EZ5 MIB Catalog

OSPF-TRAP-MIB

1995-01-20

The MIB module to describe traps for the OSPF Version 2 Protocol.

Download OSPF-TRAP-MIB.txt Open OSPF-TRAP-MIB.txt in a new tab

SCALARS (4) · TRAPS (16)

Scalars (4)

NameOID
ospfSetTrap1.3.6.1.2.1.14.16.1.1
ospfConfigErrorType1.3.6.1.2.1.14.16.1.2
ospfPacketType1.3.6.1.2.1.14.16.1.3
ospfPacketSrc1.3.6.1.2.1.14.16.1.4

Traps (16)

NameOID
ospfVirtIfStateChange1.3.6.1.2.1.14.16.2.1
ospfNbrStateChange1.3.6.1.2.1.14.16.2.2
ospfVirtNbrStateChange1.3.6.1.2.1.14.16.2.3
ospfIfConfigError1.3.6.1.2.1.14.16.2.4
ospfVirtIfConfigError1.3.6.1.2.1.14.16.2.5
ospfIfAuthFailure1.3.6.1.2.1.14.16.2.6
ospfVirtIfAuthFailure1.3.6.1.2.1.14.16.2.7
ospfIfRxBadPacket1.3.6.1.2.1.14.16.2.8
ospfVirtIfRxBadPacket1.3.6.1.2.1.14.16.2.9
ospfTxRetransmit1.3.6.1.2.1.14.16.2.10
ospfVirtIfTxRetransmit1.3.6.1.2.1.14.16.2.11
ospfOriginateLsa1.3.6.1.2.1.14.16.2.12
ospfMaxAgeLsa1.3.6.1.2.1.14.16.2.13
ospfLsdbOverflow1.3.6.1.2.1.14.16.2.14
ospfLsdbApproachingOverflow1.3.6.1.2.1.14.16.2.15
ospfIfStateChange1.3.6.1.2.1.14.16.2.16

END OF TOC

Scalar details

ospfSetTrap

1.3.6.1.2.1.14.16.1.1

OCTET STRING SIZE (4)

A four-octet string serving as a bit map for the trap events defined by the OSPF traps. This object is used to enable and disable specific OSPF traps where a 1 in the bit field represents enabled. The right-most bit (least significant) represents trap 0.

ospfConfigErrorType

1.3.6.1.2.1.14.16.1.2

INTEGER1 = badVersion2 = areaMismatch3 = unknownNbmaNbr4 = unknownVirtualNbr5 = authTypeMismatch6 = authFailure7 = netMaskMismatch8 = helloIntervalMismatch9 = deadIntervalMismatch10 = optionMismatch · Integer32

Potential types of configuration conflicts. Used by the ospfConfigError and ospfConfigVir- tError traps.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfPacketSrc

1.3.6.1.2.1.14.16.1.4

IpAddress SIZE (4)

The IP address of an inbound packet that can- not be identified by a neighbor instance.

Trap details

ospfVirtIfStateChange

1.3.6.1.2.1.14.16.2.1

An ospfIfStateChange trap signifies that there has been a change in the state of an OSPF vir- tual interface. This trap should be generated when the inter- face state regresses (e.g., goes from Point- to-Point to Down) or progresses to a terminal state (i.e., Point-to-Point).

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfVirtIfAreaId

1.3.6.1.2.1.14.9.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

The transit area that the virtual link traverses. By definition, this is not 0.0.0.0.

ospfVirtIfNeighbor

1.3.6.1.2.1.14.9.1.2

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

The Router ID of the virtual neighbor.

ospfVirtIfState

1.3.6.1.2.1.14.9.1.7

INTEGER1 = down4 = pointToPoint · Integer32

OSPF virtual interface states.

ospfNbrStateChange

1.3.6.1.2.1.14.16.2.2

An ospfNbrStateChange trap signifies that there has been a change in the state of a non- virtual OSPF neighbor. This trap should be generated when the neighbor state regresses (e.g., goes from Attempt or Full to 1-Way or Down) or progresses to a terminal state (e.g., 2-Way or Full). When an neighbor transitions from or to Full on non-broadcast multi-access and broadcast networks, the trap should be gen- erated by the designated router. A designated router transitioning to Down will be noted by ospfIfStateChange.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfNbrIpAddr

1.3.6.1.2.1.14.10.1.1

IpAddress SIZE (4)

The IP address this neighbor is using in its IP source address. Note that, on addressless links, this will not be 0.0.0.0 but the address of another of the neighbor's interfaces.

ospfNbrAddressLessIndex

1.3.6.1.2.1.14.10.1.2

InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d

On an interface having an IP address, zero. On addressless interfaces, the corresponding value of ifIndex in the Internet Standard MIB. On row creation, this can be derived from the instance.

ospfNbrRtrId

1.3.6.1.2.1.14.10.1.3

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

A 32-bit integer (represented as a type IpAddress) uniquely identifying the neighboring router in the Autonomous System.

ospfNbrState

1.3.6.1.2.1.14.10.1.6

INTEGER1 = down2 = attempt3 = init4 = twoWay5 = exchangeStart6 = exchange7 = loading8 = full · Integer32

Reference: OSPF Version 2, Section 10.1 Neighbor States

The state of the relationship with this neighbor.

ospfVirtNbrStateChange

1.3.6.1.2.1.14.16.2.3

An ospfIfStateChange trap signifies that there has been a change in the state of an OSPF vir- tual neighbor. This trap should be generated when the neighbor state regresses (e.g., goes from Attempt or Full to 1-Way or Down) or progresses to a terminal state (e.g., Full).

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfVirtNbrArea

1.3.6.1.2.1.14.11.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

The Transit Area Identifier.

ospfVirtNbrRtrId

1.3.6.1.2.1.14.11.1.2

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

A 32-bit integer uniquely identifying the neighboring router in the Autonomous System.

ospfVirtNbrState

1.3.6.1.2.1.14.11.1.5

INTEGER1 = down2 = attempt3 = init4 = twoWay5 = exchangeStart6 = exchange7 = loading8 = full · Integer32

The state of the virtual neighbor relationship.

ospfIfConfigError

1.3.6.1.2.1.14.16.2.4

An ospfIfConfigError trap signifies that a packet has been received on a non-virtual in- terface from a router whose configuration parameters conflict with this router's confi- guration parameters. Note that the event op- tionMismatch should cause a trap only if it prevents an adjacency from forming.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfIfIpAddress

1.3.6.1.2.1.14.7.1.1

IpAddress SIZE (4)

The IP address of this OSPF interface.

ospfAddressLessIf

1.3.6.1.2.1.14.7.1.2

InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d

For the purpose of easing the instancing of addressed and addressless interfaces; this variable takes the value 0 on interfaces with IP addresses and the corresponding value of ifIndex for interfaces having no IP address.

ospfPacketSrc

1.3.6.1.2.1.14.16.1.4

IpAddress SIZE (4)

The IP address of an inbound packet that can- not be identified by a neighbor instance.

ospfConfigErrorType

1.3.6.1.2.1.14.16.1.2

INTEGER1 = badVersion2 = areaMismatch3 = unknownNbmaNbr4 = unknownVirtualNbr5 = authTypeMismatch6 = authFailure7 = netMaskMismatch8 = helloIntervalMismatch9 = deadIntervalMismatch10 = optionMismatch · Integer32

Potential types of configuration conflicts. Used by the ospfConfigError and ospfConfigVir- tError traps.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfVirtIfConfigError

1.3.6.1.2.1.14.16.2.5

An ospfConfigError trap signifies that a pack- et has been received on a virtual interface from a router whose configuration parameters conflict with this router's configuration parameters. Note that the event optionMismatch should cause a trap only if it prevents an ad- jacency from forming.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfVirtIfAreaId

1.3.6.1.2.1.14.9.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

The transit area that the virtual link traverses. By definition, this is not 0.0.0.0.

ospfVirtIfNeighbor

1.3.6.1.2.1.14.9.1.2

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

The Router ID of the virtual neighbor.

ospfConfigErrorType

1.3.6.1.2.1.14.16.1.2

INTEGER1 = badVersion2 = areaMismatch3 = unknownNbmaNbr4 = unknownVirtualNbr5 = authTypeMismatch6 = authFailure7 = netMaskMismatch8 = helloIntervalMismatch9 = deadIntervalMismatch10 = optionMismatch · Integer32

Potential types of configuration conflicts. Used by the ospfConfigError and ospfConfigVir- tError traps.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfIfAuthFailure

1.3.6.1.2.1.14.16.2.6

An ospfIfAuthFailure trap signifies that a packet has been received on a non-virtual in- terface from a router whose authentication key or authentication type conflicts with this router's authentication key or authentication type.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfIfIpAddress

1.3.6.1.2.1.14.7.1.1

IpAddress SIZE (4)

The IP address of this OSPF interface.

ospfAddressLessIf

1.3.6.1.2.1.14.7.1.2

InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d

For the purpose of easing the instancing of addressed and addressless interfaces; this variable takes the value 0 on interfaces with IP addresses and the corresponding value of ifIndex for interfaces having no IP address.

ospfPacketSrc

1.3.6.1.2.1.14.16.1.4

IpAddress SIZE (4)

The IP address of an inbound packet that can- not be identified by a neighbor instance.

ospfConfigErrorType

1.3.6.1.2.1.14.16.1.2

INTEGER1 = badVersion2 = areaMismatch3 = unknownNbmaNbr4 = unknownVirtualNbr5 = authTypeMismatch6 = authFailure7 = netMaskMismatch8 = helloIntervalMismatch9 = deadIntervalMismatch10 = optionMismatch · Integer32

Potential types of configuration conflicts. Used by the ospfConfigError and ospfConfigVir- tError traps.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfVirtIfAuthFailure

1.3.6.1.2.1.14.16.2.7

An ospfVirtIfAuthFailure trap signifies that a packet has been received on a virtual interface from a router whose authentication key or au- thentication type conflicts with this router's authentication key or authentication type.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfVirtIfAreaId

1.3.6.1.2.1.14.9.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

The transit area that the virtual link traverses. By definition, this is not 0.0.0.0.

ospfVirtIfNeighbor

1.3.6.1.2.1.14.9.1.2

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

The Router ID of the virtual neighbor.

ospfConfigErrorType

1.3.6.1.2.1.14.16.1.2

INTEGER1 = badVersion2 = areaMismatch3 = unknownNbmaNbr4 = unknownVirtualNbr5 = authTypeMismatch6 = authFailure7 = netMaskMismatch8 = helloIntervalMismatch9 = deadIntervalMismatch10 = optionMismatch · Integer32

Potential types of configuration conflicts. Used by the ospfConfigError and ospfConfigVir- tError traps.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfIfRxBadPacket

1.3.6.1.2.1.14.16.2.8

An ospfIfRxBadPacket trap signifies that an OSPF packet has been received on a non-virtual interface that cannot be parsed.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfIfIpAddress

1.3.6.1.2.1.14.7.1.1

IpAddress SIZE (4)

The IP address of this OSPF interface.

ospfAddressLessIf

1.3.6.1.2.1.14.7.1.2

InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d

For the purpose of easing the instancing of addressed and addressless interfaces; this variable takes the value 0 on interfaces with IP addresses and the corresponding value of ifIndex for interfaces having no IP address.

ospfPacketSrc

1.3.6.1.2.1.14.16.1.4

IpAddress SIZE (4)

The IP address of an inbound packet that can- not be identified by a neighbor instance.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfVirtIfRxBadPacket

1.3.6.1.2.1.14.16.2.9

An ospfRxBadPacket trap signifies that an OSPF packet has been received on a virtual interface that cannot be parsed.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfVirtIfAreaId

1.3.6.1.2.1.14.9.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

The transit area that the virtual link traverses. By definition, this is not 0.0.0.0.

ospfVirtIfNeighbor

1.3.6.1.2.1.14.9.1.2

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

The Router ID of the virtual neighbor.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfTxRetransmit

1.3.6.1.2.1.14.16.2.10

An ospfTxRetransmit trap signifies than an OSPF packet has been retransmitted on a non- virtual interface. All packets that may be re- transmitted are associated with an LSDB entry. The LS type, LS ID, and Router ID are used to identify the LSDB entry.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfIfIpAddress

1.3.6.1.2.1.14.7.1.1

IpAddress SIZE (4)

The IP address of this OSPF interface.

ospfAddressLessIf

1.3.6.1.2.1.14.7.1.2

InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d

For the purpose of easing the instancing of addressed and addressless interfaces; this variable takes the value 0 on interfaces with IP addresses and the corresponding value of ifIndex for interfaces having no IP address.

ospfNbrRtrId

1.3.6.1.2.1.14.10.1.3

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

A 32-bit integer (represented as a type IpAddress) uniquely identifying the neighboring router in the Autonomous System.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfLsdbType

1.3.6.1.2.1.14.4.1.2

INTEGER1 = routerLink2 = networkLink3 = summaryLink4 = asSummaryLink5 = asExternalLink6 = multicastLink7 = nssaExternalLink10 = areaOpaqueLink · Integer32

Reference: OSPF Version 2, Appendix A.4.1 The Link State Advertisement header

The type of the link state advertisement. Each link state type has a separate advertisement format. Note: External link state advertisements are permitted for backward compatibility, but should be displayed in the ospfAsLsdbTable rather than here.

ospfLsdbLsid

1.3.6.1.2.1.14.4.1.3

IpAddress SIZE (4)

Reference: OSPF Version 2, Section 12.1.4 Link State ID

The Link State ID is an LS Type Specific field containing either a Router ID or an IP address; it identifies the piece of the routing domain that is being described by the advertisement.

ospfLsdbRouterId

1.3.6.1.2.1.14.4.1.4

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, Appendix C.1 Global parameters

The 32-bit number that uniquely identifies the originating router in the Autonomous System.

ospfVirtIfTxRetransmit

1.3.6.1.2.1.14.16.2.11

An ospfTxRetransmit trap signifies than an OSPF packet has been retransmitted on a virtual interface. All packets that may be retransmit- ted are associated with an LSDB entry. The LS type, LS ID, and Router ID are used to identify the LSDB entry.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfVirtIfAreaId

1.3.6.1.2.1.14.9.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

The transit area that the virtual link traverses. By definition, this is not 0.0.0.0.

ospfVirtIfNeighbor

1.3.6.1.2.1.14.9.1.2

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

The Router ID of the virtual neighbor.

ospfPacketType

1.3.6.1.2.1.14.16.1.3

INTEGER1 = hello2 = dbDescript3 = lsReq4 = lsUpdate5 = lsAck · Integer32

OSPF packet types.

ospfLsdbType

1.3.6.1.2.1.14.4.1.2

INTEGER1 = routerLink2 = networkLink3 = summaryLink4 = asSummaryLink5 = asExternalLink6 = multicastLink7 = nssaExternalLink10 = areaOpaqueLink · Integer32

Reference: OSPF Version 2, Appendix A.4.1 The Link State Advertisement header

The type of the link state advertisement. Each link state type has a separate advertisement format. Note: External link state advertisements are permitted for backward compatibility, but should be displayed in the ospfAsLsdbTable rather than here.

ospfLsdbLsid

1.3.6.1.2.1.14.4.1.3

IpAddress SIZE (4)

Reference: OSPF Version 2, Section 12.1.4 Link State ID

The Link State ID is an LS Type Specific field containing either a Router ID or an IP address; it identifies the piece of the routing domain that is being described by the advertisement.

ospfLsdbRouterId

1.3.6.1.2.1.14.4.1.4

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, Appendix C.1 Global parameters

The 32-bit number that uniquely identifies the originating router in the Autonomous System.

ospfOriginateLsa

1.3.6.1.2.1.14.16.2.12

An ospfOriginateLsa trap signifies that a new LSA has been originated by this router. This trap should not be invoked for simple refreshes of LSAs (which happesn every 30 minutes), but instead will only be invoked when an LSA is (re)originated due to a topology change. Addi- tionally, this trap does not include LSAs that are being flushed because they have reached MaxAge.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfLsdbAreaId

1.3.6.1.2.1.14.4.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

Reference: OSPF Version 2, Appendix C.2 Area parameters

The 32-bit identifier of the area from which the LSA was received.

ospfLsdbType

1.3.6.1.2.1.14.4.1.2

INTEGER1 = routerLink2 = networkLink3 = summaryLink4 = asSummaryLink5 = asExternalLink6 = multicastLink7 = nssaExternalLink10 = areaOpaqueLink · Integer32

Reference: OSPF Version 2, Appendix A.4.1 The Link State Advertisement header

The type of the link state advertisement. Each link state type has a separate advertisement format. Note: External link state advertisements are permitted for backward compatibility, but should be displayed in the ospfAsLsdbTable rather than here.

ospfLsdbLsid

1.3.6.1.2.1.14.4.1.3

IpAddress SIZE (4)

Reference: OSPF Version 2, Section 12.1.4 Link State ID

The Link State ID is an LS Type Specific field containing either a Router ID or an IP address; it identifies the piece of the routing domain that is being described by the advertisement.

ospfLsdbRouterId

1.3.6.1.2.1.14.4.1.4

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, Appendix C.1 Global parameters

The 32-bit number that uniquely identifies the originating router in the Autonomous System.

ospfMaxAgeLsa

1.3.6.1.2.1.14.16.2.13

An ospfMaxAgeLsa trap signifies that one of the LSA in the router's link-state database has aged to MaxAge.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfLsdbAreaId

1.3.6.1.2.1.14.4.1.1

AreaIDAn OSPF Area Identifier. Note that the Area ID, in OSPF, has the same format as an IP address, but has the function of defining a summarization point for link state advertisements. SIZE (4) · IpAddress

Reference: OSPF Version 2, Appendix C.2 Area parameters

The 32-bit identifier of the area from which the LSA was received.

ospfLsdbType

1.3.6.1.2.1.14.4.1.2

INTEGER1 = routerLink2 = networkLink3 = summaryLink4 = asSummaryLink5 = asExternalLink6 = multicastLink7 = nssaExternalLink10 = areaOpaqueLink · Integer32

Reference: OSPF Version 2, Appendix A.4.1 The Link State Advertisement header

The type of the link state advertisement. Each link state type has a separate advertisement format. Note: External link state advertisements are permitted for backward compatibility, but should be displayed in the ospfAsLsdbTable rather than here.

ospfLsdbLsid

1.3.6.1.2.1.14.4.1.3

IpAddress SIZE (4)

Reference: OSPF Version 2, Section 12.1.4 Link State ID

The Link State ID is an LS Type Specific field containing either a Router ID or an IP address; it identifies the piece of the routing domain that is being described by the advertisement.

ospfLsdbRouterId

1.3.6.1.2.1.14.4.1.4

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, Appendix C.1 Global parameters

The 32-bit number that uniquely identifies the originating router in the Autonomous System.

ospfLsdbOverflow

1.3.6.1.2.1.14.16.2.14

An ospfLsdbOverflow trap signifies that the number of LSAs in the router's link-state data- base has exceeded ospfExtLsdbLimit.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfExtLsdbLimit

1.3.6.1.2.1.14.1.11

Integer32 (-1..2147483647)

The maximum number of non-default AS-external LSAs entries that can be stored in the link state database. If the value is -1, then there is no limit. When the number of non-default AS-external LSAs in a router's link state database reaches ospfExtLsdbLimit, the router enters overflow state. The router never holds more than ospfExtLsdbLimit non-default AS-external LSAs in its database. OspfExtLsdbLimit MUST be set identically in all routers attached to the OSPF backbone and/or any regular OSPF area (i.e., OSPF stub areas and NSSAs are excluded). This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfLsdbApproachingOverflow

1.3.6.1.2.1.14.16.2.15

An ospfLsdbApproachingOverflow trap signifies that the number of LSAs in the router's link- state database has exceeded ninety percent of ospfExtLsdbLimit.

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfExtLsdbLimit

1.3.6.1.2.1.14.1.11

Integer32 (-1..2147483647)

The maximum number of non-default AS-external LSAs entries that can be stored in the link state database. If the value is -1, then there is no limit. When the number of non-default AS-external LSAs in a router's link state database reaches ospfExtLsdbLimit, the router enters overflow state. The router never holds more than ospfExtLsdbLimit non-default AS-external LSAs in its database. OspfExtLsdbLimit MUST be set identically in all routers attached to the OSPF backbone and/or any regular OSPF area (i.e., OSPF stub areas and NSSAs are excluded). This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfIfStateChange

1.3.6.1.2.1.14.16.2.16

An ospfIfStateChange trap signifies that there has been a change in the state of a non-virtual OSPF interface. This trap should be generated when the interface state regresses (e.g., goes from Dr to Down) or progresses to a terminal state (i.e., Point-to-Point, DR Other, Dr, or Backup).

ospfRouterId

1.3.6.1.2.1.14.1.1

RouterIDA OSPF Router Identifier. Note that the Router ID, in OSPF, has the same format as an IP address, but identifies the router independent of its IP address. SIZE (4) · IpAddress

Reference: OSPF Version 2, C.1 Global parameters

A 32-bit integer uniquely identifying the router in the Autonomous System. By convention, to ensure uniqueness, this should default to the value of one of the router's IP interface addresses. This object is persistent and when written the entity SHOULD save the change to non-volatile storage.

ospfIfIpAddress

1.3.6.1.2.1.14.7.1.1

IpAddress SIZE (4)

The IP address of this OSPF interface.

ospfAddressLessIf

1.3.6.1.2.1.14.7.1.2

InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d

For the purpose of easing the instancing of addressed and addressless interfaces; this variable takes the value 0 on interfaces with IP addresses and the corresponding value of ifIndex for interfaces having no IP address.

ospfIfState

1.3.6.1.2.1.14.7.1.12

INTEGER1 = down2 = loopback3 = waiting4 = pointToPoint5 = designatedRouter6 = backupDesignatedRouter7 = otherDesignatedRouter · Integer32

The OSPF Interface State.

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