Reformat modbus_tcp.c/h and fix some typos
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@@ -8,7 +8,8 @@
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#ifndef INC_MODBUS_H_
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#define INC_MODBUS_H_
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#define MODBUSPORT 502 //is the default
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#define MODBUSPORT 502 // 502 is the default
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#include <tcp.h>
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@@ -21,9 +22,8 @@
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/**
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* @fn void modbus_init
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* @brief Initiallises the modbus tcp
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* @brief Initializes the modbus tcp
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*/
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void modbus_init(void);
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#endif /* INC_MODBUS_H_ */
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@@ -11,38 +11,36 @@
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#include "log.h"
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// Defines
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#define MAX_REG 250
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#define MAX_REG 250
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#define EXTENSION_LENGHT 4
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#define TEXT_LENGHT 200
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#define MULTIPLE_REG 0x10
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#define REG_LENGTH 428
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#define START_DATA 28
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#define REG_01 14
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#define REG_02 16
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#define REG_03 18
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#define REG_04 20
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#define REG_05 22
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#define REG_06 24
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#define REG_07 26
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#define TEXT_LENGHT 200
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#define MULTIPLE_REG 0x10
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#define REG_LENGTH 428
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#define START_DATA 28
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#define REG_01 14
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#define REG_02 16
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#define REG_03 18
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#define REG_04 20
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#define REG_05 22
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#define REG_06 24
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#define REG_07 26
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// Global variables
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char registers[MAX_REG];
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//const char* TAG = "Modbus_TCP"; // Tag used in logs
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// const char* TAG = "Modbus_TCP"; // Tag used in logs
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// Functions
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static err_t modbus_incomming_data(void *arg, struct tcp_pcb *pcb, struct pbuf *p, err_t err);
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static err_t modbus_accept(void *arg, struct tcp_pcb *pcb, err_t err);
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static err_t modbus_incoming_data(void* arg, struct tcp_pcb* pcb, struct pbuf* p, err_t err);
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static err_t modbus_accept(void* arg, struct tcp_pcb* pcb, err_t err);
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/**
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* @fn static err_t modbus_incomming_data(void *arg, struct tcp_pcb *pcb, struct pbuf *p, err_t err)
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* @brief Function thats called when theris a new request on port 502.
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* It handles the incomming data from Qmodmaster
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* @fn static err_t modbus_incoming_data(void *arg, struct tcp_pcb *pcb, struct pbuf *p, err_t err)
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* @brief Function that's called when there is a new request on port 502.
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* It handles the incoming data from Qmodmaster
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*/
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static err_t modbus_incomming_data(void *arg, struct tcp_pcb *pcb, struct pbuf *p, err_t err){
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static err_t modbus_incoming_data(void* arg, struct tcp_pcb* pcb, struct pbuf* p, err_t err) {
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uint8_t counter;
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char *pc;
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char* pc;
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char text[TEXT_LENGHT];
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uint8_t background_red = 0;
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uint8_t background_green = 0;
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@@ -54,34 +52,35 @@ static err_t modbus_incomming_data(void *arg, struct tcp_pcb *pcb, struct pbuf *
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uint32_t result_background = 0;
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uint32_t result_txt = 0;
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memcpy(text,'_',TEXT_LENGHT); // Putting underscores in the whole array
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text[TEXT_LENGHT-1] = '\0';
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memcpy(text, '_', TEXT_LENGHT); // Putting underscores in the whole array
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text[TEXT_LENGHT - 1] = '\0';
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if (p != NULL){
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//LOG_INFO(TAG, "data not null\n");
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// here im going to procces the modbusdata
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tcp_recved( pcb, p->tot_len );
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if (p != NULL) {
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// LOG_INFO(TAG, "data not null\n");
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// Procces the modbusdata
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tcp_recved(pcb, p->tot_len);
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pc = (char*)p->payload;
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for(uint16_t i = 0; i < p->tot_len; i++) { // putting the bufer in the register array
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registers[i] = pc[i]; // getting the error "void value not ignored as it ought to be" on this line
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for (uint16_t i = 0; i < p->tot_len; i++) { // Putting the bufer in the register array
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registers[i] = pc[i]; // Getting the error "void value not ignored as it ought to be" on this line
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}
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if(registers[7] == MULTIPLE_REG){ // Check if it's a Modbus Write Multiple Registers request (0x10)
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//LOG_INFO(TAG, "in writing multiple register mode\n");
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background_red = (uint8_t)(registers[REG_01]); // 01
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background_green = (uint8_t)(registers[REG_02]); // 02
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background_blue = (uint8_t)(registers[REG_03]); // 03
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text_color_red = (uint8_t)(registers[REG_04]); // 04
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text_color_green = (uint8_t)(registers[REG_05]); // 05
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text_color_blue = (uint8_t)(registers[REG_06]); // 06
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nr_img = (uint8_t)(registers[REG_07]); // 07
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if (registers[7] == MULTIPLE_REG) { // Check if it's a Modbus Write Multiple Registers request (0x10)
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// LOG_INFO(TAG, "in writing multiple register mode\n");
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background_red = (uint8_t)(registers[REG_01]); // 01
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background_green = (uint8_t)(registers[REG_02]); // 02
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background_blue = (uint8_t)(registers[REG_03]); // 03
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text_color_red = (uint8_t)(registers[REG_04]); // 04
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text_color_green = (uint8_t)(registers[REG_05]); // 05
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text_color_blue = (uint8_t)(registers[REG_06]); // 06
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nr_img = (uint8_t)(registers[REG_07]); // 07
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//LOG_INFO(TAG, "%d %d %d %d %d %d %d ",background_red,background_green,background_blue,text_color_red,text_color_green,text_color_blue,nr_img);
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// LOG_INFO(TAG, "%d %d %d %d %d %d %d
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// ",background_red,background_green,background_blue,text_color_red,text_color_green,text_color_blue,nr_img);
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counter = 0;
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for(int i = START_DATA; i < REG_LENGTH; i++){
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if(i % 2 == 0){
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for (int i = START_DATA; i < REG_LENGTH; i++) {
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if (i % 2 == 0) {
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text[counter] = registers[i];
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counter++;
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}
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@@ -96,80 +95,69 @@ static err_t modbus_incomming_data(void *arg, struct tcp_pcb *pcb, struct pbuf *
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result_txt |= ((uint32_t)text_color_red) << 16;
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result_txt |= ((uint32_t)text_color_green) << 8;
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result_txt |= text_color_blue;
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// proccesing the image index
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size_t number_of_files = llfs_file_count(); // How many files that there are
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// Processing the image index
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size_t number_of_files = llfs_file_count(); // How many files that there are
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llfs_file_t file_list[number_of_files]; // reserving memory for the list
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llfs_file_t file_list[number_of_files]; // Reserving memory for the list
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number_of_files = llfs_file_list(file_list, number_of_files, NULL); // freeed memory filled with the list
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number_of_files = llfs_file_list(file_list, number_of_files, NULL); // Freed memory filled with the list
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if(number_of_files < nr_img){
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if (number_of_files < nr_img) {
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lcd_clear_text();
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lcd_clear_images();
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lcd_stop_all_gifs();
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lcd_display_text(text, 10, 10, result_txt, result_background, LCD_FONT24); //When no image
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lcd_display_text(text, 10, 10, result_txt, result_background, LCD_FONT24); // When no image
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lcd_display_text("FILE NOT IN FILESYSTEM", 10, 75, LCD_RED, LCD_BLACK, LCD_FONT24);
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}
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else{
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const char * ext = strrchr(file_list[nr_img - 1].name, '.');
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} else {
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const char* ext = strrchr(file_list[nr_img - 1].name, '.');
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if (ext == NULL) {
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// No valid extension found
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// No valid extension found
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}
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if (strcmp(ext,".gif") == 0) {
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if (strcmp(ext, ".gif") == 0) {
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lcd_clear_text();
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lcd_clear_images();
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lcd_stop_all_gifs();
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lcd_display_text(text, 10, 10, result_txt, result_background, LCD_FONT24);
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lcd_gif_t* gif = lcd_draw_gif_from_fs(file_list[nr_img - 1].name, 0, 75); //GIF on screen
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} else if (strcmp(ext,".bmp") == 0) {
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lcd_gif_t* gif = lcd_draw_gif_from_fs(file_list[nr_img - 1].name, 0, 75); // GIF on screen
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} else if (strcmp(ext, ".bmp") == 0) {
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lcd_clear_text();
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lcd_clear_images();
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lcd_stop_all_gifs();
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lcd_display_text(text, 10, 10, result_txt, result_background, LCD_FONT24);
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lcd_draw_img_from_fs(file_list[nr_img - 1].name, 0, 75); //BMP on screen
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lcd_draw_img_from_fs(file_list[nr_img - 1].name, 0, 75); // BMP on screen
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}
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}
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} else {
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// LOG_INFO(TAG, "not in writing multiple register mode!!!\n");
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}
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else{
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//LOG_INFO(TAG, "not in writing multiple register mode!!!\n");
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}
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} else if (err == ERR_OK){
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tcp_close(pcb); // when everithing was ok close the tcpconnection
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} else if (err == ERR_OK) {
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tcp_close(pcb); // When everything was ok close the TCP connection
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}
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return ERR_OK;
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}
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/**
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* @fn static err_t modbus_accept(void *arg, struct tcp_pcb *pcb, err_t err)
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* @brief Sets the function thats being called when theirs incoming data
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* @brief Sets the function that's being called when theirs incoming data
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*/
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static err_t modbus_accept(void *arg, struct tcp_pcb *pcb, err_t err)
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{
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LWIP_UNUSED_ARG(arg); // Eliminates compiler warning about unused arguments
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LWIP_UNUSED_ARG(err); // Eliminates compiler warning about unused arguments
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tcp_setprio(pcb, TCP_PRIO_MIN); // Sets the priority of a connection.
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tcp_recv(pcb, modbus_incomming_data); // sets which function is being called when new data arives
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static err_t modbus_accept(void* arg, struct tcp_pcb* pcb, err_t err) {
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LWIP_UNUSED_ARG(arg); // Eliminates compiler warning about unused arguments
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LWIP_UNUSED_ARG(err); // Eliminates compiler warning about unused arguments
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tcp_setprio(pcb, TCP_PRIO_MIN); // Sets the priority of a connection.
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tcp_recv(pcb, modbus_incoming_data); // sets which function is being called when new data arrives
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return ERR_OK;
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}
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/**
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* @fn void modbus_init
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* @brief Initiallises the modbus tcp
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* @brief Initializes the modbus tcp
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*/
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void modbus_init(void) {
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struct tcp_pcb* modbus_pcb;
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modbus_pcb = tcp_new(); // Creating a new tcp pcb
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tcp_bind(modbus_pcb, IP_ADDR_ANY, MODBUSPORT); // Bind the modbus_pcb to port 502
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void modbus_init(void)
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{
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struct tcp_pcb *modbus_pcb;
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modbus_pcb = tcp_new(); // creating a new tcp pcb
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tcp_bind(modbus_pcb, IP_ADDR_ANY, MODBUSPORT); // bind the modbus_pcb to port 502
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modbus_pcb = tcp_listen(modbus_pcb); // listen
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tcp_accept(modbus_pcb, modbus_accept); // set callback function
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modbus_pcb = tcp_listen(modbus_pcb); // Listen
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tcp_accept(modbus_pcb, modbus_accept); // Set callback function
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}
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