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kaklik |
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/*---------------------------------------------------------------*/ |
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/* GPS data logger R0.02 (C)ChaN, 2008 */ |
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/*---------------------------------------------------------------*/ |
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#include <avr/io.h> |
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#include <avr/pgmspace.h> |
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#include <avr/interrupt.h> |
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#include <string.h> |
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#include "tff.h" |
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#include "diskio.h" |
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#define SYSCLK 10000000UL |
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#define BEEP_ON() TCCR0B=0b011 |
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#define BEEP_OFF() TCCR0B=0b000 |
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#define GPS_ON() PORTB|=0x02 |
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#define GPS_OFF() PORTB&=0xFD |
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#define DELAY(dly) for(Timer=dly;Timer;) |
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kaklik |
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kaklik |
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#define GPS_BAUDRATE 4800 // Enable USRAT0 in N81,9600bps |
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kaklik |
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#define VTH_LOW (WORD)(8000UL*100/3838) |
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#define VTH_HIGH (WORD)(11500UL*100/3838) |
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#define POWER_check 0b01000000 | 1 |
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#define ANALOG_IN1 0b01000000 | 2 |
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FATFS fatfs; /* File system object for each logical drive */ |
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FIL file1; /* File object */ |
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BYTE Buff[82]; /* File/Console buffer */ |
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BYTE Value1[4]; // logged values |
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BYTE Value2[4]; |
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uint16_t battery; // battery voltage |
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uint16_t intensity; // radiation intensity |
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volatile BYTE Timer; /* 100Hz decrement timer */ |
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volatile BYTE Stat; /* Status */ |
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typedef struct _fifo { |
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uint8_t idx_w; |
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uint8_t idx_r; |
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uint8_t count; |
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uint8_t buff[150]; |
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} FIFO; |
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volatile FIFO rxfifo; |
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/*---------------------------------------------------------*/ |
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/* ADC interrupt */ |
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/*---------------------------------------------------------*/ |
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ISR(ADC_vect) |
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{ |
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WORD n; |
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static BYTE l, h; |
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n = ADC; |
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if(ADMUX == POWER_check) |
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{ |
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if (n < VTH_LOW) { |
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if (l >= 15) { |
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Stat |= 0x01; |
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} |
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else {l++;} |
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} |
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else {l = 0;} |
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if (n > VTH_HIGH) { |
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if (h >= 15) { |
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Stat &= 0xFE; |
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} |
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else {h++;} |
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} |
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else {h = 0;} |
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battery = n; |
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ADMUX = ANALOG_IN1; |
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} |
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if(ADMUX == ANALOG_IN1) |
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{ |
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intensity = n; |
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ADMUX = POWER_check; |
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} |
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//!!!! |
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//Stat &= 0xFE; |
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ADCSRA = _BV(ADEN)|_BV(ADSC)|_BV(ADIF)|_BV(ADIE)|0b111; |
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} |
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/*---------------------------------------------------------*/ |
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/* 100Hz timer interrupt generated by OC1A */ |
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/*---------------------------------------------------------*/ |
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ISR(TIMER1_COMPA_vect) |
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{ |
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BYTE n; |
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static WORD ivt_sync; |
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n = Timer; |
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if (n) Timer = n - 1; |
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if (++ivt_sync >= 180 * 100) { |
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ivt_sync = 0; |
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Stat |= 4; |
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} |
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disk_timerproc(); /* Drive timer procedure of low level disk I/O module */ |
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} |
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/*---------------------------------------------------------*/ |
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/* User Provided Timer Function for FatFs module */ |
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/*---------------------------------------------------------*/ |
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/* This is a real time clock service to be called from */ |
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/* FatFs module. Any valid time must be returned even if */ |
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/* the system does not support a real time clock. */ |
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DWORD get_fattime () |
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{ |
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return ((2007UL - 1980) << 25) /* Fixed to 2007.5.1, 00:00:00 */ |
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| ((5UL) << 21) |
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| ((1UL) << 16) |
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| (0 << 11) |
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| (0 << 5) |
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| (0 >> 1); |
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} |
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/*--------------------------------------------------------------------------*/ |
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/* UART control */ |
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static |
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void uart_init (void) |
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{ |
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cli(); |
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UCSR0B = 0; |
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rxfifo.idx_r = 0; |
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rxfifo.idx_w = 0; |
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rxfifo.count = 0; |
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UBRR0L = SYSCLK/16/GPS_BAUDRATE; |
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kaklik |
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UCSR0B = _BV(RXCIE0)|_BV(RXEN0)|_BV(TXEN0); |
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Stat &= 0xFD; // Clear overflow flag |
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sei(); |
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} |
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static |
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void uart_stop (void) |
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{ |
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UCSR0B = 0; |
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} |
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/* Get a received character */ |
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static |
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uint8_t uart_get () |
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{ |
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uint8_t d, i; |
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i = rxfifo.idx_r; |
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if (rxfifo.count == 0) return 0; |
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d = rxfifo.buff[i++]; |
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cli(); |
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rxfifo.count--; |
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sei(); |
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if(i >= sizeof(rxfifo.buff)) |
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i = 0; |
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rxfifo.idx_r = i; |
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return d; |
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} |
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ISR(USART_RX_vect) |
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{ |
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uint8_t d, n, i; |
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n = rxfifo.count; |
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if(n < sizeof(rxfifo.buff)) { |
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rxfifo.count = ++n; |
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i = rxfifo.idx_w; |
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rxfifo.buff[i++] = d; |
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if(i >= sizeof(rxfifo.buff)) |
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i = 0; |
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rxfifo.idx_w = i; |
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} else { |
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Stat |= 2; |
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} |
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} |
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/* Get a line received from GPS module */ |
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/*----------------------------------------------------*/ |
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BYTE get_line (void) // 0: Power fail occured, >0: Number of bytes received. |
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{ |
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BYTE c, i = 0; |
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if (Stat & 1) return 0; // When power fail is detected, return with zero. |
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c = uart_get(); |
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if (Stat & 2) { // When buffer overflow has occured, restart to receive line. |
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uart_init(); |
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i = 0; c = 0; |
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} |
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if (!c || (i == 0 && c != '$')) continue; |
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Buff[i++] = c; |
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if (c == '\n') break; |
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if (i >= sizeof(Buff)) i = 0; |
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} |
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return i; |
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} |
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/* Controls */ |
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void beep (BYTE len, BYTE cnt) |
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{ |
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while (cnt--) { |
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BEEP_ON(); |
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DELAY(len); |
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BEEP_OFF(); |
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DELAY(len); |
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} |
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} |
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static |
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BYTE gp_comp (BYTE *str1, const prog_uint8_t *str2) |
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{ |
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BYTE c; |
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c = pgm_read_byte(str2++); |
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} while (c && c == *str1++); |
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return c; |
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} |
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BYTE* gp_col ( /* Returns pointer to the item (returns a NULL when not found) */ |
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const BYTE* buf, /* Pointer to the sentence */ |
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BYTE col /* Column number (0 is the 1st item) */ |
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) { |
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BYTE c; |
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do { |
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c = *buf++; |
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if (c <= ' ') return NULL; |
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} while (c != ','); |
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col--; |
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} |
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return (BYTE*)buf; |
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} |
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void ioinit (void) |
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{ |
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PORTB = 0b00001101; // Port B |
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DDRB = 0b00101110; |
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PORTC = 0b00111111; // Port C |
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DDRC = 0b00000000; |
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PORTD = 0b10101110; // Port D |
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DDRD = 0b01010010; |
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SPSR = 0b00000001; |
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TCCR1B = 0b00001010; |
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TIMSK1 = _BV(OCIE1A); // Enable TC1.oca interrupt |
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TCCR0A = 0b01000010; |
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ADCSRA = _BV(ADEN)|_BV(ADSC)|_BV(ADIF)|_BV(ADIE)|0b111; |
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} |
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/* Main */ |
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{ |
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BYTE b, err, *p = NULL; |
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WORD s; |
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f_mount(0, &fatfs); /* Enable file I/O layer */ |
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uart_stop(); |
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GPS_OFF(); |
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Timer = 100; |
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do { |
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if (Stat & 1) Timer = 100; |
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} while (Timer); |
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Timer = 255; |
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do { |
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if ((Stat & 1) || (disk_status(0) & STA_NODISK)) Timer = 255; |
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} while (Timer); |
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uart_init(); |
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do { // Wait for valid RMC sentence. |
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b = get_line(); |
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if (!b) break; |
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if (gp_comp(Buff, PSTR("$GPRMC"))) continue; |
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p = gp_col(Buff,2); |
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} while (!p || *p != 'A'); |
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if (!b) continue; |
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p = gp_col(Buff,9); // Open log file with the name of current date (YYMMDD.log in UTC). |
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memcpy(&Buff[2], p+2, 2); |
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memcpy(&Buff[4], p+0, 2); |
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strcpy_P(&Buff[6], PSTR(".log")); |
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if (f_open(&file1, Buff, FA_OPEN_ALWAYS | FA_WRITE) || f_lseek(&file1, file1.fsize)) { err = 4; break; } |
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err = 0; |
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while ((b = get_line()) > 0) { |
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if ( !gp_comp(Buff, PSTR("$GPGGA")) // Which sentence is logged? |
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|| !gp_comp(Buff, PSTR("$GPRMC")) |
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// || !gp_comp(Buff, PSTR("$GPGSA")) |
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// || !gp_comp(Buff, PSTR("$GPGLL")) |
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// || !gp_comp(Buff, PSTR("$GPGSV")) |
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// || !gp_comp(Buff, PSTR("$GPZDA")) |
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// || !gp_comp(Buff, PSTR("$GPVTG")) |
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) |
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{ |
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if (f_write(&file1, Buff, b, &s) || b != s) { err = 5; break; }; |
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itoa(battery,&Value1,10); // convert number to character |
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kaklik |
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itoa(intensity,&Value2,10); |
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kaklik |
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sprintf(Buff,"%d,%d\n",Value1,Value2); |
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kaklik |
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if (f_write(&file1, Buff,strlen(Buff), &s) || (strlen(Buff) != s)) { err = 8; break; }; |
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} |
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if ((Stat & 4) == 0) continue; |
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kaklik |
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if (f_sync(&file1)) { err = 6; break; };// Synchronize the file in interval of 300 sec. |
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cli(); Stat &= 0xFB; sei(); // Clear sync request |
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} |
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if (err) break; |
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uart_stop(); |
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GPS_OFF(); |
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if (f_close(&file1)) { err = 7; break; }; |
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beep(50, 1); |
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} |
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uart_stop(); |
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GPS_OFF(); |
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beep(25, err); |
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for (;;); |
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} |
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