The indication of whether this entity is acting as an IPv6 router in respect to the forwarding of datagrams received by, but not addressed to, this entity. IPv6 routers forward datagrams. IPv6 hosts do not (except those source-routed via the host).
cIpv6DefaultHopLimit
1.3.6.1.4.1.9.10.86.1.2.2
INTEGER (0..255) · Integer32
The default value inserted into the Hop Limit field of the IPv6 header of datagrams originated at this entity, whenever a Hop Limit value is not supplied by the transport layer protocol.
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 interface on which this prefix is configured.
cIpAddressPfxType
1.3.6.1.4.1.9.10.86.1.1.1.1.2
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
The address type of cIpAddressPfxPfx. Only IPv4 and IPv6 addresses are expected.
cIpAddressPfxPfx
1.3.6.1.4.1.9.10.86.1.1.1.1.3
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..36) · OCTET STRING
The address prefix. Bits after cIpAddressPfxLength must be zero.
cIpAddressPfxLength
1.3.6.1.4.1.9.10.86.1.1.1.1.4
InetAddressPrefixLengthDenotes the length of a generic Internet network address prefix. A value of n corresponds to an IP address mask that has n contiguous 1-bits from the most significant bit (MSB), with all other bits set to 0.
An InetAddressPrefixLength value is always interpreted within the context of an InetAddressType value. Every usage of the InetAddressPrefixLength 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 InetAddressPrefixLength textual convention, if they appear in the same logical row.
InetAddressPrefixLength values larger than the maximum length of an IP address for a specific InetAddressType are treated as the maximum significant value applicable for the InetAddressType. The maximum significant value is 32 for the InetAddressType 'ipv4(1)' and 'ipv4z(3)' and 128 for the InetAddressType 'ipv6(2)' and 'ipv6z(4)'. The maximum significant value for the InetAddressType 'dns(16)' is 0.
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 the Internet network address prefix is unknown or does not apply.
The upper bound of the prefix length has been chosen to be consistent with the maximum size of an InetAddress. (0..2040) · Unsigned32 · hint d
The origin of this prefix. manual(2) indicates a prefix that was manually configured. wellknown(3) indicates a well-known prefix, e.g. 169.254/16 for IPv4 autoconfiguration or fe80::/10 for IPv6 link-local addresses. dhcp(4) indicates a prefix that was assigned by a DHCP server. routeradv(5) indicates a prefix learned from a router advertisement.
cIpAddressPfxOnLinkFlag
1.3.6.1.4.1.9.10.86.1.1.1.1.6
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
This object has the value 'true(1)', if this prefix
can be used for on-link determination and the value
'false(2)' otherwise.
cIpAddressPfxAutonomousFlag
1.3.6.1.4.1.9.10.86.1.1.1.1.7
TruthValue1 = true2 = falseRepresents a boolean value. · Integer32
Autonomous address configuration flag. When true(1), indicates that this prefix can be used for autonomous address configuration (i.e. can be used to form a local interface address). If false(2), it is not used to autoconfigure a local interface address.
cIpAddressPfxAdvPfdLifetime
1.3.6.1.4.1.9.10.86.1.1.1.1.8
Unsigned32 · seconds
The length of time in seconds that this prefix will remain preferred, i.e. time until deprecation. A value of 4,294,967,295 represents infinity.
The address generated from a deprecated prefix should no longer be used as a source address in new communications, but packets received on such an interface are processed as expected.
cIpAddressPfxAdvValidLifetime
1.3.6.1.4.1.9.10.86.1.1.1.1.9
Unsigned32 · seconds
The length of time in seconds that this prefix will remain valid, i.e. time until invalidation. A value of 4,294,967,295 represents infinity.
The address generated from an invalidated prefix should not appear as the destination or source address of a packet.
cIpAddressTable
1.3.6.1.4.1.9.10.86.1.1.2
Index: cIpAddressAddrType · cIpAddressAddr
Inet address table.
cIpAddressAddrType
1.3.6.1.4.1.9.10.86.1.1.2.1.1
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
The address type of cIpAddressAddr.
cIpAddressAddr
1.3.6.1.4.1.9.10.86.1.1.2.1.2
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..36) · OCTET STRING
The IP address to which this entry's addressing information pertains.
cIpAddressIfIndex
1.3.6.1.4.1.9.10.86.1.1.2.1.3
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 index value which uniquely identifies the interface to which this entry is applicable. The interface identified by a particular value of this index is the same interface as identified by the same value of the IF-MIB's ifIndex.
The type of address. broadcast(3) is not a valid value for IPv6 addresses.
cIpAddressPrefix
1.3.6.1.4.1.9.10.86.1.1.2.1.5
RowPointerRepresents a pointer to a conceptual row. The value is the name of the instance of the first accessible columnar object in the conceptual row.
For example, ifIndex.3 would point to the 3rd row in the ifTable (note that if ifIndex were not-accessible, then ifDescr.3 would be used instead). · OBJECT IDENTIFIER
A pointer to the row in the prefix table to which this address belongs. May be { 0 0 } if there is no such row.
The origin of the address. manual(2) indicates that the address was manually configured. wellknown(3) indicates an address constructed from a well-known value, e.g. an IANA-assigned anycast address. dhcp(4) indicates an address that was assigned to this system by a DHCP server. linklayer(5) indicates an address created by IPv6 stateless autoconfiguration. random(6) indicates an address chosen by random, e.g. an IPv4 address within 169.254/16, or an RFC 3041 privacy address.
Address status. The preferred(1) state indicates that this is a valid address that can appear as the destination or source address of a packet. The deprecated(2) state indicates that this is a valid but deprecated address that should no longer be used as a source address in new communications, but packets addressed to such an address are processed as expected. The invalid(3) state indicates that this is not valid address which should not appear as the destination or source address of a packet. The inaccessible(4) state indicates that the address is not accessible because the interface to which this address is assigned is not operational. The tentative(6) state indicates the uniqueness of the address on the link is being verified. The duplicate(7) state indicates the address has been determined to be non-unique on the link and so must not be used.
In the absence of other information, an IPv4 address is always preferred(1).
The IP Address Translation table used for mapping from IP addresses to physical addresses.
The Address Translation tables contain the IP address to 'physical' address equivalences. Some interfaces do not use translation tables for determining address equivalences (e.g., DDN-X.25 has an algorithmic method); if all interfaces are of this type, then the Address Translation table is empty, i.e., has zero entries.
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
A unique value, greater than zero, for each interface. 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.
cInetNetToMediaNetAddressType
1.3.6.1.4.1.9.10.86.1.1.3.1.1
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
The type of cInetNetToMediaNetAddress.
cInetNetToMediaNetAddress
1.3.6.1.4.1.9.10.86.1.1.3.1.2
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..36) · OCTET STRING
The IP Address corresponding to the media-dependent `physical' address.
cInetNetToMediaPhysAddress
1.3.6.1.4.1.9.10.86.1.1.3.1.3
PhysAddressRepresents media- or physical-level addresses. · OCTET STRING · hint 1x:
The media-dependent `physical' address.
cInetNetToMediaLastUpdated
1.3.6.1.4.1.9.10.86.1.1.3.1.4
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
The value of sysUpTime at the time this entry was last updated. If this entry was updated prior to the last re- initialization of the local network management subsystem, then this object contains a zero value.
The type of mapping.
Setting this object to the value invalid(2) has the effect of invalidating the corresponding entry in the cInetNetToMediaTable. That is, it effectively disassociates the interface identified with said entry from the mapping identified with said entry. It is an implementation-specific matter as to whether the agent removes an invalidated entry from the table. Accordingly, management stations must be prepared to receive tabular information from agents that corresponds to entries not currently in use. Proper interpretation of such entries requires examination of the relevant cInetNetToMediaType object.
The 'dynamic(3)' type indicates that the IP address to physical addresses mapping has been dynamically resolved using e.g. IPv4 ARP or the IPv6 Neighbor Discovery protocol.
The 'static(4)' type indicates that the mapping has been statically configured. The 'local(5)' type indicates that the mapping is provided for an entity's own interface address.
The Neighbor Unreachability Detection [3] state for the interface when the address mapping in this entry is used. If Neighbor Unreachability Detection is not in use (e.g. for IPv4), this object is always unknown(6).
cIpv6ScopeIdTable
1.3.6.1.4.1.9.10.86.1.1.4
Index: cIpv6ScopeIdIfIndex
The table used to describe IPv6 unicast and multicast scope zones.
cIpv6ScopeIdIfIndex
1.3.6.1.4.1.9.10.86.1.1.4.1.1
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 interface to which these scopes belong.
cIpv6ScopeIdLinkLocal
1.3.6.1.4.1.9.10.86.1.1.4.1.2
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for the link-local scope on this interface.
cIpv6ScopeIdSubnetLocal
1.3.6.1.4.1.9.10.86.1.1.4.1.3
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for the subnet-local scope on this interface.
cIpv6ScopeIdAdminLocal
1.3.6.1.4.1.9.10.86.1.1.4.1.4
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for the admin-local scope on this interface.
cIpv6ScopeIdSiteLocal
1.3.6.1.4.1.9.10.86.1.1.4.1.5
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for the site-local scope on this interface.
cIpv6ScopeId6
1.3.6.1.4.1.9.10.86.1.1.4.1.6
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope 6 on this interface.
cIpv6ScopeId7
1.3.6.1.4.1.9.10.86.1.1.4.1.7
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope 7 on this interface.
cIpv6ScopeIdOrganizationLocal
1.3.6.1.4.1.9.10.86.1.1.4.1.8
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for the orgainzation-local scope on this interface.
cIpv6ScopeId9
1.3.6.1.4.1.9.10.86.1.1.4.1.9
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope 9 on this interface.
cIpv6ScopeIdA
1.3.6.1.4.1.9.10.86.1.1.4.1.10
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope A on this interface.
cIpv6ScopeIdB
1.3.6.1.4.1.9.10.86.1.1.4.1.11
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope B on this interface.
cIpv6ScopeIdC
1.3.6.1.4.1.9.10.86.1.1.4.1.12
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope C on this interface.
cIpv6ScopeIdD
1.3.6.1.4.1.9.10.86.1.1.4.1.13
ScopeIdA Scope Identifier identifies an instance of a specific scope.
The scope identifier MUST disambiguate identical address values. For link-local addresses, the scope identifier will typically be the interface index (ifIndex as defined in the IF-MIB) of the interface on which the address is configured.
The scope identifier may contain the special value 0 which refers to the default scope. The default scope may be used in cases where the valid scope identifier is not known (e.g., a management application needs to write a site-local InetAddressIPv6 address without knowing the site identifier value). The default scope SHOULD NOT be used as an easy way out in cases where the scope identifier for a non-global IPv6 address is known. · Unsigned32
The Scope Identifier for scope D on this interface.
cIpv6InterfaceTable
1.3.6.1.4.1.9.10.86.1.2.3
Index: cIpv6InterfaceIfIndex
The table containing per-interface IPv6-specific information.
cIpv6InterfaceIfIndex
1.3.6.1.4.1.9.10.86.1.2.3.1.1
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 interface for which this row contains IPv6-specific information.
cIpv6InterfaceEffectiveMtu
1.3.6.1.4.1.9.10.86.1.2.3.1.2
Unsigned32 · octets
The size of the largest IPv6 packet which can be sent/received on the interface, specified in octets.
cIpv6InterfaceReasmMaxSize
1.3.6.1.4.1.9.10.86.1.2.3.1.3
Unsigned32 (0..65535) · octets
The size of the largest IPv6 datagram which this entity can re-assemble from incoming IPv6 fragmented datagrams received on this interface.
cIpv6InterfaceIdentifier
1.3.6.1.4.1.9.10.86.1.2.3.1.4
Ipv6AddrIfIdentifierThis data type is used to model IPv6 address interface identifiers. This is a binary string of up to 8 octets in network byte-order. SIZE (0..8) · OCTET STRING · hint 2x:
The Interface Identifier for this interface that is (at least) unique on the link this interface is attached to. The Interface Identifier is combined with an address prefix to form an interface address.
By default, the Interface Identifier is autoconfigured according to the rules of the link type this interface is attached to.
cIpv6InterfaceIdentifierLength
1.3.6.1.4.1.9.10.86.1.2.3.1.5
INTEGER (0..64) · Integer32 · bits
The length of the Interface Identifier in bits.
cIpv6InterfacePhysicalAddress
1.3.6.1.4.1.9.10.86.1.2.3.1.6
PhysAddressRepresents media- or physical-level addresses. · OCTET STRING · hint 1x:
The interface's physical address. For example, for an IPv6 interface attached to an 802.x link, this object normally contains a MAC address. Note that in some cases this address may differ from the address of the interface's protocol sub-layer. The interface's media-specific MIB must define the bit and byte ordering and the format of the value of this object. For interfaces which do not have such an address (e.g., a serial line), this object should contain an octet string of zero length.
cInetIcmpTable
1.3.6.1.4.1.9.10.86.1.3.1
Index: cInetIcmpAFType · cInetIcmpIfIndex
The table of generic ICMP counters. These counters may be kept per-interface and/or system-wide.
cInetIcmpAFType
1.3.6.1.4.1.9.10.86.1.3.1.1.1
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
The IP address family of the statistics.
cInetIcmpIfIndex
1.3.6.1.4.1.9.10.86.1.3.1.1.2
InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d
The ifindex of the interface, or zero for system-wide stats.
cInetIcmpInMsgs
1.3.6.1.4.1.9.10.86.1.3.1.1.3
Counter32
The total number of ICMP messages which the entity received. Note that this counter includes all those counted by cInetIcmpInErrors.
cInetIcmpInErrors
1.3.6.1.4.1.9.10.86.1.3.1.1.4
Counter32
The number of ICMP messages which the entity received but determined as having ICMP-specific errors (bad ICMP checksums, bad length, etc.).
cInetIcmpOutMsgs
1.3.6.1.4.1.9.10.86.1.3.1.1.5
Counter32
The total number of ICMP messages which the entity received. Note that this counter includes all those counted by inetIcmpOutErrors.
cInetIcmpOutErrors
1.3.6.1.4.1.9.10.86.1.3.1.1.6
Counter32
The number of ICMP messages which this entity did not send due to problems discovered within ICMP such as a lack of buffers. This value should not include errors
discovered outside the ICMP layer such as the inability
of IP to route the resultant datagram. In some implementations there may be no types of error which contribute to this counter's value.
The table of per-message ICMP counters. These counters may be kept per-interface and/or system-wide.
cInetIcmpMsgAFType
1.3.6.1.4.1.9.10.86.1.3.2.1.1
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
The IP address family of the statistics.
cInetIcmpMsgIfIndex
1.3.6.1.4.1.9.10.86.1.3.2.1.2
InterfaceIndexOrZeroThis textual convention is an extension of the InterfaceIndex convention. The latter defines a greater than zero value used to identify an interface or interface sub-layer in the managed system. This extension permits the additional value of zero. the value zero is object-specific and must therefore be defined as part of the description of any object which uses this syntax. Examples of the usage of zero might include situations where interface was unknown, or when none or all interfaces need to be referenced. (0..2147483647) · Integer32 · hint d
The ifindex of the interface, or zero for system-wide stats.
cInetIcmpMsgType
1.3.6.1.4.1.9.10.86.1.3.2.1.3
Integer32 (0..255)
The ICMP type field of the message type being counted by this row.
cInetIcmpMsgCode
1.3.6.1.4.1.9.10.86.1.3.2.1.4
Integer32 (0..256)
The ICMP code field of the message type being counted by this row, or the special value 256 if no specific ICMP code is counted by this row.
cInetIcmpMsgInPkts
1.3.6.1.4.1.9.10.86.1.3.2.1.5
Counter32
The number of input packets for this AF, ifindex, type, code.
cInetIcmpMsgOutPkts
1.3.6.1.4.1.9.10.86.1.3.2.1.6
Counter32
The number of output packets for this AF, ifindex, type, code.