Plant object expanded with settings
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24b842f5a3
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@ -12,7 +12,8 @@
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"istream": "cpp",
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"limits": "cpp",
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"streambuf": "cpp",
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"functional": "cpp"
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"functional": "cpp",
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"string": "cpp"
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}
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}
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}
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@ -47,7 +47,8 @@
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#define MIN_TIME_RUNNING 5UL /**< Amount of seconds the controller must stay awoken */
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#define MAX_PLANTS 7
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#define EMPTY_LIPO_MULTIPL 3 /**< Multiplier to increase time for sleeping when lipo is empty */
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#define MINIMUM_LIPO_VOLT 3.3f /**< Minimum voltage of the Lipo, that must be present */
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#define MINIMUM_LIPO_VOLT 3.6f /**< Minimum voltage of the Lipo, that must be present */
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#define NO_LIPO_VOLT 2.0f /**< No Lipo connected */
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#define MINIMUM_SOLAR_VOLT 4.0f /**< Minimum voltage of the sun, to detect daylight */
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#define HC_SR04 /**< Ultrasonic distance sensor to measure water level */
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@ -25,9 +25,12 @@ private:
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int mAnalogValue=0; /**< moist sensor values, used for a calculation */
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HomieNode *mPlant = NULL;
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HomieSetting<long> *mSensorTriggerLevel=NULL;
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HomieSetting<long> *mWateringTime=NULL;
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HomieSetting<long> *mWateringIdleTime=NULL;
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HomieSetting<long> *mSensorDry;
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HomieSetting<long> *mSensorWet;
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HomieSetting<long> *mPumpAllowedHourRangeStart;
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HomieSetting<long> *mPumpAllowedHourRangeEnd;
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HomieSetting<bool> *mPumpOnlyWhenLowLight;
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HomieSetting<long> *mPumpCooldownInHours;
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public:
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@ -38,10 +41,7 @@ public:
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* @param pinPump Pin of the Pump to use
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*/
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Plant(int pinSensor, int pinPump,
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HomieNode *plant,
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HomieSetting<long> *sensorTriggerLevel,
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HomieSetting<long> *wateringTime,
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HomieSetting<long> *wateringIdleTime);
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int plantId);
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/**
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* @brief Add a value, to be measured
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@ -81,7 +81,7 @@ public:
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* @return false
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*/
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bool isPumpRequired() {
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return (this->mSensorTriggerLevel != NULL) && (this->mValue < this->mSensorTriggerLevel->get());
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return (this->mSensorWet != NULL) && (this->mValue < this->mSensorWet->get());
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}
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HomieInternals::SendingPromise& setProperty(const String& property) const {
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@ -12,17 +12,63 @@
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#include "PlantCtrl.h"
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Plant::Plant(int pinSensor, int pinPump,
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HomieNode *plant,
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HomieSetting<long> *sensorTriggerLevel,
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HomieSetting<long> *wateringTime,
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HomieSetting<long> *wateringIdleTime) {
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this->mPlant=plant;
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this->mPinSensor = pinSensor;
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this->mPinPump = pinPump;
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this->mSensorTriggerLevel=sensorTriggerLevel;
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this->mWateringTime=wateringTime;
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this->mWateringIdleTime=wateringIdleTime;
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Plant::Plant(int pinSensor, int pinPump,int plantId) {
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this->mPinSensor = pinSensor;
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this->mPinPump = pinPump;
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char plantIdChar = plantId+'0';
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{
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char* name = "moistZdry";
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name[6]= plantIdChar;
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mSensorDry = new HomieSetting<long>(name, "Moist sensor dry threshold");
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mSensorDry->setDefaultValue(4095);
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mSensorDry->setValidator([] (long candidate) {
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return ((candidate >= 0) && (candidate <= 4095) );
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});
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}
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{
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char* name = "moistZwet";
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name[6]= plantIdChar;
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mSensorWet = new HomieSetting<long>(name, "Moist sensor wet threshold");
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mSensorWet->setDefaultValue(0);
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mSensorWet->setValidator([] (long candidate) {
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return ((candidate >= 0) && (candidate <= 4095) );
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});
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}
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{
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char* name = "rangeZhourstart";
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name[6]= plantIdChar;
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mPumpAllowedHourRangeStart = new HomieSetting<long>(name, "Range pump allowed hour start");
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mPumpAllowedHourRangeStart->setDefaultValue(8);
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mPumpAllowedHourRangeStart->setValidator([] (long candidate) {
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return ((candidate >= 0) && (candidate <= 23) );
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});
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}
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{
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char* name = "rangeZhourend";
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name[6]= plantIdChar;
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mPumpAllowedHourRangeEnd = new HomieSetting<long>(name, "Range pump allowed hour end");
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mPumpAllowedHourRangeEnd->setDefaultValue(20);
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mPumpAllowedHourRangeEnd->setValidator([] (long candidate) {
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return ((candidate >= 0) && (candidate <= 23) );
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});
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}
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{
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char* name = "onlyWhenLowLightZ";
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name[16]= plantIdChar;
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mPumpOnlyWhenLowLight = new HomieSetting<bool>(name, "Enable the Pump only, when there is light but not enought to charge battery");
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mPumpOnlyWhenLowLight->setDefaultValue(true);
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}
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{
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char* name = "cooldownpumpZ";
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name[12]= plantIdChar;
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mPumpCooldownInHours = new HomieSetting<long>(name, "How long to wait until the pump is activated again");
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mPumpCooldownInHours->setDefaultValue(20);
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mPumpCooldownInHours->setValidator([] (long candidate) {
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return ((candidate >= 0) && (candidate <= 1024) );
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});
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}
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}
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void Plant::addSenseValue(int analog) {
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@ -73,44 +73,22 @@ HomieNode stayAlive("stay", "alive", "alive");
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HomieSetting<long> deepSleepTime("deepsleep", "time in milliseconds to sleep (0 deactivats it)");
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HomieSetting<long> deepSleepNightTime("nightsleep", "time in milliseconds to sleep (0 usese same setting: deepsleep at night, too)");
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HomieSetting<long> wateringDeepSleep("pumpdeepsleep", "time seconds to sleep, while a pump is running");
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HomieSetting<long> plantCnt("plants", "amout of plants to control (1 ... 7)");
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#ifdef HC_SR04
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HomieSetting<long> waterLevel("watermaxlevel", "Water maximum level in centimeter (50 cm default)");
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HomieSetting<long> waterMinPercent("watermin", "Minimum percentage of water, to activate the pumps (default 5%)");
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#endif
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HomieSetting<long> plant0SensorTrigger("moist0", "Moist0 sensor dry ");
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HomieSetting<long> plant1SensorTrigger("moist1", "Moist1 sensor value, when pump activates");
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HomieSetting<long> plant2SensorTrigger("moist2", "Moist2 sensor value, when pump activates");
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HomieSetting<long> plant3SensorTrigger("moist3", "Moist3 sensor value, when pump activates");
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HomieSetting<long> plant4SensorTrigger("moist4", "Moist4 sensor value, when pump activates");
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HomieSetting<long> plant5SensorTrigger("moist5", "Moist5 sensor value, when pump activates");
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HomieSetting<long> plant6SensorTrigger("moist6", "Moist6 sensor value, when pump activates");
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HomieSetting<long> wateringTime0("plant0MaxPumpTime", "time seconds Pump0 is running (60 is the default)");
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HomieSetting<long> wateringTime1("plant1MaxPumpTime", "time seconds Pump1 is running (60 is the default)");
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HomieSetting<long> wateringTime2("plant2MaxPumpTime", "time seconds Pump2 is running (60 is the default)");
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HomieSetting<long> wateringTime3("plant3MaxPumpTime", "time seconds Pump3 is running (60 is the default)");
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HomieSetting<long> wateringTime4("plant4MaxPumpTime", "time seconds Pump4 is running (60 is the default)");
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HomieSetting<long> wateringTime5("plant5MaxPumpTime", "time seconds Pump5 is running (60 is the default)");
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HomieSetting<long> wateringTime6("plant6MaxPumpTime", "time seconds Pump6 is running (60 is the default)");
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HomieSetting<long> wateringIdleTime0("plant0MinPumpIdle", "time in seconds Pump0 will wait (60 is the default)");
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HomieSetting<long> wateringIdleTime1("plant1MinPumpIdle", "time in seconds Pump1 will wait (60 is the default)");
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HomieSetting<long> wateringIdleTime2("plant2MinPumpIdle", "time in seconds Pump2 will wait (60 is the default)");
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HomieSetting<long> wateringIdleTime3("plant3MinPumpIdle", "time in seconds Pump3 will wait (60 is the default)");
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HomieSetting<long> wateringIdleTime4("plant4MinPumpIdle", "time in seconds Pump4 will wait (60 is the default)");
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HomieSetting<long> wateringIdleTime5("plant5MinPumpIdle", "time in seconds Pump5 will wait (60 is the default)");
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HomieSetting<long> wateringIdleTime6("plant6MinPumpIdle", "time in seconds Pump6 will wait (60 is the default)");
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HomieSetting<long> waterLevelMax("watermaxlevel", "distance at maximum water level");
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HomieSetting<long> waterLevelMin("waterminlevel", "distance at minimum water level (pumps still covered)");
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HomieSetting<long> waterLevelWarn("waterlevelwarn", "warn if below this water level %");
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HomieSetting<long> waterLevelVol("waterVolume", "ml between minimum and maximum");
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Ds18B20 dallas(SENSOR_DS18B20);
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Plant mPlants[MAX_PLANTS] = {
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Plant(SENSOR_PLANT0, OUTPUT_PUMP0, &plant0, &plant0SensorTrigger, &wateringTime0, &wateringIdleTime0),
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Plant(SENSOR_PLANT1, OUTPUT_PUMP1, &plant1, &plant1SensorTrigger, &wateringTime1, &wateringIdleTime1),
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Plant(SENSOR_PLANT2, OUTPUT_PUMP2, &plant2, &plant2SensorTrigger, &wateringTime2, &wateringIdleTime2),
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Plant(SENSOR_PLANT3, OUTPUT_PUMP3, &plant3, &plant3SensorTrigger, &wateringTime3, &wateringIdleTime3),
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Plant(SENSOR_PLANT4, OUTPUT_PUMP4, &plant4, &plant4SensorTrigger, &wateringTime4, &wateringIdleTime4),
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Plant(SENSOR_PLANT5, OUTPUT_PUMP5, &plant5, &plant5SensorTrigger, &wateringTime5, &wateringIdleTime5),
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Plant(SENSOR_PLANT6, OUTPUT_PUMP6, &plant6, &plant6SensorTrigger, &wateringTime6, &wateringIdleTime6)
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Plant(SENSOR_PLANT0, OUTPUT_PUMP0, 0),
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Plant(SENSOR_PLANT1, OUTPUT_PUMP1, 1),
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Plant(SENSOR_PLANT2, OUTPUT_PUMP2, 2),
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Plant(SENSOR_PLANT3, OUTPUT_PUMP3, 3),
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Plant(SENSOR_PLANT4, OUTPUT_PUMP4, 4),
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Plant(SENSOR_PLANT5, OUTPUT_PUMP5, 5),
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Plant(SENSOR_PLANT6, OUTPUT_PUMP6, 6)
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};
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void readAnalogValues() {
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@ -134,8 +112,6 @@ void readAnalogValues() {
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*/
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void loopHandler() {
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int waterLevelPercent = (100 * mWaterGone) / waterLevel.get();
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/* Move from Setup to this position, because the Settings are only here available */
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if (!mLoopInited) {
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// Configure Deep Sleep:
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@ -156,7 +132,7 @@ void loopHandler() {
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plant6.setProperty("switch").send(String("OFF"));
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#endif
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for(int i=0; i < plantCnt.get() && i < MAX_PLANTS; i++) {
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for(int i=0; i < MAX_PLANTS; i++) {
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mPlants[i].calculateSensorValue(AMOUNT_SENOR_QUERYS);
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mPlants[i].setProperty("moist").send(String(100 * mPlants[i].getSensorValue() / 4095 ));
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/* the last Plant, that was watered is stored in non volatile memory */
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@ -170,14 +146,14 @@ void loopHandler() {
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}
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}
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sensorWater.setProperty("remaining").send(String(waterLevelPercent));
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Serial << "Water : " << mWaterGone << " cm (" << waterLevelPercent << "%)" << endl;
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sensorWater.setProperty("remaining").send(String(waterLevelMax.get() - mWaterGone ));
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Serial << "Water : " << mWaterGone << " cm (" << String(waterLevelMax.get() - mWaterGone ) << "%)" << endl;
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/* Check if a plant needs water */
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if (gCurrentPlant > 0) {
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int plntIdx = (gCurrentPlant-1);
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if (mPlants[plntIdx].isPumpRequired() &&
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(waterLevelPercent > waterMinPercent.get()) &&
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(mWaterGone > waterLevelMin.get()) &&
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(digitalRead(mPlants[plntIdx].getPumpPin()) == LOW) ) {
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Serial << "Plant" << plntIdx << " needs water" << endl;
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mPlants[plntIdx].setProperty("switch").send(String("ON"));
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@ -214,7 +190,7 @@ void loopHandler() {
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}
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/* Main Loop functionality */
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if (waterLevelPercent <= waterMinPercent.get()) {
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if (mWaterGone <= waterLevelMin.get()) {
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/* let the ESP sleep qickly, as nothing must be done */
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if ((millis() >= (MIN_TIME_RUNNING * MS_TO_S)) && (deepSleepTime.get() > 0)) {
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mDeepSleep = true;
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@ -400,37 +376,6 @@ void setup() {
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// Load the settings
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deepSleepTime.setDefaultValue(0);
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deepSleepNightTime.setDefaultValue(0);
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wateringTime0.setDefaultValue(60);
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wateringTime1.setDefaultValue(60);
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wateringTime2.setDefaultValue(60);
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wateringTime3.setDefaultValue(60);
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wateringTime4.setDefaultValue(60);
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wateringTime5.setDefaultValue(60);
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wateringTime6.setDefaultValue(60);
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plantCnt.setDefaultValue(0).setValidator([] (long candidate) {
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return ((candidate >= 0) && (candidate <= 7) );
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});
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plant0SensorTrigger.setDefaultValue(4000);
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plant1SensorTrigger.setDefaultValue(4000);
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plant2SensorTrigger.setDefaultValue(4000);
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plant3SensorTrigger.setDefaultValue(4000);
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plant4SensorTrigger.setDefaultValue(4000);
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plant5SensorTrigger.setDefaultValue(4000);
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plant6SensorTrigger.setDefaultValue(4000);
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wateringDeepSleep.setDefaultValue(60);
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wateringIdleTime0.setDefaultValue(60);
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wateringIdleTime1.setDefaultValue(60);
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wateringIdleTime2.setDefaultValue(60);
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wateringIdleTime3.setDefaultValue(60);
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wateringIdleTime4.setDefaultValue(60);
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wateringIdleTime5.setDefaultValue(60);
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wateringIdleTime6.setDefaultValue(60);
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#ifdef HC_SR04
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waterLevel.setDefaultValue(50);
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waterMinPercent.setDefaultValue(5);
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#endif
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if (mConfigured) {
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// Advertise topics
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@ -502,7 +447,7 @@ void setup() {
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Homie.setup();
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/* Intialize inputs and outputs */
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for(int i=0; i < plantCnt.get(); i++) {
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for(int i=0; i < MAX_PLANTS; i++) {
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pinMode(mPlants[i].getPumpPin(), OUTPUT);
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pinMode(mPlants[i].getSensorPin(), ANALOG);
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digitalWrite(mPlants[i].getPumpPin(), LOW);
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@ -528,7 +473,10 @@ void setup() {
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esp_sleep_enable_timer_wakeup(usSleepTime);
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}
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if (mConfigured && (ADC_5V_TO_3V3(lipoSenor) < MINIMUM_LIPO_VOLT) && (deepSleepTime.get()) ) {
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if (mConfigured &&
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(ADC_5V_TO_3V3(lipoSenor) < MINIMUM_LIPO_VOLT) &&
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(ADC_5V_TO_3V3(lipoSenor) > NO_LIPO_VOLT) &&
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(deepSleepTime.get()) ) {
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long sleepEmptyLipo = (deepSleepTime.get() * EMPTY_LIPO_MULTIPL);
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Serial << "HOMIE | Change sleeping to " << sleepEmptyLipo << " ms as lipo is at " << ADC_5V_TO_3V3(lipoSenor) << "V" << endl;
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esp_sleep_enable_timer_wakeup(sleepEmptyLipo * 1000U);
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