EZ5 MIB Catalog

MIP-MIB

1996-06-04

Download MIP-MIB.txt Open MIP-MIB.txt in a new tab

The MIB Module for the Mobile IP.

SCALARS (75) · TABLES (10) · TRAPS (1)

Scalars (75)

NameOID
mipEntities1.3.6.1.2.1.44.1.1.1
mipEnable1.3.6.1.2.1.44.1.1.2
mipEncapsulationSupported1.3.6.1.2.1.44.1.1.3
mipSecTotalViolations1.3.6.1.2.1.44.1.2.2
mnState1.3.6.1.2.1.44.1.3.1.1
mnHomeAddress1.3.6.1.2.1.44.1.3.1.2
mnAdvSourceAddress1.3.6.1.2.1.44.1.3.2.2.1
mnAdvSequence1.3.6.1.2.1.44.1.3.2.2.2
mnAdvFlags1.3.6.1.2.1.44.1.3.2.2.3
mnAdvMaxRegLifetime1.3.6.1.2.1.44.1.3.2.2.4
mnAdvMaxAdvLifetime1.3.6.1.2.1.44.1.3.2.2.5
mnAdvTimeReceived1.3.6.1.2.1.44.1.3.2.2.6
mnSolicitationsSent1.3.6.1.2.1.44.1.3.2.3
mnAdvertisementsReceived1.3.6.1.2.1.44.1.3.2.4
mnAdvsDroppedInvalidExtension1.3.6.1.2.1.44.1.3.2.5
mnAdvsIgnoredUnknownExtension1.3.6.1.2.1.44.1.3.2.6
mnMoveFromHAToFA1.3.6.1.2.1.44.1.3.2.7
mnMoveFromFAToFA1.3.6.1.2.1.44.1.3.2.8
mnMoveFromFAToHA1.3.6.1.2.1.44.1.3.2.9
mnGratuitousARPsSend1.3.6.1.2.1.44.1.3.2.10
mnAgentRebootsDectected1.3.6.1.2.1.44.1.3.2.11
mnRegRequestsSent1.3.6.1.2.1.44.1.3.3.2
mnDeRegRequestsSent1.3.6.1.2.1.44.1.3.3.3
mnRegRepliesRecieved1.3.6.1.2.1.44.1.3.3.4
mnDeRegRepliesRecieved1.3.6.1.2.1.44.1.3.3.5
mnRepliesInvalidHomeAddress1.3.6.1.2.1.44.1.3.3.6
mnRepliesUnknownHA1.3.6.1.2.1.44.1.3.3.7
mnRepliesUnknownFA1.3.6.1.2.1.44.1.3.3.8
mnRepliesInvalidID1.3.6.1.2.1.44.1.3.3.9
mnRepliesDroppedInvalidExtension1.3.6.1.2.1.44.1.3.3.10
mnRepliesIgnoredUnknownExtension1.3.6.1.2.1.44.1.3.3.11
mnRepliesHAAuthenticationFailure1.3.6.1.2.1.44.1.3.3.12
mnRepliesFAAuthenticationFailure1.3.6.1.2.1.44.1.3.3.13
mnRegRequestsAccepted1.3.6.1.2.1.44.1.3.3.14
mnRegRequestsDeniedByHA1.3.6.1.2.1.44.1.3.3.15
mnRegRequestsDeniedByFA1.3.6.1.2.1.44.1.3.3.16
mnRegRequestsDeniedByHADueToID1.3.6.1.2.1.44.1.3.3.17
mnRegRequestsWithDirectedBroadcast1.3.6.1.2.1.44.1.3.3.18
maAdvertisementsSent1.3.6.1.2.1.44.1.4.2.2
maAdvsSentForSolicitation1.3.6.1.2.1.44.1.4.2.3
maSolicitationsReceived1.3.6.1.2.1.44.1.4.2.4
faIsBusy1.3.6.1.2.1.44.1.5.2.1
faRegistrationRequired1.3.6.1.2.1.44.1.5.2.2
faRegRequestsReceived1.3.6.1.2.1.44.1.5.3.2
faRegRequestsRelayed1.3.6.1.2.1.44.1.5.3.3
faReasonUnspecified1.3.6.1.2.1.44.1.5.3.4
faAdmProhibited1.3.6.1.2.1.44.1.5.3.5
faInsufficientResource1.3.6.1.2.1.44.1.5.3.6
faMNAuthenticationFailure1.3.6.1.2.1.44.1.5.3.7
faRegLifetimeTooLong1.3.6.1.2.1.44.1.5.3.8
faPoorlyFormedRequests1.3.6.1.2.1.44.1.5.3.9
faEncapsulationUnavailable1.3.6.1.2.1.44.1.5.3.10
faVJCompressionUnavailable1.3.6.1.2.1.44.1.5.3.11
faHAUnreachable1.3.6.1.2.1.44.1.5.3.12
faRegRepliesRecieved1.3.6.1.2.1.44.1.5.3.13
faRegRepliesRelayed1.3.6.1.2.1.44.1.5.3.14
faHAAuthenticationFailure1.3.6.1.2.1.44.1.5.3.15
faPoorlyFormedReplies1.3.6.1.2.1.44.1.5.3.16
haRegistrationAccepted1.3.6.1.2.1.44.1.6.3.3
haMultiBindingUnsupported1.3.6.1.2.1.44.1.6.3.4
haReasonUnspecified1.3.6.1.2.1.44.1.6.3.5
haAdmProhibited1.3.6.1.2.1.44.1.6.3.6
haInsufficientResource1.3.6.1.2.1.44.1.6.3.7
haMNAuthenticationFailure1.3.6.1.2.1.44.1.6.3.8
haFAAuthenticationFailure1.3.6.1.2.1.44.1.6.3.9
haIDMismatch1.3.6.1.2.1.44.1.6.3.10
haPoorlyFormedRequest1.3.6.1.2.1.44.1.6.3.11
haTooManyBindings1.3.6.1.2.1.44.1.6.3.12
haUnknownHA1.3.6.1.2.1.44.1.6.3.13
haGratuitiousARPsSent1.3.6.1.2.1.44.1.6.3.14
haProxyARPsSent1.3.6.1.2.1.44.1.6.3.15
haRegRequestsReceived1.3.6.1.2.1.44.1.6.3.16
haDeRegRequestsReceived1.3.6.1.2.1.44.1.6.3.17
haRegRepliesSent1.3.6.1.2.1.44.1.6.3.18
haDeRegRepliesSent1.3.6.1.2.1.44.1.6.3.19

Tables (10)

NameOID
mipSecAssocTable1.3.6.1.2.1.44.1.2.1
mipSecViolationTable1.3.6.1.2.1.44.1.2.3
mnHATable1.3.6.1.2.1.44.1.3.1.3
mnFATable1.3.6.1.2.1.44.1.3.2.1
mnRegistrationTable1.3.6.1.2.1.44.1.3.3.1
maAdvConfigTable1.3.6.1.2.1.44.1.4.2.1
faCOATable1.3.6.1.2.1.44.1.5.1.1
faVisitorTable1.3.6.1.2.1.44.1.5.3.1
haMobilityBindingTable1.3.6.1.2.1.44.1.6.3.1
haCounterTable1.3.6.1.2.1.44.1.6.3.2

Traps (1)

NameOID
mipAuthFailure1.3.6.1.2.1.44.2.0.1

END OF TOC

Scalar details

mipEntities

1.3.6.1.2.1.44.1.1.1

BITS

This object describes which Mobile IP entities are supported by this managed entity. The entity may support more than one Mobile IP entities. For example, the entity supports both Foreign Agent (FA) and Home Agent (HA). Therefore, bit 1 and bit 2 are set to 1 for this object.

mipEnable

1.3.6.1.2.1.44.1.1.2

INTEGER1 = enabled2 = disabled · Integer32

Indicates whether the Mobile IP protocol should be enabled for the managed entity. If it is disabled, the entity should disable both agent discovery and registration functions.

mipEncapsulationSupported

1.3.6.1.2.1.44.1.1.3

BITS

Encapsulation methods supported by the Mobile IP entity. The entity may support multiple encapsulation methods or none of them: ipInIp(0), -- IP Encapsulation within IP gre(1), -- Generic Routing Encapsulation, -- refers to RFC1701 minEnc(2), -- Minimal Encapsulation within IP.

mipSecTotalViolations

1.3.6.1.2.1.44.1.2.2

Counter32

Total number of security violations in the entity

mnState

1.3.6.1.2.1.44.1.3.1.1

INTEGER1 = home2 = registered3 = pending4 = isolated5 = unknown · Integer32

Indicates mobile node's state of Mobile IP: home, -- MN is connected to home network. registered, -- MN has registered on foreign network pending, -- MN has sent registration request and is waiting for the reply isolated, -- MN is isolated from network unknown -- MN can not determine its state.

mnHomeAddress

1.3.6.1.2.1.44.1.3.1.2

IpAddress SIZE (4)

An IP address that is assigned for an extended period of time to the mobile node. It remains unchanged regardless of the mobile node's current point of attachment.

mnAdvSourceAddress

1.3.6.1.2.1.44.1.3.2.2.1

IpAddress SIZE (4)

The source IP address of the most recently received Agent Advertisement. This address could be the address of a home agent or a foreign agent.

mnAdvSequence

1.3.6.1.2.1.44.1.3.2.2.2

INTEGER (0..65535) · Integer32

The sequence number of the most recently received advertisement. The sequence number ranges from 0 to 0xffff. After the sequence number attains the value 0xffff, it will roll over to 256.

mnAdvFlags

1.3.6.1.2.1.44.1.3.2.2.3

BITS

The flags are contained in the 7th byte in the extension of the most recently received mobility agent advertisement: vjCompression -- Agent supports Van Jacobson compression gre -- Agent offers Generice Routing Encapsulation minEnc, -- Agent offers Minimal Encapsulation foreignAgent, -- Agent is a Foreign Agent homeAgent, -- Agent is a Home Agent busy, -- Foreign Agent is busy regRequired, -- FA registration is required.

mnAdvMaxRegLifetime

1.3.6.1.2.1.44.1.3.2.2.4

INTEGER (0..65535) · Integer32 · seconds

The longest lifetime in seconds that the agent is willing to accept in any registration request.

mnAdvMaxAdvLifetime

1.3.6.1.2.1.44.1.3.2.2.5

INTEGER (0..65535) · Integer32 · seconds

The maximum length of time that the Advertisement is considered valid in the absence of further Advertisements.

mnAdvTimeReceived

1.3.6.1.2.1.44.1.3.2.2.6

TimeStampThe value of the sysUpTime object at which a specific occurrence happened. The specific occurrence must be defined in the description of any object defined using this type. If sysUpTime is reset to zero as a result of a re- initialization of the network management (sub)system, then the values of all TimeStamp objects are also reset. However, after approximately 497 days without a re- initialization, the sysUpTime object will reach 2^^32-1 and then increment around to zero; in this case, existing values of TimeStamp objects do not change. This can lead to ambiguities in the value of TimeStamp objects. · TimeTicks

The time at which the most recently received advertisement was received.

mnSolicitationsSent

1.3.6.1.2.1.44.1.3.2.3

Counter32

Total number of Solicitation sent by the mobile node.

mnAdvertisementsReceived

1.3.6.1.2.1.44.1.3.2.4

Counter32

Total number of advertisements received by the mobile node.

mnAdvsDroppedInvalidExtension

1.3.6.1.2.1.44.1.3.2.5

Counter32

Total number of advertisements dropped by the mobile node due to both poorly formed extensions and unrecognized extensions with extension number in the range 0-127.

mnAdvsIgnoredUnknownExtension

1.3.6.1.2.1.44.1.3.2.6

Counter32

Total number of unrecognized extensions in the range 128-255 that were ignored by the mobile node.

mnMoveFromHAToFA

1.3.6.1.2.1.44.1.3.2.7

Counter32

Number of times that the mobile node has decided to move from its home network to a foreign network.

mnMoveFromFAToFA

1.3.6.1.2.1.44.1.3.2.8

Counter32

Number of times that the mobile node has decided to move from one foreign network to another foreign network.

mnMoveFromFAToHA

1.3.6.1.2.1.44.1.3.2.9

Counter32

Number of times that the mobile node has decided to move from a foreign network to its home network.

mnGratuitousARPsSend

1.3.6.1.2.1.44.1.3.2.10

Counter32

Total number of Gratuitous ARPs sent by mobile node in order to clear out any stale ARP entries in the ARP caches of nodes on the home network.

mnAgentRebootsDectected

1.3.6.1.2.1.44.1.3.2.11

Counter32

Total number of agent reboots detected by the mobile node through sequence number of the advertisement.

mnRegRequestsSent

1.3.6.1.2.1.44.1.3.3.2

Counter32

Total number of registration requests sent by the mobile node. This does not include deregistrations (those with Lifetime equal to zero).

mnDeRegRequestsSent

1.3.6.1.2.1.44.1.3.3.3

Counter32

Total number of deregistration requests sent by the mobile node (those with Lifetime equal to zero).

mnRegRepliesRecieved

1.3.6.1.2.1.44.1.3.3.4

Counter32

Total number of registration replies received by the mobile node in which the Lifetime is greater than zero.

mnDeRegRepliesRecieved

1.3.6.1.2.1.44.1.3.3.5

Counter32

Total number of (de)registration replies received by the mobile node in which the Lifetime is equal to zero.

mnRepliesInvalidHomeAddress

1.3.6.1.2.1.44.1.3.3.6

Counter32

Total number of replies with invalid home address for the mobile node.

mnRepliesUnknownHA

1.3.6.1.2.1.44.1.3.3.7

Counter32

Total number of replies with unknown home agents (not in home agent table).

mnRepliesUnknownFA

1.3.6.1.2.1.44.1.3.3.8

Counter32

Total number of replies with unknown foreign agents if replies relayed through foreign agent.

mnRepliesInvalidID

1.3.6.1.2.1.44.1.3.3.9

Counter32

Total number of replies with invalid Identification fields.

mnRepliesDroppedInvalidExtension

1.3.6.1.2.1.44.1.3.3.10

Counter32

Total number of Registration Replies dropped by the mobile node due to both poorly formed extensions and unrecognized extensions with extension number in the range 0-127.

mnRepliesIgnoredUnknownExtension

1.3.6.1.2.1.44.1.3.3.11

Counter32

Total number of Registration Replies that contained one or more unrecognized extensions in the range 128-255 that were ignored by the mobile node.

mnRepliesHAAuthenticationFailure

1.3.6.1.2.1.44.1.3.3.12

Counter32

Total number of replies without a valid Home Agent to Mobile Node authenticator.

mnRepliesFAAuthenticationFailure

1.3.6.1.2.1.44.1.3.3.13

Counter32

Total number of replies without a valid Foreign Agent to Mobile Node authenticator.

mnRegRequestsAccepted

1.3.6.1.2.1.44.1.3.3.14

Counter32

Total number of registration requests accepted by the mobile node's home agent (Code 0 and Code 1).

mnRegRequestsDeniedByHA

1.3.6.1.2.1.44.1.3.3.15

Counter32

Total number of registration requests denied by mobile node's home agent (Sum of Code 128 through Code 191).

mnRegRequestsDeniedByFA

1.3.6.1.2.1.44.1.3.3.16

Counter32

Total number of registration requests denied by the foreign agent (Sum of Codes 64 through Code 127).

mnRegRequestsDeniedByHADueToID

1.3.6.1.2.1.44.1.3.3.17

Counter32

Total number of Registration Request denied by home agent due to identification mismatch.

mnRegRequestsWithDirectedBroadcast

1.3.6.1.2.1.44.1.3.3.18

Counter32

Total number of Registration Requests sent by mobile node with a directed broadcast address in the home agent field.

maAdvertisementsSent

1.3.6.1.2.1.44.1.4.2.2

Counter32

Total number of advertisements sent by the mobility agent.

maAdvsSentForSolicitation

1.3.6.1.2.1.44.1.4.2.3

Counter32

Total number of advertisements sent by mobility agent in response to mobile node solicitations.

maSolicitationsReceived

1.3.6.1.2.1.44.1.4.2.4

Counter32

Total number of solicitations received by the mobility agent.

faIsBusy

1.3.6.1.2.1.44.1.5.2.1

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

Whether or not the foreign agent is too busy to accept additional registrations. If true(1), the agent is busy and any Agent advertisements sent from this agent should have the 'B' bit set to 1.

faRegistrationRequired

1.3.6.1.2.1.44.1.5.2.2

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

Whether or not this foreign agent requires registration even from those mobile nodes that have acquired their own, colocated care-of address. If true(1), registration is required and any Agent Advertisements sent from this agent should have the 'R' bit set to 1.

faRegRequestsReceived

1.3.6.1.2.1.44.1.5.3.2

Counter32

Total number of valid Registration Requests received.

faRegRequestsRelayed

1.3.6.1.2.1.44.1.5.3.3

Counter32

Total number of Registration Requests relayed to home agent by foreign agent.

faReasonUnspecified

1.3.6.1.2.1.44.1.5.3.4

Counter32

Total number of Registration Requests denied by foreign agent -- reason unspecified (Code 64).

faAdmProhibited

1.3.6.1.2.1.44.1.5.3.5

Counter32

Total number of Registration Requests denied by foreign agent -- administratively prohibited (Code 65).

faInsufficientResource

1.3.6.1.2.1.44.1.5.3.6

Counter32

Total number of Registration Requests denied by foreign agent -- insufficient resources (Code 66).

faMNAuthenticationFailure

1.3.6.1.2.1.44.1.5.3.7

Counter32

Total number of Registration Requests denied by foreign agent -- mobile node failed authentication (Code 67).

faRegLifetimeTooLong

1.3.6.1.2.1.44.1.5.3.8

Counter32

Total number of Registration Requests denied by foreign agent -- requested lifetime too long (Code 69).

faPoorlyFormedRequests

1.3.6.1.2.1.44.1.5.3.9

Counter32

Total number of Registration Requests denied by foreign agent -- poorly formed request (Code 70).

faEncapsulationUnavailable

1.3.6.1.2.1.44.1.5.3.10

Counter32

Total number of Registration Requests denied by foreign agent -- requested encapsulation unavailable (Code 72).

faVJCompressionUnavailable

1.3.6.1.2.1.44.1.5.3.11

Counter32

Total number of Registration Requests denied by foreign agent -- requested Van Jacobson header compression unavailable (Code 73).

faHAUnreachable

1.3.6.1.2.1.44.1.5.3.12

Counter32

Total number of Registration Requests denied by foreign agent -- home agent unreachable (Codes 80-95).

faRegRepliesRecieved

1.3.6.1.2.1.44.1.5.3.13

Counter32

Total number of well-formed Registration Replies received by foreign agent.

faRegRepliesRelayed

1.3.6.1.2.1.44.1.5.3.14

Counter32

Total number of valid Registration Replies relayed to the mobile node by foreign agent.

faHAAuthenticationFailure

1.3.6.1.2.1.44.1.5.3.15

Counter32

Total number of Registration Replies denied by foreign agent -- home agent failed authentication (Code 68).

faPoorlyFormedReplies

1.3.6.1.2.1.44.1.5.3.16

Counter32

Total number of Registration Replies denied by foreign agent -- poorly formed reply (Code 71).

haRegistrationAccepted

1.3.6.1.2.1.44.1.6.3.3

Counter32

Total number of Registration Requests accepted by home agent (Code 0).

haMultiBindingUnsupported

1.3.6.1.2.1.44.1.6.3.4

Counter32

Total number of Registration Requests accepted by home agent -- simultaneous mobility bindings unsupported (Code 1).

haReasonUnspecified

1.3.6.1.2.1.44.1.6.3.5

Counter32

Total number of Registration Requests denied by home agent -- reason unspecified (Code 128).

haAdmProhibited

1.3.6.1.2.1.44.1.6.3.6

Counter32

Total number of Registration Requests denied by home agent -- administratively prohibited (Code 129).

haInsufficientResource

1.3.6.1.2.1.44.1.6.3.7

Counter32

Total number of Registration Requests denied by home agent -- insufficient resources (Code 130).

haMNAuthenticationFailure

1.3.6.1.2.1.44.1.6.3.8

Counter32

Total number of Registration Requests denied by home agent -- mobile node failed authentication (Code 131).

haFAAuthenticationFailure

1.3.6.1.2.1.44.1.6.3.9

Counter32

Total number of Registration Requests denied by home agent -- foreign agent failed authentication (Code 132).

haIDMismatch

1.3.6.1.2.1.44.1.6.3.10

Counter32

Total number of Registration Requests denied by home agent -- Identification mismatch (Code 133).

haPoorlyFormedRequest

1.3.6.1.2.1.44.1.6.3.11

Counter32

Total number of Registration Requests denied by home agent -- poorly formed request (Code 134).

haTooManyBindings

1.3.6.1.2.1.44.1.6.3.12

Counter32

Total number of Registration Requests denied by home agent -- too many simultaneous mobility bindings (Code 135).

haUnknownHA

1.3.6.1.2.1.44.1.6.3.13

Counter32

Total number of Registration Requests denied by home agent -- unknown home agent address (Code 136).

haGratuitiousARPsSent

1.3.6.1.2.1.44.1.6.3.14

Counter32

Total number of gratuition ARPs sent by the home agent on behalf of mobile nodes.

haProxyARPsSent

1.3.6.1.2.1.44.1.6.3.15

Counter32

Total number of proxy ARPs sent by the home agent on behalf of mobile nodes.

haRegRequestsReceived

1.3.6.1.2.1.44.1.6.3.16

Counter32

Total number of Registration Requests received by home agent.

haDeRegRequestsReceived

1.3.6.1.2.1.44.1.6.3.17

Counter32

Total number of Registration Requests received by the home agent with a Lifetime of zero (requests to deregister).

haRegRepliesSent

1.3.6.1.2.1.44.1.6.3.18

Counter32

Total number of Registration Replies sent by the home agent.

haDeRegRepliesSent

1.3.6.1.2.1.44.1.6.3.19

Counter32

Total number of Registration Replies sent by the home agent in response to requests to deregister.

Table details

mipSecAssocTable

1.3.6.1.2.1.44.1.2.1

Index: mipSecPeerAddress · mipSecSPI

A table containing Mobility Security Associations.

mipSecPeerAddress

1.3.6.1.2.1.44.1.2.1.1.1

IpAddress SIZE (4)

The IP address of the peer entity with which this node shares the mobility security association.

mipSecSPI

1.3.6.1.2.1.44.1.2.1.1.2

Unsigned32

The SPI is the 4-byte opaque index within the Mobility Security Association which selects the specific security parameters to be used to authenticate the peer, i.e. the rest of the variables in this MipSecAssocEntry.

mipSecAlgorithmType

1.3.6.1.2.1.44.1.2.1.1.3

INTEGER1 = other2 = md5 · Integer32

Type of security algorithm.

mipSecAlgorithmMode

1.3.6.1.2.1.44.1.2.1.1.4

INTEGER1 = other2 = prefixSuffix · Integer32

Security mode used by this algorithm.

mipSecKey

1.3.6.1.2.1.44.1.2.1.1.5

OCTET STRING SIZE (16)

The shared secret key for the security associations. Reading this object will always return zero length value.

mipSecReplayMethod

1.3.6.1.2.1.44.1.2.1.1.6

INTEGER1 = other2 = timestamps3 = nonces · Integer32

The replay-protection method supported for this SPI within this Mobility Security Association.

mipSecViolationTable

1.3.6.1.2.1.44.1.2.3

Index: mipSecViolatorAddress

A table containing information about security violations.

mipSecViolatorAddress

1.3.6.1.2.1.44.1.2.3.1.1

IpAddress SIZE (4)

Violator's IP address. The violator is not necessary in the mipSecAssocTable.

mipSecViolationCounter

1.3.6.1.2.1.44.1.2.3.1.2

Counter32

Total number of security violations for this peer.

mipSecRecentViolationSPI

1.3.6.1.2.1.44.1.2.3.1.3

Integer32

SPI of the most recent security violation for this peer. If the security violation is due to an identification mismatch, then this is the SPI from the Mobile-Home Authentication Extension. If the security violation is due to an invalid authenticator, then this is the SPI from the offending authentication extension. In all other cases, it should be set to zero.

mipSecRecentViolationTime

1.3.6.1.2.1.44.1.2.3.1.4

TimeStampThe value of the sysUpTime object at which a specific occurrence happened. The specific occurrence must be defined in the description of any object defined using this type. If sysUpTime is reset to zero as a result of a re- initialization of the network management (sub)system, then the values of all TimeStamp objects are also reset. However, after approximately 497 days without a re- initialization, the sysUpTime object will reach 2^^32-1 and then increment around to zero; in this case, existing values of TimeStamp objects do not change. This can lead to ambiguities in the value of TimeStamp objects. · TimeTicks

Time of the most recent security violation for this peer.

mipSecRecentViolationIDLow

1.3.6.1.2.1.44.1.2.3.1.5

Integer32

Low-order 32 bits of identification used in request or reply of the most recent security violation for this peer.

mipSecRecentViolationIDHigh

1.3.6.1.2.1.44.1.2.3.1.6

Integer32

High-order 32 bits of identification used in request or reply of the most recent security violation for this peer.

mipSecRecentViolationReason

1.3.6.1.2.1.44.1.2.3.1.7

INTEGER1 = noMobilitySecurityAssociation2 = badAuthenticator3 = badIdentifier4 = badSPI5 = missingSecurityExtension6 = other · Integer32

Reason for the most recent security violation for this peer.

mnHATable

1.3.6.1.2.1.44.1.3.1.3

Index: mnHAAddress

A table containing all of the mobile node's potential home agents.

mnHAAddress

1.3.6.1.2.1.44.1.3.1.3.1.1

IpAddress SIZE (4)

IP address of mobile node's Home Agent.

mnCurrentHA

1.3.6.1.2.1.44.1.3.1.3.1.2

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

Whether this home agent is the current home agent for the mobile node. If it is true, the mobile node is registered with that home agent.

mnHAStatus

1.3.6.1.2.1.44.1.3.1.3.1.3

RowStatus1 = active2 = notInService3 = notReady4 = createAndGo5 = createAndWait6 = destroyThe RowStatus textual convention is used to manage the creation and deletion of conceptual rows, and is used as the value of the SYNTAX clause for the status column of a conceptual row (as described in Section 7.7.1 of [2].) The status column has six defined values: - `active', which indicates that the conceptual row is available for use by the managed device; - `notInService', which indicates that the conceptual row exists in the agent, but is unavailable for use by the managed device (see NOTE below); 'notInService' has no implication regarding the internal consistency of the row, availability of resources, or consistency with the current state of the managed device; - `notReady', which indicates that the conceptual row exists in the agent, but is missing information necessary in order to be available for use by the managed device (i.e., one or more required columns in the conceptual row have not been instanciated); - `createAndGo', which is supplied by a management station wishing to create a new instance of a conceptual row and to have its status automatically set to active, making it available for use by the managed device; - `createAndWait', which is supplied by a management station wishing to create a new instance of a conceptual row (but not make it available for use by the managed device); and, - `destroy', which is supplied by a management station wishing to delete all of the instances associated with an existing conceptual row. Whereas five of the six values (all except `notReady') may be specified in a management protocol set operation, only three values will be returned in response to a management protocol retrieval operation: `notReady', `notInService' or `active'. That is, when queried, an existing conceptual row has only three states: it is either available for use by the managed device (the status column has value `active'); it is not available for use by the managed device, though the agent has sufficient information to attempt to make it so (the status column has value `notInService'); or, it is not available for use by the managed device, and an attempt to make it so would fail because the agent has insufficient information (the state column has value `notReady'). NOTE WELL This textual convention may be used for a MIB table, irrespective of whether the values of that table's conceptual rows are able to be modified while it is active, or whether its conceptual rows must be taken out of service in order to be modified. That is, it is the responsibility of the DESCRIPTION clause of the status column to specify whether the status column must not be `active' in order for the value of some other column of the same conceptual row to be modified. If such a specification is made, affected columns may be changed by an SNMP set PDU if the RowStatus would not be equal to `active' either immediately before or after processing the PDU. In other words, if the PDU also contained a varbind that would change the RowStatus value, the column in question may be changed if the RowStatus was not equal to `active' as the PDU was received, or if the varbind sets the status to a value other than 'active'. Also note that whenever any elements of a row exist, the RowStatus column must also exist. To summarize the effect of having a conceptual row with a status column having a SYNTAX clause value of RowStatus, consider the following state diagram: STATE +--------------+-----------+-------------+------------- | A | B | C | D | |status col.|status column| |status column | is | is |status column ACTION |does not exist| notReady | notInService| is active --------------+--------------+-----------+-------------+------------- set status |noError ->D|inconsist- |inconsistent-|inconsistent- column to | or | entValue| Value| Value createAndGo |inconsistent- | | | | Value| | | --------------+--------------+-----------+-------------+------------- set status |noError see 1|inconsist- |inconsistent-|inconsistent- column to | or | entValue| Value| Value createAndWait |wrongValue | | | --------------+--------------+-----------+-------------+------------- set status |inconsistent- |inconsist- |noError |noError column to | Value| entValue| | active | | | | | | or | | | | | | | |see 2 ->D|see 8 ->D| ->D --------------+--------------+-----------+-------------+------------- set status |inconsistent- |inconsist- |noError |noError ->C column to | Value| entValue| | notInService | | | | | | or | | or | | | | | |see 3 ->C| ->C|see 6 --------------+--------------+-----------+-------------+------------- set status |noError |noError |noError |noError ->A column to | | | | or destroy | ->A| ->A| ->A|see 7 --------------+--------------+-----------+-------------+------------- set any other |see 4 |noError |noError |see 5 column to some| | | | value | | see 1| ->C| ->D --------------+--------------+-----------+-------------+------------- (1) goto B or C, depending on information available to the agent. (2) if other variable bindings included in the same PDU, provide values for all columns which are missing but required, and all columns have acceptable values, then return noError and goto D. (3) if other variable bindings included in the same PDU, provide legal values for all columns which are missing but required, then return noError and goto C. (4) at the discretion of the agent, the return value may be either: inconsistentName: because the agent does not choose to create such an instance when the corresponding RowStatus instance does not exist, or inconsistentValue: if the supplied value is inconsistent with the state of some other MIB object's value, or noError: because the agent chooses to create the instance. If noError is returned, then the instance of the status column must also be created, and the new state is B or C, depending on the information available to the agent. If inconsistentName or inconsistentValue is returned, the row remains in state A. (5) depending on the MIB definition for the column/table, either noError or inconsistentValue may be returned. (6) the return value can indicate one of the following errors: wrongValue: because the agent does not support notInService (e.g., an agent which does not support createAndWait), or inconsistentValue: because the agent is unable to take the row out of service at this time, perhaps because it is in use and cannot be de-activated. (7) the return value can indicate the following error: inconsistentValue: because the agent is unable to remove the row at this time, perhaps because it is in use and cannot be de-activated. (8) the transition to D can fail, e.g., if the values of the conceptual row are inconsistent, then the error code would be inconsistentValue. NOTE: Other processing of (this and other varbinds of) the set request may result in a response other than noError being returned, e.g., wrongValue, noCreation, etc. Conceptual Row Creation There are four potential interactions when creating a conceptual row: selecting an instance-identifier which is not in use; creating the conceptual row; initializing any objects for which the agent does not supply a default; and, making the conceptual row available for use by the managed device. Interaction 1: Selecting an Instance-Identifier The algorithm used to select an instance-identifier varies for each conceptual row. In some cases, the instance- identifier is semantically significant, e.g., the destination address of a route, and a management station selects the instance-identifier according to the semantics. In other cases, the instance-identifier is used solely to distinguish conceptual rows, and a management station without specific knowledge of the conceptual row might examine the instances present in order to determine an unused instance-identifier. (This approach may be used, but it is often highly sub-optimal; however, it is also a questionable practice for a naive management station to attempt conceptual row creation.) Alternately, the MIB module which defines the conceptual row might provide one or more objects which provide assistance in determining an unused instance-identifier. For example, if the conceptual row is indexed by an integer-value, then an object having an integer-valued SYNTAX clause might be defined for such a purpose, allowing a management station to issue a management protocol retrieval operation. In order to avoid unnecessary collisions between competing management stations, `adjacent' retrievals of this object should be different. Finally, the management station could select a pseudo-random number to use as the index. In the event that this index was already in use and an inconsistentValue was returned in response to the management protocol set operation, the management station should simply select a new pseudo-random number and retry the operation. A MIB designer should choose between the two latter algorithms based on the size of the table (and therefore the efficiency of each algorithm). For tables in which a large number of entries are expected, it is recommended that a MIB object be defined that returns an acceptable index for creation. For tables with small numbers of entries, it is recommended that the latter pseudo-random index mechanism be used. Interaction 2: Creating the Conceptual Row Once an unused instance-identifier has been selected, the management station determines if it wishes to create and activate the conceptual row in one transaction or in a negotiated set of interactions. Interaction 2a: Creating and Activating the Conceptual Row The management station must first determine the column requirements, i.e., it must determine those columns for which it must or must not provide values. Depending on the complexity of the table and the management station's knowledge of the agent's capabilities, this determination can be made locally by the management station. Alternately, the management station issues a management protocol get operation to examine all columns in the conceptual row that it wishes to create. In response, for each column, there are three possible outcomes: - a value is returned, indicating that some other management station has already created this conceptual row. We return to interaction 1. - the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it should supply a value for this column when the conceptual row is to be created. - the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column. Once the column requirements have been determined, a management protocol set operation is accordingly issued. This operation also sets the new instance of the status column to `createAndGo'. When the agent processes the set operation, it verifies that it has sufficient information to make the conceptual row available for use by the managed device. The information available to the agent is provided by two sources: the management protocol set operation which creates the conceptual row, and, implementation-specific defaults supplied by the agent (note that an agent must provide implementation-specific defaults for at least those objects which it implements as read-only). If there is sufficient information available, then the conceptual row is created, a `noError' response is returned, the status column is set to `active', and no further interactions are necessary (i.e., interactions 3 and 4 are skipped). If there is insufficient information, then the conceptual row is not created, and the set operation fails with an error of `inconsistentValue'. On this error, the management station can issue a management protocol retrieval operation to determine if this was because it failed to specify a value for a required column, or, because the selected instance of the status column already existed. In the latter case, we return to interaction 1. In the former case, the management station can re-issue the set operation with the additional information, or begin interaction 2 again using `createAndWait' in order to negotiate creation of the conceptual row. NOTE WELL Regardless of the method used to determine the column requirements, it is possible that the management station might deem a column necessary when, in fact, the agent will not allow that particular columnar instance to be created or written. In this case, the management protocol set operation will fail with an error such as `noCreation' or `notWritable'. In this case, the management station decides whether it needs to be able to set a value for that particular columnar instance. If not, the management station re-issues the management protocol set operation, but without setting a value for that particular columnar instance; otherwise, the management station aborts the row creation algorithm. Interaction 2b: Negotiating the Creation of the Conceptual Row The management station issues a management protocol set operation which sets the desired instance of the status column to `createAndWait'. If the agent is unwilling to process a request of this sort, the set operation fails with an error of `wrongValue'. (As a consequence, such an agent must be prepared to accept a single management protocol set operation, i.e., interaction 2a above, containing all of the columns indicated by its column requirements.) Otherwise, the conceptual row is created, a `noError' response is returned, and the status column is immediately set to either `notInService' or `notReady', depending on whether it has sufficient information to (attempt to) make the conceptual row available for use by the managed device. If there is sufficient information available, then the status column is set to `notInService'; otherwise, if there is insufficient information, then the status column is set to `notReady'. Regardless, we proceed to interaction 3. Interaction 3: Initializing non-defaulted Objects The management station must now determine the column requirements. It issues a management protocol get operation to examine all columns in the created conceptual row. In the response, for each column, there are three possible outcomes: - a value is returned, indicating that the agent implements the object-type associated with this column and had sufficient information to provide a value. For those columns to which the agent provides read-create access (and for which the agent allows their values to be changed after their creation), a value return tells the management station that it may issue additional management protocol set operations, if it desires, in order to change the value associated with this column. - the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. However, the agent does not have sufficient information to provide a value, and until a value is provided, the conceptual row may not be made available for use by the managed device. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it must issue additional management protocol set operations, in order to provide a value associated with this column. - the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column. If the value associated with the status column is `notReady', then the management station must first deal with all `noSuchInstance' columns, if any. Having done so, the value of the status column becomes `notInService', and we proceed to interaction 4. Interaction 4: Making the Conceptual Row Available Once the management station is satisfied with the values associated with the columns of the conceptual row, it issues a management protocol set operation to set the status column to `active'. If the agent has sufficient information to make the conceptual row available for use by the managed device, the management protocol set operation succeeds (a `noError' response is returned). Otherwise, the management protocol set operation fails with an error of `inconsistentValue'. NOTE WELL A conceptual row having a status column with value `notInService' or `notReady' is unavailable to the managed device. As such, it is possible for the managed device to create its own instances during the time between the management protocol set operation which sets the status column to `createAndWait' and the management protocol set operation which sets the status column to `active'. In this case, when the management protocol set operation is issued to set the status column to `active', the values held in the agent supersede those used by the managed device. If the management station is prevented from setting the status column to `active' (e.g., due to management station or network failure) the conceptual row will be left in the `notInService' or `notReady' state, consuming resources indefinitely. The agent must detect conceptual rows that have been in either state for an abnormally long period of time and remove them. It is the responsibility of the DESCRIPTION clause of the status column to indicate what an abnormally long period of time would be. This period of time should be long enough to allow for human response time (including `think time') between the creation of the conceptual row and the setting of the status to `active'. In the absence of such information in the DESCRIPTION clause, it is suggested that this period be approximately 5 minutes in length. This removal action applies not only to newly-created rows, but also to previously active rows which are set to, and left in, the notInService state for a prolonged period exceeding that which is considered normal for such a conceptual row. Conceptual Row Suspension When a conceptual row is `active', the management station may issue a management protocol set operation which sets the instance of the status column to `notInService'. If the agent is unwilling to do so, the set operation fails with an error of `wrongValue' or `inconsistentValue'. Otherwise, the conceptual row is taken out of service, and a `noError' response is returned. It is the responsibility of the DESCRIPTION clause of the status column to indicate under what circumstances the status column should be taken out of service (e.g., in order for the value of some other column of the same conceptual row to be modified). Conceptual Row Deletion For deletion of conceptual rows, a management protocol set operation is issued which sets the instance of the status column to `destroy'. This request may be made regardless of the current value of the status column (e.g., it is possible to delete conceptual rows which are either `notReady', `notInService' or `active'.) If the operation succeeds, then all instances associated with the conceptual row are immediately removed. · Integer32

The row status for this home agent entry. If the status is set to 'createAndGo' or 'active', then the mobile node can use mnHAAddress as a valid candidate for a home agent. If the status is set to 'destroy', then the mobile node should delete this row, and deregister from that home agent.

mnFATable

1.3.6.1.2.1.44.1.3.2.1

Index: mnFAAddress · mnCOA

A table containing all foreign agents that the mobile node knows about and their corresponding COA (care-of address). This COA is an address of a foreign agent with which the mobile node is registered. The table is updated when advertisements are received by the mobile node. If an advertisement expires, its entry(s) should be deleted from the table. One foreign agent can provide more than one COA in its advertisements.

mnFAAddress

1.3.6.1.2.1.44.1.3.2.1.1.1

IpAddress SIZE (4)

Foreign agent's IP address.

mnCOA

1.3.6.1.2.1.44.1.3.2.1.1.2

IpAddress SIZE (4)

A care-of address being offered by this foreign agent or a co-located care-of address which the mobile node has associated with one of its own network interfaces.

mnRegistrationTable

1.3.6.1.2.1.44.1.3.3.1

Index: mnRegAgentAddress · mnRegCOA

A table containing information about the mobile node's attempted registration(s). The mobile node updates this table based upon Registration Requests sent and Registration Replies received in response to these requests. Certain variables within this table are also updated if when Registration Requests are retransmitted.

mnRegAgentAddress

1.3.6.1.2.1.44.1.3.3.1.1.1

IpAddress SIZE (4)

IP address of the agent as used in the destination IP address of the Registration Request. The agent may be a home agent or a foreign agent.

mnRegCOA

1.3.6.1.2.1.44.1.3.3.1.1.2

IpAddress SIZE (4)

Care-of address for the registration.

mnRegFlags

1.3.6.1.2.1.44.1.3.3.1.1.3

RegistrationFlagsThis data type is used to define the registration flags for Mobile IP registration extension: vjCompression -- Request to use VJ compression gre -- Request to use GRE minEnc -- Request to use minimal encapsulation decapsulationByMN -- Decapsulation by mobile node broadcastDatagram -- Request to receive broadcasts simultaneoursBindings -- Request to retain prior binding(s). · BITS

Registration flags sent by the mobile node. It is the second byte in the Mobile IP Registratation Request message.

mnRegIDLow

1.3.6.1.2.1.44.1.3.3.1.1.4

Integer32

Low-order 32 bits of the Identification used in that registration by the mobile node.

mnRegIDHigh

1.3.6.1.2.1.44.1.3.3.1.1.5

Integer32

High-order 32 bits of the Identification used in that registration by the mobile node.

mnRegTimeRequested

1.3.6.1.2.1.44.1.3.3.1.1.6

Integer32 · seconds

If the registration is pending, then this is the lifetime requested by the mobile node (in seconds). If the registration has been accepted, then this is the lifetime actually granted by the home agent in the reply.

mnRegTimeRemaining

1.3.6.1.2.1.44.1.3.3.1.1.7

Gauge32 · seconds

The number of seconds remaining until this registration expires. It has the same initial value as mnRegTimeRequested and is only valid if mnRegIsAccepted is TRUE.

mnRegTimeSent

1.3.6.1.2.1.44.1.3.3.1.1.8

TimeStampThe value of the sysUpTime object at which a specific occurrence happened. The specific occurrence must be defined in the description of any object defined using this type. If sysUpTime is reset to zero as a result of a re- initialization of the network management (sub)system, then the values of all TimeStamp objects are also reset. However, after approximately 497 days without a re- initialization, the sysUpTime object will reach 2^^32-1 and then increment around to zero; in this case, existing values of TimeStamp objects do not change. This can lead to ambiguities in the value of TimeStamp objects. · TimeTicks

The time when the last (re-)transmission occured.

mnRegIsAccepted

1.3.6.1.2.1.44.1.3.3.1.1.9

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

true(1) if the mobile node has received a Registration Reply indicating that service has been accepted; false(2) otherwise. false(2) implies that the registration is still pending.

mnCOAIsLocal

1.3.6.1.2.1.44.1.3.3.1.1.10

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

Whether the COA is local to (dynamically acquired by) the mobile node or not. If it is false(2), the COA is an address of the foreign agent.

maAdvConfigTable

1.3.6.1.2.1.44.1.4.2.1

Index: maInterfaceAddress

A table containing configurable advertisement parameters for all advertisement interfaces in the mobility agent.

maInterfaceAddress

1.3.6.1.2.1.44.1.4.2.1.1.1

IpAddress SIZE (4)

IP address for advertisement interface.

maAdvMaxRegLifetime

1.3.6.1.2.1.44.1.4.2.1.1.2

Integer32 (0..65535) · seconds

The longest lifetime in seconds that mobility agent is willing to accept in any Registration Request.

maAdvPrefixLengthInclusion

1.3.6.1.2.1.44.1.4.2.1.1.3

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

Whether the advertisement should include the Prefix- Lengths Extension. If it is true, all advertisements sent over this interface should include the Prefix-Lengths Extension.

maAdvAddress

1.3.6.1.2.1.44.1.4.2.1.1.4

IpAddress SIZE (4)

The IP destination address to be used for advertisements sent from the interface. The only permissible values are the all-systems multicast address (224.0.0.1) or the limited-broadcast address (255.255.255.255).

maAdvMaxInterval

1.3.6.1.2.1.44.1.4.2.1.1.5

Integer32 (4..1800) · seconds

The maximum time in seconds between successive transmissions of Agent Advertisements from this interface.

maAdvMinInterval

1.3.6.1.2.1.44.1.4.2.1.1.6

Integer32 (3..1800) · seconds

The minimum time in seconds between successive transmissions of Agent Advertisements from this interface.

maAdvMaxAdvLifetime

1.3.6.1.2.1.44.1.4.2.1.1.7

Integer32 (4..9000) · seconds

The time (in seconds) to be placed in the Lifetime field of the RFC 1256-portion of the Agent Advertisements sent over this interface.

maAdvResponseSolicitationOnly

1.3.6.1.2.1.44.1.4.2.1.1.8

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

The flag indicates whether the advertisement from that interface should be sent only in response to an Agent Solicitation message.

maAdvStatus

1.3.6.1.2.1.44.1.4.2.1.1.9

RowStatus1 = active2 = notInService3 = notReady4 = createAndGo5 = createAndWait6 = destroyThe RowStatus textual convention is used to manage the creation and deletion of conceptual rows, and is used as the value of the SYNTAX clause for the status column of a conceptual row (as described in Section 7.7.1 of [2].) The status column has six defined values: - `active', which indicates that the conceptual row is available for use by the managed device; - `notInService', which indicates that the conceptual row exists in the agent, but is unavailable for use by the managed device (see NOTE below); 'notInService' has no implication regarding the internal consistency of the row, availability of resources, or consistency with the current state of the managed device; - `notReady', which indicates that the conceptual row exists in the agent, but is missing information necessary in order to be available for use by the managed device (i.e., one or more required columns in the conceptual row have not been instanciated); - `createAndGo', which is supplied by a management station wishing to create a new instance of a conceptual row and to have its status automatically set to active, making it available for use by the managed device; - `createAndWait', which is supplied by a management station wishing to create a new instance of a conceptual row (but not make it available for use by the managed device); and, - `destroy', which is supplied by a management station wishing to delete all of the instances associated with an existing conceptual row. Whereas five of the six values (all except `notReady') may be specified in a management protocol set operation, only three values will be returned in response to a management protocol retrieval operation: `notReady', `notInService' or `active'. That is, when queried, an existing conceptual row has only three states: it is either available for use by the managed device (the status column has value `active'); it is not available for use by the managed device, though the agent has sufficient information to attempt to make it so (the status column has value `notInService'); or, it is not available for use by the managed device, and an attempt to make it so would fail because the agent has insufficient information (the state column has value `notReady'). NOTE WELL This textual convention may be used for a MIB table, irrespective of whether the values of that table's conceptual rows are able to be modified while it is active, or whether its conceptual rows must be taken out of service in order to be modified. That is, it is the responsibility of the DESCRIPTION clause of the status column to specify whether the status column must not be `active' in order for the value of some other column of the same conceptual row to be modified. If such a specification is made, affected columns may be changed by an SNMP set PDU if the RowStatus would not be equal to `active' either immediately before or after processing the PDU. In other words, if the PDU also contained a varbind that would change the RowStatus value, the column in question may be changed if the RowStatus was not equal to `active' as the PDU was received, or if the varbind sets the status to a value other than 'active'. Also note that whenever any elements of a row exist, the RowStatus column must also exist. To summarize the effect of having a conceptual row with a status column having a SYNTAX clause value of RowStatus, consider the following state diagram: STATE +--------------+-----------+-------------+------------- | A | B | C | D | |status col.|status column| |status column | is | is |status column ACTION |does not exist| notReady | notInService| is active --------------+--------------+-----------+-------------+------------- set status |noError ->D|inconsist- |inconsistent-|inconsistent- column to | or | entValue| Value| Value createAndGo |inconsistent- | | | | Value| | | --------------+--------------+-----------+-------------+------------- set status |noError see 1|inconsist- |inconsistent-|inconsistent- column to | or | entValue| Value| Value createAndWait |wrongValue | | | --------------+--------------+-----------+-------------+------------- set status |inconsistent- |inconsist- |noError |noError column to | Value| entValue| | active | | | | | | or | | | | | | | |see 2 ->D|see 8 ->D| ->D --------------+--------------+-----------+-------------+------------- set status |inconsistent- |inconsist- |noError |noError ->C column to | Value| entValue| | notInService | | | | | | or | | or | | | | | |see 3 ->C| ->C|see 6 --------------+--------------+-----------+-------------+------------- set status |noError |noError |noError |noError ->A column to | | | | or destroy | ->A| ->A| ->A|see 7 --------------+--------------+-----------+-------------+------------- set any other |see 4 |noError |noError |see 5 column to some| | | | value | | see 1| ->C| ->D --------------+--------------+-----------+-------------+------------- (1) goto B or C, depending on information available to the agent. (2) if other variable bindings included in the same PDU, provide values for all columns which are missing but required, and all columns have acceptable values, then return noError and goto D. (3) if other variable bindings included in the same PDU, provide legal values for all columns which are missing but required, then return noError and goto C. (4) at the discretion of the agent, the return value may be either: inconsistentName: because the agent does not choose to create such an instance when the corresponding RowStatus instance does not exist, or inconsistentValue: if the supplied value is inconsistent with the state of some other MIB object's value, or noError: because the agent chooses to create the instance. If noError is returned, then the instance of the status column must also be created, and the new state is B or C, depending on the information available to the agent. If inconsistentName or inconsistentValue is returned, the row remains in state A. (5) depending on the MIB definition for the column/table, either noError or inconsistentValue may be returned. (6) the return value can indicate one of the following errors: wrongValue: because the agent does not support notInService (e.g., an agent which does not support createAndWait), or inconsistentValue: because the agent is unable to take the row out of service at this time, perhaps because it is in use and cannot be de-activated. (7) the return value can indicate the following error: inconsistentValue: because the agent is unable to remove the row at this time, perhaps because it is in use and cannot be de-activated. (8) the transition to D can fail, e.g., if the values of the conceptual row are inconsistent, then the error code would be inconsistentValue. NOTE: Other processing of (this and other varbinds of) the set request may result in a response other than noError being returned, e.g., wrongValue, noCreation, etc. Conceptual Row Creation There are four potential interactions when creating a conceptual row: selecting an instance-identifier which is not in use; creating the conceptual row; initializing any objects for which the agent does not supply a default; and, making the conceptual row available for use by the managed device. Interaction 1: Selecting an Instance-Identifier The algorithm used to select an instance-identifier varies for each conceptual row. In some cases, the instance- identifier is semantically significant, e.g., the destination address of a route, and a management station selects the instance-identifier according to the semantics. In other cases, the instance-identifier is used solely to distinguish conceptual rows, and a management station without specific knowledge of the conceptual row might examine the instances present in order to determine an unused instance-identifier. (This approach may be used, but it is often highly sub-optimal; however, it is also a questionable practice for a naive management station to attempt conceptual row creation.) Alternately, the MIB module which defines the conceptual row might provide one or more objects which provide assistance in determining an unused instance-identifier. For example, if the conceptual row is indexed by an integer-value, then an object having an integer-valued SYNTAX clause might be defined for such a purpose, allowing a management station to issue a management protocol retrieval operation. In order to avoid unnecessary collisions between competing management stations, `adjacent' retrievals of this object should be different. Finally, the management station could select a pseudo-random number to use as the index. In the event that this index was already in use and an inconsistentValue was returned in response to the management protocol set operation, the management station should simply select a new pseudo-random number and retry the operation. A MIB designer should choose between the two latter algorithms based on the size of the table (and therefore the efficiency of each algorithm). For tables in which a large number of entries are expected, it is recommended that a MIB object be defined that returns an acceptable index for creation. For tables with small numbers of entries, it is recommended that the latter pseudo-random index mechanism be used. Interaction 2: Creating the Conceptual Row Once an unused instance-identifier has been selected, the management station determines if it wishes to create and activate the conceptual row in one transaction or in a negotiated set of interactions. Interaction 2a: Creating and Activating the Conceptual Row The management station must first determine the column requirements, i.e., it must determine those columns for which it must or must not provide values. Depending on the complexity of the table and the management station's knowledge of the agent's capabilities, this determination can be made locally by the management station. Alternately, the management station issues a management protocol get operation to examine all columns in the conceptual row that it wishes to create. In response, for each column, there are three possible outcomes: - a value is returned, indicating that some other management station has already created this conceptual row. We return to interaction 1. - the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it should supply a value for this column when the conceptual row is to be created. - the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column. Once the column requirements have been determined, a management protocol set operation is accordingly issued. This operation also sets the new instance of the status column to `createAndGo'. When the agent processes the set operation, it verifies that it has sufficient information to make the conceptual row available for use by the managed device. The information available to the agent is provided by two sources: the management protocol set operation which creates the conceptual row, and, implementation-specific defaults supplied by the agent (note that an agent must provide implementation-specific defaults for at least those objects which it implements as read-only). If there is sufficient information available, then the conceptual row is created, a `noError' response is returned, the status column is set to `active', and no further interactions are necessary (i.e., interactions 3 and 4 are skipped). If there is insufficient information, then the conceptual row is not created, and the set operation fails with an error of `inconsistentValue'. On this error, the management station can issue a management protocol retrieval operation to determine if this was because it failed to specify a value for a required column, or, because the selected instance of the status column already existed. In the latter case, we return to interaction 1. In the former case, the management station can re-issue the set operation with the additional information, or begin interaction 2 again using `createAndWait' in order to negotiate creation of the conceptual row. NOTE WELL Regardless of the method used to determine the column requirements, it is possible that the management station might deem a column necessary when, in fact, the agent will not allow that particular columnar instance to be created or written. In this case, the management protocol set operation will fail with an error such as `noCreation' or `notWritable'. In this case, the management station decides whether it needs to be able to set a value for that particular columnar instance. If not, the management station re-issues the management protocol set operation, but without setting a value for that particular columnar instance; otherwise, the management station aborts the row creation algorithm. Interaction 2b: Negotiating the Creation of the Conceptual Row The management station issues a management protocol set operation which sets the desired instance of the status column to `createAndWait'. If the agent is unwilling to process a request of this sort, the set operation fails with an error of `wrongValue'. (As a consequence, such an agent must be prepared to accept a single management protocol set operation, i.e., interaction 2a above, containing all of the columns indicated by its column requirements.) Otherwise, the conceptual row is created, a `noError' response is returned, and the status column is immediately set to either `notInService' or `notReady', depending on whether it has sufficient information to (attempt to) make the conceptual row available for use by the managed device. If there is sufficient information available, then the status column is set to `notInService'; otherwise, if there is insufficient information, then the status column is set to `notReady'. Regardless, we proceed to interaction 3. Interaction 3: Initializing non-defaulted Objects The management station must now determine the column requirements. It issues a management protocol get operation to examine all columns in the created conceptual row. In the response, for each column, there are three possible outcomes: - a value is returned, indicating that the agent implements the object-type associated with this column and had sufficient information to provide a value. For those columns to which the agent provides read-create access (and for which the agent allows their values to be changed after their creation), a value return tells the management station that it may issue additional management protocol set operations, if it desires, in order to change the value associated with this column. - the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. However, the agent does not have sufficient information to provide a value, and until a value is provided, the conceptual row may not be made available for use by the managed device. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it must issue additional management protocol set operations, in order to provide a value associated with this column. - the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column. If the value associated with the status column is `notReady', then the management station must first deal with all `noSuchInstance' columns, if any. Having done so, the value of the status column becomes `notInService', and we proceed to interaction 4. Interaction 4: Making the Conceptual Row Available Once the management station is satisfied with the values associated with the columns of the conceptual row, it issues a management protocol set operation to set the status column to `active'. If the agent has sufficient information to make the conceptual row available for use by the managed device, the management protocol set operation succeeds (a `noError' response is returned). Otherwise, the management protocol set operation fails with an error of `inconsistentValue'. NOTE WELL A conceptual row having a status column with value `notInService' or `notReady' is unavailable to the managed device. As such, it is possible for the managed device to create its own instances during the time between the management protocol set operation which sets the status column to `createAndWait' and the management protocol set operation which sets the status column to `active'. In this case, when the management protocol set operation is issued to set the status column to `active', the values held in the agent supersede those used by the managed device. If the management station is prevented from setting the status column to `active' (e.g., due to management station or network failure) the conceptual row will be left in the `notInService' or `notReady' state, consuming resources indefinitely. The agent must detect conceptual rows that have been in either state for an abnormally long period of time and remove them. It is the responsibility of the DESCRIPTION clause of the status column to indicate what an abnormally long period of time would be. This period of time should be long enough to allow for human response time (including `think time') between the creation of the conceptual row and the setting of the status to `active'. In the absence of such information in the DESCRIPTION clause, it is suggested that this period be approximately 5 minutes in length. This removal action applies not only to newly-created rows, but also to previously active rows which are set to, and left in, the notInService state for a prolonged period exceeding that which is considered normal for such a conceptual row. Conceptual Row Suspension When a conceptual row is `active', the management station may issue a management protocol set operation which sets the instance of the status column to `notInService'. If the agent is unwilling to do so, the set operation fails with an error of `wrongValue' or `inconsistentValue'. Otherwise, the conceptual row is taken out of service, and a `noError' response is returned. It is the responsibility of the DESCRIPTION clause of the status column to indicate under what circumstances the status column should be taken out of service (e.g., in order for the value of some other column of the same conceptual row to be modified). Conceptual Row Deletion For deletion of conceptual rows, a management protocol set operation is issued which sets the instance of the status column to `destroy'. This request may be made regardless of the current value of the status column (e.g., it is possible to delete conceptual rows which are either `notReady', `notInService' or `active'.) If the operation succeeds, then all instances associated with the conceptual row are immediately removed. · Integer32

The row status for the agent advertisement table. If this column status is 'active', the manager should not change any column in the row.

faCOATable

1.3.6.1.2.1.44.1.5.1.1

Index: faSupportedCOA

A table containing all of the care-of addresses (COAs) supported by the foreign agent. New entries can be added to the table. The order of entries in the faCOATAble is also the order in which the COAs are listed in the Agent Advertisement.

faSupportedCOA

1.3.6.1.2.1.44.1.5.1.1.1.1

IpAddress SIZE (4)

Care-of-address supported by this foreign agent.

faCOAStatus

1.3.6.1.2.1.44.1.5.1.1.1.2

RowStatus1 = active2 = notInService3 = notReady4 = createAndGo5 = createAndWait6 = destroyThe RowStatus textual convention is used to manage the creation and deletion of conceptual rows, and is used as the value of the SYNTAX clause for the status column of a conceptual row (as described in Section 7.7.1 of [2].) The status column has six defined values: - `active', which indicates that the conceptual row is available for use by the managed device; - `notInService', which indicates that the conceptual row exists in the agent, but is unavailable for use by the managed device (see NOTE below); 'notInService' has no implication regarding the internal consistency of the row, availability of resources, or consistency with the current state of the managed device; - `notReady', which indicates that the conceptual row exists in the agent, but is missing information necessary in order to be available for use by the managed device (i.e., one or more required columns in the conceptual row have not been instanciated); - `createAndGo', which is supplied by a management station wishing to create a new instance of a conceptual row and to have its status automatically set to active, making it available for use by the managed device; - `createAndWait', which is supplied by a management station wishing to create a new instance of a conceptual row (but not make it available for use by the managed device); and, - `destroy', which is supplied by a management station wishing to delete all of the instances associated with an existing conceptual row. Whereas five of the six values (all except `notReady') may be specified in a management protocol set operation, only three values will be returned in response to a management protocol retrieval operation: `notReady', `notInService' or `active'. That is, when queried, an existing conceptual row has only three states: it is either available for use by the managed device (the status column has value `active'); it is not available for use by the managed device, though the agent has sufficient information to attempt to make it so (the status column has value `notInService'); or, it is not available for use by the managed device, and an attempt to make it so would fail because the agent has insufficient information (the state column has value `notReady'). NOTE WELL This textual convention may be used for a MIB table, irrespective of whether the values of that table's conceptual rows are able to be modified while it is active, or whether its conceptual rows must be taken out of service in order to be modified. That is, it is the responsibility of the DESCRIPTION clause of the status column to specify whether the status column must not be `active' in order for the value of some other column of the same conceptual row to be modified. If such a specification is made, affected columns may be changed by an SNMP set PDU if the RowStatus would not be equal to `active' either immediately before or after processing the PDU. In other words, if the PDU also contained a varbind that would change the RowStatus value, the column in question may be changed if the RowStatus was not equal to `active' as the PDU was received, or if the varbind sets the status to a value other than 'active'. Also note that whenever any elements of a row exist, the RowStatus column must also exist. To summarize the effect of having a conceptual row with a status column having a SYNTAX clause value of RowStatus, consider the following state diagram: STATE +--------------+-----------+-------------+------------- | A | B | C | D | |status col.|status column| |status column | is | is |status column ACTION |does not exist| notReady | notInService| is active --------------+--------------+-----------+-------------+------------- set status |noError ->D|inconsist- |inconsistent-|inconsistent- column to | or | entValue| Value| Value createAndGo |inconsistent- | | | | Value| | | --------------+--------------+-----------+-------------+------------- set status |noError see 1|inconsist- |inconsistent-|inconsistent- column to | or | entValue| Value| Value createAndWait |wrongValue | | | --------------+--------------+-----------+-------------+------------- set status |inconsistent- |inconsist- |noError |noError column to | Value| entValue| | active | | | | | | or | | | | | | | |see 2 ->D|see 8 ->D| ->D --------------+--------------+-----------+-------------+------------- set status |inconsistent- |inconsist- |noError |noError ->C column to | Value| entValue| | notInService | | | | | | or | | or | | | | | |see 3 ->C| ->C|see 6 --------------+--------------+-----------+-------------+------------- set status |noError |noError |noError |noError ->A column to | | | | or destroy | ->A| ->A| ->A|see 7 --------------+--------------+-----------+-------------+------------- set any other |see 4 |noError |noError |see 5 column to some| | | | value | | see 1| ->C| ->D --------------+--------------+-----------+-------------+------------- (1) goto B or C, depending on information available to the agent. (2) if other variable bindings included in the same PDU, provide values for all columns which are missing but required, and all columns have acceptable values, then return noError and goto D. (3) if other variable bindings included in the same PDU, provide legal values for all columns which are missing but required, then return noError and goto C. (4) at the discretion of the agent, the return value may be either: inconsistentName: because the agent does not choose to create such an instance when the corresponding RowStatus instance does not exist, or inconsistentValue: if the supplied value is inconsistent with the state of some other MIB object's value, or noError: because the agent chooses to create the instance. If noError is returned, then the instance of the status column must also be created, and the new state is B or C, depending on the information available to the agent. If inconsistentName or inconsistentValue is returned, the row remains in state A. (5) depending on the MIB definition for the column/table, either noError or inconsistentValue may be returned. (6) the return value can indicate one of the following errors: wrongValue: because the agent does not support notInService (e.g., an agent which does not support createAndWait), or inconsistentValue: because the agent is unable to take the row out of service at this time, perhaps because it is in use and cannot be de-activated. (7) the return value can indicate the following error: inconsistentValue: because the agent is unable to remove the row at this time, perhaps because it is in use and cannot be de-activated. (8) the transition to D can fail, e.g., if the values of the conceptual row are inconsistent, then the error code would be inconsistentValue. NOTE: Other processing of (this and other varbinds of) the set request may result in a response other than noError being returned, e.g., wrongValue, noCreation, etc. Conceptual Row Creation There are four potential interactions when creating a conceptual row: selecting an instance-identifier which is not in use; creating the conceptual row; initializing any objects for which the agent does not supply a default; and, making the conceptual row available for use by the managed device. Interaction 1: Selecting an Instance-Identifier The algorithm used to select an instance-identifier varies for each conceptual row. In some cases, the instance- identifier is semantically significant, e.g., the destination address of a route, and a management station selects the instance-identifier according to the semantics. In other cases, the instance-identifier is used solely to distinguish conceptual rows, and a management station without specific knowledge of the conceptual row might examine the instances present in order to determine an unused instance-identifier. (This approach may be used, but it is often highly sub-optimal; however, it is also a questionable practice for a naive management station to attempt conceptual row creation.) Alternately, the MIB module which defines the conceptual row might provide one or more objects which provide assistance in determining an unused instance-identifier. For example, if the conceptual row is indexed by an integer-value, then an object having an integer-valued SYNTAX clause might be defined for such a purpose, allowing a management station to issue a management protocol retrieval operation. In order to avoid unnecessary collisions between competing management stations, `adjacent' retrievals of this object should be different. Finally, the management station could select a pseudo-random number to use as the index. In the event that this index was already in use and an inconsistentValue was returned in response to the management protocol set operation, the management station should simply select a new pseudo-random number and retry the operation. A MIB designer should choose between the two latter algorithms based on the size of the table (and therefore the efficiency of each algorithm). For tables in which a large number of entries are expected, it is recommended that a MIB object be defined that returns an acceptable index for creation. For tables with small numbers of entries, it is recommended that the latter pseudo-random index mechanism be used. Interaction 2: Creating the Conceptual Row Once an unused instance-identifier has been selected, the management station determines if it wishes to create and activate the conceptual row in one transaction or in a negotiated set of interactions. Interaction 2a: Creating and Activating the Conceptual Row The management station must first determine the column requirements, i.e., it must determine those columns for which it must or must not provide values. Depending on the complexity of the table and the management station's knowledge of the agent's capabilities, this determination can be made locally by the management station. Alternately, the management station issues a management protocol get operation to examine all columns in the conceptual row that it wishes to create. In response, for each column, there are three possible outcomes: - a value is returned, indicating that some other management station has already created this conceptual row. We return to interaction 1. - the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it should supply a value for this column when the conceptual row is to be created. - the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column. Once the column requirements have been determined, a management protocol set operation is accordingly issued. This operation also sets the new instance of the status column to `createAndGo'. When the agent processes the set operation, it verifies that it has sufficient information to make the conceptual row available for use by the managed device. The information available to the agent is provided by two sources: the management protocol set operation which creates the conceptual row, and, implementation-specific defaults supplied by the agent (note that an agent must provide implementation-specific defaults for at least those objects which it implements as read-only). If there is sufficient information available, then the conceptual row is created, a `noError' response is returned, the status column is set to `active', and no further interactions are necessary (i.e., interactions 3 and 4 are skipped). If there is insufficient information, then the conceptual row is not created, and the set operation fails with an error of `inconsistentValue'. On this error, the management station can issue a management protocol retrieval operation to determine if this was because it failed to specify a value for a required column, or, because the selected instance of the status column already existed. In the latter case, we return to interaction 1. In the former case, the management station can re-issue the set operation with the additional information, or begin interaction 2 again using `createAndWait' in order to negotiate creation of the conceptual row. NOTE WELL Regardless of the method used to determine the column requirements, it is possible that the management station might deem a column necessary when, in fact, the agent will not allow that particular columnar instance to be created or written. In this case, the management protocol set operation will fail with an error such as `noCreation' or `notWritable'. In this case, the management station decides whether it needs to be able to set a value for that particular columnar instance. If not, the management station re-issues the management protocol set operation, but without setting a value for that particular columnar instance; otherwise, the management station aborts the row creation algorithm. Interaction 2b: Negotiating the Creation of the Conceptual Row The management station issues a management protocol set operation which sets the desired instance of the status column to `createAndWait'. If the agent is unwilling to process a request of this sort, the set operation fails with an error of `wrongValue'. (As a consequence, such an agent must be prepared to accept a single management protocol set operation, i.e., interaction 2a above, containing all of the columns indicated by its column requirements.) Otherwise, the conceptual row is created, a `noError' response is returned, and the status column is immediately set to either `notInService' or `notReady', depending on whether it has sufficient information to (attempt to) make the conceptual row available for use by the managed device. If there is sufficient information available, then the status column is set to `notInService'; otherwise, if there is insufficient information, then the status column is set to `notReady'. Regardless, we proceed to interaction 3. Interaction 3: Initializing non-defaulted Objects The management station must now determine the column requirements. It issues a management protocol get operation to examine all columns in the created conceptual row. In the response, for each column, there are three possible outcomes: - a value is returned, indicating that the agent implements the object-type associated with this column and had sufficient information to provide a value. For those columns to which the agent provides read-create access (and for which the agent allows their values to be changed after their creation), a value return tells the management station that it may issue additional management protocol set operations, if it desires, in order to change the value associated with this column. - the exception `noSuchInstance' is returned, indicating that the agent implements the object-type associated with this column, and that this column in at least one conceptual row would be accessible in the MIB view used by the retrieval were it to exist. However, the agent does not have sufficient information to provide a value, and until a value is provided, the conceptual row may not be made available for use by the managed device. For those columns to which the agent provides read-create access, the `noSuchInstance' exception tells the management station that it must issue additional management protocol set operations, in order to provide a value associated with this column. - the exception `noSuchObject' is returned, indicating that the agent does not implement the object-type associated with this column or that there is no conceptual row for which this column would be accessible in the MIB view used by the retrieval. As such, the management station can not issue any management protocol set operations to create an instance of this column. If the value associated with the status column is `notReady', then the management station must first deal with all `noSuchInstance' columns, if any. Having done so, the value of the status column becomes `notInService', and we proceed to interaction 4. Interaction 4: Making the Conceptual Row Available Once the management station is satisfied with the values associated with the columns of the conceptual row, it issues a management protocol set operation to set the status column to `active'. If the agent has sufficient information to make the conceptual row available for use by the managed device, the management protocol set operation succeeds (a `noError' response is returned). Otherwise, the management protocol set operation fails with an error of `inconsistentValue'. NOTE WELL A conceptual row having a status column with value `notInService' or `notReady' is unavailable to the managed device. As such, it is possible for the managed device to create its own instances during the time between the management protocol set operation which sets the status column to `createAndWait' and the management protocol set operation which sets the status column to `active'. In this case, when the management protocol set operation is issued to set the status column to `active', the values held in the agent supersede those used by the managed device. If the management station is prevented from setting the status column to `active' (e.g., due to management station or network failure) the conceptual row will be left in the `notInService' or `notReady' state, consuming resources indefinitely. The agent must detect conceptual rows that have been in either state for an abnormally long period of time and remove them. It is the responsibility of the DESCRIPTION clause of the status column to indicate what an abnormally long period of time would be. This period of time should be long enough to allow for human response time (including `think time') between the creation of the conceptual row and the setting of the status to `active'. In the absence of such information in the DESCRIPTION clause, it is suggested that this period be approximately 5 minutes in length. This removal action applies not only to newly-created rows, but also to previously active rows which are set to, and left in, the notInService state for a prolonged period exceeding that which is considered normal for such a conceptual row. Conceptual Row Suspension When a conceptual row is `active', the management station may issue a management protocol set operation which sets the instance of the status column to `notInService'. If the agent is unwilling to do so, the set operation fails with an error of `wrongValue' or `inconsistentValue'. Otherwise, the conceptual row is taken out of service, and a `noError' response is returned. It is the responsibility of the DESCRIPTION clause of the status column to indicate under what circumstances the status column should be taken out of service (e.g., in order for the value of some other column of the same conceptual row to be modified). Conceptual Row Deletion For deletion of conceptual rows, a management protocol set operation is issued which sets the instance of the status column to `destroy'. This request may be made regardless of the current value of the status column (e.g., it is possible to delete conceptual rows which are either `notReady', `notInService' or `active'.) If the operation succeeds, then all instances associated with the conceptual row are immediately removed. · Integer32

The row status for COA entry.

faVisitorTable

1.3.6.1.2.1.44.1.5.3.1

Index: faVisitorIPAddress

A table containing the foreign agent's visitor list. The foreign agent updates this table in response to registration events from mobile nodes.

faVisitorIPAddress

1.3.6.1.2.1.44.1.5.3.1.1.1

IpAddress SIZE (4)

Source IP address of visitor's Registration Request.

faVisitorHomeAddress

1.3.6.1.2.1.44.1.5.3.1.1.2

IpAddress SIZE (4)

Home (IP) address of visiting mobile node.

faVisitorHomeAgentAddress

1.3.6.1.2.1.44.1.5.3.1.1.3

IpAddress SIZE (4)

Home agent IP address for that visiting mobile node.

faVisitorTimeGranted

1.3.6.1.2.1.44.1.5.3.1.1.4

Integer32 · seconds

The lifetime in seconds granted to the mobile node for this registration. Only valid if faVisitorRegIsAccepted is true(1).

faVisitorTimeRemaining

1.3.6.1.2.1.44.1.5.3.1.1.5

Gauge32 · seconds

The number of seconds remaining until the registration is expired. It has the same initial value as faVisitorTimeGranted, and is counted down by the foreign agent.

faVisitorRegFlags

1.3.6.1.2.1.44.1.5.3.1.1.6

RegistrationFlagsThis data type is used to define the registration flags for Mobile IP registration extension: vjCompression -- Request to use VJ compression gre -- Request to use GRE minEnc -- Request to use minimal encapsulation decapsulationByMN -- Decapsulation by mobile node broadcastDatagram -- Request to receive broadcasts simultaneoursBindings -- Request to retain prior binding(s). · BITS

Registration flags sent by mobile node.

faVisitorRegIDLow

1.3.6.1.2.1.44.1.5.3.1.1.7

Integer32

Low 32 bits of Identification used in that registration by the mobile node.

faVisitorRegIDHigh

1.3.6.1.2.1.44.1.5.3.1.1.8

Integer32

High 32 bits of Identification used in that registration by the mobile node.

faVisitorRegIsAccepted

1.3.6.1.2.1.44.1.5.3.1.1.9

TruthValue1 = true2 = falseRepresents a boolean value. · Integer32

Whether the registration has been accepted or not. If it is false(2), this registration is still pending for reply.

haMobilityBindingTable

1.3.6.1.2.1.44.1.6.3.1

Index: haMobilityBindingMN · haMobilityBindingCOA

A table containing the home agent's mobility binding list. The home agent updates this table in response to registration events from mobile nodes.

haMobilityBindingMN

1.3.6.1.2.1.44.1.6.3.1.1.1

IpAddress SIZE (4)

Mobile node's home (IP) address.

haMobilityBindingCOA

1.3.6.1.2.1.44.1.6.3.1.1.2

IpAddress SIZE (4)

Mobile node's care-of-address. One mobile node can have multiple bindings with different care-of-addresses.

haMobilityBindingSourceAddress

1.3.6.1.2.1.44.1.6.3.1.1.3

IpAddress SIZE (4)

IP source address of the Registration Request as received by the home agent. Will be either a mobile node's co-located care-of address or an address of the foreign agent.

haMobilityBindingRegFlags

1.3.6.1.2.1.44.1.6.3.1.1.4

RegistrationFlagsThis data type is used to define the registration flags for Mobile IP registration extension: vjCompression -- Request to use VJ compression gre -- Request to use GRE minEnc -- Request to use minimal encapsulation decapsulationByMN -- Decapsulation by mobile node broadcastDatagram -- Request to receive broadcasts simultaneoursBindings -- Request to retain prior binding(s). · BITS

Registration flags sent by mobile node.

haMobilityBindingRegIDLow

1.3.6.1.2.1.44.1.6.3.1.1.5

Integer32

Low 32 bits of Identification used in that binding by the mobile node.

haMobilityBindingRegIDHigh

1.3.6.1.2.1.44.1.6.3.1.1.6

Integer32

High 32 bits of Identification used in that binding by the mobile node.

haMobilityBindingTimeGranted

1.3.6.1.2.1.44.1.6.3.1.1.7

Integer32 · seconds

The lifetime in seconds granted to the mobile node for this registration.

haMobilityBindingTimeRemaining

1.3.6.1.2.1.44.1.6.3.1.1.8

Gauge32 · seconds

The number of seconds remaining until the registration is expired. It has the same initial value as haMobilityBindingTimeGranted, and is counted down by the home agent.

haCounterTable

1.3.6.1.2.1.44.1.6.3.2

Index: haMobilityBindingMN

A table containing registration statistics for all mobile nodes authorized to use this home agent.

haServiceRequestsAccepted

1.3.6.1.2.1.44.1.6.3.2.1.2

Counter32

Total number of service requests for the mobile node accepted by the home agent (Code 0 + Code 1).

haServiceRequestsDenied

1.3.6.1.2.1.44.1.6.3.2.1.3

Counter32

Total number of service requests for the mobile node denied by the home agent (sum of all registrations denied with Code 128 through Code 159).

haOverallServiceTime

1.3.6.1.2.1.44.1.6.3.2.1.4

Gauge32 · seconds

Overall service time (in seconds) that has accumulated for the mobile node since the home agent last rebooted.

haRecentServiceAcceptedTime

1.3.6.1.2.1.44.1.6.3.2.1.5

TimeStampThe value of the sysUpTime object at which a specific occurrence happened. The specific occurrence must be defined in the description of any object defined using this type. If sysUpTime is reset to zero as a result of a re- initialization of the network management (sub)system, then the values of all TimeStamp objects are also reset. However, after approximately 497 days without a re- initialization, the sysUpTime object will reach 2^^32-1 and then increment around to zero; in this case, existing values of TimeStamp objects do not change. This can lead to ambiguities in the value of TimeStamp objects. · TimeTicks

The time at which the most recent Registration Request was accepted by the home agent for this mobile node.

haRecentServiceDeniedTime

1.3.6.1.2.1.44.1.6.3.2.1.6

TimeStampThe value of the sysUpTime object at which a specific occurrence happened. The specific occurrence must be defined in the description of any object defined using this type. If sysUpTime is reset to zero as a result of a re- initialization of the network management (sub)system, then the values of all TimeStamp objects are also reset. However, after approximately 497 days without a re- initialization, the sysUpTime object will reach 2^^32-1 and then increment around to zero; in this case, existing values of TimeStamp objects do not change. This can lead to ambiguities in the value of TimeStamp objects. · TimeTicks

The time at which the most recent Registration Request was denied by the home agent for this mobile node.

haRecentServiceDeniedCode

1.3.6.1.2.1.44.1.6.3.2.1.7

INTEGER128 = reasonUnspecified129 = admProhibited130 = insufficientResource131 = mnAuthenticationFailure132 = faAuthenticationFailure133 = idMismatch134 = poorlyFormedRequest135 = tooManyBindings136 = unknownHA · Integer32

The Code indicating the reason why the most recent Registration Request for this mobile node was rejected by the home agent.

Trap details

mipAuthFailure

1.3.6.1.2.1.44.2.0.1

The mipAuthFailure indicates that the Mobile IP entity has an authentication failure when it validates the mobile Registration Request or Reply. Implementation of this trap is optional.

mipSecViolatorAddress

1.3.6.1.2.1.44.1.2.3.1.1

IpAddress SIZE (4)

Violator's IP address. The violator is not necessary in the mipSecAssocTable.

mipSecRecentViolationSPI

1.3.6.1.2.1.44.1.2.3.1.3

Integer32

SPI of the most recent security violation for this peer. If the security violation is due to an identification mismatch, then this is the SPI from the Mobile-Home Authentication Extension. If the security violation is due to an invalid authenticator, then this is the SPI from the offending authentication extension. In all other cases, it should be set to zero.

mipSecRecentViolationIDLow

1.3.6.1.2.1.44.1.2.3.1.5

Integer32

Low-order 32 bits of identification used in request or reply of the most recent security violation for this peer.

mipSecRecentViolationIDHigh

1.3.6.1.2.1.44.1.2.3.1.6

Integer32

High-order 32 bits of identification used in request or reply of the most recent security violation for this peer.

mipSecRecentViolationReason

1.3.6.1.2.1.44.1.2.3.1.7

INTEGER1 = noMobilitySecurityAssociation2 = badAuthenticator3 = badIdentifier4 = badSPI5 = missingSecurityExtension6 = other · Integer32

Reason for the most recent security violation for this peer.

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