mirror of
https://github.com/PiBrewing/craftbeerpi4.git
synced 2024-11-10 01:17:42 +01:00
421 lines
19 KiB
Python
421 lines
19 KiB
Python
import asyncio
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from cbpi.api import parameters, Property, action
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from cbpi.api.step import StepResult, CBPiFermentationStep
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from cbpi.api.timer import Timer
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from datetime import datetime
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import time
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from voluptuous.schema_builder import message
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from cbpi.api.dataclasses import NotificationAction, NotificationType
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from cbpi.api.dataclasses import Kettle, Props, Fermenter
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from cbpi.api import *
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import logging
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from socket import timeout
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from typing import KeysView
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from cbpi.api.config import ConfigType
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from cbpi.api.base import CBPiBase
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import numpy as np
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import warnings
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@parameters([Property.Text(label="Notification",configurable = True, description = "Text for notification"),
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Property.Select(label="AutoNext",options=["Yes","No"], description="Automatically move to next step (Yes) or pause after Notification (No)")])
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class FermenterNotificationStep(CBPiFermentationStep):
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async def NextStep(self, **kwargs):
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await self.next(self.fermenter.id)
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return StepResult.DONE
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async def on_timer_done(self,timer):
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self.summary = self.props.get("Notification","")
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if self.AutoNext == True:
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self.cbpi.notify(self.name, self.props.get("Notification",""), NotificationType.INFO)
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if self.shutdown != True:
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await self.next(self.fermenter.id)
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return StepResult.DONE
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else:
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self.cbpi.notify(self.name, self.props.get("Notification",""), NotificationType.INFO, action=[NotificationAction("Next Step", self.NextStep)])
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await self.push_update()
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async def on_timer_update(self,timer, seconds):
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await self.push_update()
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async def on_start(self):
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self.shutdown = False
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self.summary=""
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self.AutoNext = False if self.props.get("AutoNext", "No") == "No" else True
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if self.timer is None:
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self.timer = Timer(1 ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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await self.push_update()
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async def on_stop(self):
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await self.timer.stop()
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self.summary = ""
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await self.push_update()
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async def run(self):
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while self.running == True:
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await asyncio.sleep(1)
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if self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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return StepResult.DONE
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@parameters([Property.Number(label="Temp", configurable=True),
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Property.Sensor(label="Sensor"),
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Property.Text(label="Notification",configurable = True, description = "Text for notification when Temp is reached"),
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Property.Select(label="AutoMode",options=["Yes","No"], description="Switch Fermenterlogic automatically on and off -> Yes")])
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class FermenterTargetTempStep(CBPiFermentationStep):
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async def NextStep(self, **kwargs):
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if self.shutdown != True:
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await self.next(self.fermenter.id)
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return StepResult.DONE
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async def on_timer_done(self,timer):
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self.summary = ""
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await self.push_update()
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if self.AutoMode == True:
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await self.setAutoMode(False)
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self.cbpi.notify(self.name, self.props.get("Notification","Target Temp reached. Please add malt and klick next to move on."))
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if self.shutdown == False:
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await self.next(self.fermenter.id)
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return StepResult.DONE
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async def on_timer_update(self,timer, seconds):
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await self.push_update()
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async def on_start(self):
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self.shutdown = False
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self.AutoMode = True if self.props.get("AutoMode","No") == "Yes" else False
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if self.fermenter is not None:
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self.fermenter.target_temp = float(self.props.get("Temp", 0))
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if self.AutoMode == True:
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await self.setAutoMode(True)
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self.summary = "Waiting for Target Temp"
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if self.fermenter is not None and self.timer is None:
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self.timer = Timer(1 ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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await self.push_update()
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async def on_stop(self):
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await self.timer.stop()
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self.summary = ""
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if self.AutoMode == True:
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await self.setAutoMode(False)
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await self.push_update()
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async def run(self):
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while self.get_sensor_value(self.props.get("Sensor", None)).get("value") > 900:
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await asyncio.sleep(1)
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self.starttemp= self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if self.fermenter.target_temp >= self.starttemp:
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logging.info("warmup")
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while self.running == True:
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sensor_value = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if sensor_value >= self.fermenter.target_temp and self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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await asyncio.sleep(1)
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elif self.fermenter.target_temp <= self.starttemp:
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logging.info("Cooldown")
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while self.running == True:
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sensor_value = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if sensor_value <= self.fermenter.target_temp and self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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await asyncio.sleep(1)
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await self.push_update()
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return StepResult.DONE
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async def reset(self):
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self.timer = Timer(1 ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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self.timer.is_running == False
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async def setAutoMode(self, auto_state):
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try:
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if (self.fermenter.instance is None or self.fermenter.instance.state == False) and (auto_state is True):
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await self.cbpi.fermenter.toggle(self.fermenter.id)
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elif (self.fermenter.instance.state == True) and (auto_state is False):
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await self.cbpi.fermenter.toggle(self.fermenter.id)
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await self.push_update()
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except Exception as e:
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logging.error("Failed to switch on FermenterLogic {} {}".format(self.fermenter.id, e))
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@parameters([Property.Number(label="TimerD", description="Timer Days", configurable=True),
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Property.Number(label="TimerH", description="Timer Hours", configurable=True),
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Property.Number(label="TimerM", description="Timer Minutes", configurable=True),
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Property.Number(label="Temp", configurable=True),
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Property.Sensor(label="Sensor"),
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Property.Select(label="AutoMode",options=["Yes","No"], description="Switch Fermenterlogic automatically on and off -> Yes")])
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class FermenterStep(CBPiFermentationStep):
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@action("Start Timer", [])
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async def start_timer(self):
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if self.timer.is_running is not True:
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self.cbpi.notify(self.name, 'Timer started', NotificationType.INFO)
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self.timer.start()
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self.timer.is_running = True
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self.endtime = time.time() + self.fermentationtime
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await self.update_endtime()
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estimated_completion_time = datetime.fromtimestamp(time.time()+ self.fermentationtime)
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self.cbpi.notify(self.name, 'Timer started. Estimated completion: {}'.format(estimated_completion_time.strftime("%d.%m, %H:%M")), NotificationType.INFO)
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else:
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self.cbpi.notify(self.name, 'Timer is already running', NotificationType.WARNING)
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# @action("Add 1 Day to Timer", [])
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# async def add_timer(self):
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# if self.timer.is_running == True:
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# self.cbpi.notify(self.name, '1 Day added', NotificationType.INFO)
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# await self.timer.add(86400)
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# self.endtime = self.endtime +86400
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# await self.update_endtime()
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# else:
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# self.cbpi.notify(self.name, 'Timer must be running to add time', NotificationType.WARNING)
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async def on_timer_done(self,timer):
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self.summary = ""
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if self.AutoMode == True:
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await self.setAutoMode(False)
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self.cbpi.notify(self.name, 'Step finished', NotificationType.SUCCESS)
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if self.shutdown == False:
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await self.next(self.fermenter.id)
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return StepResult.DONE
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async def on_timer_update(self,timer, seconds):
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self.summary = Timer.format_time(seconds)
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await self.push_update()
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async def on_start(self):
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self.shutdown = False
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if self.endtime == 0:
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timeD=int(self.props.get("TimerD", 0))
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timeH=int(self.props.get("TimerH", 0))
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timeM=int(self.props.get("TimerM", 0))
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self.fermentationtime=(timeM+(60*timeH)+(1440*timeD)) *60
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else:
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self.fermentationtime = self.endtime - time.time()
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self.AutoMode = True if self.props.get("AutoMode", "No") == "Yes" else False
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if self.fermenter is not None:
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self.fermenter.target_temp = float(self.props.get("Temp", 0))
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if self.AutoMode == True:
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await self.setAutoMode(True)
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await self.push_update()
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if self.fermenter is not None and self.timer is None:
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logging.info("Set Timer")
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self.timer = Timer(self.fermentationtime ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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self.timer.is_running = False
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elif self.fermenter is not None:
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try:
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if self.timer.is_running == True:
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self.timer.start()
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self.endtime = time.time() + self.fermentationtime
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await self.update_endtime()
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except:
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pass
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if self.endtime != 0 and self.timer is not None and self.timer.is_running == False:
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self.timer.start()
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self.timer.is_running = True
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estimated_completion_time = datetime.fromtimestamp(time.time()+ self.fermentationtime)
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self.cbpi.notify(self.name, 'Timer restarted. Estimated completion: {}'.format(estimated_completion_time.strftime("%d.%m, %H:%M")), NotificationType.INFO)
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self.summary = "Waiting for Target Temp"
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await self.push_update()
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async def on_stop(self):
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await self.timer.stop()
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self.summary = ""
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if self.AutoMode == True:
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await self.setAutoMode(False)
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await self.push_update()
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async def reset(self):
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timeD=int(self.props.get("TimerD", 0))
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timeH=int(self.props.get("TimerH", 0))
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timeM=int(self.props.get("TimerM", 0))
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self.fermentationtime=(timeM+(60*timeH)+(1440*timeD)) *60
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self.timer = Timer(self.fermentationtime ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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self.endtime = 0
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self.timer.is_running == False
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async def run(self):
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while self.get_sensor_value(self.props.get("Sensor", None)).get("value") > 900:
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await asyncio.sleep(1)
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self.starttemp= self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if self.fermenter.target_temp >= self.starttemp:
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logging.info("warmup")
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while self.running == True:
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await asyncio.sleep(1)
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sensor_value = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if sensor_value >= self.fermenter.target_temp and self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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self.endtime = time.time() + self.fermentationtime
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await self.update_endtime()
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estimated_completion_time = datetime.fromtimestamp(time.time()+ self.fermentationtime)
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self.cbpi.notify(self.name, 'Timer started. Estimated completion: {}'.format(estimated_completion_time.strftime("%d.%m, %H:%M")), NotificationType.INFO)
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elif self.fermenter.target_temp <= self.starttemp:
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logging.info("cooldown")
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while self.running == True:
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await asyncio.sleep(1)
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sensor_value = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if sensor_value <= self.fermenter.target_temp and self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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self.endtime = time.time() + self.fermentationtime
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await self.update_endtime()
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estimated_completion_time = datetime.fromtimestamp(time.time()+ self.fermentationtime)
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self.cbpi.notify(self.name, 'Timer started. Estimated completion: {}'.format(estimated_completion_time.strftime("%d.%m, %H:%M")), NotificationType.INFO)
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return StepResult.DONE
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async def setAutoMode(self, auto_state):
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try:
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if (self.fermenter.instance is None or self.fermenter.instance.state == False) and (auto_state is True):
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await self.cbpi.fermenter.toggle(self.fermenter.id)
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elif (self.fermenter.instance.state == True) and (auto_state is False):
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await self.cbpi.fermenter.toggle(self.fermenter.id)
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await self.push_update()
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except Exception as e:
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logging.error("Failed to switch on FermenterLogic {} {}".format(self.fermenter.id, e))
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@parameters([Property.Number(label="Temp", configurable=True, description = "Ramp to this temp"),
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Property.Number(label="RampRate", configurable=True, description = "Ramp x °C/F per day. Default: 1"),
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Property.Sensor(label="Sensor"),
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Property.Text(label="Notification",configurable = True, description = "Text for notification when Temp is reached"),
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Property.Select(label="AutoMode",options=["Yes","No"], description="Switch Fermenterlogic automatically on and off -> Yes")])
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class FermenterRampTempStep(CBPiFermentationStep):
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async def NextStep(self, **kwargs):
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if self.shutdown == False:
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await self.next(self.fermenter.id)
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return StepResult.DONE
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async def on_timer_done(self,timer):
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self.summary = ""
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await self.push_update()
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if self.AutoMode == True:
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await self.setAutoMode(False)
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self.cbpi.notify(self.name, self.props.get("Notification","Target Temp reached. Please add malt and klick next to move on."))
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await self.next(self.fermenter.id)
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return StepResult.DONE
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async def on_timer_update(self,timer, seconds):
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await self.push_update()
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async def on_start(self):
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self.shutdown = False
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self.AutoMode = True if self.props.get("AutoMode","No") == "Yes" else False
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self.rate=float(self.props.get("RampRate",1))
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logging.info(self.rate)
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self.target_temp = round(float(self.props.get("Temp", 0))*10)/10
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logging.info(self.target_temp)
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while self.get_sensor_value(self.props.get("Sensor", None)).get("value") > 900:
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await asyncio.sleep(1)
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self.starttemp = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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self.current_target_temp = self.starttemp
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if self.fermenter is not None:
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await self.set_fermenter_target_temp(self.fermenter.id, self.current_target_temp)
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if self.AutoMode == True:
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await self.setAutoMode(True)
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self.summary = "Ramping to {}° with {}° per day".format(self.target_temp,self.rate)
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if self.fermenter is not None and self.timer is None:
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self.timer = Timer(1 ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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await self.push_update()
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async def on_stop(self):
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await self.timer.stop()
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self.summary = ""
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if self.AutoMode == True:
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await self.setAutoMode(False)
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await self.push_update()
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async def calc_target_temp(self):
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delta_time = time.time() - self.starttime
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current_target_temp = round((self.starttemp + delta_time * self.ratesecond)*10)/10
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# logging.info(current_target_temp)
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if current_target_temp != self.current_target_temp:
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self.current_target_temp = current_target_temp
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await self.set_fermenter_target_temp(self.fermenter.id, self.current_target_temp)
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#self.fermenter.target_temp = self.current_target_temp
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await self.push_update()
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pass
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async def run(self):
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self.delta_temp = self.target_temp-self.starttemp
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try:
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self.deltadays = abs(self.delta_temp / self.rate)
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self.deltaseconds = self.deltadays * 24 * 60 * 60
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self.ratesecond = self.delta_temp/self.deltaseconds
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except Exception as e:
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logging.info(e)
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self.starttime=time.time()
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if self.target_temp >= self.starttemp:
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logging.info("warmup")
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while self.running == True:
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if self.current_target_temp != self.target_temp:
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await self.calc_target_temp()
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sensor_value = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if sensor_value >= self.target_temp and self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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await asyncio.sleep(1)
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elif self.target_temp <= self.starttemp:
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logging.info("Cooldown")
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while self.running == True:
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if self.current_target_temp != self.target_temp:
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await self.calc_target_temp()
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sensor_value = self.get_sensor_value(self.props.get("Sensor", None)).get("value")
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if sensor_value <= self.target_temp and self.timer.is_running is not True:
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self.timer.start()
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self.timer.is_running = True
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await asyncio.sleep(1)
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await self.push_update()
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return StepResult.DONE
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async def reset(self):
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self.timer = Timer(1 ,on_update=self.on_timer_update, on_done=self.on_timer_done)
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self.timer.is_running == False
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async def setAutoMode(self, auto_state):
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try:
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if (self.fermenter.instance is None or self.fermenter.instance.state == False) and (auto_state is True):
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await self.cbpi.fermenter.toggle(self.fermenter.id)
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elif (self.fermenter.instance.state == True) and (auto_state is False):
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await self.fermenter.instance.stop()
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await self.push_update()
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except Exception as e:
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logging.error("Failed to switch on FermenterLogic {} {}".format(self.fermenter.id, e))
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def setup(cbpi):
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'''
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This method is called by the server during startup
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Here you need to register your plugins at the server
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:param cbpi: the cbpi core
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:return:
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'''
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cbpi.plugin.register("FermenterNotificationStep", FermenterNotificationStep)
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cbpi.plugin.register("FermenterTargetTempStep", FermenterTargetTempStep)
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cbpi.plugin.register("FermenterRampTempStep", FermenterRampTempStep)
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cbpi.plugin.register("FermenterStep", FermenterStep)
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