CISCO-SRP-MIB :: srpRingIntMcastHighPriOctetsIn

MIB Reference — IPNetwork Monitor · Updated September 14, 2026

All MIBsCISCO-SRP-MIBsrpRingIntMcastHighPriOctetsIn

srpRingIntMcastHighPriOctetsIn

Module: CISCO-SRP-MIB

OID (symbolic): CISCO-SRP-MIB::srpRingIntMcastHighPriOctetsIn

OID (numeric): 1.3.6.1.4.1.9.10.60.2.2.1.11

Node type: OBJECT-TYPE

Type: PerfIntervalCount64

Access: read-only

Description: The counter associated with the number of high priority multicast octets received from the Physical medium dependent layer in a particular 15-minute interval in the past 24 hours.

What is srpRingIntMcastHighPriOctetsIn?

This is a 64-bit counter of multicast bytes (octet count) arriving off the fiber into this node, specifically the high-priority portion of that traffic, per SRP's two-level QoS scheme, measured over one specific, already-completed 15-minute bucket from the rolling 24-hour history, rather than a live count. Because this is measured on the fiber side, it includes traffic this node is simply relaying past on behalf of other ring nodes, not just traffic this router itself originates or consumes, SRP's high-priority class is always serviced ahead of low-priority traffic when the ring is congested, so a rising trend here at the expense of the matching low-priority counter is a sign that latency-sensitive traffic is starting to crowd out best-effort traffic on this ring, and because multicast frames on a shared ring get passed along until they're stripped off or time out, a sudden multicast surge here more often reflects a flooding condition (e.g. an ARP-like storm or a new multicast subscriber group) than ordinary point-to-point application growth, and pairing this byte count with the matching packet counter for the same traffic class is how you'd derive the average frame size and the actual bit rate that class is consuming. For instance, this counter might read roughly 376,250,040 bytes of multicast traffic over that window, which combined with the matching packet counter lets you compute an average frame size for that class.

Examples

Walk all instances (SNMPv2c):

snmpwalk -v2c -c public <target> 1.3.6.1.4.1.9.10.60.2.2.1.11
snmpwalk -v2c -c public <target> CISCO-SRP-MIB::srpRingIntMcastHighPriOctetsIn

Get a specific instance (index 1):

snmpget -v2c -c public <target> 1.3.6.1.4.1.9.10.60.2.2.1.11.1
snmpget -v2c -c public <target> CISCO-SRP-MIB::srpRingIntMcastHighPriOctetsIn.1

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OID Breakdown

Upper-level ancestors (8 from the standard OID tree / other modules)
Numeric OIDNameModule
1isoLANART-AGENT
1.3orgAirPair-MIB
1.3.6dodAirPair-MIB
1.3.6.1internetAirPair-MIB
1.3.6.1.4privateAirPair-MIB
1.3.6.1.4.1enterprisesAirPair-MIB
1.3.6.1.4.1.9ciscoCAT2600-MIB
1.3.6.1.4.1.9.10ciscoExperimentCISCO-SMI
Numeric OIDNameModule
1.3.6.1.4.1.9.10.60ciscosrpMIBCISCO-SRP-MIB
1.3.6.1.4.1.9.10.60.2srpRingCountersCISCO-SRP-MIB
1.3.6.1.4.1.9.10.60.2.2srpRingCountersIntervalTableCISCO-SRP-MIB
1.3.6.1.4.1.9.10.60.2.2.1srpRingCountersIntervalEntryCISCO-SRP-MIB
1.3.6.1.4.1.9.10.60.2.2.1.11srpRingIntMcastHighPriOctetsInCISCO-SRP-MIB