Files
MIC-KM/MIC-Week1/main.c
T
2016-02-15 14:23:02 +01:00

256 lines
4.1 KiB
C

/*
* MIC-Week1.c
*
* Created: 2-2-2016 11:48:44
* Author : kenny
*/
#define F_CPU 8000000UL
#define NELEMS(x) (sizeof(x) / sizeof(x[0]))
#include <avr/interrupt.h>
#include <avr/io.h>
#include <util/delay.h>
int reset = 0;
/******************************************************************/
void wait( int ms )
/*
short: Busy wait number of millisecs
inputs: int ms (Number of millisecs to busy wait)
outputs:
notes: Busy wait, not very accurate. Make sure (external)
clock value is set. This is used by _delay_ms inside
util/delay.h
Version : DMK, Initial code
*******************************************************************/
{
for (int i=0; i<ms; i++)
{
if(reset == 1)
{
reset = 0;
return;
}
_delay_ms( 1 ); // library function (max 30 ms at 8MHz)
}
}
typedef struct {
unsigned char data;
unsigned int delay ;
} PATTERN_STRUCT;
PATTERN_STRUCT pattern[] = {
{0x00, 100}, {0x01, 100}, {0x02, 100}, {0x04, 100}, {0x10, 100}, {0x20, 100}, {0x40, 100}, {0x80, 100},
{0x00, 100},
{0xAA, 50}, {0x55, 50},
{0xAA, 50}, {0x55, 50},
{0xAA, 50}, {0x55, 50},
{0x00, 100},
{0x81, 100}, {0x42, 100}, {0x24, 100}, {0x18, 100}, {0x0F, 200}, {0xF0, 200}, {0x0F, 200}, {0xF0, 200},
{0x00, 0x00}
};
int count = 0;
int speed = 1;
int blink = 1000;
int b1 = 0;
int b2 = 0;
int direction = 0;
ISR(TIMER0_OVF_vect) {
if( (0b00000001 & PINC) != 0 && b1 == 0)
{
blink = blink*2;
reset = 1;
b1 = 1;
}
if( (0b00000010 & PINC) != 0 && b2 == 0 )
{
blink = blink/2;
reset = 1;
b2 = 1;
}
if( PINC == 0)
{
b1 = 0;
b2 = 0;
}
if(blink < 20)
{
blink = 20;
}
else if(blink > 4000)
{
blink = 4000;
}
}
int main(void)
{
DDRC = 0b00000000; //input
DDRD = 0b11111111; //output
// Prescaler
TCCR0 |= (1 << CS01) | (1 << CS00);
//Enable Overflow Interrupt Enable
TIMSK|=(1<<TOIE0);
//Initialize Counter
TCNT0=0;
sei();
//Alleen voor opgave 4
PORTD = 0x1;
while (1)
{
//opgave1();
//opgave2();
//opgave3();
opgave4();
//opgave5();
//opgave6();
//charlieplexing();
//extraopgave();
}
return 1;
}
void extraopgave(void)
{
if( (PINC) != 0 )
{
speaker( PINC );
}
}
void speaker(int i)
{
//PORTD moet hiervoor output zijn en PORTC input
PORTD = 0b01010101;
wait( i );
PORTD = 0b00000000;
wait( i );
}
void opgave1(void)
{
PORTD = 0b10000000;
wait( 500 );
PORTD = 0b01000000;
wait ( 500 );
}
void opgave3(void)
{
if( (0b00000001 & PINC) != 0 )
{
PORTD = 0b10000000;
wait( 100 );
PORTD = 0b00000000;
wait( 100 );
}
}
void opgave4(void)
{
wait( 50 );
if (PORTD>= 0x80)
{
direction = 1;
}
else if (PORTD <= 0x1)
{
direction = 0;
}
if(direction)
PORTD = (PORTD>>1);
else
PORTD = (PORTD<<1);
}
void opgave5(void)
{
if(PINC != 0 )
{
speed = PINC;
}
// Write data to PORTD
PORTD = pattern[count].data;
// wait
wait(pattern[count].delay * speed);
count++;
if(count >= NELEMS(pattern))
{
count = 0;
}
}
void opgave6(void)
{
PORTD = 0b10000000;
wait( blink );
PORTD = 0b00000000;
wait( blink );
}
void charlieplexing(void)
{
//Button C0
if( (0b00000001 & PINC) != 0)
{
DDRD = 0b00000011; //PIN 1 & 2 as output. Pin 3 as input (TRI-STATE)
PORTD = 0b00000001; //PIN 1 High, PIN 2 Low
}
//Button C1
else if( (0b00000010 & PINC) != 0)
{
DDRD = 0b00000011; //PIN 1 & 2 as output. Pin 3 as input (TRI-STATE)
PORTD = 0b00000010; //PIN 2 High, PIN 1 Low
}
//Button C2
else if( (0b00000100 & PINC) != 0)
{
DDRD = 0b00000110; //PIN 2 & 3 as output. Pin 1 as input (TRI-STATE)
PORTD = 0b00000010; //PIN 2 High, PIN 3 Low
}
//Button C3
else if( (0b00001000 & PINC) != 0)
{
DDRD = 0b00000110; //PIN 2 & 3 as output. Pin 1 as input (TRI-STATE)
PORTD = 0b00000100; //PIN 3 High, PIN 2 Low
}
//Button C4
else if( (0b00010000 & PINC) != 0)
{
DDRD = 0b00000101; //PIN 3 & 1 as output. Pin 2 as input (TRI-STATE)
PORTD = 0b00000100; //PIN 3 High, PIN 1 Low
}
//Button C5
else if( (0b00100000 & PINC) != 0)
{
DDRD = 0b00000101; //PIN 3 & 1 as output. Pin 2 as input (TRI-STATE)
PORTD = 0b00000001; //PIN 1 High, PIN 3 Low
}
}