switchHandler: Kanal zur Maschine zurück aufgrund von 4 gegebenen Dezimal-Werten. (untested!)
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@ -12,6 +12,7 @@
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SoftwareSerial swSer(D2, D1);
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int currentnumber = 0;
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int inputbytes[4];
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int commandbytes[4];
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String output = "";
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String output2 = "";
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@ -19,7 +20,25 @@ HomieNode switchNode("switch", "switch");
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bool switchHandler(const HomieRange& range, const String& value) {
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Homie.getLogger() << "switch " << ": " << value << endl;
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if (sscanf(value, "%d %d %d %d", &commandbytes[0], &commandbytes[1], &commandbytes[2], &commandbytes[3]) == 4)
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{
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// Nur wenn wirklich 4 Werte übernommen wurden
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switchNode.setProperty("switch").send(value);
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// Sende an das Gerät
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swSer.write(commandbytes[0]);
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swSer.write(commandbytes[1]);
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swSer.write(commandbytes[2]);
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swSer.write(commandbytes[3]);
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}
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else
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{
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commandbytes[0] = 0;
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commandbytes[1] = 0;
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commandbytes[2] = 0;
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commandbytes[3] = 0;
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switchNode.setProperty("switch").send("ERROR");
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}
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return true;
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}
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@ -37,8 +56,6 @@ void setup() {
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ArduinoOTA.setHostname(Homie.getConfiguration().deviceId);
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ArduinoOTA.begin();
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}
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void loop() {
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@ -65,11 +82,7 @@ void loop() {
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switchNode.setProperty("switchevent").send(output2);
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switchNode.setProperty("input").send(String(inputbytes[1]-128, DEC));
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switchNode.setProperty("output").send(String(inputbytes[2]-128, DEC));
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// Einfache Interpretation
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// Serial.print("Von ");
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// Serial.print(String(inputbytes[2]-128, DEC));
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// Serial.print(" zu ");
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// Serial.println(String(inputbytes[1]-128, DEC));
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currentnumber = 0;
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inputbytes[0] = 0;
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inputbytes[1] = 0;
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@ -84,8 +97,4 @@ void loop() {
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currentnumber++;
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}
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}
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// while (Serial.available() > 0) {
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// swSer.write(Serial.read());
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// }
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}
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