Switched to server mode instead of client mode
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97d1534066
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84e9dd1a03
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@ -45,8 +45,8 @@ byte DS1307::bcdToDec(byte val)
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void DS1307::stopDs1307()
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{
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Wire.beginTransmission(DS1307_I2C_ADDRESS);
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Wire.send(0);
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Wire.send(0x80);
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Wire.write(0);
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Wire.write(0x80);
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Wire.endTransmission();
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}
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*/
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@ -65,15 +65,15 @@ void DS1307::setDateDs1307(byte second, // 0-59
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byte year) // 0-99
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{
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Wire.beginTransmission(DS1307_I2C_ADDRESS);
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Wire.send(0);
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Wire.send(decToBcd(second)); // 0 to bit 7 starts the clock
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Wire.send(decToBcd(minute));
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Wire.send(decToBcd(hour)); // If you want 12 hour am/pm you need to set
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Wire.write(0);
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Wire.write(decToBcd(second)); // 0 to bit 7 starts the clock
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Wire.write(decToBcd(minute));
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Wire.write(decToBcd(hour)); // If you want 12 hour am/pm you need to set
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// bit 6 (also need to change readDateDs1307)
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Wire.send(decToBcd(dayOfWeek));
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Wire.send(decToBcd(dayOfMonth));
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Wire.send(decToBcd(month));
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Wire.send(decToBcd(year));
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Wire.write(decToBcd(dayOfWeek));
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Wire.write(decToBcd(dayOfMonth));
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Wire.write(decToBcd(month));
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Wire.write(decToBcd(year));
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Wire.endTransmission();
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}
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@ -88,19 +88,19 @@ void DS1307::getDateDs1307(byte *second,
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{
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// Reset the register pointer
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Wire.beginTransmission(DS1307_I2C_ADDRESS);
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Wire.send(0);
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Wire.write(0);
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Wire.endTransmission();
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Wire.requestFrom(DS1307_I2C_ADDRESS, 7);
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// A few of these need masks because certain bits are control bits
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*second = bcdToDec(Wire.receive() & 0x7f);
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*minute = bcdToDec(Wire.receive());
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*hour = bcdToDec(Wire.receive() & 0x3f); // Need to change this if 12 hour am/pm
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*dayOfWeek = bcdToDec(Wire.receive());
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*dayOfMonth = bcdToDec(Wire.receive());
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*month = bcdToDec(Wire.receive());
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*year = bcdToDec(Wire.receive());
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*second = bcdToDec(Wire.read() & 0x7f);
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*minute = bcdToDec(Wire.read());
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*hour = bcdToDec(Wire.read() & 0x3f); // Need to change this if 12 hour am/pm
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*dayOfWeek = bcdToDec(Wire.read());
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*dayOfMonth = bcdToDec(Wire.read());
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*month = bcdToDec(Wire.read());
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*year = bcdToDec(Wire.read());
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}
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/*
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134
Open_Access_Control_Ethernet.pde → Open_Access_Control_Ethernet.ino
Executable file → Normal file
134
Open_Access_Control_Ethernet.pde → Open_Access_Control_Ethernet.ino
Executable file → Normal file
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@ -60,8 +60,6 @@
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#include <Ethernet.h> // Ethernet stuff
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#include <SPI.h>
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#include <Server.h>
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#include <Client.h>
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#include <DS1307.h> // DS1307 RTC Clock/Date/Time chip library
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@ -160,17 +158,13 @@ boolean privmodeEnabled = false; // Switch for ena
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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[] = { 0xAB, 0xBA, 0xDA, 0xDE, 0xFE, 0xED };
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byte ip[] = { 192,168,1,199 };
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byte server[] = { 192,168,1,200 }; // webserver for logging, access control, etc
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byte mac[] = { 0xDE, 0xAD, 0xBE, 0xEF, 0xFE, 0xED };
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IPAddress ip(192,168,1,177);
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// Initialize the Ethernet client library
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// with the IP address and port of the server
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// that you want to connect to (port 80 is default for HTTP):
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Client client(server, 80);
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// strings for storing results from web server
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String httpresponse = "";
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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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/* Create an instance of the various C++ libraries we are using.
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*/
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@ -213,6 +207,9 @@ const prog_uchar statusMessage6[] PROGMEM = {"Door2UnlockedState_1_Lock
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void setup(){ // Runs once at Arduino boot-up
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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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Wire.begin(); // start Wire library as I2C-Bus Master
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@ -252,10 +249,6 @@ void setup(){ // Runs once at Arduino boot-up
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Serial.begin(57600); // Set up Serial output at 8,N,1,57600bps
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// start the Ethernet connection:
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Ethernet.begin(mac, ip);
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// wait a bit
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delay(10000);
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logReboot();
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chirpAlarm(1); // Chirp the alarm to show system ready.
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@ -266,12 +259,75 @@ void setup(){ // Runs once at Arduino boot-up
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}
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void loop() // Main branch, runs over and over again
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{
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// if the server's disconnected, stop the client:
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if (!client.connected()) {
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client.stop();
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}
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{
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// listen for incoming clients
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EthernetClient client = server.available();
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String readString = String(100); //string for fetching data from address
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if (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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//read char by char HTTP request
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if (readString.length() < 100) {
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//store characters to string
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readString += c;
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}
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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();
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if(readString.indexOf('?') > 0) {
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client.println("hello!");
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}
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// output status
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client.println("<pre>");
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client.print("Alarm armed:");
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client.println(alarmArmed,DEC);
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client.print("Alarm activated:");
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client.println(alarmActivated,DEC);
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client.print("Alarm 3:");
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client.println(pollAlarm(3),DEC);
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client.print("Alarm 2:");
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client.println(pollAlarm(2),DEC);
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client.print("Door 1 locked:");
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client.println(door1Locked);
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client.print("Door 2 locked:");
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client.println(door2Locked);
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client.println("</pre>");
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client.println("<a href=");
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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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}
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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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}
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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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}
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readCommand(); // Check for commands entered at serial console
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@ -945,18 +1001,18 @@ void PROGMEMprintln(const prog_uchar str[]) // Function to retrieve logging s
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char c;
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if(!str) return;
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if(client.connect()) {
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client.print("GET /~access/log/?device=door&data=");
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//if(client.connect(server, 80) > 0) {
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// client.print("GET /~access/log/?device=door&data=");
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while((c = pgm_read_byte(str++))){
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Serial.print(c,BYTE);
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client.print(c,BYTE);
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Serial.write(c);
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// client.write(c);
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}
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client.println(" HTTP/1.0");
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client.println();
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client.stop();
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//client.println(" HTTP/1.0");
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//client.println();
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//client.stop();
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// reset values coming from http
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httpresponse = "";
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}
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// httpresponse = "";
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//}
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Serial.println();
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}
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@ -965,18 +1021,18 @@ void PROGMEMprint(const prog_uchar str[]) // Function to retrieve logging str
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char c;
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if(!str) return;
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if(client.connect()) {
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client.print("GET /~access/log/?device=door&data=");
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//if(client.connect(server, 80) > 0) {
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// client.print("GET /~access/log/?device=door&data=");
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while((c = pgm_read_byte(str++))){
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Serial.print(c,BYTE);
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client.print(c,BYTE);
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Serial.write(c);
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// client.write(c);
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}
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client.println(" HTTP/1.0");
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client.println();
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client.stop();
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// client.println(" HTTP/1.0");
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// client.println();
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// client.stop();
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// reset values coming from http
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httpresponse = "";
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}
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// httpresponse = "";
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//}
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}
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