CISCO-IPSLA-ETHERNET-MIB
AI MIB Summary
The CISCO-IPSLA-ETHERNET-MIB manages Cisco IP SLA operations for IEEE 802.1ag Ethernet Connectivity Fault Management (CFM), specifically automating the discovery of Maintenance Association End Points (MEPs) and configuring `ethernetPing` and `ethernetJitter` active monitoring sessions. It provides statistical data for end-to-end Ethernet connectivity metrics, including Round Trip Time (RTT), jitter, frame loss, and one-way latency, while facilitating the automatic generation of corresponding control entries in the CISCO-RTTMON-MIB.
This MIB module consists of two parts.
1) Auto-Ethernet-CFM Control: | |
2) ethernetJitter Stats: | |
The first part defines a mechanism to manage IP SLA Auto-Ethernet-CFM operation.
IP SLA is a capability which utilizes active monitoring for network perfomance. It can be used for network troubleshooting, network assessment and health monitoring.
IEEE 802.1ag defines Connection Fault Management (CFM) for Ethernet layer. CFM can be used to detect, isolate and report the connectivity faults, and allows discovery and verification of the path through briges and LANs.
Auto-Ethernet-CFM operation integrates the capabilities of IP SLA and IEEE 802.1ag. It's capable of discovering all the existing MEPs in a specified VLAN or Ethernet Virtual Connection within a specified maintenance domain. After which, it creates, configures, and schedules an IP SLA operation for each MEP automatically.
IP SLA currently supports two types of operations for end-to-end Ethernet connectivity - 'ethernetPing' and 'ethernetJitter'.
'ethernetPing' can be used to monitor the connectivity and measure RTT by sending the regular 802.1ag loopback frame to a particular MEP.
'ethernetJitter' can be used to measure metrics such as RTT, Jitter, frame loss, one-way latency by sending multiple enhanced CFM frames at specified interval to a particular MEP.
Without Auto-Ethernet-CFM operation, the two types of operations can also be created, configured, and scheduled manually through CISCO-RTTMON-MIB by specifing the target MEP's identifier in addition to the VLAN or Ethernet Virtual Connection and Maintenance Domain.
With Auto-Ethernet-CFM operation, the two types of operations will be created automatically. The Auto-Ethernet-CFM will pass all the values specified in this module to the corresponding objects in CISCO-RTTMON-MIB for each MEP discovered.
CISCO-IPSLA-ETHERNET-MIB CISCO-RTTMON-MIB
ipslaEthernetGrpCtrlTable -> rttMonCtrlAdminTable |
-> rttMonEchoAdminTable
ipslaEthernetGrpReactTable -> rttMonReactTable
The second part defines a collection of statistics resulting from 'ethernetJitter' operation created either manually or automatically.
Glossary:
CFM - Connection Fault Management DSAP - Domain Service Access Point: A member of a set of SAPs at which a Maintenance Domain is capable of offering connectivity to systems outside the Maintenance Domain. IP SLA - Cisco IOS IP Service Level Agreements IP SLA operation - Refers to the 'ethernetPing' or 'ethernetJitter' operation supported by IP SLA. MEP - Maintenance association End Point: An actively managed CFM entity, associated with a specific DSAP of a service instance, which can generate and receive CFM PDUs and track any responses. maintenance domain - The network or the part of the network for which faults in connectivity are to be managed. The boundary of a Maintenance Domain is defined by a set of DSAPs, each of which can become a point of connectivity to a service instance. Maintenance Domain Name - The identifier, unique over the domain for which CFM is to protect against accidental concatenation of service instances, of a particular Maintenance Domain. RTT - Round Trip Time SAP - Service Access Point at which a service is offered. service instance - A service instance is a set of SAPs, selected from among the DSAPs defining a Maintenance Domain, such that a Data.Request primitive presented to one SAP can result in a Data.Indication primitive occurring at one or more of the other SAPs in the set. It corresponds to a VLAN or an Ethernet Virtual Connection. TLV - Stands for Type, Length, Value, and denotes a method of encoding variable-length and/or optional information in a PDU. TLVs are not aligned to any particular word or octet boundary. TLVs follow each other with no padding between TLVs. VLAN - Virtual Local Area Network: A subset of the active topology of a Bridged Local Area Network. Associated with each VLAN is a VLAN Identifier.
REFERENCE:
IEEE 802.1ag Draft 6.0 'Virtual Briged Local Area Networks
- Amendments 5: Connectivity Fault Management' July 2006
Main OID:
ciscoIpSlaEthernetMIB.1.3.6.1.4.1.9.9.585
188
Objects
Active
Status
10
Dependencies
Imported Objects
Objects
188 total| Object Name |
|---|
ciscoIpSlaEthernetMIBThis MIB module consists of two parts.
1) Auto-Ethernet-CFM Control:
|
|
2) ethernetJitter Stats:
|
|
The first part defines a mechanism to manage IP SLA
Auto-Ethernet-CFM operation.
IP SLA is a capability which utilizes active monitoring for
network perfomance. It can be used for network
troubleshooting, network assessment and health monitoring.
IEEE 802.1ag defines Connection Fault Management (CFM) for
Ethernet layer. CFM can be used to detect, isolate and report
the connectivity faults, and allows discovery and verification
of the path through briges and LANs.
Auto-Ethernet-CFM operation integrates the capabilities of
IP SLA and IEEE 802.1ag. It's capable of discovering all the
existing MEPs in a specified VLAN or Ethernet Virtual Connection
within a specified maintenance domain. After which, it creates,
configures, and schedules an IP SLA operation for each MEP
automatically.
IP SLA currently supports two types of operations for
end-to-end Ethernet connectivity - 'ethernetPing' and
'ethernetJitter'.
'ethernetPing' can be used to monitor the connectivity and
measure RTT by sending the regular 802.1ag loopback frame
to a particular MEP.
'ethernetJitter' can be used to measure metrics such as
RTT, Jitter, frame loss, one-way latency by sending multiple
enhanced CFM frames at specified interval to a particular MEP.
Without Auto-Ethernet-CFM operation, the two types of operations
can also be created, configured, and scheduled manually through
CISCO-RTTMON-MIB by specifing the target MEP's identifier
in addition to the VLAN or Ethernet Virtual Connection and
Maintenance Domain.
With Auto-Ethernet-CFM operation, the two types of operations
will be created automatically. The Auto-Ethernet-CFM will pass
all the values specified in this module to the corresponding
objects in CISCO-RTTMON-MIB for each MEP discovered.
CISCO-IPSLA-ETHERNET-MIB CISCO-RTTMON-MIB
ipslaEthernetGrpCtrlTable -> rttMonCtrlAdminTable
|
-> rttMonEchoAdminTable
ipslaEthernetGrpReactTable -> rttMonReactTable
The second part defines a collection of statistics resulting
from 'ethernetJitter' operation created either manually or
automatically.
Glossary:
CFM - Connection Fault Management
DSAP - Domain Service Access Point: A member of a set of
SAPs at which a Maintenance Domain is capable of
offering connectivity to systems outside the Maintenance
Domain.
IP SLA - Cisco IOS IP Service Level Agreements
IP SLA operation - Refers to the 'ethernetPing' or
'ethernetJitter' operation supported by IP SLA.
MEP - Maintenance association End Point: An actively managed
CFM entity, associated with a specific DSAP of a
service instance, which can generate and receive CFM
PDUs and track any responses.
maintenance domain - The network or the part of the network
for which faults in connectivity are to be managed.
The boundary of a Maintenance Domain is defined by a set
of DSAPs, each of which can become a point of connectivity
to a service instance.
Maintenance Domain Name - The identifier, unique over the
domain for which CFM is to protect against accidental
concatenation of service instances, of a particular
Maintenance Domain.
RTT - Round Trip Time
SAP - Service Access Point at which a service is offered.
service instance - A service instance is a set of SAPs,
selected from among the DSAPs defining a Maintenance
Domain, such that a Data.Request primitive presented
to one SAP can result in a Data.Indication primitive
occurring at one or more of the other SAPs in the set.
It corresponds to a VLAN or an Ethernet Virtual Connection.
TLV - Stands for Type, Length, Value, and denotes a method of
encoding variable-length and/or optional information in a
PDU. TLVs are not aligned to any particular word or octet
boundary. TLVs follow each other with no padding between
TLVs.
VLAN - Virtual Local Area Network: A subset of the active
topology of a Bridged Local Area Network. Associated
with each VLAN is a VLAN Identifier.
REFERENCE:
IEEE 802.1ag Draft 6.0 'Virtual Briged Local Area Networks
- Amendments 5: Connectivity Fault Management' July 2006 MODULE-IDENTITY .1.3.6.1.4.1.9.9.585 |
ciscoIpSlaEthernetMIBNotifs OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.0 |
ciscoIpSlaEthernetMIBObjects OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.1 |
ipslaEthernetGrpCtrl OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.1.1 |
ipslaEthernetGrpCtrlTableThis table contains Auto-Ethernet-CFM control data. When a
row transition to the 'active' state, the IP SLA agent will
discover all the MEPs inside the specified VLAN and maintenance
domain and create IP SLA ethernet operations based on the
value of ipslaEthernetGrpCtrlRttType for each MEP.
All the values in this table will be passed to the corresponding
objects in the rttMonCtrlAdminTable and rttMonEchoAdminTable of
CISCO-RTTMON-MIB so that each IP SLA Ethernet operation will
have the same configuration as specified for Auto-Ethernet-CFM.
- Objects in this table - Corresponding objects in
rttMonCtrlAdminTable
ipslaEthernetGrpCtrlStatus rttMonCtrlAdminStatus
ipslaEthernetGrpCtrlRttType rttMonCtrlAdminRttType
ipslaEthernetGrpCtrlOwner rttMonCtrlAdminOwner
ipslaEthernetGrpCtrlTag rttMonCtrlAdminTag
ipslaEthernetGrpCtrlThreshold rttMonCtrlAdminThreshold
ipslaEthernetGrpCtrlTimeout rttMonCtrlAdminTimeout
- Objects in this table - Corresponding objects in
rttMonEchoAdminTable
ipslaEthernetGrpCtrlVLAN rttMonEchoAdminTargetVLAN
ipslaEthernetGrpCtrlDomainName rttMonEchoAdminTargetDomainName
ipslaEthernetGrpCtrlReqDataSize rttMonEchoAdminPktDataRequestSize
ipslaEthernetGrpCtrlCOS rttMonEchoAdminEthernetCOS
ipslaEthernetGrpCtrlInterval rttMonEchoAdminInterval
ipslaEthernetGrpCtrlNumFrames rttMonEchoAdminNumPackets
ipslaEthernetGrpCtrlEVC rttMonEchoAdminTargetEVC SEQUENCE OF IpslaEthernetGrpCtrlEntry .1.3.6.1.4.1.9.9.585.1.1.1 |
ipslaEthernetGrpCtrlEntryA collection of objects that define a conceptual
Auto-Ethernet-CFM control row.
The following objects must be specified in order to create this
conceptual row.
- ipslaEthernetGrpCtrlStatus
- ipslaEthernetGrpCtrlRttType
The following objects must be specified in order to activate this
conceptual row.
- ipslaEthernetGrpCtrlVLAN
OR
- ipslaEthernetGrpCtrlEVC
- ipslaEthernetGrpCtrlDomainName
- ipslaEthernetGrpSchedulePeriod
- ipslaEthernetGrpScheduleRttStartTime
This conceptual row can be delete at any time by set the
ipslaEthernetGrpCtrlStatus to 'destroy'. When this row is
deleted, All the IP SLA operations created by this row will
be destroyed. IpslaEthernetGrpCtrlEntry .1.3.6.1.4.1.9.9.585.1.1.1.1 |
ipslaEthernetGrpCtrlIndexThis object indicates a row in the ipslaEthernetGrpCtrlTable.
This value is a pseudo-random number selected by the management
station when creating a row via the
ipslaEthernetGrpCtrlStatus object.
For easy management, user can select range of numbers for
different maintenance domain.
For instance, the ipslaEthernetGrpCtrlIndex 1-100 will be
used for Domain_A, 101-200 will be used for Domain_B.
If the pseudo-random number is already in use an
'inconsistentValue' return code will be returned when set
operation is attempted. RttMonCtrlIndex (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.1.1.1.1 |
ipslaEthernetGrpCtrlStatusThis object specifies the status of Auto-Ethernet-CFM
control row.
Following objects must be specified in order for this object to
become active.
- ipslaEthernetGrpCtrlRttType
- ipslaEthernetGrpCtrlVLAN
OR
- ipslaEthernetGrpCtrlEVC
- ipslaEthernetGrpCtrlServiceInsType
- ipslaEthernetGrpCtrlDomainName
- ipslaEthernetGrpSchedulePeriod
- ipslaEthernetGrpScheduleRttStartTime
All other objects can assume default values.
The following objects cannot be modified after creating the
Auto-Ethernet-CFM conceptual row.
- ipslaEthernetGrpCtrlRttType
- ipslaEthernetGrpCtrlVLAN
OR
- ipslaEthernetGrpCtrlEVC
- ipslaEthernetGrpCtrlDomainName
- ipslaEthernetGrpCtrlServiceInsType
The following objects can be modified even after creating the
Auto-Ethernet-CFM conceptual row by setting this object to
'notInService'
- All other writable objects in ipslaEthernetGrpCtrlTable except
ipslaEthernetGrpCtrlRttType, ipslaEthernetGrpCtrlVLAN,
ipslaEthernetGrpCtrlDomainName, ipslaEthernetGrpCtrlEVC and
ipslaEthernetGrpCtrlServiceInsType
- Objects in the ipslaEthernetGrpScheduleTable.
The following objects can be modified as needed without setting
this object to 'notInService' even after creating the
Auto-Ethernet-CFM conceptual row.
- Objects in ipslaEthernetGrpReactTable.
This object can be set to 'destroy' from any value at any
time. When this object is set to 'destroy' it will stop and
destroy all the IP SLA operations created by this
Auto-Ethernet-CFM before destroying Auto-Ethernet-CFM
control row.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.9.9.585.1.1.1.1.2 |
ipslaEthernetGrpCtrlStorageTypeThis object specifies how the SNMP entity stores the data
contained by the corresponding conceptual row.
This object can be set to either 'volatile' or 'nonVolatile'.
Other values are not applicable for this conceptual row and
are not supported.rw StorageType (SNMPv2-TC) .1.3.6.1.4.1.9.9.585.1.1.1.1.3 |
ipslaEthernetGrpCtrlRttTypeThe type of IP SLA operation to be created by this
Auto-Ethernet-CFM.
This value can only be set to type 'ethernetPing' and
'ethernetJitter'.
'ethernetPing' operation sends the regular 802.1ag loopback
frame to the target MEP to monitor the connectivity and perform
delay analysis.
'ethernetJitter'sends multiple enhanced CFM frames at a
specified interval to the target MEP to measure metrics such as
RTT, jitter, frame loss, one-way latency and so on.
This value must be set before setting any other
parameter configuration of an Auto-Ethernet-CFM.rw RttMonRttType (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.1.1.1.4 |
ipslaEthernetGrpCtrlOwnerA string which used by a managing application to identify
the entity that created this Auto-Ethernet-CFM.rw SnmpAdminString .1.3.6.1.4.1.9.9.585.1.1.1.1.5 |
ipslaEthernetGrpCtrlTagA string which used by a managing application to identify
the target VLAN and maintenance domain of this
Auto-Ethernet-CFM.rw SnmpAdminString .1.3.6.1.4.1.9.9.585.1.1.1.1.6 |
ipslaEthernetGrpCtrlThresholdThis object specifies the threshold value of a particular
object.
This value will be examined for each IP SLA operations
created by the Auto-Ethernet-CFM.
For 'ethernetPing', if the value of
rttMonLatestRttOperCompletionTime is greater than this
value, the 'overThreshold' will be reported through
rttMonLatestRttOperSense defined in CISCO-RTTMON-MIB.
For 'ethernetJitter', if the value of
ipslaEtherJitterLatestAvgJitter value is greater than this
value, the 'overThreshold' will be reported through
ipslaEtherJitterLatestSense defined this module.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.7 |
ipslaEthernetGrpCtrlTimeoutSpecifies the duration to wait for an IP SLA operation
created by this Auto-Ethernet-CFM to complete.
For 'ethernetPing', if the value of
rttMonLatestRttOperCompletionTime is greater than this
value, the 'timeout' will be reported through
rttMonLatestRttOperSense defined in CISCO-RTTMON-MIB.
For 'ethernetJitter', if all the frames sent to target MEP
have not been recievied within this duration, the 'timeout'
will be reported through ipslaEtherJitterLatestSense
defined this module.
The value of this object cannot be set to a value which would
specify a duration exceeding ipslaEthernetGrpScheduleFrequency.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.8 |
ipslaEthernetGrpCtrlProbeListThis object indicates the identifiers of the IP SLA
operations that are created by the Auto-Ethernet-CFM.
The identifier will be stored in rttMonCtrlAdminIndex defined
in CISCO-RTTMON-MIB for each IP SLA operation.ro RttMonIdLst (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.1.1.1.9 |
ipslaEthernetGrpCtrlVLANThis object specifies the identifier of VLAN for which
the Auto-Ethernet-CFM operation will be used.
It is an unique identifier for a service instance within
a Maintenance Domain specified by ipslaEthernetGrpCtrlDomainName.
The Auto-Ethernet-CFM will find all the MEPs participating
in this VLAN and create IP SLA operations for each MEP
corresponding to value specified in ipslaEthernetGrpCtrlRttType.
The value of this object is in effect only when the value of
ipslaEthernetGrpCtrlServiceInsType is set to 'vlan'.rw VlanId (Q-BRIDGE-MIB) .1.3.6.1.4.1.9.9.585.1.1.1.1.10 |
ipslaEthernetGrpCtrlDomainNameTypeThis object specifies the type of maintenance domain name
to be used by the Auto-Ethernet-CFM operation.
This object can only be set to the following values:
'none'(1)
'charString'(4)
Other values are not supported.
Value 'none' means that the ipslaEthernetGrpCtrlDomainName
has not been specified.rw Dot1agCfmMaintDomainNameType .1.3.6.1.4.1.9.9.585.1.1.1.1.11 |
ipslaEthernetGrpCtrlDomainNameThis object specifies the maintenance domain name
to be used by the Auto-Ethernet-CFM operation.
The Auto-Ethernet-CFM operation discovers all the MEPs
participating in the VLAN specified by ipslaEthernetGrpCtrlVLAN
within this maintenance domain and create IP SLA operations
for each MEP corresponding to value specified in
ipslaEthernetGrpCtrlRttType.
As long as the value of this object is specified, the value of
ipslaEthernetGrpCtrlDomainNameType must be set to 'charString'.rw Dot1agCfmMaintDomainName .1.3.6.1.4.1.9.9.585.1.1.1.1.12 |
ipslaEthernetGrpCtrlReqDataSizeThis object specifies the padding that needs to be inserted
into each ethernet frame of the IP SLA operation.
The total ethernet frame size of the IP SLA operation is:
CFM_header + TLVs + si_length + dm_length + padding size
where dm_length = number of octets of the maintenance domain name
si_length = number of octets of the service instance name
CFM_header = 8 octets
TLVs = 60 octets for 'ethernetPing'
45 octets for 'ethernetJitter'
If the total frame size exceeds 1500, only 1500 will be
sent to the target MEP.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.13 |
ipslaEthernetGrpCtrlMPIDExLstThis object specifies the identifiers of the MEPs that will
be excluded when create IP SLA operations by Auto-Ethernet-CFM
operation.rw RttMonIdLst (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.1.1.1.14 |
ipslaEthernetGrpCtrlCOSThis object specifies the Class Of Service field in an
Ethernet frame header.rw Layer2Cos (CISCO-TC) .1.3.6.1.4.1.9.9.585.1.1.1.1.15 |
ipslaEthernetGrpCtrlIntervalThis value specifies the inter-frame delay between Ethernet
frames that need to be transmitted to the target MEPs.
This object is applicable to 'ethernetJitter' operation only.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.16 |
ipslaEthernetGrpCtrlNumFramesThis value specifies the number of Ethernet frames that need
to be transmitted to the target MEPs.
This object is applicable to 'ethernetJitter' operation only.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.17 |
ipslaEthernetGrpScheduleRttStartTimeThis object specifies the time when this conceptual row
will become 'active'. ipslaEthernetGrpSchedulePeriod object
must be specified before setting this object.
When sysUpTime equals this value, this object will
cause the conceptual Auto-Ethernet-CFM row transmit
to 'active'and start to discover the existing MEPs.
Meanwhile the IP SLA operations will be created for
each discovered MEP, and rttMonCtrlAdminStatus of each
IP SLA operation will transmit to 'active'.
If this object has value as 1, the conceptual Auto-Ethernet-CFM
row will transmit to 'active' right now.
Value of 0 puts this conceptual row in pending state.rw TimeTicks (SNMPv2-SMI) .1.3.6.1.4.1.9.9.585.1.1.1.1.18 |
ipslaEthernetGrpSchedulePeriodSpecifies the time duration over which all the IP SLA
operations created by the current Auto-Ethernet-CFM
have to be scheduled.
For instance, if there are three MEPs discovered, there
will be three IP SLA operations created. If this object
is set to 30, ipslaEthernetGrpScheduleRttStartTime is set
to T, the start time of three operations will be
spreaded evenly within 30 seconds, i.e.
start time: T+0 T+9
operation1 operation2 operation3
This object must be set first before setting
ipslaEthernetGrpScheduleRttStartTime.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.19 |
ipslaEthernetGrpScheduleFrequencySpecifies the duration between initiating each IP SLA
operation created by the Auto-Ethernet-CFM.
Take above example, if the ipslaEthernetGrpScheduleFrequency
is set to 60, then the start time of each IP SLA operation
like:
start time: T+0 T+9
operation1 operation2 operation3
start again: T+79
operation1 operation2 operation3
start 3rd time:T+139
operation1 operation2 operation3
This object cannot be set to a value which would be a
shorter duration than ipslaEthernetGrpCtrlTimeout.
The default value of this object is the value set to
ipslaEthernetGrpSchedulePeriod.
This value will be passed to rttMonCtrlAdminFrequency for
all the IP SLA operations created by the Auto-Ethernet-CFM.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.1.1.20 |
ipslaEthernetGrpCtrlEVCThis object specifies the Ethernet Virtual Connection for which
the Auto-Ethernet-CFM operation will be used.
It is an unique identifier for a service instance within
a Maintenance Domain specified by ipslaEthernetGrpCtrlDomainName.
The Auto-Ethernet-CFM will find all the MEPs participating
in this Ethernet Virtual Connection and create IP SLA operations for
each MEP corresponding to value specified in
ipslaEthernetGrpCtrlRttType.
The value of this object is in effect only when the value of
ipslaEthernetGrpCtrlServiceInsType is set to 'evc'.rw SnmpAdminString .1.3.6.1.4.1.9.9.585.1.1.1.1.21 |
ipslaEthernetGrpCtrlServiceInsTypeThis object specifies the type of service instance to be used
by the Auto-Ethernet-CFM operation.
When this object is set to value 'vlan', ipslaEthernetGrpCtrlVLAN
must be set, and the value of ipslaEthernetGrpCtrlVLAN will be
used by the Auto-Ethernet-CFM to discover the participating MEPs.
When this object is set to value 'evc', ipslaEthernetGrpCtrlEVC
must be set, and the value of ipslaEthernetGrpCtrlEVC will be
used by the Auto-Ethernet-CFM to discover the participating MEPs.rw Enumeration .1.3.6.1.4.1.9.9.585.1.1.1.1.22 |
ipslaEthernetGrpReactTableA table that contains the reaction configurations for
Auto-Ethernet-CFM operation.
The reaction configuration specifies the network perfomance
parameter needs to be monitored, the threshold for the parameter,
the type of threshold violation that will trigger a reaction,
and how to react upon a threshold being violated.
This allows for proactive monitoring in an environment where
user can be alerted to potential network problems, rather than
having to manually examine data.
Each conceptual row in ipslaEthernetGrpReactTable corresponds
to a reaction configured for a corresponding Auto-Ethernet-CFM
operation.
Each Auto-Ethernet-CFM operation can have multiple parameters
monitored and hence there can be multiple reaction configuration
rows for a particular Auto-Ethernet-CFM operation.
The reaction configurations in this table for a particular
Auto-Ethernet-CFM operation will be passed to the
corresponding objects in rttMonReactTable of CISCO-RTTMON-MIB
for all the IP SLA operations created by this Auto-Ethernet-CFM.
This makes the IP SLA operation capable of reacting to certain
measured network condition such as long round trip delay,
big jitter, etc., by generating a notification to a network
management application based on defined thresholds.
- Objects in this table - Corresponding objects in
rttMonReactTable
ipslaEthernetGrpReactConfigIndex rttMonReactConfigIndex
ipslaEthernetGrpReactVar rttMonReactVar
ipslaEthernetGrpReactThresholdType rttMonReactThresholdType
ipslaEthernetGrpReactThresholdRising rttMonReactThresholdRising
ipslaEthernetGrpReactThresholdFalling rttMonReactThresholdFalling
ipslaEthernetGrpReactThresholdCountX rttMonReactThresholdCountX
ipslaEthernetGrpReactThresholdCountY rttMonReactThresholdCountY
ipslaEthernetGrpReactActionType rttMonReactActionType
ipslaEthernetGrpReactStatus rttMonReactStatus
This table is coupled with ipslaEthernetGrpCtrlTable. When an
entry in the ipslaEthernetGrpCtrlTable is destroyed, the
corresponding entries in this table will be destroyed too. SEQUENCE OF IpslaEthernetGrpReactEntry .1.3.6.1.4.1.9.9.585.1.1.2 |
ipslaEthernetGrpReactEntryA collection of objects that define a conceptual
Auto-Ethernet-CFM reaction configuration row.
In order to create this conceptual row,
ipslaEthernetGrpReactStatus must be set to 'createAndGo' and
ipslaEthernetGrpReactVar must be specified.
This conceptual row can be deleted at any time by set
ipslaEthernetGrpReactStatus to 'destroy'. When this row is
deleted, the corresponding reaction configuration of all the
IP SLA operations are deleted. IpslaEthernetGrpReactEntry .1.3.6.1.4.1.9.9.585.1.1.2.1 |
ipslaEthernetGrpReactConfigIndexThis object along with ipslaEthernetGrpCtrlEntry identifies
a particular reaction-configuration for a particular
Auto-Ethernet-CFM operation.
This is a pseudo-random number selected by the management
station when creating a row via the ipslaEthernetGrpReactStatus.
If the pseudo-random number is already in use an
'inconsistentValue' return code will be returned when
set operation is attempted. RttMonCtrlIndex (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.1.2.1.1 |
ipslaEthernetGrpReactStatusThis objects specifies the status of the conceptual
Auto-Ethernet-CFM reaction control row. Only 'createAndGo'
and 'destroy' operations are permitted on the row.
In order for this object to become 'active',
ipslaEthernetGrpReactVar must be defined.
All other objects assume the default value.
When this object is in 'active' state, all the writable objects
except ipslaEthernetGrpReactVar can be modified.
When this object moves to 'active' state, the rttMonReactStatus
of the individual IP SLA operations moves to 'active' state, thus
the performance parameter specified in the reaction configuration
is monitored for each IP SLA operation and the notifications are
generated when the threshold violation takes place.
This object can be set to 'destroy' from any value at any time.
When this object is set to 'destroy', the reaction configuration
of both Auto-Ethernet-CFM operation and IP SLA operations
are removed.rw RowStatus (SNMPv2-TC) .1.3.6.1.4.1.9.9.585.1.1.2.1.2 |
ipslaEthernetGrpReactStorageTypeThis object specifies how the SNMP entity stores the data
contained by the corresponding conceptual row.
This object can be set to either 'volatile' or 'nonVolatile'.
Other values are not applicable for this conceptual row and
are not supported.rw StorageType (SNMPv2-TC) .1.3.6.1.4.1.9.9.585.1.1.2.1.3 |
ipslaEthernetGrpReactVarThis object specifies the performance parameter that will
be monitored by the IP SLA operations which are created
via Auto-Ethernet-CFM operation.
The performance parameters that are valid to both
'ethernetJitter' and 'ethernetPing' include:
- 'connectionLoss'
- 'rtt'
- 'timeout'
The performance parameters that are only valid to
'ethernetJitter' include:
- 'jitterSDAvg'
- 'jitterDSAvg'
- 'jitterAvg'
- 'maxOfPositiveSD'
- 'maxOfNegativeSD'
- 'maxOfPositiveDS'
- 'maxOfNegativeDS'
- 'packetLateArrival'
- 'packetLossDS'
- 'packetLossSD'
- 'packetOutOfSequence'
- 'packetMIA'rw RttMonReactVar (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.1.2.1.4 |
ipslaEthernetGrpReactThresholdTypeThis object specifies the type of threshold violation that
will trigger an notification.
The notification will be sent accordingly only when the object
rttMonReactOccurred which is defined in CISCO-RTTMON-MIB for IP
SLA operation is set to 'true' or 'false'.
'never' - rttMonReactOccurred is never set
'immediate' - rttMonReactOccurred is set to 'true' when the
value of parameter for which reaction is
configured ( e.g. rtt, jitterAvg) violates the
threshold.
Conversely, rttMonReactOccurred is set to 'false'
when the parameter ( e.g. rtt, jitterAvg) is below
the threshold limits.
'consecutive'- rttMonReactOccurred is set to true when the value
of parameter for which reaction is configured
( e.g. rtt, jitterAvg) violates the threshold for
configured consecutive times.
Conversely, rttMonReactOccurred is set to false
when the value of parameter ( e.g. rtt, jitterAvg)
is below the threshold limits for the same number
of consecutive operations.
'xOfy' - rttMonReactOccurred is set to true when x
( as specified by
ipslaEthernetGrpReactThresholdCountX )
out of the last y ( as specified by
ipslaEthernetGrpReactThresholdCountY ) times the
value of parameter for which the reaction is
configured ( e.g. rtt, jitterAvg) violates the
threshold.
Conversely, it is set to false when x, out of the
last y times the value of parameter ( e.g. rtt,
jitterAvg) is below the threshold limits.
'average' - rttMonReactOccurred is set to true when the
average (ipslaEthernetGrpReactThresholdCountX
times ) value of parameter for which reaction is
configured ( e.g. rtt, jitterAvg) violates the
threshold condition.
Conversely, it is set to false when the average
value of parameter ( e.g. rtt, jitterAvg).rw Enumeration .1.3.6.1.4.1.9.9.585.1.1.2.1.5 |
ipslaEthernetGrpReactThresholdRisingThis object specifies the higher threshold limit.
If the value of monitored parameter ( e.g rtt, jitterAvg,
packetLossSD etc ) rises above this limit and if the condition
specified in ipslaEthernetGrpReactThresholdType are satisfied,
a notification is generated.
Default value of ipslaEthernetGrpReactThresholdRising for
'rtt' is 5000.
'jitterAvg' is 100.
'jitterSDAvg' is 100.
'jitterDSAvg' is 100.
'maxOfPositiveSD' is 10000.
'maxOfNegativeSD' is 10000.
'maxOfPositiveDS' is 10000.
'maxOfNegativeDS' is 10000.
'packetLossSD' is 10000.
'packetLossDS' is 10000.
'packetMIA' is 10000.
'packetLateArrival' is 10000.
'packetOutOfSequence' is 10000.
This object is not applicable if the ipslaEthernetGrpReactVar
is 'timeout' or 'connectionLoss'. For 'timeout' and
'connectionLoss', the default value will be 0.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.2.1.6 |
ipslaEthernetGrpReactThresholdFallingThis object specifies the lower threshold limit.
If the value of monitored parameter ( e.g rtt, jitterAvg,
packetLossSD etc ) falls below this limit and if the condition
specified in ipslaEthernetGrpReactThresholdType are satisfied,
a notification is generated.
Default value of ipslaEthernetGrpReactThresholdFalling for
'rtt' is 3000.
'jitterAvg' is 100.
'jitterSDAvg' is 100.
'jitterDSAvg' is 100.
'maxOfPositiveSD' is 10000.
'maxOfNegativeSD' is 10000.
'maxOfPositiveDS' is 10000.
'maxOfNegativeDS' is 10000.
'packetLossSD' is 10000.
'packetLossDS' is 10000.
'packetMIA' is 10000.
'packetLateArrival' is 10000.
'packetOutOfSequence' is 10000.
This object is not applicable if the ipslaEthernetGrpReactVar
is 'timeout' or 'connectionLoss'. For 'timeout' and
'connectionLoss', the default value will be 0.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.2.1.7 |
ipslaEthernetGrpReactThresholdCountXIf ipslaEthernetGrpReactThresholdType value is 'xOfy', this
object specifies the 'x' value.
If ipslaEthernetGrpReactThresholdType value is 'consecutive',
this object specifies the number of consecutive occurrences
that needs threshold violation before setting
rttMonReactOccurred as 'true'.
If ipslaEthernetGrpReactThresholdType value is 'average',
this object specifies the number of samples that needs be
considered for calculating average.
This object has no meaning if ipslaEthernetGrpReactThresholdType
has value of 'never' and 'immediate'.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.2.1.8 |
ipslaEthernetGrpReactThresholdCountYThis object specifies the 'y' value of the xOfy condition
if ipslaEthernetGrpReactThresholdType is 'xOfy'.
For other values of ipslaEthernetGrpReactThresholdType, this
object is not applicable.rw Unsigned32 .1.3.6.1.4.1.9.9.585.1.1.2.1.9 |
ipslaEthernetGrpReactActionTypeThis object specifies what type of reaction to generate
if an IP SLA operation violates one of the watched
conditions (specified in ipslaEthernetGrpReactVar):
'none' - no reaction is generated.
'notification' - a notification is generated.rw Enumeration .1.3.6.1.4.1.9.9.585.1.1.2.1.10 |
ipslaEthernetStats OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.1.2 |
ipslaEtherJitterAggStatsTableThe 'ethernetJitter' statistics table contains summarized
information of the results for a conceptual control
row. A rolling accumulated history of this information
is maintained in a series of hourly 'group(s)'.
When ipslaEtherJAggStatsStartTimeId groups exceeds
the rttMonStatisticsAdminNumHourGroups value, the
oldest corresponding hourly group will be deleted and will
be replaced with the new ipslaEtherJAggStatsStartTimeId
hourly group. SEQUENCE OF IpslaEtherJitterAggStatsEntry .1.3.6.1.4.1.9.9.585.1.2.1 |
ipslaEtherJitterAggStatsEntryThis entry contains the objects which accumulate the
results of a series of 'ethernetJitter' operations
over a 60 minute time period or a time period stored
in rttMonScheduleAdminRttLife, whichever is smaller.
An entry is created only if when the following
objects are valid.
- rttMonCtrlAdminRttType
- rttMonEchoAdminProtocol
The entry will start to collect data when rttMonCtrlAdminStatus
is in 'active' state. The entry will be removed when the
rttMonCtrlAdminStatus is changed to 'destroy' state. IpslaEtherJitterAggStatsEntry .1.3.6.1.4.1.9.9.585.1.2.1.1 |
ipslaEtherJAggStatsStartTimeIdThe value of sysUpTime at the time when this
row was created. TimeStamp (SNMPv2-TC) .1.3.6.1.4.1.9.9.585.1.2.1.1.1 |
ipslaEtherJAggMeasuredCmpletionsThe number of Ethernet jitter operations that have completed
successfully.ro Counter32 UNITS "completions" .1.3.6.1.4.1.9.9.585.1.2.1.1.2 |
ipslaEtherJAggMeasuredOvThrshldsThe number of Ethernet jitter operations that violate
jitterAvg threshold which is defined in RttMonReactVar.ro Counter32 UNITS "operations" .1.3.6.1.4.1.9.9.585.1.2.1.1.3 |
ipslaEtherJAggMeasuredNumRTTsThe number of RTTs that are successfully measured.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.4 |
ipslaEtherJAggMeasuredRTTSumsThe sum of RTTs that are successfully measured for this
ipslaEtherJAggMeasuredStartTimeId hourly group. The number
of the successfully measured RTT is stored in the
ipslaEtherJAggMeasuredNumRTTs.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.5 |
ipslaEtherJAggMeasuredRTTSum2LsThe sum of squares of RTTs that are successfully measured
(low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.6 |
ipslaEtherJAggMeasuredRTTSum2HsThe sum of squares of RTTs that are successfully measured
(high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.7 |
ipslaEtherJAggMeasuredRTTMinThe minimum of RTTs that were successfully measured.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.8 |
ipslaEtherJAggMeasuredRTTMaxThe maximum of RTTs that were successfully measured.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.9 |
ipslaEtherJAggMeasuredMinPosSDThe minimum of absolute values of all positive jitter values
for frames sent from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.10 |
ipslaEtherJAggMeasuredMaxPosSDThe maximum of absolute values of all positive jitter values
for frames sent from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.11 |
ipslaEtherJAggMeasuredNumPosSDsThe number of all positive jitter values for frames
sent from source to destination.ro Counter32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.2.1.1.12 |
ipslaEtherJAggMeasuredSumPosSDsThe sum of all positive jitter values for frames sent
from source to destination. The number of such values
is stored in ipslaEtherJAggMeasuredNumPosSDs.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.13 |
ipslaEtherJAggMeasuredSum2PSDLsThe sum of square of all positive jitter values for frames
sent from source to destination (low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.14 |
ipslaEtherJAggMeasuredSum2PSDHsThe sum of square of all positive jitter values for frames
sent from source to destination (high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.15 |
ipslaEtherJAggMeasuredMinNegSDThe minimum of all negative jitter values for frames sent
from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.16 |
ipslaEtherJAggMeasuredMaxNegSDThe maximum of all negative jitter values for frames sent
from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.17 |
ipslaEtherJAggMeasuredNumNegSDsThe number of all negative jitter values for frames
sent from source to destination.ro Counter32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.2.1.1.18 |
ipslaEtherJAggMeasuredSumNegSDsThe sum of all negative jitter values for frames sent
from source to destination. The number of such values
is stored in ipslaEtherJAggMeasuredNumNegSDs.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.19 |
ipslaEtherJAggMeasuredSum2NSDLsThe sum of square of all negative jitter values for
frames sent from source to destination (low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.20 |
ipslaEtherJAggMeasuredSum2NSDHsThe sum of square of all negative jitter values for
frames sent from source to destination (high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.21 |
ipslaEtherJAggMeasuredMinPosDSThe minimum of all positive jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.22 |
ipslaEtherJAggMeasuredMaxPosDSThe maximum of all positive jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.23 |
ipslaEtherJAggMeasuredNumPosDSesThe number of all positive jitter values for frames
sent from destination to source.ro Counter32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.2.1.1.24 |
ipslaEtherJAggMeasuredSumPosDSesThe sum of all positive jitter values for frames sent
from destination to source. The number of such values
is stored in ipslaEtherJAggMeasuredNumPosDSes.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.25 |
ipslaEtherJAggMeasuredSum2PDSLsThe sum of squares of all positive jitter values for
frames sent from destination to source (low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.26 |
ipslaEtherJAggMeasuredSum2PDSHsThe sum of squares of all positive jitter values for
frames sent from destination to source (high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.27 |
ipslaEtherJAggMeasuredMinNegDSThe minimum of all negative jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.28 |
ipslaEtherJAggMeasuredMaxNegDSThe maximum of all negative jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.29 |
ipslaEtherJAggMeasuredNumNegDSesThe number of all negative jitter values for frames
sent from destination to source.ro Counter32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.2.1.1.30 |
ipslaEtherJAggMeasuredSumNegDSesThe sum of all negative jitter values for frames sent
from destination to source. The number of such values
is stored in ipslaEtherJAggMeasuredNumNegDSes.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.31 |
ipslaEtherJAggMeasuredSum2NDSLsThe sum of squares of all negative jitter values for
frames sent from destination to source (low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.32 |
ipslaEtherJAggMeasuredSum2NDSHsThe sum of squares of all negative jitter values for
frames sent from destination to source (high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.33 |
ipslaEtherJAggMeasuredFrmLossSDsThe number of lost frames when sent from source to destination.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.34 |
ipslaEtherJAggMeasuredFrmLssDSesThe number of lost frames when sent from destination to source.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.35 |
ipslaEtherJAggMeasuredFrmOutSeqsThe number of frames arrived out of sequence.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.36 |
ipslaEtherJAggMeasuredFrmMIAesThe number of frames that are lost for which we cannot determine
the direction.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.37 |
ipslaEtherJAggMeasuredFrmSkippdsThe number of frames that are skipped per operation because
the router could not send the packet out.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.38 |
ipslaEtherJAggMeasuredErrorsThe number of occasions when an Ethernet jitter operation could
not be initiated because of an internal error.ro Counter32 UNITS "errors" .1.3.6.1.4.1.9.9.585.1.2.1.1.39 |
ipslaEtherJAggMeasuredBusiesThe number of occasions when an Ethernet jitter operation could
not be initiated because a previous Ethernet jitter operation
has not been completed.ro Counter32 UNITS "busies" .1.3.6.1.4.1.9.9.585.1.2.1.1.40 |
ipslaEtherJAggMeasuredOWSumSDsThe sum of one way trip time from source to destination.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.41 |
ipslaEtherJAggMeasuredOWSum2SDLsThe sum of squares of one way trip time from source to
destination (low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.42 |
ipslaEtherJAggMeasuredOWSum2SDHsThe sum of squares of one way trip time from source to
destination (high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.43 |
ipslaEtherJAggMeasuredOWMinSDThe minimum of all one way trip time from source to
destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.44 |
ipslaEtherJAggMeasuredOWMaxSDThe maximum of all one way trip time from source to
destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.45 |
ipslaEtherJAggMeasuredOWSumDSesThe sum of one way trip time from destination to source.ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.46 |
ipslaEtherJAggMeasuredOWSum2DSLsThe sum of squares of one way trip time from destination
to source (low order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.47 |
ipslaEtherJAggMeasuredOWSum2DSHsThe sum of squares of one way trip time from destination
to source (high order 32 bits).ro Counter32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.48 |
ipslaEtherJAggMeasuredOWMinDSThe minimum of all one way trip time from destination
to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.49 |
ipslaEtherJAggMeasuredOWMaxDSThe maximum of all one way trip time from destination
to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.50 |
ipslaEtherJAggMeasuredNumOWsThe number of one way trip time that are successfully
measured.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.51 |
ipslaEtherJAggMeasuredAvgJThe average of positive and negative jitter
values for source-to-destination and
destination-to-source direction.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.52 |
ipslaEtherJAggMeasuredAvgJSDThe average of positive and negative jitter
values in source-to-destination direction.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.53 |
ipslaEtherJAggMeasuredAvgJDSThe average of positive and negative jitter
values in destination-to-source direction.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.54 |
ipslaEtherJAggMinSucFrmLossThe minimum number of frames that are dropped
successively.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.55 |
ipslaEtherJAggMaxSucFrmLossThe maximum number of frames that are dropped
successively.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.56 |
ipslaEtherJAggMeasuredIAJOutInter-arrival jitter (RFC 1889) at responderro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.57 |
ipslaEtherJAggMeasuredIAJInInter-arrival jitter (RFC 1889) at senderro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.58 |
ipslaEtherJAggMeasuredFrmLateAsThe number of frames that arrived after the timeout.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.59 |
ipslaEtherJAggMeasuredFrmUnPrcdsThe number of frames that arrived but could not be
processed due to the internal error.ro Counter32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.60 |
ipslaEtherJAggMeasuredMaxPosTWThe two-way maximum of all positive jitter values for
frames.ro Gauge32 UNITS "microseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.61 |
ipslaEtherJAggMeasuredMaxNegTWThe two-way maximum of all negative jitter values for
frames.ro Gauge32 UNITS "microseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.62 |
ipslaEtherJAggMeasuredMinPosTWThe two-way minimum of all positive jitter values for
frames.ro Gauge32 UNITS "microseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.63 |
ipslaEtherJAggMeasuredMinNegTWThe two-way minimum of all negative jitter values for
frames.ro Gauge32 UNITS "microseconds" .1.3.6.1.4.1.9.9.585.1.2.1.1.64 |
ipslaEtherJAggMeasuredTxFrmsSDThe number of data frames sent from source to
destination.ro Counter64 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.65 |
ipslaEtherJAggMeasuredTxFrmsDSThe number of data frames sent from destination to
source.ro Counter64 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.66 |
ipslaEtherJAggMeasuredRxFrmsSDThe number of data frames received from source to
destination.ro Counter64 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.67 |
ipslaEtherJAggMeasuredRxFrmsDSThe number of data frames received from destination to
source.ro Counter64 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.68 |
ipslaEtherJAggMeasuredMinLossNumeratorSDThe numerator for the minimum loss ratio recorded in
the source to destination direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.69 |
ipslaEtherJAggMeasuredMinLossDenominatorSDThe denominator for the minimum loss ratio recorded in
the source to destination direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.70 |
ipslaEtherJAggMeasuredMaxLossNumeratorSDThe numerator for the maximum loss ratio recorded in
the source to destination direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.71 |
ipslaEtherJAggMeasuredMaxLossDenominatorSDThe denominator for the maximum loss ratio recorded in
the source to destination direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.72 |
ipslaEtherJAggMeasuredAvgLossNumeratorSDThe numerator for the average loss ratio recorded in
the source to destination direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.73 |
ipslaEtherJAggMeasuredAvgLossDenominatorSDThe denominator for the average loss ratio recorded in
the source to destination direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.74 |
ipslaEtherJAggMeasuredMinLossNumeratorDSThe numerator for the minimum loss ratio recorded in
the destination to source direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.75 |
ipslaEtherJAggMeasuredMinLossDenominatorDSThe denominator for the minimum loss ratio recorded in
the destination to source direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.76 |
ipslaEtherJAggMeasuredMaxLossNumeratorDSThe numerator for the maximum loss ratio recorded in
the destination to source direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.77 |
ipslaEtherJAggMeasuredMaxLossDenominatorDSThe denominator for the maximum loss ratio recorded in
the destination to source direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.78 |
ipslaEtherJAggMeasuredAvgLossNumeratorDSThe numerator for the average loss ratio recorded in
the destination to source direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.79 |
ipslaEtherJAggMeasuredAvgLossDenominatorDSThe denominator for the average loss ratio recorded in
the destination to source direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.80 |
ipslaEtherJAggMeasuredCumulativeLossNumeratorSDThe numerator for the loss ratio recorded in
the source to destination direction. This value is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.81 |
ipslaEtherJAggMeasuredCumulativeLossDenominatorSDThe denominator for the loss ratio recorded in
the source to destination direction. This value is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.82 |
ipslaEtherJAggMeasuredCumulativeAvgLossNumeratorSDThe numerator for the average loss ratio recorded in
the source to destination direction. This value is
cumulative over the perios of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.83 |
ipslaEtherJAggMeasuredCumulativeAvgLossDenominatorSDThe denominator for the average loss ratio recorded in
the source to destination direction. This value is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.84 |
ipslaEtherJAggMeasuredCumulativeLossNumeratorDSThe numerator for the loss ratio recorded in
the destination to source direction. This value is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.85 |
ipslaEtherJAggMeasuredCumulativeLossDenominatorDSThe denominator for the loss ratio recorded in
the destination to source direction. This valued is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.86 |
ipslaEtherJAggMeasuredCumulativeAvgLossNumeratorDSThe numerator for the average loss ratio recorded in
the destination to source direction. This value is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.87 |
ipslaEtherJAggMeasuredCumulativeAvgLossDenominatorDSThe denominator for the average loss ratio recorded in
the destination to source direction. This value is
cumulative over the period of this interval.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.2.1.1.88 |
ipslaEthernetLatestOper OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.1.3 |
ipslaEtherJitterLatestStatsTableThe 'ethernetJitter' operation sends out frames at the
frequency specified by rttMonCtrlAdminFrequency.
This table contains the statistics calculated for the
latest sent frames.
Each conceptual row in this table corresponds to an
'ethernetJitter' operation defined in rttMonCtrlAdminTable
and has same index as rttMonCtrlAdminTable. SEQUENCE OF IpslaEtherJitterLatestStatsEntry .1.3.6.1.4.1.9.9.585.1.3.1 |
ipslaEtherJitterLatestStatsEntryA collection of objects that record the latest Ethernet jitter
operation.
An entry is created only when the following
objects are valid.
- rttMonCtrlAdminRttType
- rttMonEchoAdminProtocol
The entry will start to collect data when rttMonCtrlAdminStatus
is in 'active' state. The entry will be removed when the
rttMonCtrlAdminStatus is changed to 'destroy' state. IpslaEtherJitterLatestStatsEntry .1.3.6.1.4.1.9.9.585.1.3.1.1 |
ipslaEtherJitterLatestNumRTTThe number of RTT's that were successfully measured.ro Gauge32 UNITS "packets" .1.3.6.1.4.1.9.9.585.1.3.1.1.1 |
ipslaEtherJitterLatestRTTSumThe sum of RTT's that are successfully measured.
The number of successfully measured RTT is
stored in ipslaEtherJitterLatestNumRTT.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.2 |
ipslaEtherJitterLatestRTTSum2The sum of squares of RTT's that are successfully measured.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.3 |
ipslaEtherJitterLatestRTTMinThe minimum of RTT's that were successfully measured.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.4 |
ipslaEtherJitterLatestRTTMaxThe maximum of RTT's that were successfully measured.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.5 |
ipslaEtherJitterLatestMinPosSDThe minimum of all positive jitter values for frames sent
from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.6 |
ipslaEtherJitterLatestMaxPosSDThe maximum of all positive jitter values for frames sent
from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.7 |
ipslaEtherJitterLatestNumPosSDThe number of all positive jitter values for frames
sent from source to destination.ro Gauge32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.3.1.1.8 |
ipslaEtherJitterLatestSumPosSDThe sum of all positive jitter values for frames sent
source to destination. The number of such values
is stored in ipslaEtherJitterLatestNumPosSD.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.9 |
ipslaEtherJitterLatestSum2PosSDThe sum of square of all positive jitter values for
frames sent from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.10 |
ipslaEtherJitterLatestMinNegSDThe minimum of absolute values of all negative jitter values
for frames sent from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.11 |
ipslaEtherJitterLatestMaxNegSDThe maximum of absolute values of all negative jitter values
for frames sent from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.12 |
ipslaEtherJitterLatestNumNegSDThe number of all negative jitter values for frames
sent from source to destination.ro Gauge32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.3.1.1.13 |
ipslaEtherJitterLatestSumNegSDThe sum of all negative jitter values for frames sent
from source to destination. The number of such values
is stored in ipslaEtherJitterLatestNumNegSD.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.14 |
ipslaEtherJitterLatestSum2NegSDThe sum of square of all negative jitter values for
frames sent from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.15 |
ipslaEtherJitterLatestMinPosDSThe minimum of all positive jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.16 |
ipslaEtherJitterLatestMaxPosDSThe maximum of all positive jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.17 |
ipslaEtherJitterLatestNumPosDSThe number of all positive jitter values for frames
sent from destination to source.ro Gauge32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.3.1.1.18 |
ipslaEtherJitterLatestSumPosDSThe sum of all positive jitter values for frames sent
from destination to source. The number of such values
is stored in ipslaEtherJitterLatestNumPosDS.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.19 |
ipslaEtherJitterLatestSum2PosDSThe sum of squares of all positive jitter values for
frames sent from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.20 |
ipslaEtherJitterLatestMinNegDSThe minimum of all negative jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.21 |
ipslaEtherJitterLatestMaxNegDSThe maximum of all negative jitter values for frames sent
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.22 |
ipslaEtherJitterLatestNumNegDSThe number of all negative jitter values for frames
sent from destination to source.ro Gauge32 UNITS "occurrences" .1.3.6.1.4.1.9.9.585.1.3.1.1.23 |
ipslaEtherJitterLatestSumNegDSThe sum of all negative jitter values for frames sent
from destination to source. The number of such values
is stored in ipslaEtherJitterLatestNumNegDS.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.24 |
ipslaEtherJitterLatestSum2NegDSThe sum of squares of all negative jitter values for
frames sent from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.25 |
ipslaEtherJitterLatestFrmLossSDThe number of frames lost when sent from source to destination.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.26 |
ipslaEtherJitterLatestFrmLossDSThe number of frames lost when sent from destination to source.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.27 |
ipslaEtherJitterLatestFrmOutSeqThe number of frames arrived out of sequence.ro Gauge32 UNITS "packets" .1.3.6.1.4.1.9.9.585.1.3.1.1.28 |
ipslaEtherJitterLatestFrmMIAThe number of frames that are lost for which we cannot determine
the direction.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.29 |
ipslaEtherJitterLatestFrmSkippedThe number of frames in the operation that could not be
initiated due to an internal error.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.30 |
ipslaEtherJitterLatestSenseAn application specific sense code for the completion status.ro RttResponseSense (CISCO-RTTMON-TC-MIB) .1.3.6.1.4.1.9.9.585.1.3.1.1.31 |
ipslaEtherJitterLatestFrmLateAThe number of frames that arrived after the timeout.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.32 |
ipslaEtherJitterLatestMinSucFrmLThe minimum number of frames that are dropped
successively.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.33 |
ipslaEtherJitterLatestMaxSucFrmLThe maximum number of frames that are dropped
successively.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.34 |
ipslaEtherJitterLatestOWSumSDThe sum of one way trip time from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.35 |
ipslaEtherJitterLatestOWSum2SDThe sum of squares of one way trip time from source to
destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.36 |
ipslaEtherJitterLatestOWMinSDThe minimum of all one way trip time from
source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.37 |
ipslaEtherJitterLatestOWMaxSDThe maximum of all one way trip time from
source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.38 |
ipslaEtherJitterLatestOWSumDSThe sum of one way trip time from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.39 |
ipslaEtherJitterLatestOWSum2DSThe sum of squares of one way trip time from
destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.40 |
ipslaEtherJitterLatestOWMinDSThe minimum of all one way trip time from
destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.41 |
ipslaEtherJitterLatestOWMaxDSThe maximum of all one way trip time from
destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.42 |
ipslaEtherJitterLatestNumOWThe number of successful one way trip time measurements.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.43 |
ipslaEtherJitterLatestAvgJitterThe average of positive and negative jitter values
in Source-to-Destination and Destination-to-Source
direction.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.44 |
ipslaEtherJitterLatestAvgSDJThe average of positive and negative jitter values
from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.45 |
ipslaEtherJitterLatestAvgDSJThe average of positive and negative jitter values
from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.46 |
ipslaEtherJitterLatestOWAvgSDThe average one way trip time from source to destination.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.47 |
ipslaEtherJitterLatestOWAvgDSThe average one way trip time from destination to source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.48 |
ipslaEtherJitterLatestIAJOutInter-arrival jitter (RFC 1889) at responder.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.49 |
ipslaEtherJitterLatestIAJInInter-arrival jitter (RFC 1889) at source.ro Gauge32 UNITS "milliseconds" .1.3.6.1.4.1.9.9.585.1.3.1.1.50 |
ipslaEtherJLatestFrmUnProcessedThe number of frames in the operation that could not be
processed due to high CPU load.ro Gauge32 UNITS "frames" .1.3.6.1.4.1.9.9.585.1.3.1.1.51 |
ciscoIpSlaEthernetMIBConform OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.2 |
ciscoIpSlaEthernetCompliances OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.2.1 |
ciscoIpSlaEthernetMIBGroups OBJECT IDENTIFIER .1.3.6.1.4.1.9.9.585.2.2 |