ECS4610-24F-MIB
AI MIB Summary
The ECS4610-24F-MIB module provides SNMP-based management and monitoring capabilities for the Extreme Networks ECS4610-24F Layer 2/3 Ethernet switch, exposing standard interface statistics, port status states, system resource utilization, and environmental sensor data.
The MIB module for ECS4610-24F.
Main OID:
ecs4610-24fMIB.1.3.6.1.4.1.259.10.1.5
1056
Objects
Active
Status
12
Dependencies
Imported Objects
Objects
1056 total| Object Name |
|---|
accton OBJECT IDENTIFIER .1.3.6.1.4.1.259 |
edgecorenetworks OBJECT IDENTIFIER .1.3.6.1.4.1.259.10 |
edgeCoreNetworksMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1 |
ecs4610-24fMIBThe MIB module for ECS4610-24F. MODULE-IDENTITY .1.3.6.1.4.1.259.10.1.5 |
ecs4610-24fMIBObjects OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1 |
switchMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.1 |
switchNumberThe total number of switches present on this system.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.1.2 |
switchInfoTableTable of descriptive and status information about
the switch units in this system. SEQUENCE OF SwitchInfoEntry .1.3.6.1.4.1.259.10.1.5.1.1.3 |
switchInfoEntryTable providing descriptions and status information for
switch units. SwitchInfoEntry .1.3.6.1.4.1.259.10.1.5.1.1.3.1 |
swUnitIndexThis object identifies the switch within the system
for which this entry contains information. This
value can never be greater than switchNumber. Integer32 .1.3.6.1.4.1.259.10.1.5.1.1.3.1.1 |
swHardwareVerHardware version of the main board.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.2 |
swMicrocodeVerMicrocode version of the main board.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.3 |
swLoaderVerLoader version of the main board.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.4 |
swBootRomVerBoot ROM code version of the main board.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.5 |
swOpCodeVerOperation code version of the main board.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.6 |
swPortNumberThe number of ports on this switch.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.1.3.1.7 |
swPowerStatusIndicates the switch using internalPower(1),
redundantPower(2) or both(3)ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.3.1.8 |
swRoleInSystemIndicates the switch is master(1), backupMaster(2)
or slave(3) in this system.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.3.1.9 |
swSerialNumberSerial number of the switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.10 |
swExpansionSlot1Type of expansion module in this switch slot 1.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.3.1.11 |
swExpansionSlot2Type of expansion module in this switch slot 2.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.3.1.12 |
swServiceTagService tag serial-number of the switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.13 |
swModelNumberModel number of the switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.14 |
swEpldVerThe EPLD version of the switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.15 |
swExpectedModuleOpCodeVerThe module opcode version reside in the switch, note that
this variable represent the desired version of the
module which might plug in. For version validation, only
the swExpectedModuleOpCodeVer of the master
is used. This object is compared with
the swModuleOpCodeVer of the master and all slaves.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.3.1.16 |
switchOperStateGlobal operation state of the switch.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.4 |
switchProductId OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.1.5 |
swProdNameThe product name of this switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.5.1 |
swProdManufacturerThe product manufacturer of this switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.5.2 |
swProdDescriptionThe product description of this switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.5.3 |
swProdVersionThe runtime code version of this switch.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.5.4 |
swProdUrlThe URL of this switch, which we can connect through
a web browser.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.5.5 |
swIdentifierA unique identifier of which switch in the chassis is currently
being looked at.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.1.5.6 |
swChassisServiceTagThe service tag of the chassis this switch resides in.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.1.5.7 |
switchIndivPowerTableTable about the status of individual powers. SEQUENCE OF SwitchIndivPowerEntry .1.3.6.1.4.1.259.10.1.5.1.1.6 |
switchIndivPowerEntryTable about the status of individual power. SwitchIndivPowerEntry .1.3.6.1.4.1.259.10.1.5.1.1.6.1 |
swIndivPowerUnitIndexThis is defined as swUnitIndex.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.1.6.1.1 |
swIndivPowerIndex1 means internal power, 2 means external power.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.6.1.2 |
swIndivPowerStatusnotPresent(1) means not present, green(2) means
up, red(3) means down.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.6.1.3 |
switchJumboFrameStatusenable(1) means the Jumbo Frame has enabled, disabled(2)
means the Jumbo Frame has disabled.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.7 |
amtrMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.1.8 |
amtrMacAddrAgingStatusIf this is enabled(1), the MAC address table will age out according to
its timer. If this is disabled(2), the MAC address table will not
age out.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.1.8.3 |
switchRenumberUnitIDThe value renumber will automatically assign an ID to
units in the stack; all UNIT IDs will be contiguous.
The system configurations are not changed but the system
will restart after renumbering is completed.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.1.14 |
switchSystemJumboMtuSystem jumbo frame size (MTU).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.1.18 |
portMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.2 |
portTableTable of descriptive and status information describing
the configuration of each switch port. This table also
contains information about each trunk. SEQUENCE OF PortEntry .1.3.6.1.4.1.259.10.1.5.1.2.1 |
portEntryAn entry in the table, describing the configuration of
one switch port or trunk. PortEntry .1.3.6.1.4.1.259.10.1.5.1.2.1.1 |
portIndexThe port and the trunk (including trunk members) interface of
the portTable. The interface identified by a particular value
of this index is the same interface as identified by the same
value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.1.1.1 |
portNameThe name of the port or trunk. This is the same as ifAlias
in the IF-MIB (RFC2863 or later).rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.2.1.1.2 |
portTypeIndicates the port type of the configuration of the switch.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.1.1.3 |
portSpeedDpxCfgConfigures the speed and duplex mode for a port or trunk,
according to:
halfDuplex10(2) - 10Mbps and half duplex mode
fullDuplex10(3) - 10Mbps and full duplex mode
halfDuplex100(4) - 100Mbps and half duplex mode
fullDuplex100(5) - 100Mbps and full duplex mode
halfDuplex1000(6) - 1000Mbps and half duplex mode
fullDuplex1000(7) - 1000Mbps and full duplex mode
halfDuplex10g(8) - 10g and half duplex mode
fullDuplex10g(9) - 10g and full duplex mode
hundredBaseTX port can be set as:
halfDuplex10(2)
fullDuplex10(3)
halfDuplex100(4)
fullDuplex100(5)
hundredBaseFX port can be set as:
fullDuplex100(5)
thousandBaseSX port can be set as:
fullDuplex1000(7)
thousandBaseLX port can be set as:
fullDuplex1000(7)
thousandBaseT port can be set as:
halfDuplex10(2)
fullDuplex10(3)
halfDuplex100(4)
fullDuplex100(5)
thousandBaseGBIC port can be set as:
fullDuplex1000(7)
thousandBaseSfp port can be set as:
fullDuplex1000(7)
hundredBaseFxScSingleMode port can be set as:
fullDuplex100(5)
hundredBaseFxScMultiMode port can be set as:
fullDuplex100(5)
thousandBaseCX port can be set as:
fullDuplex1000(7)
tenG port can be set as:
halfDuplex10g(8)
fullDuplex10g(9)
The actual operating speed and duplex of the port
is given by portSpeedDpxStatus.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.1.1.4 |
portFlowCtrlCfg(1) Flow control mechanism is enabled with tx and rx pause
mechansim.
If the port type is hundredBaseTX or thousandBaseSX:
When the port is operating in halfDuplex mode, the
port uses backPressure flow control mechanism. When
the port is operating in fullDuplex mode, the port
uses IEEE 802.3x flow control mechanism.
If the port type is hundredBaseFX:
When the port is operating in halfDuplex mode, the
port uses backPressure flow control mechanism. When
the port is operating in fullDuplex mode, Flow
control mechanism will not function.
(2) Flow control mechanism is disabled.
(5) Flow control mechanism is enabled with tx pause
mechanism only.
(6) Flow control mechansim is enabled with rx pause
mechansim only.
Fast ethernet ports can be set as:
enabled(1),
disabled(2).
Gigabit ethernet ports can be set as:
enabled(1),
disabled(2),
tx(5),
rx(6).
The actual flow control mechanism is used given by
portFlowCtrlStatus.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.1.1.5 |
portCapabilitiesPort or trunk capabilities.rw Bits .1.3.6.1.4.1.259.10.1.5.1.2.1.1.6 |
portAutonegotiationWhether auto-negotiation is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.2.1.1.7 |
portSpeedDpxStatusThe operating speed and duplex mode of the
switched port or trunk. If the entry represents a trunk,
the speed is that of its individual members unless
the member ports have been inconsistently configured
in which case the value is error(1).ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.1.1.8 |
portFlowCtrlStatus(2) BackPressure flow control mechanism is used.
(3) IEEE 802.3 flow control mechanism is used.
(4) Flow control mechanism is disabled.
If the entry represents a trunk and the member ports
have been inconsistently configured then this value
is error(1).ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.1.1.9 |
portTrunkIndexThe trunk to which this port belongs. A value of 0
means that this port does not belong to any trunk.
A value greater than zero means that this port
belongs to a trunk in the trunkIndex, defined by the
corresponding trunkPorts.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.1.1.10 |
portComboForcedModeThis determines the running mode of a combo port.
For a non-combo port, this variable has a value of none(1),
and setting this variable to none(1) has no effect.
For a combo port, this has its own valid values not
equal to none(1), and setting this variable to none(1) is
not allowed. copperForced(2) is set if user want to force
this combo port running in copper mode. copperPreferredAuto(3)
is obsoleted, and user shall not set this state. sfpForced(4)
is set if user want to force this combo port running in fiber
mode. sfpPreferredAuto(5) is set if user want to change copper or
fiber mode automatically by SFP transceiver present state. If SFP
transceiver is present, this combo port will run in fiber mode, and
if SFP transceiver is not present, this combo port will run in
copper mode.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.1.1.12 |
portMtuMaximum frame size of port. If the size of the incoming
packet is larger than this value, the packet will be
discarded.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.2.1.1.16 |
portMacAddrLearningStatusSet this variable to enabled(1) to start to learn MAC
addresses. Set this variable to disabled(2) to stop to
learn MAC addresses.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.2.1.1.17 |
portMacAddrLearningCountThe current number of learned MAC addresses.ro Counter32 .1.3.6.1.4.1.259.10.1.5.1.2.1.1.18 |
cableDiagMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.2.3 |
cableDiagCtlActionTo execute cable diagnostics on a port, assign
cableDiagCtlAction to the value of ifIndex defined
by the ifIndex in the IF-MIB. When read, this object
always returns 0.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.1 |
cableDiagResultTableTable for cable diagnostics result. SEQUENCE OF CableDiagResultEntry .1.3.6.1.4.1.259.10.1.5.1.2.3.2 |
cableDiagResultEntryEntry for cable diagnostics result. CableDiagResultEntry .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1 |
cableDiagResultIfIndexThis is defined as the ifIndex. Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.1 |
cableDiagResultStatusPairAThe result of cable diagnostics. If there is no fault
on the cable, the value is ok(2). Value notTestedYet(1)
means the pair is not tested yet. Value ok(2) means the
pair works well. Value open(3) means there is a lack of
continuity between pins at each end of the pair. Value
short(4) means conductors are short-circuited together on
the pair. Value openShort(5) means the pair has open
and short issues. Value crosstalk(6) means the pair is
incorrectly connected at one end. Value unknown(7) means
pair has an error matching none of the above. Value
impedanceMismatch(8) means different quality cables
connected together. Value failed(9) means test failed.
Value notSupported(10) means cable diagnostics is not
supported. Value noCable(11) means there is no connected
cable.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.2 |
cableDiagResultStatusPairBThe result of cable diagnostics. If there is no fault
on the cable, the value is ok(2). Value notTestedYet(1)
means the pair is not tested yet. Value ok(2) means the
pair works well. Value open(3) means there is a lack of
continuity between pins at each end of the pair. Value
short(4) means conductors are short-circuited together on
the pair. Value openShort(5) means the pair has open
and short issues. Value crosstalk(6) means the pair is
incorrectly connected at one end. Value unknown(7) means
pair has an error matching none of the above. Value
impedanceMismatch(8) means different quality cables
connected together. Value failed(9) means test failed.
Value notSupported(10) means cable diagnostics is not
supported. Value noCable(11) means there is no connected
cable.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.3 |
cableDiagResultStatusPairCThe result of cable diagnostics. If there is no fault
on the cable, the value is ok(2). Value notTestedYet(1)
means the pair is not tested yet. Value ok(2) means the
pair works well. Value open(3) means there is a lack of
continuity between pins at each end of the pair. Value
short(4) means conductors are short-circuited together on
the pair. Value openShort(5) means the pair has open
and short issues. Value crosstalk(6) means the pair is
incorrectly connected at one end. Value unknown(7) means
pair has an error matching none of the above. Value
impedanceMismatch(8) means different quality cables
connected together. Value failed(9) means test failed.
Value notSupported(10) means cable diagnostics is not
supported. Value noCable(11) means there is no connected
cable. If the port is 10/100 type, value of the
node should be ignored.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.4 |
cableDiagResultStatusPairDThe result of cable diagnostics. If there is no fault
on the cable, the value is ok(2). Value notTestedYet(1)
means the pair is not tested yet. Value ok(2) means the
pair works well. Value open(3) means there is a lack of
continuity between pins at each end of the pair. Value
short(4) means conductors are short-circuited together on
the pair. Value openShort(5) means the pair has open
and short issues. Value crosstalk(6) means the pair is
incorrectly connected at one end. Value unknown(7) means
pair has an error matching none of the above. Value
impedanceMismatch(8) means different quality cables
connected together. Value failed(9) means test failed.
Value notSupported(10) means cable diagnostics is not
supported. Value noCable(11) means there is no connected
cable. If the port is 10/100 type, value of the
node should be ignored.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.5 |
cableDiagResultDistancePairADisplays the fault distance of pair A of the cable
in meters.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.6 |
cableDiagResultDistancePairBDisplays the fault distance of pair B of the cable
in meters.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.7 |
cableDiagResultDistancePairCDisplays the fault distance of pair C of the cable
in meters. If the port is 10/100 type, value of the
node is zero.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.8 |
cableDiagResultDistancePairDDisplays the fault distance of pair D of the cable
in meters. If the port is 10/100 type, value of the
node is zero.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.9 |
cableDiagResultDistanceAccuracyDisplays the accuracy in meters of the cable testing.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.10 |
cableDiagResultTimeDisplays the last time of cable diagnostics.
For example, 'Jan 1 02:03:04 2002'.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.2.3.2.1.11 |
loopbackTestMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.2.4 |
loopInternalCtlActionTo execute internal loopback test on a port, assign
loopInternalCtlAction to the value of ifIndex defined
by the ifIndex in the IF-MIB. When read, this object
always returns 0.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.4.1 |
loopInternalResultTableTable for internal loopback test result. SEQUENCE OF LoopInternalResultEntry .1.3.6.1.4.1.259.10.1.5.1.2.4.2 |
loopInternalResultEntryEntry for internal loopback test result. LoopInternalResultEntry .1.3.6.1.4.1.259.10.1.5.1.2.4.2.1 |
loopInternalResultIfIndexThis is defined as the ifIndex. Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.4.2.1.1 |
loopInternalResultStatusThe result of internal loopback.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.2.4.2.1.2 |
loopInternalResultTimeDisplays the last time of internal loopback.
For example, 'Jan 1 02:03:04 2002'.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.2.4.2.1.3 |
portUtilTableDispalys port utilization during recent 300 seconds. SEQUENCE OF PortUtilEntry .1.3.6.1.4.1.259.10.1.5.1.2.6 |
portUtilEntryDispalys port utilization during recent 300 seconds. PortUtilEntry .1.3.6.1.4.1.259.10.1.5.1.2.6.1 |
portUtilIfIndexThe port and trunk interface of the portUtilTable.
The interface identified by a particular value of this
index is the same interface identified by the same value
of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.1 |
portInOctetRateThe input octet rate (kbits/sec) of the port.ro Counter64 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.2 |
portInPacketRateThe input packet rate (pkts/sec) of the port.ro Counter64 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.3 |
portInUtilThe input utilization of the port, in one per
hundred.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.4 |
portOutOctetRateThe output octet rate (kbits/sec) of the port.ro Counter64 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.5 |
portOutPacketRateThe output packet rate (pkts/sec) of the port.ro Counter64 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.6 |
portOutUtilThe output utilization of the port, in one per
hundred.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.6.1.7 |
portVlanTrunkingTableConfigures vlan trunking feature. SEQUENCE OF PortVlanTrunkingEntry .1.3.6.1.4.1.259.10.1.5.1.2.7 |
portVlanTrunkingEntryConfigures vlan trunking feature. PortVlanTrunkingEntry .1.3.6.1.4.1.259.10.1.5.1.2.7.1 |
portVlanTrunkingIfIndexThe port and trunk interface of the portVlanTrunkingTable.
The interface identified by a particular value of this
index is the same interface identified by the same value
of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.2.7.1.1 |
portVlanTrunkingStatusWhether vlan trunking is enabled(1) or disabled(2).rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.2.7.1.2 |
trunkMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.3 |
trunkMaxIdThe maximum number for a trunk identifier.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.3.1 |
trunkValidNumberThe number of valid trunks.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.3.2 |
trunkTableTable describing the configuration and status of each
trunk. SEQUENCE OF TrunkEntry .1.3.6.1.4.1.259.10.1.5.1.3.3 |
trunkEntryAn entry describing the configuration and status of a
particular trunk. TrunkEntry .1.3.6.1.4.1.259.10.1.5.1.3.3.1 |
trunkIndexIdentifies the trunk within the switch that is
described by the table entry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.3.3.1.1 |
trunkPortsThe complete set of ports currently associated with
this trunk.rw PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.3.3.1.2 |
trunkCreationA value of static(1) means a statically configured trunk.
A value of lacp(2) means an LACP-configured trunk.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.3.3.1.3 |
trunkStatusWriting this to valid(1) creates an entry.
Writing this to invalid(2) destroys an entry.
A trunk created by LACP cannot be manually destroyed
or (re)configured.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.3.3.1.4 |
lacpMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.4 |
lacpPortTableTable for LACP port configuration. SEQUENCE OF LacpPortEntry .1.3.6.1.4.1.259.10.1.5.1.4.1 |
lacpPortEntryEntry for LACP port configuration. While an entry may
exist for a particular port, the port may not support
LACP and an attempt to enable LACP may result in
failure. LacpPortEntry .1.3.6.1.4.1.259.10.1.5.1.4.1.1 |
lacpPortIndexThe port interface of the lacpPortTable. The interface
identified by a particular value of this index is the
same interface as identified by the same value of
ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.4.1.1.1 |
lacpPortStatusWhether 802.3ad LACP is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.4.1.1.2 |
staMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.5 |
staSystemStatusGlobal spanning tree status.
(1) Spanning tree protocol is enabled.
(2) Spanning tree protocol is disabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.1 |
staPortTableThe table manages port settings for Spanning Tree
Protocol 802.1d, 802.1w or 802.1s depending on the
value specified by staProtocolType. SEQUENCE OF StaPortEntry .1.3.6.1.4.1.259.10.1.5.1.5.2 |
staPortEntryThe conceptual entry of staPortTable. StaPortEntry .1.3.6.1.4.1.259.10.1.5.1.5.2.1 |
staPortProtocolMigrationWhen operating in RSTP (version 2) mode, writing true(1)
to this object forces this port to transmit RSTP BPDUs.
Any other operation on this object has no effect and
it always returns false(2) when read.rw TruthValue (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.3 |
staPortOperEdgePortThe operational value of the edge port parameter. The object is
initialized to the value of staPortAdminEdgePort and is set false
when a BPDU is received.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.5 |
staPortAdminPointToPointThe administrative point-to-point status of the LAN segment
attached to this port. A value of forceTrue(0) indicates that
this port should always be treated as if it is connected to
a point-to-point link. A value of forceFalse(1) indicates
that this port should be treated as having a shared media
connection. A value of auto(2) indicates that this port is
considered to have a point-to-point link if it is an Aggregator
and all of its members are aggregatable, or if the MAC entity
is configured for full duplex operation, either through
auto-negotiation or by management means.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.2.1.6 |
staPortOperPointToPointThe operational point-to-point status of the LAN segment
attached to this port. This indicates whether a port is
considered to have a point-to-point connection or not.
The value is determined by management or by auto-detection,
as described in the staPortAdminPointToPoint object.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.7 |
staPortSystemStatusPer-port spanning tree status.
(1) Spanning tree protocol is enabled.
(2) Spanning tree protocol is disabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.9 |
staPortLongAdminPathCostThe admin value of the RSTP path cost or MST external pathcost.
The contribution of this port to the path cost (in 32
bits value) of paths towards the spanning tree root which
include this port.
This object is used to configure the spanning tree port
path cost in the 32-bit value range when the
staPathCostMethod is long(2).
If the staPathCostMethod is short(1), this mib object is not
instantiated.
Setting this to 0 means that the path cost is automatically
determined. In this case, read staPortLongOperPathCost to get
the oper value.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.2.1.10 |
staPortLongOperPathCostThe oper value of the RSTP path cost or MST external pathcost.
The contribution of this port to the path cost (in 32
bits value) of paths towards the spanning tree root which
include this port.
This object is used to configure the spanning tree port
path cost in the 32-bit value range when the
staPathCostMethod is long(2).
If the staPathCostMethod is short(1), this mib object is not
instantiated.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.2.1.11 |
staPortBpduFloodingThis parameter is used to configure the capability of BPDUs
flooding.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.12 |
staPortBpduGuardA value of enabled(1) indicates that BPDU port guard feature
is enabled for each port. A value of disabled(2) indicates
that the feature is disabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.15 |
staPortAdminEdgePortWithAutoThe administrative value of the edge port parameter.
A value of enable(1) indicates that this port should be
assumed as an edge-port, a value of disable(2) indicates
that this port should be assumed as a non-edge-port and
a value of auot (3) indicates this port in RSPT or MSTP mode
should be assumed as an edge-port after migration or max age expire
without receiving any BPDU and sending BPDU with proposal flag on.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.2.1.16 |
staPortBpduFilterThe administrative value of the BPDU filter parameter.
A value of enabled(1) indicates that this port will avoid
transmitting BPDUs on edge-port and the value of disabled(2)
indicates that this port will not avoid transmitting BPDUs
on edge-port.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.17 |
staPortRootGuardStatusSpecifies the desired status of the root guard. This variable
configures the root guard feature to enforce the root bridge
placement in the network.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.18 |
staPortBpduGuardAutoRecoveryA value of enabled(1) indicates that BPDU port guard auto
recovery mechanism is enabled for this port. A value of
disabled(2) indicates that the mechanism is disabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.2.1.19 |
staPortBpduGuardAutoRecoveryIntervalThe interval in seconds used by BPDU guard auto recovery
mechanism.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.5.2.1.20 |
staProtocolTypeThe version of Spanning Tree Protocol the bridge is currently
running. The value 'stp(1)' indicates the Spanning Tree
Protocol is as specified in IEEE 802.1D,'rstp(2)' indicates that
the Rapid Spanning Tree Protocol is as specified in IEEE
802.1w, and the value 'mstp(3)' indicates that the Multiple Spanning
Tree Protocol is as specified in IEEE 802.1s. New values may
be defined in the future as new or updated versions of the
protocol become available.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.3 |
staTxHoldCountThe value used by the Port Transmit state machine to limit
the maximum transmission rate.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.4 |
staPathCostMethodIndicates the type of spanning tree path cost mode configured
on the switch. This mode applies to all instances of the
spanning tree protocol running on the switch.
When the value of this MIB object is changed, the path cost of
all ports will be reassigned to the default path cost values
based on the new spanning tree path cost mode and the
ports' speed.
When the value of this MIB object is set to long(2), the
staPortLongPathCost MIB object must be used to retrieve/configure
the spanning tree port path cost as a 32-bit value.
The set operation on dot1dStpPortPathCost in BRIDGE-MIB will be rejected.
While retrieving the value of dot1dStpPortPathCost, the maximum
value of 65535 will be returned if the value of staPortLongPathCost
for the same instance exceeds 65535.
When the value of this MIB object is set to short(1), the
dot1dStpPortPathCost in BRIDGE-MIB must be used.rw StaPathCostMode .1.3.6.1.4.1.259.10.1.5.1.5.5 |
xstMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.5.6 |
mstNameThe name of the Multiple Spanning Tree region.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.5.6.1 |
mstRevisionThe Revision number of the Multiple Spanning Tree region.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.2 |
mstMaxHopsThe max hop number counts of the Multiple Spanning Tree region.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.3 |
xstInstanceCfgTableThis table is used to configure the property of a specific
instance in Multiple Spanning Tree or Rapid Spanning Tree.
If Rapid Spanning Tree protocol is in use, the
mstInstanceEditIndex is always 0. SEQUENCE OF XstInstanceCfgEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.4 |
xstInstanceCfgEntryA conceptual row containing the property of the RST or MST instance. XstInstanceCfgEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1 |
xstInstanceCfgIndexAn arbitrary integer within the range from 1 to the value of
the maximum instance that uniquely identifies a spanning
tree instance. Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.1 |
xstInstanceCfgPriorityThe priority of a specific spanning tree instance.
The value assigned should be in the range 0-61440
in steps of 4096.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.2 |
xstInstanceCfgTimeSinceTopologyChangeThe time (in hundredths of a second) since the last topology
change detected by the bridge entity in RST or MST.ro TimeTicks (SNMPv2-SMI) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.3 |
xstInstanceCfgTopChangesThe total number of topology changes detected by
this bridge in RST or MST since the management entity
was last reset or initialized.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.4 |
xstInstanceCfgDesignatedRootThe bridge identifier of the root of the spanning
tree as determined by the Multiple Spanning Tree Protocol. (802.1s)
or Rapid Spanning Tree Protocol (802.1w) executed by this node.
This value is used as the root identifier parameter in
all configuration bridge PDUs originated by this node.ro BridgeId (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.5 |
xstInstanceCfgRootCostThe cost of the path to the root as seen from
this bridge of the RST or MST.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.6 |
xstInstanceCfgRootPortThe number of the port which offers the
lowest cost path from this bridge to the root
bridge of the RST or MST.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.7 |
xstInstanceCfgMaxAgeThe maximum age of Multiple Spanning Tree Protocol (802.1s)
or Rapid Spanning Tree Protocol (802.1w) information learned
from the network on any port before it is discarded,
in units of hundredths of a second. This is the actual
value that this bridge is currently using.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.8 |
xstInstanceCfgHelloTimeThe amount of time between the transmission of
configuration bridge PDUs by this node on any port
when it is the root of the specific spanning tree or trying
to become so, in units of hundredths of a second.
This is the actual value that this bridge is
currently using in RST or MST.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.9 |
xstInstanceCfgHoldTimeThis time value determines the interval length
during which no more than two configuration bridge
PDUs shall be transmitted by this node, in units
of hundredths of a second.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.10 |
xstInstanceCfgForwardDelayFor RST or MST protocol, this time value, measured in units of
hundredths of a second, controls how fast a port changes
its spanning state when moving towards the forwarding
state. The value determines how long the port
stays in each of the listening and learning
states, which precede the forwarding state. This
value is also used, when a topology change has
been detected and is underway, to age all dynamic
entries in the forwarding database. This value is the
current value being used by the bridge.
xstInstanceCfgBridgeForwardDelay defines the value that
this bridge and all others would start using
if/when this bridge were to become the root.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.11 |
xstInstanceCfgBridgeMaxAgeFor RST or MST protocol, the time (in hundredths of second)
that all bridges use for MaxAge when this bridge is acting
as the root. Note that 802.1D-1990 specifies that the range
for this parameter is related to the value of
xstInstanceCfgBridgeHelloTime. The granularity of this
timer is specified by 802.1D-1990 to be 1 second.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.12 |
xstInstanceCfgBridgeHelloTimeFor RST or MST protocol,the time (in hundredths of a second) that
all bridges use for HelloTime when this bridge is acting
as the root. The granularity of this timer is specified
by 802.1D-1990 to be 1 second.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.13 |
xstInstanceCfgBridgeForwardDelayFor RST or MST protocol, the time (in hundredths of a second)
that all bridges use for ForwardDelay when this bridge
is acting as the root.
Note that 802.1D-1990 specifies that the range for this
parameter is related to the value of
xstInstanceCfgBridgeMaxAge. The granularity of this
timer is specified by 802.1D-1990 to be 1 second.ro Timeout (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.14 |
xstInstanceCfgTxHoldCountFor RST or MST protocol, the value used by the port transmit
state machine to limit the maximum transmission rate.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.15 |
xstInstanceCfgPathCostMethodFor RST or MST protocol, this indicates the type of spanning tree path
cost mode used by the switch. The mode applies to all instances of the
Spanning Tree protocol running on the switch.
When the value of this MIB object is changed, the path cost
of all ports will be reassigned to the default path cost
values based on the new spanning tree path cost mode and the
ports' speed.
When the value of this MIB object is set to long(2),
the xstInstancePortPathCost MIB object must be used in order
to retrieve/configure the spanning tree port path cost as a
32-bit value. The set operation on dot1dStpPortPathCost in
BRIDGE-MIB will be rejected. While retrieving the value of
dot1dStpPortPathCost, the maximum value of 65535 will be
returned if the value of xstInstancePortPathCost for the same
instance exceeds 65535.
When the value of this MIB object is set to short(1),
the dot1dStpPortPathCost in BRIDGE-MIB must be used.ro StaPathCostMode .1.3.6.1.4.1.259.10.1.5.1.5.6.4.1.16 |
xstInstancePortTableThe extension table for dot1dStpPortEntry to provide
additional Spanning Tree information and configuration. SEQUENCE OF XstInstancePortEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.5 |
xstInstancePortEntryThe conceptual row for xstInstancePortTable. XstInstancePortEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1 |
xstInstancePortPriorityDefines the priority used for this port in the Spanning
Tree Algorithm. If the path cost for all ports on a
switch is the same, the port with the highest priority
(i.e., lowest value) will be configured as an active link
in the Spanning Tree. This makes a port with higher
priority less likely to be blocked if the Spanning Tree
Algorithm is detecting network loops. Where more than one
port is assigned the highest priority, the port with
lowest numeric identifier will be enabled.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.3 |
xstInstancePortStateThe port's current state as defined by application of
the Spanning Tree Protocol. This state controls what
action a port takes on reception of a frame:
discarding(1): Port receives configuration messages,
but does not forward packets.
learning(2): Port has transmitted configuration messages
for an interval set by the Forward Delay
parameter without receiving contradictory
information. Port address table is cleared,
and the port begins learning addresses.
forwarding(3): Port forwards packets, and continues learning
addresses.
For ports which are disabled (see xstInstancePortEnable),
this object will have a value of discarding(1).ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.4 |
xstInstancePortEnableThe enabled/disabled status of the port.ro EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.5 |
xstInstancePortDesignatedRootThe unique bridge identifier of the bridge
recorded as the root in the configuration BPDUs
transmitted by the designated bridge for the
segment to which the port is attached.ro BridgeId (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.7 |
xstInstancePortDesignatedCostThe path cost of the designated port of the
segment connected to this port. This value is
compared to the root path cost field in received
bridge PDUs.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.8 |
xstInstancePortDesignatedBridgeThe bridge identifier of the bridge which this
port considers to be the designated bridge for
this port's segment.ro BridgeId (BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.9 |
xstInstancePortDesignatedPortThe port identifier of the port on the designated
bridge for this port's segment.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.10 |
xstInstancePortForwardTransitionsThe number of times this port has transitioned
from the learning state to the forwarding state.ro Counter32 .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.11 |
xstInstancePortPortRoleThe role of the port in the RST or MST protocol:
(1) The port has no role within the spanning tree
(2) The port is part of the active topology connecting
the bridge to the root bridge (i.e., root port)
(3) The port is connecting a LAN through the bridge to the
root bridge (i.e., designated port)
(4) The port may provide connectivity if other
bridges, bridge ports, or LANs fail or are removed.
(5) The port provides backup if other
bridges, bridge ports, or LANs fail or are removed.
(6) For MST protocol only, indicates whether this instance
is in a master role.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.12 |
xstInstancePortAdminPathCostThe admin value of the RST path cost or MST internal path cost,
in the range of 1 to 200000000. 0 indicate the pathcost is
dynamically determined by attribute of the port.
This parameter is used to determine the best path between
devices. Therefore, lower values should be assigned to
ports attached to faster media, and higher values assigned
to ports with slower media. (Path cost takes precedence
over port priority).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.13 |
xstInstancePortOperPathCostThe oper value of the RST pathcost or MST internal pathcost,
in the range of 1 to 200000000.
This parameter is used to determine the best path between
devices. Therefore, lower values should be assigned to
ports attached to faster media, and higher values assigned
to ports with slower media. (Path cost takes precedence
over port priority).ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.5.1.14 |
mstInstanceEditTableThe instance table for the Multiple Spanning Tree region SEQUENCE OF MstInstanceEditEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.6 |
mstInstanceEditEntryA conceptual row containing the status of the MSTP instance. MstInstanceEditEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1 |
mstInstanceEditIndexAn arbitrary integer within the range from 1 to the value of
the maximum instance that uniquely identifies a spanning
tree instance. Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1.1 |
mstInstanceEditVlansMapA string of octets containing one bit per VLAN. The
first octet corresponds to VLANs with vlanIndex values
of 0 through 7; the second octet to VLANs 8 through
15; etc., The most significant bit of each octet
corresponds to the lowest value vlanIndex in that octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.
To create a row, write any of mstInstanceEditVlansMap,
mstInstanceEditVlansMap2k, mstInstanceEditVlansMap3k or
mstInstanceEditVlansMap4k, to a non-empty list.
To destroy a row, write all of these four variables
to an empty list.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1.2 |
mstInstanceEditVlansMap2kA string of octets containing one bit per VLAN for
VLANS with vlanIndex values of 1024 through 2047. The
first octet corresponds to VLANs with vlanIndex values
of 1024 through 1031; the second octet to VLANs 1032
through 1039; etc. The most significant bit of each
octet corresponds to the lowest value vlanIndex in that
octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.
To create a row, write any of mstInstanceEditVlansMap,
mstInstanceEditVlansMap2k, mstInstanceEditVlansMap3k or
mstInstanceEditVlansMap4k, to a non-empty list.
To destroy a row, write all of these four variables
to an empty list.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1.3 |
mstInstanceEditVlansMap3kA string of octets containing one bit per VLAN for
VLANS with vlanIndex values of 2048 through 3071. The
first octet corresponds to VLANs with vlanIndex values
of 2048 through 2055; the second octet to VLANs 2056
through 2063; etc. The most significant bit of each
octet corresponds to the lowest value vlanIndex in that
octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.
To create a row, write any of mstInstanceEditVlansMap,
mstInstanceEditVlansMap2k, mstInstanceEditVlansMap3k or
mstInstanceEditVlansMap4k, to a non-empty list.
To destroy a row, write all of these four variables
to an empty list.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1.4 |
mstInstanceEditVlansMap4kA string of octets containing one bit per VLAN for
VLANS with vlanIndex values of 3072 through 4095. The
first octet corresponds to VLANs with vlanIndex values
of 3072 through 3079; the second octet to VLANs 3080
through 3087; etc. The most significant bit of each
octet corresponds to the lowest value vlanIndex in that
octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.
To create a row, write any of mstInstanceEditVlansMap,
mstInstanceEditVlansMap2k, mstInstanceEditVlansMap3k or
mstInstanceEditVlansMap4k, to a non-empty list.
To destroy a row, write all of these four variables
to an empty list.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1.5 |
mstInstanceEditRemainingHopsThe remaining hop count for this MST instance.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.6.1.6 |
mstInstanceOperTableThe Multiple Spanning Tree region instance vlan mapped table. SEQUENCE OF MstInstanceOperEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.7 |
mstInstanceOperEntryA conceptual row containing the status of the MSTP instance. MstInstanceOperEntry .1.3.6.1.4.1.259.10.1.5.1.5.6.7.1 |
mstInstanceOperIndexAn arbitrary integer within the range from 1 to the value of
the maximum instance that uniquely identifies a spanning
tree instance. Integer32 .1.3.6.1.4.1.259.10.1.5.1.5.6.7.1.1 |
mstInstanceOperVlansMapA string of octets containing one bit per VLAN. The
first octet corresponds to VLANs with vlanIndex values
of 0 through 7; the second octet to VLANs 8 through
15; etc., The most significant bit of each octet
corresponds to the lowest value vlanIndex in that octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.7.1.2 |
mstInstanceOperVlansMap2kA string of octets containing one bit per VLAN for
VLANS with vlanIndex values of 1024 through 2047. The
first octet corresponds to VLANs with vlanIndex values
of 1024 through 1031; the second octet to VLANs 1032
through 1039; etc. The most significant bit of each
octet corresponds to the lowest value vlanIndex in that
octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.7.1.3 |
mstInstanceOperVlansMap3kA string of octets containing one bit per VLAN for
VLANS with vlanIndex values of 2048 through 3071. The
first octet corresponds to VLANs with vlanIndex values
of 2048 through 2055; the second octet to VLANs 2056
through 2063; etc. The most significant bit of each
octet corresponds to the lowest value vlanIndex in that
octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.7.1.4 |
mstInstanceOperVlansMap4kA string of octets containing one bit per VLAN for
VLANS with vlanIndex values of 3072 through 4095. The
first octet corresponds to VLANs with vlanIndex values
of 3072 through 3079; the second octet to VLANs 3080
through 3087; etc. The most significant bit of each
octet corresponds to the lowest value vlanIndex in that
octet.
For each VLAN, if it is mapped to this MSTP instance,
then the bit corresponding to that VLAN is set to '1'.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.5.6.7.1.5 |
staLoopbackDetectionPortTableA table provides the mechanism to configure the
spanning tree loopback detection of each port or trunk SEQUENCE OF StaLoopbackDetectionPortEntry .1.3.6.1.4.1.259.10.1.5.1.5.8 |
staLoopbackDetectionPortEntryA conceptual row of staLoopbackDetectionPortTable. StaLoopbackDetectionPortEntry .1.3.6.1.4.1.259.10.1.5.1.5.8.1 |
staLoopbackDetectionPortIfIndexThe port and the trunk interfaces of the portTable. The interface
identified by a particular value of this index is the same interface
as identified by the same value of ifIndex in the IF-MIB. InterfaceIndex (IF-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.8.1.1 |
staLoopbackDetectionPortStatusStatus of the port on whether spanning tree loopback detection is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.8.1.2 |
staLoopbackDetectionPortTrapStatusThe parameter indicates whether the trap has
to be sent when the loopback BPDUs have been detected.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.5.8.1.3 |
staLoopbackDetectionPortReleaseModeSetting it to auto(1) indicates that this port can be released
from discarding state automatically after loopback has occurred.
Setting it to manual(2) indicates that this port can be released
from discarding state manually after loopback has occurred.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.8.1.4 |
staLoopbackDetectionPortReleaseSet this to release(2) to release the port from discarding state.
noRelease(1) will always be obtained when reading this variable.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.8.1.5 |
staSystemBPDUFloodingGlobal BPDU flooding behavior configuration.
When BPDU is received on spanning tree disabled port.
(1) BPDU is flooded to all other spanning tree disabled ports in vlan that received BPDU.
(2) BPDU is flooded to all other spanning tree disabled ports.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.5.9 |
restartMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.7 |
restartOpCodeFileName of op-code file for start-up.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.7.1 |
restartConfigFileName of configuration file for start-up.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.7.2 |
restartControlSetting this object to warmBoot(2) causes the device to
reinitialize itself such that neither the agent configuration
nor the protocol entity implementation is altered. Setting this
object to coldBoot(3) causes the device to reinitialize itself such
that the agent's configuration or the protocol entity implementation
may be altered. When the device is running normally, this
variable has a value of running(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.7.3 |
mirrorMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.8 |
mirrorTableTable for port mirroring, enabling a port to be mirrored
to/from another port. Not all ports can be mirrored and
limitations may apply as to which ports can be used as either
source or destination ports. SEQUENCE OF MirrorEntry .1.3.6.1.4.1.259.10.1.5.1.8.1 |
mirrorEntryThe conceptual row of mirrorTable. MirrorEntry .1.3.6.1.4.1.259.10.1.5.1.8.1.1 |
mirrorDestinationPortThe destination port interface for mirrored packets.
The interface identified by a particular value of
this index is the same interface as identified by
the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.8.1.1.1 |
mirrorSourcePortThe source port interface for mirrored packets.
The interface identified by a particular value of
this index is the same interface as identified by
the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.8.1.1.2 |
mirrorTypeIf this value is rx(1), receive packets will
be mirrored. If this value is tx(2), transmit
packets will be mirrored. If this value is both(3),
both receive and transmit packets will be mirrored.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.8.1.1.3 |
mirrorStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.8.1.1.4 |
igmpSnoopMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.9 |
igmpSnoopStatusParameter to enable or disable IGMP snooping on the device.
When enabled, the device will examine IGMP packets and set
up filters for IGMP ports.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.1 |
igmpSnoopQuerierEnables (disables) whether the switch acts as an IGMP
querier.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.2 |
igmpSnoopRouterPortExpireTimeSets the time (in seconds) the switch waits after
the previous querier has stopped querying before
the router port (which received query packets from
previous querier) expires.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.9.6 |
igmpSnoopVersionIGMP version snoopedrw Integer32 .1.3.6.1.4.1.259.10.1.5.1.9.7 |
igmpSnoopRouterCurrentTableTable for current router ports. SEQUENCE OF IgmpSnoopRouterCurrentEntry .1.3.6.1.4.1.259.10.1.5.1.9.8 |
igmpSnoopRouterCurrentEntryEntry for current router ports. IgmpSnoopRouterCurrentEntry .1.3.6.1.4.1.259.10.1.5.1.9.8.1 |
igmpSnoopRouterCurrentVlanIndexThe interface identified by a particular value of
this index is the same interface as identified by
the same value of dot1qVlanIndex in the Q-BRIDGE-MIB.
The entry will only appear here after a configure to
igmpSnoopRouterStaticTable. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.8.1.1 |
igmpSnoopRouterCurrentPortsThe set of ports which are current router ports, including static
router ports. Please refer to igmpSnoopRouterStaticTable.ro PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.8.1.2 |
igmpSnoopRouterCurrentStatusThe set of ports which are static multicast router ports.ro PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.8.1.3 |
igmpSnoopRouterStaticTableTable for static router ports. SEQUENCE OF IgmpSnoopRouterStaticEntry .1.3.6.1.4.1.259.10.1.5.1.9.9 |
igmpSnoopRouterStaticEntryEntry for static router ports. IgmpSnoopRouterStaticEntry .1.3.6.1.4.1.259.10.1.5.1.9.9.1 |
igmpSnoopRouterStaticVlanIndexThe interface identified by a particular value of
this index is the same interface as identified by
the same value of dot1qVlanIndex in the Q-BRIDGE-MIB.
The entry will only appear here after a configure to
igmpSnoopRouterStaticTable. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.9.1.1 |
igmpSnoopRouterStaticPortsThe set of ports which are static router ports.rw PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.9.1.2 |
igmpSnoopRouterStaticStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.9.9.1.3 |
igmpSnoopMulticastStaticTableTable for static multicast addresses. SEQUENCE OF IgmpSnoopMulticastStaticEntry .1.3.6.1.4.1.259.10.1.5.1.9.11 |
igmpSnoopMulticastStaticEntryEntry for static multicast addresses. IgmpSnoopMulticastStaticEntry .1.3.6.1.4.1.259.10.1.5.1.9.11.1 |
igmpSnoopMulticastStaticVlanIndexThe interface identified by a particular value of
this index is the same interface as identified by
the same value of dot1qVlanIndex in the Q-BRIDGE-MIB.
The entry will only appear here after a configure to
igmpSnoopMulticastStaticTable. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.11.1.1 |
igmpSnoopMulticastStaticIpAddressIP address of multicast group. IpAddress .1.3.6.1.4.1.259.10.1.5.1.9.11.1.2 |
igmpSnoopMulticastStaticPortsThe set of ports which are members.rw PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.11.1.3 |
igmpSnoopMulticastStaticStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.9.11.1.4 |
igmpSnoopCurrentVlanTableTable for configuring IGMP snooping for each VLAN
which exists in the device by (local or network)
management, or dynamically created as a result of
GVRP requests received. SEQUENCE OF IgmpSnoopCurrentVlanEntry .1.3.6.1.4.1.259.10.1.5.1.9.14 |
igmpSnoopCurrentVlanEntryEntry for configuring IGMP snooping. IgmpSnoopCurrentVlanEntry .1.3.6.1.4.1.259.10.1.5.1.9.14.1 |
igmpSnoopCurrentVlanIndexSame is dot1qVlanIndex in the Q-BRIDGE-MIB.
This table has only one entry - the entry for
the VLAN of the management interface. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.14.1.1 |
igmpSnoopCurrentVlanStatusParameter to enable or disable IGMP snooping on this VLAN.
When enabled, the device will examine IGMP packets and set
up filters for IGMP ports.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.14.1.2 |
igmpSnoopCurrentVlanImmediateLeaveThe parameter to enable or disable the Immediate-Leave feature on this VLAN.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.14.1.3 |
igmpSnoopCurrentVlanGeneralQuerySuppressionThe parameter to enable or disable the general query suppresion
on this VLAN.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.14.1.4 |
igmpSnoopCurrentVlanLastMemQueryCountRepresents the number of queries sent by the switch before
it assumes there are no local members.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.14.1.5 |
igmpSnoopCurrentVlanLastMemQueryIntvlThe last member query interval is the max response time
inserted into group-specific queries sent in response to
leave group messages,and is also the the max response time
inserted into group-and-source-specific query messages.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.14.1.6 |
igmpSnoopCurrentVlanProxyAddressRepresents the address of queries sent by the switch.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.9.14.1.7 |
igmpSnoopCurrentVlanQueryIntvlRepresents the query interval of queries sent by the switch.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.14.1.8 |
igmpSnoopCurrentVlanQueryRespIntvlRepresents the query response interval of queries
sent by the switch.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.14.1.9 |
igmpSnoopCurrentVlanProxyReportingSet this variable to enabled(1) to enable the feature.
Set this variable to disabled(2) to disable the feature.
Set this variable to default(3), the status of the feature
is decided by the global configuration.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.9.14.1.10 |
igmpSnoopCurrentVlanVersionthe version of igmp packets is supported by this vlan.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.14.1.11 |
igmpSnoopCurrentVlanVersionExclusiveEnable/disable control of the IGMP Snooping exclusive
supported version.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.14.1.12 |
igmpSnoopMulticastGroupTableTable for current multicast addresses. SEQUENCE OF IgmpSnoopMulticastGroupEntry .1.3.6.1.4.1.259.10.1.5.1.9.15 |
igmpSnoopMulticastGroupEntryEntry for Group multicast addresses. IgmpSnoopMulticastGroupEntry .1.3.6.1.4.1.259.10.1.5.1.9.15.1 |
igmpSnoopMulticastGroupVlanIndexThe interface identified by a particular value of
this index is the same interface as identified by
the same value of dot1qVlanIndex in the Q-BRIDGE-MIB.
The entry will only appear here after a configure to
igmpSnoopMulticastStaticTable. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.15.1.1 |
igmpSnoopMulticastGroupIpAddressIP address of multicast group. IpAddress .1.3.6.1.4.1.259.10.1.5.1.9.15.1.2 |
igmpSnoopMulticastGroupSourceIPAddressSource IP address of source. IpAddress .1.3.6.1.4.1.259.10.1.5.1.9.15.1.3 |
igmpSnoopMulticastGroupPortsThe set of ports which are members of a multicast group, including
static members. Please refer to igmpSnoopMulticastStaticTable.ro PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.15.1.4 |
igmpSnoopMulticastGroupStatusThe set of ports which are static IGMP member ports.ro PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.15.1.5 |
igmpSnoopPortTableTable of IGMP Snooping service per port. SEQUENCE OF IgmpSnoopPortEntry .1.3.6.1.4.1.259.10.1.5.1.9.27 |
igmpSnoopPortEntryEntry of IGMP Snooping service per port. IgmpSnoopPortEntry .1.3.6.1.4.1.259.10.1.5.1.9.27.1 |
igmpSnoopPortIndexThe port and the trunk (excluding trunk members)
interface of the igmpSnoopPortTable. The interface
identified by a particular value of this index
is the same interface as identified by the same
value of ifIndex in the IF-MIB. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.27.1.1 |
igmpSnoopQueryDropParameter to enable or disable dropping IGMP Query packet.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.9.27.1.3 |
igmpSnoopMulticastDataDropParameter to enable or disable dropping IP multicast datarw Enumeration .1.3.6.1.4.1.259.10.1.5.1.9.27.1.4 |
igmpSnoopGlobalMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.9.28 |
igmpSnoopProxyReportingParameter to enable or disable IGMP snooping proxy reporting
on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.28.1 |
igmpSnoopRouterAlertOptionCheckParameter to enable or disable IGMP snooping router alert
option check on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.28.2 |
igmpSnoopTcnFloodParameter to enable or disable IGMP snooping tcn flood
on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.28.3 |
igmpSnoopTcnQuerySolicitParameter to enable or disable IGMP snooping tcn query
solicit on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.28.4 |
igmpSnoopUnregisteredDataFloodParameter to enable or disable IGMP snooping Unregistered
data flood solicit on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.28.5 |
igmpSnoopUnsolicitedReportIntervalSetting this value to specify how long (in seconds) the
uplink ports should transmit unsolicited reports.rw Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.9.28.6 |
igmpSnoopVersionExclusiveParameter to enable or disable IGMP snooping version
exclusive on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.9.28.7 |
ipMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10 |
netDefaultGatewayThe IP Address of the default gateway. If this value is
undefined or unknown, it shall have the value 0.0.0.0.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.2 |
ipHttpStateWhether HTTP is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.3 |
ipHttpPortThe port number for HTTP.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.4 |
ipDhcpRestartWhen set to restart(1) the DHCP server will restart. When read,
this value always returns noRestart(2).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.5 |
ipHttpsStateWhether HTTPS is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.6 |
ipHttpsPortThe port number for HTTPS.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.7 |
dhcpMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10.11 |
dhcpClient OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10.11.1 |
dhcpcOptions OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1 |
dhcpcInterfaceTableTable for DHCP client information listed by interface.
Depending on the nature of the product, this table may
have only one entry(e.g. for the management VLAN), or
may have many entries(e.g. for all ports, or for all
static VLANs). SEQUENCE OF DhcpcInterfaceEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1 |
dhcpcInterfaceEntryEntry for DHCP client information listed by interface. DhcpcInterfaceEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1.1 |
dhcpcIfIndexThis is defined by ifIndex in the IF-MIB.(static vlan if index) Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1.1.1 |
dhcpcIfClientIdModeWhether the Client ID is in text mode or in Hex mode.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1.1.2 |
dhcpcIfClientIdThe value that the DHCP client sets in the client_id
option of DHCPDISCOVER and DHCPREQUEST messages. This
value may be used by DHCP servers to uniquely identify
the client.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1.1.3 |
dhcpcIfVendorClassIdModeWhether the vendor class ID is in text mode or in
Hex mode.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1.1.4 |
dhcpcIfVendorClassIdThe value that the DHCP client sets in the vendor
class_id option of DHCPDISCOVER and DHCPREQUEST messages.
This value may be used by DHCP servers to identify vendor
classof the client.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.1.1.1.1.5 |
dhcpRelay OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10.11.2 |
dhcpRelayServerAddrTableThe role of the DHCP relay agent is to forward requests
and replies between server and client when they are not
in the same subnet. To enable DHCP relay service the user needs to
specify relay server IP address and then restart DHCP relay.
This table is to specify relay server IP address,
the maximum number of server IP addresses user can specify is 5.
To restart DHCP relay, please use the dhcpRelayRestart variable. SEQUENCE OF DhcpRelayServerAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.2.2 |
dhcpRelayServerAddrEntryA conceptual row of dhcpRelayServerAddrTable. DhcpRelayServerAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.2.2.1 |
dhcpRelayServerAddrIfIndexThe VLAN interface being used by this table entry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.2.2.1.1 |
dhcpRelayServerAddrIndexThe index of the relay server IP address. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.2.2.1.2 |
dhcpRelayServerAddrServerIpThe IP address of the relay server.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.2.2.1.3 |
dhcpRelayRestartSet this object to restart(1) to restart DCHP Relay.
Always get noRestart(2) when you read this variable.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.2.3 |
dhcpRelayServerInetAddrTableThe role of DHCP Relay Agent is to forward requests and replies
between server and client when they are not in the same subnet. To
enable DHCP Relay service user needs to specify Relay Server IP
address and then restart DHCP Relay. This Table is to specify Relay
Server IP address,the maximum numbers of server IP address user can
specify is 5.To Restart DHCP Relay, please use the dhcpRelayRestart
variable. SEQUENCE OF DhcpRelayServerInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.2.4 |
dhcpRelayServerInetAddrEntryA conceptual row of dhcpRelayServerAddrTable. DhcpRelayServerInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.2.4.1 |
dhcpRelayServerInetAddrIfIndexThe VLAN interface being used by this table entry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.2.4.1.1 |
dhcpRelayServerInetAddrIndexThe Index of the Relay server IP address. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.2.4.1.2 |
dhcpRelayServerInetAddressTypeThe INET address type of the relay server.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.2.4.1.3 |
dhcpRelayServerInetAddressThe INET address of the relay server.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.2.4.1.4 |
dhcpServerMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10.11.3 |
dhcpPoolTableA dhcp pool is a collection of
user configuration such as option config-lease time
or dns-server IPs, a network address for network pool,
or a host IP plus a hardware address pair for host pool.
However, a dhcp pool only can either be a network pool
or a host pool, or none of them (such as that pool only
containing option config no network address config
or a host ip config as well) SEQUENCE OF DhcpPoolEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1 |
dhcpPoolEntryA conceptual row of dhcpPoolTable. DhcpPoolEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1 |
dhcpPoolPoolNamePoolName, simply specify a string which
string size NO MORE THAN 8 DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.1 |
dhcpPoolPoolTypePool Type: notSpecify(1); netWork(2);host(3)rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.2 |
dhcpPoolPoolAddressPool Addressrw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.3 |
dhcpPoolSubnetMaskSubnet Maskrw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.4 |
dhcpPoolHardwareTypeHardware type: notSpecify(1); ethernet(2); ieee802(3); fddi(4)rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.5 |
dhcpPoolMacAddressMAC addressrw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.6 |
dhcpPoolstatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.10.11.3.1.1.7 |
dhcpPoolOptionTableThis is the Option table of the dhcpPoolTable,
user can specify Options configuration in this table SEQUENCE OF DhcpPoolOptionEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2 |
dhcpPoolOptionEntryA conceptual row of dhcpPoolOptionTable. DhcpPoolOptionEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1 |
dhcpPoolOptionPoolNamePoolName, simply specify a string which
string size NO MORE THAN 8 DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.1 |
dhcpPoolOptionNextServerSpecifies the IP address of the next server in the boot process,
which is typically a Trivial File Transfer Protocol(TFTP) server.
One IP address is required.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.2 |
dhcpPoolOptionNetbiosNodeTypeSpecifies the NetBIOS node type. Valid types are:
none(1)
b-node(2) - Broadcast
p-node(3) - Peer-to-peer
m-node(4) - Mixed
h-node(5) - Hybrid.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.3 |
dhcpPoolOptionDomainNameSpecifies the domain name string.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.4 |
dhcpPoolOptionBootFileTo specify the name of the default boot image.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.5 |
dhcpPoolOptionLeaseTimeTo configure the duration of the lease,
in seconds, of an
IP address that is assigned from a DHCP Server
to a DHCP client. Valid values are from 1 to
31536000 (365 days), and a large number
'7FFFFFFF'h, which is 'practically infinite'.rw Integer32(1..31536000|'7FFFFFFF'H) UNITS "seconds" .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.6 |
dhcpPoolOptionCidModeSet this variable to text(2) of hex(3)
to specify the mode of the Client Id,
which is useful for CLI to determine the display way of the
Client Id.
You will get default value 'notSpecify(1)'when this variable
had never been set.
Setting this to notSpecify(1) is a invalid operation.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.7 |
dhcpPoolOptionCidBufferContent of Client Id.
You MUST specify the dhcpPoolOptionCidMode before
setting this variable.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.3.2.1.8 |
dhcpPoolOptionDnsSerTableTo specify the DNS IP servers available to a DHCP client,
you can specify up to two addresses for each DHCP pool. SEQUENCE OF DhcpPoolOptionDnsSerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.3 |
dhcpPoolOptionDnsSerEntryA conceptual row of dhcpPoolOptionDnsSerTable. DhcpPoolOptionDnsSerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.3.1 |
dhcpPoolOptionDnsSerPoolNamePoolName, simply specify a string which
string size NO MORE THAN 8 DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.3.1.1 |
dhcpPoolOptionDnsSerIndexIndex of the DNS server. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.3.1.2 |
dhcpPoolOptionDnsSerIpAddressIp address of the DNS server.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.3.1.3 |
dhcpPoolOptDefaultRouterTableSpecifices the default router list for a DHCP Client,
you can specify up to two addresses for each DHCP pool. SEQUENCE OF DhcpPoolOptDefaultRouterEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.4 |
dhcpPoolOptDefaultRouterEntryA conceptual row of dhcpPoolOptDefaultRouterTable. DhcpPoolOptDefaultRouterEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.4.1 |
dhcpPoolOptDefaultRouterPoolNamePoolName, simply specify a string which
string size NO MORE THAN 8 DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.4.1.1 |
dhcpPoolOptDefaultRouterIndexIndex of the default router. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.4.1.2 |
dhcpPoolOptDefaultRouterIpAddressSpecifies the IP address of a router. One IP address is required.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.4.1.3 |
dhcpPoolOptNetbiosServerTableTo configure the NetBIOS WINS name servers that are available
to DHCP clients. You can specify up to eight addressed for each
DHCP pool. SEQUENCE OF DhcpPoolOptNetbiosServerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.5 |
dhcpPoolOptNetbiosServerEntryA conceptual row of dhcpPoolOptNetbiosServerTable. DhcpPoolOptNetbiosServerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.5.1 |
dhcpPoolOptNetbiosServerPoolNamePoolName, simply specify a string which
string size NO MORE THAN 8 DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.5.1.1 |
dhcpPoolOptNetbiosServerIndexIndex of the Netbios name Server. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.5.1.2 |
dhcpPoolOptNetbiosServerIpAddressSpecifies the IP address of the NetBIOS WINS name server.
One IP address is required.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.5.1.3 |
dhcpServerExcludedIpAddrTableTo specify IP addresses that a DHCP Server
shuld not assign to DHCP clients. SEQUENCE OF DhcpServerExcludedIpAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.6 |
dhcpServerExcludedIpAddrEntryA conceptual row of dhcpServerExcludedIpAddrTable. DhcpServerExcludedIpAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.6.1 |
dhcpServerExcludedIpAddrLowIpThe excluded IP address,
or first IP address in an excluded address range. IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.6.1.1 |
dhcpServerExcludedIpAddrHiIpThe last IP address in the excluded address range. IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.6.1.2 |
dhcpServerExcludedIpAddrStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.10.11.3.6.1.3 |
dhcpServerLeaseBindingTableTo configure the address bindings on the DHCP server. SEQUENCE OF DhcpServerLeaseBindingEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7 |
dhcpServerLeaseBindingEntryA conceptual row of dhcpServerLeaseBindingTable. DhcpServerLeaseBindingEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7.1 |
dhcpServerLeaseBindingIpThe IP address of the host as recorded on the DHCP Server. IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7.1.1 |
dhcpServerLeaseBindingMacThe MAC address of the host as recorded on the DHCP Server.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7.1.2 |
dhcpServerLeaseBindingLeaseTimeThe lease expiration date of the IP address of the host.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7.1.3 |
dhcpServerLeaseBindingStartTimeShow current system real time in sec.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7.1.4 |
dhcpServerLeaseBindingStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.10.11.3.7.1.5 |
dhcpServerServiceStatusSetting this to 1 to enable the dhcp server service.
Setting this to 2 to disable the dhcp server service.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.8 |
dhcpPoolInetTableA DHCP pool is a collection of user configuration such as option
config-lease time or DNS-server IPs, a network address for network
pool, or a host IP plus a hardware address pair for host pool.
However, a DHCP pool only can either be a network pool or a host pool,
or none of them (such as that pool only containing option config no
network address config or a host IP config as well). SEQUENCE OF DhcpPoolInetEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9 |
dhcpPoolInetEntryA conceptual row of dhcpPoolInetTable. DhcpPoolInetEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1 |
dhcpPoolInetPoolNamePool name, simply specify a string with its length NO MORE THAN 8. DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.1 |
dhcpPoolInetPoolTypePool type: notSpecify(1), netWork(2), host(3).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.2 |
dhcpPoolInetAddressTypePool address typerw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.3 |
dhcpPoolInetAddressPool addressrw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.4 |
dhcpPoolInetSubnetMaskTypesubnet mask typerw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.5 |
dhcpPoolInetSubnetMasksubnet maskrw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.6 |
dhcpPoolInetHardwareTypeHardware type: notSpecify(1), ethernet(2), ieee802(3) ,fddi(4).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.7 |
dhcpPoolInetMacAddressMAC address.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.8 |
dhcpPoolInetStatusSetting this to valid(1) creates an entry. Setting this to invalid(2)
destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.10.11.3.9.1.9 |
dhcpPoolInetOptionTableThis is the Option table of the dhcpPoolTable, user can specify
options configuration in this table. SEQUENCE OF DhcpPoolInetOptionEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10 |
dhcpPoolInetOptionEntryA conceptual row of dhcpPoolOptionTable. DhcpPoolInetOptionEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1 |
dhcpPoolInetOptionPoolNamePool name, simply specify a string with its length NO MORE THAN 8. DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.1 |
dhcpPoolInetOptionNextServerAddrTypeSpecifies the INET address type of the next server in the
boot process.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.2 |
dhcpPoolInetOptionNextServerAddrSpecifies the INET address of the next server in the boot process,
which is typically a Trivial File Transfer Protocol(TFTP) server. One
INET address is required.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.3 |
dhcpPoolInetOptionNetbiosNodeTypeSpecifies the NetBIOS node type. Valid types are:
none(1)
b-node(2) - Broadcast
p-node(3) - Peer-to-peer
m-node(4) - Mixed
h-node(5) - Hybrid.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.4 |
dhcpPoolInetOptionDomainNameSpecifies the domain name string.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.5 |
dhcpPoolInetOptionBootFileTo specify the name of the default boot image.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.6 |
dhcpPoolInetOptionLeaseTimeTo configure the duration of the lease,
in seconds, of an
IP address that is assigned from a DHCP Server
to a DHCP client. Valid values are from 1 to
31536000 (365 days), and a large number
'7FFFFFFF'h, which is 'practically infinite'.rw Integer32(1..31536000|'7FFFFFFF'H) UNITS "seconds" .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.7 |
dhcpPoolInetOptionCidModeSet this variable to text(2) or hex(3) to specify the mode of the
client ID, which is useful for CLI to determine the display format of
the client ID.
The original value of object is set to 'notSpecify(1)'. But setting it
to notSpecify(1) is a invalid operation.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.8 |
dhcpPoolInetOptionCidBufferContent of Client Id.
dhcpPoolOptionCidMode MUST be specified before setting this variable.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.3.10.1.9 |
dhcpPoolInetOptionDnsSerTableTo specify the DNS IP servers available to a DHCP client, you can
specify up to two addresses for each DHCP pool. SEQUENCE OF DhcpPoolInetOptionDnsSerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.11 |
dhcpPoolInetOptionDnsSerEntryA conceptual row of dhcpPoolOptionDnsSerTable. DhcpPoolInetOptionDnsSerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.11.1 |
dhcpPoolInetOptionDnsSerPoolNamePool name, simply specify a string with its length NO MORE THAN 8. DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.11.1.1 |
dhcpPoolInetOptionDnsSerIndexIndex of the DNS server. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.11.1.2 |
dhcpPoolInetOptionDnsSerAddrTypeINET address type of the DNS server.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.11.1.3 |
dhcpPoolInetOptionDnsSerAddrINET address of the DNS server.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.11.1.4 |
dhcpPoolOptInetDefaultRouterTableSpecifies the default router list for a DHCP Client, you can specify
up to two addresses for each DHCP pool. SEQUENCE OF DhcpPoolOptInetDefaultRouterEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.12 |
dhcpPoolOptInetDefaultRouterEntryA conceptual row of dhcpPoolOptDefaultRouterTable. DhcpPoolOptInetDefaultRouterEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.12.1 |
dhcpPoolOptInetDefaultRouterPoolNamePool name, simply specify a string with its length NO MORE THAN 8. DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.12.1.1 |
dhcpPoolOptInetDefaultRouterIndexIndex of the default router. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.12.1.2 |
dhcpPoolOptInetDefaultRouterAddrTypeSpecifies the INET address type of a router.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.12.1.3 |
dhcpPoolOptInetDefaultRouterAddrSpecifies the INET address of a router.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.12.1.4 |
dhcpPoolOptInetNetbiosServerTableTo configure the NetBIOS WINS name servers that are available to DHCP
clients. You can specify up to eight addressed for each DHCP pool. SEQUENCE OF DhcpPoolOptInetNetbiosServerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.13 |
dhcpPoolOptInetNetbiosServerEntryA conceptual row of dhcpPoolOptNetbiosServerTable. DhcpPoolOptInetNetbiosServerEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.13.1 |
dhcpPoolOptInetNetbiosServerPoolNamePool name, simply specify a string with its length NO MORE THAN 8 DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.13.1.1 |
dhcpPoolOptInetNetbiosServerIndexIndex of the NetBIOS name Server. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.13.1.2 |
dhcpPoolOptInetNetbiosServerAddrTypeSpecifies the INET address type of the NetBIOS WINS name server.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.13.1.3 |
dhcpPoolOptInetNetbiosServerAddrSpecifies the INET address of the NetBIOS WINS name server.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.13.1.4 |
dhcpServerExcludedInetAddrTableTo specify IP addresses that a DHCP Server
should not assign to DHCP clients. SEQUENCE OF DhcpServerExcludedInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14 |
dhcpServerExcludedInetAddrEntryA conceptual row of dhcpServerExcludedIpAddrTable. DhcpServerExcludedInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14.1 |
dhcpServerExcludedInetAddrLowAddrTypeThe excluded INET address type, or first INET address type in an
excluded address range. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14.1.1 |
dhcpServerExcludedInetAddrLowAddrThe excluded INET address, or first INET address in an excluded
address range. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14.1.2 |
dhcpServerExcludedInetAddrHighAddrTypeThe last INET address type in the excluded address range. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14.1.3 |
dhcpServerExcludedInetAddrHighAddrThe last INET address in the excluded address range. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14.1.4 |
dhcpServerExcludedInetAddrStatusSetting this to valid(1) creates an entry. Setting this to invalid(2)
destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.10.11.3.14.1.5 |
dhcpServerInetLeaseBindingTableTo configure the address bindings on the DHCP server. SEQUENCE OF DhcpServerInetLeaseBindingEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15 |
dhcpServerInetLeaseBindingEntryA conceptual row of dhcpServerLeaseBindingTable. DhcpServerInetLeaseBindingEntry .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1 |
dhcpServerInetLeaseBindingAddrTypeThe INET address type of the host as recorded on the DHCP server. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1.1 |
dhcpServerInetLeaseBindingAddrThe INET address of the host as recorded on the DHCP server. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1.2 |
dhcpServerInetLeaseBindingMacThe MAC address of the host as recorded on the DHCP Server.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1.3 |
dhcpServerInetLeaseBindingLeaseTimeThe lease expiration date of the INET address of the host.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1.4 |
dhcpServerInetLeaseBindingStartTimeShow current system real time in sec.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1.5 |
dhcpServerInetLeaseBindingStatusSetting this to valid(1) creates an entry. Setting this to invalid(2)
destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.10.11.3.15.1.6 |
pingMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.10.15 |
pingIpAddressSpecifies the IP address of the device that is planned
to ping.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.15.1 |
pingPacketSizeSpecifies the size of each data potion of ping packets
in bytes.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.15.2 |
pingCompletedA value of true(1) will be read when this ping operation has
been either responded to or changed to the time-out status.
A value of false(2) will be read when there is a ping
operation running and all associated objects in the pingMgt
operation cannot be modified during this period.ro TruthValue (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.10.15.4 |
pingActionThe action of the pingMgt operation. Sets these objects to
pingStart(2) to begin the ping operation. Once the action
is set to pingStart(2), the associated pingMgt objects cannot
be modified until this ping operation is completed
(pingCompleted is true). When the ping has ended or there is
no ping operation performing, this object will get a value of
noAction(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.15.5 |
pingProbeCountSpecifies the number of times to perform a ping operation at a
remote host.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.15.6 |
pingSentPacketsThe value of this object reflects the number of probes sent.
The value of this object must be reported as 0 when no probes
have been sent.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.15.7 |
pingReceivedPacketsNumber of responses received. The value of this object must
be reported as 0 when no probe responses have been received.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.15.8 |
pingPacketLossRatePacket loss rate of this ping operation. This variable is
calculated by pingReceivedPackets and pingSentPackets. The
rate is expressed as a percentage.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.15.9 |
pingHistoryTableContains the executive result information for the ping
operation. SEQUENCE OF PingHistoryEntry .1.3.6.1.4.1.259.10.1.5.1.10.15.10 |
pingHistoryEntryA conceptual row in the pingHistory table. PingHistoryEntry .1.3.6.1.4.1.259.10.1.5.1.10.15.10.1 |
pingHistoryIndexA new entry in this table is created when the result of
a ping probe is determined. The old entries will be cleared
when a new ping action is started. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.15.10.1.1 |
pingHistoryResponseThis variable represents the round trip time and is
measured in milliseconds. The variable is the difference
between received time and sent time for a ping probe. If
the difference value is more than the time-out value or no
response is received, then the variable will be 5000
milliseconds.ro Integer32 UNITS "milliseconds" .1.3.6.1.4.1.259.10.1.5.1.10.15.10.1.2 |
iPAddrTableA table of iPAddrEntry. SEQUENCE OF IPAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.16 |
iPAddrEntryA set of configuration parameters for a particular
network interface on this device. If the device has no network
interface, this table is empty.
The index is composed of the ifIndex assigned to the
corresponding interface. IPAddrEntry .1.3.6.1.4.1.259.10.1.5.1.10.16.1 |
iPAddrIfIndexThe VLAN interface being used by this table entry. Only the
VLAN interfaces which have an IP configured will appear in
the table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.10.16.1.1 |
iPAddrIPAddressThe IP address of this Net interface. The default value
for this object is 0.0.0.0. If either the IPAddrIPAddress
or IPAddrSubnetMask is 0.0.0.0, then when the device
boots, it may use BOOTP to try to figure out what these
values should be. If BOOTP fails, before the device
can talk on the network, this value must be configured
(e.g., through a terminal attached to the device). IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.16.1.2 |
iPAddrSubnetMaskThe subnet mask of this Net interface. The default value
for this object is 0.0.0.0. If either the IPAddrIPAddress
or IPAddrSubnetMask are 0.0.0.0, then when the device
boots, it may use BOOTP to try to figure out what these
values should be. If BOOTP fails, before the device
can talk on the network, this value must be configured
(e.g., through a terminal attached to the device). IpAddress .1.3.6.1.4.1.259.10.1.5.1.10.16.1.3 |
iPAddrPrimaryInterfaceWhether this is a primary interface.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.16.1.4 |
iPAddrUnnumberedWhether this is an unnumbered interface.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.10.16.1.5 |
iPAddrStatusThe status of this conceptual row entry. This object isused to manage the
creation and deletion of conceptual rows.
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has value 'active');
it is not available for use by the managed device, though
the agent has sufficient information to make it so (the
status column has value 'notInService'); or, it is not
available for use by the managed device, and an attempt to
make it so would fail because the agent has insufficient
information (the state column has value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.10.16.1.6 |
vlanMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.12 |
vlanTableTable for VLAN configuration. SEQUENCE OF VlanEntry .1.3.6.1.4.1.259.10.1.5.1.12.1 |
vlanEntryEntry for VLAN configuration. VlanEntry .1.3.6.1.4.1.259.10.1.5.1.12.1.1 |
vlanIndexBased on dot1qVlanIndex in the Q-BRIDGE-MIB.
This table has only one entry - the entry for
the VLAN of the management interface. Unsigned32 .1.3.6.1.4.1.259.10.1.5.1.12.1.1.1 |
vlanAddressMethodMethod to get the IP address.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.1.1.2 |
vlanPortTableTable for port configuration in VLAN. SEQUENCE OF VlanPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.2 |
vlanPortEntryEntry for port configuration in VLAN. VlanPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.2.1 |
vlanPortIndexThe port and the trunk (excluding trunk members) interface of
the portTable. The interface identified by a particular value
of this index is the same interface as identified by the same
value of dot1qPvid in the Q-BRIDGE-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.2.1.1 |
vlanPortModeThis variable sets the 802.1Q VLAN mode.
Setting it to hybrid(1) sets a hybrid link.
Setting it to dot1qTrunk(2) sets a trunk link.
Setting it to access(3) sets an access link.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.2.1.2 |
vlanPortPrivateVlanTypeThe port type defined for private VLAN.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.2.1.3 |
voiceVlanMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.12.6 |
voiceVlanOuiTableA table containing the mac address which can be identified
by voice vlan. SEQUENCE OF VoiceVlanOuiEntry .1.3.6.1.4.1.259.10.1.5.1.12.6.1 |
voiceVlanOuiEntryA table containing the mac address which can be identified
by voice vlan. VoiceVlanOuiEntry .1.3.6.1.4.1.259.10.1.5.1.12.6.1.1 |
voiceVlanOuiAddressMAC address can be identified by voice vlan.ro MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.12.6.1.1.1 |
voiceVlanOuiMaskThe mask of MAC address.rw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.12.6.1.1.2 |
voiceVlanOuiDescriptionThe description of oui.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.12.6.1.1.3 |
voiceVlanOuiStatusCurrent operation status of the row.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.12.6.1.1.4 |
voiceVlanEnabledIdVoice vlan enable status: enabled (2..4094), disabled (-1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.6.2 |
voiceVlanAgingTimeVoice vlan aging time, the unit of which is minute.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.6.3 |
voiceVlanPortTableA list of voice vlan mode entries. SEQUENCE OF VoiceVlanPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.6.7 |
voiceVlanPortEntryAn entry containing voice vlan mode information,
which is applicable to a voice vlan enabled interface. VoiceVlanPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1 |
voiceVlanPortIfIndexThe index of interface on which voice vlan function
is enabled. Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1.1 |
voiceVlanPortModeVoice vlan configuration mode status.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1.2 |
voiceVlanPortSecurityIf the security is enabled, the port is only allow voice
traffuc for the voice vlan.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1.3 |
voiceVlanPortPriorityThe priority of the voice vlan traffic in the port.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1.4 |
voiceVlanPortRuleOuiThe address of voice device is learned from
Oui table.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1.5 |
voiceVlanPortRuleLldpThe address of voice device is learned from
LLDP discovery.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.6.7.1.6 |
vlanDot1qTunnelGlobalConfig OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.12.8 |
vlanDot1qTunnelStatusThis parameter is used to globally enable/disable
802.1Q Tunneling on the device.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.8.1 |
vlanDot1qTunnelPortTableTable for port configuration in 802.1Q Tunneling. SEQUENCE OF VlanDot1qTunnelPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.9 |
vlanDot1qTunnelPortEntryEntry for port configuration in 802.1Q Tunneling. VlanDot1qTunnelPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.9.1 |
vlanDot1qTunnelPortIndexThe port and the trunk (excluding trunk members) interface of
the portTable. The interface identified by a particular value
of this index is the same interface as identified by the same
value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.9.1.1 |
vlanDot1qTunnelPortModeThis variable sets the 802.1Q Tunneling mode.
Setting it to none(1) indicates no mode in this port.
Setting it to access(2) sets as dot1q-tunnel mode port which link to customer.
Setting it to uplink(3) sets as dot1q-tunnel mode port which link to service-provider.
If vlanDot1qTunnelStatus is disabled, it means vlanDot1qTunnelPortMode is inactive.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.9.1.2 |
vlanDot1qTunnelPortEtherTypeTPID for 802.1Q encapsulation. It's used to select a nonstandard
(nondefault) 2-byte ethertype to identify 802.1Q tagged frames.rw Unsigned32 ('0800'h..'ffff'h) .1.3.6.1.4.1.259.10.1.5.1.12.9.1.3 |
macVlanTableA table that contains the settings for MAC-based VLAN. SEQUENCE OF MacVlanEntry .1.3.6.1.4.1.259.10.1.5.1.12.11 |
macVlanEntryA conceptual row in the macVlanTable. MacVlanEntry .1.3.6.1.4.1.259.10.1.5.1.12.11.1 |
macVlanMacAddressThe MAC address that may specify an entry in the table
which contains MAC-based VLAN information. MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.12.11.1.1 |
macVlanIdSpecifies the VLAN ID which the MAC address associates
with.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.11.1.2 |
macVlanPrioritySpecifies the priority whcich the MAC address associates
with.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.11.1.3 |
macVlanStatusSet this to valid(1) to create an entry. Set this to
invalid(2) to destroy an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.12.11.1.4 |
macVlanClearActionAction for clearing macVlanTable. When this object is set
to clear(2), all entries in macVlanTable will be cleared.
When this object is read, the value of this object is
always noClear(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.12 |
subnetVlanTableA table that contains the settings for IP subnet-based
VLAN. SEQUENCE OF SubnetVlanEntry .1.3.6.1.4.1.259.10.1.5.1.12.13 |
subnetVlanEntryA conceptual row in the subnetVlanTable. SubnetVlanEntry .1.3.6.1.4.1.259.10.1.5.1.12.13.1 |
subnetVlanIpAddressThe IPv4 address of a subnet. Any assignment (implicit or
otherwise) of an instance of this object to a value x must
be rejected if the bitwise logical-AND of x with the value
of the corresponding instance of the subnetVlanMask object
is not equal to x. IpAddress .1.3.6.1.4.1.259.10.1.5.1.12.13.1.1 |
subnetVlanMaskThe netmask of a subnet. Any assignment (implicit or
otherwise) of an instance of this object to a value x must
be rejected if the bitwise logical-AND of x with the value
of the corresponding instance of the subnetVlanIpAddress
object is not equal to subnetVlanIpAddress. IpAddress .1.3.6.1.4.1.259.10.1.5.1.12.13.1.2 |
subnetVlanIdSpecifies the VLAN ID which the subnet associates with.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.13.1.3 |
subnetVlanPrioritySpecifies the priority whcich the subnet associates with.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.12.13.1.4 |
subnetVlanStatusSet this to valid(1) to create an entry. Set this to
invalid(2) to destroy an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.12.13.1.5 |
subnetVlanClearActionAction for clearing subnetVlanTable. When this object is
set to clear(2), all entries in subnetVlanTable will be
cleared. When this object is read, the value of this object
is always noClear(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.14 |
vlanStaticTableTable for static VLAN configuration including VLAN aggregation support. SEQUENCE OF VlanStaticEntry .1.3.6.1.4.1.259.10.1.5.1.12.17 |
vlanStaticEntryStatic information for a VLAN configured on the device by (local or
network) management. VlanStaticEntry .1.3.6.1.4.1.259.10.1.5.1.12.17.1 |
vlanStaticIndexThe VLAN ID of the VLAN. VlanIndex (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.17.1.1 |
vlanStaticInterfaceTypeThe interface type of the VLAN (there is a subtype of IANAifType).
l2vlan(135) refers to L2 interface and can't accept any L3 related
configuration. l3ipvlan(136) refers to L3 interface and can accept
L3 related configuration.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.12.17.1.2 |
vlanDot1qTunnelSrvCvidPortTableTable for port configuration to specify how to insert
outer tag by matching customer VLAN ID. SEQUENCE OF VlanDot1qTunnelSrvCvidPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.18 |
vlanDot1qTunnelSrvCvidPortEntryEntry for port configuration to specify how to insert
outer tag by matching customer VLAN ID. VlanDot1qTunnelSrvCvidPortEntry .1.3.6.1.4.1.259.10.1.5.1.12.18.1 |
vlanDot1qTunnelSrvCvidPortIndexThe port interface of the vlanDot1qTunnelSrvCvidPortTable.
The interface identified by a particular value of this
index is the same interface as identified by the same
value of ifIndex in the IF-MIB. InterfaceIndex (IF-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.18.1.1 |
vlanDot1qTunnelSrvCvidPortCvidSpecifies customer VLAN ID. VlanIndex (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.18.1.2 |
vlanDot1qTunnelSrvCvidPortSvidSpecifies service VLAN ID.rw VlanId (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.12.18.1.3 |
vlanDot1qTunnelSrvCvidPortStatusSets to valid(1) to create an entry.
Sets to invalid(2) to destroy an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.12.18.1.5 |
vlanDot1qTunnelSrvCvidPortActionSets to assignSvid(2) to assign service VLAN ID.
Sets to removeCtag(4) to remove customer VLAN tag.rw Bits .1.3.6.1.4.1.259.10.1.5.1.12.18.1.6 |
priorityMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.13 |
prioWrrPortTableTable for per port weighted round robin (WRR). SEQUENCE OF PrioWrrPortEntry .1.3.6.1.4.1.259.10.1.5.1.13.12 |
prioWrrPortEntryEntry for per port weighted round robin (WRR). PrioWrrPortEntry .1.3.6.1.4.1.259.10.1.5.1.13.12.1 |
prioWrrPortIfIndexThe port interface of the prioWrrPortEntry. The interface
identified by a particular value of this index is the
same interface as identified by the same value of
ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.13.12.1.1 |
prioWrrPortTrafficClassTraffic class for this entry, as defined in
dot1dTrafficClass in the P-BRIDGE-MIB. The actual
maximum depends on the hardware, and is
equal to dot1dPortNumTrafficClasses-1. Integer32 .1.3.6.1.4.1.259.10.1.5.1.13.12.1.2 |
prioWrrPortWeightWeight for this entry.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.13.12.1.3 |
prioSchedModePortTableTable for per port scheduling mode. SEQUENCE OF PrioSchedModePortEntry .1.3.6.1.4.1.259.10.1.5.1.13.15 |
prioSchedModePortEntryEntry for per port scheduling mode. PrioSchedModePortEntry .1.3.6.1.4.1.259.10.1.5.1.13.15.1 |
prioSchedModePortIndexThe port interface of the prioSchedModePortEntry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.13.15.1.1 |
prioSchedModePortThe scheduling mode status of ethernet port.
wrr(1), strict(2), strict-wrr(4)rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.13.15.1.2 |
trapDestMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.14 |
trapDestTableA list of trap destination entries. SEQUENCE OF TrapDestEntry .1.3.6.1.4.1.259.10.1.5.1.14.1 |
trapDestEntryA destination entry describes the destination IP address,
the community string, and SNMP version to use when sending
a trap. TrapDestEntry .1.3.6.1.4.1.259.10.1.5.1.14.1.1 |
trapDestAddressThe address to send traps. IpAddress .1.3.6.1.4.1.259.10.1.5.1.14.1.1.1 |
trapDestCommunityA community to which this destination address belongs.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.14.1.1.2 |
trapDestStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.14.1.1.3 |
trapDestVersionDetermines the version of the trap that is to be sent to the
trap receiver. If the value is 1, then an SNMP version 1 trap
is sent and if the value is 2, an SNMP version 2 trap is
sent.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.14.1.1.4 |
trapDestUdpPortDetermines the UDP port number that the trap will be sent to.rw Integer32 ( 1..65535) .1.3.6.1.4.1.259.10.1.5.1.14.1.1.5 |
trapVar OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.14.2 |
trapIpFilterRejectModeThis variable is for trap var binding,
indicated the ipfilter reject mode.
web(1),
snmp(2),
telnet(3).ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.14.2.6 |
trapIpFilterRejectIpThis variable is for trap var binding,
indicating the IP address that rejected by the ipfilter.ro IpAddress .1.3.6.1.4.1.259.10.1.5.1.14.2.7 |
trapLoginModeThis variable is for trap var binding,
indicated the login mode.
console(1),
telnet(2),
web(3).ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.14.2.19 |
trapLoginUsernameThis variable is for trap var binding,
indicating the login username.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.14.2.20 |
trapLoginIpThis variable is for trap var binding,
indicating the login IP address.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.14.2.21 |
qosMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.16 |
rateLimitMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.16.1 |
rateLimitPortTableTable for rate limit of each port. SEQUENCE OF RateLimitPortEntry .1.3.6.1.4.1.259.10.1.5.1.16.1.2 |
rateLimitPortEntryEntry for rate limit of each port. RateLimitPortEntry .1.3.6.1.4.1.259.10.1.5.1.16.1.2.1 |
rlPortIndexThe port and the trunk (including trunk member) interface of
the portTable. The interface identified by a particular value
of this index is the same interface as identified by the same
value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.1.2.1.1 |
rlPortInputLimitValue of the input rate limit. Its unit is megabits per
second. For a 100 Mbps port, the range is 1 to 100.
For a 1000 Mbps port, the range is 1 to 1000.
For a 10 Gbps port, the range is 1 to 10000.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.1.2.1.2 |
rlPortOutputLimitValue of the output rate limit. Its unit is megabits per
second. For a 100 Mbps port, the range is 1 to 100.
For a 1000 Mbps port, the range is 1 to 1000.
For a 10 Gbps port, the range is 1 to 10000.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.1.2.1.3 |
rlPortInputStatusWhether input rate limit is enabled for this port.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.16.1.2.1.6 |
rlPortOutputStatusWhether output rate limit is enabled for this port.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.16.1.2.1.7 |
cosMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.16.3 |
prioAclToCosMappingTableTable for ACL to CoS Mapping. SEQUENCE OF PrioAclToCosMappingEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.1 |
prioAclToCosMappingEntryEntry for ACL to CoS Mapping. PrioAclToCosMappingEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.1.1 |
prioAclToCosMappingIfIndexThe port interface of the prioAclToCosMappingEntry. The interface
identified by a particular value of this index is the
same interface as identified by the same value of
ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.1.1.1 |
prioAclToCosMappingAclNameThe name of an IP ACL. Within a feature a unique name is
used to identify the list to which the entry belongs
in the device. DisplayString .1.3.6.1.4.1.259.10.1.5.1.16.3.1.1.2 |
prioAclToCosMappingCosValueCoS value of the prioAclToCosMappingTable.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.1.1.3 |
prioAclToCosMappingStatusThe status of this conceptual row entry. This object isused to manage the
creation and deletion of conceptual rows.
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has value 'active');
it is not available for use by the managed device, though
the agent has sufficient information to make it so (the
status column has value 'notInService'); or, it is not
available for use by the managed device, and an attempt to
make it so would fail because the agent has insufficient
information (the state column has value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.16.3.1.1.4 |
prioIfClassificationModeTableTable for setting the interface Qos mapping classification mode. SEQUENCE OF PrioIfClassificationModeEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.2 |
prioIfClassificationModeEntryEntry for setting the interface Qos mapping classification mode. PrioIfClassificationModeEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.2.1 |
prioIfClassificationModeIfThe port or trunk interface of the device. The interface identified by
a particular value of this index is the same interface as identified
by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.2.1.1 |
prioIfClassificationModeStatusThe Qos mapping classification mode of the interface. cos mode means
that the internal priority is mapped from priority field of packet's
VLAN tag if a VLAN tag exists; IP precedence mode means that the
internal priority is mapped from the IP precedence value of IP
packets; DSCP mode means the internal priority is mapped from the dscp
value of IP packets.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.3.2.1.2 |
prioCosToDscpTableTable for CoS/CFI to internal QoS label mapping. SEQUENCE OF PrioCosToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.3 |
prioCosToDscpEntryEntry for CoS/CFI to internal QoS label mapping. PrioCosToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.3.1 |
prioCosToDscpIfValueThe port or the trunk interface of the device. The interface
identified by a particular value of this index is the same interface
as identified by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.3.1.1 |
prioCosToDscpCosValueThe CoS value (0~7) mapped to an internal QoS label value which is
composed of PHB(3 bits) and drop precedence(2 bits). Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.3.1.2 |
prioCosToDscpCFIValueThe CFI value (0 or 1) mapped to an internal QoS label value which is
composed of PHB(3 bits) and drop precedence(2 bits). Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.3.1.3 |
prioCosToDscpDscpValueThe DSCP value used to represent the internal QoS label (3 bits PHB+2
bits Drop precedence). The MSB 4 bits of DSCP is used to represent PHB
value of QoS label; The LSB 2 bits of DSCP are used to represent the
drop precedence value of QoS label. Green(0), Yellow(3), Red(1). In a
word, PHB=(DSCP>>2), Drop precedence=(DSCP & 0x3).
Note: The setting range of PHB value must be 0~7 and the setting drop
precedence value must be one of the values (0,1,3).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.3.1.4 |
prioPrecToDscpTableTable for IP precedence to internal QoS label mapping. This table
setting will take effect only when the interface QoS mapping
classification mode is set to IP precedence mode. SEQUENCE OF PrioPrecToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.4 |
prioPrecToDscpEntryEntry for IP precedence to internal QoS label mapping. PrioPrecToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.4.1 |
prioPrecToDscpIfValueThe port or trunk interface of the device. The interface identified by
a particular value of this index is the same interface as identified
by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.4.1.1 |
prioPrecToDscpPrecValueThe IP precedence value mapped to internal QoS label value which is
composed of PHB (3 bits) and drop precedence (2 bits). Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.4.1.2 |
prioPrecToDscpDscpValueThe DSCP value used to represent internal QoS label (3 bits PHB + 2
bits Drop precedence). The MSB 4 bits of DSCP are used to represent
PHB value of QoS label; The LSB 2 bits of DSCP are used to represent
the drop precedence value of QoS label. Green(0),Yellow(3), Red(1).
In a word, PHB=(DSCP>>2), Drop precedence=(DSCP & 0x3). Note: The
setting range of PHB value must be 0~7 and the setting drop precedence
value must be one of values(0,1,3).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.4.1.3 |
prioDscpToDscpTableTable for DSCP to internal QoS label mapping. This table setting will
take effect only when the interface Qos mapping classification mode is
set to DSCP mode. SEQUENCE OF PrioDscpToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.5 |
prioDscpToDscpEntryEntry for ingress DSCP to internal QoS label mapping. PrioDscpToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.5.1 |
prioDscpToDscpIfValueThe port or trunk interface of the device. The interface identified by
a particular value of this index is the same interface as identified
by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.5.1.1 |
prioDscpToDscpIngressDscpValueThe ingress DSCP value which will be mapped to internal QoS label
value. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.5.1.2 |
prioDscpToDscpDscpValueThe DSCP value used to represent internal QoS label (3 bits PHB + 2
bits Drop precedence). The MSB 4 bits of DSCP are used to represent
PHB value of Qos label. The LSB 2 bits of DSCP are used to represent
the drop precedence value of QoS label. Green(0),Yellow(3), Red(1).
In a word, PHB=(DSCP>>2), Drop precedence=(DSCP & 0x3).
Note: The setting range of PHB value must be 0~7 and the setting drop
precedence value must be one of values (0,1,3).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.5.1.3 |
prioDstPortToDscpTableTable for TCP/UDP destination port number to internal Qos label
mapping. This table setting will always take effect for TCP/UDP
packets no matter of what interface QoS mapping classification mode is
set. SEQUENCE OF PrioDstPortToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.6 |
prioDstPortToDscpEntryEntry for TCP/UDP destination port to internal QoS label mapping. PrioDstPortToDscpEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.6.1 |
prioDstPortToDscpIfValueThe port or the trunk interface of the device. The interface
identified by a particular value of this index is the same interface
as identified by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.6.1.1 |
prioDstPortToDscpProtocolValueThe protocol value (TCP:6, UDP:17) which will be mapped to internal
QoS label value. Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.3.6.1.2 |
prioDstPortToDscpDstPortValueThe destination port number value which will be mapped to internal
QoS label value. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.6.1.3 |
prioDstPortToDscpDscpValueThe DSCP value used to represent internal QoS label (3 bits PHB + 2
bits Drop precedence). The MSB 4 bits of DSCP is used to represent PHB
value of QoS label. The LSB 2 bits of DSCP is used to represent the
drop precedence value of Qos label. Green(0),Yellow(3), Red(1). In a
word, PHB=(DSCP>>2), Drop precedence=(DSCP & 0x3). Note: The setting
range of PHB value must be 0~7 and the setting drop precedence value
must be one of values (0,1,3).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.6.1.4 |
prioDscpToCosTableTable for internal QoS label to CoS and CFI mapping. SEQUENCE OF PrioDscpToCosEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.7 |
prioDscpToCosEntryEntry for internal QoS label to CoS and CFI mapping. PrioDscpToCosEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.7.1 |
prioDscpToCosIfValueThe port or trunk interface of the device. The interface identified by
a particular value of this index is the same interface as identified
by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.7.1.1 |
prioDscpToCosPHBValueThe PHB value of internal QoS label. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.7.1.2 |
prioDscpToCosDropPrecedenceValueThe drop precedence value of internal QoS label. Green(0), Yellow(3),
Red(1). Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.3.7.1.3 |
prioDscpToCosCFICosValueThe remarked CFI and CoS value mapped from the internal Qos label
value when the packet leaves the device. The egress remarked CFI
value equals to (prioDscpToCosCFICosValue >>3) and the egress
remarked CoS value equals to (prioDscpToCosCFICosValue & 0x7).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.7.1.4 |
prioPrioToDropPrecTableTable for packet priority to drop precedence mapping. SEQUENCE OF PrioPrioToDropPrecEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.8 |
prioPrioToDropPrecEntryEntry for packet priority to drop precedence mapping. PrioPrioToDropPrecEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.8.1 |
prioPrioToDropPrecIfValueThe port or the trunk interface of the device. The interface
identified by a particular value of this index is the same interface
as identified by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.8.1.1 |
prioPrioToDropPrecPriorityValueThe value of packet default priority. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.8.1.2 |
prioPrioToDropPrecPrecValueThe drop precedence value of internal QoS label. Green(0),Yellow(3),
Red(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.3.8.1.3 |
prioDscpToQueueTableTable for PHB to queue mapping. SEQUENCE OF PrioDscpToQueueEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.9 |
prioDscpToQueueEntryEntry for PHB to queue mapping. PrioDscpToQueueEntry .1.3.6.1.4.1.259.10.1.5.1.16.3.9.1 |
prioDscpToQueueIfValueThe port or trunk interface of the device. The interface identified by
a particular value of this index is the same interface as identified
by the same value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.9.1.1 |
prioDscpToQueuePHBValueThe PHB value of internal QoS label. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.9.1.2 |
prioDscpToQueueQueueValueThe queue value which is mapped from the PHB value of QoS label.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.3.9.1.3 |
diffServMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.16.4 |
diffServPortTableTable for differentiated services on each port. SEQUENCE OF DiffServPortEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.9 |
diffServPortEntryEntry for differentiated services on each port. DiffServPortEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.9.1 |
diffServPortIfIndexThis object is the interface index of diffServPortEntry.
The interface identified by a particular value of this
index is the same interface as identified by the same
value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.9.1.1 |
diffServPortPolicyMapIndexSpecifies the policy map binding to the interface. The policy
map identified by a particular value of this index is
associated with the same DiffServPolicyMapEntry as identified
by the same value of diffServPolicyMapIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.9.1.2 |
diffServPolicyMapTableTable for policy map. SEQUENCE OF DiffServPolicyMapEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.10 |
diffServPolicyMapEntryEntry for policy map. DiffServPolicyMapEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.10.1 |
diffServPolicyMapIndexAn index that uniquely identifies an entry in this table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.10.1.1 |
diffServPolicyMapNameThe name of this entry.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.16.4.10.1.2 |
diffServPolicyMapDescriptionThe description of this entry.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.16.4.10.1.3 |
diffServPolicyMapElementIndexListThe octet string containes the diffServPolicyMapElementEntry
indexes. Two octets express one index and it is represented
in network order. This index list indicates the
diffServPolicyMapEntrys which belong to this entry.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.16.4.10.1.4 |
diffServPolicyMapStatusThis object is used to create a new row, or modify or delete
an existing row, in this table. The status column has six
defined values:
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has the value
'active');it is not available for use by the managed device,
though the agent has sufficient information to make it so
(the status column has the value 'notInService'); or, it is
not available for use by the managed device, and an attempt
to make it so would fail because the agent has insufficient
information (the state column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.16.4.10.1.5 |
diffServPolicyMapAttachCtl OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.16.4.11 |
diffServPolicyMapAttachCtlIndexIndex for attachment control.
Specifies the policy map as the target to relate with
the policy map element. The policy map identified by
a particular value of this index is associated with
the same diffServPolicyMapEntry as identified by the
same value of diffServPolicyMapIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.11.1 |
diffServPolicyMapAttachCtlElementIndexElement Index for attachment control.Specifies the policy map
element to relate with the policy map. The policy map element
identified by a particular value of this index is associated
with the same diffServPolicyMapElementEntry as identified by
the same value of diffServPolicyMapElementIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.11.2 |
diffServPolicyMapAttachCtlActionAction for attachment control. When setting this object to
attach(2) to begin the attaching operation, a particular
policy map element is attached to a particular policy map.
When setting this object to detach(3) to begin the not
attached operation, a particular policy map element is not
attached to a particular policy map. When the action is
finshed or no action is taken, the value of this object is
noAction(1). A particular policy map is specified in the
diffServPolicyMapAttachCtlIndex. A particularpolicy map
element is specified in the
diffServPolicyMapAttachCtlElementIndex.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.4.11.3 |
diffServPolicyMapElementTableTable for policy map element. SEQUENCE OF DiffServPolicyMapElementEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.12 |
diffServPolicyMapElementEntryEntry for policy map element. DiffServPolicyMapElementEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.12.1 |
diffServPolicyMapElementIndexAn index that uniquely identifies an entry in this table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.12.1.1 |
diffServPolicyMapElementClassMapIndexSpecifies the class map binding to this entry. The class map
identified by a particular value of this index is associated
with the same diffServClassMapEntry as identified by the same
value of diffServClassMapIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.12.1.2 |
diffServPolicyMapElementMeterIndexSpecifies the meter binding to this entry. The meter
identified by a particular value of this index is associated
with the same diffServMeterEntry as identified by the same
value of diffServMeterIndex. If this value is
zero, no associated meter will be associated, as zero is not a
valid meter index.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.12.1.3 |
diffServPolicyMapElementActionIndexSpecifies the action binding to this entry. The action
identified by a particular value of this index is associated
with the same diffServActionEntry as identified by the same
value of diffServActionIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.12.1.4 |
diffServPolicyMapElementStatusThis object is used to create a new row, or modify or delete
an existing row, in this table. The status column has six
defined values:
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has the value
'active'); it is not available for use by the managed device,
though the agent has sufficient information to make it so
(the status column has the value 'notInService'); or, it is
not available for use by the managed device, and an attempt
to make it so would fail because the agent has insufficient
information (the state column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.16.4.12.1.5 |
diffServClassMapTableTable for class map. SEQUENCE OF DiffServClassMapEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.13 |
diffServClassMapEntryEntry for class map. DiffServClassMapEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1 |
diffServClassMapIndexAn index that uniquely identifies an entry in this table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.1 |
diffServClassMapNameThe name of this entry.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.2 |
diffServClassMapDescriptionThe description of this entry.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.3 |
diffServClassMapMatchTypeThe map match type of this entry.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.4 |
diffServClassMapElementIndexTypeListThe octet string containes the type of class map element
indexes. Two octets which are represented in network order
express one type of the class map element index in network
order and it maps the index of
differServClasssMapElementIndexList in order. When the type is
macAce(1), the maping index of
differServClasssMapElementIndexList is the
diffServMacAceEntry. When the type is ipAce(2), the maping
index of differServClasssMapElementIndexList is the
diffServIpAceEntry. When the type is acl(3), the maping index
of differServClasssMapElementIndexList is the diffServAclEntry.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.5 |
diffServClassMapElementIndexListThe octet string containes the class map element indexes. Two
octets express one index and it is represented in
network order. This index list indicates the particular
class map elements which belong to this table. The class map
element uses type to indicate diffServAclEntry, the
diffServIpAceEntry or diffServMacAceEntry. The type is two
octet specified in differServClasssMapElementIndexTypeList
in order. When the type is macAce(1), the maping index of
differServClasssMapElementIndexList is the
diffServMacAceEntry. When the type is ipAce(2), the maping
index of differServClasssMapElementIndexList is the
diffServIpAceEntry. When the type is acl(3), the maping index
of differServClasssMapElementIndexList is the diffServAclEntry.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.6 |
diffServClassMapStatusThis object is used to create a new row or modify or delete
an existing row in this table.The status column has six
defined values:
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has the value
'active'); it is not available for use by the managed device,
though the agent has sufficient information to make it so
(the status column has the value 'notInService'); or, it is
not available for use by the managed device, and an attempt
to make it so would fail because the agent has insufficient
information (the state column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.16.4.13.1.7 |
diffServClassMapAttachCtl OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.16.4.14 |
diffServClassMapAttachCtlIndexIndex for attachment control. Specifies the class map as
the target to relate with class map elements. The class
map identified by a particular value of this index is
associated with the same diffServClassMapEntry as
identified by the same value of diffServClassMapIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.14.1 |
diffServClassMapAttachCtlElementIndexTypeElement Index for attachment control. Specifies the type of
class map element to relate with the class map. When type is
macAce(1), the index of diffServClassMapAttachCtlElementIndex
is the index of diffServMacAceEntry. When the type is
ipAce(2), the index of diffServClassMapAttachCtlElementIndex
is the index of diffServIpAceEntry. When the type is acl(3),
the index of diffServClassMapAttachCtlElementIndex is the
index of diffServAclEntry.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.4.14.2 |
diffServClassMapAttachCtlElementIndexElement Index for attachment control. Specifies the class map
element related with the class map. The class map element uses
type to indicate diffServAclEntry, the diffServIpAceEntry or
diffServMacAceEntry. The type is specified in
diffServClassMapAttachCtlElementIndexType. When
the type is macAce(1), the maping index of
differServClasssMapElementIndexList is the
diffServMacAceEntry. When the type is ipAce(2), the maping
index of differServClasssMapElementIndexList is the
diffServIpAceEntry. When the type is acl(3), the maping index
of differServClasssMapElementIndexList is the
diffServAclEntry.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.14.3 |
diffServClassMapAttachCtlActionAction for attachment control. When setting this object to
attach(2) to begin the attaching operation, a particular class
map element is attached to a particular class map. When
setting this object to detach(3) to begin the not attached
operation, then a particular class map element is not attached
to a particular class map. When the action is finshed whether
successfully or not, or no action is taken, the value of this
object always is noAction(1). The value of a particular class
map is specified in the AclAttachCtlTargetIndex. The class map
element is specified by diffServClassMapAttachCtlElementIndexType
and diffServClassMapAttachCtlElementIndex.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.4.14.4 |
diffServActionTableTable for action. SEQUENCE OF DiffServActionEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.19 |
diffServActionEntryEntry for action. DiffServActionEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1 |
diffServActionIndexAn index that uniquely identifies an entry in the
action table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.1 |
diffServActionListThe bitmap value used to identify which action
capabilities are enabled on the entry. The
actionPktNewPri and actionPktNewDscp can not be
enabled at the same time on the entry. The
actionRedPktNewDscp and actionRedDrop can not be
enabled at the same time on the entry.rw Bits .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.2 |
diffServActionPktNewPriSpecifies the new priority value for the packet when
the action is satisfied. If the actionPktNewPri bit of
the diffServActionList is not enabled, this object can
not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.3 |
diffServActionPktNewPhbSpecifies the inner priority value for the packet when
the action is satisfied. If the actionPktNewPhb bit of
the diffServActionList is not enabled, this object can
not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.4 |
diffServActionGreenPktTransmitThe actionGreenPktTransmit bit of the
diffServActionList is for configuring this
object. If the value of this object is enabled, the
green marking packet will be Transmitted.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.5 |
diffServActionGreenPktNewDscpSpecifies the new DSCP value for the packet when
the action is satisfied. The value of this object
is ignored whenever the value of diffServActionGreenPktNewDscp
object is 64. If the actionGreenPktNewDscp bit of
the diffServActionList is not enabled, this object
can not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.6 |
diffServActionYellowPktNewDscpSpecifies the new DSCP value for the packet when
the action is satisfied. The value of this object is ignored
whenever the value of diffServActionYellowPktNewDscp object is 64.
If the actionYellowPktNewDscp bit of the diffServActionList is
not enabled, this object can not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.7 |
diffServActionYellowPktDropThe actionYellowPktDrop bit of the
diffServActionList is for configuring this
object. If the value of this object is enabled, the
red marking packet will be dropped.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.8 |
diffServActionRedPktNewDscpSpecifies the new DSCP value for the red
marking packet when the action is satisfied. The value
of this object is ignored whenever the value of
diffServActionRedPktNewDscp object is 64. If the
actionRedPktNewDscp bit of the diffServActionList is
not enabled, this object can not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.9 |
diffServActionRedPktDropThe actionRedPktDrop bit of the
diffServActionList is for configuring this
object. If the value of this object is enabled, the
red marking packet will be dropped.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.10 |
diffServActionStatusThis object is used to create a new row, modify or
delete an existing row in this table.
The status column has six defined values:
The status column has six defined values:
- 'active', which indicates that the conceptual row
is available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use
by the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically
set to active, making it available for use by the
managed device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management
station wishing to delete all of the instances
associated with an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService'
or 'active'. That is, when queried, an existing
conceptual row has only three states: it is either
available for use by the managed device (the status column
has the value 'active'); it is not available for use by
the managed device, though the agent has sufficient
information to make it so (the status column has the value
'notInService'); or, it is not available for use by the
managed device, and an attempt to make it so would fail
because the agent has insufficient information (the state
column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.11 |
diffServActionPktNewIpPrecSpecifies the new precedence value for the packet when
the action is satisfied. If the actionPktNewIpPrec bit of
the diffServActionList is not enabled, this object can
not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.12 |
diffServActionPktNewDscpSpecifies the new DSCP value for the packet when
the action is satisfied. If the actionPktNewDscp bit of
the diffServActionList is not enabled, this object
can not be set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.19.1.13 |
diffServMeterTableTable for meter. SEQUENCE OF DiffServMeterEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.20 |
diffServMeterEntryEntry for meter. DiffServMeterEntry .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1 |
diffServMeterIndexAn entry that describes a single set of token bucket
parameters. Integer32 .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.1 |
diffServMeterModelThe Metering algorithm associated with the Token Bucket
parameters. The zeroDotZero indicates this is unknown.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.2 |
diffServMeterRateThe token-bucket rate, in kilobits per second (kbps).rw Integer32 (0|64..1000000) .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.3 |
diffServMeterBurstSizeThe maximum number of bytes in a single transmission burst.rw Integer32 (0|4000..16000000) .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.4 |
diffServMeterStatusThis object is used to create a new row or modify or delete
an existing row in this table. The status column has six
defined values:
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has the value
'active'); it is not available for use by the managed device,
though the agent has sufficient information to make it so
(the status column has the value 'notInService'); or, it is
not available for use by the managed device, and an attempt
to make it so would fail because the agent has insufficient
information (the state column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.6 |
diffServMeterPeakRateThe token-bucket rate, in kilobits per second (kbps).rw Integer32 (0|64..1000000) .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.7 |
diffServMeterPeakBurstSizeThe maximum number of bytes in a double transmission burst.rw Integer32 (0|4000..16000000) .1.3.6.1.4.1.259.10.1.5.1.16.4.20.1.8 |
securityMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17 |
privateVlanMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.1 |
privateVlanStatusThis controls whether private VLAN is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.1.1 |
privateVlanUplinkPortsThis is the list of uplink ports for private VLAN.
They should not overlap with privateVlanDownlinkPorts.
Only one port can be set, no multiple ports.
0 will be displayed if the privateVlanStatus is disabled.
You must enable the privateVlanStatus before setting this variable.rw PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.1.2 |
privateVlanDownlinkPortsThis is the list of downlink ports for private VLAN.
They should not overlap with privateVlanUplinkPorts.
Multiple port setting is permitted.
0 will be displayed if the privateVlanStatus is disabled.
You must enable the privateVlanStatus before setting this variable.rw PortList (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.1.3 |
privateVlanVlanTableA table containing private VLAN information on the
VLANs which currently exist. SEQUENCE OF PrivateVlanVlanEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.4 |
privateVlanVlanEntryA conceptual row containing the private VLAN
information on the VLANs for a particular management
domain. PrivateVlanVlanEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.4.1 |
privateVlanVlanIndexThe VLAN ID of this private VLAN. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.4.1.1 |
privateVlanVlanTypeThe VLAN type as defined for Private VLAN feature.
Set the value to invalid(1) to destroy an entry. Set
other values to create an entry. If an index
already exists, set others to modifiy it. Note that a VLAN's
private VLAN type cannot be changed once it has
any port members.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.1.4.1.2 |
privateVlanAssoicatedPrimaryVlanThe VLAN ID of the associated primary VLAN used for
the private VLAN feature if privateVlanVlanType has the
value of isolated(3), community(4). If privateVlanVlanType
has the value of primary(2), then this object has the value of 0.
Note that one isolated VLAN can only be associated
with one unique primary VLAN. One primary VLAN can only
be associated with one isolated VLAN.
One primary VLAN can be associated with multiple community VLANs;
one community VLAN can only be associated with one unique primary VLAN.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.4.1.3 |
privateVlanPrivatePortTableA table containing information on the configuration of
secondary VLANs on the device ports. SEQUENCE OF PrivateVlanPrivatePortEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.5 |
privateVlanPrivatePortEntryA conceptual row containing information of the
configuration of secondary VLANs for each port. An entry
is created by the managed system for each interface which
can be configured as a private port for Private VLAN
feature. PrivateVlanPrivatePortEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.5.1 |
privateVlanPrivatePortIfIndexThis is defined as the ifIndex. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.5.1.1 |
privateVlanPrivatePortSecondaryVlanThe VLAN ID of the secondary VLAN configured on this
private port. A private port is a port that allows
ingress traffic of the secondary VLAN as well as
egress traffic of its associated primary VLAN, but
blocks the egress traffic of the isolated VLAN while
allowing the egress traffic of the community
or twoWayCommunity VLAN depending on the type of the
secondary VLAN.
Note that a port can join a secondary VLAN only after
this secondary VLAN has been associated with a primary
VLAN, i.e., the cpvlanVlanAssociatedPrimaryVlan has a
non-zero value. The default value of 0 for this object
means this port has not yet joined a secondary VLAN.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.5.1.2 |
privateVlanPromPortTableA table containing secondary VLAN to primary VLAN remapping
information on ports of the device. SEQUENCE OF PrivateVlanPromPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.6 |
privateVlanPromPortEntryA conceptual row containing secondary VLAN to primary
VLAN remapping information for each port.
An entry is created by the managed system for each interface
which can be configured as a promiscuous port for the
private VLAN feature. PrivateVlanPromPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1 |
privateVlanPromPortIfIndexThis is defined as ifIndex. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1.1 |
privateVlanPromPortPrimaryVlanIdThe primary VLAN ID of the promiscous port.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1.2 |
privateVlanPromPortSecondaryRemapA string of octets containing one bit per VLAN in the
management domain on this port. The first octet
corresponds to VLANs with VlanIndexOrZero values of 0
through 7; the second octet to VLANs 8 through 15; etc.
The most significant bit of each octet corresponds to
the lowest value VlanIndexOrZero in that octet.
Note that if the length of this string is less than
128 octets, any 'missing' octets are assumed to contain
the value zero. An NMS may omit any zero-valued octets
from the end of this string in order to reduce SetPDU
size, and the agent may also omit zero-valued trailing
octets, to reduce the size of GetResponse PDUs.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1.3 |
privateVlanPromPortSecondaryRemap2kA string of octets containing one bit per VLAN for
VLANs with VlanIndexOrZero values of 1024 through 2047
in the management domain on this port. The first octet
corresponds to VLANs with VlanIndexOrZero values of 1024
through 1031; the second octet to VLANs 1032 through
1039; etc. The most significant bit of each octet
corresponds to the lowest value VlanIndexOrZero in
that octet.
Note that if the length of this string is less than
128 octets, any 'missing' octets are assumed to contain
the value zero. An NMS may omit any zero-valued octets
from the end of this string in order to reduce SetPDU
size, and the agent may also omit zero-valued trailing
octets, to reduce the size of GetResponse PDUs.
This object is only instantiated on devices which support
the range of VlanIndexOrZero up to 4095.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1.4 |
privateVlanPromPortSecondaryRemap3kA string of octets containing one bit per VLAN for
VLANs with VlanIndexOrZero values of 2048 through 3071
in the management domain on this port. The first octet
corresponds to VLANs with VlanIndexOrZero values of 2048
through 2055; the second octet to VLANs 2056 through
2063; etc. The most significant bit of each octet
corresponds to the lowest value VlanIndexOrZero in
that octet.
Note that if the length of this string is less than
128 octets, any 'missing' octets are assumed to contain
the value zero. An NMS may omit any zero-valued octets
from the end of this string in order to reduce SetPDU
size, and the agent may also omit zero-valued trailing
octets, to reduce the size of GetResponse PDUs.
This object is only instantiated on devices which support
the range of VlanIndexOrZero up to 4095.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1.5 |
privateVlanPromPortSecondaryRemap4kA string of octets containing one bit per VLAN for
VLANs with VlanIndexOrZero values of 3072 through 4095
in the management domain on this port. The first octet
corresponds to VLANs with VlanIndexOrZero values of 3072
through 3079; the second octet to VLANs 3080 through
3087; etc. The most significant bit of each octet
corresponds to the lowest value VlanIndexOrZero in
that octet.
Note that if the length of this string is less than
128 octets, any 'missing' octets are assumed to contain
the value zero. An NMS may omit any zero-valued octets
from the end of this string in order to reduce SetPDU
size, and the agent may also omit zero-valued trailing
octets, to reduce the size of GetResponse PDUs.
This object is only instantiated on devices which support
the range of VlanIndexOrZero up to 4095.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.1.6.1.6 |
privateVlanEdgePortTableContains the settings for Private VLAN Edge. SEQUENCE OF PrivateVlanEdgePortEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.10 |
privateVlanEdgePortEntryA conceptual row in the privateVlanEdgePortTable. PrivateVlanEdgePortEntry .1.3.6.1.4.1.259.10.1.5.1.17.1.10.1 |
pvePortIfIndexThe port interface of the portTable. The interface
identified by a particular value of this index is
the same interface as identified by the same value
of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.1.10.1.1 |
pvePortStatusThis controls whether Private VLAN Edge is enabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.1.10.1.2 |
portSecurityMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.2 |
portSecPortTableThe port security(MAC binding) Table. SEQUENCE OF PortSecPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.2.1 |
portSecPortEntryThe entry of portSecPortTable. PortSecPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.2.1.1 |
portSecPortIndexThe port and the trunk (excluding trunk members) interface of
the portTable. The interface identified by a particular value
of this index is the same interface as identified by the same
value of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.2.1.1.1 |
portSecPortStatusSet enabled(1) to enable port security and set disabled(2) to
disable port security.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.2.1.1.2 |
portSecActionThe corresponding actions that will take place when a
port is under intrusion, when this variable is set to
none(1), no action will be performed, when this variable is
set to trap(2), a swPortSecurityTrap trap will be sent,
when this variable is set to shutdown(3), the port will
shutdown, when this variable is set to
trapAndShutdown(4), a swPortSecurityTrap will be sent
and the port will shutdown.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.2.1.1.3 |
portSecMaxMacCountThe maximun number of MAC addresses that will be learned and locked.
When we change the value of this variable, if the
portSecPortStatus is enabled, we will discard all secure MAC
and begin to learn again, until the number of MAC has reached
this value, and only the secure MAC addresses can enter
this port. If the portSecPortStatus is disabled, we will begin
to learn the MAC, and auto enabled the portSecPortStatus when
the MAC has reached this value.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.2.1.1.4 |
radiusMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.4 |
radiusServerGlobalAuthPortAauthentication port number for RADIUS server.
When specified radius server do not set
aauthentication port number, this value is used.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.1 |
radiusServerGlobalAcctPortAccounting port number of RADIUS server.
When specified radius server do not set
accounting port number, this value is used.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.2 |
radiusServerGlobalKeyKey for RADIUS. This variable can only be written.
When this variable is read, it always returns a
zero-length string.
When specified radius server do not set
key, this this value is used.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.4.3 |
radiusServerGlobalRetransmitMaximum number of retransmissions for RADIUS.
When specified radius server do not set
maximum number of retransmissions, this value is used.rw INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.4.4 |
radiusServerGlobalTimeoutTimeout for RADIUS.
When specified radius server do not set
timeout, this value is used.rw INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.4.5 |
radiusServerTableThe table for RADIUS server. SEQUENCE OF RadiusServerEntry .1.3.6.1.4.1.259.10.1.5.1.17.4.7 |
radiusServerEntryThe conceptual row for radiusServerTable. RadiusServerEntry .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1 |
radiusServerIndexThe RADIUS server index in the table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.1 |
radiusServerAddressIP address of a RADIUS server.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.2 |
radiusServerAuthPortNumberAuthentication port number of RADIUS server.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.3 |
radiusServerAcctPortNumberAccounting port number of RADIUS server.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.4 |
radiusServerKeyKey for RADIUS. This variable can only be written.
When this variable is read, it always returns a
zero-length string.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.5 |
radiusServerRetransmitTimeout for RADIUS.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.6 |
radiusServerTimeoutTimeout for RADIUS.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.7 |
radiusServerStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.4.7.1.8 |
tacacsMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.5 |
tacacsPlusServerGlobalPortNumberTCP port number of TACACS+ server.
When specified TACACS+ server do not set
TCP port number, this this value is used.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.5.2 |
tacacsPlusServerGlobalKeyThe encryption key used to encrpt the traffic between client and
TACACS+ server. Do not use blank spaces in the string. This variable
can only be set. When this variable is read, it always returns a
zero-length string.When specified TACACS+ server do not set
the encryption key , this this value is used.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.5.3 |
tacacsPlusServerTableThe table for TACACS+ server. SEQUENCE OF TacacsPlusServerEntry .1.3.6.1.4.1.259.10.1.5.1.17.5.4 |
tacacsPlusServerEntryThe conceptual row for tacacsPlusServerTable. TacacsPlusServerEntry .1.3.6.1.4.1.259.10.1.5.1.17.5.4.1 |
tacacsPlusServerIndexTACACS+ server index. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.5.4.1.1 |
tacacsPlusServerAddressIP address of a TACACS+ server.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.17.5.4.1.2 |
tacacsPlusServerPortNumberTCP port number of a TACACS+ server.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.5.4.1.3 |
tacacsPlusServerKeyThe encryption key used to encrpt the traffic between client and
TACACS+ server. Do not use blank spaces in the string. This
variable can only be set. When this variable is read, it always
returns a zero-length string.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.5.4.1.4 |
tacacsPlusServerStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.5.4.1.8 |
sshMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.6 |
sshServerStatusThe status of Secure Shell Server. Set this value to
enabled(1) to enable SSH server, set this value to
disabled(2) to disable the SSH server.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.6.1 |
sshServerMajorVersionThe major version of the SSH Server.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.2 |
sshServerMinorVersionThe minor version of the SSH Server.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.3 |
sshTimeoutThe time interval that the router waits for the SSH
client to respond. The range is 1-120.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.4 |
sshAuthRetriesThe number of attempts after which the interface is reset.
The range is 1-5.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.5 |
sshConnInfoTableThe table for Secure Shell Connection. SEQUENCE OF SshConnInfoEntry .1.3.6.1.4.1.259.10.1.5.1.17.6.6 |
sshConnInfoEntryThe conceptual row for sshConnInfoTable. SshConnInfoEntry .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1 |
sshConnIDThe connection ID of the Secure Shell Connection. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.1 |
sshConnMajorVersionThe SSH major version.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.2 |
sshConnMinorVersionThe SSH minor version.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.3 |
sshConnStatusThe SSH connection State. negotiationStart(1) means the
SSH is in its negotiation start state, authenticationStart(2)
means the SSH is in authentication start state, sessionStart(3)
means the SSH is in session start State.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.5 |
sshConnUserNameThe user name of the connection.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.6 |
sshDisconnectSet the variable to disconnect the connection,
noDisconnect(1) will always be obtained when reading this variable.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.7 |
sshConnEncryptionTypeStrThe encryption type of the SSH.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.6.6.1.8 |
sshKeySizeThe SSH server key size.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.6.7 |
sshRsaHostKey1The RSA host key segment 1.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.8 |
sshRsaHostKey2The RSA host key segment 2.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.9 |
sshRsaHostKey3The RSA host key segment 3.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.10 |
sshRsaHostKey4The RSA host key segment 4.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.11 |
sshRsaHostKey5The RSA host key segment 5.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.12 |
sshRsaHostKey6The RSA host key segment 6.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.13 |
sshRsaHostKey7The RSA host key segment 7.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.14 |
sshRsaHostKey8The RSA host key segment 8.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.15 |
sshDsaHostKey1The DSA host key segment 1.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.16 |
sshDsaHostKey2The DSA host key segment 2.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.17 |
sshDsaHostKey3The DSA host key segment 3.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.18 |
sshDsaHostKey4The DSA host key segment 4.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.19 |
sshDsaHostKey5The DSA host key segment 5.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.20 |
sshDsaHostKey6The DSA host key segment 6.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.21 |
sshDsaHostKey7The DSA host key segment 7.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.22 |
sshDsaHostKey8The DSA host key segment 8.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.23 |
sshHostKeyGenActionThis variable is for host key generating.
For the set behavior:
Set it to genRsaKey(2) to generate the RSA host key,
and to genDsaKey(3) to generate the DSA host key,
if genBothKeys(4) is set, both RSA and DSA host key are
generated.
For the get behavior:
You will get genRsaKey(2), genDsaKey(3) or
genBothKeys(4) when the key gen action is in progress.
otherwise, you will get noGen(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.24 |
sshHostKeyGenStatusThe result of the last KeyGen status.
if no key gen action has been performed.
you will get unknown(1) status.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.25 |
sshHostKeySaveActionTo save host key from memory to flash.
For the set behavior:
Set it to save(2) to perform the save operation.
For the get behavior:
You will get save(1) when the save action is in progress.
Otherwise, you will get noSave(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.26 |
sshHostKeySaveStatusThe result of the last savekey status.
If no save action has been performed,
you will get unknown(1) status.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.27 |
sshHostKeyDelActionTo delete the host key.
For the set behavior:
Set it to delRsaKey(2) to delete the RSA host key,
to delDsaKey(3) to delete the DSA host key,
or to delBothKeys(4) to delete both RSA and DSA host key.
For the get behavior:
You will get delRsaKey(2), delDsaKey(3) or delBothKeys(4)
when the delete operation is in progress.
Otherwise, you will get noDel(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.28 |
sshUserTableThe conceptual table of all of sshUserEntry. SEQUENCE OF SshUserEntry .1.3.6.1.4.1.259.10.1.5.1.17.6.29 |
sshUserEntryThe conceptual row for sshUserTable. SshUserEntry .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1 |
sshUserNameUser Name. DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.1 |
sshUserRsaKey1The RSA user key segment 1.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.2 |
sshUserRsaKey2The RSA user key segment 2.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.3 |
sshUserRsaKey3The RSA user key segment 3.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.4 |
sshUserRsaKey4The RSA user key segment 4.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.5 |
sshUserRsaKey5The RSA user key segment 5.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.6 |
sshUserRsaKey6The RSA user key segment 6.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.7 |
sshUserRsaKey7The RSA user key segment 7.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.8 |
sshUserRsaKey8The RSA user key segment 8.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.9 |
sshUserDsaKey1The DSA user key segment 1.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.10 |
sshUserDsaKey2The DSA user key segment 2.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.11 |
sshUserDsaKey3The DSA user key segment 3.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.12 |
sshUserDsaKey4The DSA user key segment 4.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.13 |
sshUserDsaKey5The DSA user key segment 5.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.14 |
sshUserDsaKey6The DSA user key segment 6.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.15 |
sshUserDsaKey7The DSA user key segment 7.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.16 |
sshUserDsaKey8The DSA user key segment 8.ro KeySegment .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.17 |
sshUserKeyDelActionTo delete the user key.
For the set behavior:
Set it to delRsaKey(2) to delete the RSA user key,
to delDsaKey(3) to delete the DSA user key,
or to delBothKeys(4) to delete both RSA and DSA user key.
For the get behavior:
You will get delRsaKey(2), delDsaKey(3) or delBothKeys(4)
when the delete operation is in progress.
Otherwise, you will get noDel(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.6.29.1.18 |
aclMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.7 |
aclIpAceTableThe conceptual table of all of aclIpAceEntry. SEQUENCE OF AclIpAceEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.1 |
aclIpAceEntryThe conceptual row for aclIpAceTable. AclIpAceEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1 |
aclIpAceIndexAn index that uniquely identifies an entry in the IP ACE
table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.1 |
aclIpAceTypeThe specified IP ACE type. When the type of this entry is
modified, then this entry will be auto-unbound from the
aclEntry and the not supporting field of this entry
will be set 0.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.2 |
aclIpAceAccessIndicates the action to be taken if a packet matches this ACE.
This object cannot not be configured when the status of the
entry, aclIpAceStatus, is active(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.3 |
aclIpAceSourceIpAddrThe specified source IP address. The packet's source address is
AND-ed with the value of aclIpAceSourceIpAddrBitmask and then
compared against the value of this object. This object cannot be
configured when the status of the entry, aclIpAceStatus, is
active(1).rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.4 |
aclIpAceSourceIpAddrBitmaskThe specified source IP address mask. The packet's source
address is AND-ed with the value of IpAceSourceIpAddr and
then compared against the value of this object.rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.5 |
aclIpAceDestIpAddrThe specified destination IP address. The packet's destination
address is AND-ed with the value of aclIpAceDestIpAddrBitmask
and then compared against the value of this object. This object
may not be modified if the associated aclIpAceType object is
equal to standard(1).rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.6 |
aclIpAceDestIpAddrBitmaskThe specified destination IP address mask. This object may
not be modified if the associated aclIpAceType object is
equal to standard(1).rw IpAddress .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.7 |
aclIpAceProtocolThe protocol number field in the IP header used to indicate
the higher layer protocol as specified in RFC 1700. A value
of 0 matches every IP packet. The object=256 means 'any'. For
example: 0 is IP, 1 is ICMP, 2 is IGMP, 4 is IP in IP
encapsulation, 6 is TCP, 9 is IGRP, 17 is UDP, 47 is GRE, 50
is ESP, 51 is AH, 88 is IGRP, 89 is OSPF, 94 is KA9Q/NOS
compatible IP over IP, 103 is PIMv2, 108 is PCP. This object
may not be modified if the associated daclIpAceType object
is equal to standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.8 |
aclIpAcePrecSpecifies the IP precedence value to match against. The value
of this object is ignored whenever the value of aclIpAcePrec
object is 8. This object may not be modified if the associated
aclIpAceType object is equal to standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.9 |
aclIpAceTosSpecifies the IP ToS facility value to match against. The
value of this object is ignored whenever the value of
aclIpAcePrec object is 9. This object may not be modified
if the associated aclIpAceType object is equal to
standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.10 |
aclIpAceDscpSpecifies the DSCP value to match against. The value of this
object is ignored whenever the value of aclIpAcePrec object
is 64. This object may not be modified if the associated
aclIpAceType object is equal to standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.11 |
aclIpAceSourcePortOpIndicates how a packet's source TCP/UDP port number is to be
compared. noOperator(1), which is the default value, means no
comparison is to be made with the source TCP/UDP port number.
equal(2), which is used the aclIpAceSourcePortBitmask and the
aclIpAceMinSourcePort to match against. range(3),which is
used the aclIpAceMinSourcePort and the aclIpAceMaxSourcePort
to match against. This object may not be modified if the
associated aclIpAceType object is equal to standard(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.12 |
aclIpAceMinSourcePortIf the aclIpAceSourcePortOp is range(3), this indicates the
lower bound of the TCP/UDP port number value range. This
object may not be modified if the associated aclIpAceType
object is equal to standard(1).rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.13 |
aclIpAceMaxSourcePortIf the aclIpAceSourcePortOp is range(3),
this indicates the upper bound of the TCP/UDP port number value range.rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.14 |
aclIpAceSourcePortBitmaskIf the aclIpAceSourcePortOp is equal(2), this indicates
the bitmask of the aclIpAceMinSourcePort. This object may
not be modified if the associated aclIpAceType object is
equal to standard(1).rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.15 |
aclIpAceDestPortOpIndicates how a packet's destination TCP/UDP port number is
to be compared. noOperator(1), which is the default value, means that no
comparison is to be made with the destination TCP/UDP port number.
equal(2), which is used the aclIpAceSourcePortBitmask and the
aclIpAceMinDestPort to match against. range(3),which is used the
aclIpAceMinDestPort and the aclIpAceMaxDestPort to match against.
This object may not be modified if the associated aclIpAceType
object is equal to standard(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.16 |
aclIpAceMinDestPortIf the aclIpAceDestPortOp is range(3), this indicates the lower
bound of the TCP/UDP port number value range. This object may
not be modified if the associated aclIpAceType object is equal
to standard(1).rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.17 |
aclIpAceMaxDestPortIf the aclIpAceDestPortOp is range(3),
this indicates the upper bound of the TCP/UDP port number value range.rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.18 |
aclIpAceDestPortBitmaskIf the aclIpAceDestPortOp is equal(2),
this indicates the bitmask of the aclIpAceMinDestPort.
This object may not be modified if the associated
aclIpAceType object is equal to standard(1).rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.19 |
aclIpAceControlCodeIndicates how the control flags of TCP packets are to be compared.
aclIpAceControlCode is AND-ed with aclIpAceControlCodeBitmask.
This object may not be modified if the associated
aclIpAceType object is equal to standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.20 |
aclIpAceControlCodeBitmaskIndicates how the control flags of TCP packets are to be compared.
It can be used to check multiple flags of the
FIN, SYN, RST, PSH, ACK, URG by the sum of
FIN=1, SYN=2, RST=4, PSH=8, ACK=16, URG=32.
This object may not be modified if the associated
aclIpAceType object is equal to standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.21 |
aclIpAceStatusThe status of this conceptual row entry. This object isused to manage the
creation and deletion of conceptual rows.
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has value 'active');
it is not available for use by the managed device, though
the agent has sufficient information to make it so (the
status column has value 'notInService'); or, it is not
available for use by the managed device, and an attempt to
make it so would fail because the agent has insufficient
information (the state column has value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.1.1.22 |
aclMacAceTableThe conceptual table of all of aclMacAceEntry. SEQUENCE OF AclMacAceEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.2 |
aclMacAceEntryThe conceptual row for aclMacAceTable. AclMacAceEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1 |
aclMacAceIndexAn index that uniquely identifies an entry in the MAC ACE
table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.1 |
aclMacAceAccessIndicates the action to be taken if a packet matches this ACE.
This object cannot be configured when the status of the entry,
aclMacAceStatus, is active(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.2 |
aclMacAcePktformatUsed to check the packet format of the packets.
This object cannot be configured when the status
of the entry, aclMacAceStatus, is active(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.3 |
aclMacAceSourceMacAddrIndicates the 48-bit destination MAC address.
The specified source MAC of the packet The packet's source MAC
address is AND-ed with the value of aceMacSourceMacAddrBitmask
and then compared against the value of this object. This object
cannot be configured when the status of the entry, aclMacAceStatus,
is active(1).rw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.4 |
aclMacAceSourceMacAddrBitmaskThe specified source MAC address mask.
This object cannot be configured when the status of the
entry, aclMacAceStatus, is active(1).rw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.5 |
aclMacAceDestMacAddrIndicates the 48-bit destination MAC address.
The specified destination MAC of the packet.
The packet's destination MAC address is AND-ed
with the value of aceMacDestMacAddrBitmask and
then compared against the value of this object.
This object cannot be configured when the status
of the entry, aclMacAceStatus, is active(1).rw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.6 |
aclMacAceDestMacAddrBitmaskThe specified destination MAC address mask.
This object cannot be configured when the status
of the entry, aclMacAceStatus, is active(1).rw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.7 |
aclMacAceVidOpIndicates how a packet's vid is to be compared.
This object cannot be configured when the status of the
entry, aclMacAceStatus, is active(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.8 |
aclMacAceMinVidIndicates the lower bound of the vid value range if the aclMacAceVidOp
is range(3). This object cannot be configured when the status of the
entry, aclMacAceStatus, is active(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.9 |
aclMacAceVidBitmaskThe bitmask of vid if the aclMacAceVidOp is equal, default value is 0xfff.rw Integer32 (0..'0FFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.10 |
aclMacAceMaxVidIndicates the upper bound of the vid value range if the aclMacAceVidOp is range(3).
This object cannot be configured when the status of the
entry, aclMacAceStatus, is active(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.11 |
aclMacAceEtherTypeOpIndicates how a packet's ethertype is to be compared.
This object cannot be configured when the status of the
entry, aclMacAceStatus, is active(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.12 |
aclMacAceEtherTypeBitmaskThe bitmask of ether type if the aclMacAceVidOp is equal(2),
default value is 0xFFFF.rw Integer32 (0..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.13 |
aclMacAceMinEtherTypeIndicates the lower bound of the ether type value range if
the aclMacAceEtherTypeOp is range(3). This object cannot be
configured when the status of the entry, aclMacAceStatus,
is active(1).rw Integer32 ('0600'h..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.14 |
aclMacAceMaxEtherTypeIndicates the upper bound of the ether type value range if the aclMacAceEtherTypeOp is range(3).
This object cannot be configured when the status of the
entry, aclMacAceStatus, is active(1).rw Integer32 ('0600'h..'FFFF'h) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.15 |
aclMacAceStatusThe status of this conceptual row entry. This object isused to manage the
creation and deletion of conceptual rows.
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has value 'active');
it is not available for use by the managed device, though
the agent has sufficient information to make it so (the
status column has value 'notInService'); or, it is not
available for use by the managed device, and an attempt to
make it so would fail because the agent has insufficient
information (the state column has value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.2.1.16 |
aclAclGroupTableThe conceptual table of aclAclGroupEntry. SEQUENCE OF AclAclGroupEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.3 |
aclAclGroupEntryThe conceptual row for aclAclGroupTable. AclAclGroupEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.3.1 |
aclAclGroupIfIndexThe interface number specifying the ACL binding to. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.3.1.1 |
aclAclGroupIngressIpAclSpecifies the ingress IP ACL(standard or extended) binding to the interface.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.7.3.1.2 |
aclAclGroupEgressIpAclSpecifies the egress IP ACL(standard or extended) binding to the interface.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.7.3.1.3 |
aclAclGroupIngressMacAclSpecifies the ingress MAC ACL binding to the interface.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.7.3.1.4 |
aclAclGroupEgressMacAclSpecifies the egress MAC ACL binding to the interface.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.7.3.1.5 |
aclIpv6AceTableTable for IPv6 ACE. SEQUENCE OF AclIpv6AceEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.12 |
aclIpv6AceEntryEntry fo IPv6 ACE. AclIpv6AceEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1 |
aclIpv6AceIndexAn index that uniquely identifies an entry in the IPv6 table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.1 |
aclIpv6AceTypeThe specified IP v6 ACE type. When the type of this entry is
modified, then this entry will be auto-unbound from the aclEntry
and the not supporting field of this entry will be set 0.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.2 |
aclIpv6AceAccessIndicates the action to be taken if a packet matches this
ACE.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.3 |
aclIpv6AceSourceIpAddrSpecifies the source IPv6 address.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.4 |
aclIpv6AceSourceIpAddrPrefixLenThe length (in bits) associated with the source IPv6 address
prefix of this entry.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.5 |
aclIpv6AceDestIpAddrSpecifies the destination IPv6 address. This object may not be
modified if the associated aclIpv6AceType object is equal to
standard(1).rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.6 |
aclIpv6AceDestIpAddrPrefixLenThe length (in bits) associated with the destination IPv6
address prefix of this entry. This object may not be modified
if the associated aclIpv6AceType object is equal to standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.7 |
aclIpv6AceDscpSpecifies the DSCP value to match against. This object may not
be modified if the associated aclIpv6AceType object is equal to
standard(1).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.9 |
aclIpv6AceStatusThis object is used to create a new row or modify or delete
an existing row in this table. The status column has six
defined values:
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has the value
'active'); it is not available for use by the managed device,
though the agent has sufficient information to make it so
(the status column has the value 'notInService'); or, it is
not available for use by the managed device, and an attempt
to make it so would fail because the agent has insufficient
information (the state column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.12.1.11 |
aclAttachCtlMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.7.13 |
aclAttachCtlIndexIndex for attachment control. Specifies the ACL as the target
to relate with the IP ACE, the MAC ACE or IPv6 ACE. The ACL
identified by a particular value of this index is associated
with the same aclEntry as identified by the same value of
aclIndex.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.13.1 |
aclAttachCtlAceTypeType for attachment control. Specifies the type of
aclAttachCtlAceIndex to relate with the aclAttachCtlIndex.
When the type is macAce(1), the index of aclAceIndexList
is the aclMacAceEntry. When the type is ipAce(2), the index
of aclAceIndexList is the aclIpAceEntry. When the type is
ipv6Ace(3), the index of aclAceIndexList is the
aclIpv6AceEntry.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.13.2 |
aclAttachCtlAceIndexIndex for attachment control. Specifies the ACE to relate with
the aclAttachCtlIndex. When aclAttachCtlAceType is macAce(1),
the value of aclAttachCtlIndex is the diffServMacAceEntry. When
aclAttachCtlAceType is ipAce(2), the value of aclAttachCtlIndex
is the diffServIpAceEntry. When aclAttachCtlAceType is
ipv6Ace(3), the value of aclAttachCtlIndex is the
diffServIpv6AceEntry.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.13.3 |
aclAttachCtlActionAction for attachment control. When setting this object to
attach(2) to begin the attaching operation, a particular ACE
is attached to a particular ACL. When setting this object to
detach(3) to begin the not attached operation, then a
particular ACE is not attached to a particular ACL. When the
action is finshed whether successfully or not, or no action
is taken, the value of this object always is noAction(1), The
value of a particular ACL is specified in the
aclAttachCtlAceType and aclAttachCtlAceIndex.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.13.4 |
aclTableTable for ACL. SEQUENCE OF AclEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.14 |
aclEntryEntry for ACL. AclEntry .1.3.6.1.4.1.259.10.1.5.1.17.7.14.1 |
aclIndexAn index that uniquely identifies an entry in the ACL
table. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.7.14.1.1 |
aclNameThe name of this entry.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.7.14.1.2 |
aclTypeThe type of this entry. When the value of ACL type is
modified, then the ACEs in the aclAceIndexList of
this entry will be auto-removed, and this entry will be aoto-
unbound from the PortTable and the diffServClassMapTable.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.7.14.1.3 |
aclAceIndexListThe octet string containes the ACE indexes. Two octets
express one index and it is represented in network
order. This index list indicates the particular ACEs which
belong to this table. The ACE uses type to indicate the
aclIpAceEntry, the aclMacAceEntry or the
aclIpv6AceEntry. The type is specified in
aclType. When the type is macAce(1), the index of
aclAceIndexList is the aclMacAceEntry. When the
type is ipAce(2), the index of aclAceIndexList is
the aclIpAceEntry. When the type is ipv6Ace(3), the
index of aclAceIndexListis the aclIpv6AceEntry.ro OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.7.14.1.4 |
aclStatusThis object is used to create a new row or modify or delete
an existing row in this table. The status column has six
defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual
row exists in the agent, but is unavailable for use by
the managed device (see NOTE below);
- 'notReady', which indicates that the conceptual row
exists in the agent, but is missing information
necessary in order to be available for use by the
managed device;
- 'createAndGo', which is supplied by a management
station wishing to create a new instance of a
conceptual row and to have its status automatically set
to active, making it available for use by the managed
device;
- 'createAndWait', which is supplied by a management
station wishing to create a new instance of a
conceptual row (but not make it available for use by
the managed device); and,
- 'destroy', which is supplied by a management station
wishing to delete all of the instances associated with
an existing conceptual row.
Whereas five of the six values (all except 'notReady') may
be specified in a management protocol set operation, only
three values will be returned in response to a management
protocol retrieval operation: 'notReady', 'notInService' or
'active'. That is, when queried, an existing conceptual row
has only three states: it is either available for use by
the managed device (the status column has the value
'active'); it is not available for use by the managed device,
though the agent has sufficient information to make it so
(the status column has the value 'notInService'); or, it is
not available for use by the managed device, and an attempt
to make it so would fail because the agent has insufficient
information (the state column has the value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.7.14.1.5 |
ipFilterMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.9 |
ipFilterSnmpInetTableA list of IP address entries. SEQUENCE OF IpFilterSnmpInetEntry .1.3.6.1.4.1.259.10.1.5.1.17.9.12 |
ipFilterSnmpInetEntryThis entry includes an IP address range which the system
will allow to connect to this device through SNMP. IpFilterSnmpInetEntry .1.3.6.1.4.1.259.10.1.5.1.17.9.12.1 |
ipFilterSnmpInetAddressTypeThe type of IP address filter.
Only supports IPv4 and IPv6 address types. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.12.1.1 |
ipFilterSnmpInetAddressStartThe start IP address. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.12.1.2 |
ipFilterSnmpInetAddressEndThe end IP address.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.12.1.3 |
ipFilterSnmpInetStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.9.12.1.4 |
ipFilterHttpInetTableA list of IP address entries. SEQUENCE OF IpFilterHttpInetEntry .1.3.6.1.4.1.259.10.1.5.1.17.9.13 |
ipFilterHttpInetEntryThis entry includes an IP address range which the system
will allow to connect to this device through SNMP. IpFilterHttpInetEntry .1.3.6.1.4.1.259.10.1.5.1.17.9.13.1 |
ipFilterHttpInetAddressTypeThe type of IP address filter .
Only supports IPv4 and IPv6 address types. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.13.1.1 |
ipFilterHttpInetAddressStartThe start IP address. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.13.1.2 |
ipFilterHttpInetAddressEndThe end IP address.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.13.1.3 |
ipFilterHttpInetStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.9.13.1.4 |
ipFilterTelnetInetTableA list of IP address entries. SEQUENCE OF IpFilterTelnetInetEntry .1.3.6.1.4.1.259.10.1.5.1.17.9.14 |
ipFilterTelnetInetEntryThis entry includes an IP address range which the system
will allow them to connect to this device through SNMP. IpFilterTelnetInetEntry .1.3.6.1.4.1.259.10.1.5.1.17.9.14.1 |
ipFilterTelnetInetAddressTypeThe type of IP address filter .
Only supports IPv4 and IPv6 address types. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.14.1.1 |
ipFilterTelnetInetAddressStartThe start IP address. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.14.1.2 |
ipFilterTelnetInetAddressEndThe end IP address.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.14.1.3 |
ipFilterTelnetInetStatusSetting this to valid(1) creates an entry.
Setting this to invalid(2) destroys an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.9.14.1.4 |
ipFilterAllClientCtl OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.9.15 |
ipFilterAllClientCtlInetAddressTypeThe type of IP address filter. Only supports IPv4 and IPv6
address types.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.15.1 |
ipFilterAllClientCtlInetAddressStartThe start IP address.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.15.2 |
ipFilterAllClientCtlInetAddressEndThe end IP address.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.9.15.3 |
ipFilterAllClientCtlActionAction for IP filter control. Set this object to create(2) to
create entries in the ipFilterSnmpInetTable,
ipFilterHttpInetTable and ipFilterTelnetInetTable. Set this
object to destroy(3) to destroy specified entries in the
ipFilterSnmpInetTable, ipFilterHttpInetTable and
ipFilterTelnetInetTable. When the action is finshed, whether
successfully or not, or no action is taken, the value of this
object is always noAction(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.9.15.4 |
userAuthMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.10 |
userAuthEnablePasswordSet enable password or delete enable password. NULL is used to
delete the enable password. The password is starting with
alphanumeric.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.10.3 |
userAuthMethodSet user authencation method for system.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.10.4 |
userAuthTableThis table is for creating the new user. SEQUENCE OF UserAuthEntry .1.3.6.1.4.1.259.10.1.5.1.17.10.5 |
userAuthEntryEntries in this table correspond to the users entries in system. UserAuthEntry .1.3.6.1.4.1.259.10.1.5.1.17.10.5.1 |
userAuthUserNameThe name of the user. The user name is starting with alphanumeric. DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.10.5.1.1 |
userAuthPasswordSpecifies the user password. zero length input will set the user enrty
without password. If the user is not exist, it will create the user
with the giving password and privilege 0. The password is starting
with alphanumeric.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.10.5.1.2 |
userAuthPrivilegeSpecifies the user level. If the user is not exist, it will create
the user with the giving privilege with none password. Privilege 15 is
maximum privilege that only can be applied to system administrator.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.10.5.1.3 |
userAuthPublicKeyUser public key, the value can be 'RSA' or 'DSA' or 'Both' or 'None'.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.10.5.1.4 |
userAuthStatusThis node is used to create the user entry by '1' and to delete one
user entry by '0'.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.10.5.1.5 |
dot1xMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.11 |
dot1xAuthConfigExtTableThe extension table of dot1xAuthConfigTable. SEQUENCE OF Dot1xAuthConfigExtEntry .1.3.6.1.4.1.259.10.1.5.1.17.11.1 |
dot1xAuthConfigExtEntryThe entry of dot1xAuthConfigExtTable. Dot1xAuthConfigExtEntry .1.3.6.1.4.1.259.10.1.5.1.17.11.1.1 |
dot1xAuthConfigExtOperModeThe operation mode of dot1x port which allows host
connection to 802.1x-authorized ports.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.11.1.1.1 |
dot1xAuthConfigExtMultiHostMaxCntThe maximum number of hosts when the
dot1xAuthConfigExtOperMode is multiHost(2). When the
operation Mode is singleHost(1), we can ignore this
variables.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.11.1.1.2 |
dot1xAuthConfigExtPortIntrusionActionResponses to intrusion when the authentication is failed;
block-traffic(1) means that to block traffic when the authentication is failed and
guest-vlan(2) means that to join to a guest VLAN when the authentication is failed.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.11.1.1.3 |
dot1xEapolPassThroughWhen this variable is enabled(1), EAPOL frames will
be forwarded to all ports where the Spanning Tree
status is forwarding. When this variable is
disabled(2), EAPOL frames will be discarded. EAPOL
Pass-Through operates when the global status of
802.1X is disabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.11.3 |
aaaMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.12 |
aaaMethodTableContains the settings needed for accounting. SEQUENCE OF AaaMethodEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.1 |
aaaMethodEntryA conceptual row in the aaaMethodTable. AaaMethodEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1 |
aaaMethodIndexSpecifies the index for the entry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1.1 |
aaaMethodNameName for the method.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1.2 |
aaaMethodGroupNameName for the server to use, pointing to aaaRadiusGroupName
or aaaTacacsPlusGroupName.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1.3 |
aaaMethodModestart-stop(1),sends a 'start' accounting notice at the beginning of a process and
a 'stop' accounting notice at the end of a process. The 'start' accounting record
is sent in the background. The requested user process begins regardless of whether or not
the 'start' accounting notice was received by the accounting server.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1.4 |
aaaMethodStatusSet to 1 to initiate the aaaMethodTable, 2 to destroy the table.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1.5 |
aaaMethodClientTypedot1x(1): Provides accounting service for 802.1x activity;
exec(2): Provides accounting service for EXEC connection
such as Telnet, SSH or console.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.12.1.1.6 |
aaaRadiusGroupTableUses a subset of RADIUS servers for accounting as defined by the server group SEQUENCE OF AaaRadiusGroupEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.2 |
aaaRadiusGroupEntryA conceptual row of aaaRadiusGroupEntry. AaaRadiusGroupEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.2.1 |
aaaRadiusGroupIndexSpecifies the index for the entry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.12.2.1.1 |
aaaRadiusGroupServerBitMapIdentifies which RADIUS sever to use, each bit points to each radius server.
80 (1000 0000) point to radius server 1, C0 (11000000) points to radius 1 and radius 2.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.12.2.1.2 |
aaaRadiusGroupNameUses a subset of servers for accounting as
defined by the server group. The same name as aaaTacasPlusGroupName is not allowed.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.12.2.1.3 |
aaaRadiusGroupStatusSet to 1 to initiate the aaaRadiusGroupTable, 2 to destroy the table.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.12.2.1.4 |
aaaTacacsPlusGroupTableUses a subset of TACACS+ servers for accounting as defined by the server group SEQUENCE OF AaaTacacsPlusGroupEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.3 |
aaaTacacsPlusGroupEntryA conceptual row of aaaTacacsPlusGroupEntry. AaaTacacsPlusGroupEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.3.1 |
aaaTacacsPlusGroupIndexSpecifies the index for the entry. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.12.3.1.1 |
aaaTacacsPlusGroupServerBitMapIdentifies which TACACS+ sever to use.rw OCTET STRING .1.3.6.1.4.1.259.10.1.5.1.17.12.3.1.2 |
aaaTacacsPlusGroupNameUses a subset of servers for accounting as
defined by the server group. We can't have the same name as aaaRadiusGroupNamerw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.12.3.1.3 |
aaaTacacsPlusGroupStatusSet to 1 to initiate the aaaRadiusGroupTable, 2 to destroy the table.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.12.3.1.4 |
aaaUpdateSpecifies the periodic interim accounting records to be sent
to the accounting server and periodic intervals to send accounting update records(in minutes).rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.12.4 |
aaaAccountTableSpecifies an interface or a set of interfaces that the
accounting method list will be applied to. SEQUENCE OF AaaAccountEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.5 |
aaaAccountEntryA conceptual row of aaaAccountTable. AaaAccountEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.5.1 |
aaaAccountIfIndexDefined as the ifIndex Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.12.5.1.1 |
aaaAccountMethodNameSpecifies the name of the list of accounting methods to use.
If no method name is specified, the system uses the default.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.12.5.1.2 |
aaaAccountProtocolGet the protocol type of a list method to know which server (RADIUS or TACACS+) is in use.ro INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.12.5.1.3 |
aaaAccountStatusSet to 1 to initiate the aaaRadiusGroupTable, 2 to destroy the table.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.12.5.1.4 |
aaaAccExecTableSpecifies an interface or a set of interfaces that the
accounting method list will be applied to. SEQUENCE OF AaaAccExecEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.9 |
aaaAccExecEntryA conceptual row of aaaAccExecTable. AaaAccExecEntry .1.3.6.1.4.1.259.10.1.5.1.17.12.9.1 |
aaaAccExecIndexThe method of accessing CLI management. Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.12.9.1.1 |
aaaAccExecMethodNameSpecifies the name of the list of accounting methods to use.
If no method name is specified, the system uses the default.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.12.9.1.2 |
networkAccessMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.13 |
networkAccessPortTableA table contains the information of network access about every port. SEQUENCE OF NetworkAccessPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.13.2 |
networkAccessPortEntryA conceptual row in the networkAccessPort table. NetworkAccessPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1 |
networkAccessPortPortIndexThe port and the trunk (excluding trunk members) interface of the
portTable. The interface identified by a particular value of this port
index is the same interface identified by the same value of
ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.1 |
networkAccessPortDynamicVlanSets enabled(1) to enable dynamic VLAN assigment and
sets disabled(2) to disable dynamic VLAN assigment.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.2 |
networkAccessPortMaxMacCountSpecifies the maximum number of authenticated MAC address.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.3 |
networkAccessPortModeSpecifies the secure port mode. enabled(1) means that Mac address
authentication is used and disabled(2) means that the authentication is disabled.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.4 |
networkAccessPortMacFilterSpecifies the MAC filter ID, Set this variable to zero to
disable MAC filter.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.5 |
networkAccessPortGuestVlanSpecifies the guest VLAN ID. To disable the VLAN, set the value to 0.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.6 |
networkAccessPortLinkDetectionStatusSet this object to enabled(1) to enable link detection.
Set this object to disabled(2) to disable link detection.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.7 |
networkAccessPortLinkDetectionModeSpecifies the detection event for a port. Set this object
to linkUp(1) to detect a link-up event. Set this object
to linkDown(2) to detect a link-down event. Set this
object to linkUpDown(3) to detect both link up and
link down events.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.8 |
networkAccessPortLinkDetectionAcitonSpecifies the action to take when a networkAccessPortLinkDetection
event is triggered. Set this object to trap(1) to send a trap
when a networkAccessPortLinkDetection event is triggered.
Set this object to shutDown(2) to shut down the port when a
networkAccessPortLinkDetection event is triggered. Set this object
to trapAndShutDown(3) to send a trap and shut down the port when a
networkAccessPortLinkDetection event is triggered.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.9 |
networkAccessPortDynamicQosSet this object to enabled(1) to enable Dynamic QoS.
Set this object to disabled(2) to disable Dynamic QoS.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.2.1.10 |
networkAccessClearMacAddressMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.13.3 |
networkAccessClearMacAddressAttributeAttribute for clearing Mac address. Specifies the certain attribute
in Mac address table. all(1) indicates both reauthorized and learnt
secure MAC address; static(2) indicates reauthorized MAC address;
dynamic(3) indicates learnt secure MAC address.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.13.3.1 |
networkAccessClearMacAddressMacAddressSpecifies MAC address in the MAC address table for clearing
MAC address. '000000' represents that no MAC address is specified.rw MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.13.3.2 |
networkAccessClearMacAddressPortThe specifies port in the MAC address table for clearing MAC address.
'0' represents that no port is specified.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.3.3 |
networkAccessClearMacAddressActionAction for clearing MAC address . When setting this object to clear(2)
to begin the clearing MAC address operation, a particular MAC address
is cleared from the MAC address table. When the action is finshed whether
or not it is successful or no action is taken, the value of this object
is always noclear(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.13.3.4 |
networkAccessMacAddressTableContains the information of network access MAC addresses. SEQUENCE OF NetworkAccessMacAddressEntry .1.3.6.1.4.1.259.10.1.5.1.17.13.4 |
networkAccessMacAddressEntryA conceptual row in the networkAccessMacAddress table. NetworkAccessMacAddressEntry .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1 |
networkAccessMacAddressAddressSpecifies the authenticated MAC address. MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1.1 |
networkAccessMacAddressPortSpecifies the port of authenticated MAC address. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1.2 |
networkAccessMacAddressInetAddressTypeThis object indicates the type of IP address denoted in
networkAccessMacAddressRadiusServerInetAddress type.ro InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1.3 |
networkAccessMacAddressRadiusServerInetAddressDisplays the IP address of radius server that authenticates
the specified Mac address.ro InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1.4 |
networkAccessMacAddressTimeDisplays the authentication time of the authenticated MAC address.
The following form is a text string; 'yyyy MMm DDd HHh MMm SSs'.
'yyyy' is a four-digit year. 'MM' is a month. A single-digit month is
preceded by a zero. 'DD' is the day of a month. A single-digit day
is preceded by the value zero. 'HH', 'MM' and 'SS' are hour,
minute, and second respectively. A single-digit hour, minute,
and second are preceded by a zero value. An example is:
'2001y 01m 01d 00h 04m 43s'.ro DisplayString .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1.5 |
networkAccessMacAddressAttributeDisplays the attribute of an authenticated MAC address.
static(1) indicates resauthorized secure MAC address.
dynamic(2) indicates learnt secure MAC address.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.13.4.1.6 |
networkAccessAgingSet this object to enabled(1) to enable MAC address aging feature.
Set this object to disabled(2) to disable MAC address aging feature.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.13.5 |
networkAccessMacFilterWithMaskTableContains the settings for MAC filter. SEQUENCE OF NetworkAccessMacFilterWithMaskEntry .1.3.6.1.4.1.259.10.1.5.1.17.13.6 |
networkAccessMacFilterWithMaskEntryA conceptual row in the networkAccessMacFilterWithMaskTable. NetworkAccessMacFilterWithMaskEntry .1.3.6.1.4.1.259.10.1.5.1.17.13.6.1 |
networkAccessMacFilterWithMaskIDSpecifies the MAC filter ID. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.13.6.1.1 |
networkAccessMacFilterWithMaskMacAddressSpecifies the MAC address to be filtered. MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.13.6.1.2 |
networkAccessMacFilterWithMaskMacAddressMaskSpecifies the MAC mask to be filtered. MacAddress (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.17.13.6.1.3 |
networkAccessMacFilterWithMaskStatusSet this object to valid(1) to create an entry.
Set this object to invalid(2) to destroy an entry.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.17.13.6.1.4 |
macAuthMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.14 |
macAuthReauthTimeSpecifies the reauthentication time period.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.14.1 |
macAuthPortTableContains the settings for mac authentication of each port. SEQUENCE OF MacAuthPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.14.2 |
macAuthPortEntryA conceptual row in the macAuthPort table. MacAuthPortEntry .1.3.6.1.4.1.259.10.1.5.1.17.14.2.1 |
macAuthPortIndexThe port and the trunk (including trunk members) interface of the
port table. The interface identified by a particular value of this
index is the same interface identified by the same value
of ifIndex in the IF-MIB. Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.14.2.1.1 |
macAuthPortMaxMacCountSpecifies the maximum number of authenticated MAC addresses for MAC authentication.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.17.14.2.1.2 |
macAuthPortIntrusionActionResponses to intrusion when the authentication is failed.
block-traffic(1) : denies network access to an unauthorized client;
pass-traffic(2) : allows unauthorized clients to the access network.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.14.2.1.3 |
webAuthMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.15 |
webAuthSystemAuthControlSets enabled(1) to enable WebAuth feature and
sets disabled(2) to disable WebAuth feature.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.15.1 |
webAuthSessionTimeoutFor authenticated success users, they can use internet
service during a certain period. Whenever this period expires,
users need to be re-authenticated again. This period is
called session time.rw INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.5 |
webAuthQuietPeriodSpecifies the re-authentication interval when the authentication
fail attempts reach the webAuthLoginAttempts value. Unauthenticated
user won't be authenticated during this period.rw INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.6 |
webAuthLoginAttemptsSpecifies the counter that configures the authentication fail times
for a client. If authentication fail times reaches the specified
value, the client are not allowed to login for some period.rw INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.7 |
webAuthReauthenticateMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.17.15.8 |
webAuthReauthenticatePortSpecifies the port to re-authenticate for all of its
authenticated hosts.rw INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.8.1 |
webAuthReauthenticateInetAddressTypeSpecifies host type to re-authenticate.rw InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.15.8.2 |
webAuthReauthenticateInetAddressSpecificies host to re-authenticate.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.15.8.3 |
webAuthReauthenticateActionAction for WebAuth re-authenication. When setting this object to
reauth(2) to begin the re-authenticated operation, a particular
user is re-authenticated. When the action is finshed whether it is
successfully, or no action is taken, the value of this
object is always noReauth(1).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.15.8.4 |
webAuthPortConfigTableContains the settings for web authentication of each port. SEQUENCE OF WebAuthPortConfigEntry .1.3.6.1.4.1.259.10.1.5.1.17.15.9 |
webAuthPortConfigEntryA conceptual row in the webAuthPortConfigTable. WebAuthPortConfigEntry .1.3.6.1.4.1.259.10.1.5.1.17.15.9.1 |
webAuthPortConfigPortIndexThe port number of the port that may specify certain entry in the table which contains web authentication information. INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.9.1.1 |
webAuthPortConfigStatusSets enabled(1) to enable web authentication feature for each port and
sets disabled(2) to disable web authentication for each port.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.15.9.1.2 |
webAuthPortConfigAuthenticatedHostCountDisplays the authenticated host counts for each portro INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.9.1.3 |
webAuthPortInfoTableContains the information for web authentication of each port. SEQUENCE OF WebAuthPortInfoEntry .1.3.6.1.4.1.259.10.1.5.1.17.15.10 |
webAuthPortInfoEntryA conceptual row in the webAuthPortTable. WebAuthPortInfoEntry .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1 |
webAuthPortInfoPortIndexThe port number for which this entry contains web authentication information. INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1.1 |
webAuthPortInfoPortAuthSuccessIndexThe authentication success number of port for which this entry contains web authentication information. INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1.2 |
webAuthPortInfoInetAddressTypeThis object indicates the type of IP address denoted in webAuthPortInfoIpAddress type.ro InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1.3 |
webAuthPortInfoInetAddressThe IP address which may specify the entry containing web authentication information.ro InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1.4 |
webAuthPortInfoRemainingSessiontimeThe remaining session time for authenticated hosts. During this
period, they may use internet resource. When the session time expires, they
will need to re-authenticate again.ro INTEGER .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1.5 |
webAuthPortInfoStatusDisplays the web authentication status for each port.
authenticated (1) means the user is authenticated.ro Enumeration .1.3.6.1.4.1.259.10.1.5.1.17.15.10.1.6 |
layer3Mgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18 |
arpMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.1 |
arpCacheDeleteAllTo delete all dynamic entries in the ARP cache, write this variable
to delete(1). Writing this variable to noDelete(2) has no effect on
the device. When read, this variable always returns noDelete(2).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.18.1.1 |
arpCacheTimeoutTimeout is provided for entries in the ARP Cache. It is for dynamic
mapping only. Static mapping by creating an entry that associates a
logical address with a physical address is never aged out.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.18.1.2 |
arpTrafficStatistics OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.1.3 |
arpStatSendRequestPacketsThe number of ARP Request packets sent by the ARP process.ro Counter32 .1.3.6.1.4.1.259.10.1.5.1.18.1.3.1 |
arpStatRcvRequestPacketsThe number of ARP Request packets received by the ARP process.ro Counter32 .1.3.6.1.4.1.259.10.1.5.1.18.1.3.2 |
arpStatSendReplyPacketsThe number of ARP Reply packets sent by the ARP process.ro Counter32 .1.3.6.1.4.1.259.10.1.5.1.18.1.3.3 |
arpStatRcvReplyPacketsThe number of ARP Reply packets received by the ARP process.ro Counter32 .1.3.6.1.4.1.259.10.1.5.1.18.1.3.4 |
arpProxyArpTableA list of Proxy ARP status. This table has entries for all static
VLANs. SEQUENCE OF ArpProxyArpEntry .1.3.6.1.4.1.259.10.1.5.1.18.1.4 |
arpProxyArpEntryAn entry in the table, containing information about Proxy ARP
configuration. ArpProxyArpEntry .1.3.6.1.4.1.259.10.1.5.1.18.1.4.1 |
arpProxyArpIfIndexThis is defined as a VLAN interface.
A routing interface is a VLAN that binds an IP subnet. InterfaceIndex (IF-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.1.4.1.1 |
arpProxyArpStatusEnable or disable proxy ARP process on an interface.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.1.4.1.2 |
ripMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.2 |
ripBasicTimers OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.2.1 |
ripUpdateBasicTimerThe update time in seconds controls the advertising of regular update
messages. In the real implementation, the actual timer is this value
offset by a random time (+/-50%) each time it is set.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.18.2.1.1 |
ripTimeoutBasicTimerThe timeout timer in seconds governs the validity of a route. It is
initialized when a route is established, and any time an update
message is received for the route. If the setting time elapses from
the last time the timeout was initialized, the route is considered to
have expired, and the hop count of the route is set to infinite. It
should be at least three times the value of the update timer.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.18.2.1.2 |
ripGarbageCollectionBasicTimerWhen the information about a route becomes invalid, the system does
not immediately purge that route from its table. Instead, it continues
to advertise the route with an infinite metric. At the same time, the
garbage-collection timer is set for that route. When the count reaches
zero, the route is purged from the table. This timer allows neighbors
to become aware of the invalidity of a route prior to purging.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.18.2.1.3 |
ripRoutingProcessStatusEnable or disable RIP routing process on a system.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.2 |
ripGlobalRouterVersionTo specify a RIP version used globally by the router. If interface
version is configurated, router will use the interface configuration;
and if version is not configurated on interface, router will use this
global version; and if both interface and global are not configurated,
router will use interface's default configuration.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.18.2.3 |
ripInstabilityPreventingTableA list of RIP instability preventing status. SEQUENCE OF RipInstabilityPreventingEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.4 |
ripInstabilityPreventingEntryAn entry in the table, containing information about RIP instability
preventing configuration.
The ifIndex index is a VLAN's ifIndex. RipInstabilityPreventingEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.4.1 |
ripIfindexThis is defined as a VLAN interface.
A routing interface is a VLAN and an IP subnet bound to it. InterfaceIndex (IF-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.4.1.1 |
ripSplitHorizonStatusEnable or disable RIP poison reverse on an interface.rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.18.2.4.1.2 |
ripStatisticsResetWrite it to reset(1), the following objects in RFC 1724 should be
reset:
1. Global Counters:
'rip2GlobalRouteChanges',
'rip2GlobalQueries'.
2. Interface Status Table, for each 'rip2IfStatAddress':
'rip2IfStatRcvBadPackets',
'rip2IfStatRcvBadRoutes',
'rip2IfStatSendUpdates'
3. Peer Table, for each 'rip2PeerAddress' and 'rip2PeerDomain',
'rip2PeerRcvBadPackets',
'rip2PeerRcvBadRoutes'
When read this value always is noReset(2).rw Enumeration .1.3.6.1.4.1.259.10.1.5.1.18.2.5 |
ripNetwork OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.2.6 |
ripNetworkByInetAddrTableThe RIP network address table. SEQUENCE OF RipNetworkByInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.6.1 |
ripNetworkByInetAddrEntryA conceptual row of the ripNetworkByInetAddrTable. RipNetworkByInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.6.1.1 |
ripNetworkByInetAddrAddressTypeThe RIP Network address type. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.6.1.1.1 |
ripNetworkByInetAddrAddressThe RIP Network address. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.6.1.1.2 |
ripNetworkByInetAddrPfxLenNetwork prefix length. InetAddressPrefixLength (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.6.1.1.3 |
ripNetworkByInetAddrStatusSet this variable to create or destroy a RIP network address.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.18.2.6.1.1.4 |
ripNetworkByIfindexTableThe RIp network ifindex table. SEQUENCE OF RipNetworkByIfindexEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.6.2 |
ripNetworkByIfindexEntryA conceptual row of the ripNetworkByIfindexTable. RipNetworkByIfindexEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.6.2.1 |
ripNetworkIfindexThis is defined as a layer3 interface. InterfaceIndex (IF-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.6.2.1.1 |
ripNetworkByIfindexStatusSet this variable to create or destroy a RIP network ifindex table.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.18.2.6.2.1.2 |
ripDistributeListTableThe RIP distribute list table. It's used to filter incoming or
outgoing route updates using the access-list or prefix-list. SEQUENCE OF RipDistributeListEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.7 |
ripDistributeListEntryA conceptual row of the ripDistributelistTable. RipDistributeListEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.7.1 |
ripDistributeListInterfaceIndexThe index of the interface on which distribute-list is applied, If
index is 0, the filter will be applied to all the interfaces. InterfaceIndex (IF-MIB) .1.3.6.1.4.1.259.10.1.5.1.18.2.7.1.1 |
ripDistributeListTypeType of distribute-list applied: access-list or prefix-list. Enumeration .1.3.6.1.4.1.259.10.1.5.1.18.2.7.1.2 |
ripDistributeListIncomingRouteFilterNameSpecifies access-list or prefix-list name to filter incoming routing
updates.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.18.2.7.1.3 |
ripDistributeListOutgoingRouteFilterNameSpecifies access-list or prefix-list name to filter outgoing routing
updates.rw DisplayString .1.3.6.1.4.1.259.10.1.5.1.18.2.7.1.4 |
ripDistributeListStatusSet this variable to create or destroy a distribute list.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.18.2.7.1.5 |
ripRedistributeTableThe RIP Redistribute table. Config rip redistribute type, metric. SEQUENCE OF RipRedistributeEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.8 |
ripRedistributeEntryA conceptual row of the ripRedistributeTable. RipRedistributeEntry .1.3.6.1.4.1.259.10.1.5.1.18.2.8.1 |
ospfMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.3 |
routeMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.18.5 |
sysLogMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.19 |
lineMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.20 |
sysTimeMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.23 |
fileMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.24 |
dnsMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.26 |
stormMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.33 |
sysResourceMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.39 |
mvrMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.44 |
dhcpSnoopMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.46 |
clusterMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.47 |
ipSrcGuardMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.48 |
oamMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.52 |
mldSnoopMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.54 |
sFlowMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.55 |
dynamicArpInspectionMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.56 |
udpHelperMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.58 |
udpHelperStatusSet this variable to enabled(1) to enable UDP helper. Set this
variable to disabled(2) to disable UDP helper.rw EnabledStatus (P-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.58.1 |
udpHelperForwardProtocolTableTo specify which UDP ports the switch forwards when forwarding
UDP broadcast packets. SEQUENCE OF UdpHelperForwardProtocolEntry .1.3.6.1.4.1.259.10.1.5.1.58.2 |
udpHelperForwardProtocolEntryA conceptual row of udpHelperForwardProtocolTable. UdpHelperForwardProtocolEntry .1.3.6.1.4.1.259.10.1.5.1.58.2.1 |
udpHelperForwardProtocolPortThe port number of the UDP protocol. Adding a helper address
by udpHelperInetAddrTable causes the software to forward UDP
broadcast packets. By this table, you can specify exactly which
types of UDP broadcast packets you would like to have
forwarded. Integer32 .1.3.6.1.4.1.259.10.1.5.1.58.2.1.1 |
udpHelperForwardProtocolStatusSet this variable to valid(1) to enable forwarding of
packets. Set this variable to invalid(2) to disable forwarding
of packets.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.58.2.1.2 |
udpHelperInetAddrTableTo forward UDP broadcasts, including BOOTP, received on an
interface. After configuring an UDP helper address on an
interface, the UDP broadcast packets on this network to which
this interface is attached will be sent to the helper. Combined
with the configuration of udpHelperForwardProtocolTable, it
allows you to control which kind of broadcast packets can be
forwarded.
One common application that requires helper addresses is
Dynamic Host Configuration Protocol (DHCP), which is defined in
RFC 1531. To enable BOOTP or DHCP broadcast forwarding for a
set of clients, configure a helper address on the router
interface connected to the client. The helper address should
specify the address of the BOOTP or DHCP server. If you have
multiple servers, you can configure one helper address for each
server. SEQUENCE OF UdpHelperInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.58.3 |
udpHelperInetAddrEntryA conceptual row of udpHelperInetAddrTable. UdpHelperInetAddrEntry .1.3.6.1.4.1.259.10.1.5.1.58.3.1 |
udpHelperInetAddrVlanIndexThe VLAN-ID or other identifier refering to this VLAN. Based on
dot1qVlanIndex in the Q-BRIDGE-MIB. VlanIndex (Q-BRIDGE-MIB) .1.3.6.1.4.1.259.10.1.5.1.58.3.1.1 |
udpHelperInetAddrTypeThe address type of the helper address. InetAddressType (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.58.3.1.2 |
udpHelperInetAddrThe Internet address of the helper address. InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.58.3.1.3 |
udpHelperInetAddrStatusTo forward UDP broadcasts, including BOOTP, received from the
specified interface, to the specified address. Set this
variable to valid(1) to enable forwarding of packets. Set this
variable to invalid(2) to disable forwarding of packets.
All of the following conditions must be met in order for a User
Datagram Protocol (UDP) or IP packet to be helped:
1. The MAC address of the received frame must be all-ones
broadcast address (FF-FF-FF-FF-FF-FF).
2. The IP destination address must be one of the following:
1) all-ones broadcast (255.255.255.255)
2) subnet broadcast for the receiving interface
3. The IP protocol must be UDP (17).
4. The UDP destination port must be TFTP, Domain Name System
(DNS), Time, NetBIOS, BOOTP or DHCP packet, or a UDP port
specified by the udpHelperForwardTable.rw ValidStatus .1.3.6.1.4.1.259.10.1.5.1.58.3.1.4 |
erpsMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.62 |
ipv6TunnelMgt OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.1.65 |
ipv6TunnelTableTable for configuration in IPv6 Tunnel management. SEQUENCE OF Ipv6TunnelEntry .1.3.6.1.4.1.259.10.1.5.1.65.1 |
ipv6TunnelEntryEntry for configuration in IPv6 Tunnel management. Ipv6TunnelEntry .1.3.6.1.4.1.259.10.1.5.1.65.1.1 |
ipv6TunnelIndexThe tunnel interface index.ro Integer32 .1.3.6.1.4.1.259.10.1.5.1.65.1.1.1 |
ipv6TunnelNdRaSuppressTo set router advertisement transmission.rw Integer32 { do-not-suppress(1), suppress(2) } .1.3.6.1.4.1.259.10.1.5.1.65.1.1.2 |
ipv6TunnelModeTo set ipv6 tunnel mode.configured(1) is for static tunnel, sixtofour(2) and isatap(3) are for dynamic tunnelsrw Integer32 { configured(1), sixtofour(2), isatap(3) } .1.3.6.1.4.1.259.10.1.5.1.65.1.1.3 |
ipv6TunnelTtlTo set ttl value of ipv4 header of ipv6 encapsulation for tunneling.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.65.1.1.4 |
ipv6TunnelDestinationTo set tunnel destination/remote endpoint on the tunnel interface.rw InetAddress (INET-ADDRESS-MIB) .1.3.6.1.4.1.259.10.1.5.1.65.1.1.5 |
ipv6TunnelSourceVlanIfindexTo set tunnel source/local endpoint interface on the tunnel interface.rw Integer32 .1.3.6.1.4.1.259.10.1.5.1.65.1.1.6 |
ipv6TunnelRowStatusRow status of the tunnel interface.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.5.1.65.1.1.7 |
ecs4610-24fNotifications OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.2 |
ecs4610-24fTraps OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.2.1 |
ecs4610-24fTrapsPrefix OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.2.1.0 |
swPowerStatusChangeTrapThis trap is sent when the power state changes. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.1 |
swPortSecurityTrapThis trap is sent when the port is being intruded. This trap
will only be sent when the portSecAction is set to trap(2) or
trapAndShutdown(4). NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.36 |
swIpFilterRejectTrapThis trap is sent when an incorrect IP address is rejected by
the ipfilter. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.40 |
swSmtpConnFailureTrapThis trap is triggered if the SMTP system
cannot open a connection to the mail server successfully. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.41 |
swMainBoardVerMismatchNotificaitonThis trap is sent when the slave version is mismatch with the
master version. This trap will binds two object, the first object
indicate the master version, whereas the second represent the
slave version. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.56 |
swAtcBcastStormAlarmFireTrapWhen the broadcast traffic is detected as the storm, this trap
will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.70 |
swAtcBcastStormAlarmClearTrapWhen the broadcast storm is detected as the normal traffic, this
trap will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.71 |
swAtcBcastStormTcApplyTrapWhen the ATC is activated, this trap will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.72 |
swAtcBcastStormTcReleaseTrapWhen the ATC is released, this trap will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.73 |
swAtcMcastStormAlarmFireTrapWhen the multicast traffic is detected as the storm, this trap
will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.74 |
swAtcMcastStormAlarmClearTrapWhen the multicast storm is detected as the normal traffic, this
trap will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.75 |
swAtcMcastStormTcApplyTrapWhen the ATC is activated, this trap will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.76 |
swAtcMcastStormTcReleaseTrapWhen the ATC is released, this trap will be fired. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.77 |
swLoopbackDetectionTrapThis trap will be sent when loopback BPDUs have been detected. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.95 |
networkAccessPortLinkDetectionTrapThis trap is sent when a networkAccessPortLinkDetection
event is triggered. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.96 |
swCpuUtiRisingNotificationThis notification indicates that the CPU utilization crossed
cpuUtiRisingThreshold. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.107 |
swCpuUtiFallingNotificationThis notification indicates that the CPU utilization crossed
cpuUtiFallingThreshold. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.108 |
swMemoryUtiRisingThresholdNotificationThis notification indicates that the memory utilization crossed
memoryUtiRisingThreshold. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.109 |
swMemoryUtiFallingThresholdNotificationThis notification indicates that the memory utilization crossed
memoryUtiFallingThreshold. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.110 |
swLoginFailureTrapThis trap is sent when login fail via console,telnet, or web. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.139 |
swLoginSucceedTrapThis trap is sent when login succeed via console,telnet, or web. NOTIFICATION-TYPE .1.3.6.1.4.1.259.10.1.5.2.1.0.140 |
ecs4610-24fConformance OBJECT IDENTIFIER .1.3.6.1.4.1.259.10.1.5.3 |
ripRedistributeProtocolProtocol redistributed to Intermediate System:
connected
static
ospf
::= { ripRedistributeEntry 1 }
ripRedistributeMetric OBJECT-TYPE
SYNTAX Integer32(0..16)
MAX-ACCESS read-create
STATUS current
DESCRIPTION Enumeration .1.3.6.1.4.1.259.10.1.45.1.62.2.1.13 |
erpsDomainWestRingPortStateThis value displays the west ring port's current state.
It displays one of the following states
(1). unknown
(The port's current state will stay in unknown state
if the node's current state is in init state.)
(2). blocking
are blocked.
(3). forwarding
normally.ro Enumeration .1.3.6.1.4.1.259.10.1.45.1.62.2.1.14 |
erpsDomainEastRingPortStateThis value displays the east ring port's current state.
It displays one of the following states
(1). unknown
(The port's current state will stay in unknown state
if the node's current state is in init state.)
(2). blocking
are blocked.
(3). forwarding
normally.ro Enumeration .1.3.6.1.4.1.259.10.1.45.1.62.2.1.15 |
erpsDomainRowStatusThe status of this conceptual row entry. This object is used to
manage the creation and deletion of conceptual rows.
The status column has six defined values:
- 'active', which indicates that the conceptual row is
available for use by the managed device;
- 'notInService', which indicates that the conceptual row
exists in the agent, but is unavailable for use by the managed
device (see NOTE below);
- 'notReady', which indicates that the conceptual row exists in
the agent, but is missing information necessary in order to be
available for use by the managed device;
- 'createAndGo', which is supplied by a management station
wishing to create a new instance of a conceptual row and to
have its status automatically set to active, making it
available for use by the managed device;
- 'createAndWait', which is supplied by a management station
wishing to create a new instance of a conceptual row (but not
make it available for use by the managed device); and,
- 'destroy', which is supplied by a management station wishing
to delete all of the instances associated with an existing
conceptual row.
Whereas five of the six values (all except 'notReady') may be
specified in a management protocol set operation, only three
values will be returned in response to a management protocol
retrieval operation: 'notReady', 'notInService' or 'active'.
That is, when queried, an existing conceptual row has only
three states: it is either available for use by the managed
device (the status column has value 'active'); it is not
available for use by the managed device, though the agent has
sufficient information to make it so (the status column has
value 'notInService'); or, it is not available for use by
the managed device, and an attempt to make it so would fail
because the agent has insufficient information (the state
column has value 'notReady').
For a detailed description of this object, please refer to
SNMPv2-TC MIB.
Note that other objects can not be modified when the status
is active.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.259.10.1.45.1.62.2.1.16 |
erpsDomainMajorDomainIndexAn index that uniquely identifies an entry in the
erpsDomainTable. A value of 0 means this domain has no major
domain.
Notes: This objest can not be configured if
erpsDomainRingPortEast has a vaule other than 0.rw Integer32 .1.3.6.1.4.1.259.10.1.45.1.62.2.1.17 |
erpsDomainPropagateTCSet to enabled(1) to transmit topology change signal to the
major domain. It will not take effect,
if erpsDomainMajorDomainIndex has a value of 0.rw Enumeration .1.3.6.1.4.1.259.10.1.45.1.62.2.1.18 |
erpsDomainWestMepIdConfigures a CFM Down MEP on west ring port. A down MEP can be
uniquely select by given a MEPID, domain's MEG level, and
domain's control VLAN ID. A value of 0 means no west MEP is
not configured for this domain.rw Integer32 .1.3.6.1.4.1.259.10.1.45.1.62.2.1.20 |
erpsDomainEastMepIdConfigures a CFM Down MEP on east ring port. A down MEP can be
uniquely select by given a MEPID, domain's MEG level, and
domain's control VLAN ID. A value of 0 means no east MEP is
not configured for this domain.rw Integer32 .1.3.6.1.4.1.259.10.1.45.1.62.2.1.21 |
erpsDomainNonErpsDevProtectSet to enabled(1) to use non-standard protection mechanism for
network containing non-ERPS devices.rw Enumeration .1.3.6.1.4.1.259.10.1.45.1.62.2.1.22 |