feat(S3): Display-Auswahl in die Web-UI verlegt — Default „Ohne Display" für sicheren Start
Compile-Schalter ENABLE_DISPLAY entfällt: Der Display-Typ (Ohne / OLED SH1106 / UART-Touch) wird jetzt zur Laufzeit unter /Sensoren gewählt, im EEPROM (Adresse 911) gespeichert und ohne Neustart übernommen. Vor der OLED-Initialisierung prüft eine I2C-Probe (0x3C), ob das Display angeschlossen ist — ohne Antwort bleibt die Anzeige deaktiviert und die Steuerung bootet sicher weiter. Die Touch-UART (Serial1) wird nur noch bei gewähltem UART-Touch-Display initialisiert und bedient. Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
This commit is contained in:
co-authored by
Claude Fable 5
parent
f8df6f85cd
commit
5691a4c04f
@@ -1,3 +1,12 @@
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Version 5.1.0:
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- Display-Auswahl in die Web-UI (/Sensoren) verlegt: Ohne Display / OLED (SH1106, I2C) / UART-Touch-Display.
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Der Compile-Schalter ENABLE_DISPLAY entfällt, die Einstellung wird im EEPROM gespeichert und ohne Neustart
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übernommen. Default ist "Ohne Display", damit die Steuerung ohne angeschlossene Anzeige immer sicher startet.
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- Boot-Schutz: Vor der OLED-Initialisierung wird per I2C-Probe (0x3C) geprüft, ob das Display wirklich
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angeschlossen ist. Ohne Antwort bleibt die Anzeige deaktiviert und die Steuerung bootet normal weiter -
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eine falsch gesetzte Display-Einstellung kann die Maschine damit nicht mehr blockieren.
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- UART-Touch-Anbindung (Serial1) wird nur noch initialisiert und bedient, wenn "UART-Touch-Display" gewählt ist.
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Version 5.0.12:
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- Neues additives Feld "piState" im State-JSON für das UART-Touch-Display (0=inaktiv, 1=Pre-Infusion,
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2=Pause, 3=Hauptbezug): Die Pre-Infusion-Phasenleiste auf dem Display folgt damit quelltreu der echten
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+215
-81
@@ -52,8 +52,17 @@
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// Standard-Waagen-Typ (kann in /Sensoren geändert werden)
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#define DEFAULT_SCALE_TYPE SCALE_ESPNOW
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// Nachfolgende Zeile auskommentieren, falls die Steuerung ohne OLED-Display verwendet wird!
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//#define ENABLE_DISPLAY
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/************************************************************************************
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* DISPLAY-KONFIGURATION
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* Der Display-Typ wird zur Laufzeit in der Web-UI (/Sensoren) gewaehlt und im
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* EEPROM gespeichert. Default ist "Ohne Display", damit die Steuerung ohne
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* angeschlossene Anzeige immer sicher startet.
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************************************************************************************/
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#define DISPLAY_TYPE_NONE 0 // Ohne Display
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#define DISPLAY_TYPE_OLED 1 // OLED (SH1106, I2C)
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#define DISPLAY_TYPE_TOUCH_UART 2 // JC-UART-Touch-Display (Serial1)
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#define DEFAULT_DISPLAY_TYPE DISPLAY_TYPE_NONE
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#define OLED_I2C_ADDRESS 0x3C
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/************************************************************************************
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* Vorwärtsdeklarationen benutzerdefinierter Strukturen
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@@ -80,6 +89,9 @@ bool executeDashboardAction(const String& action, const String& value,
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bool& settingsChanged, bool& pidNeedsUpdate);
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void touchUartRxTick();
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void touchUartTick();
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void initTouchUart();
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bool initOledDisplay(bool showSplash);
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void applyDisplayTypeChange(uint8_t newType);
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void applyLightOutput();
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void initResetDiagnostics();
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void recordResetCheckpoint(uint16_t checkpoint);
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@@ -91,10 +103,10 @@ void syncFullyKioskWithStandby(bool active);
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************************************************************************************/
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#include <Wire.h>
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#ifdef ENABLE_DISPLAY
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// OLED-Bibliotheken werden immer einkompiliert; ob das Display genutzt wird,
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// entscheidet zur Laufzeit die Einstellung displayType (Web-UI /Sensoren).
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#include <Adafruit_GFX.h>
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#include <Adafruit_SH110X.h>
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#endif // ENABLE_DISPLAY
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#include <EEPROM.h>
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#include <PID_v1.h>
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@@ -154,9 +166,9 @@ const unsigned long DASHBOARD_WS_SHOT_END_GRACE_MS = 500;
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#define DASHBOARD_JSON_BUFFER_SIZE 2400
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unsigned long lastDashboardWsPushMs = 0;
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// JC-Touch-Display (UART). Bewusst UNABHAENGIG von ENABLE_DISPLAY (OLED), damit alle
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// Kombinationen baubar sind (nur OLED / nur JC / beide / keines). Auf 1 setzen, sobald
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// das JC-Display an Serial1 (GPIO43/44) angeschlossen ist.
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// JC-Touch-Display (UART). Ob die UART-Anbindung genutzt wird, entscheidet zur
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// Laufzeit displayType (Web-UI /Sensoren); dieser Compile-Schalter bleibt als
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// Notausstieg, um den Code komplett herauszubauen.
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#define TOUCH_UART_ENABLED 1
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#define TOUCH_UART_TX_PIN 43
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#define TOUCH_UART_RX_PIN 44
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@@ -179,6 +191,13 @@ const unsigned long TOUCH_UART_SHOT_END_GRACE_MS = 500;
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const unsigned long TOUCH_UART_CLIENT_TIMEOUT_MS = 15000;
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unsigned long lastTouchUartPushMs = 0;
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// Aktiver Display-Typ (DISPLAY_TYPE_*). Wird beim Start aus dem EEPROM geladen
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// und kann in der Web-UI (/Sensoren) zur Laufzeit umgestellt werden.
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uint8_t displayType = DEFAULT_DISPLAY_TYPE;
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// true, sobald das OLED per I2C gefunden UND initialisiert wurde. Schuetzt davor,
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// dass Renderaufrufe ohne angeschlossenes Display laufen (Boot-Haenger-Schutz).
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bool oledDisplayPresent = false;
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HardwareSerial& touchUart = Serial1;
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String touchUartRxLine;
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bool touchUartRxOverflow = false;
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@@ -342,19 +361,15 @@ MAX6675 thermocouple(MAX6675_SCK, MAX6675_CS, MAX6675_SO);
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/************************************************************************************
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* Display-Objekt (Adafruit SH1106G)
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************************************************************************************/
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#ifdef ENABLE_DISPLAY
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/************************************************************************************
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* Display-Objekt (Adafruit SH1106G)
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************************************************************************************/
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// Dieser Block muss vorhanden sein, wenn Display aktiviert!
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// Objekt existiert immer; initialisiert wird es nur bei displayType == DISPLAY_TYPE_OLED
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// und erfolgreicher I2C-Probe (siehe initOledDisplay()).
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Adafruit_SH1106G display = Adafruit_SH1106G(128, 64, &Wire);
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#endif // ENABLE_DISPLAY
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/************************************************************************************
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* Firmware-Informationen
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************************************************************************************/
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String version = "5.0.12";
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String version = "5.1.0";
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String versionHersteller = "Thomas Müller";
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String versionHerstellerMail =
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"<a href='mailto:thomas@mueller.black' class='info-link'>thomas@mueller.black</a>";
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@@ -926,7 +941,8 @@ const int EEPROM_ADDR_HEATUP_MINUTES = 904; // 4 Bytes (int) -> Ende
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const int EEPROM_ADDR_BACKLIGHT_ACTIVE_PERCENT = 908; // 1 Byte (uint8_t) -> Ende 908
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const int EEPROM_ADDR_BACKLIGHT_STANDBY_CLOCK_PERCENT = 909; // 1 Byte (uint8_t) -> Ende 909
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const int EEPROM_ADDR_POWERON_STANDBY = 910; // 1 Byte (bool) -> Ende 910
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// Naechste freie Adresse: 911 (Innerhalb EEPROM_SIZE=1024)
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const int EEPROM_ADDR_DISPLAY_TYPE = 911; // 1 Byte (uint8_t) -> Ende 911
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// Naechste freie Adresse: 912 (Innerhalb EEPROM_SIZE=1024)
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/************************************************************************************
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* Eco-Mode Variablen
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@@ -1299,12 +1315,10 @@ String standbyTimerStatusMessage = ""; // fuer Nachrichten auf der Timer-Seite
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/************************************************************************************
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* WiFi Signal Bitmap (Display-Anzeige)
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************************************************************************************/
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#ifdef ENABLE_DISPLAY
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static const unsigned char PROGMEM wifiSymbol[] = {
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0x1f, 0xc0, 0x20, 0x20, 0x4f, 0x90, 0x90, 0x48,
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0x27, 0x20, 0x08, 0x80, 0x02, 0x00
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};
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#endif // ENABLE_DISPLAY
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/************************************************************************************
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* Gemeinsame CSS-Styles (PROGMEM) - Unverändert
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@@ -2451,12 +2465,10 @@ void checkWifiConnection() {
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}
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}
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#ifdef ENABLE_DISPLAY
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// WiFi-Symbol aufs Display zeichnen
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void drawwifiSymbol(int16_t x, int16_t y) {
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display.drawBitmap(x, y, wifiSymbol, 13, 7, SH110X_WHITE);
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}
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#endif // ENABLE_DISPLAY
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/************************************************************************************
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* Handler zum Rücksetzen der Betriebszeit - URL angepasst
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@@ -2896,6 +2908,7 @@ void resetToDefaults() {
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EEPROM.put(EEPROM_ADDR_BACKLIGHT_ACTIVE_PERCENT, defaultBacklightActivePercent);
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EEPROM.put(EEPROM_ADDR_BACKLIGHT_STANDBY_CLOCK_PERCENT, defaultBacklightStandbyClockPercent);
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EEPROM.put(EEPROM_ADDR_POWERON_STANDBY, (uint8_t)(defaultPowerOnStandby ? 1 : 0));
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EEPROM.put(EEPROM_ADDR_DISPLAY_TYPE, (uint8_t)DEFAULT_DISPLAY_TYPE);
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EEPROM.put(EEPROM_ADDR_OFFSET_COMPENSATION_ENABLED, (uint8_t)0);
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EEPROM.put(EEPROM_ADDR_SCALE_ENABLED, (uint8_t)(defaultScaleEnabled ? 1 : 0));
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EEPROM.put(EEPROM_ADDR_SCALE_TYPE, defaultScaleType);
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@@ -2960,6 +2973,7 @@ void resetToDefaults() {
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xSwitchLongAction = defaultXSwitchLongAction;
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buttonLongPressMs = (uint16_t)DEFAULT_BUTTON_LONG_PRESS_MS;
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dashboardTempDisplayMode = defaultDashboardTempDisplayMode;
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applyDisplayTypeChange(DEFAULT_DISPLAY_TYPE); // deaktiviert ein ggf. aktives Display sauber
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xSwitchActive = false;
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ecoForcedActive = false;
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standbyOverriddenByWeb = false;
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@@ -3866,7 +3880,7 @@ void stopBrewSequence(unsigned long durationMillis, bool manualStop = false, boo
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/************************************************************************************
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* setup(): Initialisierung des Systems
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* - Angepasst für optionale Display-Unterstützung via ENABLE_DISPLAY
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* - Optionale Display-Unterstützung via Laufzeit-Einstellung displayType (Web-UI)
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* - Korrekte Wire.begin() Logik für Display/Waage
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* - Zusätzliche Serial-Ausgaben für Headless-Betrieb
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************************************************************************************/
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@@ -3995,15 +4009,6 @@ void setup() {
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enterRescueMode(); // kehrt nie zurueck
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}
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#if TOUCH_UART_ENABLED
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// TX-Puffer >= max. Zeilenlaenge (State-JSON bis TOUCH_UART_JSON_BUFFER_SIZE=3000
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// + "\r\n"), damit println() die Hauptschleife NIE blockiert (sonst bis ~41 ms
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// Stall -> PID-Jitter). Headroom deckt zudem OTA-Chunks (~1,4 KB) und gestaute
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// Nachrichten (ack direkt vor State-Push) ab.
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touchUart.setTxBufferSize(4096); // war 2048; nicht-blockierendes Senden bis 3000-Byte-Zeile
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touchUart.begin(TOUCH_UART_BAUDRATE, SERIAL_8N1, TOUCH_UART_RX_PIN, TOUCH_UART_TX_PIN);
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touchUartRxLine.reserve(TOUCH_UART_MAX_LINE_LEN);
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#endif
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EEPROM.begin(EEPROM_SIZE); // EEPROM initialisieren
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loadFullyKioskConfig(fullyKioskConfig);
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@@ -4253,6 +4258,12 @@ void setup() {
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storedBacklightStandbyClock = defaultBacklightStandbyClockPercent;
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}
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backlightStandbyClockPercent = storedBacklightStandbyClock;
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uint8_t storedDisplayType = DEFAULT_DISPLAY_TYPE;
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EEPROM.get(EEPROM_ADDR_DISPLAY_TYPE, storedDisplayType);
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if (storedDisplayType > DISPLAY_TYPE_TOUCH_UART) {
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storedDisplayType = DEFAULT_DISPLAY_TYPE; // u. a. unprogrammierte 0xFF
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}
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displayType = storedDisplayType;
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uint8_t storedScaleEnabled = 0;
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uint8_t storedScaleType = defaultScaleType;
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EEPROM.get(EEPROM_ADDR_SCALE_ENABLED, storedScaleEnabled);
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@@ -4356,11 +4367,6 @@ void setup() {
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// Serial.println("---------------------------------------------");
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// Serial.print("Firmware Version: "); Serial.println(version);
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// #ifdef ENABLE_DISPLAY
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// Serial.println("Display: Aktiviert");
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// #else
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// Serial.println("Display: Deaktiviert");
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// #endif
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// if (WiFi.getMode() == WIFI_AP || WiFi.status() != WL_CONNECTED) {
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// Serial.println(F("WiFi Modus: Access Point (AP)"));
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// Serial.print(F("SSID: ")); Serial.println(WiFi.softAPSSID());
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@@ -4393,51 +4399,13 @@ void setup() {
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}
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// --- Display-Initialisierung (nur wenn aktiviert) ---
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#ifdef ENABLE_DISPLAY
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// --- Display-Initialisierung gemaess Web-UI-Einstellung (displayType) ---
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recordResetCheckpoint(RESET_CP_SETUP_DISPLAY);
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if (!display.begin(0x3C, true)) { // display.begin benutzt das ggf. schon initialisierte Wire
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Serial.println(F("Display konnte nicht initialisiert werden!"));
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} else {
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Serial.println(F("Display initialisiert."));
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// Display-Ausgabe am Start (1)
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display.clearDisplay();
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display.setCursor(0, 0);
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display.setTextColor(SH110X_WHITE);
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display.setTextSize(1);
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display.println(infoHersteller);
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display.println(infoModell);
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display.println(infoZusatz);
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display.println("");
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display.println(F("Dual-PID"));
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display.print(F("Version: "));
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display.println(version);
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display.println(F("von Thomas M\201ller")); // \201 ist ü für manche Displays
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display.display();
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delay(delayInit1); // Verzögerung nur bei aktiviertem Display
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// Display-Ausgabe am Start (2) - WiFi Info
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display.clearDisplay();
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display.setCursor(0, 0);
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display.setTextColor(SH110X_WHITE);
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display.setTextSize(1);
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display.println(infoHersteller);
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display.println(infoModell);
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display.println(infoZusatz);
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display.println("");
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if (WiFi.status() != WL_CONNECTED) {
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display.println(F("WiFi: AP-Modus"));
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display.print(F("SSID: ")); display.println(WiFi.softAPSSID());
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display.print(F("IP: ")); display.println(WiFi.softAPIP());
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} else {
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display.println(F("Webserver gestartet"));
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display.print(F("IP: ")); display.println(WiFi.localIP());
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display.print(F("Host: ")); display.print(hostname); display.println(".local");
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}
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display.display();
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delay(delayInit2); // Verzögerung nur bei aktiviertem Display
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if (displayType == DISPLAY_TYPE_OLED) {
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initOledDisplay(true);
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} else if (displayType == DISPLAY_TYPE_TOUCH_UART) {
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initTouchUart();
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}
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#endif // ENABLE_DISPLAY
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// --- Waage Initialisierung (nur ESP32) ---
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@@ -5177,10 +5145,10 @@ void loop() {
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applyLightOutput();
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// Display regelmaessig updaten, wenn aktiviert / angeschlossen
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#ifdef ENABLE_DISPLAY
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if (displayType == DISPLAY_TYPE_OLED && oledDisplayPresent) {
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recordResetCheckpoint(RESET_CP_LOOP_DISPLAY);
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updateDisplay();
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#endif // ENABLE_DISPLAY
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}
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// --- Waagen-spezifische Logik in der Hauptschleife ---
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recordResetCheckpoint(RESET_CP_LOOP_SCALE);
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@@ -5350,8 +5318,108 @@ double readCaseTemperature() {
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return readNTCTemperatureFromPin(ANALOG_CASE_NTC_PIN);
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}
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#ifdef ENABLE_DISPLAY
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/************************************************************************************
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* OLED-Display initialisieren (Laufzeit, mit I2C-Probe als Boot-Schutz)
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* Liefert true, wenn das Display gefunden und initialisiert wurde. Ohne ACK auf
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* OLED_I2C_ADDRESS bleibt die Anzeige deaktiviert und die Steuerung startet normal.
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************************************************************************************/
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bool initOledDisplay(bool showSplash) {
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oledDisplayPresent = false;
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// I2C-Probe: haengt kein Display am Bus, wird der Init uebersprungen statt zu blockieren.
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Wire.beginTransmission(OLED_I2C_ADDRESS);
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if (Wire.endTransmission() != 0) {
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Serial.println(F("OLED-Display nicht gefunden (I2C 0x3C) - Anzeige deaktiviert."));
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return false;
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}
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if (!display.begin(OLED_I2C_ADDRESS, true)) { // display.begin benutzt das ggf. schon initialisierte Wire
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Serial.println(F("Display konnte nicht initialisiert werden!"));
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return false;
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}
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oledDisplayPresent = true;
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Serial.println(F("Display initialisiert."));
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if (showSplash) {
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// Display-Ausgabe am Start (1)
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display.clearDisplay();
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display.setCursor(0, 0);
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display.setTextColor(SH110X_WHITE);
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display.setTextSize(1);
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display.println(infoHersteller);
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display.println(infoModell);
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display.println(infoZusatz);
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display.println("");
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display.println(F("Dual-PID"));
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display.print(F("Version: "));
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display.println(version);
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display.println(F("von Thomas M\201ller")); // \201 ist ü für manche Displays
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display.display();
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delay(delayInit1); // Verzögerung nur bei aktiviertem Display
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// Display-Ausgabe am Start (2) - WiFi Info
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display.clearDisplay();
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display.setCursor(0, 0);
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display.setTextColor(SH110X_WHITE);
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display.setTextSize(1);
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display.println(infoHersteller);
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display.println(infoModell);
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display.println(infoZusatz);
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display.println("");
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if (WiFi.status() != WL_CONNECTED) {
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display.println(F("WiFi: AP-Modus"));
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display.print(F("SSID: ")); display.println(WiFi.softAPSSID());
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display.print(F("IP: ")); display.println(WiFi.softAPIP());
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} else {
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display.println(F("Webserver gestartet"));
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display.print(F("IP: ")); display.println(WiFi.localIP());
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display.print(F("Host: ")); display.print(hostname); display.println(".local");
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}
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display.display();
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delay(delayInit2); // Verzögerung nur bei aktiviertem Display
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}
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return true;
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}
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/************************************************************************************
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* Display-Typ zur Laufzeit umschalten (Web-UI /Sensoren)
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* Deaktiviert das bisherige Display sauber und initialisiert das neue - ganz ohne
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* Neustart. Der Splash wird beim Laufzeit-Wechsel uebersprungen (keine delays im
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* Web-Handler-Kontext).
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************************************************************************************/
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void applyDisplayTypeChange(uint8_t newType) {
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if (newType > DISPLAY_TYPE_TOUCH_UART) { newType = DEFAULT_DISPLAY_TYPE; }
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if (newType == displayType) { return; }
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||||
|
||||
// Bisheriges Display deaktivieren
|
||||
if (displayType == DISPLAY_TYPE_OLED && oledDisplayPresent) {
|
||||
display.clearDisplay();
|
||||
display.display();
|
||||
oledDisplayPresent = false;
|
||||
}
|
||||
if (displayType == DISPLAY_TYPE_TOUCH_UART) {
|
||||
#if TOUCH_UART_ENABLED
|
||||
touchUart.end();
|
||||
#endif
|
||||
touchUartClientActive = false;
|
||||
touchUartClientFirmware = "";
|
||||
touchUartRxLine = "";
|
||||
touchUartRxOverflow = false;
|
||||
}
|
||||
|
||||
displayType = newType;
|
||||
|
||||
if (displayType == DISPLAY_TYPE_OLED) {
|
||||
initOledDisplay(false);
|
||||
} else if (displayType == DISPLAY_TYPE_TOUCH_UART) {
|
||||
initTouchUart();
|
||||
}
|
||||
}
|
||||
|
||||
void updateDisplay() {
|
||||
if (!oledDisplayPresent) { return; }
|
||||
recordResetCheckpoint(RESET_CP_DISPLAY_RENDER);
|
||||
double displayedWaterTemp = getDisplayedWaterTemperature();
|
||||
double displayedSteamTemp = getDisplayedSteamTemperature();
|
||||
@@ -5992,7 +6060,6 @@ if (scaleModeActive) {
|
||||
yield();
|
||||
display.display(); // Display *immer* am Ende aktualisieren
|
||||
}
|
||||
#endif // ENABLE_DISPLAY
|
||||
|
||||
void updateShotTimer() {
|
||||
if (cleaningAssistantActive) {
|
||||
@@ -7652,6 +7719,25 @@ static const char sensorsHtmlHeadEnd[] PROGMEM = R"rawliteral(
|
||||
static const char sensorsBodyStart[] PROGMEM = R"rawliteral(
|
||||
<body>
|
||||
<h1>Sensoren</h1>
|
||||
<form action='/updateSensorSettings' method='POST'>
|
||||
<input type='hidden' name='sensorSection' value='display'>
|
||||
<h3>Display</h3>
|
||||
<label for='displayType'>Typ:</label>
|
||||
<select id='displayType' name='displayType'>
|
||||
<option value='0' )rawliteral";
|
||||
|
||||
static const char sensorsDisplayOptionMid1[] PROGMEM = R"rawliteral(>Ohne Display</option>
|
||||
<option value='1' )rawliteral";
|
||||
|
||||
static const char sensorsDisplayOptionMid2[] PROGMEM = R"rawliteral(>OLED-Display (SH1106, I2C)</option>
|
||||
<option value='2' )rawliteral";
|
||||
|
||||
static const char sensorsDisplaySectionEnd[] PROGMEM = R"rawliteral(>UART-Touch-Display</option>
|
||||
</select>
|
||||
<small class="select-description">Wird sofort übernommen, kein Neustart nötig. Das OLED wird nur aktiviert, wenn es am I2C-Bus (0x3C) gefunden wird – ohne angeschlossenes Display startet die Steuerung immer sicher.</small>
|
||||
<br>
|
||||
<input type='submit' value='Einstellungen speichern'>
|
||||
</form>
|
||||
<form action='/updateSensorSettings' method='POST'>
|
||||
<input type='hidden' name='sensorSection' value='case'>
|
||||
<h3>Zusatz-Temperatur-Sensor</h3>
|
||||
@@ -7902,6 +7988,18 @@ void handleSensors(AsyncWebServerRequest *request) {
|
||||
response->print(FPSTR(sensorsHtmlHeadEnd));
|
||||
response->print(FPSTR(commonNav));
|
||||
response->print(FPSTR(sensorsBodyStart));
|
||||
if (displayType == DISPLAY_TYPE_NONE) {
|
||||
response->print(F("selected"));
|
||||
}
|
||||
response->print(FPSTR(sensorsDisplayOptionMid1));
|
||||
if (displayType == DISPLAY_TYPE_OLED) {
|
||||
response->print(F("selected"));
|
||||
}
|
||||
response->print(FPSTR(sensorsDisplayOptionMid2));
|
||||
if (displayType == DISPLAY_TYPE_TOUCH_UART) {
|
||||
response->print(F("selected"));
|
||||
}
|
||||
response->print(FPSTR(sensorsDisplaySectionEnd));
|
||||
if (caseSensorEnabled) {
|
||||
response->print(F(" checked"));
|
||||
}
|
||||
@@ -9806,6 +9904,10 @@ struct SensorSettingsUpdate {
|
||||
uint8_t xSwitchLongAction = 0;
|
||||
bool hasButtonLongPressMs = false;
|
||||
uint16_t buttonLongPressMs = 0;
|
||||
|
||||
bool updateDisplaySection = false;
|
||||
bool hasDisplayType = false;
|
||||
uint8_t displayType = 0;
|
||||
};
|
||||
|
||||
struct SensorSettingsApplyResult {
|
||||
@@ -9944,6 +10046,16 @@ SensorSettingsApplyResult applySensorSettingsUpdate(const SensorSettingsUpdate&
|
||||
}
|
||||
}
|
||||
|
||||
if (update.updateDisplaySection && update.hasDisplayType) {
|
||||
uint8_t newDisplayType = update.displayType;
|
||||
if (newDisplayType > DISPLAY_TYPE_TOUCH_UART) { newDisplayType = DEFAULT_DISPLAY_TYPE; }
|
||||
if (newDisplayType != displayType) {
|
||||
applyDisplayTypeChange(newDisplayType);
|
||||
EEPROM.put(EEPROM_ADDR_DISPLAY_TYPE, displayType);
|
||||
result.changed = true;
|
||||
}
|
||||
}
|
||||
|
||||
if (result.changed) {
|
||||
EEPROM.commit();
|
||||
}
|
||||
@@ -9959,11 +10071,13 @@ void handleUpdateSensorSettings(AsyncWebServerRequest *request) {
|
||||
bool isCaseSection = (section.length() == 0 || section == "case");
|
||||
bool isScaleSection = (section.length() == 0 || section == "scale");
|
||||
bool isXSwitchSection = (section.length() == 0 || section == "xSwitch");
|
||||
bool isDisplaySection = (section.length() == 0 || section == "display");
|
||||
|
||||
SensorSettingsUpdate update;
|
||||
update.updateCaseSection = isCaseSection;
|
||||
update.updateScaleSection = isScaleSection;
|
||||
update.updateXSwitchSection = isXSwitchSection;
|
||||
update.updateDisplaySection = isDisplaySection;
|
||||
|
||||
if (isCaseSection) {
|
||||
update.hasCaseEnabled = true;
|
||||
@@ -9989,6 +10103,11 @@ void handleUpdateSensorSettings(AsyncWebServerRequest *request) {
|
||||
update.hx711DisplaySmoothing = request->hasArg("hx711DisplaySmoothing");
|
||||
}
|
||||
|
||||
if (isDisplaySection) {
|
||||
update.hasDisplayType = request->hasArg("displayType");
|
||||
if (update.hasDisplayType) { update.displayType = (uint8_t)request->arg("displayType").toInt(); }
|
||||
}
|
||||
|
||||
if (isXSwitchSection) {
|
||||
update.hasXSwitchAction = request->hasArg("xSwitchAction");
|
||||
if (update.hasXSwitchAction) { update.xSwitchAction = (uint8_t)request->arg("xSwitchAction").toInt(); }
|
||||
@@ -15540,8 +15659,21 @@ static bool jsonGetUIntValue(const String& json, const char* key, uint32_t& outV
|
||||
return true;
|
||||
}
|
||||
|
||||
void initTouchUart() {
|
||||
#if TOUCH_UART_ENABLED
|
||||
// TX-Puffer >= max. Zeilenlaenge (State-JSON bis TOUCH_UART_JSON_BUFFER_SIZE=3000
|
||||
// + "\r\n"), damit println() die Hauptschleife NIE blockiert (sonst bis ~41 ms
|
||||
// Stall -> PID-Jitter). Headroom deckt zudem OTA-Chunks (~1,4 KB) und gestaute
|
||||
// Nachrichten (ack direkt vor State-Push) ab.
|
||||
touchUart.setTxBufferSize(4096);
|
||||
touchUart.begin(TOUCH_UART_BAUDRATE, SERIAL_8N1, TOUCH_UART_RX_PIN, TOUCH_UART_TX_PIN);
|
||||
touchUartRxLine.reserve(TOUCH_UART_MAX_LINE_LEN);
|
||||
#endif
|
||||
}
|
||||
|
||||
static void touchUartSendLine(const String& line) {
|
||||
#if TOUCH_UART_ENABLED
|
||||
if (displayType != DISPLAY_TYPE_TOUCH_UART) { return; }
|
||||
touchUart.println(line);
|
||||
#endif
|
||||
}
|
||||
@@ -16283,6 +16415,7 @@ static bool touchUartHandleCommandLine(const String& line) {
|
||||
|
||||
void touchUartRxTick() {
|
||||
#if TOUCH_UART_ENABLED
|
||||
if (displayType != DISPLAY_TYPE_TOUCH_UART) return;
|
||||
if (displayOtaActive) return; // waehrend OTA hat der Upload-Handler die UART exklusiv
|
||||
recordResetCheckpoint(RESET_CP_TOUCH_UART_RX);
|
||||
while (touchUart.available() > 0) {
|
||||
@@ -16359,6 +16492,7 @@ static void touchUartPollWifiScan() {
|
||||
|
||||
void touchUartTick() {
|
||||
#if TOUCH_UART_ENABLED
|
||||
if (displayType != DISPLAY_TYPE_TOUCH_UART) return;
|
||||
if (displayOtaActive) return; // waehrend OTA keine State-Pushes
|
||||
recordResetCheckpoint(RESET_CP_TOUCH_UART_TX);
|
||||
unsigned long now = millis();
|
||||
|
||||
Reference in New Issue
Block a user