📄 lcd_x_i2cbus.c
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/*********************************************************************************************************** uC/GUI* Universal graphic software for embedded applications** (c) Copyright 2002, Micrium Inc., Weston, FL* (c) Copyright 2002, SEGGER Microcontroller Systeme GmbH** 礐/GUI is protected by international copyright laws. Knowledge of the* source code may not be used to write a similar product. This file may* only be used in accordance with a license and should not be redistributed* in any way. We appreciate your understanding and fairness.*----------------------------------------------------------------------
File : LCD_X_I2CBUS.c
Purpose : Port routines
----------------------------------------------------------------------
*/
/*********************************************************************
*
* Hardware configuration
*
**********************************************************************
Needs to be adopted to your target hardware.
*/
/* Configuration example:
#define Chip_30600
#include <IOM16C.H>
#define LCD_SLAVE_ADR 0x3c
#define LCD_CLR_SDA_IN() P8 &= ~(1<<0)
#define LCD_CLR_SCL() P8 &= ~(1<<2)
#define LCD_CLR_RESET() P8 &= ~(1<<3)
#define LCD_CLR_SA0() P8 &= ~(1<<4)
#define LCD_SET_SDA_IN() P8 |= (1<<0)
#define LCD_SET_SCL() P8 |= (1<<2)
#define LCD_SET_RESET() P8 |= (1<<3)
#define LCD_SET_SA0() P8 |= (1<<4)
#define LCD_READ_BIT() (P8 & (1<<1))
#define LCD_INIT_PORTS() \
P8D &= ~(1<<1); \
PUR2 = 0xff; \
*/
/*********************************************************************
*
* High level LCD access macros
*
**********************************************************************
Usually, there is no need to modify these macros.
It should be sufficient ot modify the low-level macros
above.
*/
#ifndef NOP
#define NOP()
#endif
#define LCD_START() \
LCD_CLR_SDA_IN(); \
NOP(); \
LCD_CLR_SCL(); \
NOP()
#define LCD_STOP() \
LCD_SET_SCL(); \
NOP(); \
LCD_SET_SDA_IN(); \
NOP()
#define LCD_SLAVE_WRITE ((LCD_SLAVE_ADR << 1) + 0)
#define LCD_SLAVE_READ ((LCD_SLAVE_ADR << 1) + 1)
#define LCD_CNTRLBT_WRITE_CMD 0x00
#define LCD_CNTRLBT_WRITE_DATA 0x40
/*********************************************************************
*
* Initialisation
*
**********************************************************************
This routine should be called from your application program
to set port pins to their initial values
*/
void LCD_X_Init(void) {
LCD_INIT_PORTS();
if (LCD_SLAVE_ADR & 1)
LCD_SET_SA0();
else
LCD_CLR_SA0();
LCD_CLR_RESET();
LCD_SET_SDA_IN();
LCD_SET_SCL();
LCD_SET_RESET();
}
/*********************************************************************
*
* Access routines
*
**********************************************************************
Usually, there is no need to modify these routines.
It should be sufficient ot modify the low-level macros
above.
*/
/* Read 1 byte, MSB first */
static U8 _Read1(void) {
U8 c = 0;
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<7); else c &= ~(1<<7); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<6); else c &= ~(1<<6); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<5); else c &= ~(1<<5); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<4); else c &= ~(1<<4); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<3); else c &= ~(1<<3); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<2); else c &= ~(1<<2); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<1); else c &= ~(1<<1); LCD_CLR_SCL();
LCD_SET_SCL(); if (LCD_READ_BIT()) c |= (1<<0); else c &= ~(1<<0); LCD_CLR_SCL();
LCD_SET_SDA_IN(); LCD_SET_SCL(); LCD_CLR_SCL();
return c;
}
/* Write 1 byte, MSB first */
static void _Send1(U8 Data) {
if (Data&(1<<7)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<6)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<5)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<4)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<3)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<2)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<1)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
if (Data&(1<<0)) { LCD_SET_SDA_IN(); } else { LCD_CLR_SDA_IN(); } NOP(); LCD_SET_SCL(); NOP(); LCD_CLR_SCL(); NOP();
LCD_SET_SCL(); NOP(); LCD_CLR_SCL();
}
/* Read status */
U8 LCD_X_Read00(void) {
U8 c;
LCD_STOP();
LCD_START();
_Send1(LCD_SLAVE_READ);
c = _Read1();
LCD_STOP();
LCD_START();
_Send1(LCD_SLAVE_WRITE);
_Send1(LCD_CNTRLBT_WRITE_DATA);
return c;
}
/* Write data */
void LCD_X_Write01(char c) {
_Send1(c);
}
/* Write multiple data bytes*/
void LCD_X_WriteM01(char * pData, int NumBytes) {
for (; NumBytes; NumBytes--) {
_Send1(*pData++);
}
}
/* Write command */
void LCD_X_Write00(char c) {
LCD_STOP();
LCD_START();
_Send1(LCD_SLAVE_WRITE);
_Send1(LCD_CNTRLBT_WRITE_CMD);
_Send1(c);
LCD_STOP();
LCD_START();
_Send1(LCD_SLAVE_WRITE);
_Send1(LCD_CNTRLBT_WRITE_DATA);
}
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