generated from hulk/gd32e23x_template
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10
inc/rs485.h
10
inc/rs485.h
@ -24,7 +24,7 @@
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#define RS485_EN_PIN GPIO_PIN_1
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#define RX_BUFFER_SIZE 64
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#define RX_BUFFER_SIZE 32
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typedef enum {
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VALIDATION_SUCCESS = 0,
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@ -32,11 +32,17 @@ typedef enum {
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} validation_result_t;
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void rs485_config(void);
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void process_command(uint8_t *cmd, size_t length);
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uint8_t calculate_crc(uint8_t data[], size_t data_length);
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validation_result_t validate_package_crc(uint8_t *data, size_t data_length);
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validation_result_t validate_package_header(uint8_t *data);
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validation_result_t validate_package_type(uint8_t *data);
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void eddy_current_value_report(void);
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void tempture_value_report(void);
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#endif //RS485_H
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#endif //RS485_H
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@ -121,7 +121,7 @@ void USART0_IRQHandler(void) {
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static uint8_t rx_index = 0;
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static uint8_t rx_buffer[RX_BUFFER_SIZE];
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if (RESET != usart_interrupt_flag_get(USART0, USART_INT_FLAG_RBNE)) {
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if (usart_interrupt_flag_get(USART0, USART_INT_FLAG_RBNE) != RESET) {
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usart_interrupt_flag_clear(USART0, USART_INT_FLAG_RBNE);
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uint8_t received_data = (uint8_t) usart_data_receive(USART0);
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@ -129,25 +129,23 @@ void USART0_IRQHandler(void) {
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if (rx_index < RX_BUFFER_SIZE - 1) {
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rx_buffer[rx_index++] = received_data;
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}
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}
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// printf("len: %d, data: %c\r\n", rx_index, received_data);
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// 检查是否接收到换行符,表示指令结束
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// if (received_data == '\n') {
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if (calculate_crc(rx_buffer, rx_index - 1) == rx_buffer[rx_index - 1]) {
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// printf("CRC check success");
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// rx_buffer[rx_index] = '\0'; // 添加字符串结束符
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process_command(rx_buffer, rx_index); // 处理指令
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rx_index = 0; // 重置缓冲区索引
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// printf("%c", 0xff);
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} else {
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// printf("CRC check failed");
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// printf("%c%c%c%c", 0xB5, 0xF2, 0x00, 0xF2);
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// fflush(stdout);
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rx_index = 0; // 重置缓冲区索引
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return;
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}
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if (usart_interrupt_flag_get(USART0, USART_INT_FLAG_IDLE) != RESET) {
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usart_interrupt_flag_clear(USART0, USART_INT_FLAG_IDLE);
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// printf("%c%c%c%c%c%c", 0xB5, 0xF0, 0x02, 0x6F, 0x6B, 0xCC);
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// printf("%d", rx_index);
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// printf("%c", rx_buffer[0]);
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// uint8_t crc = calculate_crc(rx_buffer, rx_index - 2);
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// printf("%d", crc);
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// if (calculate_crc(rx_buffer, rx_index - 1) == rx_buffer[rx_index - 1])
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// // printf("CRC check success");
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// // rx_buffer[rx_index] = '\0'; // 添加字符串结束符
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process_command(rx_buffer, rx_index); // 处理指令
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// } else {
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// // printf("CRC check failed");
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// printf("%c%c%c%c", 0xB5, 0xF2, 0x00, 0xF2);
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// // fflush(stdout);
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// }
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}
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}
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34
src/i2c.c
34
src/i2c.c
@ -158,7 +158,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c bus is busy in WRITE BYTE!\n");
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#endif
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}
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@ -175,7 +175,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends start signal timeout in WRITE BYTE!\n");
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#endif
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}
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@ -192,7 +192,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master clears address flag timeout in WRITE BYTE!\n");
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#endif
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}
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@ -209,7 +209,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends data timeout in WRITE BYTE!\n");
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#endif
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}
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@ -225,7 +225,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends MSB data timeout in WRITE BYTE!\n");
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#endif
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}
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@ -242,7 +242,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends LSB data timeout in WRITE BYTE!\n");
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#endif
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}
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@ -257,7 +257,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends data timeout in WRITE BYTE!\n");
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#endif
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}
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@ -276,7 +276,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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} else {
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends stop signal timeout in WRITE BYTE!\n");
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#endif
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}
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@ -285,7 +285,7 @@ uint8_t i2c_write_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t data[2])
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state = I2C_START;
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i2c_timeout_flag = I2C_OK;
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timeout = 0;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends start signal in WRITE BYTE.\n");
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#endif
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break;
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@ -319,7 +319,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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// i2c_bus_reset();
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timeout = 0;
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state = I2C_START;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c bus is busy in READ!\n");
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#endif
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}
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@ -348,7 +348,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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timeout = 0;
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state = I2C_START;
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read_cycle = RESET;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends start signal timeout in READ!\n");
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#endif
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}
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@ -370,7 +370,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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timeout = 0;
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state = I2C_START;
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read_cycle = RESET;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master clears address flag timeout in READ!\n");
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#endif
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}
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@ -389,7 +389,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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timeout = 0;
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state = I2C_START;
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read_cycle = RESET;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master wait data buffer is empty timeout in READ!\n");
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#endif
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}
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@ -405,7 +405,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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timeout = 0;
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state = I2C_START;
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read_cycle = RESET;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends register address timeout in READ!\n");
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#endif
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}
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@ -432,7 +432,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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timeout = 0;
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state = I2C_START;
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read_cycle = 0;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends data timeout in READ!\n");
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#endif
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}
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@ -454,7 +454,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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timeout = 0;
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state = I2C_START;
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read_cycle = 0;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends stop signal timeout in READ!\n");
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#endif
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}
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@ -464,7 +464,7 @@ uint8_t i2c_read_16bits(uint8_t slave_addr, uint8_t reg_addr, uint8_t *data) {
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read_cycle = 0;
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i2c_timeout_flag = I2C_OK;
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timeout = 0;
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#ifdef DEBUG_VERBOES:
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#ifdef DEBUG_VERBOES
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printf("i2c master sends start signal in READ.\n");
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#endif
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break;
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@ -36,7 +36,7 @@ int main(void) {
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i2c_gpio_config();
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i2c_config();
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ldc1612_iic_get_sensor_infomation();
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// ldc1612_iic_get_sensor_infomation();
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/* configure LDC1612 */
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ldc1612_single_ch0_config();
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@ -46,6 +46,7 @@ int main(void) {
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g_temperature_uint32 = 0;
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g_eddy_current_value_uint32 = ldc1612_get_raw_channel_result(CHANNEL_0);
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g_temperature_uint32 = tmp112a_get_raw_channel_result();
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// printf("1");
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}
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}
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65
src/rs485.c
65
src/rs485.c
@ -33,52 +33,69 @@ void rs485_config(void) {
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usart_enable(RS485_PHY);
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nvic_irq_enable(USART0_IRQn, 0);
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usart_interrupt_enable(RS485_PHY, USART_INT_RBNE);
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usart_interrupt_enable(RS485_PHY, USART_INT_IDLE);
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nvic_irq_enable(USART0_IRQn, 0);
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}
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void process_command(uint8_t *cmd, size_t length) {
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char combined_str[3];
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if (cmd[0] == 0xD5) {
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if (cmd[1] == 0x03) {
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if (cmd[2] == 0x02) {
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sprintf(combined_str, "%c%c", cmd[3], cmd[4]);
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if (strcmp(combined_str, "M1") == 0) {
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// printf("%d", length);
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eddy_current_value_report();
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} else if (strcmp(combined_str, "M2") == 0) {
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tempture_value_report();
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} else {
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printf("%c%c%c%c%c%c%c", 0xB5, 0xF0, 0x03, 0x65, 0x72, 0x72, 0x3C);
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return;
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}
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} else {
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printf("%c%c%c%c", 0xB5, 0xF1, 0x00, 0xF1);
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}
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} else {
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printf("%c%c%c%c", 0xB5, 0xF5, 0x00, 0xF5);
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}
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// validate_package_crc(cmd, length);
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// if (calculate_crc(cmd, length - 1) != cmd[length - 1]) {
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// printf("%c%c%c%c", 0xB5, 0xF3, 0x00, 0xF3);
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// }
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// if (cmd[0] == 0xD5) {
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// if (cmd[1] == 0x03) {
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// if (cmd[2] == 0x02) {
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sprintf(combined_str, "%c%c", cmd[3], cmd[4]);
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if (strcmp(combined_str, "M1") == 0) {
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eddy_current_value_report();
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} else if (strcmp(combined_str, "M2") == 0) {
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tempture_value_report();
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} else {
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printf("%c%c%c%c", 0xB5, 0xF3, 0x00, 0xF3);
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printf("%c%c%c%c%c%c%c", 0xB5, 0xF0, 0x03, 0x65, 0x72, 0x72, 0x3C);
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// return;
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}
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// } else {
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// printf("%c%c%c%c", 0xB5, 0xF1, 0x00, 0xF1);
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// }
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// } else {
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// printf("%c%c%c%c", 0xB5, 0xF5, 0x00, 0xF5);
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// }
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// }
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}
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uint8_t calculate_crc(uint8_t data[], size_t data_length) {
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uint8_t crc = 0;
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for (size_t i = 1; i < data_length; i++) {
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for (size_t i = 1; i < data_length - 1; i++) {
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crc += data[i];
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}
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return (uint8_t)(crc & 0xFF);
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return (uint8_t) (crc & 0xFF);
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}
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validation_result_t validate_package_crc(uint8_t *data, size_t data_length) {
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uint8_t crc = calculate_crc(data, data_length - 2);
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if (crc == data[data_length]) {
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return VALIDATION_SUCCESS;
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} else {
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printf("%c%c%c%c", 0xB5, 0xF3, 0x01, 0xF3);
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return VALIDATION_CRC_ERROR;
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}
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}
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validation_result_t validate_package_header(uint8_t *data) {
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if (data[0] == 0xD5) {
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return VALIDATION_SUCCESS;
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} else {
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printf("%c%c%c%c", 0xB5, 0xF3, 0x00, 0xF3);
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printf("%c%c%c%c", 0xB5, 0xF3, 0x02, 0xF3);
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return VALIDATION_CRC_ERROR;
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}
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}
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@ -87,7 +104,7 @@ validation_result_t validate_package_type(uint8_t *data) {
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if (data[1] == 0x03) {
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return VALIDATION_SUCCESS;
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} else {
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printf("%c%c%c%c", 0xB5, 0xF3, 0x00, 0xF3);
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printf("%c%c%c%c", 0xB5, 0xF3, 0x03, 0xF3);
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return VALIDATION_CRC_ERROR;
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}
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}
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