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https://github.com/digistump/DigistumpArduino.git
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Initial import of support files for all Digistump boards - Digispark, Pro, DigiX - including libraries, examples, tools, and other support files for the Arduino IDE
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/*
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Udp NTP Client
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Uses both Due_RTC library and DigiFi to connect to NTP server
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get current time and set RTC to that time.
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This code is in the public domain.
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*/
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#include <rtc_clock.h>
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#include <DigiFi.h>
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RTC_clock rtc_clock(XTAL);
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char* daynames[]={"Mon", "Tue", "Wed", "Thu", "Fri", "Sat", "Sun"};
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int hh,mm,ss,dow,dd,mon,yyyy;
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char timeServer[] = "time.nist.gov"; // time.nist.gov NTP server
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const int NTP_PACKET_SIZE = 48; // NTP time stamp is in the first 48 bytes of the message
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uint8_t packetBuffer[NTP_PACKET_SIZE]; //buffer to hold incoming and outgoing packets
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DigiFi client;
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void setup()
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{
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// Open serial communications and wait for port to open:
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Serial.begin(9600);
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//DigiX trick - since we are on serial over USB wait for character to be entered in serial terminal
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while(!Serial.available()){
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Serial.println("Enter any key to begin");
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delay(1000);
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}
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rtc_clock.init();
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// start the connection:
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client.begin(9600);
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//client.setDebug(true);
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//wait for module to be ready
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while (client.ready() != 1)
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{
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Serial.println("Connecting to network...");
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delay(1000);
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}
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client.setMode(UDP); //must come before connect
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rtc_clock.set_time(__TIME__);
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Serial.println("Setting up UDP connection");
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client.connect(timeServer,123);
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unsigned long ntpUnixTime = 0;
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while(ntpUnixTime == 0){
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sendNTPpacket(); // send an NTP packet to a time server
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delay(1000);
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ntpUnixTime = getNTPpacket();
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}
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Serial.print("Got NTP Timestamp: ");
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Serial.println(ntpUnixTime);
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Serial.println("Setting RTC Clock");
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rtc_clock.set_timestamp(ntpUnixTime);
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}
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void loop()
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{
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Serial.print("Time: ");
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rtc_clock.get_time(&hh,&mm,&ss);
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rtc_clock.get_date(&dow,&dd,&mon,&yyyy);
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digitprint(hh, 2);
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Serial.print(":");
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digitprint(mm, 2);
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Serial.print(":");
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digitprint(ss, 2);
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Serial.println("");
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Serial.print("Date: ");
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Serial.print(daynames[dow-1]);
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Serial.print(" ");
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digitprint(dd, 2);
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Serial.print(".");
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digitprint(mon, 2);
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Serial.print(".");
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Serial.println(yyyy);
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Serial.println("");
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delay(1000);
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}
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// send an NTP request to the time server at the given address
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unsigned long sendNTPpacket()
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{
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// set all bytes in the buffer to 0
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memset(packetBuffer, 0, NTP_PACKET_SIZE);
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// Initialize values needed to form NTP request
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// (see URL above for details on the packets)
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packetBuffer[0] = 0b11100011; // LI, Version, Mode
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packetBuffer[1] = 0; // Stratum, or type of clock
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packetBuffer[2] = 6; // Polling Interval
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packetBuffer[3] = 0xEC; // Peer Clock Precision
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// 8 bytes of zero for Root Delay & Root Dispersion
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packetBuffer[12] = 49;
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packetBuffer[13] = 0x4E;
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packetBuffer[14] = 49;
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packetBuffer[15] = 52;
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// all NTP fields have been given values, now
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// you can send a packet requesting a timestamp:
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client.write(packetBuffer, NTP_PACKET_SIZE);
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}
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unsigned long getNTPpacket(){
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if ( client.available() ) {
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// We've received a packet, read the data from it
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client.read(packetBuffer, NTP_PACKET_SIZE); // read the packet into the buffer
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//the timestamp starts at byte 40 of the received packet and is four bytes,
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// or two words, long. First, esxtract the two words:
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unsigned long highWord = word(packetBuffer[40], packetBuffer[41]);
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unsigned long lowWord = word(packetBuffer[42], packetBuffer[43]);
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// combine the four bytes (two words) into a long integer
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// this is NTP time (seconds since Jan 1 1900):
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unsigned long secsSince1900 = highWord << 16 | lowWord;
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//Serial.print("Seconds since Jan 1 1900 = " );
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//Serial.println(secsSince1900);
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// now convert NTP time into everyday time:
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//Serial.print("Unix time = ");
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// Unix time starts on Jan 1 1970. In seconds, that's 2208988800:
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const unsigned long seventyYears = 2208988800UL;
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// subtract seventy years:
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unsigned long epoch = secsSince1900 - seventyYears;
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// print Unix time:
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return epoch;
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}
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else{
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return 0;
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}
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}
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void digitprint(int value, int lenght){
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for (int i = 0; i < (lenght - numdigits(value)); i++){
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Serial.print("0");
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}
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Serial.print(value);
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}
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int numdigits(int i){
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int digits;
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if (i < 10)
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digits = 1;
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else
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digits = (int)(log10((double)i)) + 1;
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return digits;
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}
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