190 lines
4.0 KiB
C++
190 lines
4.0 KiB
C++
//Bedlampje Maud
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// Enable debug prints to serial monitor
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//#define MY_DEBUG
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// Enable and select radio type attached
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#define MY_RADIO_NRF24
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//#define MY_RADIO_RFM69
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// Enable repeater functionality for this node
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//#define MY_REPEATER_FEATURE
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// Define a static node address, remove if you want auto address assignment
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#define MY_NODE_ID 18
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#define MY_RF24_CE_PIN 10
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#define MY_RF24_CS_PIN 9
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// Set channel to 13
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//#define MY_RF24_CHANNEL 13
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#include <SPI.h>
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#include <MySensors.h>
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#include <Bounce2.h>
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#define SLEEP_MODE false // Watt-value can only be reported when sleep mode is false.
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//Drukknoppen
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#define s1_PIN 4 // I/O pin switch 1
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//Uitgangen
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#define l1_PIN 6 // I/O pin lamp Bedlampje
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#define l1_CHILD_ID 11 // Id Bedlampje
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#define l1_timed_CHILD_ID 19 // ID timed Bedlampje
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unsigned long currentTime;
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//unsigned long l1_timed_ON = 120000;
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unsigned long l1_timed_ON = 2700000; //45 minuten ON
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//unsigned long l1_timed_ON = 180000; //3 minuten ON
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unsigned long l1_start_ON;
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//Declare switch
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Bounce s1_debouncer = Bounce();
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int s1_oldValue=HIGH;
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int s1_value;
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MyMessage l1_msg(l1_CHILD_ID,V_LIGHT);
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MyMessage timed_l1_msg(l1_timed_CHILD_ID, V_LIGHT);
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//MyMessage bed_msg(kast_CHILD_ID,V_LIGHT);
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bool lamp1 = false;
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bool l1_timed = true;
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unsigned long s_delta;
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bool val_init = false;
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void setup()
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{
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// Setup switch 1
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pinMode(s1_PIN,INPUT);
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// Activate internal pull-up
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digitalWrite(s1_PIN,HIGH);
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// After setting up the button, setup debouncer
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s1_debouncer.attach(s1_PIN);
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s1_debouncer.interval(30);
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// Setup lamp 1
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pinMode(l1_PIN,OUTPUT);
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digitalWrite(l1_PIN,LOW);
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}
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void presentation()
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{
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// Send the sketch version information to the gateway and Controller
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sendSketchInfo("Bedlampje Zolder", "1.0");
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present(l1_CHILD_ID, S_LIGHT);
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present(l1_timed_CHILD_ID, S_LIGHT);
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}
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void loop()
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{
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unsigned long now = millis();
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//unsigned long currentTime = millis();
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currentTime = millis();
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if(!val_init)
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{
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wait(1000);
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request(l1_CHILD_ID, V_LIGHT);
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wait(1000);
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request(l1_timed_CHILD_ID, V_LIGHT);
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val_init = true;
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}
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//Switch 1
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s1_debouncer.update();
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s1_value = s1_debouncer.read();
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//If switch status changed
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if (s1_value != s1_oldValue)
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{
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if (lamp1==false)
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{
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//Switch lamp on
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digitalWrite(l1_PIN,1);
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lamp1 = true;
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l1_start_ON = millis();
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send(l1_msg.set(1));
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Serial.println("Switch --> Bedlampje AAN !!");
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}
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else
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{
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//Switch lamp off
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digitalWrite(l1_PIN,0);
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lamp1 = false;
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send(l1_msg.set(0));
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Serial.println("Switch --> Bedlampje UIT !!");
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}
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s1_oldValue = s1_value;
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}
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//When clock has made a complete round ;-)
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if (l1_start_ON > currentTime)
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{
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l1_start_ON = currentTime;
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}
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//If lamp1 = timed
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if ((lamp1==true) && (l1_timed==true))
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{
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if ((currentTime - l1_start_ON) > l1_timed_ON)
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{
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//Switch lamp off
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digitalWrite(l1_PIN,0);
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lamp1 = false;
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send(l1_msg.set(0));
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Serial.println("Timer --> Bedlampje UIT Timer !!");
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}
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}
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}
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//Incomming message from Domoticz
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//void incomingMessage(const MyMessage &message)
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void receive(const MyMessage &message)
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{
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//Message of type V_LIGHT ?
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if (message.type==V_LIGHT)
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{
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//Bedlampje
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if (message.sensor==l1_CHILD_ID)
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{
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if(message.getBool()==1)
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{
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Serial.println("Domoticz --> Bedlampje AAN !!");
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digitalWrite(l1_PIN,HIGH);
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lamp1 = true;
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l1_start_ON = millis();
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}
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else
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{
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Serial.println("Domoticz --> Bedlampje UIT !!");
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digitalWrite(l1_PIN,LOW);
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lamp1 = false;
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}
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}
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if (message.sensor==l1_timed_CHILD_ID)
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{
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if(message.getBool()==1)
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{
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Serial.println("Domoticz --> Timer enabled !!");
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l1_timed = true;
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}
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else
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{
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Serial.println("Domoticz --> Timer disabled !!");
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l1_timed = false;
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}
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}
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}
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}
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