IMM-MIB
Detailed view of the defined objects, syntax rules, and hierarchical paths.
745
Objects
Active
Status
5
Dependencies
Imported Objects
Objects
745 total| Object Name |
|---|
ibm OBJECT IDENTIFIER .1.3.6.1.4.1.2 |
IMPORTSRepresents an IPv6 network address. Since MIB browsers
may require different formats, the address is
expected to be the 16 byte address in network-byte order,
and shortened formats such as 0::0 are not accepted in SET
operations. Two common examples are:
The NetSNMP command line will accept SET requests like:
snmpset -v1 -cprivate <host> s 2001:00:00:00:FFFF:CCC4:BBB2:AAA6
Other MIB browsers may require the SET request value to be formatted as:
# 0x20 0x01 0x00 0x00 0x00 0x00 0x00 0x00 0xFF 0xFF 0xCC 0xC4 0xBB 0xB2 0xAA 0xA6 OCTET STRING .1.3.6.1.4.1.2 |
ibmAgents OBJECT IDENTIFIER .1.3.6.1.4.1.2.3 |
netfinitySupportProcessorAgent OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51 |
ibmIntegratedManagementModuleMIB OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3 |
monitors OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1 |
temperature OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.1 |
tempNumberThe present number of rows in the temperature table.ro Gauge .1.3.6.1.4.1.2.3.51.3.1.1.1 |
tempTableThis table contains temperature measurement information. SEQUENCE OF TempEntry .1.3.6.1.4.1.2.3.51.3.1.1.2 |
tempEntryEach row contains parameters related to a temperature measurement channel. TempEntry .1.3.6.1.4.1.2.3.51.3.1.1.2.1 |
tempIndexThis column is used to identify a particular
temperature measurement channel.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.1.2.1.1 |
tempDescrA description of the temperature measurement
channel.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.1.2.1.2 |
tempReadingThe measured temperature.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.3 |
tempNominalReadingThe nominal temperature, if available.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.4 |
tempNonRecovLimitHighThe non-recoverable limit for the measured temperature. If
the measured value rises above this limit a trap is sent.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.5 |
tempCritLimitHighThe critical limit for the measured temperature. If
the measured value rises above this limit a trap is sent.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.6 |
tempNonCritLimitHighThe non-critical limit for the measured temperature. If
the measured value rises above this limit a trap is sent.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.7 |
tempNonRecovLimitLowThe non-recoverable limit for the measured temperature. If
the measured value falls below this limit a trap is sent.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.8 |
tempCritLimitLowThe critical limit for the measured temperature. If
the measured value falls below this limit a trap is sent.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.9 |
tempNonCritLimitLowThe non-critical limit for the measured temperature. If
the measured value falls below this limit a trap is sent.ro INTEGER UNITS "Degrees Celsius" .1.3.6.1.4.1.2.3.51.3.1.1.2.1.10 |
tempHealthStatusA description of the temperature component status.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.1.2.1.11 |
voltage OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.2 |
voltNumberThe present number of rows in the voltage table.ro Gauge .1.3.6.1.4.1.2.3.51.3.1.2.1 |
voltTableThis table contains voltage measurement information. SEQUENCE OF VoltEntry .1.3.6.1.4.1.2.3.51.3.1.2.2 |
voltEntryEach row contains parameters related to a
voltage measurement channel. VoltEntry .1.3.6.1.4.1.2.3.51.3.1.2.2.1 |
voltIndexThis column is used to identify a particular
voltage measurement channel.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.2.2.1.1 |
voltDescrA description of the voltage measurement channel.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.2.2.1.2 |
voltReadingThe measured voltage.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.3 |
voltNominalReadingThe nominal voltage, if available.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.4 |
voltNonRecovLimitHighThe high non-recoverable limit for the measured voltage. If the
measured value falls above this limit a trap is sent.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.5 |
voltCritLimitHighThe high critical limit for the measured voltage. If the
measured value rises above this limit a trap is sent.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.6 |
voltNonCritLimitHighThe high non-critical limit for the measured voltage. If the
measured value rises above this limit a trap is sent.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.7 |
voltNonRecovLimitLowThe low non-recoverable limit for the measured voltage. If the
measured value falls below this limit a trap is sent.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.8 |
voltCritLimitLowThe low critical limit for the measured voltage. If the
measured value falls below this limit a trap is sent.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.9 |
voltNonCritLimitLowThe low non-critical limit for the measured voltage. If the
measured value falls below this limit a trap is sent.ro INTEGER UNITS "Millivolts" .1.3.6.1.4.1.2.3.51.3.1.2.2.1.10 |
voltHealthStatusA description of the voltage component status.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.2.2.1.11 |
fans OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.3 |
fanNumberThe present number of rows in the fan table.ro Gauge .1.3.6.1.4.1.2.3.51.3.1.3.1 |
fanTableThis table contains fan information. SEQUENCE OF FanEntry .1.3.6.1.4.1.2.3.51.3.1.3.2 |
fanEntryEach row contains parameters related to a fan. FanEntry .1.3.6.1.4.1.2.3.51.3.1.3.2.1 |
fanIndexThis column is used to identify a particular fan.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.3.2.1.1 |
fanDescrA description of the fan measurement channel.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.3.2.1.2 |
fanSpeedFan speed expressed in percent(%) of maximum RPM.
An octet string expressed as 'ddd% of maximum' where:
d is a decimal digit or blank space for a leading zero.
If the fan is determined not to be running or
the fan speed cannot be determined, the string will
indicate 'Offline'.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.3.2.1.3 |
fanNonRecovLimitHighThe high non-recoverable limit for the measured fan. If the
measured value falls above this limit a trap is sent.ro INTEGER UNITS "RPM" .1.3.6.1.4.1.2.3.51.3.1.3.2.1.4 |
fanCritLimitHighThe high critical limit for the measured fan. If the
measured value rises above this limit a trap is sent.ro INTEGER UNITS "RPM" .1.3.6.1.4.1.2.3.51.3.1.3.2.1.5 |
fanNonCritLimitHighThe high non-critical limit for the measured fan. If the
measured value rises above this limit a trap is sent.ro INTEGER UNITS "RPM" .1.3.6.1.4.1.2.3.51.3.1.3.2.1.6 |
fanNonRecovLimitLowThe low non-recoverable limit for the measured fan. If the
measured value falls below this limit a trap is sent.ro INTEGER UNITS "RPM" .1.3.6.1.4.1.2.3.51.3.1.3.2.1.7 |
fanCritLimitLowThe low critical limit for the measured fan. If the
measured value falls below this limit a trap is sent.ro INTEGER UNITS "RPM" .1.3.6.1.4.1.2.3.51.3.1.3.2.1.8 |
fanNonCritLimitLowThe low non-critical limit for the measured fan. If the
measured value falls below this limit a trap is sent.ro INTEGER UNITS "RPM" .1.3.6.1.4.1.2.3.51.3.1.3.2.1.9 |
fanHealthStatusA description of the fan component status.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.3.2.1.10 |
systemHealth OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.4 |
systemHealthStatIndicates status of system health for the
system in which the IMM resides.
Value of 'nonRecoverable' indicates a severe error has occurred
and the system may not be functioning. A value of
'critical' indicates that a error has occurred but
the system is currently functioning properly. A value of
'nonCritical' indicates that a condition has occurred
that may change the state of the system in the future but currently
the system is working properly. A value of
'normal' indicates that the system is operating normally.ro Enumeration .1.3.6.1.4.1.2.3.51.3.1.4.1 |
systemHealthSummaryTableTable of System Health summary. Contains more detailed
information about the reasons for the overall system
health status. SEQUENCE OF SystemHealthSummaryEntry .1.3.6.1.4.1.2.3.51.3.1.4.2 |
systemHealthSummaryEntrySystem Health Summary entry SystemHealthSummaryEntry .1.3.6.1.4.1.2.3.51.3.1.4.2.1 |
systemHealthSummaryIndexSystem health summary index.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.4.2.1.1 |
systemHealthSummarySeveritySystem health summary severity.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.4.2.1.2 |
systemHealthSummaryDescriptionSystem health summary description.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.4.2.1.3 |
vpdInformation OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.5 |
immVpdTableTable of IMM VPD. SEQUENCE OF IMMVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.1 |
immVpdEntryiMBC VPD entry. IMMVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.1.1 |
immVpdIndexIMM VPD index.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.1.1.1 |
immVpdTypeIMM VPD Type. Indicates either Bios or Diag or spFimware VPDro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.1.1.2 |
immVpdVersionStringIMM VPD Version Number of the software(Bios/Diag/spFirmware).
For IMM2 the string contains both the Build ID and the Version
Number, for example, like '1AOO3A v1.0.1'.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.1.1.3 |
immVpdReleaseDateIMM VPD Release Date of when the software(Bios/Diag/spFirmware) was released.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.1.1.4 |
machineVpd OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.5.2 |
machineLevelVpd OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.5.2.1 |
machineLevelVpdMachineTypeMachine type VPD information.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.2.1.1 |
machineLevelVpdMachineModelMachine model VPD information.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.2.1.2 |
machineLevelSerialNumberMachine serial number VPD information.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.2.1.3 |
machineLevelUUIDMachine UUID(Universal Unique ID information).ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.2.1.4 |
machineLevelProductNameMachine Product Name (e.g. System x3650 M2).ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.2.1.5 |
systemComponentLevelVpdTableTable of the system component hardware VPD information. View as a
table and not as individual entries for consistent results. SEQUENCE OF SystemComponentLevelVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.17 |
systemComponentLevelVpdEntrySystem component hardware VPD entry. View as a table and not as
individual entries for consistent results. SystemComponentLevelVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.17.1 |
componentLevelVpdIndexSystem component level VPD index. View as a table and not as individual
entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.17.1.1 |
componentLevelVpdFruNumberSystem component level VPD FRU number. View as a table and not as
individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.17.1.2 |
componentLevelVpdFruNameSystem component level VPD FRU name. View as a table and not as
individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.17.1.3 |
componentLevelVpdSerialNumberSystem component level VPD serial number. View as a table and not as
individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.17.1.4 |
componentLevelVpdManufacturingIdSystem component level VPD manufacturing ID. View as a table and not as
individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.17.1.5 |
systemComponentLevelVpdTrackingTableTable of system component hardware VPD tracking activity log. View as
a table and not as individual entries for consistent results. SEQUENCE OF SystemComponentLevelVpdTrackingEntry .1.3.6.1.4.1.2.3.51.3.1.5.18 |
systemComponentLevelVpdTrackingEntrySystem component hardware VPD tracking activity log entry. View as a
table and not as individual entries for consistent results. SystemComponentLevelVpdTrackingEntry .1.3.6.1.4.1.2.3.51.3.1.5.18.1 |
componentLevelVpdTrackingIndexSystem component level VPD tracking activity log index. View as a table
and not as individual entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.18.1.1 |
componentLevelVpdTrackingFruNumberSystem component level VPD tracking activity log FRU number. View as a
table and not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.18.1.2 |
componentLevelVpdTrackingFruNameSystem component level VPD tracking activity log FRU name. View as a
table and not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.18.1.3 |
componentLevelVpdTrackingSerialNumberSystem component level VPD tracking activity log serial number. View as
a table and not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.18.1.4 |
componentLevelVpdTrackingManufacturingIdSystem component level VPD tracking activity log manufacturing ID. View
as a table and not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.18.1.5 |
componentLevelVpdTrackingActionSystem component level VPD tracking activity log action(added/removed).
View as a table and not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.18.1.6 |
componentLevelVpdTrackingTimestampSystem component level VPD tracking activity log timestanp.
View as a table and not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.5.18.1.7 |
hostMACAddressTableTable of MAC addresses of the host NICs.
For consistent results, view as a table and not as individual entries. SEQUENCE OF HostMACAddressEntry .1.3.6.1.4.1.2.3.51.3.1.5.19 |
hostMACAddressEntryHost MAC address entry.
For consistent results, view as a table and not as individual entries. HostMACAddressEntry .1.3.6.1.4.1.2.3.51.3.1.5.19.1 |
hostMACAddressIndexHost MAC address index. View as a table and not as individual
entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.19.1.1 |
hostMACAddressDescriptionDescription of the MAC Address entry. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.19.1.2 |
hostMACAddressHost MAC address must be a hexadecimal value between 000000000000 - FFFFFFFFFFFF.
This value must be in the form XX:XX:XX:XX:XX:XX View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.19.1.3 |
systemCPUVpdTableTable of the system CPU VPD information. View as a
table and not as individual entries for consistent results. SEQUENCE OF SystemCPUVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.20 |
systemCPUVpdEntrySystem CPU VPD entry. View as a table and not as
individual entries for consistent results. SystemCPUVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.20.1 |
cpuVpdIndexSystem CPU level VPD index. View as a table and not as individual
entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.20.1.1 |
cpuVpdDescriptionSystem CPU Description. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.20.1.2 |
cpuVpdSpeedSystem cpu speed in MHz. View as a table and not as
individual entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.20.1.3 |
cpuVpdIdentifierSystem CPU Identifier. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.20.1.4 |
cpuVpdTypeSystem cpu Type. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.20.1.5 |
cpuVpdFamilySystem cpu Family. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.20.1.6 |
cpuVpdCoresSystem cpu number of cores. View as a table and not as
individual entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.20.1.7 |
cpuVpdThreadsSystem cpu number of threads. View as a table and not as
individual entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.20.1.8 |
cpuVpdVoltageSystem cpu voltage in millivolts (1125 = 1.125 volts).
View as a table and not as individual entries for consistent
results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.20.1.9 |
cpuVpdDataWidthSystem cpu data width in bits. View as a table and not as
individual entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.20.1.10 |
cpuVpdHealthStatusSystem cpu health status. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.20.1.11 |
systemMemoryVpdTableTable of the system Memory VPD information. View as a
table and not as individual entries for consistent results. SEQUENCE OF SystemMemoryVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.21 |
systemMemoryVpdEntrySystem Memory VPD entry. View as a table and not as
individual entries for consistent results. SystemMemoryVpdEntry .1.3.6.1.4.1.2.3.51.3.1.5.21.1 |
memoryVpdIndexSystem Memory level VPD index. View as a table and not as individual
entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.21.1.1 |
memoryVpdDescriptionSystem memory Description (e.g. DIMM 1). View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.21.1.2 |
memoryVpdPartNumberSystem Memory Part Number. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.21.1.3 |
memoryVpdFRUSerialNumberSystem memory Serial Number. View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.21.1.4 |
memoryVpdManufactureDateSystem memory Manufacture Date in week/year format (e.g. 3609).
View as a table and not as individual entries for consistent
results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.21.1.5 |
memoryVpdTypeSystem memory Type (e.g. DDR III SDRAM). View as a table and not as
individual entries for consistent results.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.5.21.1.6 |
memoryVpdSizeSystem memory size in GigaBytes. View as a table and not as
individual entries for consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.5.21.1.7 |
memoryHealthStatusA description of the memory component status.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.5.21.1.8 |
users OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.6 |
immUsers OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.6.1 |
currentlyLoggedInTableTable of IMM users currently logged in. SEQUENCE OF CurrentlyLoggedInEntry .1.3.6.1.4.1.2.3.51.3.1.6.1.1 |
currentlyLoggedInEntryIMM users currently logged in entries. CurrentlyLoggedInEntry .1.3.6.1.4.1.2.3.51.3.1.6.1.1.1 |
currentlyLoggedInEntryIndexIndex for IMM users currently logged in.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.6.1.1.1.1 |
currentlyLoggedInEntryUserIdName for IMM users currently logged in.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.6.1.1.1.2 |
currentlyLoggedInEntryAccMethodAccess method for IMM users currently logged in.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.6.1.1.1.3 |
leds OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.8 |
identityLEDIndicates whether the front panel identity LED is on,off,
or blinking and allows user to change it.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.8.1 |
allLEDsTableTable of LEDs detailed information. SEQUENCE OF AllLEDsEntry .1.3.6.1.4.1.2.3.51.3.1.8.2 |
allLEDsEntryLEDs Details entry AllLEDsEntry .1.3.6.1.4.1.2.3.51.3.1.8.2.1 |
ledIndexThe LED index number.
For consistent results, view as a table and not as individual entries.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.8.2.1.1 |
ledIdentifierThe unique identifier for this LED
For consistent results, view as a table and not as individual entries.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.8.2.1.2 |
ledLabelText label for a LED.
For consistent results, view as a table and not as individual entries.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.8.2.1.4 |
ledStateText description which denotes color or on/off/blink state for a LED.
For consistent results, view as a table and not as individual entries.ro Enumeration .1.3.6.1.4.1.2.3.51.3.1.8.2.1.5 |
ledColorColor of this LED.
For consistent results, view as a table and not as individual entries.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.1.8.2.1.6 |
informationLEDIndicates whether the front panel Information LED is on,off,
or blinking and allows user to change it. The only value the user is
allowed to enter is 0 for off. User may not turn this LED on or cause
it to blink.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.8.3 |
osFailureCapture OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.9 |
osFailureCaptureTftpServerTo save the OS Failure screen if one has been captured,
set the IP address or host name of the TFTP server where
the file should be transferred. The address must be entered in a
dotted decimal IP string (e.g. 9.37.44.2), or equivalent for IPv6.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.9.1 |
osFailureCaptureFileNameFile name of the saved capture file on the target system.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.9.2 |
osFailureCaptureSaveStartStart saving the configuration file to the specified target file
and system. The file will exist if the OS Hang or OS Loader
watchdog is enabled and been tripped.
Using execute will cause the SNMP client to wait for the save
operation to complete.
Using execute-nowait will not cause the SNMP client to wait for
the save to complete. Instead it will save the configuration in
the background.
Note 1: Both osFailureCaptureTftpServer and
osFailureCaptureFileName must be set.
Note 2: Depending on the target, it might take up to several
seconds for the save operation to complete.
Note 3: Use osFailureCaptureStatus to confirm the status of
the last operation.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.9.3 |
osFailureCaptureSaveStatusGet the status of the last save operation which
was initiated through SNMP method. Returns nocapture(2)
if there is no OS Failure capture screen to save.ro Enumeration .1.3.6.1.4.1.2.3.51.3.1.9.4 |
fuelGauge OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.10 |
fuelGaugeInformation OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.10.1 |
fuelGaugePowerCappingPolicySettingPower Capping Policy.
No Power Limit - The maximum power limit will be determined by the active Power Redundancy policy.
Static Power Limit - Sets the overall system power limit. In a situation where powering on a component
would cause the limit to be exceeded, the component would not be permitted to power on.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.10.1.1 |
fuelGaugeStaticPowerPcapSoftMinThis field displays power capping soft minimum value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.2 |
fuelGaugeStaticPowerPcapMinThis field displays power capping minimum value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.3 |
fuelGaugeStaticPowerPcapCurrentSettingThis field is used to display or set the current power capping value.rw INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.4 |
fuelGaugeStaticPowerPcapMaxThis field displays power capping maximum value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.5 |
fuelGaugeStaticPowerPcapModeThis field is used to display or set the all Power Cap settings to AC or DC.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.10.1.6 |
fuelGaugeSystemMaxPowerThis field displays the system maximum power available value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.7 |
fuelGaugePowerRemainingThis field displays power remaining value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.8 |
fuelGaugeTotalPowerAvaialbleThis field displays the calculated total remaining power available value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.9 |
fuelGaugeTotalPowerInUseThis field displays total power in use value.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.10 |
fuelGaugeTotalThermalOutputThis field displays the total thermal output value calculated from the AC power in use.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.11 |
fuelGaugePowerConsumptionCpuThis field displays the power consumption of the processors.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.12 |
fuelGaugePowerConsumptionMemoryThis field displays the power consumption of the memory.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.13 |
fuelGaugePowerConsumptionOtherThis field displays the power consumption of other entities than processors and memory.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.1.15 |
powerPolicyInformation OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.10.2 |
powerPolicyTableTable of Power Policy information for all power domains. Reading this
table information about the available power policies that can be
configured and which is currently selected. The powerPolicyActivate
object can also be SET to select which policy should be active. SEQUENCE OF PowerPolicyEntry .1.3.6.1.4.1.2.3.51.3.1.10.2.1 |
powerPolicyEntryPower Policy Entry PowerPolicyEntry .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1 |
powerPolicyIndexThe unique idenitifier of a row in the powerPolicyTable.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1.1 |
powerPolicyNameThe short name of the power policy. The following are the possible
names and their detailed description:
Power Module Redundancy
Intended for a single AC power source into the chassis
where each Power Module is on its own dedicated circuit.
Total allowed power draw is limited to one less than the
number of Power Modules when more than one Power Module is
present. One Power Module can fail without affecting blade
operation. Multiple Power Module failures can cause
the chassis to power off. Note that some blades may not be
allowed to power on if doing so would exceed the policy power
limit.
Power Module Redundancy with Blade Throttling Allowed
Very similar to the Power Module Redundancy policy. This
policy allows you to draw more total power; however, capable
blades may be allowed to throttle down if one Power Module fails.
Basic Power Management
Total allowed power is higher than other policies and is limited only
by the total power capacity of all the Power Modules up to the maximum
of chassis power rating. This is the least conservative approach, since
it does not provide any protection for AC power source or Power Module
failure. If any single power supply fails, blade and/or chassis
operation may be affected.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1.2 |
powerPolicyPwrSupplyFailureLimitThe maximum number of power supplies that can fail in a chassis
while still providing redundancy.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1.3 |
powerPolicyMaxPowerLimitThe maximum power available (in watts), based on the number of power modules and
the Power Management Policy setting.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1.4 |
powerPolicyEstimatedUtilizationThe estimated utilization (as a percentage) based on current power usage.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1.5 |
powerPolicyActivateWhen read, this object provides the status of this power policy. If the
value is enabled(1), it means this is the active power policy for the
associated domain. When set to a value of enabled(1), the power policy
will be made the active one for the associated domain. A set of disabled(0)
is not allowed.
The SET may fail when the user goes from a less restrictive policy
to a more restrictive policy, e.g. no power management to redundant power
modules.
This happens because the IMM might have allocated more power for components
in the less restrictive policy. Then if a user wants to go to a more restrictive
policy, the power available may be lower than what was already allocated.
The SET should always succeed if a user goes from a more restrictive to
a less restrictive policy.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.10.2.1.1.6 |
powerPowerTrending OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.10.3 |
powerTrendingPeriodSpecify time period for power domain 1 power trending information
table view.
NOTE: This time period should be configured before displaying the
following Power Trending Information table for Power Domain.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.10.3.1 |
powerTrendingPowerTypeThis field is used to display or set the power type displayed in the Power Trending Table.rw Enumeration .1.3.6.1.4.1.2.3.51.3.1.10.3.2 |
powerTrendingSampleTableTable of Power Domain 1 Power Trending Information. SEQUENCE OF PowerTrendingSampleEntry .1.3.6.1.4.1.2.3.51.3.1.10.3.3 |
powerTrendingSampleEntryPower Domain 1 Power Trending Sample entry. PowerTrendingSampleEntry .1.3.6.1.4.1.2.3.51.3.1.10.3.3.1 |
powerTrendingSampleIndexPower Trending Sample Table Index.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.3.3.1.1 |
powerTrendingSampleTimeStampPower Trending Sample Table Timestamp.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.1.10.3.3.1.2 |
powerTrendingSampleAvePower Trending Table Average Power.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.3.3.1.3 |
powerTrendingSampleMinPower Trending Table Minimum Power.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.3.3.1.4 |
powerTrendingSampleMaxPower Trending Table Maximum Power.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.10.3.3.1.5 |
powerModule OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.11 |
powerNumberThe present number of rows in the power module table.ro Gauge .1.3.6.1.4.1.2.3.51.3.1.11.1 |
powerTableThis table contains power inventory information. SEQUENCE OF PowerEntry .1.3.6.1.4.1.2.3.51.3.1.11.2 |
powerEntryEach row contains parameters related to a power module inventory channel. PowerEntry .1.3.6.1.4.1.2.3.51.3.1.11.2.1 |
powerIndexThis column is used to identify a particular power module inventory channel.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.11.2.1.1 |
powerFruNamepower module FRU name.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.11.2.1.2 |
powerPartNumberpower module Part Number. View as a table and not as individual entries for consistent results.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.11.2.1.3 |
powerFRUNumberpower module FRU Number. View as a table and not as individual entries for consistent results.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.11.2.1.4 |
powerFRUSerialNumberpower module Serial Number. View as a table and not as individual entries for consistent results.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.11.2.1.5 |
powerHealthStatusA description of the power module status.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.11.2.1.6 |
disks OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.1.12 |
diskNumberThe present number of rows in the disk module table.ro Gauge .1.3.6.1.4.1.2.3.51.3.1.12.1 |
diskTableThis table contains disk inventory information. SEQUENCE OF DiskEntry .1.3.6.1.4.1.2.3.51.3.1.12.2 |
diskEntryEach row contains parameters related to a disk module inventory channel. DiskEntry .1.3.6.1.4.1.2.3.51.3.1.12.2.1 |
diskIndexThis column is used to identify a particular
disk module inventory channel.ro INTEGER .1.3.6.1.4.1.2.3.51.3.1.12.2.1.1 |
diskFruNamedisk module FRU name.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.12.2.1.2 |
diskHealthStatusA description of the disk module status.ro DisplayString .1.3.6.1.4.1.2.3.51.3.1.12.2.1.3 |
errorLogs OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.2 |
eventLog OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.2.1 |
eventLogTableTable of event logs. View as a table and not as individual entries
for consistent results. SEQUENCE OF EventLogEntry .1.3.6.1.4.1.2.3.51.3.2.1.1 |
eventLogEntryEvent log entries. View as a table and not as individual entries for
consistent results. EventLogEntry .1.3.6.1.4.1.2.3.51.3.2.1.1.1 |
eventLogIndexEvent log index number. View as a table and not as individual entries for
consistent results.ro INTEGER .1.3.6.1.4.1.2.3.51.3.2.1.1.1.1 |
eventLogStringContains a string of information to detail the event. View as a table and
not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.2.1.1.1.2 |
eventLogSeverityContains a information to detail the severity of the event. View as a table and
not as individual entries for consistent results.ro Enumeration .1.3.6.1.4.1.2.3.51.3.2.1.1.1.3 |
eventLogDateThe Date of the Event occured. View as a table and
not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.2.1.1.1.4 |
eventLogTimeThe Time of the Event occured. View as a table and
not as individual entries for consistent results.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.2.1.1.1.5 |
eventLogClrClear the event log.rw Enumeration .1.3.6.1.4.1.2.3.51.3.2.1.3 |
eventLogTftpServerTo save the eventLog if it is not empty,
set the IP address or host name of the TFTP server where
the file should be transferred. The address must be entered in a
dotted decimal IP string (e.g. 9.37.44.2), or equivalent for IPv6.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.2.1.4 |
eventLogFileNameFile name of the saved log file on the target system.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.2.1.5 |
eventLogSaveStartStart saving the eventLog file to the specified target file
and system.
Using execute will cause the SNMP client to wait for the save
operation to complete.
Using execute-nowait will not cause the SNMP client to wait for
the save to complete. Instead it will save the configuration in
the background.
Note 1: Both eventLogTftpServer and
eventLogFileName must be set.
Note 2: Depending on the target, it might take up to several
seconds for the save operation to complete.
Note 3: Use eventLogStatus to confirm the status of
the last operation.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.2.1.6 |
eventLogSaveStatusGet the status of the last save operation which
was initiated through SNMP method.ro Enumeration .1.3.6.1.4.1.2.3.51.3.2.1.7 |
configureSP OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3 |
remoteAccessConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1 |
generalRemoteCfg OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.1 |
remoteAlertRetryDelayNumber in seconds to delay between retries if sending a
remote alert is unsuccessful.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.1 |
remoteAlertRetryCountNumber of additional times a remote alert will be
retried if not succesfully sent. A value of zero indicates
no retries will be attempted.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.2 |
remoteAlertEntryDelayNumber in seconds to delay between entries if sending a
remote alert is unsuccessful.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.3 |
snmpCriticalAlertsIf Enabled,criticalAlerts will be sent to
SNMP, else critical alerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.4 |
snmpWarningAlertsIf Enabled,warningAlerts will be sent to
SNMP , else warning alerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.5 |
snmpSystemAlertsIf Enabled,systemAlerts will be sent to
SNMP , else system alerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.6 |
remoteAccessTamperDelayNumber in minutes to prohibit a remote login attempt
after more than 5 sequential login attempts have failed.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.7 |
userAuthenticationMethodUse this field to specify how users attempting to login should be authenticated.
There are two methods:
Local authentication. Userid and password are verified by searching the list
of users locally configured under Local Login Profiles.
LDAP based authentication. Users are authenticated via a remote LDAP server.
One or both authentication methods can be selected. If both methods should be
used, the order must be specified.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.8 |
webInactivityTimeoutUse this field to indicate how long, in minutes, the IMM subsystem will wait
before disconnecting an inactive web session. Select the no timeout option to
disable this feature. Select the User picks timeout option if the timeout should
instead be selected by the user during the login process.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.9 |
snmpAlertFilters OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.1.10 |
safSpTrapTempCCritical Alert: Temperature threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.2 |
safSpTrapVoltCCritical Alert: Voltage threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.3 |
safSpTrapPowerCCritical Alert: Power failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.4 |
safSpTrapHdCCritical Alert: Hard disk drive failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.5 |
safSpTrapFanCCritical Alert: Single Fan failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.6 |
safSpTrapIhcCCritical Alert: Incompatible hardware configuration.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.7 |
safSpTrapCPUCCritical Alert: CPU Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.8 |
safSpTrapMemoryCCritical Alert: Memory Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.9 |
safSpTrapRdpsCCritical Alert: Redundant Power Supply failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.10 |
safSpTrapHardwareCCritical Alert: Other Failure - refer to Message ID for specific condition.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.11 |
safSpTrapRdpsNNon-Critical Alert: Redundant Power Supply failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.12 |
safSpTrapTempNNon-Critical Alert: Temperature threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.13 |
safSpTrapVoltNNon-Critical Alert: Voltage threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.14 |
safSpTrapPowerNNon-Critical Alert: Power.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.15 |
safSpTrapFanNNon-Critical Alert: Fan Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.16 |
safSpTrapCPUNNon-Critical Alert: Memory Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.17 |
safSpTrapMemoryNNon-Critical Alert: Memory Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.18 |
safSpTrapHardwareNNon-Critical Alert: Warning - refer to Message ID for specific condition.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.19 |
safSpTrapRLoginSev-Off Alert: Event Remote Login.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.20 |
safSpTrapOsToSSystem Alert: OS Timeout value exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.21 |
safSpTrapAppSSystem Alert: Application Alert. Refer to Message ID for specific condition.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.22 |
safSpTrapPowerSSystem Alert: Power on or off.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.23 |
safSpTrapBootSSystem Alert: System Boot Failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.24 |
safSpTrapLdrToSSystem Alert: OS Loader Timeout.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.25 |
safSpTrapPFASSystem Alert: Predictive Failure Analysis(PFA) information.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.26 |
safSpTrapSysLogSSystem Alert: System Log 75% full.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.27 |
safSpTrapNwChangeSSystem Alert: Network change notification.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.10.28 |
customSecuritySettings OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.1.20 |
loginPasswordRequiredIf enabled, all users require a login password to access the IMM
via the CLI and Web interfaces. The default value is disabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.1 |
passwordExpirationPeriodThe number of days before login passwords expire. The minimum
value is 1 day and the maximum value is 365 days. The default
value is 90 days. A value of 0 disables this option.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.1.20.2 |
minimumPasswordReuseCycleThe number of unique passwords a user must choose before
reusing a password. The default value is none.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.3 |
complexPasswordRulesEnforcedIf enabled, password should contains at least one numeric and
one alphabetic character.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.4 |
minimumPasswordLengthThe required minimum number of characters in the new password.
The default value is 8.
A SET of this object is ignored until the complexPasswordRules option is enabled
and the minimumPasswordReuseCycle is not none(0)rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.5 |
defaultAdminPasswordExpiredIf enabled, the factory default 'USERID' account password must
be changed on next login. The default value is disabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.6 |
minimumDiffCharsPasswordThe required minimum number of characters in the new password
different from the previous password. The default value is 2.
A SET of this object is ignored until the complexPasswordRules option is enabled
and the minimumPasswordReuseCycle is not none(0)rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.7 |
changePasswordFirstAccessIf enabled, the login user will be forced to change their password on
the first access after the account has been established or on
the first access after an administrator has changed the password
for the user, except for the administrator password for USERID.
The default value is disabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.8 |
accountLockoutPeriodThe period of time in minutes that a user is locked out after the
maximum number of login failures was reached. The minimum value is
is 1 minute and the maximum value is 240 minutes. The default value
is 2 minutes for the Legacy security level and 60 minutes for the
High security level. A value of 0 disables this option.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.9 |
maxLoginFailuresThe maximum number of login failures before a user account is locked.
A value of 0 disables this option. The default value is 5.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.1.20.10 |
passwordChangeIntervalA minimum period of time that user is not able to change
their own password. The range of acceptable values will be
from 0 to 240 (or 10 days). A value of 0 disables this
option. If the password expiration period is set, it must be
greater than the minimum password change interval.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.1.20.11 |
serialPortCfg OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.2 |
portBaudBaud rate for the serial port.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.2.1 |
portParityParity setting for the serial port.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.2.2 |
serialRedirect OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.2.3 |
enterCLIkeySeqThis is the keystroke sequence used to enter the CLI.
This sequence must have at least one character. The caret symbol (^)
has a special meaning in this sequence. It denotes 'Ctrl' for keystrokes that
map to Ctrl sequences (for example, ^[ for the escape key and ^M for carriage
return). All ocurrences of ^ will be interpreted as part of a Ctrl sequence.
Refer to an ASCII-to-key conversion table for a complete list of Ctrl sequences.
The default value for this field is '^[(' i.e. ESC followed by (.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.2.3.1 |
portStopBitsNumber of stop bits for the serial port.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.2.4 |
portCLImodeUse this field to select the CLI (command line interface) mode for this port.
The CLI mode disablies serial redirect, or pecifies the type of keystroke
sequences to use for entering (returning to) the CLI from the system console.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.2.18 |
remoteAlertIds OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.3 |
remoteAlertIdsTableTable of remote alert entries.
This table lets you configure remote alert recipients.
You can define up to 12 unique recipients. SEQUENCE OF RemoteAlertIdsEntry .1.3.6.1.4.1.2.3.51.3.3.1.3.1 |
remoteAlertIdsEntryRemote alert entries. RemoteAlertIdsEntry .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1 |
remoteAlertIdEntryIndexIndex for remote alert entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.1 |
remoteAlertIdEntryStatusIf enabled alerts will be sent to this alert
recipient else alerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.2 |
remoteAlertIdEntryNameA null terminated string that contains
a text description of this entry.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.3 |
remoteAlertIdEmailAddrA null terminated string that
contains a E-Mail Address. For example 'jeb@us.ibm.com'.
Used only for a E-mail over Lan.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.4 |
remoteAlertIdEntryCriticalAlertIf Enabled,criticalAlerts will be sent to this
remote alert receipient,else critical alerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.5 |
remoteAlertIdEntryWarningAlertIf Enabled,warningAlerts will be sent to this
remote alert receipient,else warningAlerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.6 |
remoteAlertIdEntrySystemAlertIf Enabled,systemAlerts will be sent to this
remote alert receipient,else systemAlerts will not be sent.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.7 |
remoteAlertIdEntryAttachmentsToEmailAlertsIndicates if the event log should be attached to
a email alert.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.8 |
remoteAlertIdEntrySyslogPortAssignmentSyslog port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.9 |
remoteAlertIdEntrySyslogHostnameSyslog hostname or IP address.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.10 |
remoteAlertIdEntryTypeAlert recipient type.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.1.1.11 |
remoteAlertFiltersTableTable of Alert Filters. The entries (rows) in this table correspond 1-1 with the entries in the
remoteAlertIdsTable. They are correlated by index. SEQUENCE OF RemoteAlertFiltersEntry .1.3.6.1.4.1.2.3.51.3.3.1.3.2 |
remoteAlertFiltersEntryRemote Filters entries. RemoteAlertFiltersEntry .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1 |
rafIndexIndex for User Authority Level entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.1 |
rafSpTrapTempCCritical Alert: Temperature threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.2 |
rafSpTrapVoltCCritical Alert: Voltage threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.3 |
rafSpTrapPowerCCritical Alert: Power failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.4 |
rafSpTrapHdCCritical Alert: Hard disk drive failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.5 |
rafSpTrapFanCCritical Alert: Single Fan failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.6 |
rafSpTrapIhcCCritical Alert: Incompatible hardware configuration.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.7 |
rafSpTrapCPUCCritical Alert: CPU Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.8 |
rafSpTrapMemoryCCritical Alert: Memory Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.9 |
rafSpTrapRdpsCCritical Alert: Redundant Power Supply failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.10 |
rafSpTrapHardwareCCritical Alert: Other Failure - refer to Message ID for specific condition.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.11 |
rafSpTrapRdpsNNon-Critical Alert: Redundant Power Supply failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.12 |
rafSpTrapTempNNon-Critical Alert: Temperature threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.13 |
rafSpTrapVoltNNon-Critical Alert: Voltage threshold exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.14 |
rafSpTrapPowerNNon-Critical Alert: Power.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.15 |
rafSpTrapFanNNon-Critical Alert: Fan Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.16 |
rafSpTrapCPUNNon-Critical Alert: Memory Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.17 |
rafSpTrapMemoryNNon-Critical Alert: Memory Error.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.18 |
rafSpTrapHardwareNNon-Critical Alert: Warning - refer to Message ID for specific condition.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.19 |
rafSpTrapRLoginSev-Off Alert: Event Remote Login.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.20 |
rafSpTrapOsToSSystem Alert: OS Timeout value exceeded.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.21 |
rafSpTrapAppSSystem Alert: Application Alert. Refer to Message ID for specific condition.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.22 |
rafSpTrapPowerSSystem Alert: Power On or Off.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.23 |
rafSpTrapBootSSystem Alert: System Boot Failure.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.24 |
rafSpTrapLdrToSSystem Alert: OS Loader Timeout.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.25 |
rafSpTrapPFASSystem Alert: Predictive Failure Analysis(PFA) information.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.26 |
rafSpTrapSysLogSSystem Alert: System Log 75% full.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.27 |
rafSpTrapNwChangeSSystem Alert: Network change notification.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.2.1.28 |
generateTestAlertGenerate a Test Alert. This will send a test alert to all configured
and enabled remote alert receipients. The text portion of the
alert will contain 'Application Posted Alert to IMM'.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.3.30 |
remoteAccessIds OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.4 |
remoteAccessIdsTableTable of remote access profiles.
This table lets you to configure all login profiles.
You can define up to 12 unique profiles.
Note: By default, the remote supervisor adapter
comes configured with one login profile that allows remote
access using a login ID of 'USERID' and a password of 'PASSW0RD'
(the 0 is a zero). To avoid a potential security exposure,
we strongly recommend that you change this default Login
Profile to values of your choice. SEQUENCE OF RemoteAccessIdsEntry .1.3.6.1.4.1.2.3.51.3.3.1.4.1 |
remoteAccessIdsEntryRemote access entries. RemoteAccessIdsEntry .1.3.6.1.4.1.2.3.51.3.3.1.4.1.1 |
remoteAccessIdEntryIndexIndex for Remote access entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.4.1.1.1 |
remoteAccessIdEntryUserIdRemote access entry null terminated string that
contains the user-id. This can only be modified from
blank to non-blank, then back to blank.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.4.1.1.2 |
remoteAccessIdEntryPasswordRemote access entry null terminated string that
contains the password. On a read a NULL string
will be returned for security reasons.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.4.1.1.3 |
remoteAccessIdEntryUserPwdLeftDaysleft days before password expired for selected userro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.4.1.1.4 |
remoteAccessUserAuthorityLevelTableTable of user authority level profiles. SEQUENCE OF RemoteAccessUserAuthorityLevelEntry .1.3.6.1.4.1.2.3.51.3.3.1.4.2 |
remoteAccessUserAuthorityLevelEntryUser authority level entries. RemoteAccessUserAuthorityLevelEntry .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1 |
ualIndexIndex for User Authority Level entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.1 |
ualIdUser IDro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.2 |
ualSupervisorUser has no restrictions.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.3 |
ualReadOnlyUser has only read-only access, and cannot perform any save, modify,
clear, or state affecting operations (eg. restart IMM, restore defaults,
upgrade the firmware, etc.).rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.4 |
ualAccountManagementUser can add/modify/delete users and change the global login settings in
the Login Profiles panel.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.5 |
ualConsoleAccessUser can access the remote console.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.6 |
ualConsoleAndVirtualMediaAccessUser can access both the remote console and the virtual media feature.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.7 |
ualServerPowerAccessUser can access the power on and restart functions for the remote server.
These functions are available via the Power/Restart panel.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.8 |
ualAllowClearLogUser can clear the event logs. Everyone can look at the
event logs, but this particular permission is required to clear the logs.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.9 |
ualAdapterBasicConfigUser can modify configuration parameters in the System Settings and Alerts
panels.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.10 |
ualAdapterNetworkAndSecurityConfigUser can modify configuration parameters in the Security, Network Protocols,
Network Interface, Port Assignments, and Serial Port panels.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.11 |
ualAdapterAdvancedConfigUser has no restrictions when configuring the adapter. In addition, the
user is said to have administrative access to the IMM, meaning that the
user can also perform the following advanced functions: firmware upgrades,
PXE network boot, restore adapter factory defaults, modify and restore
adapter configuration from a configuration file, and restart/reset the
adapter.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.4.2.1.12 |
groupProfiles OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.5 |
groupIdsTableTable of Group profiles.
This table lets you to configure all group profiles.
You can define up to 16 unique profiles. SEQUENCE OF GroupIdsEntry .1.3.6.1.4.1.2.3.51.3.3.1.5.1 |
groupIdsEntryGroup ID entries. GroupIdsEntry .1.3.6.1.4.1.2.3.51.3.3.1.5.1.1 |
groupIndexIndex for Group IDs entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.5.1.1.1 |
groupIdGroup ID. It is a null terminated string that contains the group-id.
It must not be a duplicate of any previously configured ones.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.5.1.1.2 |
groupRoleGroup Role. It indicates if the group has supervisor, operator,
or custom access.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.5.1.1.3 |
groupRBSroleTableTable of Group Role profiles. SEQUENCE OF GroupRBSroleEntry .1.3.6.1.4.1.2.3.51.3.3.1.5.2 |
groupRBSroleEntryGroup Role entries. GroupRBSroleEntry .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1 |
groupRBSroleIndexIndex for Group Role entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.1 |
groupRBSroleIdGroup IDro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.2 |
groupRBSSupervisorGroup has no restrictions.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.3 |
groupRBSOperatorGroup has read-only access, and cannot perform
any save, modify, clear, or state affecting operations
(e.g. restart IMM, restore defaults, upgrade the firmware, etc.).rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.4 |
groupRBSNetworkSecurityGroup can modify the configuration in the Security, Network Protocols,
Network Interface, Port Assignments, and Serial Port panels.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.5 |
groupRBSUserAccountManagementGroup can add/modify/delete users and change the Global Login Settings
in the Login Profiles panel.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.6 |
groupRBSRemoteConsoleAccessGroup can access the remote server console.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.7 |
groupRBSRemoteConsoleRemoteDiskAccessGroup can access the remote server console and the remote disk functions
for the remote server.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.8 |
groupRBSServerPowerRestartAccessGroup can access the power on, restart and server timeout functions for
the remote server.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.9 |
groupRBSBasicAdapterConfigurationGroup can modify configuration parameters in the System Settings (excluding
Contact, Location and Server Timeouts) and Alerts panels.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.10 |
groupRBSClearEventLogGroup can clear the event logs. Everyone can look at the event logs, but
this particular permission is required to clear the logs.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.11 |
groupRBSAdvancedAdapterConfigurationGroup has no restrictions when configuring the adapter. In addition the
user is said to have administrative access to the IMM, meaning that the user
can also perform the following advanced functions: firmware upgrades, PXE
network boot, restore adapter factory defaults, modify and restore adapter
configuration from a configuration file, and restart/reset the adapter. This
excludes Server Power/Restart Control and timeout functions.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.5.2.1.12 |
sshClientAuth OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.1.6 |
sshClientAuthPubKeyTableA table that contains client authentication
public key information. SEQUENCE OF SSHClientAuthPubKeyEntry .1.3.6.1.4.1.2.3.51.3.3.1.6.1 |
sshClientAuthPubKeyEntryA information list about a particular SSH
public key used for client authentication.
The primary table index is the same value as
the associated remoteAccessIdEntryIndex.
The secondary table index allows selection
of the Nth public key for that
remoteAccessIdEntryIndex. SSHClientAuthPubKeyEntry .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1 |
sshClientAuthRemoteAccessIdIndexThe primary table index is the same value as
the associated remoteAccessIdEntryIndex used
as an index into the remoteAccessIdsTable. INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.1 |
sshClientAuthPubKeyIndexThe secondary table index used to select
one of the client authentication public
keys for a particular remote access Id.
The index is an integer value from 1 to N
where N is the number of keys associated
with a particular remote access Id.
An addition always causes the value of N to increase
by one, effectively adding an entry after the
existing keys for that remote access Id.
If an entry is deleted from the table by
setting sshClientAuthPubKeyEntryStatus = invalid,
the key associated with that entry is deleted.
If the deleted key was not the last key for
a remote access Id (sshClientAuthPubKeyIndex is
not the 'last' or Nth entry), the subsequent entries
are renumbered after the deletion. A deletion
always causes the value of N to decrease by one.
The underlying SSH server implementation searches
the keys in order from 1 to N when attempting public
key authentication.
NOTE:A maximum of 4 public keys can be installed
for one remote access Id. INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.2 |
sshClientAuthPubKeyTypeThe type of the SSH public key represented by
this entry.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.3 |
sshClientAuthPubKeySizeThe size of the SSH public key represented by
this entry.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.4 |
sshClientAuthPubKeyFingerprintThe RSA fingerprint of the SSH public key represented
by this entry.
This value can be used with the SSH client to
verify, on the initial connection, that the Secure Shell
server responding to the request is the server running
on the managed entity. This is the fingerprint of the
operational host key pair. If the key pair represented
by this entry is not operational then sixteen null octets
must be returned.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.5 |
sshClientAuthPubKeyAcceptFromThis is a filter that describes the set of SSH client
IP addresses and host names that can establish
SSH connections to the AMM authenticated by the public key
represented by this entry of the table. The filter is a
comma-separated list of IP addresses and/or hostnames.
A question mark may be used to match any single character.
An asterisk may be used to match multiple characters.
An exclamation point may preceed an IP address or hostname
to deny acccess from that IP address or hostname.
The format of the Accept From specification is:
from=PATTERN-LIST
PATTERN-LIST is the filter, which must be enclosed in
double quotation marks.
NOTE:This MIB object can be manipulated after the
corresponding SSH public key is installed.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.6 |
sshClientAuthPubKeyCommentThis is a descriptive string that the administrator may
use to help identify the public key represented by this entry.
It serves no function in the operation of the SSH server.
NOTE:This MIB object can be manipulated after the
corresponding SSH public key is installed.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.7 |
sshClientAuthPubKeyActionimport(1) starts the TFTP file transfer of an SSH
client authentication public key from the TFTP
server to the AMM. The import operation is only
accepted if the associated RemoteAccessIdsEntry row
is configured and the current value of
sshClientAuthPubKeyEntryStatus is underCreation(3)
or valid(1), if the current value of sshClientAuthPubKeyEntryStatus
is valid(1), it will replace the key with a new key,
If the import is successful the value of
sshClientAuthPubKeyRowStatus changes to valid(1).
export(2) starts the TFTP file transfer of an SSH
client authentication public key from the AMM to the TFTP
server. The export operation is only accepted if
the current value of sshClientAuthPubKeyEntryStatus
is valid(1).
NOTE: Users should compare the fingerprint value
sshClientAuthPubKeyFingerprint to the
fingerprint of client authentication key files
imported or exported using the TFTP file transfer
protocol to guard against possible file corruption.
Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.8 |
sshClientAuthPubKeyEntryStatusThis object manages the creation and deletion of this entry.
The steps recommended to install and to activate a new client
authorization public key are:
1. Set values for sshClientAuthPubKeyTftpServer,
sshClientAuthPubKeyFileName, sshClientAuthPubKeyFileFormat
2. Create a new entry in this table
sshClientAuthPubKeyEntryStatus = createRequest
3. Import a new key sshClientAuthPubKeyAction = import
This entry will be valid after sshClientAuthPubKeyAction
is successfully imported.
4. Set sshClientAuthPubKeyAcceptFrom and
sshClientAuthPubKeyComment as required.
valid(1) - Indicates that the public key pair represented
by this entry is available for use by the Secure
Shell Server for client authentication.
createRequest(2) - A new entry will be created in this table
for the specified host key pair and the new
entry will transition to the underCreation(3)
state. The operation is only accepted if the
associated RemoteAccessIdsEntry row defining
a local user account is configured.
underCreation(3) - Indicates that this entry exists in the
agent but is unavailable for use. After completing the
create operation, the agent will set this object to
underCreation(3).
invalid(4) - Deletes this entry and any client authentication
public key that may be associated with it.rw EntryStatus .1.3.6.1.4.1.2.3.51.3.3.1.6.1.1.9 |
sshClientAuthPubKeyUnusedThe number of available storage locations that may be
used to install additional Client Authentication
Public Keys. This number decreases by one when a new
key is added to the configuration.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.1.6.2 |
sshClientAuthPubKeyTftpServerIP address or host name of the TFTP server where an SSH client
authentication public key is to be installed from or exported
to. The address must be entered in a dotted decimal
IP string (e.g. 9.37.44.2).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.6.3 |
sshClientAuthPubKeyFileNameFile name on the TFTP server of an SSH client
authentication public key.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.1.6.4 |
sshClientAuthPubKeyFileFormatFile format of SSH client authentication public key files
imported from or exported to the TFTP file server.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.1.6.5 |
spClock OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.2 |
spClockDateAndTimeSettingIMM clock date and time setting.
A date-time specification for the local time of day.
For example to set the date and time to
March 4, 2001 at 06:00:00AM, set the value to:'03/04/2001,06:00:00'.
field contents range
_____ ________ _____
1 month 01..12
2 separator '/'
3 day 01..31
4 separator '/'
5 year 2000..2037
6 separator ','
7 hour 00..23
8 separator ':'
9 minutes 00..59
10 separator ':'
11 seconds 00..59rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.2.1 |
spClockTimezoneSettingIMM clock Greenwich Mean Time(GMT) offset and Daylight Saving Time(DST)
settings.
The following table lists GMT offsets and associated DST
information. DST is not observed in time zones where
the 'Observe DST' value does not contain 'yes' in the table.
Also, note that in some cases additional information
is required to determine the clock adjustment when DST is
observed.
Examples
-to set the GMT offset to +3:30,
set the value to:'+3:30,no'
-for Eastern Standard Time and observing DST,
set the value to:'-5:00,yes'
-for Turkey and observing DST,
set the value to:'+2:00,yes,3'
GMT Observe Additional
Offset DST? DST value
______ _______ __________
GMT+0 yes | no
GMT+1 yes | no
GMT+2 yes | no When 'Observe DST?' value is 'yes':
'1' Europe/Eastern Europe (ee)
'3' Turkey (tky)
'4' Asia/Beirut (bei)
'5' Asia/Amman (amm)
'6' Asia/Jerusalem (jem)
GMT+3 no
GMT+3:30 yes | no
GMT+4 no
GMT+4:30 no
GMT+5 no
GMT+5:30 no
GMT+5:45 no
GMT+6 no
GMT+6:30 no
GMT+7 no
GMT+8 no
GMT+9 no
GMT+9:30 yes | no
GMT+10 yes | no
GMT+11 no
GMT+12 yes | no
GMT+13 no
GMT-12 no
GMT-11 yes | no
GMT-10 no
GMT-9 yes | no
GMT-8 yes | no
GMT-7 yes | no When 'Observe DST?' value is 'yes':
'7' US/Mountain (mtn)
'8' America/Mazatlan (maz)
GMT-6 yes | no When 'Observe DST?' value is 'yes':
'9' America/Mexico City (mex)
'10' Canada/Central (cna)
GMT-5 yes | no When 'Observe DST?' value is 'yes':
'11' Cuba (cub)
'12' Canada, US/East-Indiana (ein)
GMT-4:30 no
GMT-4 yes | no When 'Observe DST?' value is 'yes':
'13' America/Asuncion (asu)
'14' America/Cuiaba (cui)
'15' America/Santiago (san)
'16' Canada/Atlantic (cat)
GMT-3:30 yes | no
GMT-3 yes | no When 'Observe DST?' value is 'yes':
'17' America/Gothab (gtb)
'18' America/Montevideo (moo)
'19' Brazil/East (bre)
GMT-2 no
GMT-1 yes | norw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.2.2 |
spIdentification OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.3 |
spTxtIdIMM text ID. Note: Do not put any 'space
character' at end of the ID.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.3.1 |
spRoomIDRoom where the system is located. In some hardware configurations this object can only be read.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.3.3.2 |
spRackIDID for Rack that contains this system. In some hardware configurations this object can only be read.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.3.3.3 |
spRackUnitPositionPosition within the rack for this system. In some hardware configurations this object can only be read.rw DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.3.3.4 |
spRackUnitHeightNumber of rack units occupied by this system.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.3.3.5 |
spRackBladeBayBay number for system contained in a blade chassis.ro DisplayString (SNMPv2-TC) .1.3.6.1.4.1.2.3.51.3.3.3.6 |
networkConfiguration OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4 |
networkInterfaces OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1 |
ethernetInterface OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.1 |
ethernetInterfaceTypeThe type of interface. Indicates 'Ethernet-1'.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.1.1 |
ethernetInterfaceEnabledDisable or enable the interface.
Note: To alter any of the configuration settings for the ethernet
interface the following procedure should be used:
(1)This object should be written with 'interfaceDisabled'
(2)Make the modifications to other settings
(3)This object should be written with 'interfaceEnabled'
(4)Restart the remote supervisor adapter
Also note that when this object has a value of interfaceEnabled
the following is verifed, if this verification fails a error
response will be returned for the set of this object and the
ethernet interface will be left in a disabled state.
(1)Is the range for the MTU between 60-1500
(2)Are the speed settings one of 10Mb, 100Mb, AUTO
(3)Are the speed settings one of Half, Full, AUTO
(4)If DHCP is disabled then is there a valid IP addressrw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.1.2 |
ethernetInterfaceHostNameContains the 64 byte null terminated DNS host name for this
interface.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.1.3 |
ethernetInterfaceIPAddressContains the IP address for the ethernet interface.rw IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.4 |
ethernetInterfaceAutoNegotiateIf this is enabled, then we should ignore Speed/Duplex.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.1.5 |
ethernetInterfaceDataRateSpecifies the data transfer rate to be used over the ethernet
interface 10Mb/100Mb/Auto. Note that the value of this variable
is ignored if ethernetInterfaceAutoNegotiate is set to enabled(0).rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.1.6 |
ethernetInterfaceDuplexSettingSpecifies the duplex settings for the data transfer rate to be used over
the ethernet interface Half/Full/Auto.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.1.7 |
ethernetInterfaceLAASpecifies the locally administered MAC address. The locally administered
address must be a hexadecimal value between 000000000000 - FFFFFFFFFFFF. This
value must be in the form XX:XX:XX:XX:XX:XX where 'X' is a number between 0 - 9 and
A - F. This IMM subsystem does not allow use of a multicast address. A multicast
address has the least significant bit of the first byte set to a 1. The first
byte must, therefore, be an even number.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.1.8 |
ethernetInterfaceDhcpEnabledDisable or enable DHCP on this interface.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.1.9 |
ethernetInterfaceGatewayIPAddressContains the IP address of the gateway/router for the ethernet
interface.rw IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.10 |
ethernetInterfaceBIASpecifies the burned-in MAC (BIA) address.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.1.11 |
ethernetInterfaceMTUContains the Maximum Transmission Unit(MTU) for the ethernet
interfacerw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.1.1.12 |
ethernetInterfaceSubnetMaskContains the Subnet Mask for the ethernet
interfacerw IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.13 |
dhcpEthernetInterface OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14 |
dhcpHostNameContains the 64 byte null terminated DNS host name for this
interface, assigned by the DHCP server.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.1 |
dhcpIPAddressContains the IP address for the ehternet interface,
assigned by the DHCP server.ro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.2 |
dhcpGatewayIPAddressContains the IP address of the gateway/router for the ethernet
interface, assigned by the DHCP server.ro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.3 |
dhcpSubnetMaskContains the Subnet Mask for the ethernet
interface, assigned by the DHCP server.ro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.4 |
dhcpDomainNameContains the 64 byte null terminated Domain Name for this
interface, assigned by the DHCP server.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.5 |
dhcpPrimaryDNSServerContains the Primary DNS server, assigned by the DHCP server.ro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.6 |
dhcpSecondaryDNSServerContains the Secondary DNS server, assigned by the DHCP server.ro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.7 |
dhcpTertiaryDNSServerContains the tertiary DNS server, assigned by the DHCP server.ro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.1.1.14.8 |
ethernetInterfaceVlanIf this is enabled, assign VLAN ID needs to be assigned.
NOTE: This is not supported on blades.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.1.15 |
ethernetInterfaceVlanIDContains the VLAN ID for the ethernet interface.
NOTE: This is not supported in blades.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.1.1.16 |
ethernetInterfaceIPv6 OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4 |
ethernetInterfaceIPv6EnabledThe current IPv6 enabled or disabled state of this IMM.
NOTE: If IPv6 address(es) have been configured for one or more
interfaces/protocols/services on this IMM, when you update
the firmware to a level which does not support IPv6, all IPv6
connectivity will be lost, and services/interfaces for which an IPv6
address was configured may not function properly. You will be required
to reconfigure these services/interfaces.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.4.2 |
ethernetInterfaceIPv6Config OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5 |
ethernetInterfaceIPv6LocalAddress OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.1 |
ethernetInterfaceIPv6LinkLocalAddressThe IPv6 link local IP address for the ethernet interface.
NOTE: If ethernetInterfaceIPv6Enabled is currently disabled, this
object has the value '0:0:0:0:0:0:0:0'.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.1.1 |
ethernetInterfaceIPv6StaticIPConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.2 |
ethernetInterfaceIPv6StaticIPConfigEnabledThe IPv6 static IP address enabled or disabled state for the ethernet interface.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.2.1 |
ethernetInterfaceIPv6StaticIPAddressThe IPv6 static IP address for the ethernet interface.
NOTE: If ethernetInterfaceIPv6Enabled is currently disabled, this
object has the value '0:0:0:0:0:0:0:0'.rw InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.2.2 |
ethernetInterfaceIPv6StaticIPAddressPrefixLenThe IPv6 static IP address prefix length for the ethernet interface.
NOTE: If ethernetInterfaceIPv6Enabled is currently disabled, this
object has the value 0.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.2.3 |
ethernetInterfaceIPv6StaticIPDefaultRouteThe IPv6 static IP address default route for the ethernet interface.
NOTE: If ethernetInterfaceIPv6Enabled is currently disabled, this
object has the value '0:0:0:0:0:0:0:0'.rw InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.2.4 |
ethernetInterfaceIPv6AutoIPConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3 |
ethernetInterfaceDHCPv6Config OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2 |
ethernetInterfaceDHCPv6EnabledThe DHCPv6 enabled or disabled state for the ethernet interface.
NOTE: If ethernetInterfaceIPv6StatelessAutoConfigEnabled is currently disabled, Disabling
ethernetInterfaceDHCPv6Enabled will cause ethernetInterfaceIPv6AutoIPConfigEnabled to be disabled.
NOTE: If ethernetInterfaceIPv6StaticIPConfigEnabled and
ethernetInterfaceIPv6StatelessAutoConfigEnabled are currently disabled, Disabling
ethernetInterfaceDHCPv6Enabled will not be allowed.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.1 |
ethernetInterfaceDHCPv6IPAddressThe IPv6 address for the ethernet interface, assigned by DHCPv6 server.
NOTE: If ethernetInterfaceIPv6Enabled or ethernetInterfaceDHCPv6Enabled
is disabled or if DHCPv6 server is not available, this object has the value
'0:0:0:0:0:0:0:0'.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.2 |
ethernetInterfaceDHCPv6DomainNameThe 64 byte Domain Name for the ethernet interface,
assigned by the DHCPv6 server.
NOTE: If ethernetInterfaceIPv6Enabled or ethernetInterfaceDHCPv6Enabled
is disabled or if DHCPv6 server is not available, this object has the
value '(Not available)'.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.4 |
ethernetInterfaceDHCPv6PrimaryDNSServerThe primary DNS server, assigned by the DHCPv6 server.
NOTE: If ethernetInterfaceIPv6Enabled or ethernetInterfaceDHCPv6Enabled
is disabled or if DHCPv6 server is not available, this object has the
value '0:0:0:0:0:0:0:0'.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.5 |
ethernetInterfaceDHCPv6SecondaryDNSServerThe secondary DNS server, assigned by the DHCPv6 server.
NOTE: If ethernetInterfaceIPv6Enabled or ethernetInterfaceDHCPv6Enabled
is disabled or if DHCPv6 server is not available, this object has the
value '0:0:0:0:0:0:0:0'.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.6 |
ethernetInterfaceDHCPv6TertiaryDNSServerThe tertiary DNS server, assigned by the DHCPv6 server.
NOTE: If ethernetInterfaceIPv6Enabled or ethernetInterfaceDHCPv6Enabled
is disabled or if DHCPv6 server is not available, this object has the
value '0:0:0:0:0:0:0:0'.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.7 |
ethernetInterfaceDHCPv6ServerThe DHCPv6 server IPv6 address used to acquire the DHCP settings.
NOTE: If ethernetInterfaceIPv6Enabled or ethernetInterfaceDHCPv6Enabled
is disabled or if DHCPv6 server is not available, this object has the
value '0:0:0:0:0:0:0:0'.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.2.8 |
ethernetInterfaceIPv6StatelessAutoConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3 |
ethernetInterfaceIPv6StatelessAutoConfigEnabledThe IPv6 stateless auto-configuration enabled or disabled state for the ethernet interface.
NOTE: If EthernetfInterfaceDHCPv6Enabled is currently disabled, Disabling
ethernetInterfaceIPv6StatelessAutoConfigEnabled will cause ethernetInterfaceIPv6AutoIPConfigEnabled
to be disabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3.1 |
ethernetInterfaceStatelessAutoConfigAddressesTableTable of stateless Auto-Config addresses entries SEQUENCE OF EthernetInterfaceStatelessAutoConfigAddressesEntry .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3.2 |
ethernetInterfaceStatelessAutoConfigAddressesEntryStateless Auto-Config address entries EthernetInterfaceStatelessAutoConfigAddressesEntry .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3.2.1 |
ethernetInterfaceStatelessAutoConfigAddressesIndexIndex for stateless Auto-Config addresses.
NOTE: If ethernetInterfaceIPv6StatelessAutoConfigEnabled or
ethernetInterfaceIPv6Enabled is currently disabled, this
object will show nothing.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3.2.1.1 |
ethernetInterfaceStatelessAutoConfigAddressesThe stateless Auto-Configuration IPv6 address.
NOTE: If ethernetInterfaceIPv6StatelessAutoConfigEnabled or
ethernetInterfaceIPv6Enabled is currently disabled, this
object will show nothing.ro InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3.2.1.2 |
ethernetInterfaceStatelessAutoConfigAddressesPrefixLenThe stateless Auto-Configration address prefix length.
NOTE: If ethernetInterfaceIPv6StatelessAutoConfigEnabled or
ethernetInterfaceIPv6Enabled is currently disabled, this
object will show nothing.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.1.4.5.3.3.2.1.3 |
ddnsStatusDynamic DNS provides the capability for a networked device
to notify a domain name server to change, in real time, the
active DNS configuration of its configured hostnames, addresses
or other information stored in DNS. With Dynamic DNS, host
computers gain the capability to notify their respective DNS
server of the IP address they have received from a DHCP server
or through self-configuration.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.10 |
hostNameContains the DNS host name for this system. This object
provides the exact same function as ethernetInterfaceHostNamerw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.11 |
ddnsDomainToUseThe domain name to be used with Dynamic DNS.
The value shall be either dhcp or manualrw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.1.12 |
domainNameThe user assigned DNS domain name.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.1.13 |
tcpProtocols OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2 |
snmpAgentConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.1 |
snmpSystemNameA NULL terminated 48 byte string that contains the
SNMP agent name.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.1 |
snmpSystemContactA NULL terminated 48 byte string that contains the
SNMP agent contact name.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.2 |
snmpSystemLocationA NULL terminated 48 byte string that contains the
SNMP agent location name.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.3 |
snmpSystemAgentTrapsDisableDisable or enable SNMP traps.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.4 |
snmpAgentCommunityConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5 |
snmpCommunityTableTable of SNMP Community entries SEQUENCE OF SnmpCommunityEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1 |
snmpCommunityEntryCommunity table entries SnmpCommunityEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1 |
snmpCommunityEntryIndexIndex for SNMP Agent Community entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1.1 |
snmpCommunityEntryCommunityNameSNMP Community entry name. Note: Set snmpSystemAgentEnable
to disabled before performing a set of this object.rw DisplayString .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1.2 |
snmpCommunityEntryCommunityIpAddress1SNMP Community IP address or host name.
Can either be a dotted decimal IP string(eg. 9.37.44.2)
or host name. This field also allows two
wildcard values for read-Traps and write-Read-Traps communities:
0.0.0.0 - allow any IPv4 address
0::0 - allow any IPv6 addressrw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1.3 |
snmpCommunityEntryCommunityIpAddress2SNMP Community IP address or host name.
Can either be a dotted decimal IP string(eg. 9.37.44.2)
or a host name. This field also allows two
wildcard values for read-Traps and write-Read-Traps communities:
0.0.0.0 - allow any IPv4 address
0::0 - allow any IPv6 addressrw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1.4 |
snmpCommunityEntryCommunityIpAddress3SNMP Community IP address or host name.
Can either be a dotted decimal IP string(eg. 9.37.44.2)
or a host name. This field also allows two
wildcard values for read-Traps and write-Read-Traps communities:
0.0.0.0 - allow any IPv4 address
0::0 - allow any IPv6 addressrw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1.5 |
snmpCommunityEntryCommunityViewTypeAccess Level of the SNMPv1 managers. Note this parameter
is set for each community. Therefore all three managers
in the same community have the same access level.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.5.1.1.6 |
snmpv1SystemAgentEnableDisable or enable the SNMPv1 agent.
Note: When this object has a value of enabled the fields listed below are checked.
If this verification fails an error response is returned for the set of this object
and the SNMP agent will be left in a disabled state.
(1)Is there a valid system contact
(2)Is there a valid system name
(3)Is there at least one valid community name and for that
community name is there one valid IP address or hostnamerw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.6 |
snmpv3SystemAgentEnableDisable or enable the SNMPv3 agent.
Note: To alter any of the configuration settings for the SNMP Agent
the following procedure should be used:
(1)This object should be written with 'disabled'
(2)Make the modifications to other settings
(3)This object should be written with 'enabled'
(4)Restart the remote supervisor adapter
Also note that when this object has a value of enabled
that the following is verifed, if this verification fails a error
response will be returned for the set of this object and the SNMP
agent will be left in a disabled state.
(1)Is there a valid system contact
(2)Is there a valid system name
(3)Is there at least one valid community name and for that
community name is there one valid IP address or hostnamerw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.7 |
snmpAgentUserProfileConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8 |
snmpUserProfileTableTable of SNMPv3 User Profile entries SEQUENCE OF SnmpUserProfileEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1 |
snmpUserProfileEntrySNMP User Profile entries SnmpUserProfileEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1 |
snmpUserProfileEntryIndexIndex for SNMPv3 Agent User Profile entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1.1 |
snmpUserProfileEntryAuthProtSNMPv3 User Profile entry - Authentication Protocol
supported by the user.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1.2 |
snmpUserProfileEntryPrivProtSNMPv3 User Profile entry - Privacy Protocol
supported by the user. The Privacy Password must be set
and the Authentication Protocol must be md5 or sha
before this field may be set to des or aes.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1.3 |
snmpUserProfileEntryPrivPasswordSNMPv3 User Profile entry - Privacy password
for the user.
NOTE: Value returned for the GET command is
meaningless for this MIB object for security reason.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1.4 |
snmpUserProfileEntryViewTypeSNMPv3 User Profile entry - Access level (Get and Set)
of the user.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1.5 |
snmpUserProfileEntryIpAddressSNMPv3 User Profile entry - IP address or host name.
Can either be a dotted decimal IP string (e.g. 9.37.44.2)
or if DNS is enabled a host name.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.1.8.1.1.6 |
dnsConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.2 |
dnsEnabledDisable or enable the DNS agent.
Note that when this object has a value of enabled
that the following is verifed, if this verification fails a error
response will be returned for the set of this object and the DNS
resolver will be left in a disabled state.
(1)Is there at least one valid DNS server IP addressrw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.2.1 |
dnsServerIPAddress1Contains the primary DNS server IP address.rw IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.2.2.2 |
dnsServerIPAddress2Contains the secondary DNS server IP address.rw IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.2.2.3 |
dnsServerIPAddress3Contains the tertiary DNS server IP address.rw IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.2.2.4 |
dnsServerIPv6Address1Contains the primary IPv6 DNS server address.rw InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.2.2.12 |
dnsServerIPv6Address2Contains the secondary IPv6 DNS server address.rw InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.2.2.13 |
dnsServerIPv6Address3Contains the tertiary IPv6 DNS server address.rw InetAddressIPv6 .1.3.6.1.4.1.2.3.51.3.3.4.2.2.14 |
dnsPriorityTells the order host names are resolved. The options are
to either first resolve with an IPv6 DNS server or to first
resolve with an IPv6 DNS server.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.2.20 |
smtpConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.3 |
smtpServerNameOrIPAddressA NULL terminated 64 byte string that contains the
SMTP server Host name or IP address(a.b.c.d).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.3.1 |
smtpServerPortSMTP server port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.3.2 |
smtpServerAuthenticationEnable/disable SMTP-AUTH function. smtpServerAuthenticationUser and
smtpServerAuthenticationPassword must be SET before smtpServerAuthentication
is enabled or the enable will fail.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.3.3 |
smtpServerAuthenticationUserSMTP authentication user namerw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.3.4 |
smtpServerAuthenticationPasswordSMTP authentication password. On a read a NULL string
will be returned for security reasons.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.3.5 |
smtpServerAuthenticationMethodSMTP authentication method , support CRAM-MD5 and PLAIN onlyrw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.3.6 |
tcpApplicationConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4 |
telnetConnectionCountsThe number of telnet connections that can be active
concurrently.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.1 |
slpAddrTypeSet SLP address type to 0 (multicast) or 1 (broadcast). Note that when
slpAddrType is set to broadast value then the multicast address set in in
slpMulticastAddt will be ignored.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.2 |
slpMulticastAddrService Locator Protocol Multicast addressro IpAddress .1.3.6.1.4.1.2.3.51.3.3.4.2.4.3 |
sshServerConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.5 |
sshServerHostKeySizeThe size of the public/private host key pair.
NOTE: The IMM supports only the bits1048 value.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.5.1 |
sshServerHostKeyFingerprintThe RSA fingerprint of the public part of the host key
pair. This value can be used with the SSH client to
verify, on the initial connection, that the Secure Shell
server responding to the request is the server running
on the IMM. Null Empty string if no RSA key exists.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.5.2 |
sshServerHostKeyGenerateInitiate the new Host Keys generation process for the
IMM SSH Server.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.5.3 |
sshServerHostKeyGenerateProgressIndicate the progress of the key generation process.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.5.4 |
sshEnableDisable/Enable SSH.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.5.5 |
sslConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6 |
sslHTTPSServerConfigForWeb OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.1 |
sslEnableHTTPSforWebDisable/Enable HTTPS support for web.
Use this field to enable or disable SSL for the web interface.
The IMM must be restarted before the selected value
(enable/ disable) takes effect.
Note that in order to enable SSL, a valid SSL server certificate
must first be in place. To use SSL, a client web browser must
be configured to use SSL3 and/or TLS. Older export-grade browsers
with only SSL2 support cannot be used.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.1.1 |
sslHTTPSServerWebCertificateGenerationInitiate the new key and certificate generation process for the
web HTTPS. The required fields in sslCertificateData must be set
to valid contents.
generateNewKeyandSelfSigned -
Use this to generate a new encryption
key pair and install a self-signed certificate. If a key and a
certificate are present, they will be replaced. After the operation
is complete, SSL may be enabled using the new key and certificate.
generateNewKeyandCSR -
Use this to generate a new encryption key
and a certificate signing request (CSR). After the operation is
complete, the CSR file may be downloaded and sent to a certificate
authority (CA) for signing.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.1.2 |
sslHTTPSServerWebCertificateTransfersslConfigTftpServer and sslConfigFileName must contain valid values.
importSignedCertificate -
Use this to import a signed certificate. To obtain a signed
certificate, a certificate signing request (CSR) must first
be generated and sent to a certificate authority (CA). The
imported certificate must contain a public key that corresponds
to the key pair previously generated by the generateNewKeyandCSR.
downloadCertificate -
Use this link to download a copy of the currently installed c
ertificate. The certificate will be in DER format. The contents
of the certificate can be viewed using a third-party tool such as
OpenSSL (www.openssl.org). An example of the command line for
viewing the contents of the certificate using OpenSSL would look
something like the following:
openssl x509 -in cert.der -inform DER -text
downloadCSR -
The file produced when creating a CSR is in DER format. If your
CA expects the data in some other format, such as PEM, the file
can be converted using a third-party tool such as OpenSSL(www.openssl.org).
If the CA asks you to copy the contents of the CSR file into
a web browser window, PEM format is usually expected. An example
of the command line for converting a CSR from DER to PEM format
using OpenSSL would look something like the following:
openssl req -in csr.der -inform DER -out csr.pem -outform PEM
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.1.3 |
sslHTTPSWebCertificateStatusGet the status of the installed Web certificates.
1 = Private Key and Cert/CSR not available.
2 = Private Key and Self-signed cert installed.
3 = Private Key and CA-signed cert installed.
4 = Private Key stored, CSR available for download.
5 = Private Key and Self-signed cert installed, Private Key stored, CSR available for download.
6 = Private Key and CA-signed cert installed, Private Key stored, CSR available for download.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.1.4 |
sslHTTPSServerConfigForCIMXML OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.2 |
sslEnableHTTPSforCIMXMLDisable/Enable HTTPS support for web.
Use this field to enable or disable SSL for the web interface.
The IMM must be restarted before the selected value
(enable/ disable) takes effect.
Note that in order to enable SSL, a valid SSL server certificate
must first be in place.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.2.1 |
sslHTTPSServerCIMXMLCertificateGenerationInitiate the new key and certificate generation process for
CIMXML communication. The required fields in sslCertificateData must be set
to valid contents.
generateNewKeyandSelfSigned -
Use this to generate a new encryption
key pair and install a self-signed certificate. If a key and a
certificate are present, they will be replaced. After the operation
is complete, SSL may be enabled using the new key and certificate.
generateNewKeyandCSR -
Use this to generate a new encryption key
and a certificate signing request (CSR). After the operation is
complete, the CSR file may be downloaded and sent to a certificate
authority (CA) for signing.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.2.2 |
sslHTTPSServerCIMXMLCertificateTransfersslConfigTftpServer and sslConfigFileName must contain valid values.
importSignedCertificate -
Use this to import a signed certificate. To obtain a signed
certificate, a certificate signing request (CSR) must first
be generated and sent to a certificate authority (CA). The
imported certificate must contain a public key that corresponds
to the key pair previously generated by the generateNewKeyandCSR.
downloadCertificate -
Use this link to download a copy of the currently installed c
ertificate. The certificate will be in DER format. The contents
of the certificate can be viewed using a third-party tool such as
OpenSSL (www.openssl.org). An example of the command line for
viewing the contents of the certificate using OpenSSL would look
something like the following:
openssl x509 -in cert.der -inform DER -text
downloadCSR -
The file produced when creating a CSR is in DER format. If your
CA expects the data in some other format, such as PEM, the file
can be converted using a third-party tool such as OpenSSL(www.openssl.org).
If the CA asks you to copy the contents of the CSR file into
a web browser window, PEM format is usually expected. An example
of the command line for converting a CSR from DER to PEM format
using OpenSSL would look something like the following:
openssl req -in csr.der -inform DER -out csr.pem -outform PEM
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.2.3 |
sslHTTPSCIMXMLCertificateStatusGet the status of the installed CIM/XML certificates.
1 = Private Key and Cert/CSR not available.
2 = Private Key and Self-signed cert installed.
3 = Private Key and CA-signed cert installed.
4 = Private Key stored, CSR available for download.
5 = Private Key and Self-signed cert installed, Private Key stored, CSR available for download.
6 = Private Key and CA-signed cert installed, Private Key stored, CSR available for download.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.2.4 |
sslClientConfigForLDAP OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3 |
sslEnableClientLDAPUse this field to enable or disable SSL for the LDAP Client.
The value selected takes effect immediately. Note that in order
to enable SSL, a valid SSL certificate must first be in place and at
least one SSL client trusted certificate must be imported.
Your LDAP server must support SSL3 or TLS to be compatible with the
SSL implementation used by the LDAP client.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.1 |
sslClientLDAPCertificateGenerationInitiate the new key and certificate generation process for the
LDAP Client Certificates. The required fields in sslCertificateData must be set
to valid contents.
generateNewKeyandSelfSigned -
Use this to generate a new encryption
key pair and install a self-signed certificate. If a key and a
certificate are present, they will be replaced. After the operation
is complete, SSL may be enabled using the new key and certificate.
generateNewKeyandCSR -
Use this to generate a new encryption key
and a certificate signing request (CSR). After the operation is
complete, the CSR file may be downloaded and sent to a certificate
authority (CA) for signing.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.2 |
sslClientLDAPCertificateDownloadsslConfigTftpServer and sslConfigFileName must contain valid values.
downloadCertificate -
Use this link to download a copy of the currently installed c
ertificate. The certificate will be in DER format. The contents
of the certificate can be viewed using a third-party tool such as
OpenSSL (www.openssl.org). An example of the command line for
viewing the contents of the certificate using OpenSSL would look
something like the following:
openssl x509 -in cert.der -inform DER -text
downloadCSR -
The file produced when creating a CSR is in DER format. If your
CA expects the data in some other format, such as PEM, the file
can be converted using a third-party tool such as OpenSSL(www.openssl.org).
If the CA asks you to copy the contents of the CSR file into
a web browser window, PEM format is usually expected. An example
of the command line for converting a CSR from DER to PEM format
using OpenSSL would look something like the following:
openssl req -in csr.der -inform DER -out csr.pem -outform PEM
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.3 |
sslClientLDAPCertificateImportsslConfigTftpServer and sslConfigFileName must contain valid values.
importSignedCertificate -
Use this to import a signed certificate. To obtain a signed
certificate, a certificate signing request (CSR) must first
be generated and sent to a certificate authority (CA). The
imported certificate must contain a public key that corresponds
to the key pair previously generated by the generateNewKeyandCSR.
importTrustedCertificateX -
Use these to import or remove trusted CA certificates.
Trusted CA certificates are used by the SSL client to authenticate
the SSL Server's (LDAP Server's) certificate. The SSL client must be
disabled prior to importing or removing trusted certificates.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.4 |
sslClientLDAPCertificateStatusGet the status of the installed SSL Client certificates.
1 = Private Key and Cert/CSR not available.
2 = Private Key and Self-signed cert installed.
3 = Private Key and CA-signed cert installed.
4 = Private Key stored, CSR available for download.
5 = Private Key and Self-signed cert installed, Private Key stored, CSR available for download.
6 = Private Key and CA-signed cert installed, Private Key stored, CSR available for download.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.5 |
sslClientLDAPTrustedCertificate1StatusGet the status of the installed SSL Client trusted certificates.
0 = certificate not installed
1 = certificate installed.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.6 |
sslClientLDAPTrustedCertificate2StatusGet the status of the installed SSL Client trusted certificates.
0 = certificate not installed
1 = certificate installed.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.7 |
sslClientLDAPTrustedCertificate3StatusGet the status of the installed SSL Client trusted certificates.
0 = certificate not installed
1 = certificate installed.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.8 |
sslClientLDAPTrustedCertificate4StatusGet the status of the installed SSL Client trusted certificates.
0 = certificate not installed
1 = certificate installed.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.3.9 |
sslConfigTftpServerTo download or import certificates, set the IP address
or host name of the TFTP server where the file should be
transferred to or from. The address must be entered in a
dotted decimal IP string (e.g. 9.37.44.2), or equivalent
for IPv6.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.4 |
sslConfigFileNameFile name on target system for the downloaded or
imported certificate.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.5 |
sslCertificateData OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6 |
sslCertificateDataCountryRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the country where the IMM physically
resides.
This field must contain the 2 character country code.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.1 |
sslCertificateDataStateorProvinceRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the state or province where the IMM
physically resides.
This field may contain a maximum of 30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.2 |
sslCertificateDataCityOrLocalityRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the city or locality where the IMM
physically resides.
This field may contain a maximum of 50 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.3 |
sslCertificateDataOrganizationNameRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the company or organization that
owns the IMM. When this is used to generate a CSR, the
issuing CA may verify that the organization requesting the
certificate is legally entitled to claim ownership of the
given company or organization name.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.4 |
sslCertificateDataIMMHostNameRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the IMM host name that currently
appears in the browser URL address bar. This certificate
attribute is generally referred to as the Common Name (CN).
Special care must be taken to ensure that the value entered
into the IMM host name field exactly matches the host name
as it is known by the web browser when it access the IMM.
The browser compares the host name in the resolved URL to the
name that appears in the certificate. In order to prevent
certificate warnings from the browser, the value used in this
field must match the host name used by the browser to connect
to the IMM.
For instance, if the URL address bar in the browser currently
were to appear as http://mm11.xyz.com/private/main.ssi, the
value used for the IMM Host Name field should be mm11.xyz.com.
If the URL were http://mm11/private/main.ssi, the value used
should be mm11 .
If the URL were http://192.168.70.2/private/main.ssi,
the value used should be 192.168.70.2 .
It is the users responsibility to ensure the correct value
is entered and works.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.5 |
sslCertificateDataContactOptional field for generating a CSR or self-signed
certificate.
Use this field to indicate the name of a contact person
responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.6 |
sslCertificateDataEmailAddrOptional field for generating a CSR or self-signed
certificate.
Use this field to indicate the email address of a contact
person responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.7 |
sslCertificateDataOrganizationUnitOptional field for generating a CSR or self-signed
certificate.
Use this field to indicate the unit within the company
or organization that owns the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.8 |
sslCertificateDataSurnameOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as the
surname of a person responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.9 |
sslCertificateDataGivenNameOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as the
given name of a person responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.10 |
sslCertificateDataInitialsOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as the
initials of a person responsible for the IMM.
This field may contain a maximum of 20 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.11 |
sslCertificateDataDNQualifierOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as a
Distinguished Name Qualifier for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.12 |
sslCertificateDataCSRChallengePasswordOptional field for generating a CSR.
Use this field to assign a password to the CSR.
This field may contain a maximum of 30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.13 |
sslCertificateDataCSRUnstructuredNameOptional field for generating a CSR.
Use this field for additional information, such as an
unstructured name assigned to the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.6.6.14 |
certDomainNames OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8 |
certDomainNameTableThis table contains certificate domain names and status. SEQUENCE OF CertDomainNameEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.1 |
certDomainNameEntryEach row contains a certificate domain name and status. CertDomainNameEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.1.1 |
certDomainIndexThe index number of one certificate domain name entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.1.1.1 |
certDomainNameThe Certificate Domain Name of one certificate domain name entry.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.1.1.2 |
certDomainNameStatusThe status of the Certificate Domain Name entry.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.1.1.3 |
addCertDomainNameAdd one Certificate Domain Name to the certificate domain name table.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.2 |
rmCertDomainNameRemove one Certificate Domain Name to the certificate domain name table.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.8.3 |
skrServers OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9 |
skrServerTableThis table contains Storage Key Repository Server hostnames and ports. SEQUENCE OF SkrServerEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.1 |
skrServerEntryEach row contains a Storage Key Repository Server hostname and port. SkrServerEntry .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.1.1 |
skrServerIndexThe index number of one Storage Key Repository Server entry.ro INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.1.1.1 |
skrServerHostnameStorage Key Repository Server hostname or IP address.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.1.1.2 |
skrServerPortStorage Key Repository Server port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.1.1.3 |
skrServerCertActionimportServerCertificate -
Import Storage Key Repository Server certificate.
For tftp mode, skrConfigFtpServer and skrConfigFileName must contain valid values.
For sftp mode, skrConfigFTPCallUserID and skrConfigFtpCallPassword must also contain valid values.
removeServerCertificate -
Remove Storage Key Repository Server certificate.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.2 |
skrDeviceGroupAn optional NULL terminated 16 character string that contains the Device Group that the server drives belong to.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.3 |
skrClientConfigCertficate OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.4 |
skrClientCertificateGenerationInitiate the new key and certificate generation process for the
key repository client. The required fields in skrCertificateData must be set
to valid contents.
generateNewKeyandSelfSigned -
Use this to generate a new encryption
key pair and install a self-signed certificate. If a key and a
certificate are present, they will be replaced. After the operation
is complete, SSL may be enabled using the new key and certificate.
generateNewKeyandCSR -
Use this to generate a new encryption key
and a certificate signing request (CSR). After the operation is
complete, the CSR file may be downloaded and sent to a certificate
authority (CA) for signing.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.4.1 |
skrClientCertificateTransferFor tftp mode, skrConfigFtpServer and skrConfigFileName must contain valid values.
For sftp mode, skrConfigFTPCallUserID and skrConfigFtpCallPassword must also contain valid values.
importSignedCertificate -
Use this to import a signed certificate. To obtain a signed
certificate, a certificate signing request (CSR) must first
be generated and sent to a certificate authority (CA). The
imported certificate must contain a public key that corresponds
to the key pair previously generated by the generateNewKeyandCSR.
downloadCertificate -
Use this link to download a copy of the currently installed
certificate. The certificate will be in DER format. The contents
of the certificate can be viewed using a third-party tool such as
OpenSSL (www.openssl.org). An example of the command line for
viewing the contents of the certificate using OpenSSL would look
something like the following:
openssl x509 -in cert.der -inform DER -text
downloadCSR -
The file produced when creating a CSR is in DER format. If your
CA expects the data in some other format, such as PEM, the file
can be converted using a third-party tool such as OpenSSL(www.openssl.org).
If the CA asks you to copy the contents of the CSR file into
a web browser window, PEM format is usually expected. An example
of the command line for converting a CSR from DER to PEM format
using OpenSSL would look something like the following:
openssl req -in csr.der -inform DER -out csr.pem -outform PEM
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.4.2 |
skrClientCertificateStatusGet the status of the installed Web certificates.
1 = Private Key and Cert/CSR not available.
2 = Private Key and Self-signed cert installed.
3 = Private Key and CA-signed cert installed.
4 = Private Key stored, CSR available for download.
5 = Private Key and Self-signed cert installed, Private Key stored, CSR available for download.
6 = Private Key and CA-signed cert installed, Private Key stored, CSR available for download.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.4.3 |
skrCertificateData OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5 |
skrCertificateDataCountryRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the country where the IMM physically
resides.
This field must contain the 2 character country code.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.1 |
skrCertificateDataStateorProvinceRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the state or province where the IMM
physically resides.
This field may contain a maximum of 30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.2 |
skrCertificateDataCityOrLocalityRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the city or locality where the IMM
physically resides.
This field may contain a maximum of 50 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.3 |
skrCertificateDataOrganizationNameRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the company or organization that
owns the IMM. When this is used to generate a CSR, the
issuing CA may verify that the organization requesting the
certificate is legally entitled to claim ownership of the
given company or organization name.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.4 |
skrCertificateDataIMMHostNameRequired field for generating a CSR or self-signed
certificate.
Use this field to indicate the IMM host name that currently
appears in the browser URL address bar. This certificate
attribute is generally referred to as the Common Name (CN).
Special care must be taken to ensure that the value entered
into the IMM host name field exactly matches the host name
as it is known by the web browser when it access the IMM.
The browser compares the host name in the resolved URL to the
name that appears in the certificate. In order to prevent
certificate warnings from the browser, the value used in this
field must match the host name used by the browser to connect
to the IMM.
For instance, if the URL address bar in the browser currently
were to appear as http://mm11.xyz.com/private/main.ssi, the
value used for the IMM Host Name field should be mm11.xyz.com.
If the URL were http://mm11/private/main.ssi, the value used
should be mm11 .
If the URL were http://192.168.70.2/private/main.ssi,
the value used should be 192.168.70.2 .
It is the users responsibility to ensure the correct value
is entered and works.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.5 |
skrCertificateDataContactOptional field for generating a CSR or self-signed
certificate.
Use this field to indicate the name of a contact person
responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.6 |
skrCertificateDataEmailAddrOptional field for generating a CSR or self-signed
certificate.
Use this field to indicate the email address of a contact
person responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.7 |
skrCertificateDataOrganizationUnitOptional field for generating a CSR or self-signed
certificate.
Use this field to indicate the unit within the company
or organization that owns the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.8 |
skrCertificateDataSurnameOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as the
surname of a person responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.9 |
skrCertificateDataGivenNameOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as the
given name of a person responsible for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.10 |
skrCertificateDataInitialsOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as the
initials of a person responsible for the IMM.
This field may contain a maximum of 20 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.11 |
skrCertificateDataDNQualifierOptional field for generating a CSR or self-signed
certificate.
Use this field for additional information, such as a
Distinguished Name Qualifier for the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.12 |
skrCertificateDataCSRChallengePasswordOptional field for generating a CSR.
Use this field to assign a password to the CSR.
This field may contain a maximum of 30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.13 |
skrCertificateDataCSRUnstructuredNameOptional field for generating a CSR.
Use this field for additional information, such as an
unstructured name assigned to the IMM.
This field may contain a maximum of 60 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.5.14 |
skrConfigFtpServerTo import certificates, set the IP address or host name of the server
where the file should be transferred from. The address must be entered
in a dotted decimal IP string (e.g. 9.37.44.2), or equivalent for IPv6.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.6 |
skrConfigFtpServerModeThis field specifies the FTP mode used.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.7 |
skrConfigFtpCallPortThis field specifies the port on remote TFTP/SFTP server for data
transmission (default values are 69/22, respectively).rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.8 |
skrConfigFTPCallUserIDThis field specifies the user account to login remote SFTP server.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.9 |
skrConfigFtpCallPasswordThis field specifies the password to login remote SFTP server.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.10 |
skrConfigFileNameFile name on target system for the imported certificate.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.4.9.11 |
tcpPortAssignmentCfg OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.5 |
tcpPortsRestoreDefaultReset all the ports to the factory defaults.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.5.1 |
httpPortAssignmentHTTP port number. Default value is 80. Once changed, the url's have to
include :port at the end.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.2 |
httpsPortAssignmentSSL port number. Default value is 443. Once changed, the url's have to
include :port at the end.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.3 |
telnetLegacyCLIPortAssignmenttelnet port number. Default value is 23.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.4 |
sshLegacyCLIPortAssignmentSSH port number. Default value is 22.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.6 |
snmpAgentPortAssignmentSNMP Agent port number. Default value is 161.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.8 |
snmpTrapsPortAssignmentSNMP Traps port number. Default value is 162.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.9 |
remvidPortAssignmentRemote Console port number. Default value is 3900.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.10 |
ibmSystemDirectorHttpPortAssignmentIBM Systems Director Http port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.11 |
ibmSystemDirectorHttpsPortAssignmentIBM Systems Director Https port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.5.12 |
ldapClientCfg OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.6 |
ldapServer1NameOrIPAddressA NULL terminated 64 byte string that contains the
LDAP server host name or IP address (a.b.c.d).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.1 |
ldapServer1PortNumberLDAP server port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.6.2 |
ldapServer2NameOrIPAddressA NULL terminated 64 byte string that contains the
LDAP server host name or IP address (a.b.c.d).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.3 |
ldapServer2PortNumberLDAP server port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.6.4 |
ldapServer3NameOrIPAddressA NULL terminated 64 byte string that contains the
LDAP server host name or IP address (a.b.c.d).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.5 |
ldapServer3PortNumberLDAP server port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.6.6 |
ldapServer4NameOrIPAddressA NULL terminated 64 byte string that contains the
LDAP server host name or IP address (a.b.c.d).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.7 |
ldapServer4PortNumberLDAP server port number.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.6.8 |
ldapRootDNDistinguished Name for root entry of directory tree.
An example might look like dn=foobar,dn=com.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.9 |
ldapUserSearchBaseDNAs part of the user authentication process, it is necessary to search
the LDAP server for one or more attributes associated with a particular
user. Any search request must specify the base DN for the actual search.
This field specifies the base DN which should be used to search the User
directory. An example might look like cn=users,dn=foobar,dn=com. If this
field is left blank, the Root DN will be used as the search base instead.
As mentioned, user searches are part of the authentication process. They
are carried out to retrieve information about the user such as login
permissions, callback number, and group memberships. For Version 2.0 LDAP
clients, it is strongly encouraged that this parameter be configured,
otherwise a search using the root DN may not succeed (as seen on Active
Directory servers).
NOTE: This Mib object is deprecated and no longer supported.rwdeprecated OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.10 |
ldapGroupFilterThis filter is used for group authentication. It specifies what group or
groups that this MM belongs to. If left blank, group authentication is
disabled. Otherwise, group authentication will be performed against the
filter. The filter can be a specific group name (eg. IMMWest), a wildcard (*)
which matches everything, or a wildcard with a prefix (eg. IMM*). The default
filter is IMM*.
After user authentication, group authentication will take place, whereby an
attempt will be made to match the group or groups (that the user belongs to)
to the group filter defined here. If there is no match, the user will not pass
authentication and will be blocked. If there is a match, the login permissions
for the user will be retrieved from the matched group(s), unless the user
already has login permissions assigned directly from the user record retrieved
from the LDAP server.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.11 |
ldapBindingMethodOn initial binds to the LDAP server during user authentication, there are
three options:
Anonymous authentication: Bind attempt is made without a client DN or password.
If the bind is successful, a search will be requested in order to find an entry
on the LDAP server for the user attempting to login. If an entry is found, a
second attempt to bind will be attempted, this time with the user's DN and
password. If this succeeds, the user is deemed to have passed the user
authentication phase. Group authentication is then attempted if it is enabled.
Client authentication: Bind attempt is made with client DN and password
specified by this configuration parameter. If the bind is successful, we
proceed as above.
User Principal Name (UPN): Bind attempt is made directly with the credentials
used during the login process. If this succeeds, the user is deemed to have
passed the user authentication phase. Note that for Active Directory servers,
the userid can have the form someuser@somedomain or simply someuser.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.6.12 |
ldapClientAuthenticationDNThe initial bind to the LDAP server during user authentication can be
performed with anonymous authentication, client based authentication, or UPN.
The client based option requires a client DN and password as parameters to
the bind request. These parameters are configured here. Note that the password
can be left blank.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.13 |
ldapClientAuthenticationPasswordThe client authentication passwordrw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.14 |
ldapRoleBasedSecurityEnabledA value of true for RoleBasedSecurityEnabled indicates enhanced
will be used by the service processor. A value of false for
RoleBasedSecurityEnabled indicates the legacy bit mask based
security is being used.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.6.15 |
ldapServerTargetNameWhen administrator chooses Enhanced Role Based Security authentication model,
he can associate one IMM with one managed target object in Snap-in (one tool
to configure LDAP users permission) via one target name. The IMM target name can
be looked as alias of IMM, administrator can change it according to his
configuration requirements. This is a string of up to 63 characters (plus the
null character)rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.16 |
ldapUIDsearchAttributeWhen the binding method selected is Anonymous authentication or Client
authentication, the initial bind to the LDAP server is followed by a search
request aimed at retrieving specific information about the user, including the
user's DN, login permissions, and group ownerships. In order to retrieve this
information, the search request must specify the attribute name used to
represent userids on that server. Specifically, this name is used as a search
filter against the login id entered by the user. This attribute name is
configured here. If this field is left blank, a default of uid is used during
user authentication.
For example, on Active Directory servers, the attribute name used for userids
is often sAMAccoutName.
When the binding method selected is UPN or Strict UPN, this field defaults
automatically to userPrincipalName during user authentication if the userid
entered has the form userid@somedomain.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.17 |
ldapGroupSearchAttributeWhen the MM Group Filter name is configured, it is necessary to retrieve
from the LDAP server the list of groups that a particular user belongs to.
This is required to do group authentication. In order to retrieve this list,
the search filter sent to the server must specify the attribute name associated
with groups. This field specifies this attribute name.
If this field is left blank, the attribute name in the filter will default
to memberOf.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.18 |
ldapLoginPermissionAttributeWhen a user successfully authenticates via a LDAP server, it is necessary
to retrieve the login permissions for this user. In order to retrieve these
permissions, the search filter sent to the server must specify the attribute
name associated with login permissions. This field specifies this attribute
name.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.19 |
ldapUseDNSOrPreConfiguredServersThe MM contains a Version 2.0 LDAP Client that may be configured to provide
user authentication through one or more LDAP servers. The LDAP server(s) to be
used for authentication can be discovered dynamically or manually pre-configured.
If the usePreConfiguredLDAPServers option is selected, up to 3 LDAP servers can
be configured. Simply enter the server's IP address or hostname (assuming DNS
is enabled). The port number for each server is optional. If left blank,
the default value of 389 is used for non-secured LDAP connections. For secured
connections, the default is 636. At least one server must be configured.
If the useDNSToFindLDAPServers is selected, the mechanisms described by RFC2782
(A DNS RR for specifying the location of services) are applied to find the
server(s). This is known as DNS SRV.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.6.20 |
ldapDomainSourceThe DNS SRV request sent to the DNS server must specify a domain name.
The LDAP client will determine where to get this domain name based on one
of the following three options:
- extractSearchDomainFromLoginID: With this option, the LDAP client will
use the domain name in the login id. For example, if the login id is
joesmith@mycompany.com, the domain name equals mycompany.com. If the domain
name cannot be extracted, the DNS SRV will fail, causing the user
authentication to fail automatically.
- useOnlyConfiguredSearchDomainBelow: With this option, the LDAP client
will use the domain name configured in the Search Domain parameter.
- tryLoginFirstThenConfiguredValue: With this option, the LDAP client will
first attempt to extract the domain name from the login id. If this succeeds,
this domain name will be used in the DNS SRV request. If there is no domain
name present in the login id, the LDAP client will instead use the configured
Search Domain parameter as the domain name in the DNS SRV request.
If nothing is configured, user authentication will fail immediately.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.6.21 |
ldapForestNameIn order to discover Global Catalogs (GC), the forest name must be configured
in the ForestName property. The Global Catalogs are required for users who belong
to universal groups in cross-domains. In environments where cross-domain group
membership does not apply, this field can be left blank.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.22 |
ldapAuthCfgIf ldapAuthCfg is set to 0, LDAP server is used to authenticate and authorize
users. If it is set to 1, LDAP server is only used to authenticate users.
Note:LDAP Authentication Only mode is currently supported only in an Active
Directory environment.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.6.23 |
ldapSearchDomainThis parameter may be used as the domain name in the DNS SRV request,
depending on how the Domain Source parameter is configured.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.24 |
ldapServiceNameThe DNS SRV request sent to the DNS server must also specify a service name.
The configured value will be used for this purpose. If left blank, the default
value used is 'ldap'. Note that the DNS SRV request must also specify a protocol
name. This defaults to 'tcp' and is not configurable.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.6.25 |
ntpConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.4.2.8 |
ntpEnableDisable/Enable the NTP client. The client will update
the IMM system clock at the frequency specified.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.8.1 |
ntpIpAddressHostname1First NTP server's IP address or hostname if DNS is enabled
and configured.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.8.2 |
ntpUpdateFrequencyThe frequency in minutes that the NTP service runs.
The value range is 3 to 1440.rw INTEGER .1.3.6.1.4.1.2.3.51.3.3.4.2.8.3 |
ntpIpAddressHostname2Second NTP server's IP address or hostname if DNS is enabled
and configured.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.8.4 |
ntpUpdateClockUpdate the IMM system clock with the specified NTP server.
A valid NTP server must be configured first.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.4.2.8.5 |
ntpIpAddressHostname3Third NTP server's IP address or hostname if DNS is enabled
and configured.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.8.6 |
ntpIpAddressHostname4Fourth NTP server's IP address or hostname if DNS is enabled
and configured.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.4.2.8.7 |
configurationManagement OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.3.5 |
configurationManagementTftpServerTo save or restore the system configuration,
set the IP address or host name of the TFTP server where
the file should be transferred to or from. The address must be entered in a
dotted decimal IP string (e.g. 9.37.44.2), or equivalent for IPv6.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.5.1 |
configurationManagementFileNameFile name of the saved file or restore-from file.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.3.5.2 |
configurationManagementSaveStartStart saving the configuration file to the specified target file
and system.
Using execute will cause the SNMP client to wait for the save
operation to complete.
Using execute-nowait will not cause the SNMP client to wait for
the save to complete. Instead it will save the configuration in
the background.
Note 1: Both configurationManagementTftpServer and
configurationManagementileName must be set.
Note 2: Depending on the target, it might take up to several
seconds for the save operation to complete.
Note 3: Use configurationManagementStatus to confirm the status of
the last operaion.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.5.3 |
configurationManagementRestoreStartStart restoring the configuration file from the specified target
file and system.
Using execute will cause the SNMP client to wait for the restore
operation to complete.
Using execute-nowait will not cause the SNMP client to wait for
the restore to complete. Instead it will restore the configuration
in the background.
Note 1: Both configurationManagementTftpServer and
configurationManagementileName must be set.
Note 2: Depending on the target, it might take up to several
seconds for the operation to complete.
Note 3: Use configurationManagementStatus to confirm the status of
the last operation.
NOTE: Value returned for the GET command is meaningless
for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.3.5.4 |
configurationManagementStatusGet the status of the last configurationManagement operation which
was initiated through SNMP method.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.5.5 |
immVersionCheckGet the IMM version type.ro Enumeration .1.3.6.1.4.1.2.3.51.3.3.7 |
generalSystemSettings OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.4 |
serverTimers OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.4.1 |
oSHangNumber, in 1 second intervals, the IMM will
check to insure the OS is operating properly.
If the operating system fails to respond within 6 seconds to one
of these checks, the remote supervisor adapter will generate
an O/S Timeout alert(if enabled) and automatically restart the
system one time. Once the system is restarted, the O/S Watchdog
is automatically disabled until the operating
system is shutdown and the server is power cycled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.4.1.1 |
oSLoaderNumber in 30 second intervals the remote IMM will wait
between completion of POST and the end of loading the OS.
If this interval is exceeded, the IMM will
generate a Loader Timeout alert(if enabled) and automatically restart
the system one time. Once the system is restarted, the
Loader Timeout is automatically disabled until the operating
system is shutdown and the server is power cycled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.4.1.2 |
networkPXEbootModify the system's boot sequence for the next system restart
in order to attempt a PXE/DHCP network boot. The system's boot
sequence(set via the BIOS settings) will be altered only if the
system is not under PAP (Privileged Access Protection).rw Enumeration .1.3.6.1.4.1.2.3.51.3.4.2 |
systemPower OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5 |
powerStatistics OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5.1 |
currentSysPowerStatusIndicates if the system is currently powered on, off, or in sleep state.ro Enumeration .1.3.6.1.4.1.2.3.51.3.5.1.1 |
powerOnHoursNumber of hours the system has been powered on.ro INTEGER .1.3.6.1.4.1.2.3.51.3.5.1.2 |
restartCountNumber of times the system has been restarted.ro INTEGER .1.3.6.1.4.1.2.3.51.3.5.1.3 |
systemStateShows the current operational state of the system.ro Enumeration .1.3.6.1.4.1.2.3.51.3.5.1.4 |
powerSysConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5.2 |
powerSysOffDelayThe number of 1 second interval the IMM will
wait before powering off the system.rw Enumeration .1.3.6.1.4.1.2.3.51.3.5.2.1 |
powerSysOnClockSettingThe clock setting used to determine when the IMM
will power on the system. The examples and the format follow:
(1)For example to set the value so the system will power on
March 4, 2001 at 06:00AM set the value to: '03/04/2001,06:00'.
In order to insure correct operation, it is advisable for the
user to read the date and time of the IMM
clock before setting this value to a future time.
(2)Setting the reset value will cause the
power off timer to be reset and be deactivated. For example
to reset the clock set the value to: '01/01/2000,00:00',
field contents range
_____ ________ _____
1 month 01..12 (reset value - 01)
2 separator '/'
3 day 01..31 (reset value - 01)
4 separator '/'
5 year 2000..2037 (reset value - 2000)
6 separator ','
7 hour 00..23 (reset value - 00)
8 separator ':'
9 minutes 00..59 (reset value - 00)rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.5.2.2 |
powerOffSystemControl OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5.3 |
powerOffWithOsShutdownPower off the system after performing a OS shutdown.rw Enumeration .1.3.6.1.4.1.2.3.51.3.5.3.1 |
powerOffImmediatelyPower off the system immediately.rw Enumeration .1.3.6.1.4.1.2.3.51.3.5.3.2 |
powerOnSystemControl OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5.4 |
powerOnImmediatelyPower on the system immediately.rw Enumeration .1.3.6.1.4.1.2.3.51.3.5.4.2 |
powerCyclingSchedule OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5.5 |
schedulePowerOffWithOsShutdownPower Off the system after performing a OS shutdown at specified time and day of the week.
Example: Monday,09:00
field contents range
_____ ________ _____
1 day EveryDay,Sunday,Monday,Tuesday,Wednesday,Thursday,Friday,Saturday,Never (reset value - Never)
2 separator ','
3 hour 00..23 (reset value - 00)
4 separator ':'
5 minutes 00..59 (reset value - 00)
day is case insensitive.
It is invalid to set a non zero time with day as Never.
To reset, set as Never,00:00.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.5.5.1 |
schedulePowerOnSystemPower On the system at specified time and day of the week.
Example: Monday,09:00
field contents range
_____ ________ _____
1 day EveryDay,Sunday,Monday,Tuesday,Wednesday,Thursday,Friday,Saturday,Never (reset value - Never)
2 separator ','
3 hour 00..23 (reset value - 00)
4 separator ':'
5 minutes 00..59 (reset value - 00)
day is case insensitive.
It is invalid to set a non zero time with day as Never.
To reset, set as Never,00:00.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.5.5.2 |
powerControlSleep OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.5.6 |
powerEnterSleepSet system to enter power sleep state.
The power sleep control actions will not work if the Sleep function is not enabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.5.6.1 |
powerExitSleepSet system to exit power sleep state.
The power sleep control actions will not work if the Sleep function is not enabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.5.6.2 |
restartReset OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.6 |
shutdownOsThenRestartShutdown the OS and then restart the system and boot the OS.rw Enumeration .1.3.6.1.4.1.2.3.51.3.6.1 |
restartSystemImmediatelyRestart the system immediately and then the boot OS.rw Enumeration .1.3.6.1.4.1.2.3.51.3.6.2 |
restartSPImmediatelyRestart the IMM immediately.rw Enumeration .1.3.6.1.4.1.2.3.51.3.6.3 |
resetSPConfigAndRestartWill cause all the IMM information to
be reset to it's initial factory defaults(all previous
configuration information is lost) and the IMM
will be re-started.rw Enumeration .1.3.6.1.4.1.2.3.51.3.6.4 |
scheduleShutdownOsThenRestartShutdown the OS and then restart the system and boot the OS
at specified Time and Day of the week.
Example: Monday,09:00
field contents range
_____ ________ _____
1 day EveryDay,Sunday,Monday,Tuesday,Wednesday,Thursday,Friday,Saturday,Never (reset value - Never)
2 separator ','
3 hour 00..23 (reset value - 00)
4 separator ':'
5 minutes 00..59 (reset value - 00)
day is case insensitive.
It is invalid to set a non zero time with day as Never.
To reset, set as Never,00:00.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.6.5 |
resetPowerSchedulesreset all power schedules.
schedulePowerOnSystem,schedulePowerOffWithOsShutdown, scheduleShutdownOsThenRestart.
This does not reset powerSysOnClockSettingrw Enumeration .1.3.6.1.4.1.2.3.51.3.6.6 |
firmwareUpdate OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.7 |
firmwareUpdateTargetTarget module whose firmware will be updated.rw Enumeration .1.3.6.1.4.1.2.3.51.3.7.1 |
firmwareUpdateTftpServerIP address of the TFTP server where the firmware file resides.
The address must be entered in a dotted decimal IP string
(eg. 9.37.44.2).rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.7.2 |
firmwareUpdateFileNameFile name of the firmware file.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.7.3 |
firmwareUpdateStartStart updating the firmware of the specified IMM Card.
Note 1: The firmware update might take up to several
minutes to complete. Do not reset the IMM Card until
the control has been returned. At this point, the results
will be displayed.
Note 2: Use firmwareUpdateStatus to confirm the status of
the last firmware update initiated by SNMP method. The
IMM Card must be restarted for the new firmware to
take affect.rw Enumeration .1.3.6.1.4.1.2.3.51.3.7.4 |
firmwareUpdateStatusGet the status of the last firmware update which was
initiated through SNMP method.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.7.5 |
serviceAdvisor OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8 |
autoCallHomeSetup OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.1 |
acceptLicenseAgreementAccept Terms and Conditions of IMM Service Advisor. The user will have to accept the terms and conditions
before Service Advisor can send diagnostic data to IBM support personnel. If IMM configuration
is reset to defaults, the user will have to accept the terms and conditions again before they can
enable Service Advisor. For more information, please refer to the IBM BladeCenter User's Guide.
A GET of this object may return disabled(0) or enabled(1), depending upon the current state. However,
only enabled(1) is accepted on a SET in order to accept the license agreement. A SET of disabled(0)
will return noSuchValue and is not allowed.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.1.1 |
serviceAdvisorEnableDisable/Enable IBM Support. The User Agreement must be accepted and the contact information
must be set before the IBM Support function of Service Advisor can be enabled.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.1.2 |
serviceSupportCenter OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.2 |
ibmSupportCenterThe country code for the IBM Support Center. 2 character ISO country code.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.2.1 |
contactInformation OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.3 |
companyNameThe organization/company name of the contact person. 1-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.1 |
contactNameThe name of the contact person.1-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.2 |
phoneNumberThe phone of the contact person. 5-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.3 |
emailAddressThe email of the contact person. It must contain '@' and dot '.' in form userid@hostname (30 characters maximum).
The userid can be alphanumeric characters, '.', '-', or '_' but must begin and end with alphanumeric characters.
The hostname can be alphanumeric characters, '.', '-', or '_'. It must contain at least two domain items.
Every domain item should begin and end with alphanumeric character, and the last domain item should be 2-20 alphabetic characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.4 |
addressThe address of the machine location. The information in this field should be of sufficient detail to allow someone to
quickly find the chassis when necessary. 1-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.5 |
cityThe city of the machine location. 1-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.6 |
stateThe state of the machine location. 2-3 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.7 |
postalCodeThe postal code of the location for this system. 1-9 characters, only alphanumeric characters are valid.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.8 |
phoneExtensionThe phone extension of the contact person. 30 characters maximum.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.9 |
altContactNameThe name of the alternate contact person. 1-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.10 |
altPhoneNumberThe phone of the alternate contact person. 5-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.11 |
altPhoneExtensionThe phone extension of the alternate contact person. 30 characters maximum.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.12 |
altEmailAddressThe email of the alternate contact person. It must contain '@' and dot '.' in form userid@hostname (30 characters maximum).
The userid can be alphanumeric characters, '.', '-', or '_' but must begin and end with alphanumeric characters.
The hostname can be alphanumeric characters, '.', '-', or '_'. It must contain at least two domain items.
Every domain item should begin and end with alphanumeric character, and the last domain item should be 2-20 alphabetic characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.13 |
machineLocationPhoneNumberThe phone of the physical location where the compuer system resides. 5-30 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.3.14 |
httpProxyConfig OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.4 |
httpProxyEnableDisable/Enable of the HTTP Proxy. Select Enable to use the proxy for call home
connections from the IMM to IBM. HTTP Proxy is used by the IMM when it is not connected to the internet directly.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.4.1 |
httpProxyLocationFully qualified host name or IP address of the HTTP Proxy. Maximum of 63 characters.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.4.2 |
httpProxyPortThe port number of the HTTP Proxy. An integer value from 1 to 65535.rw INTEGER .1.3.6.1.4.1.2.3.51.3.8.4.3 |
httpProxyUserNameUser Name of the HTTP Proxy. A maximum of 30 characters string without spaces.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.4.4 |
httpProxyPasswordPassword of the HTTP Proxy. A maximum of 15 characters string without spaces.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.4.5 |
activityLogs OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.5 |
activityLogTableTable of Service Advisor Activity Log entries information. This table displays events that were generated
by the system or user that are called home. The entries are displayed in reverse chronological order
(most recent call home entry first). For any events that happen with same Date/Time, only one event will be
called home. If a call home event that is already in the activity log is triggered again on the same event
source, it will not be called home again unless the prior entry has been acknowledged as corrected or, in the
case of IMM1, 120 hours (5 days) have passed since it initially occurred and was called home. SEQUENCE OF ActivityLogEntry .1.3.6.1.4.1.2.3.51.3.8.5.1 |
activityLogEntryActivity Log table entry. Each entry has the result of the call-home attempt,
the service number assigned for the issue by IBM support, the event ID, event source, date and
time that event occured, and a text message. ActivityLogEntry .1.3.6.1.4.1.2.3.51.3.8.5.1.1 |
activityLogIndexThe Activity Log index number.
For consistent results, view as a table and not as individual entries.ro INTEGER .1.3.6.1.4.1.2.3.51.3.8.5.1.1.1 |
activityLogStringA string of data detailing one Activity Log entry. The text message is from the original entry in the event log.
For consistent results, view as a table and not as individual entries.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.5.1.1.2 |
activityLogAcknowledgeThe acknowledgement of one Activity Log entry as corrected. This field allows the users to set a reminder next to
certain events to indicate their awareness of the issue. Checking the acknowledge flag will not cause the event to be removed
from the log or close the ticket at IBM support. This log is not cleared, so the acknowledge flag can be used to indicate a problem
can be ignored. This field can be also used to override the 120 hour (5 day) filtering of reports via IBM Support or FTP/TFTP Server
of Service Data.
For consistent results, view as a table and not as individual entries.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.5.1.1.3 |
activityLogAttributeA string of data detailing one Activity Log entry's attribute. It contains states of both calling IBM support and FTP/TFTP Server.
A PENDING indicates that the system is preparing for the event to be called home by collecting data about the systems state. A SUCCESS state
indicates that the problem was successfully transmitted to IBM support or FTP/TFTP Server. A DISABLED state indicates that Service Advisor
has disabled calling IBM Support or FTP/TFTP Server while the hardware event is detected. A NOT SENT state indicates that the serviceable
event was not sent to prevent the same event from being sent repeatedly. The FAILED state indicates that the attempt
to transmit the event information was not successful. Additional information may be found in the Event Log.
The service number is similar to a ticket number that can be used as a reference to the issue reported by the machine
when contacting IBM support. The event ID, event source, date and time are all information from the original entry in the event log.
The acknowledged as corrected field is a reminder to certain events to indicate their awareness of the issue.
For consistent results, view as a table and not as individual entries.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.5.1.1.4 |
autoFTPSetup OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.6 |
autoFTPCallModeThis field specifies the automated problem reporting mode. Automated problem reporting mode allows the IMM to automatically put
service data to a specified server when a call home event is detected. For any call home events that happen with same Date/Time,
only one event will be reported. The system will also wait for an interval of 120 hours (5 days) before another identical event
can be sent for the same failed component.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.6.1 |
autoFTPCallAddrThis field specifies the remote server address of FTP and TFTP. It should be fully qualified hostname or IP address.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.6.2 |
autoFTPCallPortThis field specifies the port on remote FTP/TFTP server for data transmission.rw INTEGER .1.3.6.1.4.1.2.3.51.3.8.6.3 |
autoFTPCallUserIDThis field specifies the user account to login remote FTP server.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.6.4 |
autoFTPCallPasswordThis field specifies the password to login remote FTP server.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.6.5 |
callHomeExclusionEvents OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.7 |
readCallHomeExclusionEventTableTable of Call Home Exclusion Event entries information. SEQUENCE OF ReadCallHomeExclusionEventEntry .1.3.6.1.4.1.2.3.51.3.8.7.1 |
readCallHomeExclusionEventEntryCall Home Exclusion Event table entry ReadCallHomeExclusionEventEntry .1.3.6.1.4.1.2.3.51.3.8.7.1.1 |
readCallHomeExclusionEventIndexThe index number of one Call Home Exclusion Event.
For consistent results, view as a table and not as individual entries.ro INTEGER .1.3.6.1.4.1.2.3.51.3.8.7.1.1.1 |
readCallHomeExclusionEventIDThe Event ID of one Call Home Exclusion Event entry.
For consistent results, view as a table and not as individual entries.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.7.1.1.2 |
addCallHomeExclusionEventAdd one call home Event ID into the Call Home Exclusion List.
The Event ID is an 16-digit hexadecimal number (0-F) with an optional prefix of '0x' or '0X'.
The Event ID can be full specified with the 16 hexadecimal characters or can be specified with
an asterisk ?*? wild card character in any of the right 8 most characters. The wild card capability
allows for excluding a group of similar events.
If Service Advisor Terms and Conditions are accepted, an event can be added into the exclusion list.
NOTE: Value returned for the GET command is meaningless for this MIB object.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.7.2 |
rmCallHomeExclusionEventRemove one call home Event ID from the Call Home Exclusion List.
The Event ID is an 16-digit hexadecimal number (0-F) with an optional prefix of '0x' or '0X'.
The Event ID can be full specified with the 16 hexadecimal characters or can be specified with
an asterisk ?*? wild card character in any of the right 8 most characters. The wild card capability
allows for excluding a group of similar events.
If Service Advisor Terms and Conditions are accepted, an event on the exclusion list can be removed.
NOTE: Value returned for the GET command is meaningless for this MIB object.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.8.7.3 |
rmAllCallHomeExclusionEventRemove all Event IDs from the Call Home Exclusion List.
If Service Advisor Terms and Conditions are accepted, events on the exclusion list can be removed.
NOTE: Value returned for the GET command is meaningless for this MIB object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.7.4 |
testCallHome OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.8.8 |
generateTestCallHomeGenerate a Test Call Home.rw Enumeration .1.3.6.1.4.1.2.3.51.3.8.8.1 |
scaling OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.9 |
scalableComplex OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.9.1 |
scalableComplexIdentifierThe unique numeric identifier for a complex.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.1.1 |
scalableComplexNumPartitionsThe number of partitions currently defined for this complex.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.1.2 |
scalableComplexNumNodesThe number of nodes existing in this complex, regardless
of their assignment to any given partition. For ITEs or blabde,
the physical slot location of the nodes can be determined from the
scalableComplexNodeTable.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.1.3 |
scalableComplexClearThis clears all partition information related to the complex. Any nodes
associated with the complex are no longer assigned to any partitions.
All nodes in the complex must be powered off prior to attempting this
operation, otherwise, the action will fail.rw Enumeration .1.3.6.1.4.1.2.3.51.3.9.1.4 |
scalableComplexPartition OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.9.2 |
scalableComplexPartitionTableTable of scalable complex partition information. SEQUENCE OF ScalableComplexPartitionEntry .1.3.6.1.4.1.2.3.51.3.9.2.1 |
scalableComplexPartitionEntryScalable complex partition information. ScalableComplexPartitionEntry .1.3.6.1.4.1.2.3.51.3.9.2.1.1 |
scalableComplexPartitionIdentifierThe unique numeric identifier for a partition defined within a complex
installed in the chassis.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.2.1.1.1 |
scalableComplexPartitionModeThe currently configured mode of this partition. It is recommended that
a partition be powered off prior to modification of the mode. In addition,
switching a partition mode to stand-alone will cause subsequent partition
actions to be ignored until the partition mode is restored.rw Enumeration .1.3.6.1.4.1.2.3.51.3.9.2.1.1.2 |
scalableComplexPartitionPriNodeKeyThe Node Key for the primary node in the partition. The Node Key is used
to select partition for some actions that affect all nodes in the partition.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.2.1.1.3 |
scalableComplexPartitionNumNodesThe number of nodes currently defined for this partition.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.2.1.1.4 |
scalableComplexPartitionStatusThe current power status of this partition when the partition has a
valid partition configuration. However, in the event the partition
reports a partition consitency check problem, the invalid state is provided.ro Enumeration .1.3.6.1.4.1.2.3.51.3.9.2.1.1.5 |
scalableComplexPartitionSelectThis Node Key of Primary node of the partition is used to select the
partition for which a specific action will be takenrw OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.2.2 |
scalableComplexPartitionActionThis object allows various actions to be taken in relation to a particular partition
in a given complex.
delete(1) - Deletes the partition from the complex. All nodes in the partition must
be powered off prior to attempting this operation, otherwise, the action
will fail.
poweron(2) - Powers up a powered off partition
poweroff(3) - Powers off an already powered on partition
powercycle(4) - Power cycles a partitionrw Enumeration .1.3.6.1.4.1.2.3.51.3.9.2.3 |
scalableComplexPartitionCreate OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.9.3 |
scalableComplexPartitionCreateTableTable used to identify the nodes to be used in create of a partition.
The nodes are identified by Node key. The first node listed will be the
primary node. SEQUENCE OF ScalableComplexPartitionCreateEntry .1.3.6.1.4.1.2.3.51.3.9.3.1 |
scalableComplexPartitionCreateEntryNode information for partition creation. ScalableComplexPartitionCreateEntry .1.3.6.1.4.1.2.3.51.3.9.3.1.1 |
scalableComplexPartitionCreateIndexThe table index.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.3.1.1.1 |
scalableComplexPartitionCreateNodeKeyThe Node Key for a node included in the partition to be created. The first Node Key
in the table is used will be the primary node in the partition to be created.rw OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.3.1.1.2 |
scalableComplexPartitionActionCreateThis object is used to request creation of a new partition, using the nodes
listed in the scalableComplexPartitionCreateTable.
None of the systems can be part of another valid partition, and there cannot
be duplicate Node Keys specified. Partition changes will fail if any of the
systems specified in the change are powered on.
If the partition is successfully created, the scalableComplexPartitionCreateTable
entries will be cleared.rw Enumeration .1.3.6.1.4.1.2.3.51.3.9.3.2 |
scalableComplexNode OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.9.4 |
scalableComplexNodeTableTable of scalable complex node information. This table provides information
and control actions related to the nodes installed in the chassis.
Complex, partition and port information and control are defined
in their own tables. SEQUENCE OF ScalableComplexNodeEntry .1.3.6.1.4.1.2.3.51.3.9.4.1 |
scalableComplexNodeEntryScalable complex node information. ScalableComplexNodeEntry .1.3.6.1.4.1.2.3.51.3.9.4.1.1 |
scalableComplexNodeIndexThe node table index.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.4.1.1.1 |
scalableComplexNodeSerialNumberThe machine serial number of the node which identifies the node.
Note that uniqueness is not guaranteed.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.4.1.1.2 |
scalableComplexNodeKeyThe Node Key for the node. The Node Key is used to select the
node for some particular action.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.4.1.1.3 |
scalableComplexNodePartitionIDFor an assigned node, the identifier of the partition this node is related to.
For an unassigned node, this object has no meaning.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.4.1.1.4 |
scalableComplexNodeRoleIndicates if the node is assigned to a partition, and if so, provides an
indication of whether the node is the primary node of the partition or not.ro Enumeration .1.3.6.1.4.1.2.3.51.3.9.4.1.1.5 |
scalableComplexNodeNumPortsThe number of remote nodes that this node has links to.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.4.1.1.6 |
scalableComplexNodeSelectThis Node Key is used to select the node for which a specific action
will be takenrw OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.4.2 |
scalableComplexNodeActionThe actions that can be applied to an unassigned node. The current state is
provided by the scalableComplexNodeState object.rw Enumeration .1.3.6.1.4.1.2.3.51.3.9.4.3 |
scalableComplexNodeAutoCreateThis object is used to create a partition from all of the nodes in the complex.
None of the systems can be in a partition and all the systems in the complex must
be powered off.rw Enumeration .1.3.6.1.4.1.2.3.51.3.9.4.4 |
scalableComplexNodePort OBJECT IDENTIFIER .1.3.6.1.4.1.2.3.51.3.9.5 |
scalableComplexNodePortTableTable of scalable complex node port information which provides details
related to the port connectivity. Complex, partition and node information
and control are defined in their own tables. SEQUENCE OF ScalableComplexNodePortEntry .1.3.6.1.4.1.2.3.51.3.9.5.1 |
scalableComplexNodePortEntryScalable complex node port information. ScalableComplexNodePortEntry .1.3.6.1.4.1.2.3.51.3.9.5.1.1 |
scalableComplexNodePortIndexThe Node Port table index.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.5.1.1.1 |
scalableComplexNodePortNumThe port number of a port on this node. Note that this port
number is 0-based, but since it is used as the table index
(0 is not allowed), it will be presented as one more than the
actual port number.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.5.1.1.2 |
scalableComplexNodePortRemNodeKeyThe Node Key for the remote node.ro OCTET STRING .1.3.6.1.4.1.2.3.51.3.9.5.1.1.3 |
scalableComplexNodePortRemNumThe zero-based port number of the remote port.ro INTEGER .1.3.6.1.4.1.2.3.51.3.9.5.1.1.4 |
scalableComplexNodePortStatusThe current status of the port.ro Enumeration .1.3.6.1.4.1.2.3.51.3.9.5.1.1.5 |
scalableComplexNodePortTypeThe port type.ro Enumeration .1.3.6.1.4.1.2.3.51.3.9.5.1.1.6 |