DEVICE-MIB
AI MIB Summary
The DEVICE-MIB module provides chassis-level telemetry for Coriolis network appliances, specifically exposing hardware inventory, physical port status, and environmental sensor data for system health monitoring.
The MIB module for chassis level information for coriolis boxes
Main OID:
deviceMIB.1.3.6.1.4.1.3582.4.1.4.2.1
106
Objects
Active
Status
6
Dependencies
Imported Objects
Objects
106 total| Object Name |
|---|
deviceMIBThe MIB module for chassis level information for coriolis boxes MODULE-IDENTITY .1.3.6.1.4.1.3582.4.1.4.2.1 |
RFC1155-SMIThe MIB module for chassis level information for coriolis boxes Unknown .1.3.6.1.4.1.3582.4.1.4.2.1 |
chassis OBJECT IDENTIFIER .1.3.6.1.4.1.3582.4.1.4.2.2 |
chassisAutoConfigConfiguration of the element - is it automatic?rw TruthValue (SNMPv2-TC) .1.3.6.1.4.1.3582.4.1.4.2.2.1 |
chassisIpAddrThe ip address of the element.rw IpAddress .1.3.6.1.4.1.3582.4.1.4.2.2.2 |
chassisIdThe chassis identifier of the elementro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.3 |
chassisCharacterThe character of the element that is saved in non volatile
storage. This will take affect after next cold/warm start of
the node.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.4 |
chassisElemReachStatusWhether GNE is reachable from this NE Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.5 |
chassisNumElemReachableNumber of elements reachable from this elementro INTEGER .1.3.6.1.4.1.3582.4.1.4.2.2.6 |
chassisCurrentCharacterThe character of the element that is currently being active.ro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.8 |
chassisFanStatusIndicates the status of the Chassis Fan.ro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.9 |
chassisPowerSupplyTableThe table for chassis power supply. SEQUENCE OF ChassisPowerSupplyEntry .1.3.6.1.4.1.3582.4.1.4.2.2.10 |
chassisPowerSupplyEntryEntry containing information on power supply. ChassisPowerSupplyEntry .1.3.6.1.4.1.3582.4.1.4.2.2.10.1 |
chassisPowerSupplyNumberThe index for the chassis power supply table. INTEGER .1.3.6.1.4.1.3582.4.1.4.2.2.10.1.1 |
chassisPowerSupplyStatusIndicates the status of the Chassis power supply.ro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.10.1.2 |
chassisFWStatusThe statuses for chassis firmware update or rollback.ro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.11 |
ringFWStatusThe statuses for ring firmware update or rollbackro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.12 |
ftpServerIPWhere the firmware was locatedro IpAddress .1.3.6.1.4.1.3582.4.1.4.2.2.13 |
controlFilePathPath to the new control filero OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.2.14 |
versionStringcontrol file version stringro OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.2.15 |
syslogUnknownEventAn unknown event occurs when the event Manager gets
an event-type which it doesn't know about. This is an
almost impossible event to occur..as all event-types
are first defined and made known to the event-manager.ro INTEGER .1.3.6.1.4.1.3582.4.1.4.2.2.16 |
syslogUnknownVersionFor any given image, all events will have a constant
version number. All events are preceded by a 'common_header'
which will have a version. Again, if the event-manager
doesn't recognize the version, it generates 'unknownVersion'
event. But again, this is very unlikely to happen as for any
given image, all events will have the same common_hdr version.ro INTEGER .1.3.6.1.4.1.3582.4.1.4.2.2.17 |
chassisRoutingProtThis variable is used to dynamically initiate RIP or OSPF on the switch.
Setting this variable to none causes RIP or OSPF to be shutdown if they
have been enabledrw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.2.18 |
chassisSubnetIpThis object gives the subnet IP Address of the chassis.rw IpAddress .1.3.6.1.4.1.3582.4.1.4.2.2.19 |
chassisSubnetMaskThis object provides the subnet mask of the chassis.rw IpAddress .1.3.6.1.4.1.3582.4.1.4.2.2.20 |
chassisRingsOnMasterThis object gives a comma separated list of ring IDs for
which this SNE acts as a master. This object is valid
only for an SNE.rw OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.2.21 |
chassisCurrentRingsOnMasterThis object gives the current list of ring IDs which
this master (SNE) controls. If rings are added or taken-off,
the system has to be rebooted to provide the correct list.
This is valid only for an SNE.ro OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.2.22 |
chassisFailoverPreserveRingsThis object gives a comma separated list of ring IDs that
are to be preserved across module failures.rw OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.2.23 |
systime OBJECT IDENTIFIER .1.3.6.1.4.1.3582.4.1.4.2.3 |
systimeTimingModeThe type of timing used by the device.
External (default for OptiFlow 5000)
- Primary Clock Source is always BITS1.
- Secondary Clock Source is always BITS2.
Line (default for OptiFlow 3000/3500)
- Primary Clock Source may be a switch module
or an I/O module.
- Secondary Clock Source may be a switch module,
an I/O module or the internal oscillator.
Freerun
- Clock source is the internal oscillator (Primary Clock
Source and Secondary Clock Source not used).rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.1 |
systimePriBITSFramingThis is the Primary BITS basic line framing. Default is T1-ESF-4K.
t1SF - Super Frame framing method used on T1 circuits. SF consists of
12 frames of 192 bits each, with the 193rd bit providing error
checking and other functions. SF is superseded by ESF, but is
still widely used. Also called D4 framing.
t1ESF4K - The default method. Extended Super Frame framing method used
on T1 circuits that consists of 24 frames of 192 bits each,
with the 193rd bit providing timing and other functions. ESF
is an enhanced version of SF.
t1T1DM - Data Mode.
t1T1DMAlt - Data MOde A.
t1SLC96 - Subscriber Lopp Carrier, 96 lines.
e1 - Wide-area digital transmission scheme used predominantly
in Europe that carries data at a arate of 2.048 Mbps.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.2 |
systimeSecBITSFramingThis is the Secondary BITS basic line framing. Default is T1-ESF-4K.
t1SF - Super Frame framing method used on T1 circuits. SF consists of
12 frames of 192 bits each, with the 193rd bit providing error
checking and other functions. SF is superseded by ESF, but is
still widely used. Also called D4 framing.
t1ESF4K - The default method. Extended Super Frame framing method used
on T1 circuits that consists of 24 frames of 192 bits each,
with the 193rd bit providing timing and other functions. ESF
is an enhanced version of SF.
t1T1DM - Data Mode.
t1T1DMAlt - Data MOde A.
t1SLC96 - Subscriber Lopp Carrier, 96 lines.
e1 - Wide-area digital transmission scheme used predominantly
in Europe that carries data at a arate of 2.048 Mbps.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.3 |
systimePriBITSCodingThis is the primary BITS line coding. Default is B8ZS. Valid when
timing_mode is EXT.
AMI - Alternate Mask Inversion (valid when PrimaryBITSFraming = T1).
B8ZS - Bianry 8 Zero Substitution (the default). Valid when
PrimaryBITSFraming = T1).
HDB3 - High Density Bipolar 3 (valid when PrimaryBITSFraming = E1).rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.4 |
systimeSecBITSCodingThis is the seconday BITS line coding. Default is B8ZS. Valid when
timing mode is EXT.
AMI - Alternate Mask Inversion (valid when PrimaryBITSFraming = T1).
B8ZS - Bianry 8 Zero Substitution (the default). Valid when
PrimaryBITSFraming = T1).
HDB3 - High Density Bipolar 3 (valid when PrimaryBITSFraming = E1).rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.5 |
systimePriClkSrcIdThis is the primary timing interface clock.
bits1 - Valid when the timing mode is EXT.
bits2 - Valid when the timing mode is EXT.
iosc - Internal Oscillator (valid when the timing mode is LINE.rw OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.3.6 |
systimeSecClkSrcIdThis is the secondary timing interface clock
bits1 - Valid when the timing mode is EXT.
bits2 - Valid when the timing mode is EXT.
iosc - Internal Oscillator (valid when the timing mode is LINE.rw OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.3.7 |
systimeClkReferenceAutomatic(default) - This automatically selects a Stratum 3 or better
clock from the Primary Clock Source, Secondary Clock Source, Holdover
Clock, Standby Clock or internal oscillator.
Primary - This is the permanent selection of the Primary Clock Source
if the Primary Clock Source is valid at the time of request.
Secondary - This is the permanent selection of the Secondary Clock Source
if the Secondary Clock Source is valid at the time of request.
Standby - This is the permanent selection of the Standby Clock Source
if the Standby Clock Source is valid at the time of request.
Standby / Primary - This is the permanent selection of the Standby /
Primary Clock Source if the Standby / Primary Clock Source is valid at
the time of request.
Standby / Secondary - This is the permanent selection of the Standby /
Secondary Clock Source if the Standby / Secondary Clock Source is valid
at the time of request.
Freerun - This is the permanent selection of the internal oscillator.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.8 |
systimeClkRevertiveSets the method by which the device (equipment) returns to using the
Primary Clock Source after the Primary Clock Source has failed. Options:
Enable - enables attempting to return to the Primary Clock Source at any time.
Disable - disables 'attempting at any time' and forces return to the Primary
Clock Source as defined by pri_cs_use_limit and
pri_cs_use_interval. This is the default setting. This setting
avoids excessive switching between clock sources.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.9 |
systimeStandbyClkEnableThis enables use of standby management module clock reference.
It enables using the primary clock source, secondary clock source
or holdover on the standby management module when those on the
active management module are not acceptable. The default state
is Enabled.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.10 |
systimePriCSNVTimePrimary Clock Source Normal Validation Time. This is the amount of
time required to validate the primary clock source when not in the
holdover state. Default is 3 seconds.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.11 |
systimeSecCSNVTimeSecondary Clock Source Normal Validation Time. This is the amount of
time required to validate the secondary clock source when not in the
holdover state. Default is 3 seconds.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.12 |
systimePriCSHVTimePrimary Clock Source Holdover Validation Time. This is the amount of
time required to validate the primary clock source when in the holdover
state. Default is 10 seconds.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.13 |
systimeSecCSHVTimeSecondary Clock Source Holdover Validation Time. This is the amount of
time required to validate the secondary clock source when in the holdover
state. Default is 10 seconds.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.14 |
systimePriCSUseLimitThis is the number of times the primary clock source may be
used over the time interval primary clock source use interval
(systimeSecCSUseInterval). It permits several attempts at using
the primary clock source when prior attempts did not pass the
Stratum 3 requirement. The default is 3 times.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.15 |
systimeSecCSUseLimitThis is the number of times the secondary clock source may be
used over the time interval Secondary clock source use interval
(systimeSecCSUseInterval). It permits several attempts at using
the secondary clock source when prior attempts did not pass the
Stratum 3 requirement. The default is 3 times.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.16 |
systimeStandbyCSUseLimitThis is the number of times the standby clock source may be
used over the time interval standby clock source use interval
(systimeStandbyCSUseInterval).It permits several attempts at
using the standby clock source when prior attempts did not
pass the Stratum 3 requirement. The default is 3 times.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.17 |
systimePriCSUseIntervalThis is the time interval used to reset the Primary Clock Source used
count. Ranges from 1 to 96 hours. Default is 1 hour.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.18 |
systimeSecCSUseIntervalThis is the time interval used to reset the Secondary Clock Source used
count. Ranges from 1 to 96 hours. Default is 1 hour.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.19 |
systimeStandbyCSUseIntervalThis is the time interval used to reset the Standby Clock Source used
count. Ranges from 1 to 96 hours. Default is 1 hour.rw INTEGER .1.3.6.1.4.1.3582.4.1.4.2.3.20 |
systimeCREventEnableThis generates an alarm when the clock reference used changes from either
the primary or the secondary. Default is Enable.rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.21 |
systimeCRInUseThis indicates the current clock reference.
Automatic(default) - This automatically selects a Stratum 3 or better
clock from the Primary Clock Source, Secondary Clock Source, Holdover
Clock, Standby Clock or internal oscillator.
Primary - This is the permanent selection of the Primary Clock Source
if the Primary Clock Source is valid at the time of request.
Secondary - This is the permanent selection of the Secondary Clock Source
if the Secondary Clock Source is valid at the time of request.
Standby - This is the permanent selection of the Standby Clock Source
if the Standby Clock Source is valid at the time of request.
Standby / Primary - This is the permanent selection of the Standby /
Primary Clock Source if the Standby / Primary Clock Source is valid at
the time of request.
Standby / Secondary - This is the permanent selection of the Standby /
Secondary Clock Source if the Standby / Secondary Clock Source is valid
at the time of request.
Freerun - This is the permanent selection of the internal oscillator.ro Enumeration .1.3.6.1.4.1.3582.4.1.4.2.3.22 |
systimeCRUsedCountThis indicates the number of times this clock had been used.ro Counter32 .1.3.6.1.4.1.3582.4.1.4.2.3.23 |
deviceNMSTableA table that contains information about the set of
network management stations that are allowed to
manage this device SEQUENCE OF DeviceNMSEntry .1.3.6.1.4.1.3582.4.1.4.2.4 |
deviceNMSEntryA list of information for each NMS allowed to manage this device DeviceNMSEntry .1.3.6.1.4.1.3582.4.1.4.2.4.1 |
deviceNMSIndexThe index of the Network Management Station INTEGER .1.3.6.1.4.1.3582.4.1.4.2.4.1.1 |
deviceNMSIpAddressThe IP address of the Network Management Stationrw IpAddress .1.3.6.1.4.1.3582.4.1.4.2.4.1.2 |
deviceNMSAccessTypeThis determines whether the NMS can receive traps or notrw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.4.1.3 |
deviceNMSMIBIITrapListThe bitmask describing the MIB II traps that this NMS can receive. The
MIBII traps are the following:
0 = coldStart
1 = warmStart
2 = linkDown
3 = linkUp
4 = authenticationFailure
5 = egpNeighborLoss
This is a 1 byte bit-mask. If only the least significant bit is set, it means
'coldStart' traps are allowed to be received by the device. If the bit-mask
is '00100101', it means that the device is enabled to receive the traps
coldStart, linkDown and egpNeighborLoss.rw OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.4.1.4 |
deviceNMSEnterpriseTrapListThe bitmask describing the enterprise specific traps that this NMS can receive.
These kinds of traps begin at the value 7 (values 0-6 are taken by the MIBII
traps). The bit-mask is handled in the way this example shows for a specific
trapType of (say) 55:
specificTrapType/8 = 55/8 = 6.
specificTrapType % 8 = 7.
There are 20 bytes in this mask and the 7th bit in the 6th byte is set.rw OCTET STRING .1.3.6.1.4.1.3582.4.1.4.2.4.1.5 |
deviceNMSTrapSevAllowedThis determines the trap severities the NMS can receiverw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.4.1.6 |
sysMemory OBJECT IDENTIFIER .1.3.6.1.4.1.3582.4.1.4.2.5 |
numBytesFreeThe number of bytes free in the system memoryro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.1 |
numBlocksFreeThe number of blocks free in the system memoryro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.2 |
avgBlockSizeFreeThe average block size that is free in the system memoryro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.3 |
maxBlockSizeFreeThe largest block size that is free in the memoryro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.4 |
numBytesAllocThe number of bytes of system memory that have been allocated by
tasks and system servicesro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.5 |
numBlocksAllocThe number of blocks of system memory that have been allocated in
the systemro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.6 |
avgBlockSizeAllocThe average memory block size that has been allocated in the
systemro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.7 |
memUtilizationThis gives the memory utilization in terms of percentagero Integer32 .1.3.6.1.4.1.3582.4.1.4.2.5.8 |
sysTask OBJECT IDENTIFIER .1.3.6.1.4.1.3582.4.1.4.2.6 |
taskTableRepresents the target's task table. Each entry in this table
represents a task SEQUENCE OF TaskEntry .1.3.6.1.4.1.3582.4.1.4.2.6.1 |
taskEntryEach entry contains information with regards to a task in the
system TaskEntry .1.3.6.1.4.1.3582.4.1.4.2.6.1.1 |
taskIdThis is the task ID assigned by VxWorks to a task in the
system. A taskId of zero specifies a new task.ro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.1 |
taskNameThis is the name of the VxWorks task. This value can
only be specified (set) at task creation.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.2 |
taskPriorityThe priority of the VxWorks task. This value can be
in the range from 0, the highest priority,
to 255, the lowest priority.rw Integer32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.3 |
taskStatusThis field specifies the current task status. It
can be used to change the current task state.
For example, to suspend a task, the value of
taskStatus is changed to task-suspended,
to delete a task the value is changed to
task-deleted, etc...rw Enumeration .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.4 |
taskOptionsThis value represents the sum of the following
options:
value option
1 VX_SUPERVISOR_MODE(read-only)
2 VX_UNBREAKABLE (break points ignored)
4 VX_DEALLOC_STACK (deallocate stack)
8 VX_FP_TASK (floating point support)
16 VX_STDIO (read-only)
128 VX_PRIVATE_ENV (private env. variables)
256 VX_NO_STACK_FILL (don't fill stack)
All the options above can be set at task creation time.
However, once the task is executing the only option
that can be changed is VX_UNBREAKABLE. The option is
toggled based on the current setting.rw Integer32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.5 |
taskMainThis is the name of the entry function for the VxWorks
task. This name can only be specified when a task
is created (entry added in the table). The symbol
must exist in the VxWorks target.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.6 |
taskStackPtrThis is the saved stack pointer for the task.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.7 |
taskStackBaseThis is the address of the bottom of the stack of
the VxWorks task.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.8 |
taskStackPosThis is the effective top of the stack in the current
task state.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.9 |
taskStackEndThis is the address of the top of the stack of the
VxWorks task.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.10 |
taskStackSizeThis is the actual size of the stack in bytes. The
size of the stack can only be specified at task
creation (adding an entry to the table).rw Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.11 |
taskStackSizeUsageThe number of bytes currently in use by the task from
the stack.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.12 |
taskStackMaxUsedThis is the maximum number of bytes that have been used
by the task from the stack.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.13 |
taskStackFreeThis is the number of bytes that are free currently in
the task stack.ro Unsigned32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.14 |
taskErrorStatusThis is the most recent error status for this task.ro Integer32 .1.3.6.1.4.1.3582.4.1.4.2.6.1.1.15 |
emSysLogCorruptEvent log entries got corrupted TRAP-TYPE .1.3.6.1.4.1.5812.0.8 |
emSysLogCapacityEvent logs nearing capacity TRAP-TYPE .1.3.6.1.4.1.5812.0.9 |
emSysLogBackUpDeleteEvent backup log file deleted TRAP-TYPE .1.3.6.1.4.1.5812.0.10 |
emSysLogEvIdWrapEvent Id wrapped TRAP-TYPE .1.3.6.1.4.1.5812.0.11 |
emErrLogCorruptCorrupt error log file TRAP-TYPE .1.3.6.1.4.1.5812.0.14 |
emErrLogCapacityError logs nearing capacity TRAP-TYPE .1.3.6.1.4.1.5812.0.15 |
emErrLogBackUpDeleteBackup error log deleted TRAP-TYPE .1.3.6.1.4.1.5812.0.16 |
emErrLogEvIdWrapError event id wrapped TRAP-TYPE .1.3.6.1.4.1.5812.0.17 |
emSysLogsClearedSystem logs cleared TRAP-TYPE .1.3.6.1.4.1.5812.0.18 |
emErrLogsClearedError logs cleared TRAP-TYPE .1.3.6.1.4.1.5812.0.19 |
systimeClkReferenceChangeChange in the systiming clk reference to primary, secondary,
holdover or freerun TRAP-TYPE .1.3.6.1.4.1.5812.0.23 |
powerSupplyStatusChangeIndicates the change in power supply status of the chassis. TRAP-TYPE .1.3.6.1.4.1.5812.0.42 |
fanStatusChangeIndicates the change in fan status of the chassis. TRAP-TYPE .1.3.6.1.4.1.5812.0.43 |
ringFWActivateRing FirmWare activate event. TRAP-TYPE .1.3.6.1.4.1.5812.0.51 |
chassisFWActivateChassis FirmWare activate event. TRAP-TYPE .1.3.6.1.4.1.5812.0.52 |
ringFWUpdateRing FirmWare update event. TRAP-TYPE .1.3.6.1.4.1.5812.0.53 |
chassisFWUpdateChassis FirmWare update event. TRAP-TYPE .1.3.6.1.4.1.5812.0.54 |
sysLogUnknownEventUnknown Event. TRAP-TYPE .1.3.6.1.4.1.5812.0.57 |
sysLogUnknownVersionUnknown Version. TRAP-TYPE .1.3.6.1.4.1.5812.0.58 |