Wellfleet-MODULE-MIB
AI MIB Summary
Standard SNMP MIB module defining data structures for Wellfleet-MODULE-MIB.
33
Objects
Active
Status
3
Dependencies
Imported Objects
Objects
33 total| Object Name |
|---|
IMPORTSHardware Module Table
Filled in by the Module Driver. Read by SNMP to
build the driver load records SEQUENCE OF WfHwModuleEntry .1.3.6.1.4.1.18.3.1.4.1 |
wfModuleTableThis table is used by the module driver for Barracuda SEQUENCE OF WfModuleEntry .1.3.6.1.4.1.18.3.1.4.2 |
wfModuleEntryHardware specific information about a slot. WfModuleEntry .1.3.6.1.4.1.18.3.1.4.2.1 |
wfModuleDeletecreate/delete parameterrw Enumeration .1.3.6.1.4.1.18.3.1.4.2.1.1 |
wfModuleSlotA unique value for each slot.
Its value ranges between 1 and 14.
There are products in this family that contain 1, 5, and 14 slots.ro INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.2 |
wfModuleTimerFrequencyThis value determines the frequency for the buffer balance
algorithm to runrw Enumeration .1.3.6.1.4.1.18.3.1.4.2.1.3 |
wfModuleBufferBalanceEnable/Disable buffer balancing algorithm selectivelyrw Enumeration .1.3.6.1.4.1.18.3.1.4.2.1.4 |
wfModuleFddiWeightThis value determines the weight of the fddi line
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.5 |
wfModuleTokenRingWeightThis value determines the weight of the token-ring
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.6 |
wfModuleCsmacdWeightThis value determines the weight of the csmacd line
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.7 |
wfModuleSyncWeightThis value determines the weight of the sync line
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.8 |
wfModuleFreeBufferCreditsThis attribute indicates the number of buffers
available to line drivers but not used by themro INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.9 |
wfModuleTotalBufferCreditsThis attribute indicates the total number of buffers
available to line driversro INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.10 |
wfModuleRestartThis attribute should be touched after the queue
lengths are configured in the line-recordsrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.11 |
wfModuleCsmacd100WeightThis value determines the weight of the csmacd 100MB line
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.12 |
wfModuleBisyncWeightThis value determines the weight of the bisync line
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.13 |
wfModuleHssiWeightThis value determines the weight of the hssi line
for the buffer balancing algorithmrw INTEGER .1.3.6.1.4.1.18.3.1.4.2.1.14 |
wfHwModuleEntryHardware specific information about a slot. WfHwModuleEntry .wfHwModuleTable.1 |
wfHwModuleSlotA unique value for each slot.
Its value ranges between 1 and 4.ro INTEGER .wfHwModuleTable.1.1 |
wfHwModuleModuleThis value ranges between 1 and 4ro INTEGER .wfHwModuleTable.1.2 |
wfHwModuleModIdOptModule IDs for the net modules modulesro Enumeration .wfHwModuleTable.1.3 |
wfHwModuleModRevThe revision level of the module. High byte is in upper 2 bytes.ro OCTET STRING .wfHwModuleTable.1.4 |
wfHwModuleModSerialNumberThe serial number of the module.ro OCTET STRING .wfHwModuleTable.1.5 |
wfHwModuleArtworkRevThe Artwork Revision number of the modulero DisplayString (SNMPv2-TC) .wfHwModuleTable.1.6 |
wfHwModuleMemorySize1Size (in bytes) of memory #1.ro INTEGER .wfHwModuleTable.1.7 |
wfHwModuleMemorySize2Size (in bytes) of memory #2.ro INTEGER .wfHwModuleTable.1.8 |
wfHwModuleDaughterBdIdOptDaughterboard IDs that may be attached to net modulesro INTEGER .wfHwModuleTable.1.9 |
wfHwModuleLEDStatus1Bit mask representing the status of the LEDs on the module.
Each LED is represented by 2 bits. LED #1 status is
indicated by the 2 least significant bits. LED #16 status
is indicated by the 2 most significant bits. How this bit
mask is interpreted depends on the module ID. For example,
some modules use this value to report what color the LED
is currently set to ('00' off, '01' yellow, '10' green).
This value can be used by a NMS that needs to know this
information for whatever reason. Some modules may not
support this value in which case it should be set to zero.ro INTEGER .wfHwModuleTable.1.10 |
wfHwModuleLEDState1Bit mask representing the state of the LEDs on the module.
Each LED is represented by 2 bits. LED #1 state is
indicated by the 2 least significant bits. LED #16 state
is indicated by the 2 most significant bits. How this bit
mask is interpreted depends on the module ID. For example,
some modules use this value to indicate a LED is flashing
(value of '01') or a solid color (value of '00').
This value can be used by a NMS that needs to know this
information for whatever reason. Some modules may not
support this value in which case it should be set to zero.ro INTEGER .wfHwModuleTable.1.11 |
wfHwModuleLEDStatus2Bit mask representing the status of the LEDs on the module.
Each LED is represented by 2 bits. LED #17 status is
indicated by the 2 least significant bits. LED #32 status
is indicated by the 2 most significant bits. How this bit
mask is interpreted depends on the module ID. For example,
some modules use this value to report what color the LED
is currently set to ('00' off, '01' yellow, '10' green).
This value can be used by a NMS that needs to know this
information for whatever reason. Some modules may not
support this value in which case it should be set to zero.ro INTEGER .wfHwModuleTable.1.12 |
wfHwModuleLEDState2Bit mask representing the state of the LEDs on the module.
Each LED is represented by 2 bits. LED #17 state is
indicated by the 2 least significant bits. LED #32 state
is indicated by the 2 most significant bits. How this bit
mask is interpreted depends on the module ID. For example,
some modules use this value to indicate a LED is flashing
(value of '01') or a solid color (value of '00').
This value can be used by a NMS that needs to know this
information for whatever reason. Some modules may not
support this value in which case it should be set to zero.ro INTEGER .wfHwModuleTable.1.13 |
wfHwModuleLEDStatus3Bit mask representing the status of the LEDs on the module.
Each LED is represented by 2 bits. LED #33 status is
indicated by the 2 least significant bits. LED #48 status
is indicated by the 2 most significant bits. How this bit
mask is interpreted depends on the module ID. For example,
some modules use this value to report what color the LED
is currently set to ('00' off, '01' yellow, '10' green).
This value can be used by a NMS that needs to know this
information for whatever reason. Some modules may not
support this value in which case it should be set to zero.ro INTEGER .wfHwModuleTable.1.14 |
wfHwModuleLEDState3Bit mask representing the state of the LEDs on the module.
Each LED is represented by 2 bits. LED #33 state is
indicated by the 2 least significant bits. LED #48 state
is indicated by the 2 most significant bits. How this bit
mask is interpreted depends on the module ID. For example,
some modules use this value to indicate a LED is flashing
(value of '01') or a solid color (value of '00').
This value can be used by a NMS that needs to know this
information for whatever reason. Some modules may not
support this value in which case it should be set to zero.ro INTEGER .wfHwModuleTable.1.15 |