Merge branch 'notimeoverflow' into 'master'
prevent time variable overflow See merge request lukas/pumpensteuerung!6
This commit is contained in:
commit
747e7bbbf8
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@ -1,12 +0,0 @@
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{
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"name":"ESP8266 React",
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"icons":[
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{
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"src":"/app/icon.png",
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"sizes":"48x48 72x72 96x96 128x128 256x256"
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}
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],
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"start_url":"/",
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"display":"fullscreen",
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"orientation":"any"
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}
|
@ -1,22 +0,0 @@
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/* Just supporting latin due to size constrains on the esp chip */
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@font-face {
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||||
font-family: 'Roboto';
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font-style: normal;
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||||
font-weight: 300;
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||||
src: local('Roboto Light'), local('Roboto-Light'), url(../fonts/li.woff2) format('woff2');
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||||
unicode-range: U+0000-00FF, U+0131, U+0152-0153, U+02BB-02BC, U+02C6, U+02DA, U+02DC, U+2000-206F, U+2074, U+20AC, U+2122, U+2212, U+2215;
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}
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@font-face {
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||||
font-family: 'Roboto';
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font-style: normal;
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font-weight: 400;
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||||
src: local('Roboto'), local('Roboto-Regular'), url(../fonts/re.woff2) format('woff2');
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||||
unicode-range: U+0000-00FF, U+0131, U+0152-0153, U+02BB-02BC, U+02C6, U+02DA, U+02DC, U+2000-206F, U+2074, U+20AC, U+2122, U+2212, U+2215;
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}
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@font-face {
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||||
font-family: 'Roboto';
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font-style: normal;
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font-weight: 500;
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||||
src: local('Roboto Medium'), local('Roboto-Medium'), url(../fonts/me.woff2) format('woff2');
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||||
unicode-range: U+0000-00FF, U+0131, U+0152-0153, U+02BB-02BC, U+02C6, U+02DA, U+02DC, U+2000-206F, U+2074, U+20AC, U+2122, U+2212, U+2215;
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}
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@ -4,6 +4,7 @@
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#include "GeneralInfoService.h"
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#include "Pins.h"
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#include "Timer.h"
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GeneralInfoService::GeneralInfoService(AsyncWebServer *server, float *lasthum, float *lasttemp) :
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hum(lasthum),
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@ -21,10 +22,12 @@ void GeneralInfoService::reply(AsyncWebServerRequest *request) {
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root["temp"] = *temp;
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root["hum"] = *hum;
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root["lastpumptime"] = lastPumpTime != 0 ? (millis() - lastPumpTime) / 1000 : 0;
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root["lastWaterOutage"] = lastWaterOutage != 0 ? (millis() - lastWaterOutage) / 1000 : 0;
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root["lastPumpDuration"] = lastPumpDuration != 0 ? lastPumpDuration / 1000 : 0;
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root["runtime"] = millis() / 1000;
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const uint32_t systime = Timer::getSystemSeconds();
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root["lastpumptime"] = lastPumpTime != 0 ? systime - lastPumpTime : 0;
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root["lastWaterOutage"] = lastWaterOutage != 0 ? systime - lastWaterOutage : 0;
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root["lastPumpDuration"] = lastPumpDuration != 0 ? lastPumpDuration : 0;
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root["runtime"] = systime;
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root["watersensor"] = digitalRead(WasserSensorPin) ? true : false;
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root["pressuresensor"] = digitalRead(DruckSensorPin) ? true : false;
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@ -35,14 +38,14 @@ void GeneralInfoService::reply(AsyncWebServerRequest *request) {
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request->send(response);
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}
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void GeneralInfoService::setlastPumpTime(unsigned long lastPumpTime) {
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void GeneralInfoService::setlastPumpTime(uint32_t lastPumpTime) {
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this->lastPumpTime = lastPumpTime;
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}
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void GeneralInfoService::setlastWaterOutage(unsigned long lastWaterOutage) {
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void GeneralInfoService::setlastWaterOutage(uint32_t lastWaterOutage) {
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this->lastWaterOutage = lastWaterOutage;
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}
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void GeneralInfoService::setPumpDuration(unsigned long lastPumpDuration) {
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void GeneralInfoService::setPumpDuration(uint32_t lastPumpDuration) {
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this->lastPumpDuration = lastPumpDuration;
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}
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@ -23,19 +23,19 @@ public:
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* sets the last time when the pump was on
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* @param lastPumpTime pump time in ms
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*/
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void setlastPumpTime(unsigned long lastPumpTime);
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void setlastPumpTime(uint32_t lastPumpTime);
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/**
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* sets the last time of a water outage
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* @param lastWaterOutage last wateroutage time in ms
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*/
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void setlastWaterOutage(unsigned long lastWaterOutage);
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void setlastWaterOutage(uint32_t lastWaterOutage);
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/**
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* sets the duration of the last pump cycle
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* @param lastPumpDuration duration in ms
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*/
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void setPumpDuration(unsigned long lastPumpDuration);
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void setPumpDuration(uint32_t lastPumpDuration);
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private:
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void reply(AsyncWebServerRequest* request);
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167
src/Heating.cpp
167
src/Heating.cpp
@ -5,10 +5,101 @@
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#include "Heating.h"
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#include "Pins.h"
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Heating::Heating() : mHeizungTicker(),
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mLuefterTicker(),
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mTurnOffTicker(),
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msettings(nullptr),
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mHeatingStatus(),
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lasttemp(0),
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lasthum(0),
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sensor() {}
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void Heating::init(unsigned mode, const SettingState *settings) {
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msettings = settings;
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switch (mode) {
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case TIME: {
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this->handleTimeHeater();
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break;
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}
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case HUMIDITY:
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mHeatingStatus = false;
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sensor.setPin(TempSensorPin);
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sensor.onData([this, settings](float hum, float temp) {
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schedule_function([hum, temp, settings, this]() {
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Serial.printf("Temp: %gdegC\n", temp);
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Serial.printf("Humid: %g%%\n", hum);
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this->lasttemp = temp;
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this->lasthum = hum;
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this->handleHeatingEvents();
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});
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});
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sensor.onError([this](uint8_t e) {
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this->lasttemp = -1.0;
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this->lasthum = -1.0;
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// emergency turnoff of heating
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if(mHeatingStatus){
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digitalWrite(HeizungPin, LOW);
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}
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schedule_function([e]() {
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Serial.printf("Error: %d\n", e);
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});
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});
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mHeizungTicker.attach(10, [this]() {
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sensor.read();
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});
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break;
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default:
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break;
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}
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}
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float *Heating::getLastTemp() {
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return &lasttemp;
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}
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float *Heating::getLastHum() {
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return &lasthum;
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}
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void Heating::handleHeatingEvents() {
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if (this->lasthum > (float) msettings->heatUp) {
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// turn off active turnoff timers
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mLuefterTicker.detach();
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Serial.println("heating should run now!");
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// turn on heating and fan
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digitalWrite(LuefterPin, HIGH);
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digitalWrite(HeizungPin, HIGH);
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mHeatingStatus = true;
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} else if (this->lasthum < (float) msettings->heatLow) {
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// if humidity too low turn off heating and fan after 60secs
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digitalWrite(HeizungPin, LOW);
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Serial.println("heating should NOT run now!");
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// if heating status in on set ticker to turn of fan in 60sec
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if (mHeatingStatus) {
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mLuefterTicker.once((float) msettings->fanRuntime, []() {
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// turn off fan
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digitalWrite(LuefterPin, LOW);
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schedule_function([]() {
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Serial.println("turning off fan");
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});
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});
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}
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mHeatingStatus = false;
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}
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}
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void Heating::handleTimeHeater() {
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const unsigned percentOn = 20;
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const unsigned refreshperiod = 900;
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@ -36,80 +127,4 @@ void Heating::init(unsigned mode, const SettingState* settings) {
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func();
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mHeizungTicker.attach(refreshperiod, func);
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break;
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}
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case HUMIDITY:
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mHeatingStatus = false;
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sensor.setPin(TempSensorPin);
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sensor.onData([this, settings](float hum, float temp) {
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schedule_function([hum, temp, settings, this]() {
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Serial.printf("Temp: %gdegC\n", temp);
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Serial.printf("Humid: %g%%\n", hum);
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this->lasttemp = temp;
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this->lasthum = hum;
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if (hum > (float)settings->heatUp) {
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// turn off active turnoff timers
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mLuefterTicker.detach();
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Serial.println("heating should run now!");
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// turn on heating and fan
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digitalWrite(LuefterPin, HIGH);
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digitalWrite(HeizungPin, HIGH);
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mHeatingStatus = true;
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} else if (hum < (float)settings->heatLow) {
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// if humidity too low turn off heating and fan after 60secs
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digitalWrite(HeizungPin, LOW);
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Serial.println("heating should NOT run now!");
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// if heating status in on set ticker to turn of fan in 60sec
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if (mHeatingStatus) {
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mLuefterTicker.once((float)settings->fanRuntime, []() {
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// turn off fan
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digitalWrite(LuefterPin, LOW);
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schedule_function([]() {
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Serial.println("turning off fan");
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});
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});
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}
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mHeatingStatus = false;
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}
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});
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});
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sensor.onError([this](uint8_t e) {
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this->lasttemp = -1.0;
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this->lasthum = -1.0;
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schedule_function([e]() {
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Serial.printf("Error: %d\n", e);
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});
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});
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mHeizungTicker.attach(10, [this]() {
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sensor.read();
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});
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break;
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default:
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break;
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}
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}
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float *Heating::getLastTemp() {
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return &lasttemp;
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}
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float *Heating::getLastHum() {
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return &lasthum;
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}
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Heating::Heating() : mHeizungTicker(),
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mLuefterTicker(),
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mTurnOffTicker(),
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mHeatingStatus(),
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lasttemp(0),
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lasthum(0),
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sensor() {}
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@ -13,9 +13,23 @@ class Heating {
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public:
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Heating();
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/**
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* initialize the heater
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* @param mode select the operating mode
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* @param settings a settings object is needed for HUMIDITY mode to get percent values set by user
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*/
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void init(unsigned mode, const SettingState* settings);
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/**
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* get the last captured humidity value
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* @return humidity value
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*/
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float* getLastHum();
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/**
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* get the last captured temperature value
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* @return temperature value
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*/
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float* getLastTemp();
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enum MODES {TIME, HUMIDITY};
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@ -24,10 +38,25 @@ private:
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Ticker mLuefterTicker;
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Ticker mTurnOffTicker;
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const SettingState* msettings;
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bool mHeatingStatus;
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float lasttemp;
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float lasthum;
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DHT22 sensor;
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/**
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* handle events after successfully received a humidity value
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* - turn on/off of heating
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* - afterrun of fan
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*/
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void handleHeatingEvents();
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/**
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* handle events for time-heating mode
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* when to turn on/off heating + fan
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*/
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void handleTimeHeater();
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};
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@ -16,6 +16,6 @@
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#define TempSensorPin D4
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// version info
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#define VERSION "v1.2.0"
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#define VERSION "v1.2.1"
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#endif //PUMPENSTEUERUNG_PINS_H
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10
src/Timer.cpp
Normal file
10
src/Timer.cpp
Normal file
@ -0,0 +1,10 @@
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//
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// Created by lukas on 09.12.20.
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//
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#include <Arduino.h>
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#include "Timer.h"
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uint32_t Timer::getSystemSeconds() {
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return (uint32_t)(micros64() / 1000000);
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}
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18
src/Timer.h
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18
src/Timer.h
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@ -0,0 +1,18 @@
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//
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// Created by lukas on 09.12.20.
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//
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#ifndef PUMPENSTEUERUNG_TIMER_H
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#define PUMPENSTEUERUNG_TIMER_H
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class Timer {
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public:
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/**
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* get system time in seconds
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* @return system time in seconds
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*/
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static uint32_t getSystemSeconds();
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};
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#endif //PUMPENSTEUERUNG_TIMER_H
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13
src/main.cpp
13
src/main.cpp
@ -5,6 +5,7 @@
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#include "Pins.h"
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#include "GeneralInfoService.h"
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#include "SettingsService.h"
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#include "Timer.h"
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bool allow;
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bool error = false;
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@ -18,7 +19,7 @@ Ticker pumpendauer;
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//WifiManager mang;
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Heating mHeat;
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unsigned long turnontime = 0;
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uint32_t turnontime = 0;
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AsyncWebServer server(80);
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ESP8266React esp8266React(&server);
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@ -31,7 +32,7 @@ void pumpeSchalten(bool on) {
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if (on) {
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Serial.println("versuche Pumpe EIN zuschalten");
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// refresh last pump counter
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generalinfo.setlastPumpTime(millis());
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generalinfo.setlastPumpTime(Timer::getSystemSeconds());
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} else {
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Serial.println("versuche Pumpe AUS zuschalten");
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}
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@ -40,7 +41,7 @@ void pumpeSchalten(bool on) {
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if (on) {
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pumpendauer.once((float)settingsservice.getSettings()->maxpumpduration + 1, []() {
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//erlaube keine einschaltung von mehr als 60 sek
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if (millis() - turnontime >= (unsigned)settingsservice.getSettings()->maxpumpduration * 1000 && turnontime != 0) {
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if (Timer::getSystemSeconds() - turnontime >= (unsigned)settingsservice.getSettings()->maxpumpduration && turnontime != 0) {
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//error zu lange
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Serial.println("\n\npumpe lief mehr als 10 Minuten durchgaengig");
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pumpeSchalten(false);
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@ -48,11 +49,11 @@ void pumpeSchalten(bool on) {
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}
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});
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} else {
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generalinfo.setPumpDuration(millis() - turnontime);
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generalinfo.setPumpDuration(Timer::getSystemSeconds() - turnontime);
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}
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// save pump start time
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turnontime = millis();
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turnontime = Timer::getSystemSeconds();
|
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digitalWrite(SchuetzPin, on);
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Serial.println("[Erfolg] pumpe wird geschalten");
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||||
@ -90,7 +91,7 @@ void WasserSensorCheck() {
|
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//kein Wasser dh timer auf 10min stellen
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// refresh wateroutage counter
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generalinfo.setlastWaterOutage(millis());
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generalinfo.setlastWaterOutage(Timer::getSystemSeconds());
|
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|
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allow = false;
|
||||
Serial.println("Schalte pumpe aus");
|
||||
|
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