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i2c.c
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i2c.c
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#include "i2c.h"
#include "ch554_platform.h"
xdata uint8_t I2C_Buf;
SBIT(sda_pin, 0x90, 7);
SBIT(scl_pin, 0x90, 6);
//sbit sda_pin = P1^5;
//sbit scl_pin = P1^4;
#define I2C_SDA() (sda_pin==1)
#define I2C_SDA_H() {sda_pin = 1;}
#define I2C_SDA_L() {sda_pin = 0;}
#define I2C_SCL_H() {scl_pin = 1;}
#define I2C_SCL_L() {scl_pin = 0;}
void I2C_DELAY(void) {
uint8_t i;
for (i=0; i<7; i++); // Frequency control
}
void I2C_Init(void) {
I2C_SDA_H();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
}
// Generate a I2C start sequence
void I2C_Send_Start(void) {
// I2C_SCL = H, I2C_SDA = H
I2C_SDA_H();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SDA_L();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
// I2C_SCL = L, I2C_SDA = L
}
// Write a byte (stored in I2C_Buf) to I2C bus and return the ACK status in I2C_Buf
// xxxx xxx(ACK bit)
// ACK bit = 0 -> ACK received
// ACK bit = 1 -> NACK received
void I2C_WriteByte(void) {
// I2C_SCL = L
if (I2C_Buf & 0x80) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x40) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x20) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x10) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x08) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x04) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x02) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
if (I2C_Buf & 0x01) {I2C_SDA_H();} else {I2C_SDA_L();}
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
I2C_SDA_H();
I2C_DELAY();
// Check ACK bit
// I2C_SCL = L
I2C_SCL_H();
I2C_DELAY();
I2C_Buf = 0;
if (I2C_SDA())
I2C_Buf = 1;
I2C_SCL_L();
I2C_DELAY();
}
// Read a byte from I2C bus and store the result into I2C_Buf
void I2C_ReadByte(void) {
I2C_Buf = 0;
// I2C_SCL = L
I2C_SDA_H(); //Master release the bus
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x80;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x40;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x20;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x10;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x08;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x04;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x02;
I2C_SCL_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
if (I2C_SDA())
I2C_Buf |= 0x01;
I2C_SCL_L();
I2C_DELAY();
}
// Send a ACK to I2C bus
void I2C_Send_ACK(void) {
// I2C_SCL = L
I2C_SDA_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
}
// Send a NACK to I2C bus
void I2C_Send_NACK(void) {
// I2C_SCL = L
I2C_SDA_H();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SCL_L();
I2C_DELAY();
}
// Generate a I2C stop condition, release the bus
void I2C_Send_Stop(void) {
// I2C_SCL = L, I2C_SDA = H
I2C_SDA_L();
I2C_DELAY();
I2C_SCL_H();
I2C_DELAY();
I2C_SDA_H(); //Master release the bus
I2C_DELAY();
}