Erster Teil der Ablosung von restricted/gartenbewaesserung/auto_watering.py.
Das Skript holt heute stuendlich den Regen, vergleicht ihn mit Schwellen
aus einer ZONES-Tabelle im Quelltext und schaltet selbst. Kuenftig
entscheidet der AutoAction-Runner, und die Schwellen stehen im Editor.
Dafuer legt ein neues Discovery-Modul drei Geraete an. Es sucht nichts,
sondern schreibt sie fest hin - wie das Logic-Modul auch:
* Die beiden ESP32-Ventilsteuerungen sprechen zwar MQTT, aber ohne
Home-Assistant-Discovery; das MQTT-Modul findet sie deshalb nicht.
* "Regen" ist gar kein Geraet, sondern das, was gatherRainData.py im
SolarManager von Open-Meteo holt und nach Wetter/Regen legt.
Je Steuerung entsteht ein Kommando "Automatik" mit dem Modus als
Parameter - ein Kommando ohne Parameter schickt im Runner eine leere
Nutzlast, der Klartext ("Hoch", "Trog", "Vorn") muss also der Parameter
sein. Dazu je Zone zwei Messwerte:
Bewaessert heute ersetzt die Zwoelf-Stunden-Sperre des Skripts;
"heute noch nicht" heisst hier "= 0". Die
Steuerung setzt den Wert um Mitternacht zurueck,
der Runner kann den mitgelieferten "wateringDay"
naemlich nicht pruefen.
Tage seit Bewaesserung ersetzt max_dry_days. Ein Zeitstempel nuetzte
nichts: der Runner vergleicht Datumsangaben nur
gegen einen festen Wert, "laenger als fuenf Tage
her" ist damit nicht formulierbar. Die Firmware
liefert deshalb gleich die Anzahl Tage.
Die Regensummen kommen als tage1 bis tage7 herein; welche davon als
Messwert auftauchen, entscheidet allein dieses Modul. Der Sammler
veroeffentlicht immer alle sieben, damit sich die beiden Repositorien
nicht ueber eine Fensterliste einigen muessen.
Die Logseite kennt rainOutput.log jetzt ebenfalls.
Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
635 lines
23 KiB
Python
635 lines
23 KiB
Python
#!/usr/bin/env python3
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"""
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Device Discovery - Refactored with Unified Architecture
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=======================================================
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Zentrale Datenbank-Logik im Hauptscript
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Einheitliche Schnittstelle für alle Module
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"""
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import pymysql
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from pymysql import Error
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import json
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import logging
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import configparser
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import os
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from typing import Optional, List, Dict
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# Import Module
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from modules.tahoma_module import TahomaModule
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from modules.wled_module import WLEDModule
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from modules.mqtt_module import MQTTModule
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from modules.shelly_module import ShellyModule
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from modules.gartenwasser_module import GartenwasserModule
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from modules.logic_module import LogicModule #nicht Vergessen neue Module auch in Zeile 546 einzufügen!!
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# Logging
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logging.basicConfig(
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level=logging.INFO,
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format='%(asctime)s - %(levelname)s - %(message)s'
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)
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logger = logging.getLogger(__name__)
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# ============================================================================
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# CONFIG CLASS (Original)
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# ============================================================================
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class Config:
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"""Lädt und verwaltet die Konfiguration"""
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def __init__(self, config_file: str = 'config.ini'):
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script_dir = os.path.dirname(os.path.abspath(__file__))
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config_path = os.path.join(script_dir, config_file)
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if not os.path.exists(config_path):
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raise FileNotFoundError(
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f"Konfigurationsdatei '{config_file}' nicht gefunden in {script_dir}"
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)
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self.config = configparser.ConfigParser()
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self.config.read(config_path, encoding='utf-8')
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logger.info(f"Konfiguration geladen von: {config_path}")
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self._validate()
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def _validate(self):
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required_sections = ['database', 'options']
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for section in required_sections:
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if not self.config.has_section(section):
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raise ValueError(f"Erforderliche Sektion '[{section}]' fehlt")
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def _get_bool(self, section: str, key: str, fallback: bool = False) -> bool:
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value = self.config.get(section, key, fallback=str(fallback)).strip().lower()
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return value in ('true', '1', 'yes', 'on')
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def _get_int(self, section: str, key: str, fallback: int = 0) -> int:
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try:
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return self.config.getint(section, key, fallback=fallback)
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except ValueError:
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return fallback
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def _get_list(self, section: str, key: str) -> List[str]:
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value = self.config.get(section, key, fallback='').strip()
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if not value:
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return []
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return [item.strip() for item in value.split(',') if item.strip()]
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# Database
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@property
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def db_host(self) -> str:
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return self.config.get('database', 'host').strip()
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@property
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def db_port(self) -> int:
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return self._get_int('database', 'port', 3306)
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@property
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def db_name(self) -> str:
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return self.config.get('database', 'database').strip()
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@property
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def db_user(self) -> str:
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return self.config.get('database', 'user').strip()
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@property
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def db_password(self) -> str:
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return self.config.get('database', 'password').strip()
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# Tahoma
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@property
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def tahoma_enable(self) -> bool:
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if not self.config.has_section('tahoma'):
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return False
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return self._get_bool('tahoma', 'enable', False)
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@property
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def tahoma_ip(self) -> str:
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if not self.config.has_section('tahoma'):
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return ''
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return self.config.get('tahoma', 'ip', fallback='').strip()
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@property
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def tahoma_token(self) -> str:
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if not self.config.has_section('tahoma'):
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return ''
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return self.config.get('tahoma', 'token', fallback='').strip()
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@property
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def tahoma_timeout(self) -> int:
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if not self.config.has_section('tahoma'):
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return 10
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return self._get_int('tahoma', 'timeout', 10)
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# WLED
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@property
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def wled_enable(self) -> bool:
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if not self.config.has_section('wled'):
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return False
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return self._get_bool('wled', 'enable', False)
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@property
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def wled_discovery_timeout(self) -> int:
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if not self.config.has_section('wled'):
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return 5
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return self._get_int('wled', 'discovery_timeout', 5)
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@property
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def wled_manual_ips(self) -> List[str]:
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if not self.config.has_section('wled'):
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return []
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return self._get_list('wled', 'manual_ips')
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@property
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def wled_timeout(self) -> int:
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if not self.config.has_section('wled'):
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return 2
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return self._get_int('wled', 'timeout', 2)
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# LOGIC
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@property
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def logic_enable(self) -> bool:
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if not self.config.has_section('logic'):
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return False
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return self._get_bool('logic', 'enable', False)
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# GARTENWASSER
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@property
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def gartenwasser_enable(self) -> bool:
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if not self.config.has_section('gartenwasser'):
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return False
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return self._get_bool('gartenwasser', 'enable', False)
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# MQTT
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@property
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def mqtt_enable(self) -> bool:
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if not self.config.has_section('mqtt'):
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return False
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return self._get_bool('mqtt', 'enable', False)
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@property
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def mqtt_broker(self) -> str:
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if not self.config.has_section('mqtt'):
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return 'localhost'
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return self.config.get('mqtt', 'broker', fallback='localhost').strip()
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@property
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def mqtt_port(self) -> int:
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if not self.config.has_section('mqtt'):
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return 1883
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return self._get_int('mqtt', 'port', 1883)
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@property
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def mqtt_username(self) -> Optional[str]:
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if not self.config.has_section('mqtt'):
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return None
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value = self.config.get('mqtt', 'username', fallback='').strip()
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return value if value else None
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@property
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def mqtt_password(self) -> Optional[str]:
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if not self.config.has_section('mqtt'):
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return None
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value = self.config.get('mqtt', 'password', fallback='').strip()
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return value if value else None
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@property
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def mqtt_discovery_prefix(self) -> str:
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if not self.config.has_section('mqtt'):
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return 'homeassistant'
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return self.config.get('mqtt', 'discovery_prefix', fallback='homeassistant').strip()
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@property
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def mqtt_discovery_timeout(self) -> int:
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if not self.config.has_section('mqtt'):
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return 10
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return self._get_int('mqtt', 'discovery_timeout', 10)
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# Shelly
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@property
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def shelly_enable(self) -> bool:
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if not self.config.has_section('shelly'):
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return False
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return self._get_bool('shelly', 'enable', False)
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@property
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def shelly_network_range(self) -> str:
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if not self.config.has_section('shelly'):
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return '192.168.1'
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return self.config.get('shelly', 'network_range', fallback='192.168.1').strip()
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@property
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def shelly_start_ip(self) -> int:
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if not self.config.has_section('shelly'):
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return 1
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return self._get_int('shelly', 'start_ip', 1)
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@property
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def shelly_end_ip(self) -> int:
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if not self.config.has_section('shelly'):
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return 254
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return self._get_int('shelly', 'end_ip', 254)
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# Options
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@property
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def clear_tables(self) -> bool:
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return self._get_bool('options', 'clear_tables', True)
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@property
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def log_level(self) -> str:
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level = self.config.get('options', 'log_level', fallback='INFO').strip().upper()
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valid_levels = ['DEBUG', 'INFO', 'WARNING', 'ERROR', 'CRITICAL']
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return level if level in valid_levels else 'INFO'
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@property
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def log_file(self) -> Optional[str]:
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value = self.config.get('options', 'log_file', fallback='').strip()
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return value if value else None
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# ============================================================================
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# DATABASE MANAGER (Zentral im Hauptscript)
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# ============================================================================
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class DatabaseManager:
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"""Zentrale Datenbank-Verwaltung - ALLE DB-Operationen hier"""
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PARAMETER_TYPES = {
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0: "bool",
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1: "integer", # Integer value
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2: "float", # Floating point number
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3: "string", # Text string
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4: "undefined",
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5: "time",
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6: "array",
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7: "deltatime",
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8: "date",
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9: "datetime",
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}
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PARAMETER_TYPES_MAPPING = {
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"bool": 0,
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"boolean" : 0,
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"integer" : 1, # Integer value
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"float" : 2, # Floating point number
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"number" : 2, # Floating point number
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"string" : 3, # Text string
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"time" : 5,
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"array": 6,
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"deltatime" : 7,
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"date" : 8,
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"datetime" : 9,
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}
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def __init__(self, host: str, database: str, user: str, password: str, port: int = 3306):
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self.host = host
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self.database = database
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self.user = user
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self.password = password
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self.port = port
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self.connection = None
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def connect(self) -> bool:
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"""Stellt Verbindung zur Datenbank her"""
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try:
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self.connection = pymysql.connect(
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host=self.host,
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database=self.database,
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user=self.user,
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password=self.password,
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port=self.port,
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charset='utf8mb4'
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)
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logger.info("✓ Erfolgreich mit MySQL-Datenbank verbunden")
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return True
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except Error as e:
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logger.error(f"✗ Datenbankverbindung fehlgeschlagen: {e}")
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return False
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def disconnect(self):
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"""Schließt Datenbankverbindung"""
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if self.connection:
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self.connection.close()
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logger.info("Datenbankverbindung geschlossen")
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def clear_tables(self):
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"""Löscht alle Einträge aus allen Tabellen"""
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try:
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cursor = self.connection.cursor()
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cursor.execute("SET FOREIGN_KEY_CHECKS=0")
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cursor.execute("TRUNCATE state_types")
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cursor.execute("TRUNCATE command_parameters")
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cursor.execute("TRUNCATE actor_commands")
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cursor.execute("TRUNCATE actor_states")
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cursor.execute("TRUNCATE actors")
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cursor.execute("TRUNCATE sensor_states")
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cursor.execute("TRUNCATE sensors")
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cursor.execute("SET FOREIGN_KEY_CHECKS=1")
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self.connection.commit()
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logger.info("✓ Alle Tabellen geleert")
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cursor.close()
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except Error as e:
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logger.error(f"✗ Fehler beim Leeren der Tabellen: {e}")
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self.connection.rollback()
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def insert_actor(self, device_type: str, name: str, url: str,
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commands: list, states: list) -> bool:
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"""
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Fügt einen Aktor in die Datenbank ein
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Args:
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device_type: Typ des Geräts
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name: Name des Geräts
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url: Eindeutige URL/ID
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commands: Liste von Command-Dicts
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states: Liste von State-Dicts
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"""
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try:
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cursor = self.connection.cursor()
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# Actor einfügen
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query = """
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INSERT INTO actors (type, name, url)
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VALUES (%s, %s, %s)
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ON DUPLICATE KEY UPDATE
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type = VALUES(type),
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name = VALUES(name)
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"""
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cursor.execute(query, (device_type, name, url))
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query = """
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SELECT ID FROM actors where url = %s
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"""
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cursor.execute(query, (url))
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actor_id = cursor.fetchone()[0]
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# Commands einfügen
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for cmd in commands:
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command_name = cmd.get('command', '')
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command_url = cmd.get('url', '')
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cmd_query = """
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INSERT INTO actor_commands (actor_id, command_name, command_url)
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VALUES (%s, %s, %s)
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ON DUPLICATE KEY UPDATE
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command_url = VALUES(command_url)
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"""
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cursor.execute(cmd_query, (actor_id, command_name, command_url))
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query = """
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SELECT ID FROM actor_commands where actor_id = %s and command_name = %s
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"""
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cursor.execute(query, (actor_id, command_name))
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command_id = cursor.fetchone()[0]
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# Parameter einfügen
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for param in cmd.get('parameters', []):
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param_query = """
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INSERT INTO command_parameters
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(command_id, parameter_name, parameter_type, min_value, max_value, possible_values, url)
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VALUES (%s, %s, %s, %s, %s, %s, %s)
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ON DUPLICATE KEY UPDATE
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parameter_type = VALUES(parameter_type),
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min_value = VALUES(min_value),
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max_value = VALUES(max_value),
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possible_values = VALUES(possible_values),
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url = VALUES(url)
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"""
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param_name = param.get('name', '')
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param_type = self.PARAMETER_TYPES_MAPPING.get(param.get('type', ''), 4)
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min_val = param.get('min')
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max_val = param.get('max')
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possible_vals = json.dumps(param.get('values')) if 'values' in param else ""
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param_url = param.get('url')
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cursor.execute(param_query,
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(command_id, param_name, param_type, min_val, max_val, possible_vals, param_url))
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# States einfügen
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for state in states:
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state_query = """
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INSERT INTO actor_states
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(actor_id, state_name, state_type, current_value, unit, url, possible_values, value_path)
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VALUES (%s, %s, %s, %s, %s, %s, %s, %s)
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ON DUPLICATE KEY UPDATE
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state_type = VALUES(state_type),
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current_value = VALUES(current_value),
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possible_values = VALUES(possible_values),
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unit = VALUES(unit),
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url = VALUES(url),
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value_path = VALUES(value_path)
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"""
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state_name = state.get('name', '')
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state_type = self.PARAMETER_TYPES_MAPPING.get(state.get('type', 0), 4)
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current_value = str(state.get('current_value', '')) if 'current_value' in state else None
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unit = state.get('unit')
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state_url = state.get('url')
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value_path = state.get('value_path')
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possible_vals = json.dumps(state.get('values')) if 'values' in state else ""
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cursor.execute(state_query, (actor_id, state_name, state_type, current_value, unit, state_url, possible_vals, value_path))
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self.connection.commit()
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cursor.close()
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return True
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except Error as e:
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logger.error(f"✗ Fehler beim Einfügen des Aktors {name}: {e}")
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self.connection.rollback()
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return False
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def fillVariableTypes(self):
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cursor = self.connection.cursor()
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query = """
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INSERT INTO state_types (id, type)
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VALUES (%s, %s)
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ON DUPLICATE KEY UPDATE
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type = VALUES(type)
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"""
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for id, parameter_type in self.PARAMETER_TYPES.items():
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cursor.execute(query, (id, parameter_type))
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def insert_sensor(self, device_type: str, name: str, url: str, states: list) -> bool:
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"""
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Fügt einen Sensor in die Datenbank ein
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Args:
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device_type: Typ des Sensors
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name: Name des Sensors
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url: Eindeutige URL/ID
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states: Liste von State-Dicts
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"""
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try:
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cursor = self.connection.cursor()
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|
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# Sensor einfügen
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query = """
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INSERT INTO actors (type, name, url)
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VALUES (%s, %s, %s)
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ON DUPLICATE KEY UPDATE
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type = VALUES(type),
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name = VALUES(name)
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"""
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cursor.execute(query, (device_type, name, url))
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sensor_id = cursor.lastrowid
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query = """
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SELECT ID FROM actors where url = %s
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"""
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|
cursor.execute(query, (url))
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sensor_id = cursor.fetchone()[0]
|
|
|
|
# States einfügen
|
|
for state in states:
|
|
state_query = """
|
|
INSERT INTO actor_states
|
|
(actor_id, state_name, state_type, current_value, unit, url, value_path, possible_values)
|
|
VALUES (%s, %s, %s, %s, %s, %s, %s, %s)
|
|
ON DUPLICATE KEY UPDATE
|
|
state_type = VALUES(state_type),
|
|
current_value = VALUES(current_value),
|
|
unit = VALUES(unit),
|
|
url = VALUES(url),
|
|
value_path = VALUES(value_path),
|
|
possible_values = VALUES(possible_values)
|
|
"""
|
|
state_name = state.get('name', '')
|
|
state_type = self.PARAMETER_TYPES_MAPPING.get(state.get('type', 0), 4)
|
|
current_value = str(state.get('current_value', '')) if 'current_value' in state else None
|
|
unit = state.get('unit')
|
|
state_url = state.get('url')
|
|
value_path = state.get('value_path')
|
|
possible_vals = json.dumps(state.get('values')) if 'values' in state else ""
|
|
|
|
cursor.execute(state_query, (sensor_id, state_name, state_type, current_value, unit, state_url, value_path, possible_vals))
|
|
|
|
self.connection.commit()
|
|
cursor.close()
|
|
return True
|
|
|
|
except Error as e:
|
|
logger.error(f"✗ Fehler beim Einfügen des Sensors {name}: {e}")
|
|
self.connection.rollback()
|
|
return False
|
|
|
|
|
|
# ============================================================================
|
|
# MAIN FUNCTION
|
|
# ============================================================================
|
|
|
|
def main():
|
|
"""Hauptfunktion - orchestriert alle Module mit einheitlicher Schnittstelle"""
|
|
|
|
# Konfiguration laden
|
|
try:
|
|
config = Config('config.ini')
|
|
logger.info("✓ Konfiguration erfolgreich geladen")
|
|
except FileNotFoundError as e:
|
|
print(f"FEHLER: {e}")
|
|
return
|
|
except Exception as e:
|
|
print(f"FEHLER: {e}")
|
|
return
|
|
|
|
# Logging anpassen
|
|
log_level = getattr(logging, config.log_level)
|
|
logger.setLevel(log_level)
|
|
|
|
if config.log_file:
|
|
file_handler = logging.FileHandler(config.log_file, encoding='utf-8')
|
|
file_handler.setLevel(log_level)
|
|
file_handler.setFormatter(logging.Formatter('%(asctime)s - %(levelname)s - %(message)s'))
|
|
logger.addHandler(file_handler)
|
|
logger.info(f"Logging in Datei: {config.log_file}")
|
|
|
|
# Datenbank initialisieren
|
|
logger.info("Verbinde mit MySQL-Datenbank...")
|
|
db = DatabaseManager(
|
|
config.db_host,
|
|
config.db_name,
|
|
config.db_user,
|
|
config.db_password,
|
|
config.db_port
|
|
)
|
|
|
|
if not db.connect():
|
|
logger.error("Datenbankverbindung fehlgeschlagen. Abbruch.")
|
|
return
|
|
|
|
try:
|
|
# Tabellen leeren
|
|
if config.clear_tables:
|
|
db.clear_tables()
|
|
|
|
total_actors = 0
|
|
total_sensors = 0
|
|
|
|
db.fillVariableTypes()
|
|
# Module initialisieren
|
|
modules = [
|
|
TahomaModule(config),
|
|
WLEDModule(config),
|
|
MQTTModule(config),
|
|
ShellyModule(config),
|
|
LogicModule(config),
|
|
GartenwasserModule(config)
|
|
]
|
|
|
|
# Jedes Modul durchlaufen
|
|
for module in modules:
|
|
if not module.is_enabled():
|
|
logger.info(f"Modul {module.get_name()} ist deaktiviert")
|
|
continue
|
|
|
|
try:
|
|
# Discovery durchführen (einheitliche Schnittstelle!)
|
|
actors, sensors = module.discover()
|
|
|
|
# Actors in DB speichern
|
|
for actor in actors:
|
|
if db.insert_actor(
|
|
actor['type'],
|
|
actor['name'],
|
|
actor['url'],
|
|
actor.get('commands', []),
|
|
actor.get('states', [])
|
|
):
|
|
total_actors += 1
|
|
logger.info(f" ✓ Actor: {actor['name']} ({actor['type']})")
|
|
|
|
# Sensors in DB speichern
|
|
for sensor in sensors:
|
|
if db.insert_sensor(
|
|
sensor['type'],
|
|
sensor['name'],
|
|
sensor['url'],
|
|
sensor.get('states', [])
|
|
):
|
|
total_sensors += 1
|
|
logger.info(f" ✓ Sensor: {sensor['name']} ({sensor['type']})")
|
|
|
|
except Exception as e:
|
|
logger.error(f"✗ Fehler bei Modul {module.get_name()}: {e}")
|
|
import traceback
|
|
traceback.print_exc()
|
|
|
|
# Zusammenfassung
|
|
logger.info("\n" + "=" * 60)
|
|
logger.info("ZUSAMMENFASSUNG")
|
|
logger.info("=" * 60)
|
|
logger.info(f"Aktoren gespeichert: {total_actors}")
|
|
logger.info(f"Sensoren gespeichert: {total_sensors}")
|
|
logger.info("=" * 60)
|
|
|
|
logger.info("\n✓ Import erfolgreich abgeschlossen!")
|
|
|
|
except Exception as e:
|
|
logger.error(f"✗ Fehler: {e}")
|
|
import traceback
|
|
traceback.print_exc()
|
|
|
|
finally:
|
|
db.disconnect()
|
|
|
|
|
|
if __name__ == "__main__":
|
|
main()
|