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196 lines
9.3 KiB
Python
196 lines
9.3 KiB
Python
# State machine for the charger
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#
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#
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#------------------------------------------------------------
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import pyPlcTcpSocket
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import time # for time.sleep()
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from helpers import prettyHexMessage
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from exiConnector import * # for EXI data handling/converting
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stateWaitForSupportedApplicationProtocolRequest = 0
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stateWaitForSessionSetupRequest = 1
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stateWaitForServiceDiscoveryRequest = 2
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stateWaitForServicePaymentSelectionRequest = 3
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stateWaitForFlexibleRequest = 4
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stateWaitForChargeParameterDiscoveryRequest = 5
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stateWaitForCableCheckRequest = 6
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stateWaitForPreChargeRequest = 7
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stateWaitForPowerDeliveryRequest = 8
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class fsmEvse():
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def enterState(self, n):
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print("from " + str(self.state) + " entering " + str(n))
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self.state = n
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self.cyclesInState = 0
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def isTooLong(self):
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# The timeout handling function.
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return (self.cyclesInState > 50)
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def stateFunctionWaitForSupportedApplicationProtocolRequest(self):
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if (len(self.rxData)>0):
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print("In state WaitForSupportedApplicationProtocolRequest, received " + prettyHexMessage(self.rxData))
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exidata = removeV2GTPHeader(self.rxData)
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self.rxData = []
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strConverterResult = exiDecode(exidata, "DH") # Decode Handshake-request
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print(strConverterResult)
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if (strConverterResult.find("ProtocolNamespace=urn:din")>0):
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# todo: of course we should care for schemaID and prio also here
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print("Detected DIN")
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# Eh for encode handshake, SupportedApplicationProtocolResponse
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msg = addV2GTPHeader(exiEncode("Eh"))
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForSessionSetupRequest)
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def stateFunctionWaitForSessionSetupRequest(self):
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if (len(self.rxData)>0):
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print("In state stateFunctionWaitForSessionSetupRequest, received " + prettyHexMessage(self.rxData))
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exidata = removeV2GTPHeader(self.rxData)
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self.rxData = []
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strConverterResult = exiDecode(exidata, "DD")
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print(strConverterResult)
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if (strConverterResult.find("SessionSetupReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDa")) # EDa for Encode, Din, SessionSetupResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForServiceDiscoveryRequest)
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForServiceDiscoveryRequest(self):
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if (len(self.rxData)>0):
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print("In state WaitForServiceDiscoveryRequest, received " + prettyHexMessage(self.rxData))
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exidata = removeV2GTPHeader(self.rxData)
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self.rxData = []
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strConverterResult = exiDecode(exidata, "DD")
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print(strConverterResult)
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if (strConverterResult.find("ServiceDiscoveryReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDb")) # EDb for Encode, Din, ServiceDiscoveryResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForServicePaymentSelectionRequest)
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForServicePaymentSelectionRequest(self):
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if (len(self.rxData)>0):
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print("In state WaitForServicePaymentSelectionRequest, received " + prettyHexMessage(self.rxData))
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exidata = removeV2GTPHeader(self.rxData)
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self.rxData = []
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strConverterResult = exiDecode(exidata, "DD")
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print(strConverterResult)
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if (strConverterResult.find("ServicePaymentSelectionReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDc")) # EDc for Encode, Din, ServicePaymentSelectionResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForFlexibleRequest) # todo: not clear, what is specified. The Ioniq sends PowerDeliveryReq as next.
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForFlexibleRequest(self):
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if (len(self.rxData)>0):
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print("In state WaitForFlexibleRequest, received " + prettyHexMessage(self.rxData))
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exidata = removeV2GTPHeader(self.rxData)
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self.rxData = []
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strConverterResult = exiDecode(exidata, "DD")
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print(strConverterResult)
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if (strConverterResult.find("PowerDeliveryReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDh")) # EDh for Encode, Din, PowerDeliveryResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForFlexibleRequest) # todo: not clear, what is specified in DIN
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if (strConverterResult.find("ChargeParameterDiscoveryReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDe")) # EDe for Encode, Din, ChargeParameterDiscoveryResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForFlexibleRequest) # todo: not clear, what is specified in DIN
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if (strConverterResult.find("CableCheckReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDf")) # EDf for Encode, Din, CableCheckResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForFlexibleRequest) # todo: not clear, what is specified in DIN
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if (strConverterResult.find("PreChargeReq")>0):
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# todo: check the request content, and fill response parameters
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msg = addV2GTPHeader(exiEncode("EDg")) # EDg for Encode, Din, PreChargeResponse
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print("responding " + prettyHexMessage(msg))
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self.Tcp.transmit(msg)
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self.enterState(stateWaitForFlexibleRequest) # todo: not clear, what is specified in DIN
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForChargeParameterDiscoveryRequest(self):
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForCableCheckRequest(self):
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForPreChargeRequest(self):
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if (self.isTooLong()):
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self.enterState(0)
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def stateFunctionWaitForPowerDeliveryRequest(self):
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if (len(self.rxData)>0):
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print("In state WaitForPowerDeliveryRequest, received " + prettyHexMessage(self.rxData))
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print("Todo: Reaction in state WaitForPowerDeliveryRequest is not implemented yet.")
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self.rxData = []
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self.enterState(0)
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if (self.isTooLong()):
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self.enterState(0)
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stateFunctions = {
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stateWaitForSupportedApplicationProtocolRequest: stateFunctionWaitForSupportedApplicationProtocolRequest,
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stateWaitForSessionSetupRequest: stateFunctionWaitForSessionSetupRequest,
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stateWaitForServiceDiscoveryRequest: stateFunctionWaitForServiceDiscoveryRequest,
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stateWaitForServicePaymentSelectionRequest: stateFunctionWaitForServicePaymentSelectionRequest,
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stateWaitForFlexibleRequest: stateFunctionWaitForFlexibleRequest,
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stateWaitForChargeParameterDiscoveryRequest: stateFunctionWaitForChargeParameterDiscoveryRequest,
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stateWaitForCableCheckRequest: stateFunctionWaitForCableCheckRequest,
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stateWaitForPreChargeRequest: stateFunctionWaitForPreChargeRequest,
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stateWaitForPowerDeliveryRequest: stateFunctionWaitForPowerDeliveryRequest,
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}
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def reInit(self):
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print("re-initializing fsmEvse")
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self.state = 0
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self.cyclesInState = 0
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self.rxData = []
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def __init__(self):
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print("initializing fsmEvse")
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self.Tcp = pyPlcTcpSocket.pyPlcTcpServerSocket()
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self.state = 0
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self.cyclesInState = 0
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self.rxData = []
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def mainfunction(self):
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self.Tcp.mainfunction() # call the lower-level worker
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if (self.Tcp.isRxDataAvailable()):
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self.rxData = self.Tcp.getRxData()
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#print("received " + str(self.rxData))
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# run the state machine:
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self.cyclesInState += 1 # for timeout handling, count how long we are in a state
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self.stateFunctions[self.state](self)
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if __name__ == "__main__":
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print("Testing the evse state machine")
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evse = fsmEvse()
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print("Press Ctrl-Break for aborting")
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while (True):
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time.sleep(0.1)
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evse.mainfunction()
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