIN_D PINB |
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// eeprom |
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#define EE_SETUP 0x03 |
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#define EE_VOLTAGE_LO 0x00 |
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#define EE_VOLTAGE_HI 0x01 |
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// key |
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#define KEY_0 0x8 |
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#define KEY_1 0xC |
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#define KEY_2 0xE |
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#define KEY_3 0x4 |
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#define KEY_4 0x6 |
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#define KEY_5 0x7 |
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#define KEY_6 0xA |
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#define KEY_7 0x2 |
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#define KEY_8 0x3 |
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#define KEY_9 0xB |
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#define KEY_cr 0x1 |
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#define KEY_esc 0x9 |
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//interni |
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#define A_INPUT (!(PIN_A & _BV(TL_A))) |
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#define A_PULLUP (PORT_A |= _BV(TL_A)) |
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#define A_INIT (DDR_A &= ~(_BV(TL_A))) |
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#define B_INPUT (!(PIN_B & _BV(TL_B))) |
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#define B_PULLUP (PORT_B |= _BV(TL_B)) |
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#define B_INIT (DDR_B &= ~(_BV(TL_B))) |
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#define C_INPUT (!(PIN_C & _BV(TL_C))) |
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#define C_PULLUP (PORT_C |= _BV(TL_C)) |
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#define C_INIT (DDR_C &= ~(_BV(TL_C))) |
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#define D_INPUT (!(PIN_D & _BV(TL_D))) |
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#define D_PULLUP (PORT_D |= _BV(TL_D)) |
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#define D_INIT (DDR_D &= ~(_BV(TL_D))) |
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#define LIGHT_ON (PORT_LIGHT |= _BV(LIGHT)) |
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#define LIGHT_OFF (PORT_LIGHT &= ~(_BV(LIGHT))) |
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#define LIGHT_INIT (DDR_LIGHT |= _BV(LIGHT)) |
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//flag |
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volatile uint8_t flag; |
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#define KEY_A 0 |
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#define KEY_B 1 |
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#define KEY_C 2 |
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#define KEY_D 3 |
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#define VOLTAGE 4 |
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#define LIGHT_SET 5 |
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#define LIGHT_T0 6 |
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#define LIGHT_T1 7 |
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#define FLAG_A_SET (flag |= _BV(KEY_A)) |
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#define FLAG_A_CLR (flag &= ~(_BV(KEY_A))) |
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#define FLAG_A (flag & _BV(KEY_A)) |
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#define FLAG_B_SET (flag |= _BV(KEY_B)) |
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#define FLAG_B_CLR (flag &= ~(_BV(KEY_B))) |
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#define FLAG_B (flag & _BV(KEY_B)) |
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#define FLAG_C_SET (flag |= _BV(KEY_C)) |
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#define FLAG_C_CLR (flag &= ~(_BV(KEY_C))) |
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#define FLAG_C (flag & _BV(KEY_C)) |
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#define FLAG_D_SET (flag |= _BV(KEY_D)) |
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#define FLAG_D_CLR (flag &= ~(_BV(KEY_D))) |
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#define FLAG_D (flag & _BV(KEY_D)) |
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#define FLAG_VOLTAGE_HI (flag |= _BV(VOLTAGE)) |
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#define FLAG_VOLTAGE_LO (flag &= ~(_BV(VOLTAGE))) |
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#define FLAG_VOLTAGE (flag & (_BV(VOLTAGE))) |
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#define FLAG_LIGHT_ON (flag |= _BV(LIGHT_SET)) |
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#define FLAG_LIGHT_OFF (flag &= ~(_BV(LIGHT_SET))) |
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#define FLAG_LIGHT (flag & _BV(LIGHT_SET)) |
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#define FLAG_T0_SET (flag |= _BV(LIGHT_T0)) |
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#define FLAG_T0_CLR (flag &= ~(_BV(LIGHT_T0))) |
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#define FLAG_T0 (flag & _BV(LIGHT_T0)) |
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#define FLAG_T1_SET (flag |= _BV(LIGHT_T1)) |
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#define FLAG_T1_CLR (flag &= ~(_BV(LIGHT_T1))) |
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#define FLAG_T1 (flag & _BV(LIGHT_T1)) |
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//************************************************************* |
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uint8_t a,pos; |
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//uint8_t buf[8] = TEXT1; |
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uint8_t buf_rx[MAX_BUF]; |
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volatile uint8_t rx_shift; |
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volatile uint8_t tik16ms; |
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uint8_t lcd_shift; |
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enum {LED_OFF,LED_5s,LED_10s,LED_15s,LED_20s,LED_25s,LED_30s,LED_ON}; |
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//************************************************************* |
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void IO_init(void) |
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{ |
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LIGHT_INIT; |
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A_PULLUP; |
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B_PULLUP; |
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C_PULLUP; |
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D_PULLUP; |
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} |
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void rs232_init(void) |
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{ |
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//set baud rate fixed 9600 8N1 for fosc 1Mhz |
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UCSRA = _BV(U2X) ; |
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UBRRL = 12; |
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UCSRB = _BV(RXEN) | _BV(TXEN) | _BV(RXCIE); |
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} |
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void PWM_init(void) |
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{ |
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TCNT1 = 0; |
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OCR1B = 0x1; |
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DDRB |= _BV(PB4); |
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TCCR1A |= _BV(COM1B1) | _BV(WGM10); |
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TCCR1B |= _BV(WGM12) | _BV(CS10); |
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} |
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void PWM_set(void) |
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{ |
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if (ACSR & _BV(ACO)) |
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{ |
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//OCR1BL = 0x5f; |
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OCR1BL = eeprom_read_byte(EE_VOLTAGE_LO); |
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FLAG_VOLTAGE_LO; |
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} |
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else |
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{ |
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//OCR1BL = 0x17; |
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OCR1BL = eeprom_read_byte(EE_VOLTAGE_HI); |
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FLAG_VOLTAGE_HI; |
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} |
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} |
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void COMP_init(void) |
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{ |
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ACSR = _BV(ACBG) | _BV(ACIE); |
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DIDR = _BV(AIN1D); |
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} |
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void timer0_init(void) |
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{ |
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TCCR0B = _BV(CS01) | _BV(CS00); |
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TIMSK |= _BV(TOIE0); |
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} |
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ISR(TIMER0_OVF_vect) //cca 16ms tik |
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{ |
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if (A_INPUT) FLAG_A_SET;else FLAG_A_CLR; |
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if (B_INPUT) FLAG_B_SET;else FLAG_B_CLR; |
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if (C_INPUT) FLAG_C_SET;else FLAG_C_CLR; |
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if (D_INPUT) FLAG_D_SET;else FLAG_D_CLR; |
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if (FLAG_LIGHT) LIGHT_ON; |
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else LIGHT_OFF; |
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if (tik16ms) tik16ms--; |
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} |
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ISR(USART_RX_vect) |
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{ |
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//while ( !(UCSRA & (_BV(RXC))) ); |
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if (++rx_shift >= MAX_BUF) rx_shift = 0; |
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buf_rx[rx_shift]=UDR; |
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} |
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ISR(ANA_COMP_vect) |
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{ |
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//if (ACSR & _BV(ACO)) OCR1BL = 0x5f; |
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//else OCR1BL = 0x17; |
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PWM_set(); |
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} |
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void put(char data) |
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{ |
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while (!( UCSRA & _BV(UDRE))); |
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UDR = data; |
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} |
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void send(uint8_t data) |
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{ |
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switch (data) |
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{ |
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case (KEY_0): put('0');break; |
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case (KEY_1): put('1');break; |
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case (KEY_2): put('2');break; |
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case (KEY_3): put('3');break; |
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case (KEY_4): put('4');break; |
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case (KEY_5): put('5');break; |
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case (KEY_6): put('6');break; |
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case (KEY_7): put('7');break; |
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case (KEY_8): put('8');break; |
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case (KEY_9): put('9');break; |
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case (KEY_cr): put('\n');break; |
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case (KEY_esc): put('\f');break; |
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} |
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} |
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void delay_ms(uint8_t time) |
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{ |
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while (time--) _delay_ms(1); |
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} |
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void print_lcd(char *data) |
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{ |
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while (*data) LCD_putc(*data++); |
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} |
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void set(void) |
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{ |
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LCD_gotoxy(1,1); |
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print_lcd("con. 0/1"); |
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LCD_gotoxy(1,2); |
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print_lcd(" led 2-9"); |
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while (A_INPUT); |
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for(;;) |
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{ |
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switch (flag & 0x0f) |
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{ |
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case KEY_0: OCR1BL--;break; |
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case KEY_1: OCR1BL++;break; |
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case KEY_2: LIGHT_OFF;FLAG_LIGHT_OFF;break; |
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case KEY_3: LIGHT_ON;FLAG_LIGHT_ON;break; |
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case KEY_4: break; |
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case KEY_esc: |
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{ |
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eeprom_write_byte(EE_SETUP,flag & 0xF0); |
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if (FLAG_VOLTAGE) eeprom_write_byte(EE_VOLTAGE_HI,OCR1BL); |
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else eeprom_write_byte(EE_VOLTAGE_LO,OCR1BL); |
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return; |
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} |
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} |
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delay_ms(50); |
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} |
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} |
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int main(void) |
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{ |
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uint8_t save_flag; |
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IO_init(); |
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LCD_init(); |
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rs232_init(); |
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PWM_init(); |
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COMP_init(); |
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timer0_init(); |
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LIGHT_OFF; |
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print_lcd(TEXT1); |
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LCD_gotoxy(1,2); |
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print_lcd("cr+reset"); |
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LCD_gotoxy(1,1); |
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flag = 0xfE0 & eeprom_read_byte(EE_SETUP); |
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sei(); |
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if (A_INPUT) set(); |
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pos=0; |
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rx_shift=0; |
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lcd_shift=0; |
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save_flag=0; |
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for(;;) |
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{ |
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if (rx_shift != lcd_shift ) |
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{ |
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if (++lcd_shift >= MAX_BUF) lcd_shift = 0; |
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a=buf_rx[lcd_shift]; |
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switch (a) |
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{ |
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case ('\n'): LCD_gotoxy(1,1);pos=0;break; |
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case ('\r'): pos=8;break; |
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case ('\f'): LCD_clear();pos=0;break; |
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default :if(pos == 8) |
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{ |
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LCD_gotoxy(1,2); |
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//delay_ms(10); |
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} |
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LCD_putc(a); |
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if (++pos > 15) |
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{ |
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pos = 0; |
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LCD_gotoxy(1,1); |
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//delay_ms(10); |
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} |
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} |
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} |
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if (flag & 0x0F) |
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{ |
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if ((flag & 0x0F) != save_flag) |
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{ |
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save_flag = flag & 0x0F; |
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send(save_flag); |
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tik16ms=FIRST; |
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} |
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else |
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{ |
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if (!tik16ms) |
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{ |
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send(save_flag); |
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tik16ms = REPEAT; |
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} |
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} |
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} |
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else save_flag = 0; |
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} |
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return 0; |
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} |