| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192 | //swi2c.c#include "swi2c.h"#include <avr/io.h>#include <util/delay.h>#include <avr/pgmspace.h>#include "stdbool.h"#include "Configuration_prusa.h"#include "pins.h"#include "fastio.h"#ifdef SWI2C_SCL#define SWI2C_RMSK   0x01 //read mask (bit0 = 1)#define SWI2C_WMSK   0x00 //write mask (bit0 = 0)#define SWI2C_ASHF   0x01 //address shift (<< 1)#define SWI2C_DMSK   0x7f //device address maskvoid __delay(void){	_delay_us(1.5);}void swi2c_init(void){	WRITE(SWI2C_SDA, 1);	WRITE(SWI2C_SCL, 1);	SET_OUTPUT(SWI2C_SDA);	SET_OUTPUT(SWI2C_SCL);	uint8_t i; for (i = 0; i < 100; i++)		__delay();}void swi2c_start(void){	WRITE(SWI2C_SDA, 0);	__delay();	WRITE(SWI2C_SCL, 0);	__delay();}void swi2c_stop(void){	WRITE(SWI2C_SCL, 1);	__delay();	WRITE(SWI2C_SDA, 1);	__delay();}void swi2c_ack(void){	WRITE(SWI2C_SDA, 0);	__delay();	WRITE(SWI2C_SCL, 1);	__delay();	WRITE(SWI2C_SCL, 0);	__delay();}uint8_t swi2c_wait_ack(){	SET_INPUT(SWI2C_SDA);	__delay();//	WRITE(SWI2C_SDA, 1);	__delay();	WRITE(SWI2C_SCL, 1);//	__delay();	uint8_t ack = 0;	uint16_t ackto = SWI2C_TMO;	while (!(ack = (!READ(SWI2C_SDA))) && ackto--) __delay();	WRITE(SWI2C_SCL, 0);	__delay();	SET_OUTPUT(SWI2C_SDA);	__delay();	WRITE(SWI2C_SDA, 0);	__delay();	return ack;}uint8_t swi2c_read(void){	WRITE(SWI2C_SDA, 1);	__delay();	SET_INPUT(SWI2C_SDA);	uint8_t data = 0;	int8_t bit; for (bit = 7; bit >= 0; bit--)	{		WRITE(SWI2C_SCL, 1);		__delay();		data |= (READ(SWI2C_SDA)) << bit;		WRITE(SWI2C_SCL, 0);		__delay();	}	SET_OUTPUT(SWI2C_SDA);	return data;}void swi2c_write(uint8_t data){	int8_t bit; for (bit = 7; bit >= 0; bit--)	{		WRITE(SWI2C_SDA, data & _BV(bit));		__delay();		WRITE(SWI2C_SCL, 1);		__delay();		WRITE(SWI2C_SCL, 0);		__delay();	}}uint8_t swi2c_check(uint8_t dev_addr){	swi2c_start();	swi2c_write((dev_addr & SWI2C_DMSK) << SWI2C_ASHF);	if (!swi2c_wait_ack()) { swi2c_stop(); return 0; }	swi2c_stop();	return 1;}#ifdef SWI2C_A8 //8bit addressuint8_t swi2c_readByte_A8(uint8_t dev_addr, uint8_t addr, uint8_t* pbyte){	swi2c_start();	swi2c_write(SWI2C_WMSK | ((dev_addr & SWI2C_DMSK) << SWI2C_ASHF));	if (!swi2c_wait_ack()) { swi2c_stop(); return 0; }	swi2c_write(addr & 0xff);	if (!swi2c_wait_ack()) return 0;	swi2c_stop();	swi2c_start();	swi2c_write(SWI2C_RMSK | ((dev_addr & SWI2C_DMSK) << SWI2C_ASHF));	if (!swi2c_wait_ack()) return 0;	uint8_t byte = swi2c_read();	swi2c_stop();	if (pbyte) *pbyte = byte;	return 1;}uint8_t swi2c_writeByte_A8(uint8_t dev_addr, uint8_t addr, uint8_t* pbyte){	swi2c_start();	swi2c_write(SWI2C_WMSK | ((dev_addr & SWI2C_DMSK) << SWI2C_ASHF));	if (!swi2c_wait_ack()) { swi2c_stop(); return 0; }	swi2c_write(addr & 0xff);	if (!swi2c_wait_ack()) return 0;	swi2c_write(*pbyte);	if (!swi2c_wait_ack()) return 0;	swi2c_stop();	return 1;}#endif //SWI2C_A8#ifdef SWI2C_A16 //16bit addressuint8_t swi2c_readByte_A16(uint8_t dev_addr, unsigned short addr, uint8_t* pbyte){	swi2c_start();	swi2c_write(SWI2C_WMSK | ((dev_addr & SWI2C_DMSK) << SWI2C_ASHF));	if (!swi2c_wait_ack()) { swi2c_stop(); return 0; }	swi2c_write(addr >> 8);	if (!swi2c_wait_ack()) return 0;	swi2c_write(addr & 0xff);	if (!swi2c_wait_ack()) return 0;	swi2c_stop();	swi2c_start();	swi2c_write(SWI2C_RMSK | ((dev_addr & SWI2C_DMSK) << SWI2C_ASHF));	if (!swi2c_wait_ack()) return 0;	uint8_t byte = swi2c_read();	swi2c_stop();	if (pbyte) *pbyte = byte;	return 1;}uint8_t swi2c_writeByte_A16(uint8_t dev_addr, unsigned short addr, uint8_t* pbyte){	swi2c_start();	swi2c_write(SWI2C_WMSK | ((dev_addr & SWI2C_DMSK) << SWI2C_ASHF));	if (!swi2c_wait_ack()) { swi2c_stop(); return 0; }	swi2c_write(addr >> 8);	if (!swi2c_wait_ack()) return 0;	swi2c_write(addr & 0xff);	if (!swi2c_wait_ack()) return 0;	swi2c_write(*pbyte);	if (!swi2c_wait_ack()) return 0;	swi2c_stop();	return 1;}#endif //SWI2C_A16#endif //SWI2C_SCL
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