HPN-ICF-RRPP-MIB
The RRPP (Rapid Ring Protection protocol) provides fast protection switching to layer 2 switches interconnected in an Ethernet ring topology. When a link in the ring breaks, the RRPP can recover the data path quickly. Its protection switching is similar to what can be achieved with the Spanning Tree Protocol (STP), but the converging time is less than a second after link failure. This MIB defines management information used on products which support RRPP.
Main OID:
hpnicfRrpp.1.3.6.1.4.1.11.2.14.11.15.2.45
54
Objects
Active
Status
3
Dependencies
Imported Objects
Objects
54 total| Object Name |
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hpnicfRrppThe RRPP (Rapid Ring Protection protocol) provides fast protection switching to layer 2 switches interconnected in an Ethernet ring topology. When a link in the ring breaks, the RRPP can recover the data path quickly. Its protection switching is similar to what can be achieved with the Spanning Tree Protocol (STP), but the converging time is less than a second after link failure. This MIB defines management information used on products which support RRPP. MODULE-IDENTITY .1.3.6.1.4.1.11.2.14.11.15.2.45 |
hpnicfRrppScalarGroup OBJECT IDENTIFIER .1.3.6.1.4.1.11.2.14.11.15.2.45.1 |
hpnicfRrppEnableStatusIndicating whether the RRPP is enabled on this switch.rw EnabledStatus .1.3.6.1.4.1.11.2.14.11.15.2.45.1.1 |
hpnicfRrppPasswordPassword configured for RRPP nodes to identify the validity of a link-down message. This value must be set together with hpnicfRrppPasswordType which indicates whether this value can be got. This value can not be set alone without configuring hpnicfRrppPasswordType.rw OCTET STRING .1.3.6.1.4.1.11.2.14.11.15.2.45.1.2 |
hpnicfRrppPasswordTypeIndicating whether the hpnicfRrppPassword can be got. simple(1):hpnicfRrppPassword can be got. cipher(2):hpnicfRrppPassword can not be got. This value can not be set alone without configuring hpnicfRrppPassword.rw Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.1.3 |
hpnicfRrppProtectVlanConfigModeIndicating the mode in which the protected VLANs of an RRPP domain are configured. The value 'vlan' indicates that hpnicfRrppDomainProtectVlanListLow and hpnicfRrppDomainProtectVlanListHigh can be used for setting protected VLANs, while hpnicfRrppDomainInstanceListLow and hpnicfRrppDomainInstanceListHigh cannot. By contraries, the value 'instance' indicates that 3cRrppDomainInstanceListLow and hpnicfRrppDomainInstanceListHigh can be used for setting protected VLANs while the other two cannot.ro Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.1.4 |
hpnicfRrppTable OBJECT IDENTIFIER .1.3.6.1.4.1.11.2.14.11.15.2.45.2 |
hpnicfRrppDomainTableA table containing information about configurations and status of a RRPP domain. SEQUENCE OF HpnicfRrppDomainEntry .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1 |
hpnicfRrppDomainEntryDetailed information of a specified RRPP domain. HpnicfRrppDomainEntry .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1 |
hpnicfRrppDomainIDAn index uniquely identifies a RRPP domain, which ranges from 1~16. This value can't be modified after created.ro Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.1 |
hpnicfRrppDomainControlVlanIDIndex of the control VLAN specified to a domain. The value 65535 indicates the control VLAN has not been configured. The VLAN assigned to a RRPP Domain must not have been created. This value can't be modified after created.rw Integer32(2..4094|65535) .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.2 |
hpnicfRrppDomainHelloTimeThe value indicates the interval between two hello packets sent by master-node, and its unit is second. The value ranges from 1s~10s.rw Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.3 |
hpnicfRrppDomainFailTimeThe expiration value of the fail-period timer and its unit is second. If not receiving hello packets before this expires, the master-node considers the ring is broken. The value of this node ranging from 3s~30s must not be less than triple hpnicfRrppDomainHelloTime's value.rw Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.4 |
hpnicfRrppDomainRowStatusThis object is responsible for managing the creation, deletion and modification of rows, which support active status and CreatAndGo, destroy operation.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.5 |
hpnicfRrppDomainInstanceListLowEach octet contained in this value specifies an eight-instance group, with the first octet specifying instances 0 through 7, the second octet specifying instances 8 through 15, and so on. Within each octet, the most significant bit represents the highest numbered instance, and the least significant bit represents the lowest numbered instance. Thus, each instance to which the protected VLANs of an RRPP domain are mapped corresponds to a bit within the value of this object. A bit with a value of '1' indicates that the VLANs mapped to the instance are protected VLANs of the RRPP domain. By contraries, the VLANs mapped to the instance are not protected VLANs if the corresponding bit has a value of '0'. The value of this object must be set with hpnicfRrppDomainInstanceListHigh at the same time when a SET operation is performed. This object is valid only when the value of hpnicfRrppProtectVlanConfigMode is 'instance'. If this object is invalid, it does not respond to SET operation, and it returns all '0' bits in response to GET operation.rw OCTET STRING .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.6 |
hpnicfRrppDomainInstanceListHighEach octet contained in this value specifies an eight-instance group, with the first octet specifying instances 2048 through 2055, the second octet specifying instances 2056 through 2063, and so on. Within each octet, the most significant bit represents the highest numbered instance, and the least significant bit represents the lowest numbered instance. The most significant bit of the last octet is invalid. Thus, each instance to which the protected VLANs of an RRPP domain are mapped corresponds to a bit within the value of this object. A bit with a value of '1' indicates that the VLANs mapped to the instance are protected VLANs of the RRPP domain. By contraries, the VLANs mapped to the instance are not protected VLANs if the corresponding bit has a value of '0'. The value of this object must be set with hpnicfRrppDomainInstanceListLow at the same time when a SET operation is performed. This object is valid only when the value of hpnicfRrppProtectVlanConfigMode is 'instance'. If this object is invalid, it does not respond to SET operation, and it returns all '0' bits in response to GET operation.rw OCTET STRING .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.7 |
hpnicfRrppDomainProtectVlanListLowEach octet contained in this value specifies an eight-VLAN group, with the first octet specifying VLANs 1 through 7, the second octet specifying VLANs 8 through 15, and so on. Within each octet, the most significant bit represents the highest numbered VLAN, and the least significant bit represents the lowest numbered VLAN. The least significant bit of the first octet is invalid. Thus, each protected VLAN of an RRPP domain corresponds to a bit within the value of this object. A bit with a value of '1' indicates that the corresponding VLAN is a protected VLAN of the RRPP domain. By contraries, the VLAN is not a protected VLAN if the corresponding bit has a value of '0'. The value of this object must be set with hpnicfRrppDomainProtectVlanListHigh at the same time when a SET operation is performed. This object is valid only when the value of hpnicfRrppProtectVlanConfigMode is 'vlan'. If this object is invalid, it does not respond to SET operation, and it returns all '0' bits in response to GET operation.rw OCTET STRING .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.8 |
hpnicfRrppDomainProtectVlanListHighEach octet contained in this value specifies an eight-VLAN group, with the first octet specifying VLANs 2048 through 2055, the second octet specifying VLANs 2056 through 2063, and so on. Within each octet, the most significant bit represents the highest numbered VLAN, and the least significant bit represents the lowest numbered VLAN. The most significant bit of the last octet is invalid. Thus, each protected VLAN of an RRPP domain corresponds to a bit within the value of this object. A bit with a value of '1' indicates that the corresponding VLAN is a protected VLAN of the RRPP domain. By contraries, the VLAN is not a protected VLAN if the corresponding bit has a value of '0'. The value of this object must be set with hpnicfRrppDomainProtectVlanListLow at the same time when a SET operation is performed. This object is valid only when the value of hpnicfRrppProtectVlanConfigMode is 'vlan'. If this object is invalid, it does not respond to SET operation, and it returns all '0' bits in response to GET operation.rw OCTET STRING .1.3.6.1.4.1.11.2.14.11.15.2.45.2.1.1.9 |
hpnicfRrppRingTableA table containing information about configurations and status of a RRPP Ring. SEQUENCE OF HpnicfRrppRingEntry .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2 |
hpnicfRrppRingEntryDetailed information of a specified RRPP Ring. HpnicfRrppRingEntry .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1 |
hpnicfRrppRingIDAn index uniquely identifies a RRPP Ring, which ranges from 1~64. This value can't be modified after created.ro Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.1 |
hpnicfRrppRingEnableStatusIndicating whether the RRPP is enabled on this Ring. NOTE: If major-ring and sub-ring(s) of a domain coexist on a switch, major-ring must be enabled before sub-ring is enabled. And sub-ring must be disabled before major-ring is disabled.rw EnabledStatus .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.2 |
hpnicfRrppRingActiveAs both hpnicfRrppEnableStatus and hpnicfRrppRingEnableStatus are enabled, the ring is activated. Whereas either of the two items is disabled, the ring is inactive.ro Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.3 |
hpnicfRrppRingStateThe status (i.e. unknown, health or fault) of the Ethernet ring. This is valid only on the master-node.ro Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.4 |
hpnicfRrppRingNodeModeThere are four RRPP node modes for the switch on a RRPP ring, such as master, transit, edge and assistant-edge. Each RRPP ring has a single designated master-node. All other nodes except edge-node and assistant-edge-node on that ring are referred to as transit-nodes. The node mode of edge and assistant-edge should be configured only on sub-ring. When there is a common link between a sub-ring and its major-ring, the node mode of the sub-ring must be edge or assistant-edge, and they must be configured in pairs. If node mode is designated as edge or assistant-edge, several points should be noticed: Major-ring must be created before a sub-ring is created; Major-ring can't be deleted unless all its sub-rings are deleted; The node mode of the switch on major-ring must be transit; Major-ring and sub-ring must have only a common port. This value can't be modified after created.rw Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.5 |
hpnicfRrppRingPrimaryPortIf the switch is a master-node or transit-node, this value is the primary port ifIndex; otherwise, if the switch is a edge-node or assistant-edge-node, this value is the common port ifIndex. This value can't be modified after created.rw Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.6 |
hpnicfRrppRingSecondaryPortIf the switch is a master-node or transit-node, this value is the secondary port ifIndex; otherwise, if the switch is an edge-node or assistant-edge-node, this value is the edge port ifIndex. This value can't be modified after created.rw Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.7 |
hpnicfRrppRingLevelLevel of a ring. This field should be set 1 on major-ring and 2 on the sub-ring. This value can't be modified after created.rw Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.8 |
hpnicfRrppRingRowStatusThis object is responsible for managing the creation, deletion and modification of rows, which support active status and CreatAndGo, destroy operation. To create a new row, hpnicfRrppRingNodeMode, hpnicfRrppRingPrimaryPort, hpnicfRrppRingSecondaryPort and hpnicfRrppRingLevel must be specified.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.11.2.14.11.15.2.45.2.2.1.9 |
hpnicfRrppPortTableA table containing information about configurations and status of a RRPP port. SEQUENCE OF HpnicfRrppPortEntry .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3 |
hpnicfRrppPortEntryDetailed information of a specified RRPP port. HpnicfRrppPortEntry .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1 |
hpnicfRrppPortIDifIndex of the port. Integer32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.1 |
hpnicfRrppPortRoleThe RRPP role of the port. (i.e. primary, secondary, common or edge port).ro Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.2 |
hpnicfRrppPortStateState of RRPP port, including unknown, unblocked, blocked and down.ro Enumeration .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.3 |
hpnicfRrppPortRXErrorThe statistics of illegal RRPP packets received from this port.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.4 |
hpnicfRrppPortRXHelloThe statistics of hello packets received from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.5 |
hpnicfRrppPortRXLinkUpThe statistics of link-up packets received from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.6 |
hpnicfRrppPortRXLinkDownThe statistics of link-down packets received from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.7 |
hpnicfRrppPortRXCommonFlushThe statistics of common-flush packets received from this port on specified ring. Instruction When master-node receives valid link-down packets or link-up packets, it will send common-flush packets, instructing the other nodes on the ring to flush their forwarding database. When the nodes except master-node receive common-flush, they will flush forwarding database. If there is any port blocked on that node, it won't be unblocked.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.8 |
hpnicfRrppPortRXCompleteFlushThe statistics of complete-flush packets received from this port on specified ring. Instruction When the ring recovers, master-node will receive its own hello packets. It will send complete-flush packets, instructing the other nodes on the ring to flush their forwarding database. When the nodes except master-node receive complete-flush, they will flush forwarding database. If there is any port blocked on that node, it will be unblocked.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.9 |
hpnicfRrppPortTXHelloThe statistics of hello packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.10 |
hpnicfRrppPortTXLinkUpThe statistics of link-up packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.11 |
hpnicfRrppPortTXLinkDownThe statistics of link-down packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.12 |
hpnicfRrppPortTXCommonFlushThe statistics of common-flush packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.13 |
hpnicfRrppPortTXCompleteFlushThe statistics of complete-flush packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.14 |
hpnicfRrppPortRXEdgeHelloThe statistics of edge-hello packets received from this port on specified ring. When edge-node sends edge-hello packets, assistantEdge-node will receive its own edge-hello packets from the common link and the master ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.15 |
hpnicfRrppPortRXMajorFaultThe statistics of major-fault packets received from this port on specified ring. When assistantEdge can't receive edge-hello packets in the specified fault-time, assistantEdge-node will send its own major-fault packets from the edge port around the sub ring. Edge-node will receive the major-fault packets from its edge port. Then Edge-node will block its edge port.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.16 |
hpnicfRrppPortTXEdgeHelloThe statistics of edge-hello packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.17 |
hpnicfRrppPortTXMajorFaultThe statistics of major-fault packets sent from this port on specified ring.ro Counter32 .1.3.6.1.4.1.11.2.14.11.15.2.45.2.3.1.18 |
hpnicfRrppNotifications OBJECT IDENTIFIER .1.3.6.1.4.1.11.2.14.11.15.2.45.3 |
hpnicfRrppRingRecoverTrap message is generated by master-node on the ring when the ring recovers from fault. NOTIFICATION-TYPE .1.3.6.1.4.1.11.2.14.11.15.2.45.3.1 |
hpnicfRrppRingFailTrap message is generated by master-node on the ring when the ring fails. NOTIFICATION-TYPE .1.3.6.1.4.1.11.2.14.11.15.2.45.3.2 |
hpnicfRrppMultiMasterTrap message is generated by master-node when it detects there are more than one master-node on the ring. NOTIFICATION-TYPE .1.3.6.1.4.1.11.2.14.11.15.2.45.3.3 |
hpnicfRrppMajorFaultTrap message is generated by edge-node or assistant-edge-node when it detects major fault. NOTIFICATION-TYPE .1.3.6.1.4.1.11.2.14.11.15.2.45.3.4 |