cVpcPeerKeepAliveConfigDomainID
1.3.6.1.4.1.9.9.807.1.1.1.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain on the local system. Value zero indicates no VPC management domain has been configured for this device.
2013-05-09
This MIB module defines MIB objects which provide management information for configuring and monitoring of Virtual Port Channel(VPC) on Cisco devices. The following terms are used throughout this MIB: ISSU: In Service Software Upgrade ToS: Type of Service UDP: User Datagram Protocol VPC: Virtual Port Channel VRF: Virtual Routing and Forwarding
Download CISCO-VPC-MIB.txt Open CISCO-VPC-MIB.txt in a new tab
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1.3.6.1.4.1.9.9.807.1.1.1
Index: cVpcPeerKeepAliveConfigDomainID
The table contains the VPC peer-keepalive link and message configuration information in the managed device.
1.3.6.1.4.1.9.9.807.1.1.1.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain on the local system. Value zero indicates no VPC management domain has been configured for this device.
1.3.6.1.4.1.9.9.807.1.1.1.1.2
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address. unknown(0) An unknown address type. This value MUST be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below. ipv4(1) An IPv4 address as defined by the InetAddressIPv4 textual convention. ipv6(2) An IPv6 address as defined by the InetAddressIPv6 textual convention. ipv4z(3) A non-global IPv4 address including a zone index as defined by the InetAddressIPv4z textual convention. ipv6z(4) A non-global IPv6 address including a zone index as defined by the InetAddressIPv6z textual convention. dns(16) A DNS domain name as defined by the InetAddressDNS textual convention. Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType. To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation. Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object specifies type of Internet address of destination address for peer device.
1.3.6.1.4.1.9.9.807.1.1.1.1.3
InetAddressDenotes a generic Internet address. An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row. The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error. When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
This object specifies destination ip address of peer device. The type of this address is determined by the cVpcPeerKeepAliveDestAddrType object.
1.3.6.1.4.1.9.9.807.1.1.1.1.4
InetAddressType0 = unknown1 = ipv42 = ipv63 = ipv4z4 = ipv6z16 = dnsA value that represents a type of Internet address. unknown(0) An unknown address type. This value MUST be used if the value of the corresponding InetAddress object is a zero-length string. It may also be used to indicate an IP address that is not in one of the formats defined below. ipv4(1) An IPv4 address as defined by the InetAddressIPv4 textual convention. ipv6(2) An IPv6 address as defined by the InetAddressIPv6 textual convention. ipv4z(3) A non-global IPv4 address including a zone index as defined by the InetAddressIPv4z textual convention. ipv6z(4) A non-global IPv6 address including a zone index as defined by the InetAddressIPv6z textual convention. dns(16) A DNS domain name as defined by the InetAddressDNS textual convention. Each definition of a concrete InetAddressType value must be accompanied by a definition of a textual convention for use with that InetAddressType. To support future extensions, the InetAddressType textual convention SHOULD NOT be sub-typed in object type definitions. It MAY be sub-typed in compliance statements in order to require only a subset of these address types for a compliant implementation. Implementations must ensure that InetAddressType objects and any dependent objects (e.g., InetAddress objects) are consistent. An inconsistentValue error must be generated if an attempt to change an InetAddressType object would, for example, lead to an undefined InetAddress value. In particular, InetAddressType/InetAddress pairs must be changed together if the address type changes (e.g., from ipv6(2) to ipv4(1)). · Integer32
This object specifies type of Internet address of source address used for peer-keepalive hello messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.5
InetAddressDenotes a generic Internet address. An InetAddress value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddress textual convention is required to specify the InetAddressType object that provides the context. It is suggested that the InetAddressType object be logically registered before the object(s) that use the InetAddress textual convention, if they appear in the same logical row. The value of an InetAddress object must always be consistent with the value of the associated InetAddressType object. Attempts to set an InetAddress object to a value inconsistent with the associated InetAddressType must fail with an inconsistentValue error. When this textual convention is used as the syntax of an index object, there may be issues with the limit of 128 sub-identifiers specified in SMIv2, STD 58. In this case, the object definition MUST include a 'SIZE' clause to limit the number of potential instance sub-identifiers; otherwise the applicable constraints MUST be stated in the appropriate conceptual row DESCRIPTION clauses, or in the surrounding documentation if there is no single DESCRIPTION clause that is appropriate. SIZE (0..255) · OCTET STRING
This object specifies source address used in this peer-keepalive hello messages. The type of this address is determined by the cVpcPeerKeepAliveSourceAddrType object.
1.3.6.1.4.1.9.9.807.1.1.1.1.6
InetPortNumberRepresents a 16 bit port number of an Internet transport layer protocol. Port numbers are assigned by IANA. A current list of all assignments is available from <http://www.iana.org/>. The value zero is object-specific and must be defined as part of the description of any object that uses this syntax. Examples of the usage of zero might include situations where a port number is unknown, or when the value zero is used as a wildcard in a filter.Reference: STD 6 (RFC 768), STD 7 (RFC 793) and RFC 2960 (0..65535) · Unsigned32 · hint d
This object specifies UDP Port number used for peer-keepalive hello messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.7
Unsigned32 · milli-seconds
This object specifies the interval of peer-keepalive hello messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.8
Unsigned32 · seconds
This object specifies the timeout of peer-keepalive hello messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.9
Unsigned32 · seconds
This object specifies hold timeout to ignore stale peer alive messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.10
Unsigned32 (0..15)
This object specifies the ToS value used for peer-keepalive hello messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.11
Unsigned32 (0..7)
This object specifies the Precedence value used for peer-keepalive hello messages.
1.3.6.1.4.1.9.9.807.1.1.1.1.12
Unsigned32 (0..255)
This object specifies the ToS-Byte value used for peer-keepalive messages. Only low eight-bit byte of this double word is used. Bit 0 is reserved. Bits 1 to 5 represent the value of cVpcPeerKeepAliveTos. Bits 6 to 8 come into cVpcPeerKeepAlivePrecedence. ToS-Byte indicates the value of the whole byte including ToS, Precedence and reserved bit 0.
1.3.6.1.4.1.9.9.807.1.1.1.1.13
SnmpAdminStringAn octet string containing administrative information, preferably in human-readable form. To facilitate internationalization, this information is represented using the ISO/IEC IS 10646-1 character set, encoded as an octet string using the UTF-8 transformation format described in [RFC2279]. Since additional code points are added by amendments to the 10646 standard from time to time, implementations must be prepared to encounter any code point from 0x00000000 to 0x7fffffff. Byte sequences that do not correspond to the valid UTF-8 encoding of a code point or are outside this range are prohibited. The use of control codes should be avoided. When it is necessary to represent a newline, the control code sequence CR LF should be used. The use of leading or trailing white space should be avoided. For code points not directly supported by user interface hardware or software, an alternative means of entry and display, such as hexadecimal, may be provided. For information encoded in 7-bit US-ASCII, the UTF-8 encoding is identical to the US-ASCII encoding. UTF-8 may require multiple bytes to represent a single character / code point; thus the length of this object in octets may be different from the number of characters encoded. Similarly, size constraints refer to the number of encoded octets, not the number of characters represented by an encoding. Note that when this TC is used for an object that is used or envisioned to be used as an index, then a SIZE restriction MUST be specified so that the number of sub-identifiers for any object instance does not exceed the limit of 128, as defined by [RFC3416]. Note that the size of an SnmpAdminString object is measured in octets, not characters. SIZE (0..255) · OCTET STRING · hint 255t
This object specifies the VRF name to be used for peer-keepalive messages routing.
1.3.6.1.4.1.9.9.807.1.1.2
Index: cVpcPeerKeepAliveDomainID
The table contains the VPC peer-keepalive link status information in the managed device.
1.3.6.1.4.1.9.9.807.1.1.2.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain on the local system. Value zero indicates there is no VPC management domain being configured for this device.
1.3.6.1.4.1.9.9.807.1.1.2.1.2
INTEGER1 = disabled2 = alive3 = peerUnreachable4 = aliveButDomainIdDismatch5 = suspendedAsISSU6 = suspendedAsDestIPUnreachable7 = suspendedAsVRFUnusable8 = misconfigured · Integer32
This object indicates VPC peer keep-alive status. disabled(1) : Peer-keepalive is disabled. alive(2) : Peer-keepalive is alive. peerUnreachable(3) : Peer is unreachable through Peer-keepalive link. aliveButDomainIdDismatch(4) : Peer-keepalive is alive, but VPC domain doesn't match with each other. suspendedAsISSU(5) : Peer-keepalive is suspended during ISSU. suspendedAsDestIPUnreachable(6) : Peer-keepalive is suspended since destination ip is unreachable. suspendedAsVRFUnusable(7) : Peer-keepalive is suspended since the current VRF is unusable. misconfigured(8) : Misconfigure Peer-keepalive feature.
1.3.6.1.4.1.9.9.807.1.1.2.1.3
CounterBasedGauge64The CounterBasedGauge64 type represents a non-negative integer, which may increase or decrease, but shall never exceed a maximum value, nor fall below a minimum value. The maximum value can not be greater than 2^64-1 (18446744073709551615 decimal), and the minimum value can not be smaller than 0. The value of a CounterBasedGauge64 has its maximum value whenever the information being modeled is greater than or equal to its maximum value, and has its minimum value whenever the information being modeled is smaller than or equal to its minimum value. If the information being modeled subsequently decreases below (increases above) the maximum (minimum) value, the CounterBasedGauge64 also decreases (increases). Note that this TC is not strictly supported in SMIv2, because the 'always increasing' and 'counter wrap' semantics associated with the Counter64 base type are not preserved. It is possible that management applications which rely solely upon the (Counter64) ASN.1 tag to determine object semantics will mistakenly operate upon objects of this type as they would for Counter64 objects. This textual convention represents a limited and short-term solution, and may be deprecated as a long term solution is defined and deployed to replace it. (0..18446744073709551615) · Counter64 · milli-seconds
This object indicates the time (in msec) since the peer became alive. It will hold value 0 if peer-keepalive never becomes alive.
1.3.6.1.4.1.9.9.807.1.1.2.1.4
INTEGER1 = success2 = failure · Integer32
This object indicates VPC peer keep-alive message sending status.
1.3.6.1.4.1.9.9.807.1.1.2.1.5
DateAndTimeA date-time specification. field octets contents range ----- ------ -------- ----- 1 1-2 year* 0..65536 2 3 month 1..12 3 4 day 1..31 4 5 hour 0..23 5 6 minutes 0..59 6 7 seconds 0..60 (use 60 for leap-second) 7 8 deci-seconds 0..9 8 9 direction from UTC '+' / '-' 9 10 hours from UTC* 0..13 10 11 minutes from UTC 0..59 * Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13 For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as: 1992-5-26,13:30:15.0,-4:0 Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
This object indicates date and time of VPC peer keep-alive message last send. This object contains value 0x0000010100000000, if peer-keepalive message has never been sent.
1.3.6.1.4.1.9.9.807.1.1.2.1.6
InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d
This object indicates the ifIndex of interface of VPC peer keep-alive message sent on.
1.3.6.1.4.1.9.9.807.1.1.2.1.7
INTEGER1 = success2 = failure · Integer32
This object indicates VPC peer keep-alive message receiving status.
1.3.6.1.4.1.9.9.807.1.1.2.1.8
DateAndTimeA date-time specification. field octets contents range ----- ------ -------- ----- 1 1-2 year* 0..65536 2 3 month 1..12 3 4 day 1..31 4 5 hour 0..23 5 6 minutes 0..59 6 7 seconds 0..60 (use 60 for leap-second) 7 8 deci-seconds 0..9 8 9 direction from UTC '+' / '-' 9 10 hours from UTC* 0..13 10 11 minutes from UTC 0..59 * Notes: - the value of year is in network-byte order - daylight saving time in New Zealand is +13 For example, Tuesday May 26, 1992 at 1:30:15 PM EDT would be displayed as: 1992-5-26,13:30:15.0,-4:0 Note that if only local time is known, then timezone information (fields 8-10) is not present. SIZE (8 | 11) · OCTET STRING · hint 2d-1d-1d,1d:1d:1d.1d,1a1d:1d
This object indicates date and time of VPC peer keep-alive message last received. This object contains value 0x0000010100000000, if peer-keepalive message has never been received.
1.3.6.1.4.1.9.9.807.1.1.2.1.9
InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d
This object indicates the ifIndex of interface of VPC peer keep-alive message last received.
1.3.6.1.4.1.9.9.807.1.2.1
Index: cVpcRoleDomainID
The table contains the VPC role status information in the managed device.
1.3.6.1.4.1.9.9.807.1.2.1.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain on the local system. Value zero indicates there is no VPC management domain being configured for this device.
1.3.6.1.4.1.9.9.807.1.2.1.1.2
INTEGER1 = primarySecondary2 = primary3 = secondaryPrimary4 = secondary5 = noneEstablished · Integer32
This object indicates the VPC role status of the peer device. primarySecondary(1) : primary, and operational secondary. primary(2) : primary, and operational primary. secondaryPrimary(3) : secondary, and operational primary. secondary(4) : secondary, and operational secondary. noneEstabished(5) : none peer device.
1.3.6.1.4.1.9.9.807.1.2.1.1.3
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object indicates the dual active detection status of peer device. true(1) : indicate that Dual Active is detected. false(2) : indicate that Dual Active is not detected.
1.3.6.1.4.1.9.9.807.1.2.1.1.4
MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:
This object specifies VPC system MAC address.
1.3.6.1.4.1.9.9.807.1.2.1.1.5
MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:
This object indicates VPC system operational MAC address.
1.3.6.1.4.1.9.9.807.1.2.1.1.6
MacAddressRepresents an 802 MAC address represented in the `canonical' order defined by IEEE 802.1a, i.e., as if it were transmitted least significant bit first, even though 802.5 (in contrast to other 802.x protocols) requires MAC addresses to be transmitted most significant bit first. SIZE (6) · OCTET STRING · hint 1x:
This object indicates VPC local system operational MAC address.
1.3.6.1.4.1.9.9.807.1.2.1.1.7
Unsigned32
This object specifies VPC system priority.
1.3.6.1.4.1.9.9.807.1.2.1.1.8
Unsigned32
This object indicates VPC system operational priority.
1.3.6.1.4.1.9.9.807.1.2.1.1.9
Unsigned32
This object specifies VPC local role priority.
1.3.6.1.4.1.9.9.807.1.2.1.1.10
Unsigned32
This object indicates VPC local role operational priority.
1.3.6.1.4.1.9.9.807.1.3.1
Index: cVpcStatsPeerKeepAliveDomainID
The table contains the statistics of VPC peer-keepalive messages in the managed device.
1.3.6.1.4.1.9.9.807.1.3.1.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain on the local system. Value zero indicates there is no VPC management domain being configured for this device.
1.3.6.1.4.1.9.9.807.1.3.1.1.2
Counter32
This object indicates the number of peer-keepalive messages sent to peer.
1.3.6.1.4.1.9.9.807.1.3.1.1.3
Counter32
This object indicates the number of peer-keepalive messages received from peer.
1.3.6.1.4.1.9.9.807.1.3.1.1.4
Unsigned32 · seconds
This object indicates the average interval for the peer-keepalive messages received from peer.
1.3.6.1.4.1.9.9.807.1.3.1.1.5
Counter32
This object indicates the number of times that the peer status gets changed.
1.3.6.1.4.1.9.9.807.1.4.1
Index: cVpcStatusPeerLinkDomainID
The table contains the list of VPC peer-links in the managed device.
1.3.6.1.4.1.9.9.807.1.4.1.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain.
1.3.6.1.4.1.9.9.807.1.4.1.1.2
InterfaceIndexA unique value, greater than zero, for each interface or interface sub-layer in the managed system. It is recommended that values are assigned contiguously starting from 1. The value for each interface sub-layer must remain constant at least from one re-initialization of the entity's network management system to the next re-initialization. (1..2147483647) · Integer32 · hint d
The value of the ifIndex corresponding to the peer link of this VPC domain.
1.3.6.1.4.1.9.9.807.1.4.2
Index: cVpcStatusHostLinkDomainID · cVpcStatusHostLinkVpcID
The table contains the VPC host-link summary information in the managed device.
1.3.6.1.4.1.9.9.807.1.4.2.1.1
Unsigned32
An arbitrary value to uniquely identify the VPC management domain.
1.3.6.1.4.1.9.9.807.1.4.2.1.2
Unsigned32
An arbitrary value to uniquely identify a VPC link between the host and the switch for a given VPC management domain.
1.3.6.1.4.1.9.9.807.1.4.2.1.3
InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d
The value of the ifIndex corresponding to a host-link interface.
1.3.6.1.4.1.9.9.807.1.4.2.1.4
INTEGER1 = down2 = downStar3 = up · Integer32
This object indicates the current status of VPC host-link. down(1) : Host link is down. downStar(2) : Local host link is down, forwarding via vPC peer-link. up(3) : Host link is up.
1.3.6.1.4.1.9.9.807.1.4.2.1.5
INTEGER1 = success2 = failed3 = notApplicable · Integer32
This object indicates the status of configuration consistency check of this VPC host link.
1.3.6.1.4.1.9.9.807.1.4.2.1.6
SnmpAdminStringAn octet string containing administrative information, preferably in human-readable form. To facilitate internationalization, this information is represented using the ISO/IEC IS 10646-1 character set, encoded as an octet string using the UTF-8 transformation format described in [RFC2279]. Since additional code points are added by amendments to the 10646 standard from time to time, implementations must be prepared to encounter any code point from 0x00000000 to 0x7fffffff. Byte sequences that do not correspond to the valid UTF-8 encoding of a code point or are outside this range are prohibited. The use of control codes should be avoided. When it is necessary to represent a newline, the control code sequence CR LF should be used. The use of leading or trailing white space should be avoided. For code points not directly supported by user interface hardware or software, an alternative means of entry and display, such as hexadecimal, may be provided. For information encoded in 7-bit US-ASCII, the UTF-8 encoding is identical to the US-ASCII encoding. UTF-8 may require multiple bytes to represent a single character / code point; thus the length of this object in octets may be different from the number of characters encoded. Similarly, size constraints refer to the number of encoded octets, not the number of characters represented by an encoding. Note that when this TC is used for an object that is used or envisioned to be used as an index, then a SIZE restriction MUST be specified so that the number of sub-identifiers for any object instance does not exceed the limit of 128, as defined by [RFC3416]. Note that the size of an SnmpAdminString object is measured in octets, not characters. SIZE (0..255) · OCTET STRING · hint 255t
This object indicates the reason of consistency check status change detail.