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z3ngew
Joined: 20 Apr 2013 Posts: 50
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output_high2 & output_low2 is now available |
Posted: Tue Jun 04, 2013 10:33 am |
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Hello everyone,
I have wrote a Generic method that will allow CCS users to output_high or output_low two pins that belong to the same port at the same time, for example; PIN_A0, PINA7 without changing its previous state.
the down side of this method is that, when you are using a device with small RAM memory, you will feel like if you RAM has reached over 50%.
but in large RAM memory devices this like 18F452 or example, this should not be a problem
and also there is a manual control the user must make in case your device doesn't have PORT_X ( X is the name of the port).
the user must know the unsupported port name, and then comment the following line concerned with the same port
Code: | //void OUT_X(int8 weight){output_X(weight);} |
and remove the it from the output_port array as follow
Code: | // in case your device support PORT A & B
out output_port[5] = {OUT_A, OUT_B}; |
I leave you now with the code:
Code: | /*
Author: Ahmed Tarek
EMAIL: z3ngew@gmail.com
Code license: freeware
description: this method can output high or output_low 2 pin belonging at
the same port at the same time without changing the last port state
*/
//Feel free to send question on my email
#byte MCU_PORTE = getenv("SFR:PORTE")
#byte MCU_PORTD = getenv("SFR:PORTD")
#byte MCU_PORTC = getenv("SFR:PORTC")
#byte MCU_PORTB = getenv("SFR:PORTB")
#byte MCU_PORTA = getenv("SFR:PORTA")
typedef void (*out)(int8 weight);
void OUT_A(int8 weight){output_A(weight);}
void OUT_B(int8 weight){output_B(weight);}
void OUT_C(int8 weight){output_C(weight);}
void OUT_D(int8 weight){output_D(weight);}
void OUT_E(int8 weight){output_E(weight);}
out output_port[5] = {OUT_A, OUT_B, OUT_C, OUT_D, OUT_E};
int8 weights[9] = {0, 1, 2, 4, 8, 16, 32, 64, 128};
int8 data[5];
void output_high2(int16 PIN1, int16 PIN2)
{
//note this function is for 8 bits uc only
int16 val1, val2, initial_pin, order;
data[0] = MCU_PORTA ; data[1] = MCU_PORTB; data[2] = MCU_PORTC; data[3] = MCU_PORTD; data[4] = MCU_PORTE;
#IFDEF PIN_A0
initial_pin = PIN_A0;
#ENDIF
#IFNDEF PIN_A0
initial_pin = PIN_B0 - 8;
#ENDIF
order = (PIN2 - initial_pin)/8;
val1 = (PIN1+1 - initial_pin) - ( 8 * order);
val2 = (PIN2+1 - initial_pin) - ( 8 * order);
(*output_port[order])(data[order] + (weights[val1] + weights[val2]));
}
void output_low2(int16 PIN1, int16 PIN2)
{
int16 val1, val2, initial_pin, order;
data[0] = MCU_PORTA ; data[1] = MCU_PORTB; data[2] = MCU_PORTC; data[3] = MCU_PORTD; data[4] = MCU_PORTE;
#IFDEF PIN_A0
initial_pin = PIN_A0;
#ENDIF
#IFNDEF PIN_A0
initial_pin = PIN_B0 - 8;
#ENDIF
order = (PIN2 - initial_pin)/8;
val1 = (PIN1+1 - initial_pin) - ( 8 * order);
val2 = (PIN2+1 - initial_pin) - ( 8 * order);
(*output_port[order])(data[order] - (weights[val1] + weights[val2]));
}
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How to use these methods?
Simply copy the source code provided in your source file or a different file but make sure to (# include it) and do not forget to follow the instructions mentioned at the beginning of the thread.
Now you can for example use it like this:
Code: | output_high2(PIN_B2, PINB4);
delay_ms(1000);
output_low2(PIN_B2, PIN_B4); |
Please feel free to send feedback replies or emails
Good Luck,
z3ngew |
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byakuya
Joined: 09 Feb 2015 Posts: 4 Location: Mexico
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Posted: Tue Aug 11, 2015 5:43 pm |
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Para mi con esto basta amigo
#INCLUDE <18F4550.h>
#FUSES PLL5, CPUDIV1, USBDIV, HSPLL, NOFCMEN, NOWDT, NOPROTECT, NOIESO, PUT
#FUSES NOBROWNOUT, VREGEN, NOWDT, NOSTVREN, NOLVP, NODEBUG, NOPROTECT, NOCPB
#FUSES NOXINST, NOWRT, NOEBTRB, MCLR, NOLPT1OSC, NOPBADEN, STVREN, NODEBUG
#USE DELAY(CLOCK = 48MHZ)
INT8 COLUMNA[8]={PIN_D0,PIN_D1,PIN_D2,PIN_D3,PIN_D4,PIN_D5,PIN_D6,PIN_D7};
VOID MAIN (VOID)
{
FOR(;;)
{
FOR(INT8 I=0; I<7; I++) {
OUTPUT_HIGH(COLUMNA[I]);
DELAY_MS(500);
OUTPUT_LOW(COLUMNA[I]);
DELAY_MS(500);
}
}
} _________________ Cuando venga la inspiracion que me encuentre trabajando |
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