Que tal amigos, ando de nuevo aquí, lo que pasa es que tengo el problema con mi programa de que cuando recibo datos por la usar, en la interrupción, el programa principal se queda colgado y no responde, hasta que se reinicio por el watch dog
/*
* File: mainpruebas2.c
* Author: l
*
* Created on July 7, 2015, 1:32 PM
*/
// #pragma config statements should precede project file includes.
// Use project enums instead of #define for ON and OFF.
// CONFIG1H
#pragma config OSC = HS // Oscillator Selection bits (HS oscillator)
#pragma config FCMEN = OFF // Fail-Safe Clock Monitor Enable bit (Fail-Safe Clock Monitor disabled)
#pragma config IESO = OFF // Internal/External Oscillator Switchover bit (Oscillator Switchover mode disabled)
// CONFIG2L
#pragma config PWRT = ON // Power-up Timer Enable bit (PWRT enabled)
#pragma config BOREN = SBORDIS // Brown-out Reset Enable bits (Brown-out Reset enabled in hardware only (SBOREN is disabled))
#pragma config BORV = 3 // Brown Out Reset Voltage bits (Minimum setting)
// CONFIG2H
#pragma config WDT = ON // Watchdog Timer Enable bit (WDT disabled (control is placed on the SWDTEN bit))
#pragma config WDTPS = 32768 // Watchdog Timer Postscale Select bits (1:32768)
// CONFIG3H
#pragma config CCP2MX = PORTC // CCP2 MUX bit (CCP2 input/output is multiplexed with RC1)
#pragma config PBADEN = OFF // PORTB A/D Enable bit (PORTB<4:0> pins are configured as analog input channels on Reset)
#pragma config LPT1OSC = OFF // Low-Power Timer1 Oscillator Enable bit (Timer1 configured for higher power operation)
#pragma config MCLRE = ON // MCLR Pin Enable bit (MCLR pin enabled; RE3 input pin disabled)
// CONFIG4L
#pragma config STVREN = ON // Stack Full/Underflow Reset Enable bit (Stack full/underflow will cause Reset)
#pragma config LVP = ON // Single-Supply ICSP Enable bit (Single-Supply ICSP enabled)
#pragma config XINST = OFF // Extended Instruction Set Enable bit (Instruction set extension and Indexed Addressing mode disabled (Legacy mode))
// CONFIG5L
#pragma config CP0 = OFF // Code Protection bit (Block 0 (000800-003FFFh) not code-protected)
#pragma config CP1 = OFF // Code Protection bit (Block 1 (004000-007FFFh) not code-protected)
#pragma config CP2 = OFF // Code Protection bit (Block 2 (008000-00BFFFh) not code-protected)
#pragma config CP3 = OFF // Code Protection bit (Block 3 (00C000-00FFFFh) not code-protected)
// CONFIG5H
#pragma config CPB = OFF // Boot Block Code Protection bit (Boot block (000000-0007FFh) not code-protected)
#pragma config CPD = OFF // Data EEPROM Code Protection bit (Data EEPROM not code-protected)
// CONFIG6L
#pragma config WRT0 = OFF // Write Protection bit (Block 0 (000800-003FFFh) not write-protected)
#pragma config WRT1 = OFF // Write Protection bit (Block 1 (004000-007FFFh) not write-protected)
#pragma config WRT2 = OFF // Write Protection bit (Block 2 (008000-00BFFFh) not write-protected)
#pragma config WRT3 = OFF // Write Protection bit (Block 3 (00C000-00FFFFh) not write-protected)
// CONFIG6H
#pragma config WRTC = OFF // Configuration Register Write Protection bit (Configuration registers (300000-3000FFh) not write-protected)
#pragma config WRTB = OFF // Boot Block Write Protection bit (Boot Block (000000-0007FFh) not write-protected)
#pragma config WRTD = OFF // Data EEPROM Write Protection bit (Data EEPROM not write-protected)
// CONFIG7L
#pragma config EBTR0 = OFF // Table Read Protection bit (Block 0 (000800-003FFFh) not protected from table reads executed in other blocks)
#pragma config EBTR1 = OFF // Table Read Protection bit (Block 1 (004000-007FFFh) not protected from table reads executed in other blocks)
#pragma config EBTR2 = OFF // Table Read Protection bit (Block 2 (008000-00BFFFh) not protected from table reads executed in other blocks)
#pragma config EBTR3 = OFF // Table Read Protection bit (Block 3 (00C000-00FFFFh) not protected from table reads executed in other blocks)
// CONFIG7H
#pragma config EBTRB = OFF // Boot Block Table Read Protection bit (Boot Block (000000-0007FFh) not protected from table reads executed in other blocks)
#include <xc.h>
#include <pic18f4620.h>
#include <delays.h>
#include <stdio.h>
#include <stdlib.h>
#include <plib/usart.h> //Libreria para el manejo del modulo USART
#define _XTAL_FREQ 20000000
//#define __delay_ms(x) _delay((unsigned long)((x)*(_XTAL_FREQ/20000000.0)))
int i;
char CaracterRx;
char MensajeTx[7];
void main ()
{
TRISB = 0b00000000; // Configuro puerto B como salidas
OpenUSART(USART_TX_INT_OFF &
USART_RX_INT_ON & //Activar la interrupcion por la recepcion de dato del buffer de Rx del USART
USART_ASYNCH_MODE & //Modo asincrono (fullduplex)
USART_EIGHT_BIT & //8 bits de datos
USART_CONT_RX & //Recepción continua
USART_BRGH_HIGH, 129); //9600 Baudios
// (frecuencia a la que trabaja el cpu/dbaudrate)/16)-1
// (8.000.000/9600)/16)-1=51
INTCONbits.PEIE = 1; //Activamos interrupcion de perifericos
INTCONbits.GIE = 1; //Activamos las interrupciones globales
while (1) // Bucle infinito
{
CLRWDT();
LATB=0x10; // Apago pin RB0
for(i=0;i<20;i++) { __delay_ms(12); }
LATB=0x00;
for(i=0;i<20;i++) { __delay_ms(12); }
}
}
void interrupt Interrupcion() //Funcion que atiende las interrupciones
{
int k;
getsUSART((char *)MensajeTx,7);
//CaracterRx = ReadUSART(); //Se lee el dato que esta en el buffer de Rx del USART
/* MensajeTx[0]=ReadUSART();
MensajeTx[1]=ReadUSART();
MensajeTx[2]=ReadUSART();
MensajeTx[3]=ReadUSART();
MensajeTx[4]=ReadUSART();
MensajeTx[5]=ReadUSART();
MensajeTx[6]=ReadUSART();
/*
EEPROM_WRITE(0X01,CaracterRx);
while(BusyUSART());
CaracterRx=EEPROM_READ(0X01);
WriteUSART(CaracterRx);*/
for(k=0;k<7;k++){
while(BusyUSART());
WriteUSART(MensajeTx[k]);
for(i=0;i<20;i++) { __delay_ms(12); }
}
PIR1bits.RCIF = 0; //Desactivamos la bandera de recepción en el buffer de entrada del USART
return;
}ya le inclui un return. pero sigue igual, alguna sugerencia?