Home/Catalog/H3C-MPLSOAM-PS-MIB

H3C-MPLSOAM-PS-MIB

AI MIB Summary

The H3C-MPLSOAM-PS-MIB module enables the configuration and monitoring of MPLS Operations, Administration, and Maintenance (OAM) protection switching mechanisms on H3C network devices. It provides management access to specific metrics and parameters governing MPLS-TP linear protection and ring protection states, including switch status, trigger conditions, and protection group configurations.

This MIB contains objects to configure mpls protect-switch module.
Main OID:
h3cMplsOamPs.1.3.6.1.4.1.2011.10.2.80
23
Objects
Active
Status
3
Dependencies

Imported Objects

Objects

23 total
Object Name
h3cMplsOamPsThis MIB contains objects to configure mpls protect-switch module.
MODULE-IDENTITY
.1.3.6.1.4.1.2011.10.2.80
h3cMplsOamPsScalarGroup
OBJECT IDENTIFIER
.1.3.6.1.4.1.2011.10.2.80.1
h3cMplsOamPsTrapOpenWhether mpls protect-switch trap is globally enabled. false: disable; true: enablerw
TruthValue (SNMPv2-TC)
.1.3.6.1.4.1.2011.10.2.80.1.1
h3cMplsOamPsTable
OBJECT IDENTIFIER
.1.3.6.1.4.1.2011.10.2.80.2
h3cMplsPsTableThis table specifies per-protection-group MPLS PS capability and associated information.
SEQUENCE OF H3cMplsPsEntry
.1.3.6.1.4.1.2011.10.2.80.2.1
h3cMplsPsEntryAn entry in this table is created by an LSR for every protection group capable of supporting mpls ps.
H3cMplsPsEntry
.1.3.6.1.4.1.2011.10.2.80.2.1.1
h3cMplsPsIndexThis is a unique index for an entry in the mplspsEntry.
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.1
h3cMplsPsGroupIDThis is a unique group id for an entry in the mplspsEntry. One protect-switch group is composed of one working static-lsp and one protection static-lsp.rw
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.2
h3cMplsPsWorkLspNameThe name of the working static-lsp.rw
OCTET STRING
.1.3.6.1.4.1.2011.10.2.80.2.1.1.3
h3cMplsPsProtectLspNameThe name of the protection static-lsp.rw
OCTET STRING
.1.3.6.1.4.1.2011.10.2.80.2.1.1.4
h3cMplsPsRevertiveModeRevertive mode is a protection switching mode where revertive action (switch back to the working LSP) is taken after the working LSP is repaired. And switching does not occur in a non-revertive mode. 1: revertive; 2: non-revertive;rw
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.5
h3cMplsPsWTRWait to Restore timer is only applicable for the revertive mode and applies to a working LSP, it prevents reversion back to select the working LSP until the Wait to Restore timer has expired. The default value is 12 minutes. step is 30s.rw
Integer32 UNITS "30s"
.1.3.6.1.4.1.2011.10.2.80.2.1.1.6
h3cMplsPsHoldOffThe time between declaration of signal degrade or signal fail, and the initialization of the protection switching algorithm. Step is 100ms, maximum is 10s.rw
Integer32 UNITS "100ms"
.1.3.6.1.4.1.2011.10.2.80.2.1.1.7
h3cMplsPsSwitchConditionThe current switch condition of the protection group. 1: clear, this command clears all of the externally initiated switch commands listed below; 2: lockout of protection, fix the selector position on the working LSP, Prevents the selector from switching to the protection LSP when it is selecting the working LSP. Switches the selector from the protection to the working LSP when it is selecting the protection LSP; 3: forced protection, switches the selector from the working LSP to the protection LSP (unless a higher priority switch request (i.e., LoP) is in effect); 4: signal fail, for 1:1, Signal Fail (SF) is declared when the source of the protection domain enters the Defect State by receiving a BDI packet (from the return LSP or out of band). 5: manual switch for working-lsp, switches the selector from the working LSP to the protection LSP (unless an equal or higher priority switch request (i.e., LoP, FS, SF or MS) is in effect); 6: manual switch for protection-lsp, switches the selector from the protection LSP to the working LSP (unless an equal or higher priority switch request (i.e., LoP, FS, SF or MS) is in effect). 7: WTR-timer, a configurable timer which is used to delay before reversion; 8: HoldOff-timer, the time between declaration of signal degrade or signal fail, and the initialization of the protection switching algorithm; 9: Others; The pripority of the commands are: clear > lockout of protection > force switch > manual switch for working lsp = manual switch for protection lsprw
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.8
h3cMplsPsWorkLspDetectStateThe state of working static-lsp state in one protection group, whether it is in defect: 1: it is out of defect; 2: it enters defect.ro
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.9
h3cMplsPsWorkLspUpDownStateThe state of working static-lsp state in one protection group, whether it is up or down: 1: it is in up state; 2: it is in down state.ro
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.10
h3cMplsPsProtLspDetectStateThe state of protection static-lsp state in one protection group, whether it is in detection: 1: it is out of defect; 2: it enters defect.ro
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.11
h3cMplsPsProtLspUpDownStateThe state of protection static-lsp state in one protection group, whether it is up or down: 1: it is in up state; 2: it is in down state.ro
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.12
h3cMplsPsSwitchResultWhich tunnel is used to transfer the data stream. 1: working static-lsp; 2: protection static-lsp.ro
Integer32
.1.3.6.1.4.1.2011.10.2.80.2.1.1.13
h3cMplsPsRowStatusThis 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, h3cMplsPsGroupID, h3cMplsPsWorkLspName, h3cMplsPsProtectLspName, h3cMplsPsRevertiveMode, h3cMplsPsWTR and h3cMplsPsHoldOff must be specified.rw
RowStatus (SNMPv2-TC)
.1.3.6.1.4.1.2011.10.2.80.2.1.1.14
h3cMplsOamPsNotifications
OBJECT IDENTIFIER
.1.3.6.1.4.1.2011.10.2.80.3
h3cMplsPsSwitchPtoWThis notification is generated when switching from protection-lsp to working-lsp occured.
NOTIFICATION-TYPE
.1.3.6.1.4.1.2011.10.2.80.3.1
h3cMplsPsSwitchWtoPThis notification is generated when switching from woking-lsp to protection-lsp occured.
NOTIFICATION-TYPE
.1.3.6.1.4.1.2011.10.2.80.3.2

More MIBs from Huawei

Browse all HuaweiMIBs →
HUAWEI-MIB

The HUAWEI-MIB module provides a unified namespace for monitoring and managing generic system resources, interface statistics, and hardware telemetry across Huawei network devices. It serves as the foundational OID repository for retrieving standard operational data, including CPU utilization, memory usage, interface counters, and device status, required for comprehensive network management via SNMP.

3074 objects→
HUAWEI-SERVER-IBMC-MIB

Standard SNMP MIB module defining data structures for HUAWEI-SERVER-IBMC-MIB.

2171 objects→
HUAWEI-XPON-MIB

The HUAWEI-XPON-MIB module enables Network Management Systems to monitor and configure GPON and EPON optical line terminals and optical network units, specifically tracking PON port status, optical power levels, bandwidth allocation, and subscriber session states.

1553 objects→
H3C-ENTITY-VENDORTYPE-OID-MIB

SNMP MIB module

1462 objects→
HUAWEI-WLAN-CONFIGURATION-MIB

The HUAWEI-WLAN-CONFIGURATION-MIB facilitates the configuration and monitoring of Huawei Wireless LAN access point parameters, specifically managing AP port link profiles and broadcast suppression settings. This module enables administrators to enforce traffic control policies and optimize wireless network performance by adjusting switch profile associations and limiting broadcast traffic on specific ports.

1280 objects→
HUAWEI-XQoS-MIB

The HUAWEI-XQoS-MIB enables configuration and real-time monitoring of Class Based QoS parameters on Huawei network devices, specifically tracking traffic classification rules, queue states, and policy enforcement metrics. This module facilitates granular control over bandwidth allocation and packet prioritization by exposing objects for policy definitions, interface queue depths, and dropped packet counters associated with QoS classes.

1134 objects→