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https://github.com/Eigenbaukombinat/ebk_co2ampel.git
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LED update aus CO2 Auslesemethode ausgelagert; LED "Blinken" für rot eingefügt
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parent
0cd36178ec
commit
aaf6b83c46
1 changed files with 39 additions and 10 deletions
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@ -53,10 +53,12 @@ void setBootMode(int bootMode) {
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if(bootMode == BOOT_NORMAL) {
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Serial.println("Startmodus nächster Reboot: Messmodus");
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preferences.putUInt("cal", bootMode);
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if (bootMode != preferences.getUInt("cal", BOOT_UNKNOWN)) Serial.println("Konnte neuen Bootmodus nicht schreiben :-(");
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}
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else if(bootMode == BOOT_CALIBRATE) {
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Serial.println("Startmodus nächster Reboot: Kalibrierungsmodus");
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preferences.putUInt("cal", bootMode);
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if (bootMode != preferences.getUInt("cal", BOOT_UNKNOWN)) Serial.println("Konnte neuen Bootmodus nicht schreiben :-(");
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} else {
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Serial.println("Unerwarteter Boot-Mode soll gespeichert werden. Abgebrochen.");
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}
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@ -147,15 +149,36 @@ int calc_vpos_for_co2(int co2val, int display_height) {
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}
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void set_led_color(int co2) {
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static char blinkState=0;
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static signed char blinkDirection=1;
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static int blinkOn=0;
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static int blinkOff=0;
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if (co2 < GREEN_CO2) {
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pixels.fill(pixels.Color(0,0,0)); // Grün
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pixels.setPixelColor(4,pixels.Color(0,2,0));
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} else if (co2 < YELLOW_CO2) {
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pixels.fill(pixels.Color(40,30,0)); // Gelb
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} else {
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pixels.fill(pixels.Color(90,0,0)); // Rot
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blinkState+=blinkDirection;
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if( (blinkState<90) & (blinkState>0) ) {
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pixels.fill(pixels.Color(blinkState,00,0));
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}
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else if (blinkState==90) {
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blinkDirection=0; blinkOn++;
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if(blinkOn==400) {
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blinkOn=0; blinkDirection=-1; blinkState=89;
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}
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}
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else if (blinkState==0) {
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blinkDirection=0; blinkOff++;
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if(blinkOff==50) {
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blinkOff=0; blinkDirection=1; blinkState=1;
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}
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}
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}
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pixels.show();
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delay(10);
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}
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@ -189,16 +212,18 @@ void calibrateCO2() {
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display.clear(); display.setFont(Cousine_Regular_54);
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}
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void readCO2(){
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int readCO2(){
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static int co2=400;
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if (millis() - getDataTimer >= INTERVAL) {
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// Neuen CO2 Wert lesen
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int CO2 = myMHZ19.getCO2();
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co2 = myMHZ19.getCO2();
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// Alle Werte in der Messwertliste um eins verschieben
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for (int x = 1; x <= 119; x = x + 1) {
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lastvals[x - 1] = lastvals[x];
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}
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// Aktuellen Messer am Ende einfügen
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lastvals[119] = CO2;
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lastvals[119] = co2;
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// Display löschen und alles neu schreiben/zeichnen
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display.clear();
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for (int h = 1; h < 120; h = h + 1) {
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@ -209,29 +234,30 @@ void readCO2(){
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display.drawLine(h - 1, vpos_last, h, vpos);
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}
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}
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// Farbe des LED-Rings setzen
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if (currentBootMode == BOOT_NORMAL) { set_led_color(CO2); }
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// Aktuellen CO2 Wert ausgeben
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//display.setLogBuffer(1, 30);
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display.setFont(Cousine_Regular_54);
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display.setTextAlignment(TEXT_ALIGN_CENTER);
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display.drawString(64 ,0 , String(CO2));
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display.drawString(64 ,0 , String(co2));
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//display.drawLogBuffer(0, 0);
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display.display();
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// Ein wenig Debug-Ausgabe
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Serial.print("Neue Messung - Aktueller CO2-Wert: ");
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Serial.print(CO2);
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Serial.print(co2);
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Serial.print("; Background CO2: " + String(myMHZ19.getBackgroundCO2()));
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Serial.print("; Temperatur: " + String(myMHZ19.getTemperature()) + " Temperature Adjustment: " + String(myMHZ19.getTempAdjustment()));
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Serial.println("; uptime: " + uptime_formatter::getUptime());
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getDataTimer = millis();
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}
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return co2;
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}
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void loop() {
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int co2;
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// Nur für die ersten 10 Sekunden wichtig,
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if ( (!safezone) & (millis() > 10000) ) {
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Serial.println("=== 10 Sekunden im Betrieb, nächster Boot im Messmodus ===");
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@ -257,6 +283,9 @@ void loop() {
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}
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}
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readCO2();
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co2 = readCO2();
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// Farbe des LED-Rings setzen
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if(currentBootMode == BOOT_NORMAL) { set_led_color(co2); }
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}
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