306 lines
5.8 KiB
C
306 lines
5.8 KiB
C
/*
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* Author: Jake Goodwin
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* Date: 2023
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* Description: Small library to communicate with the AT-09 bluetooth module.
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*/
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#include <avr/io.h>
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#include <avr/interrupt.h>
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#include <avr/sleep.h>
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#include <util/delay.h>
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#include "avr_usart.h"
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//#############################
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//Globals
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//#############################
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int main() {
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led_blink();
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led_blink();
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led_blink();
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_delay_ms(1000);
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init_usart0();
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//enable parity, because the internal
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//crystal is garbage
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serial0_enable_parity_bit(2);
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//enable interrupts
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sei();
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unsigned char data[8] = "AT+BAUD3";
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unsigned char data_cmd[2] = "AT";
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uint8_t data_len = 8;
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uint8_t data_cmd_len = 2;
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while(1) {
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led_blink();
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serial0_write(data, data_len);
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//_delay_ms(1000);
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_delay_ms(500);
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}
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return 0;
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}
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//#############################
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//FUNCTIONS
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//#############################
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/*
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* Input: None
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* Output: None
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* Description: init usart0 hardware in async mode,
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* This sets up the connection with default params 8-n-1
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*/
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void init_usart0(void) {
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//setup stuff for usart communications.
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UBRR0H |= (uint8_t) (BT_UBRR>>8);
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UBRR0L |= (uint8_t) BT_UBRR;
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//Enable recv and Transmit pins, overrides other uses.
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//IN the usart control and status register 0B
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UCSR0B = (1<<RXEN0) | (1<<TXEN0);
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#if USE_U2X
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UCSR0A |= (1<<U2X0);
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#else
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UCSR0A &= ~(1<<U2X0);
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#endif
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//setting the data frame format
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UCSR0C = (0<<UMSEL01)|(0<<UMSEL00)| //Async
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(0<<UPM01)|(0<<UPM00)| //Parity bits
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(1<<USBS0)| //Stop bits
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(0<<UCSZ02)|(1<<UCSZ01)|(1<<UCSZ00)| //Set the number of bits.
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(0<<UCPOL0); //Clock polarity, 0=falling 1=rising
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}
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/*
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* Input: a 8bit char
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* Output: None
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* Description: Sends a char over usart0
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*/
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void tx_usart0(unsigned char data) {
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//first wait for the transmit buffer to be empty
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while(!(UCSR0A & (1<<UDRE0))) {
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;//Equiv of continue
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}
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//now that it's empty, fill buffer with TX data.
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UDR0 = data;
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}
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/*
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* Input:None
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* Output: a 8bit char
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* Description: Recvs a char over usart0
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*/
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unsigned char rx_usart0(void) {
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//first wait for the data to be received.
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while( !(UCSR0A & (1<<RXC0)) ) {
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;//Equiv of continue
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}
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//now return the data
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return UDR0;
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}
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void serial0_flush_rxbuf(void) {
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uint8_t none;
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while( UCSR0A & (1<<RXC0)) {
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none = UDR0;
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}
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}
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/*
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* Inupt: None
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* Output: None
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* Description: Nothing right now.
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*/
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void serial0_enable_timeouts(uint8_t ms) {
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;
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}
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/*
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* Inupt: None
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* Output: None
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* Description:
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*/
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void serial0_write(unsigned char* buffer, uint8_t write_length) {
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for(uint8_t i = 0; i < write_length; i++) {
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tx_usart0(buffer[i]);
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}
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#if CARRIAGE_RETURN
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tx_usart0(0x0d);
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#endif
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#if LINE_FEED
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tx_usart0(0x0a);
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#endif
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}
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/*
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* Input: none
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* Output: none
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* Description:
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*/
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void serial0_enable_line_feeds(void) {
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;
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}
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/*
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* Input: none
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* Output: none
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* Description:
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*/
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void serial0_enable_carriage_returns(void) {
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;
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}
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/*
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* Input: A parity setting as a 8bit uint
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* Output: none
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* Description: 0val clears for no parity
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* 1val sets positive parity
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* 2val sets negative parity
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*/
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void serial0_enable_parity_bit(uint8_t pos) {
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switch(pos) {
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case 0:
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UCSR0C &= ~((1<<UPM01)|(1<<UPM00)); //Clear all.
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case 1:
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UCSR0C &= ~(1<<UPM00); //Make sure that the negative parity if off.
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UCSR0C |= (1<<UPM01); //Set the positive parity
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case 2:
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UCSR0C |= (1<<UPM01)|(1<<UPM00); //Set both bits for neg parity
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default:
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;//Do nothing, just put here because
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}
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}
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/*
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* Input: number of stop bits
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* Output: none
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* Description:
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*/
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void serial0_set_stop_bits(uint8_t number) {
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//clear all the set bits to start off.
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UCSR0C &= ~(1<<USBS0);
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switch(number) {
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case 0:
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;
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case 1:
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;
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case 2:
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UCSR0C |= (1<<USBS0);
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default:
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;
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}
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}
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/*
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* Inupt: A serialbuffer and length
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* Output: None
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* Description: Reads the serial data into a buffer of x length.
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*/
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void serial0_read(unsigned char* buffer, uint8_t buf_length) {
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//clear buffer out?
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//buffer = 0;
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for(uint8_t i = 0; i < buf_length; i++) {
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buffer[i] = rx_usart0();
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}
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}
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/*
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* Inupt: A serialbuffer and length
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* Output: None
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* Description: Reads the serial data into a buffer of x length,
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* it does error checking from the register first.
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*/
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void serial0_read_with_err_checking(unsigned char* buffer, uint8_t buf_length) {
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//first wait for the data to be received.
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while( !(UCSR0A & (1<<RXC0)) ) {
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;//Equiv of continue
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}
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//check for errors in the register.
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//Check for frame error.
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if(UCSR0A & (1<<FE0)) {
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led_blink();
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}
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//check for data over-run
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else if(UCSR0A & (1<<DOR0)) {
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led_blink();
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led_blink();
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}
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//check for parity error
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else if(UCSR0A & (1<<UPE0)) {
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led_blink();
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led_blink();
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led_blink();
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}
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//now return the data
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buffer[0] = UDR0;
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}
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/*
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* Inupt: BUAD RATE as uint8_t
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* Output: None
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* Description: Sets the baud rate of the serial usart0
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* VALUES @ 1Mhz:
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* 207 --> 300bps
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* 103 --> 600bps
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* 51 --> 1200bps
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* 25 --> 2400bps
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* 12 --> 4800bps
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* 6 --> 9600bps !!! 7% error rate
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*/
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void serial0_set_baud(uint8_t baud) {
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UBRR0H |= (uint8_t) (baud>>8);
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UBRR0L |= (uint8_t) baud;
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}
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/*
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* Input: None
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* Output: None
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* Description: Toggles the pin for the LED indicator.
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*/
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static void led_blink(void) {
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//Set the DDR for output.
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DDRC |= (1<<LED_PIN);
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PORTC ^= (1<<LED_PIN);
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_delay_ms(250);
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PORTC ^= (1<<LED_PIN);
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_delay_ms(250);
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}
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