added sdcard support
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1bc26701c1
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bdfc6ea7ad
@ -1,85 +1,77 @@
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#include <SPI.h>
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#include "Ethernet.h"
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#include <Ethernet.h>
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#include <SD.h>
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#define Serial SerialUSB
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// Enter a MAC address and IP address for your controller below.
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// The IP address will be dependent on your local network:
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byte mac[] = {
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0xDE, 0xAD, 0xBE, 0xEF, 0xFE, 0xED
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};
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IPAddress ip(10, 0, 0, 49);
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// MAC address from Ethernet shield sticker under board
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byte mac[] = { 0xDE, 0xAD, 0xBE, 0xEF, 0xFE, 0xED };
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IPAddress ip(10, 0, 0, 20); // IP address, may need to change depending on network
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EthernetServer server(80); // create a server at port 80
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// Initialize the Ethernet server library
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// with the IP address and port you want to use
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// (port 80 is default for HTTP):
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EthernetServer server(80);
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File webFile;
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void setup() {
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// Open serial communications and wait for port to open:
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Serial.begin(9600);
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while (!Serial) {
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; // wait for serial port to connect. Needed for native USB port only
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}
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// start the Ethernet connection and the server:
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Ethernet.begin(mac, ip);
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server.begin();
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Serial.print("server is at ");
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Serial.println(Ethernet.localIP());
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}
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void loop() {
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// listen for incoming clients
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EthernetClient client = server.available();
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if (client) {
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Serial.println("new client");
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// an http request ends with a blank line
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boolean currentLineIsBlank = true;
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while (client.connected()) {
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if (client.available()) {
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char c = client.read();
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Serial.write(c);
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// if you've gotten to the end of the line (received a newline
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// character) and the line is blank, the http request has ended,
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// so you can send a reply
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if (c == '\n' && currentLineIsBlank) {
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// send a standard http response header
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client.println("HTTP/1.1 200 OK");
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client.println("Content-Type: text/html");
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client.println("Connection: close"); // the connection will be closed after completion of the response
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client.println("Refresh: 5"); // refresh the page automatically every 5 sec
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client.println();
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client.println("<!DOCTYPE HTML>");
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client.println("<html>");
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// output the value of each analog input pin
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for (int analogChannel = 0; analogChannel < 6; analogChannel++) {
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int sensorReading = analogRead(analogChannel);
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client.print("analog input ");
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client.print(analogChannel);
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client.print(" is ");
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client.print(sensorReading);
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client.println("<br />");
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}
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client.println("</html>");
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break;
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}
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if (c == '\n') {
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// you're starting a new line
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currentLineIsBlank = true;
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} else if (c != '\r') {
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// you've gotten a character on the current line
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currentLineIsBlank = false;
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}
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}
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void setup()
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{
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Ethernet.begin(mac); // initialize Ethernet device
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server.begin(); // start to listen for clients
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Serial.begin(9600); // for debugging
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// initialize SD card
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Serial.println("Initializing SD card...");
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if (!SD.begin(4)) {
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Serial.println("ERROR - SD card initialization failed!");
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return; // init failed
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}
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// give the web browser time to receive the data
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delay(1);
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// close the connection:
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client.stop();
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Serial.println("client disconnected");
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}
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Serial.println("SUCCESS - SD card initialized.");
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// check for index.htm file
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if (!SD.exists("index.htm")) {
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Serial.println("ERROR - Can't find index.htm file!");
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return; // can't find index file
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}
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Serial.println("SUCCESS - Found index.htm file.");
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}
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void loop()
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{
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EthernetClient client = server.available(); // try to get client
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if (client) { // got client?
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boolean currentLineIsBlank = true;
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while (client.connected()) {
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if (client.available()) { // client data available to read
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char c = client.read(); // read 1 byte (character) from client
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// last line of client request is blank and ends with \n
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// respond to client only after last line received
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if (c == '\n' && currentLineIsBlank) {
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// send a standard http response header
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client.println("HTTP/1.1 200 OK");
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client.println("Content-Type: text/html");
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client.println("Connection: close");
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client.println();
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// send web page
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webFile = SD.open("index.htm"); // open web page file
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if (webFile) {
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while(webFile.available()) {
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client.write(webFile.read()); // send web page to client
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}
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webFile.close();
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}
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break;
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}
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// every line of text received from the client ends with \r\n
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if (c == '\n') {
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// last character on line of received text
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// starting new line with next character read
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currentLineIsBlank = true;
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}
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else if (c != '\r') {
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// a text character was received from client
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currentLineIsBlank = false;
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}
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} // end if (client.available())
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} // end while (client.connected())
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delay(1); // give the web browser time to receive the data
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client.stop(); // close the connection
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} // end if (client)
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}
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@ -16,8 +16,9 @@ byte mac[] = {0xDE, 0xAD, 0xBE, 0xEF, 0xFE, 0xED}; // set the mac addre
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EthernetServer server(80); // initialize the EthernetServer library, using port 80 (default fot HTTP)
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typedef struct { // frame structure
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uint16_t ID = 1025; // ID
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typedef struct { // frame structure
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uint8_t ID = 0; // station's ID
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uint8_t IDp = 0; // gateway's ID
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uint16_t TS = 0; // TimeStamp
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uint16_t DT = 0; // Data Type
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uint16_t D1 = 0; // DATA 1
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@ -27,25 +28,23 @@ typedef struct { // frame structure
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trame message; // creation of the frame message
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uint16_t ID;
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void setup(){
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Serial.begin(9600);
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while (!Serial); // wait for serial to initialize
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Serial.print("Passerelle LoRa\n"); // display on serial the name of the device
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if( !LoRa.begin(868E6) ){
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if( !LoRa.begin(868E6) ){ // initialise LoRa and display a message if an error occur
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Serial.print("Echec de l'initialisation LoRa !\n");
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while(true);} // initialize LoRa shield LoRa at 868 MHz
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while(true);}
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//Ethernet.begin(mac, ip); // initialize Ethernet shield using the set mac adress and set IP
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Ethernet.begin(mac); // initialize Ethernet shield uding the set mac and DHCP for the IP
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Server.begin(); // initialize WebServer part of the librairy
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server.begin(); // initialize WebServer part of the librairy
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Serial.print("server is at "); // display on serial the IP you can find the webpage
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Serial.println(Ethernet.localIP());
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}
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//void SerialPrintElapsedTime( boolean espaceFinal=true ){ // to display the elapsed time
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//void SerialPrintElapsedTime( boolean espaceFinal=true ){ // to display the elapsed time
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// unsigned long h,m,s = millis()/1000;
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// m=s/60;
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// h=m/60;
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@ -56,52 +55,43 @@ void setup(){
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void loop() {
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// LoRa receiver
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String strID = String(message.ID);//0x00
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String strTS = String(message.TS);//0x0000
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String strDT = String(message.DT);//0x0000
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String strD1 = String(message.D1);//0x0000
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String strD2 = String(message.D3);//0x0000
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String strD3 = String(message.D3);//0x0000
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int packetSize = LoRa.parsePacket();
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if (packetSize > 0)
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{
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SerialUSB.println("Nouveau paquet");
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message.ID = LoRa.read();
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message.IDp = LoRa.read();
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message.IDp = 0x07;
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message.TS = ((uint16_t)LoRa.read() | (LoRa.read() << 8));
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message.DT = ((uint16_t)LoRa.read() | LoRa.read() << 8);
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message.D1 = ((uint16_t)LoRa.read() | LoRa.read() << 8);
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message.D2 = ((uint16_t)LoRa.read() | LoRa.read() << 8);
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message.D3 = ((uint16_t)LoRa.read() | LoRa.read() << 8);
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SerialUSB.println(message.ID, HEX);
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SerialUSB.println(message.IDp, HEX);
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SerialUSB.println(message.TS, HEX);
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SerialUSB.println(message.DT, HEX);
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SerialUSB.println(message.D1, HEX);
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SerialUSB.println(message.D2, HEX);
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SerialUSB.println(message.D3, HEX);
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delay(100);
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}
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static byte tampon[LENMAX]={0}; // if the module receive a frame, it willnot be null
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int longueurTrame;
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longueurTrame=LoRa.parsePacket(sizeof(message));
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if( longueurTrame > 0 ){
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if( longueurTrame>LENMAX ){ // copy of the frame to cache (LENMAX) and verify if the frame is to big
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Serial.print("Trame reçue trop grande : ");
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Serial.println(longueurTrame);
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longueurTrame=LENMAX; // cut the frame to LENMAX size
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}
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for( int i=0; i<longueurTrame; i++ ){
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tampon[i]=(byte)LoRa.read();
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}
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// SerialPrintElapsedTime(); // diplay the time the frame arrived
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Serial.print("0x");
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for( int i=0; i<longueurTrame; i++ ){ // display the frame in hexadecimal
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if( tampon[i] < 0x0F ) Serial.print("0");
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Serial.print( tampon[i], HEX );
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}
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Serial.print( " " );
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for( int i=0; i<longueurTrame; i++ ){
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if( (tampon[i] < 0x20)||(tampon[i] > 0x7E) ){
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Serial.print( "."); // this character isn't printable (displayable)
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}
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else{
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Serial.print( (char)tampon[i] ); // display the frame in ASCII
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Serial.println("\nTaille du pacquet reçu en octets: "+LENMAX);
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Serial.println("ID Passerelle et station reçus : "+strID);
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Serial.println("Timestamp reçue : "+strTS);
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Serial.println("Type de données reçus : "+strDT);
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Serial.println("Champ de données 1 reçus : "+strD1);
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Serial.println("Champ de données 2 reçus : "+strD2);
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Serial.println("Champ de données 3 reçus : "+strD3);
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}
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}
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Serial.print( "\n" );
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} // end of if LoRa.parsePacket
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delay(10);
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// post to server
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String postdata="&ID="+message.ID+"&IDp="+message.IDp+"&TS="+message.TS+"&DT="+message.DT+"&D1="+message.D1+"&D2="+message.D2+"&D3="+message.D3;
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bool connected = client.connect(server, 80);
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if (connected){
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client.println("POST /formulaireCollecte.html HTTP/1.1");
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client.println("Host: btslimayrac.ovh");
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client.println("Cache-Control: no-cache");
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client.println("Content-Type: application/x-www-form-urlencoded");
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client.print("Content-Length: ");
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client.println(postData.length());
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client.println(postData);
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}
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// WebServer
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EthernetClient client = server.available(); // WebServer :listen for incoming clients
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if (client) {
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