Difference between revisions of "6272 Embedded Controller I/Oktober 2016"
From Teknologisk videncenter
m (→Lysdioder port definitioner) |
m (→Lysdioder port definitioner) |
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− | + | #ifdef SMALL_BOARD | |
− | |||
− | |||
*PORT1SEL &= ~(0x41); // Clear bit 1 and 6 | *PORT1SEL &= ~(0x41); // Clear bit 1 and 6 | ||
*PORT1SEL2 &= ~(0x41); // Clear bit 1 and 6 | *PORT1SEL2 &= ~(0x41); // Clear bit 1 and 6 | ||
Line 86: | Line 84: | ||
} | } | ||
} | } | ||
− | } | + | #endif |
+ | #ifdef BIG_BOARD | ||
+ | *PORT1SEL &= ~(0x01); // Clear bit 1 | ||
+ | *PORT1DIR |= 0x01; // Port 1 direction: bit 1 as output | ||
+ | *PORT1OUT |= 0x01; // Port 1 bit 1=1 (Red LED on) | ||
+ | *PORT4SEL &= ~(0x80); | ||
+ | *PORT4DIR |= 0x80; | ||
+ | *PORT4OUT &= ~(0x80); | ||
+ | while(1) { | ||
+ | { | ||
+ | for( tmp=0; tmp <= 50000 ; tmp++); | ||
+ | *PORT1OUT ^= 0x1; // Invert port 1 bit 1 (RED) | ||
+ | *PORT4OUT ^= 0x80; // Invert port 5 bit 8 (GREEN) | ||
+ | } | ||
+ | } | ||
+ | #endif | ||
</source> | </source> | ||
[[Category:Embedded]] | [[Category:Embedded]] |
Revision as of 13:16, 12 October 2016
Contents
C
- ctutor.pdf
- C programming (Local articles)
- Const and volatile type qualifiers
- ASC-II tegnsættet
MSP430
- MSP430
- MSP430 Introduktion (Loads PDF)
Opgaver
MSP430/MSP430G2 Serial 1 project
Få stdio bibliotek til at virke
UART_poll.c
Indsæt følgende nederst i UART_poll.c
int putchar( int charout ) {
cout( (char) charout );
return(charout);
}
int getchar( void ) {
int charin;
charin = (int) cin();
if ( (charin == 0x0d ) || (charin == 0x0a) ) { // CR or LF
putchar( 0x0d ); // Output CR+LF
putchar( 0x0a );
return( 0x0a ); // Return LF
} else { // Else other character
putchar( charin );
return( charin );
}
}
UART_poll.h
Indsæt følgende linier nederst i UART_poll.h
extern int putchar( int charout );
extern int getchar( void );
Main.c
Indsæt følgende include sætning øverst i main.c
#include <stdio.h>
Lysdioder port definitioner
#define SMALL_BOARD // Using MSP430G2553
//#define BIG_BOARD // Using MSP430F5529
#ifdef SMALL_BOARD
unsigned char volatile * const PORT1SEL = (unsigned char *) 0x0026;
unsigned char volatile * const PORT1SEL2 = (unsigned char *) 0x0041;
unsigned char volatile * const PORT1IN = (unsigned char *) 0x0020;
unsigned char volatile * const PORT1OUT = (unsigned char *) 0x0021;
unsigned char volatile * const PORT1DIR = (unsigned char *) 0x0022;
#endif
#ifdef BIG_BOARD
unsigned char volatile * const PORT1SEL = (unsigned char *) 0x020a;
unsigned char volatile * const PORT1IN = (unsigned char *) 0x0200;
unsigned char volatile * const PORT1OUT = (unsigned char *) 0x0202;
unsigned char volatile * const PORT1DIR = (unsigned char *) 0x0204;
unsigned char volatile * const PORT4SEL = (unsigned char *) 0x022b;
unsigned char volatile * const PORT4IN = (unsigned char *) 0x0221;
unsigned char volatile * const PORT4OUT = (unsigned char *) 0x0223;
unsigned char volatile * const PORT4DIR = (unsigned char *) 0x0225;
#endif
#ifdef SMALL_BOARD
*PORT1SEL &= ~(0x41); // Clear bit 1 and 6
*PORT1SEL2 &= ~(0x41); // Clear bit 1 and 6
*PORT1DIR |= 0x41; // Port 1 direction: bit 1 and 6 as output
*PORT1OUT &= ~0x01; // Port 1 bit 1=1 (Red LED on) bit 6 = 0 (Green LED off)
while(1) {
{
for( tmp=0; tmp <= 50000 ; tmp++);
*PORT1OUT ^= 0x41; // Invert port 1 bit 1 (RED) and bit 6 (GREEN)
if ( *PORT1IN
}
}
#endif
#ifdef BIG_BOARD
*PORT1SEL &= ~(0x01); // Clear bit 1
*PORT1DIR |= 0x01; // Port 1 direction: bit 1 as output
*PORT1OUT |= 0x01; // Port 1 bit 1=1 (Red LED on)
*PORT4SEL &= ~(0x80);
*PORT4DIR |= 0x80;
*PORT4OUT &= ~(0x80);
while(1) {
{
for( tmp=0; tmp <= 50000 ; tmp++);
*PORT1OUT ^= 0x1; // Invert port 1 bit 1 (RED)
*PORT4OUT ^= 0x80; // Invert port 5 bit 8 (GREEN)
}
}
#endif