Add threads and season schedules, some other fixes
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@ -1,35 +1,46 @@
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/* 2 relay-buttons on timer scetch
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* [WINTER short time version]
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* based on TimeRTC.pde
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* Use SetTime scetch (from DS1307RTC library) for time-sync
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*/
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#include <TimeLib.h>
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// 2 relay-buttons on timer
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#include <Arduino.h>
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#include <Wire.h>
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#include <DS1307RTC.h> // a basic DS1307 library that returns time as a time_t
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#include <TimeLib.h>
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#include <Thread.h>
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#include <DS1307RTC.h> // A basic DS1307 library that returns time as a time_t
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int stopButton = 8;
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int startButton = 9;
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int led = 13;
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int indicator = 0;
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int msStart = 639; // Interval for pressing start button, ms
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int msStop = 637; // Interval for pressing stop button, ms
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long ledPulseNormal = 500; // Interval for normal LED blinking pulse
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Thread ledThread = Thread(); // Create thread for LED pulse indication
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void setup() {
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Serial.begin(9600); // Initializes the Serial connection @ 9600 baud for debug
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serStr("starting setup...");
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pinMode(stopButton, OUTPUT);
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pinMode(startButton, OUTPUT);
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pinMode(led, OUTPUT);
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Serial.begin(9600);
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while (!Serial); // wait until Arduino Serial Monitor opens
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setSyncProvider(RTC.get); // the function to get the time from the RTC
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while (!Serial); // Wait until Arduino Serial Monitor opens
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setSyncProvider(RTC.get); // The function to get the time from the RTC
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if(timeStatus()!= timeSet)
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Serial.println("Unable to sync with the RTC");
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else
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Serial.println("RTC has set the system time");
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// LED blinking thread:
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ledThread.onRun(ledBlink);
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ledThread.setInterval(ledPulseNormal); // Interval for LED blinking
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serStr("...setup finished");
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}
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void loop() {
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// Threads init:
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if (ledThread.shouldRun())
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ledThread.run();
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if (timeStatus() == timeSet) {
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checkTime();
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} else { // fast blinking after boot indicates that time is not set or DS1307RTC is not plugged
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} else { // Fast blinking after boot indicates that time is not set or DS1307RTC is not plugged
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int i;
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for (i = 1; i <= 100; i++) {
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digitalWrite(led, LOW);
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@ -41,13 +52,35 @@ void loop() {
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delay(5000);
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}
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// Winter timing 6:00-8:01, 12:00-13:01, 17:00-18:01
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// LED pulse blinking thread
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void ledBlink() {
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static bool ledStatus = false; // LED status bool
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ledStatus = !ledStatus; // Invert LED state
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if (indicator==1) { // Fast blinking after long light (planned work indicator)
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delay(200);
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digitalWrite(led, LOW);
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delay(200);
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digitalWrite(led, HIGH);
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delay(100);
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digitalWrite(led, LOW);
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delay(100);
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digitalWrite(led, HIGH);
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delay(200);
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digitalWrite(led, LOW);
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delay(200);
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digitalWrite(led, HIGH);
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}
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digitalWrite(led, ledStatus); // Activate LED state
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}
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// Winter timing 6:00-7:31, 12:00-13:01, 17:00-18:01
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void checkTime() {
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// 6:00 - 8:01 - working
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// Winter
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if (month()==12 || month()==1 || month()==2 ) {
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// 6:00 - 7:01 - working
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if ((hour()==6) && (indicator==0)) pressStart();
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if ((hour()==7) && (indicator==0)) pressStart();
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// 8:01 - stop
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if ((hour()==8) && (minute()==1)) pressStop();
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// 7:01 - stop
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if ((hour()==7) && (minute()==1)) pressStop();
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// 12:00 - 13:01 - working
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if ((hour()==12) && (indicator==0)) pressStart();
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// 13:01 - stop
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@ -56,25 +89,79 @@ void checkTime() {
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if ((hour()==17) && (indicator==0)) pressStart();
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// 18:01 - stop
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if ((hour()==18) && (minute()==1)) pressStop();
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}
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// Spring & Autumn
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if (month()==3 || month()==4 || month()==5 || month()==9 || month()==10 || month()==11) {
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// 6:00 - 7:41 - working
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if ((hour()==6) && (indicator==0)) pressStart();
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// 7:41 - stop
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if ((hour()==7) && (minute()==41)) pressStop();
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// 12:00 - 13:01 - working
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if ((hour()==12) && (indicator==0)) pressStart();
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// 13:01 - stop
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if ((hour()==13) && (minute()==1)) pressStop();
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// 17:00 - 18:21 - working
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if ((hour()==17) && (indicator==0)) pressStart();
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// 18:21 - stop
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if ((hour()==18) && (minute()==21)) pressStop();
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}
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// Summer
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if (month()==6 || month()==7 || month()==8 ) {
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// 6:00 - 8:01 - working
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if ((hour()==6 || hour()==7) && (indicator==0)) pressStart();
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// 8:01 - stop
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if ((hour()==8) && (minute()==1)) pressStop();
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// 12:00 - 14:01 - working
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if ((hour()==12 || hour()==13) && (indicator==0)) pressStart();
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// 14:01 - stop
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if ((hour()==14) && (minute()==1)) pressStop();
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// 17:00 - 18:25 - working
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if ((hour()==17) && (indicator==0)) pressStart();
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// 18:25 - stop
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if ((hour()==18) && (minute()==25)) pressStop();
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}
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}
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void pressStart() {
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serStr("scheduled start button pressed");
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delay(5000);
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digitalWrite(led, HIGH); // turn the LED on (HIGH is the voltage level)
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indicator = 1;
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digitalWrite(startButton, HIGH);
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delay(889);
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delay(msStart);
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digitalWrite(startButton, LOW);
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delay(61000); // wait a minute
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serStr("scheduled start button delay finished");
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}
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void pressStop() {
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serStr("scheduled stop button pressed");
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delay(5000);
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digitalWrite(led, LOW); // turn the LED off by making the voltage LOW
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indicator = 0;
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digitalWrite(stopButton, HIGH);
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delay(887);
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delay(msStop);
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digitalWrite(stopButton, LOW);
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delay(61000); // wait a minute
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serStr("scheduled stop button delay finished");
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}
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// Send string to serial monitor with millis() counter and date/time
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void serStr(const char* serString) {
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long currentTime = millis();
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String space = " ";
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String stringToPrint = currentTime + space + serString;
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Serial.println(stringToPrint);
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// RTC mark
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Serial.print("RTC time = ");
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Serial.print(hour());
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Serial.write(':');
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Serial.print(minute());
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Serial.write(':');
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Serial.print(second());
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Serial.print(", date (D/M/Y) = ");
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Serial.print(day());
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Serial.write('/');
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Serial.print(month());
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Serial.write('/');
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Serial.print(year());
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Serial.println();
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}
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