#define _XTAL_FREQ 8000000

#define RS RD2
#define EN RD3
#define D4 RD4
#define D5 RD5
#define D6 RD6
#define D7 RD7

#include <xc.h>
#include "lcd.h";

// BEGIN CONFIG
#pragma config FOSC = XT        // Oscillator Selection bits (XT oscillator: High-speed crystal/resonator on RA6/OSC2/CLKOUT and RA7/OSC1/CLKIN)
#pragma config WDTE = OFF       // Watchdog Timer Enable bit (WDT disabled and can be enabled by SWDTEN bit of the WDTCON register)
#pragma config PWRTE = OFF      // Power-up Timer Enable bit (PWRT disabled)
#pragma config MCLRE = ON       // RE3/MCLR pin function select bit (RE3/MCLR pin function is MCLR)
#pragma config CP = OFF         // Code Protection bit (Program memory code protection is disabled)
#pragma config CPD = OFF        // Data Code Protection bit (Data memory code protection is disabled)
#pragma config BOREN = ON       // Brown Out Reset Selection bits (BOR enabled)
#pragma config IESO = ON        // Internal External Switchover bit (Internal/External Switchover mode is enabled)
#pragma config FCMEN = ON       // Fail-Safe Clock Monitor Enabled bit (Fail-Safe Clock Monitor is enabled)
#pragma config LVP = OFF        // Low Voltage Programming Enable bit (RB3 pin has digital I/O, HV on MCLR must be used for programming)

// CONFIG2
#pragma config BOR4V = BOR40V   // Brown-out Reset Selection bit (Brown-out Reset set to 4.0V)
#pragma config WRT = OFF        // Flash Program Memory Self Write Enable bits (Write protection off)
//END CONFIG

int main()
{
  unsigned int a;
  TRISD = 0x00;
  Lcd_Init();
  while(1)
  {
    Lcd_Clear();
    Lcd_Set_Cursor(1,1);
    Lcd_Write_String("TEST PROGRAM");
    Lcd_Set_Cursor(2,1);
    Lcd_Write_String("FIRST RUN");
    __delay_ms(2000);
    Lcd_Clear();
    Lcd_Set_Cursor(1,1);
    Lcd_Write_String("TEST LCD");
    Lcd_Set_Cursor(2,1);
    Lcd_Write_String("Testing...");
    __delay_ms(2000);
    Lcd_Clear();
    Lcd_Set_Cursor(1,1);
    Lcd_Write_String("END OF TEST");
    
    for(a=0;a<15;a++)
    {
        __delay_ms(300);
        Lcd_Shift_Right();
    }

    for(a=0;a<15;a++)
    {
        __delay_ms(300);
        Lcd_Shift_Right();
    }

    Lcd_Clear();
    Lcd_Set_Cursor(2,8);
    Lcd_Write_Char('V');
    Lcd_Write_Char('D');
    __delay_ms(1000);
  }
  return 0;
}