2min restricts
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src/main.cpp
77
src/main.cpp
@ -2,20 +2,47 @@
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#include <Ticker.h>
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bool allow;
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bool error = false;
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static const uint8_t WasserSensorPin = 14;
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static const uint8_t DruckSensorPin = 12;
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static const uint8_t SchuetzPin = 13;
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static const int abschaltzeit = 1800;
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static const int maxpumpdauer = 120;
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Ticker tick;
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Ticker status;
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//pumpendauer maximum ticker
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Ticker pumpendauer;
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void pumpeSchalten(bool on) {
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// digitalWrite(4,on);
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if (allow) {
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digitalWrite(SchuetzPin, on);
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Serial.println("pumpe wird geschalten");
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if (on) {
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Serial.println("versuche Pumpe EIN zuschalten");
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} else {
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Serial.println("Schalten des Schütz gesperrt durch Timeout");
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Serial.println("versuche Pumpe AUS zuschalten");
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}
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if (allow && !error) {
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if (on) {
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pumpendauer.once(maxpumpdauer, []() { //erlaube keine einschaltung von mehr als 60 sek
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if (digitalRead(DruckSensorPin)) {
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//error zu lange
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Serial.println("\n\npumpe lief mehr als 60 sekunden durchgaengig");
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pumpeSchalten(false);
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error = true;
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}
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});
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}
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digitalWrite(SchuetzPin, on);
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Serial.println("[Erfolg] pumpe wird geschalten");
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} else {
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Serial.println(
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"[FEHLGESCHLAGEN] Schalten des Schütz gesperrt durch Timeout oder Fehler-- sofortiges ausschalten der pumpe\n");
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digitalWrite(SchuetzPin, LOW);
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}
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@ -24,17 +51,22 @@ void pumpeSchalten(bool on) {
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ICACHE_RAM_ATTR void DruckschalterInt() {
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if (digitalRead(DruckSensorPin) == HIGH) {
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//pumpe einschalten
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Serial.println("Druck Sensor EIN");
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Serial.println("\n\nDruck Sensor EIN");
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if(digitalRead(WasserSensorPin)){
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Serial.println("Wasser Sensor EIN");
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pumpeSchalten(true);
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} else {
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//pumpe ausschalten
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Serial.println("Druck Sensor AUS");
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} else{
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Serial.println("Wasser Sensor aus irgent einem Grund doch nicht ein -- sofort abschalten!");
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pumpeSchalten(false);
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}
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} else {
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//pumpe ausschalten
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Serial.println("\n\nDruck Sensor AUS");
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pumpeSchalten(false);
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}
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}
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int i = abschaltzeit; //todo better
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void WasserSensorCheck() {
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if (digitalRead(WasserSensorPin) == LOW) {
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Serial.println("Wasser Sensor AUS");
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@ -45,14 +77,29 @@ void WasserSensorCheck() {
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pumpeSchalten(false);
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Serial.println("warte 30min");
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status.detach();
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tick.detach();
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tick.once(1800, []() {
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i = abschaltzeit;
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status.attach(5, []() {
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i -= 5;
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Serial.print("noch ");
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Serial.print(i);
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Serial.println(" Sekunden verbleibend");
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});
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tick.once(abschaltzeit, []() {
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status.detach();
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if (digitalRead(WasserSensorPin)) {
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allow = true;
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Serial.println("Einschalten der Pumpe wieder erlaubt.");
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//pruefen ob drucksensor ein
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DruckschalterInt();
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} else {
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Serial.print("wassersensor immer noch kein Wasser --> verlaengern um 30min\n\n");
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WasserSensorCheck();
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}
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});
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@ -68,6 +115,8 @@ ICACHE_RAM_ATTR void WasserSensorInt() {
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void setup() {
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pinMode(LED_BUILTIN, OUTPUT);
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digitalWrite(LED_BUILTIN, LOW);
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pinMode(WasserSensorPin, INPUT);
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pinMode(DruckSensorPin, INPUT);
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@ -78,15 +127,15 @@ void setup() {
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Serial.println("\n\n\n\nstartup of ESP");
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//digitalWrite(LED_BUILTIN, LOW);
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//initial measurement of water state
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delay(1000);
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//allow = digitalRead(WasserSensorPin);
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allow=true;
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allow = true;
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WasserSensorCheck();
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DruckschalterInt();
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//anhängen der Pin-Interrupts
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attachInterrupt(digitalPinToInterrupt(DruckSensorPin), DruckschalterInt, CHANGE);
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attachInterrupt(digitalPinToInterrupt(WasserSensorPin), WasserSensorInt, CHANGE);
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