Attempt at making MPU6050 work via i2c
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5 changed files with 105 additions and 2 deletions
51
MPU6050.c
51
MPU6050.c
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@ -1 +1,50 @@
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#include "MPU6050.h"
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#include <stdint.h>
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#include <avr/io.h>
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#include <util/delay.h>
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#include "MPU6050.h"
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#include "i2c.h"
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// Function to initialize MPU-6050
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void MPU6050_Init() {
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// Wake up MPU-6050 by writing to PWR_MGMT_1 register
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I2C_start(MPU6050_ADDR << 1 | TW_WRITE);
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I2C_write(MPU6050_REG_PWR_MGMT_1);
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I2C_write(0x00); // Clear sleep mode bit
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I2C_stop();
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}
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// Function to read accelerometer data from MPU-6050
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void MPU6050_Read_Accel(int16_t* accel_data) {
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uint8_t buffer[6]; // Buffer to store accelerometer data
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// Read accelerometer data starting from ACCEL_XOUT_H register
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I2C_start(MPU6050_ADDR << 1 | TW_WRITE);
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I2C_write(MPU6050_REG_ACCEL_XOUT_H);
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I2C_start(MPU6050_ADDR << 1 | TW_READ);
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for (int i = 0; i < 6; i++) {
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buffer[i] = I2C_read(i < 5); // Read 6 bytes with ACK for all except last byte
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}
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I2C_stop();
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// Combine high and low bytes for each axis
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accel_data[0] = (buffer[0] << 8) | buffer[1]; // X-axis
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accel_data[1] = (buffer[2] << 8) | buffer[3]; // Y-axis
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accel_data[2] = (buffer[4] << 8) | buffer[5]; // Z-axis
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}
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// Function to read gyroscope data from MPU-6050
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void MPU6050_Read_Gyro(int16_t* gyro_data) {
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uint8_t buffer[6]; // Buffer to store gyroscope data
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// Read gyroscope data starting from GYRO_XOUT_H register
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I2C_start(MPU6050_ADDR << 1 | TW_WRITE);
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I2C_write(MPU6050_REG_GYRO_XOUT_H);
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I2C_start(MPU6050_ADDR << 1 | TW_READ);
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for (int i = 0; i < 6; i++) {
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buffer[i] = I2C_read(i < 5); // Read 6 bytes with ACK for all except last byte
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}
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I2C_stop();
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// Combine high and low bytes for each axis
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gyro_data[0] = (buffer[0] << 8) | buffer[1]; // X-axis
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gyro_data[1] = (buffer[2] << 8) | buffer[3]; // Y-axis
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gyro_data[2] = (buffer[4] << 8) | buffer[5]; // Z-axis
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}
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21
MPU6050.h
21
MPU6050.h
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#pragma once
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#pragma once
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#include <stdint.h>
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// I2c address of MPU6050
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#define MPU6050_ADDR 0x68 // With AD0 pin grounded/floating, otherwise 0x69
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// MPU-6050 register addresses
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#define MPU6050_REG_ACCEL_XOUT_H 0x3B
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#define MPU6050_REG_GYRO_XOUT_H 0x43
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#define MPU6050_REG_PWR_MGMT_1 0x6B
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#include <stdint.h>
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#include <avr/io.h>
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#include <util/delay.h>
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// Function to initialize MPU-6050
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void MPU6050_Init();
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// Function to read accelerometer data from MPU-6050
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void MPU6050_Read_Accel(int16_t* accel_data);
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// Function to read gyroscope data from MPU-6050
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void MPU6050_Read_Gyro(int16_t* gyro_data);
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3
i2c.h
3
i2c.h
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#pragma once
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#pragma once
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#include <stdint.h>
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#include <stdint.h>
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#define TW_WRITE 0
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#define TW_READ 1
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void I2C_init();
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void I2C_init();
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uint8_t I2C_start(uint8_t addr);
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uint8_t I2C_start(uint8_t addr);
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void I2C_stop();
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void I2C_stop();
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28
main.c
28
main.c
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@ -34,6 +34,10 @@ void blink() {
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int main(void) {
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int main(void) {
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initUART();
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initUART();
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UART_println("ATmega328P Initialized!");
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I2C_init();
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UART_println("I2C Initialized!");
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MPU6050_Init();
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while(1) {
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while(1) {
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UART_println("Hello, World!");
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UART_println("Hello, World!");
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@ -42,3 +46,27 @@ int main(void) {
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return 0;
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return 0;
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}
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}
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// int main() {
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// int16_t accel_data[3]; // Array to store accelerometer data (X, Y, Z)
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// int16_t gyro_data[3]; // Array to store gyroscope data (X, Y, Z)
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// // Initialize MPU-6050
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// i2c_init();
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// MPU6050_Init();
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// while (1) {
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// // Read accelerometer data
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// MPU6050_Read_Accel(accel_data);
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// // Read gyroscope data
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// MPU6050_Read_Gyro(gyro_data);
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// // Print accelerometer and gyroscope data
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// printf("Accelerometer (mg): X=%d, Y=%d, Z=%d\n", accel_data[0], accel_data[1], accel_data[2]);
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// printf("Gyroscope (°/s): X=%d, Y=%d, Z=%d\n", gyro_data[0], gyro_data[1], gyro_data[2]);
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// _delay_ms(1000); // Delay for 1 second
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// }
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// return 0;
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// }
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4
makefile
4
makefile
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@ -64,3 +64,7 @@ clean:
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size: $(TARGET).hex
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size: $(TARGET).hex
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avr-size --mcu=atmega328p $(TARGET).hex
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avr-size --mcu=atmega328p $(TARGET).hex
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# Reset target
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reset:
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avrdude -p $(MCU) -c $(PROGRAMMER) -E reset
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