DECHUB900-ERPTR-MIB-V3-0
AI MIB Summary
Standard SNMP MIB module defining data structures for DECHUB900-ERPTR-MIB-V3-0.
133
Objects
Active
Status
3
Dependencies
Imported Objects
Objects
133 total| Object Name |
|---|
dec OBJECT IDENTIFIER .1.3.6.1.4.1.36 |
RFC1155-SMI Unknown .1.3.6.1.4.1.36 |
ema OBJECT IDENTIFIER .1.3.6.1.4.1.36.2 |
decMIBextension OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18 |
decHub900 OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11 |
repeater OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5 |
rptrVersion1 OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1 |
rptrExtensions OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1 |
erptrBasicPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.1 |
erptrRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1 |
erptrAutoPartitionAlgThe auto-partition algorithm protects the network from certain
fault conditions which can halt all LAN communications. A media
short or break, a faulty connector, or faulty or missing media
termination, are examples of such conditions. If a repeater
detects such faults on any of its ports, it isolates the faulty
segment from the network.
A repeater does not respond to input received from an
auto-partitioned port, except to determine if the fault
condition has been removed. A repeater continues to transmit
data to an auto-partitioned port.
Setting this object to standard(1) causes the repeater to
implement the IEEE 802.3 standard auto-partitioning algorithm.
If the repeater detects any of the following conditions on a
given port, this algorithm isolates that port from the network.
1. Excessive length collision
2. Excessive number of consecutive collisions
Setting this object to enhanced(2) causes the repeater to
implement an augmented auto-partitioning algorithm. This option
protects the LAN from a greater range of fault conditions. If
the repeater detects any of the following conditions on a given
port, this algorithm isolates that port from the network.
1. Excessive length collision
2. Excessive number of consecutive collisions
3. No receive activity during transmission (no
carrier loop back)
4. Excessive length input message (jabber)
5. Transmit carrier drop (one or more lapses in the
input message during a single output message
without a collision)
6. Internal detectable port failures
Some implementations may not support setting this object to all
defined enumerated values. A badValue error is returned if an
attempt is made to set this object to an unsupported value.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.1 |
erptrAutoPartitionReconnectAlgThe auto-partition reconnection algorithm defines the criteria
for determining that a malfunction on an auto-partitioned port
has been cleared. The auto-partitioned port reconnects and
becomes a fully functional repeater port when these conditions
are met. Reconnection criteria vary depending upon the
auto-partition reason and reconnection algorithm.
Setting this object to standard(1) causes the repeater to
implement the IEEE 802.3 standard auto-partition reconnection
algorithm. This algorithm reconnects a port auto-partitioned
due to excessive length collisions or excessive number of
consecutive collisions when the port transmits or receives a
packet without detecting a collision.
Setting this object to tx_only(2) causes the repeater to
implement a more stringent auto-partition reconnection
algorithm. This algorithm reconnects a port auto-partitioned
due to excessive length collisions or excessive number of
consecutive collisions only when the port transmits a packet
without detecting a collision. This algorithm provides a higher
level of confidence that all faults have been removed,
resulting in a more robust fault isolation mechanism.
Some implementations may not support setting this object to all
defined enumerated values. A badValue error is returned if an
attempt is made to set this object to an unsupported value.
The reconnection criteria for ports auto-partitioned due to no
receive activity during transmission, excessive length input
message, transmit carrier drop, and internal detectable port
failures are not affected by this object's value.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.2 |
erptrJamBitsWhen a repeater detects a collision on any of the ports to
which it is transmitting, it transmits a jam signal to all of
the ports to which it is connected. This object specifies the
minimum amount of time a repeater transmits a jam signal after
it detects a collision. See the IEEE 802.3 standard for more
details regarding collision detection and handling.
Setting this object to jb96(1) causes the repeater to transmit
jam for at least 96 bit times after it detects a collision.
This setting complies with the IEEE 802.3 standard
specification for the minimum jam time.
Setting this object to jb128(1) causes the repeater to transmit
jam for at least 128 bits times after it detects a collision.
Some repeaters, designed prior to the development of the IEEE
802.3 specification, jam for a minimum of 128 bit times after
they detect collisions. It may be desirable for all the
repeaters on the LAN to perform the same collision handling
function. This setting provides a backwards compatibility mode
when older repeaters are present in the network.
Some implementations may not support setting this object to all
defined enumerated values. A badValue error is returned if an
attempt is made to set this object to an unsupported value.
Note: If an implementation supports multiple minimum jam time
settings, the default value for this object is
jb96(1).
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.3 |
erptrHealthTextChangesThis counter increments each time the rptrHealthText object
defined in RFC 1516 is modified.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.4 |
erptrTotalPortEventsThe total number of times any port in the repeater became
not operational or auto-partitioned, or the media for any
ports' MAUs became unavailable. This object is a
summation of the erptrPortPartitions and
erptrMauMediaAvailableChanges counters of all the ports
and MAUs in the repeater.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.5 |
erptrTotalRptrErrorsThe total number of errors which have occured on all
the groups in a repeater. This object is a summation
of the values of the rptMonitorGroupTotalErrors as
defined in RFC 1516 for all of the groups in a repeater.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.6 |
erptrJabberProtectionAdminStatusThe jabber protection function automatically disables a
port whenever it detects a very long input event (or
jabber) on that port. Once disabled, the port will
neither transmit nor receive data. The rptrOperStatus
object for such a port will report notOperational(2). The
erptrPortPartitionReason for such a port will report
jabberAndMgmtPart(7). The port will remain in this state
until the port's rptrPortAdminStatus object is set to
enabled(1).
Setting this object to enabled(1) enables the jabber
protection function on all manageable repeater ports.
Setting this object to disabled(2) disables the jabber
protection function on all manageable repeater ports.
Some implementations may not support setting this object to all
defined enumerated values. A badValue error is returned if an
attempt is made to set this object to an unsupported value.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.7 |
erptrTotalPortsThe total number of front panel ports in the repeater. This
object is summation of rptrPortCapacity as defined in RFC1516
for each group. This does not include the thinwire port for
the repeaterro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.8 |
erptrPMDCarrierCardTypeThe value unknown(1) indicates card that connects to MOD-PMDs
are not present.
The value type10Base (2) indicates card that connects to
MOD-PMDs are present and the PMDS that can be connected to this
card are of type 10base T and belongs to the family of IEEE
802.3 (Ethernet-like) repeater products.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.1.9 |
erptrGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2 |
erptrGroupTableTable of descriptive and status information about the groups
of ports. SEQUENCE OF ErptrGroupEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2.1 |
erptrGroupEntryAn entry in the table containing information about a single
group of ports. ErptrGroupEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2.1.1 |
erptrGroupIndexThis object identifies the group within the repeater for which
this entry contains information. This value is never greater
than the rptrGroupCapacity object defined in RFC 1516.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2.1.1.1 |
erptrGroupTransmitCollisionsThis counter increments every time the port-group's repeater
state machine enters the TRANSMIT COLLISION state from any
state other than ONE PORT LEFT. See Figure 9-2 in [3].
This object is similar to the rptrMonitorTransmitCollisions
object defined in the IETF repeater MIB [6]. This counter is
useful when a repeater module's port-groups are configured to
operate as independent repeater units.
The minimum rollover time of this counter is approximately 16
hours.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2.1.1.2 |
erptrGroupResetSetting this object to reset(2) causes the port-group's
repeater unit state machine to transition to the START state of
Fig 9-2 in section 9 [3].
Setting this object to noReset(1) has no effect. The agent
always returns the value noReset(1) when this object is read.
This action does not reset management counters defined in
either RFC 1516 or this document nor does is affect the
portAdminStatus parameters defined in RFC 1516.
This object is similar to the rptrReset object defined in RFC
1516 except that it affects only a single group instance.
As a result of this action a rptrResetEvent trap is sent.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2.1.1.3 |
erptrGroupLanTotalOctetsThis object counts the total number of octets contained in
non-collision packets transmitted by all the ports in this
group. This counter increments by the same amount for all
groups configured to operate in concert as a single repeater
unit.
This counter is the aggregate of traffic received from all
external and internal ports in this group, including unmanaged
internal ports which do not appear in this group's port table.
This object may report a different value than the
rptrMonitorGroupTotalOctets counter defined in the IETF
repeater MIB [6], which is defined as the summation of the
values of the rptrMonitorPortReadableOctets counters for all of
the ports appearing in this group's port table.
This statistic provides an indication of the total data
transferred. The minimum rollover time of this counter is
approximately 58 minutes.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.2.1.1.4 |
erptrPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3 |
erptrPortTableTable of descriptive and status information about the ports. SEQUENCE OF ErptrPortEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1 |
erptrPortEntryAn entry in the table, containing information about a single
port. ErptrPortEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1 |
erptrPortGroupIndexThis object identifies the group containing the port for which
this entry contains information. This value is never greater
than the rptrGroupCapacity object defined in RFC 1516ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.1 |
erptrPortIndexThis object identifies the port within the group for which
this entry contains information. This value is never greater
than the rptrGroupPortCapacity object defined in RFC 1516 for
the associated group.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.2 |
erptrPortNameAn administratively-assigned name for this repeater port.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw DisplayString .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.3 |
erptrPortPartitionsThis counter increments by one each time the repeater
auto-partitions this port or the port becomes disabled or
otherwise not operational.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.4 |
erptrPortPartitionReasonThis object describes the reason why a port is currently
auto-partitioned or otherwise disabled.
A value of unknown(1) indicates that the port currently has a
rptrAutoPartitionState of autoPartitioned(2) and a
rptrPortOperStatus of operational(1), as defined in RFC 1516,
but the implementation cannot determine the exact reason why
the port has auto-partitioned.
A value of notPartitioned(2) indicates that the port currently
has a rptrAutoPartitionState of notAutoPartitioned(1) and a
rptrPortOperStatus of operational(1), as defined in RFC 1516.
A value of managementPartitioned(3) indicates that the port
currently has a rptrPortAdminStatus of disabled(2) (or is
otherwise not operational) and a rptrAutoPartitionState of
notAutoPartitioned(1), as defined in RFC 1516. However, if the
port currently has a rptrPortAdminStatus of disabled(2) and a
rptrAutoPartitionState of autoPartitioned(2), but the
implementation cannot determine the exact reason why the port
has auto-partitioned, then a value of managementPartitioned(3)
is returned.
A value of excessiveCollision(4) indicates that the port
currently has a rptrAutoPartitionState of autoPartitioned(2)
and a rptrPortOperStatus of operational(1), as defined in RFC
1516. The repeater auto-partitioned this port because it
detected an 'excessive length collision' condition.
A value of excessiveCollisionAndMgmtPart(5) indicates that the
port currently has a rptrAutoPartitionState of
autoPartitioned(2) and a rptrPortOperStatus of
notOperational(2), as defined in RFC 1516. The repeater
auto-partitioned this port because it detected an 'excessive
length collision' condition.
A value of consecutiveCollisions(6) indicates that the port
currently has a rptrAutoPartitionState of autoPartitioned(2)
and a rptrPortOperStatus of operational(1), as defined in RFC
1516. The repeater auto-partitioned this port because it
detected an 'excessive number of consecutive collisions'
condition.
A value of consecutiveCollisionsandMgmtPart(7) indicates that
the port currently has a rptrAutoPartitionState of
autoPartitioned(2) and a rptrPortOperStatus of
notOperational(2), as defined in RFC 1516. The repeater
auto-partitioned this port because it detected an 'excessive
number of consecutive collisions' condition.
A value of jabber(8) indicates that the port currently has a
rptrAutoPartitionState of autoPartitioned(2) and a
rptrPortOperStatus of operational(1), as defined in RFC 1516.
The repeater auto-partitioned this port because it detected an
'excessive length input message' condition.
A value of jabberAndMgmtPart(9) indicates that the port
currently has a rptrAutoPartitionState of autoPartitioned(2)
and a rptrPortOperStatus of notOperational(2), as defined in
RFC 1516. The repeater auto-partitioned this port because it
detected an 'excessive length input message' condition.
A value of noCarrierLoopback(10) indicates that the port
currently has a rptrAutoPartitionState of autoPartitioned(2)
and a rptrPortOperStatus of operational(1), as defined in RFC
1516. The repeater auto-partitioned this port because it
detected a 'no receive activity during transmission' condition.
A value of noCarrierLoopbackAndMgmtPart(11) indicates that the
port currently has a rptrAutoPartitionState of
autoPartitioned(2) and a rptrPortOperStatus of
notOperational(2), as defined in RFC 1516. The repeater
auto-partitioned this port because it detected a 'no receive
activity during transmission' condition.
A value of transmitCarrierDropout(12) indicates that the port
currently has a rptrAutoPartitionState of autoPartitioned(2)
and a rptrPortOperStatus of operational(1), as defined in RFC
1516. The repeater auto-partitioned this port because it
detected a 'transmit carrier drop' condition.
A value of transmitCarrierDropoutAndMgmtPart(13) indicates that
the port currently has a rptrAutoPartitionState of
autoPartitioned(2) and a rptrPortOperStatus of
notOperational(2), as defined in RFC 1516. The repeater
auto-partitioned this port because it detected a 'transmit
carrier drop' condition.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.5 |
erptrPortMAUTypeThis object indicates the type of Medium Attachment Unit (MAU)
associated with this port.
unknown(1) - cannot determine MAU type.
typeAUI(2) - no internal MAU, view from AUI.
type10Base5(3) - thick coax MAU (per IEEE 802.3 Std, section 8)
typeFoirl(4) - FOIRL MAU (per IEEE 802.3 Std, section 9.9)
type10Base2(5) - thin coax MAU (per IEEE 802.3 Std, section 10)
type10BaseT(6) - UTP Mau (per IEEE 802.3 Std, section 14) with
- a RJ45 style physical connector.
type10BaseFP(7) - passive fiber MAU (per IEEE 802.3 Std,
section 16)
type10BaseFB(8) - sync fiber MAU (per IEEE 802.3 Std,
section 17)
type10BaseFL(9) - asynch fiber MAU (per IEEE 802.3 Std,
section 18)
typeTelco10BaseT(10) - UTP Mau (per IEEE 802.3 Std, section 14)
with a 50-pin Telco/champ style physical
connector.
typeBackplaneThinwire(11) - internal connection to the DEChub
90's, DEChub 900MS, or MS600's
dedicated Ethernet LAN segment.
typeRAUI(12) - no internal MAU, view from RAUI.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.6 |
erptrPortSQETestErrorThis object indicates whether or not a port has detected SQE
Test messages from its attached MAU. The value of this object
persists between packets. This object is useful in detecting
configuration errors which could seriously impact network
performance.
According to the IEEE 802.3 standard, MAUs associated with
repeaters must not implement the signal_quality_error (SQE)
message Test function. MAUs implementing this function
generate a short collision announcement to their attachment
unit interfaces (AUIs) following the transmission of every
packet. Repeaters may interpret this test message as an actual
collision event and attempt to propagate the collision by
transmitting a jam signal to all of its other ports.
A value of unknown(1) indicates that an implementation does not
have the ability to determine if it is receiving SQE Test
messages.
A value of sqeTestDetected(2) indicates that a SQE Test message
was detected after the transmission of the last packet out this
port. This message was interpreted as a collision, extended to
a full Jam pattern and transmitted out every other repeater port.
A value of sqeTestNotDetected(3) indicates that a SQE Test
message was not detected after the transmission of the last
packet out this port.
A value of sqeTestMasked(4) indicates that a SQE Test message
was detected after the transmission of the last packet out this
port but this message was ignored and not interpreted as a
collision. This value is used by those implementations which
offer SQE Test Masking functions.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.1.3.1.1.7 |
erptrAddrDBPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.2 |
erptrAddrDBRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.2.1 |
erptrAddrDBTableCapacityThis object specifies the maximum number of MAC addresses
which can be stored in erptrAddrDBPortAddrTable.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.2.1.1 |
erptrAddrDBGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.2.2 |
erptrAddrDBPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.2.3 |
erptrAddrDBPortAddrTableA table of port-mapping information about MAC addresses
detected by the repeater. SEQUENCE OF ErptrAddrDBPortAddrEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.2.3.1 |
erptrAddrDBPortAddrEntryAn entry in the table containing port-mapping information
about a single MAC address. ErptrAddrDBPortAddrEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.2.3.1.1 |
erptrAddrDBPortPhyAddrThis object identifies the source address of a readable frame
received from a port in the agents port table.ro PhysAddress (SNMPv2-TC) .1.3.6.1.4.1.36.2.18.11.5.1.1.2.3.1.1.1 |
erptrAddrDBPortGroupIndexThis object identifies the group containing the port on which
this entry's MAC address was seen.ro INTEGER ( 1..1024 ) .1.3.6.1.4.1.36.2.18.11.5.1.1.2.3.1.1.2 |
erptrAddrDBPortIndexThis object identifies the port within the group on which this
entry's MAC address was seen.ro INTEGER ( 1..1024 ) .1.3.6.1.4.1.36.2.18.11.5.1.1.2.3.1.1.3 |
erptrDprPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.3 |
erptrDprRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.1 |
erptrDprTotalStateChangesThis counter increments whenever the erptrDprLinkStateChanges
counter for any entry in erptrDprLinkTable increments.
This object is not necessarily the sum of the current values
of the erptrDprLinkStateChanges objects for all entries in
erptrDprLinkTable.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.3.1.1 |
erptrDprGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.2 |
erptrDprPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3 |
erptrDprLinkTableTable of redundant link configuration and status information. SEQUENCE OF ErptrDprLinkEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1 |
erptrDprLinkEntryAn entry in the table containing information describing a
single redundant link's configuration and status. ErptrDprLinkEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1 |
erptrDprLinkGroupIndexThis object identifies the group containing the port which is a
member of the dual-redundant link for which this entry contains
information. This value is never greater than
rptrGroupCapacity.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.1 |
erptrDprLinkPortIndexThis object identifies the port within the group which is a
member of the dual-redundant link for which this entry contains
information. If erptrDprLinkType is set to redundantMaster(1)
this port is the master primary port of the redundant link. If
erptrDprLinkType is set to redundantResponder(2) this port is a
responder port which may be connected to either the primary or
secondary link. This value is never greater than
rptrGroupPortCapacity for the associated group.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.2 |
erptrDprLinkTypeSetting this object to redundantMaster(1) causes the repeater to
configure the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex as a Master port on the primary segment of
a dual-redundant link. This also implies that an additional
port on this repeater module is configured as a Master port on
the secondary segment of the dual-redundant link (as specified
by erptrDprSecondaryGroupIndex and erptrDprSecondaryPortIndex).
This port is in the active state by default following a reset or
re-initialization.
Setting this object to redundantResponder(2) causes the repeater to
configure the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex as a responder port in a dual-redundant link.
This port may be connected to either the primary or secondary
link. This port is in the active state by default following a
reset or re-initialization.
Note: Once this table entry has been validated
(i.e. erptrDprLinkEntryStatus is set to valid(1)), the
agent does not allow this object to be set to any value
other than the present setting. Any attempt to do
otherwise results in a badValue error.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrDprLinkEntryStatus is set to valid(1).rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.3 |
erptrDprLinkToggleIf erptrDprLinkType equals redundantMaster, setting this
object to toggle(2) causes a redundant link specified by this
table entry to undergo a state change. That is, the repeater
forces the previously active link segment into the standby
state and the previously inactive link segment into the active
state.
If erptrDprLinkType equals redundantResponder, setting this object
to toggle(2) has no effect.
Setting this object to noToggle(1) has no effect. The agent
always returns a value of noToggle(1) when this object is read.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.4 |
erptrDprLinkOperStatusThis object reports the operational status of either the
redundant master primary port or the redundant responder port
associated with this entry (as specified by erptrDprLinkType).
A value of redundancyNotOperational(1) indicates that redundancy
is not operational on the link associated with this entry.
A value of masterPrimaryActive(2) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a master port on the
primary segment of the redundant link associated with this
entry.
- the primary segment of the dual-redundant link is currently
the active link.
- No link failures are currently detected on the primary link.
A value of masterPrimaryStandby(3) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a master port on the
primary segment of the redundant link associated with this
entry.
- the primary segment of the dual-redundant link is currently
the standby link.
- No link failures are currently detected on the primary link.
A value of masterPrimaryLinkFailure(4) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a master port on the
primary segment of the redundant link associated with this
entry.
- a link failure condition exists on the primary segment of
the dual-redundant link (which may have caused a fail-over
to the secondary link).
A value of responderOk(5) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a redundant responder
port which may be connected to either the primary or the
secondary segment of the redundant link associated with this
entry.
- the redundant responder port has not detected any link failures
on the segment to which it is connected.
A value of responderLinkFailure(6) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a redundant responder
port which may be connected to either the primary or the
secondary segment of the redundant link associated with this
entry.
- the redundant responder port has detected a link failure on the
segment to which it is connected.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.5 |
erptrDprSecondaryGroupIndexThis object identifies the group containing the master redundant
port on the secondary segment of the redundant link associated
with this entry.
This secondary redundant port acts in concert with the primary
redundant port specified in erptrDprLinkGroupIndex and
erptrDprLinkPortIndex to provide a fault-tolerant dual-redundant
link when erptrDprLinkType is set to redundantMaster(1). The value
of this object is irrelevant when erptrDprLinkType is set to any
other value.
When erptrDprLinkType is set to redundantMaster(1), the value of
this object must be between 1 and rptrGroupCapacity for redundancy
to be operational.
Note: Once this table entry has been validated
(i.e. erptrDprLinkEntryStatus is set to valid(1)), the
agent does not allow this object to be set to any value
other than the present setting. Any attempt to do
otherwise results in a badValue error.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrDprLinkEntryStatus is set to valid(1).rw INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.6 |
erptrDprSecondaryPortIndexThis object identifies the master redundant port (within the
group) on the secondary segment of the redundant link associated
with this entry.
This secondary redundant port acts in concert with the primary
redundant port specified in erptrDprLinkGroupIndex and
erptrDprLinkPortIndex to provide a fault-tolerant dual-redundant
link when erptrDprLinkType is set to redundantMaster(1). The value
of this object is irrelevant when erptrDprLinkType is set to any
other value.
When erptrDprLinkType is set to redundantMaster(1), the value of
this object must be between 1 and rptrPortCapacity for this group
for redundancy to be operational.
Note: Once this table entry has been validated
(i.e. erptrDprLinkEntryStatus is set to valid(1)), the
agent does not allow this object to be set to any value
other than the present setting. Any attempt to do
otherwise results in a badValue error.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrDprLinkEntryStatus is set to valid(1).rw INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.7 |
erptrDprSecondaryOperStatusThis object reports the operational status of the master redundant
secondary port associated with this entry (as specified by
erptrDprSecondaryGroupIndex and erptrDprSecondaryPortIndex).
A value of redundancyNotOperational(1) indicates:
- redundancy is not operational on the link associated with this
entry.
- this table entry is associated with a responder redundant port
which makes the specification of a master secondary redundant
port irrelevant.
A value of masterSecondaryActive(2) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a master port on the
primary segment of the redundant link associated with this
entry.
- the secondary segment of the dual-redundant link is currently
the active link.
- No link failures are detected on the secondary link.
A value of masterSecondaryStandby(3) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a master port on the
primary segment of the redundant link associated with this
entry.
- the secondary segment of the dual-redundant link is currently
the standby link.
- No link failures are detected on the secondary link.
A value of masterSecondaryLinkFailure(4) indicates:
- redundancy is operational on the link associated with this
entry.
- the port specified by erptrDprLinkGroupIndex and
erptrDprLinkPortIndex is configured as a master port on the
primary segment of the redundant link associated with this
entry.
- a link failure condition exists on the secondary segment of
the dual-redundant link (which may have caused a fail-over
to the primary link).ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.8 |
erptrDprLinkNameAn administratively-assigned name for this dual-redundant
link.
The default value for this object is a zero-length string.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrDprLinkEntryStatus is set to valid(1).rw DisplayString .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.9 |
erptrDprLinkStateChangesThis counter increments by one whenever the value of
erptrDprLinkOperStatus or erptrDprSecondaryOperStatus changes.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.10 |
erptrDprLinkEntryStatusThe status of this table entry.
Setting this object to createRequest(2) adds a new entry in this
table. Immediately after completing the create operation, the
agent sets this object to underCreation(3). An existing instance
of this object cannot be set to createRequest(2).
Entries exist in the underCreation(3) state until the management
station sets this object to valid(1) or aborts, setting this
object to invalid(4).
The repeater does not use the information in this entry to enforce
redundancy unless this object is set to valid (1).
Setting this object to invalid(4) has the effect of deleting this
entry from the table.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrDprLinkEntryStatus is set to valid(1).rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.3.3.1.1.11 |
erptrSecurityPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.4 |
erptrSecurityRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1 |
erptrSecurityRptrSecurityViolationsThis counter increments by one each time the repeater detects an
intrusion security violation on any repeater port. This counter is
the summation of the erptrSecurityPortCtrlViolations counters for
all the ports in all the groups of the repeater.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.1 |
erptrSecurityRptrLogTableA table of intrusion security violations. The maximum number of
entries saved in the log table is implementation-specific. SEQUENCE OF ErptrSecurityRptrLogEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2 |
erptrSecurityRptrLogEntryAn entry in the table containing information describing a
single intrusion security violation. ErptrSecurityRptrLogEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2.1 |
erptrSecurityRptrLogIndexAn index that uniquely identifies an entry in the log table.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2.1.1 |
erptrSecurityRptrLogGroupIndexThis object identifies the group containing the port on which
the intrusion security violation occurred.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2.1.2 |
erptrSecurityRptrLogPortIndexThis object identifies the port within the group on which this
intrusion security violation occurred.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2.1.3 |
erptrSecurityRptrLogTimeThis object identifies the value of sysUpTime at the time the
repeater detected the intrusion security violation.ro TimeTicks (SNMPv2-SMI) .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2.1.4 |
erptrSecurityRptrLogPhysAddressAn intrusion security violation occurs when a repeater port
receives a data packet with a source address not found in that
port's authorized address list. This object identifies the
unauthorized MAC address which caused the intrusion security
violation.ro PhysAddress (SNMPv2-TC) .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.2.1.5 |
erptrSecurityRptrLogCapacityThis object specifies the maximum number of intrusion security
violation log entries which can appear in
erptrSecurityRptrLogTable at any one time.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.1.3 |
erptrSecurityGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.2 |
erptrSecurityPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3 |
erptrSecurityPortCtrlTableA table of security configuration, control and status
information. SEQUENCE OF ErptrSecurityPortCtrlEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1 |
erptrSecurityPortCtrlEntryAn entry in the table containing information describing the
security configuration and status of a single port. ErptrSecurityPortCtrlEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1 |
erptrSecurityPortCtrlGroupIndexThis object identifies the group containing the port for which
this entry contains information. This value is never greater
than rptrGroupCapacity.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1.1 |
erptrSecurityPortCtrlPortIndexThis object identifies the port within the group for which
this entry contains information. This value is never greater
than rptrGroupPortCapacity for the associated group.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1.2 |
erptrSecurityPortCtrlEavesdropModeSetting this object to enabled (1) enables eavesdrop
prevention on this port.
When eavesdrop prevention is active, the repeater compares
unicast destination addresses of packets being transmitting out
this port with the port's authorized address list. The repeater
jams/garbles those packets whose destination addresses do not
appear in the port's authorized address list. The length of the
garbled packet is the same as the length of the original
packet. Packets with multicast or broadcast destination
addresses are not affected by eavesdrop prevention.
If no authorized addresses are assigned to this port in
erptrSecurityPortAddrTable when this object equals enabled(1),
an implementation may optionally enforce eavesdrop prevention
based upon the (dynamically changing) last source address seen
(as indicated by rptrAddrTrackLastSourceAddr or
rptrAddrTrackNewLastSrcAddress). Otherwise, an implementation
may simply not actively enforce eavesdrop prevention on a port
with no assigned authorized addresses.
Setting this object to disabled (2) disables eavesdrop
prevention on this port.
Note: The default value for this object is disabled (2).
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1.3 |
erptrSecurityPortCtrlIntrusionModeTo detect intrusion security violations, the repeater compares
source addresses of packets received from this port with the
addresses in the port's authorized address list (as specified
in erptrSecurityPortAddrTable). If the addresses do not match,
the intrusion is counted, logged in erptrSecurityRptrLogTable,
and and the security rule specified by this object is enforced.
Intrusion protection is not active unless authorized addresses
are assigned to this port in erptrSecurityPortAddrTable.
Setting this object to disabled (1) disables intrusion
detection/prevention on this port.
Setting this object to notifyOnly (2) causes the repeater to
take no action, other than logging entries in
erptrSecurityRptrLogTable, when it detects intrusion
violations.
Setting this object to jamUnauthPackets (3) causes the repeater
to jam/garble unauthorized packets before they are repeated to
all other repeater ports.
Setting this object to disablePort (4) causes the repeater to
disable this port if it detects intrusion security violations
on this port. The port may be re-enabled by setting
rptrPortAdminStatus to enabled.
Some implementations may not support setting this object to all
defined enumerated values. A badValue error is returned if an
attempt is made to set this object to an unsupported value.
Note: The default value for this object is disabled (1).
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1.4 |
erptrSecurityPortCtrlOperStatusThe value securityOperational(1) indicates that eavesdrop
prevention and/or intrusion detection/protection are enabled
and actively functioning on this port.
The value securityNotOperational(2) indicates that neither
eavesdrop prevention nor intrusion detection/protection are
actively functioning on this port. Intrusion
detection/protection may be enabled on this port but it will
not be operational unless an authorized address is assigned to
this port in erptrSecurityPortAddrTable.
The value violationPortDisabled (3) indicates that the port is
disabled due to an intrusion security violation. The port may
be re-enabled by setting rptrPortAdminStatus to enabled.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1.5 |
erptrSecurityPortCtrlViolationsA count of the number intrusion security violations detected
on this port.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.1.1.6 |
erptrSecurityPortAddrTableA table of authorized MAC addresses mapped to repeater ports.
The repeater uses these addresses to enforce security. SEQUENCE OF ErptrSecurityPortAddrEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.2 |
erptrSecurityPortAddrEntryAn entry in the table containing information to assign a
single authorized MAC address to a single repeater port. ErptrSecurityPortAddrEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.2.1 |
erptrSecurityPortAddrGroupIndexThis object identifies the group containing the port for which
this entry contains information. This value is never greater
than rptrGroupCapacity.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrSecurityPortAddrStatus is valid (1).rw INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.2.1.1 |
erptrSecurityPortAddrPortIndexThis object identifies the port within the group for which
this entry contains information. This value can never be
greater than rptrGroupPortCapacity for the associated group.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrSecurityPortAddrStatus is valid (1).rw INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.2.1.2 |
erptrSecurityPortAddrPhysAddressThis object identifies an authorized MAC address assigned to
this repeater port for use in enforcing eavesdrop prevention
and intrusion detection/protection.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrSecurityPortAddrStatus is valid (1).rw PhysAddress (SNMPv2-TC) .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.2.1.3 |
erptrSecurityPortAddrStatusThe status of this table entry.
Setting this object to createRequest(2) adds a new entry in
this table mapping the authorized MAC address specified by this
entry to the port specified by this entry. Immediately after
completing the create operation, the agent sets this object to
underCreation(3). An existing instance of this object cannot be
set to createRequest(2).
Entries exist in the underCreation(3) state until the
management station sets this object to valid(1) or aborts,
setting this object to invalid(4).
The repeater does not use the information in this entry to
enforce security unless this object is set to valid (1).
Setting this object to invalid(4) has the effect of deleting
this entry from the table.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset if the value of this entry's
erptrSecurityPortAddrStatus is valid (1).rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.4.3.2.1.4 |
erptrMauPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.5 |
erptrMauRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.5.1 |
erptrMauTotalMediaUnavailableThis object returns the total number of MAUs in the repeater
whose erptrMauMediaAvailable objects are equal to
notAvailable(4), remoteFault(5), or invalidSignal(6).ro Gauge .1.3.6.1.4.1.36.2.18.11.5.1.1.5.1.1 |
erptrMauGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.5.2 |
erptrMauPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3 |
erptrMauTableTable of descriptive and status information about MAU(s)
attached to the ports of a repeater. SEQUENCE OF ErptrMauEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1 |
erptrMauEntryAn entry in the table containing information about a single
MAU. ErptrMauEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1 |
erptrMauGroupIndexThis object identifies the group containing the port to which
the MAU described by this entry is connected.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.1 |
erptrMauPortIndexThis object identifies the port within group to which the MAU
described by this entry is connected.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.2 |
erptrMauIndexThe object uniquely identifies a MAU connected to a port
within the group that is described by this entry.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.3 |
erptrMauLinkTestAdminStatusLink test functions detect certain types of media faults on
point-to-point link segments connecting pairs of link-type MAUs
(e.g. 10BASE-T, 10BASE-F, FOIRL). This object controls the link
test function implemented by some link-type MAUs.
Setting this object to enabled(1) causes the MAU to enable its
link test function.
Setting this object to disabled(2) causes the MAU to disable
its link test function. Disabling a MAU's link test function
can be useful for compatibility to link-type MAUs which do not
implement a link test function.
Link-type MAUs which implement link test functions but do not
support software control of the functions allow this object to
be set to enabled(1). A badValue error is returned if this
object is set to any other value.
Coax type MAUs (e.g. 10BASE5, 10BASE2) or any other MAUs which
do not implement link test functions return disabled(2) when
this object is read. These MAUs allow this object to be set to
disabled(2) but return a badValue error if the object is set to
any other value.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.4 |
erptrMauMediaPolarityStatusA value of polarityNotReversed(1) indicates that the MAU
senses that received data packet waveform polarity is correct.
A value of polarityReversed(2) indicates that the MAU senses
that received data packet waveform polarity is incorrect (i.e.
reversed). Reversed polarity may indicate a wiring error,
especially on 10Base-T links.
A value of polarityCorrected(3) indicates that the MAU senses
that received data packet waveform polarity is incorrect (i.e
reversed, perhaps due to a wiring error) but the MAU has
automatically corrected the polarity error.
A value of unknown(4) indicates that the MAU does not have the
ability to detect whether or not received data packet waveform
polarity is correct.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.5 |
erptrMauMediaAvailableIf the MAU is link-type (FOIRL, 10BASE-T, 10BASE-F) then this
object is equivalent to the link test fail state/low light
function. For an AUI or a coax MAU this indicates whether or
not loopback is detected on the DI circuit. The value of this
attribute persists between packets for MAU types AUI, 10BASE5,
10BASE2, and 10BASE-FP. The value other(1) is returned if the
mediaAvailable state is not one of 2 through 6.
The value unknown(2) is returned when the MAU's true state is
unknown; for example, when it is being initialized. At
power-up or following a reset, the value of this attribute is
unknown for AUI, coax, and 10BASE-FP MAUs. For these MAUs,
loopback will be tested on each transmission during which no
collision is detected. If DI is receiving input when DO
returns to IDL after a transmission and there has been no
collision during the transmission then loopback will be
detected. The value of this attribute will only change during
non-collided transmissions for AUI, coax, and 10BASE-FP MAUs.
The value available(3) indicates that the link, light, or
loopback is normal. The value notAvailable(4) indicates link
loss, low light, or no loopback.
The value remoteFault(5) indicates that a fault has been
detected at the remote end of the link. The value
invalidSignal(6) indicates that an invalid signal has been
received from the other end of the link. Both remoteFault(5)
and invalidSignal(6) apply only to MAUs of type 10BASE-FB.ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.6 |
erptrMauMediaAvailableChangesA count of the number of times that erptrMauMediaAvailable for
this MAU instance leaves the state available(3).ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.7 |
erptrMauMaxLinkLengthLink-type MAU (e.g. 10BASE-T, 10BASE-FL, FOIRL) standards
define the maximum length of any one point-to-point link
segment. Some MAUs may support a mode of operation that allows
them to reliably communicate over longer link segments. This
object configures the MAU to run it its standard max link
length mode of operation or its extended max link length mode
of operation. The mechanisms employed to achieve longer link
segments is implementation-specific. The existence of
configuration restrictions surrounding using a MAUs extended
link length mode is implementation-specific.
Setting this object to standard(1) causes the MAU to support
only standard max link length configurations.
Setting this object to extended(2) causes the MAU to support
extended maximum link length configurations. The maximum link
length supported by a MAU operating in this mode is
implementation-specific.
Any MAUs (including non-link, coax type MAUs) that do not
support extended maximum link length configurations allow this
object to be set to standard(1). A badValue error is returned
if this object is set to any other value.
Note: The state of this object is preserved when the repeater
undergoes a power-up reset.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.5.3.1.1.8 |
erptrAddrLearnPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.6 |
erptrAddrLearnRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.1 |
erptrAddrLearnGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.2 |
erptrAddrLearnPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3 |
erptrAddrLearnPortCtrlTableA table of configuration, control and status information to
manage the learning of the first N distinct MAC source addresses
seen per port. SEQUENCE OF ErptrAddrLearnPortCtrlEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1 |
erptrAddrLearnPortCtrlEntryAn entry in the table containing information describing the
control and status first N distinct MAC source address learning of
a single port. ErptrAddrLearnPortCtrlEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1.1 |
erptrAddrLearnPortCtrlGroupIndexThis object identifies the group containing the port for which
this entry contains information. This value is never greater
than rptrGroupCapacity.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1.1.1 |
erptrAddrLearnPortCtrlPortIndexThis object identifies the port within the group for which
this entry contains information. This value is never greater
than rptrGroupPortCapacity for the associated group.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1.1.2 |
erptrAddrLearnPortCtrlCapacityThis object specifies the maximum number of distinct MAC source
addresses the repeater can learn and save on this port.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1.1.3 |
erptrAddrLearnPortCtrlAdminStatusSetting this object to enableLearning(2) causes the agent to
learn MAC source addresses from readable frames received on this
port. The agent records distinct addresses (along with addresses
previously learned on this port) in erptrAddrLearnAddressTable.
The agent actively learns addresses on this port until one of the
following events occurs:
- The maximum allowable number of distinct addresses have
been learned on this port, as specified by
erptrAddrLearnPortCtrlCapacity.
- The learning process is disabled by setting this object to
disableLearning(3).
The agent remembers learned addresses until this object is set to
clearLearnedAddresses(4) or the module undergoes a power-up reset.
Setting this object to disableLearning(3) causes the agent to stop
learning addresses on this port, regardless of the number of
addresses already learned and saved. Learning can be restarted on
the port by setting this object to enableLearning(2).
Setting this object to clearLearnedAddresses(4) causes the agent
to delete any entries in erptrAddrLearnAddressTable associated
with this port. If the value of erptrAddrLearnPortCtrlOperStatus
for this port is learningEnabledAndActive(1) or
learningEnabledAndStopped(2) when this object is set to
clearLearnedAddresses(4), the agent will immediately begin
learning new addresses on this port.
Setting this object to other(1) has no effect. The agent always
returns the value other(1) when this object is read.rw Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1.1.4 |
erptrAddrLearnPortCtrlOperStatusA value of learningEnabledAndActive(1) indicates that the agent
is actively learning MAC source addresses from readable frames
received on this port and recording them in
erptrAddrLearnAddrTable. It implies that
erptrAddrLearnPortCtrlAdminStatus had previously been set to
enableLearning(2) and the port has not yet learned and saved the
maximum allowable number of distinct addresses (as specified by
erptrAddrLearnPortCtrlCapacity).
A value of learningEnabledAndStopped(2) indicates that the agent
is NOT currently actively learning MAC source addresses from
readable frames received on this port. It implies that
erptrAddrLearnPortCtrlAdminStatus had previously been set to
enableLearning(2) but the port has learned and saved the maximum
allowable number of distinct addresses (as specified by
erptrAddrLearnPortCtrlCapacity).
A value of learningDisabled(3) indicates that the agent is NOT
actively learning distinct MAC source addresses from readable
frames received on this port. It implies that
erptrAddrLearnPortCtrlAdminStatus had previously been set to
disableLearning(3).ro Enumeration .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.1.1.5 |
erptrAddrLearnPortAddressTableThis table records the first N distinct MAC source addresses
detected on readable frames received on each of the repeater's
ports since address learning was last initiated. If a given port
has not learned any addresses then no entries exist in the table
for that port. SEQUENCE OF ErptrAddrLearnPortAddressEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.2 |
erptrAddrLearnPortAddressEntryAn entry in the table containing information regarding a single
MAC address learned on one repeater port. ErptrAddrLearnPortAddressEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.2.1 |
erptrAddrLearnPortAddressGroupIndexThis object identifies the group containing the port for which
this entry contains information. This value is never greater
than rptrGroupCapacity.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.2.1.1 |
erptrAddrLearnPortAddressPortIndexThis object identifies the port within the group for which
this entry contains information. This value can never be
greater than rptrGroupPortCapacity for the associated group.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.2.1.2 |
erptrAddrLearnPortAddressIndexThis object identifies an index corresponding to a distinct
MAC source address for which this entry contains information.
This value can never be greater than
erptrAddrLearnPortCtrlCapacity for the associated port.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.2.1.3 |
erptrAddrLearnPortAddressThis object identifies a distinct MAC source address of a
readable frame received on the port associated with this entry.ro PhysAddress (SNMPv2-TC) .1.3.6.1.4.1.36.2.18.11.5.1.1.6.3.2.1.4 |
erptrMonitorPackage OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.7 |
erptrMonitorRptrInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.7.1 |
erptrMonitorGroupInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.7.2 |
erptrMonitorPortInfo OBJECT IDENTIFIER .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3 |
erptrMonitorPortTableA table of extended performance and error statistics for the
ports. SEQUENCE OF ErptrMonitorPortEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3.1 |
erptrMonitorPortEntryAn entry in the table containing extended performance and error
statistics for a single port. ErptrMonitorPortEntry .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3.1.1 |
erptrMonitorPortGroupIndexThis object identifies the group containing the port for which
this entry contains information. This value is never greater
than rptrGroupCapacity.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3.1.1.1 |
erptrMonitorPortIndexThis object identifies the port within the group for which
this entry contains information. This value is never greater
than rptrGroupPortCapacity for the associated group.ro INTEGER .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3.1.1.2 |
erptrMonitorPortMulticastFramesThis object is the number of valid multicast frames that have
been received on this port. This counter is incremented by one
for each frame received on this port whose OctetCount is greater
than or equal to minFrameSize and less than or equal to
maxFrameSize, whose MAC-layer destination address field contains
a multicast-group address, and for which the FCSError and
CollisionEvent signals are not asserted.
The approximate minimum time for rollover of this counter is 80
hours.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3.1.1.3 |
erptrMonitorPortBroadcastFramesThis object is the number of valid broadcast frames that have
been received on this port. This counter is incremented by one
for each frame received on this port whose OctetCount is greater
than or equal to minFrameSize and less than or equal to
maxFrameSize, whose MAC-layer destination address field contains
a broadcast address, and for which the FCSError and
CollisionEvent signals are not asserted.
The approximate minimum time for rollover of this counter is 80
hours.ro Counter .1.3.6.1.4.1.36.2.18.11.5.1.1.7.3.1.1.4 |