A big rework is needed
A rework of exhaust temp, everything for PSU2 and CPU2 temp is needed. On R430 there is only Inlet Temp sensor which crashes the program. Also if there is only one cpu installed then the program will also crash as there is no OID for cpu2 Adding a try: for above mentioned OIDs and then combining output into one Queue entry should fix it
This commit is contained in:
@@ -99,6 +99,7 @@ class snmpPyIDRACData():
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uptimeD: float | None = None
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uptimeD: float | None = None
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cpu2Temp: float | None = None
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cpu2Temp: float | None = None
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powerDrawPSU2: int | None = None
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powerDrawPSU2: int | None = None
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powerDrawBoard: int | None = None
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voltagePSU2: int | None = None
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voltagePSU2: int | None = None
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@@ -107,6 +108,7 @@ class snmpPyIDRACData():
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f"{self.hostname}\n"
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f"{self.hostname}\n"
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f"PSU1 {self.powerDrawPSU1} Watts\n"
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f"PSU1 {self.powerDrawPSU1} Watts\n"
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f"PSU2 {self.powerDrawPSU2} Watts\n"
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f"PSU2 {self.powerDrawPSU2} Watts\n"
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f"Board {self.powerDrawBoard} Watts\n"
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f"PSU1 {self.voltagePSU1} Volts\n"
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f"PSU1 {self.voltagePSU1} Volts\n"
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f"PSU2 {self.voltagePSU2} Volts\n"
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f"PSU2 {self.voltagePSU2} Volts\n"
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f"Inlet {self.inletTemp} C\n"
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f"Inlet {self.inletTemp} C\n"
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194
cont/funct.py
194
cont/funct.py
@@ -263,8 +263,8 @@ async def ciscoPoolRemote(remoteIP: str, queueToInsrt: asyncio.Queue):
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# return returnObj
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# return returnObj
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await queueToInsrt.put(returnDict)
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await queueToInsrt.put(returnDict)
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# IDRAC get data for snmpPyIDRACData class
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# IDRAC78 get data for snmpPyIDRACData class
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async def idracPoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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async def idrac7_8PoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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snmpEngine = SnmpEngine()
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snmpEngine = SnmpEngine()
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iterator = get_cmd(
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iterator = get_cmd(
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@@ -281,17 +281,17 @@ async def idracPoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.1")), #1
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.1")), #1
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.2")), #2
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.2")), #2
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# (Volts)
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# (Volts)
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.31")), #3
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# ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.31")), #3
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.32")), #4
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# ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.32")), #4
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# Get Inlet, Exhaust, CPU1, CPU2
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# Get Inlet, Exhaust, CPU1, CPU2
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.1")), #5
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.1")), #3
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.2")), #6
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.2")), #4
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.3")), #7
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.3")), #5
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.4")), #8
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.4")), #6
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# Uptime in seconds
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# Uptime in seconds
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.2.5.0")), #9
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.2.5.0")), #7
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)
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)
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errorIndication, errorStatus, errorIndex, varBinds = await iterator
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errorIndication, errorStatus, errorIndex, varBinds = await iterator
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@@ -309,8 +309,54 @@ async def idracPoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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for oid, val in varBinds:
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for oid, val in varBinds:
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print(f"{oid.prettyPrint()} = {val.prettyPrint()}")
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print(f"{oid.prettyPrint()} = {val.prettyPrint()}")
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# for element in varBinds:
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iterator2 = get_cmd(
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# print(element)
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snmpEngine,
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# SNMPv1 = mpModel=0 (SNMPv2c would be mpModel=1)
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# CommunityData("public", mpModel=0),
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USMUSRDATA,
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await UdpTransportTarget.create((remoteIP, SNMPORT)),
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ContextData(),
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# Hostname (sysName.0)
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ObjectType(ObjectIdentity(".1.3.6.1.2.1.1.5.0")), #0
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# PSU1 powerDraw and PSU2 powerDraw (Amps)
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.1")), #1
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.2")), #2
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# (Volts)
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# ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.31")), #3
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# ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.32")), #4
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# Get Inlet, Exhaust, CPU1, CPU2
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.1")), #3
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.2")), #4
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.3")), #5
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.4")), #6
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# Uptime in seconds
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.2.5.0")), #7
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)
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errorIndication2, errorStatus2, errorIndex2, varBinds2 = await iterator2
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if errorIndication2:
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print(errorIndication2)
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elif errorStatus2:
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print(
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"{} at {}".format(
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errorStatus2.prettyPrint(),
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errorIndex2 and varBinds[int(errorIndex2) - 1][0] or "?",
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)
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)
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else:
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for oid, val in varBinds2:
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print(f"{oid.prettyPrint()} = {val.prettyPrint()}")
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voltResult = await walk_column_v3(snmpEngine, remoteIP, ".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1")
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voltList = []
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for thing in voltResult:
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voltList.append(voltResult[thing])
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snmpEngine.close_dispatcher()
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snmpEngine.close_dispatcher()
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# print(varBinds[1][-1])
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# print(varBinds[1][-1])
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@@ -319,27 +365,27 @@ async def idracPoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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hostname=varBinds[0][-1],
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hostname=varBinds[0][-1],
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# Hostname
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# Hostname
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powerDrawPSU1=round((int(varBinds[1][-1]) / 10) * (int(varBinds[3][-1]) / 1000), ROUND_PREC),
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powerDrawPSU1=round((int(varBinds[1][-1]) / 10) * (int(voltList[0]) / 1000), ROUND_PREC),
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powerDrawPSU2=round((int(varBinds[2][-1]) / 10) * (int(varBinds[4][-1]) / 1000), ROUND_PREC),
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powerDrawPSU2=round((int(varBinds[2][-1]) / 10) * (int(voltList[1]) / 1000), ROUND_PREC),
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# PSU1 and PSU2 power draw in Watts
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# PSU1 and PSU2 power draw in Watts
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voltagePSU1=round((int(varBinds[3][-1]) / 1000), ROUND_PREC),
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voltagePSU1=round((int(voltList[0]) / 1000), ROUND_PREC),
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voltagePSU2=round((int(varBinds[4][-1]) / 1000), ROUND_PREC),
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voltagePSU2=round((int(voltList[1]) / 1000), ROUND_PREC),
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# PSU1 and PSU2 voltages
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# PSU1 and PSU2 voltages
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inletTemp=int(varBinds[5][-1] / 10),
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inletTemp=int(varBinds[3][-1] / 10),
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exhaustTemp=int(varBinds[6][-1] / 10),
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exhaustTemp=int(varBinds[4][-1] / 10),
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# Inlet and Exhaust temp
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# Inlet and Exhaust temp
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cpu1Temp=int(varBinds[7][-1] / 10),
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cpu1Temp=int(varBinds[5][-1] / 10),
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cpu2Temp=int(varBinds[8][-1] / 10),
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cpu2Temp=int(varBinds[6][-1] / 10),
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# CPU1 and CPU2 temp
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# CPU1 and CPU2 temp
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uptimeS=int(varBinds[9][-1]),
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uptimeS=int(varBinds[7][-1]),
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# seconds
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# seconds
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uptimeH=round(((int(varBinds[9][-1]) / 60) / 60), ROUND_PREC),
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uptimeH=round(((int(varBinds[7][-1]) / 60) / 60), ROUND_PREC),
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# seconds->minutes->hours
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# seconds->minutes->hours
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uptimeD=round((((int(varBinds[9][-1]) / 60) / 60) / 24), ROUND_PREC)
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uptimeD=round((((int(varBinds[7][-1]) / 60) / 60) / 24), ROUND_PREC)
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# seconds->minutes->hours->days
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# seconds->minutes->hours->days
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)
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)
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@@ -352,6 +398,110 @@ async def idracPoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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await queueToInsrt.put(returnDict)
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await queueToInsrt.put(returnDict)
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# IDRAC get data for snmpPyIDRACData class
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async def idrac9PoolRemote_v3(remoteIP: str, queueToInsrt: asyncio.Queue):
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snmpEngine = SnmpEngine()
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iterator = get_cmd(
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snmpEngine,
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# SNMPv1 = mpModel=0 (SNMPv2c would be mpModel=1)
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# CommunityData("public", mpModel=0),
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USMUSRDATA,
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await UdpTransportTarget.create((remoteIP, SNMPORT)),
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ContextData(),
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# Hostname (sysName.0)
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ObjectType(ObjectIdentity(".1.3.6.1.2.1.1.5.0")), #0
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# PSU1 powerDraw and PSU2 powerDraw (Amps)
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.1")), #1
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.2")), #2
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# (Volts) nevermid, do not querry
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# ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.33")), #3
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# ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1.34")), #4
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# Get Inlet, Exhaust, CPU1, CPU2
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.3")), #3
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.4")), #4
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.1")), #5
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.700.20.1.6.1.2")), #6
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# Uptime in seconds
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.2.5.0")), #7
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# Raw board power draw
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ObjectType(ObjectIdentity(".1.3.6.1.4.1.674.10892.5.4.600.30.1.6.1.3")), #8
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)
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errorIndication, errorStatus, errorIndex, varBinds = await iterator
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if errorIndication:
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print(errorIndication)
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elif errorStatus:
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print(
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"{} at {}".format(
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errorStatus.prettyPrint(),
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errorIndex and varBinds[int(errorIndex) - 1][0] or "?",
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)
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)
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else:
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for oid, val in varBinds:
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print(f"{oid.prettyPrint()} = {val.prettyPrint()}")
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# .1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1
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voltResult = await walk_column_v3(snmpEngine, remoteIP, ".1.3.6.1.4.1.674.10892.5.4.600.20.1.6.1")
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voltList = []
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for thing in voltResult:
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voltList.append(voltResult[thing])
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snmpEngine.close_dispatcher()
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# print(varBinds[1][-1])
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# print(type(varBinds[1][-1]))
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returnObj = snmpPyIDRACData(
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hostname=varBinds[0][-1],
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# Hostname
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powerDrawPSU1=round((int(varBinds[1][-1]) / 10) * (int(voltList[0]) / 1000), ROUND_PREC),
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powerDrawPSU2=round((int(varBinds[2][-1]) / 10) * (int(voltList[1]) / 1000), ROUND_PREC),
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# PSU1 and PSU2 power draw in Watts
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# Total board power consumption
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powerDrawBoard=int(varBinds[8][-1]),
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voltagePSU1=round((int(voltList[0]) / 1000), ROUND_PREC),
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voltagePSU2=round((int(voltList[1]) / 1000), ROUND_PREC),
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# PSU1 and PSU2 voltages
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inletTemp=int(varBinds[3][-1] / 10),
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exhaustTemp=int(varBinds[4][-1] / 10),
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# Inlet and Exhaust temp
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||||||
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cpu1Temp=int(varBinds[5][-1] / 10),
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cpu2Temp=int(varBinds[6][-1] / 10),
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# CPU1 and CPU2 temp
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uptimeS=int(varBinds[7][-1]),
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# seconds
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uptimeH=round(((int(varBinds[7][-1]) / 60) / 60), ROUND_PREC),
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# seconds->minutes->hours
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||||||
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uptimeD=round((((int(varBinds[7][-1]) / 60) / 60) / 24), ROUND_PREC)
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# seconds->minutes->hours->days
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)
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returnDict = {
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"source": "IDRAC",
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"value": returnObj,
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"type": "snmpPyIDRACData"
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}
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# return returnObj
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await queueToInsrt.put(returnDict)
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# IDRAC get FAN data
|
# IDRAC get FAN data
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async def walk_column_v3(snmpEngine, remoteIP: str, base_oid: str) -> dict:
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async def walk_column_v3(snmpEngine, remoteIP: str, base_oid: str) -> dict:
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rows = {}
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rows = {}
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22
cont/main.py
22
cont/main.py
@@ -10,7 +10,8 @@ from classes import *
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|
|
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# Program ENV---------------------------------------
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# Program ENV---------------------------------------
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try:
|
try:
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IDRAC_HOST_LIST: Final[list] = os.getenv("IDRAC_HOST_LIST", None).split(";")
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IDRAC78_HOST_LIST: Final[list] = os.getenv("IDRAC78_HOST_LIST", None).split(";")
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IDRAC9_HOST_LIST: Final[list] = os.getenv("IDRAC9_HOST_LIST", None).split(";")
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CISCO_HOST_LIST: Final[list] = os.getenv("CISCO_HOST_LIST", None).split(";")
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CISCO_HOST_LIST: Final[list] = os.getenv("CISCO_HOST_LIST", None).split(";")
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except:
|
except:
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raise Exception("No IDRAC hosts variable")
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raise Exception("No IDRAC hosts variable")
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@@ -19,19 +20,24 @@ except:
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|||||||
|
|
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# Flightchecks-------------------------------------------
|
# Flightchecks-------------------------------------------
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||||||
# if HOST_LIST empty, raise Exception No hosts passed
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# if HOST_LIST empty, raise Exception No hosts passed
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if not IDRAC_HOST_LIST and not CISCO_HOST_LIST:
|
if not IDRAC78_HOST_LIST and not CISCO_HOST_LIST and not IDRAC9_HOST_LIST:
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raise Exception("No hosts passed\nExiting...")
|
raise Exception("No hosts passed\nExiting...")
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# for host in HOST_LIST check if valid IP and create a list with strings
|
# for host in HOST_LIST check if valid IP and create a list with strings
|
||||||
for idracHost in IDRAC_HOST_LIST:
|
for idrac78Host in IDRAC78_HOST_LIST:
|
||||||
try:
|
try:
|
||||||
ip = str(ipaddress.IPv4Address(idracHost))
|
ip = str(ipaddress.IPv4Address(idrac78Host))
|
||||||
except ValueError:
|
except ValueError:
|
||||||
raise Exception(f" IP {ip} for IDRAC devices is invalid.\nExiting...")
|
raise Exception(f" IP {ip} for IDRAC7/8 devices is invalid.\nExiting...")
|
||||||
for ciscoHost in CISCO_HOST_LIST:
|
for ciscoHost in CISCO_HOST_LIST:
|
||||||
try:
|
try:
|
||||||
ip = str(ipaddress.IPv4Address(ciscoHost))
|
ip = str(ipaddress.IPv4Address(ciscoHost))
|
||||||
except ValueError:
|
except ValueError:
|
||||||
raise Exception(f" IP {ip} for Cisco devices is invalid.\nExiting...")
|
raise Exception(f" IP {ip} for Cisco devices is invalid.\nExiting...")
|
||||||
|
for idrac9Host in IDRAC9_HOST_LIST:
|
||||||
|
try:
|
||||||
|
ip = str(ipaddress.IPv4Address(idrac9Host))
|
||||||
|
except ValueError:
|
||||||
|
raise Exception(f" IP {ip} for IDRAC9 devices is invalid.\nExiting...")
|
||||||
|
|
||||||
# Done under "Program ENV" on line ~18
|
# Done under "Program ENV" on line ~18
|
||||||
|
|
||||||
@@ -52,8 +58,10 @@ async def main():
|
|||||||
|
|
||||||
# IDRAC part
|
# IDRAC part
|
||||||
async with asyncio.TaskGroup() as tg:
|
async with asyncio.TaskGroup() as tg:
|
||||||
for IdracIP in IDRAC_HOST_LIST:
|
for Idrac78IP in IDRAC78_HOST_LIST:
|
||||||
tg.create_task(idracPoolRemote_v3(IdracIP, mainQueue))
|
tg.create_task(idrac7_8PoolRemote_v3(Idrac78IP, mainQueue))
|
||||||
|
for Idrac9IP in IDRAC9_HOST_LIST:
|
||||||
|
tg.create_task(idrac9PoolRemote_v3(Idrac9IP, mainQueue))
|
||||||
# FANS
|
# FANS
|
||||||
# tg.create_task(idracPoolRemoteFAN_v3(IdracIP, mainQueue))
|
# tg.create_task(idracPoolRemoteFAN_v3(IdracIP, mainQueue))
|
||||||
|
|
||||||
|
|||||||
@@ -11,6 +11,7 @@ idracMeasurement = Table(
|
|||||||
|
|
||||||
Column("powerDrawPSU1", Numeric(7, 2)),
|
Column("powerDrawPSU1", Numeric(7, 2)),
|
||||||
Column("powerDrawPSU2", Numeric(7, 2)),
|
Column("powerDrawPSU2", Numeric(7, 2)),
|
||||||
|
Column("powerDrawBoard", Numeric(7, 2)),
|
||||||
Column("voltagePSU1", Numeric(7, 2)),
|
Column("voltagePSU1", Numeric(7, 2)),
|
||||||
Column("voltagePSU2", Numeric(7, 2)),
|
Column("voltagePSU2", Numeric(7, 2)),
|
||||||
|
|
||||||
|
|||||||
Reference in New Issue
Block a user