Update Send/Receive examples
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@ -1,14 +1,24 @@
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// Sample RFM69 receiver/gateway sketch, with ACK and optional encryption
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// Passes through any wireless received messages to the serial port & responds to ACKs
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// It also looks for an onboard FLASH chip, if present
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// Library and code by Felix Rusu - felix@lowpowerlab.com
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// Get the RFM69 and SPIFlash library at: https://github.com/LowPowerLab/
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#include <RFM69.h>
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#include <SPI.h>
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#include <SPIFlash.h>
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#define NODEID 1
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#define NETWORKID 100
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#define FREQUENCY RF69_915MHZ //Match this with the version of your Moteino! (others: RF69_433MHZ, RF69_868MHZ)
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#define KEY "thisIsEncryptKey" //has to be same 16 characters/bytes on all nodes, not more not less!
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#define LED 9
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#define SERIAL_BAUD 115200
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#define ACK_TIME 30 // # of ms to wait for an ack
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#define NODEID 1 //unique for each node on same network
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#define NETWORKID 100 //the same on all nodes that talk to each other
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//Match frequency to the hardware version of the radio on your Moteino (uncomment one):
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#define FREQUENCY RF69_433MHZ
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//#define FREQUENCY RF69_868MHZ
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//#define FREQUENCY RF69_915MHZ
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#define ENCRYPTKEY "sampleEncryptKey" //exactly the same 16 characters/bytes on all nodes!
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//#define IS_RFM69HW //uncomment only for RFM69HW! Leave out if you have RFM69W!
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#define ACK_TIME 30 // max # of ms to wait for an ack
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#define LED 9 // Moteinos have LEDs on D9
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#define SERIAL_BAUD 115200
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RFM69 radio;
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SPIFlash flash(8, 0xEF30); //EF40 for 16mbit windbond chip
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@ -18,8 +28,10 @@ void setup() {
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Serial.begin(SERIAL_BAUD);
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delay(10);
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radio.initialize(FREQUENCY,NODEID,NETWORKID);
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//radio.setHighPower(); //must uncomment for RFM69HW!
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radio.encrypt(KEY);
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#ifdef IS_RFM69HW
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radio.setHighPower(); //uncomment only for RFM69HW!
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#endif
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radio.encrypt(ENCRYPTKEY);
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radio.promiscuous(promiscuousMode);
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char buff[50];
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sprintf(buff, "\nListening at %d Mhz...", FREQUENCY==RF69_433MHZ ? 433 : FREQUENCY==RF69_868MHZ ? 868 : 915);
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@ -39,7 +51,7 @@ void loop() {
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if (input == 'r') //d=dump all register values
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radio.readAllRegs();
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if (input == 'E') //E=enable encryption
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radio.encrypt(KEY);
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radio.encrypt(ENCRYPTKEY);
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if (input == 'e') //e=disable encryption
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radio.encrypt(null);
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if (input == 'p')
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@ -74,7 +86,7 @@ void loop() {
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word jedecid = flash.readDeviceId();
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Serial.println(jedecid, HEX);
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}
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if (input == 't')
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if (input == 't')
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{
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byte temperature = radio.readTemperature(-1); // -1 = user cal factor, adjust for correct ambient
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byte fTemp = 1.8 * temperature + 32; // 9/5=1.8
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@ -129,4 +141,4 @@ void Blink(byte PIN, int DELAY_MS)
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digitalWrite(PIN,HIGH);
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delay(DELAY_MS);
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digitalWrite(PIN,LOW);
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}
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}
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@ -1,18 +1,29 @@
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// Sample RFM69 sender/node sketch, with ACK and optional encryption
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// Sends periodic messages of increasing length to gateway (id=1)
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// It also looks for an onboard FLASH chip, if present
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// Library and code by Felix Rusu - felix@lowpowerlab.com
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// Get the RFM69 and SPIFlash library at: https://github.com/LowPowerLab/
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#include <RFM69.h>
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#include <SPI.h>
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#include <SPIFlash.h>
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#define NODEID 99
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#define NETWORKID 100
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#define GATEWAYID 1
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#define FREQUENCY RF69_915MHZ //Match this with the version of your Moteino! (others: RF69_433MHZ, RF69_868MHZ)
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#define KEY "thisIsEncryptKey" //has to be same 16 characters/bytes on all nodes, not more not less!
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#define LED 9
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#define SERIAL_BAUD 115200
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#define ACK_TIME 30 // # of ms to wait for an ack
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#define NODEID 2 //unique for each node on same network
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#define NETWORKID 100 //the same on all nodes that talk to each other
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#define GATEWAYID 1
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//Match frequency to the hardware version of the radio on your Moteino (uncomment one):
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#define FREQUENCY RF69_433MHZ
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//#define FREQUENCY RF69_868MHZ
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//#define FREQUENCY RF69_915MHZ
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#define ENCRYPTKEY "sampleEncryptKey" //exactly the same 16 characters/bytes on all nodes!
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//#define IS_RFM69HW //uncomment only for RFM69HW! Leave out if you have RFM69W!
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#define ACK_TIME 30 // max # of ms to wait for an ack
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#define LED 9 // Moteinos have LEDs on D9
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#define SERIAL_BAUD 115200
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int TRANSMITPERIOD = 300; //transmit a packet to gateway so often (in ms)
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char payload[] = "123 ABCDEFGHIJKLMNOPQRSTUVWXYZ";
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char buff[20];
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byte sendSize=0;
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boolean requestACK = false;
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SPIFlash flash(8, 0xEF30); //EF40 for 16mbit windbond chip
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@ -21,11 +32,14 @@ RFM69 radio;
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void setup() {
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Serial.begin(SERIAL_BAUD);
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radio.initialize(FREQUENCY,NODEID,NETWORKID);
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//radio.setHighPower(); //must uncomment for RFM69HW!
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radio.encrypt(KEY);
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#ifdef IS_RFM69HW
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radio.setHighPower(); //uncomment only for RFM69HW!
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#endif
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radio.encrypt(ENCRYPTKEY);
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char buff[50];
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sprintf(buff, "\nTransmitting at %d Mhz...", FREQUENCY==RF69_433MHZ ? 433 : FREQUENCY==RF69_868MHZ ? 868 : 915);
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Serial.println(buff);
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if (flash.initialize())
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Serial.println("SPI Flash Init OK!");
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else
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@ -99,6 +113,15 @@ void loop() {
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Serial.println();
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}
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//send FLASH id
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if(sendSize==0)
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{
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sprintf(buff, "FLASH_MEM_ID:0x%X", flash.readDeviceId());
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byte buffLen=strlen(buff);
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radio.sendWithRetry(GATEWAYID, buff, buffLen);
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delay(TRANSMITPERIOD);
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}
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int currPeriod = millis()/TRANSMITPERIOD;
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if (currPeriod != lastPeriod)
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{
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@ -113,17 +136,6 @@ void loop() {
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Serial.print(" ok!");
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else Serial.print(" nothing...");
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// //manual ACK handling
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// requestACK = ((sendSize % 3) == 0); //request ACK every 3rd xmission
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// radio.send(GATEWAYID, payload, sendSize, requestACK);
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// if (requestACK)
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// {
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// Serial.print(" - waiting for ACK...");
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// if (waitForAck(GATEWAYID)) Serial.print("ok!");
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// else Serial.print("nothing...");
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// }
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sendSize = (sendSize + 1) % 31;
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Serial.println();
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Blink(LED,3);
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@ -136,14 +148,4 @@ void Blink(byte PIN, int DELAY_MS)
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digitalWrite(PIN,HIGH);
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delay(DELAY_MS);
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digitalWrite(PIN,LOW);
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}
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//// wait a few milliseconds for proper ACK to me, return true if indeed received
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//static bool waitForAck(byte theNodeID) {
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// long now = millis();
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// while (millis() - now <= ACK_TIME) {
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// if (radio.ACKReceived(theNodeID))
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// return true;
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// }
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// return false;
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//}
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}
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