MIBs Depot

HUAWEI-DEVICE-MIB

Registered at
1.3.6.1.4.1.2011.6.3
Last updated
2018-09-05 00:00
Organization
Huawei Technologies Co.,Ltd.
Revisions
2018-09-05 00:00, 2018-08-30 00:00, 2018-08-17 00:00, 2018-06-25 00:00, 2018-06-13 00:00, 2018-04-23 00:00, 2018-04-13 00:00, 2018-04-04 00:00, 2018-03-20 00:00, 2018-02-06 00:00, 2018-01-31 00:00, 2018-01-16 00:00, 2018-01-15 00:00, 2017-12-15 00:00, 2017-12-06 00:00, 2017-11-14 00:00, 2017-10-19 00:00, 2017-09-27 00:00, 2017-09-23 00:00, 2017-08-22 00:00, 2017-08-17 00:00, 2017-07-17 00:00, 2017-06-29 00:00, 2017-06-14 00:00, 2017-06-08 00:00, 2017-05-03 00:00, 2017-04-12 00:00, 2017-03-03 00:00, 2017-02-09 00:00, 2017-01-20 00:00, 2017-01-10 00:00, 2016-10-26 00:00, 2016-07-26 00:00, 2016-07-07 00:00, 2016-06-23 00:00, 2016-06-03 00:00, 2015-06-04 00:00, 2015-01-12 00:00, 2015-01-04 00:00, 2014-12-05 00:00, 2014-12-04 00:00, 2014-12-01 00:00, 2014-10-23 00:00, 2014-10-15 00:00, 2014-10-12 00:00, 2014-09-17 00:00, 2014-08-06 00:00, 2014-07-30 00:00, 2014-07-15 00:00, 2014-07-01 00:00, 2014-06-30 00:00, 2014-06-06 00:00, 2014-05-09 00:00, 2014-04-25 00:00, 2014-04-17 00:00, 2014-04-17 00:00, 2014-04-10 00:00, 2014-03-10 00:00, 2014-03-07 00:00, 2014-02-14 00:00, 2014-02-12 00:00, 2014-01-21 00:00, 2014-01-14 00:00, 2013-11-18 00:00, 2013-08-17 00:00, 2013-07-22 00:00, 2013-06-25 00:00, 2013-06-20 00:00, 2013-06-08 00:00, 2013-06-03 00:00, 2013-05-22 12:00, 2013-04-28 12:00, 2013-04-02 00:00, 2013-03-28 00:00, 2013-01-16 00:00, 2013-01-11 00:00, 2012-12-18 00:00, 2012-12-11 00:00, 2012-10-26 00:00, 2012-10-26 00:00, 2012-10-23 00:00, 2012-10-20 00:00, 2012-09-04 00:00, 2012-08-23 00:00, 2012-08-16 00:00, 2012-08-02 00:00, 2012-07-26 00:00, 2012-07-09 00:00, 2012-06-29 00:00, 2012-06-12 00:00, 2012-05-23 00:00, 2012-05-14 00:00, 2012-03-22 00:00, 2012-03-16 00:00, 2012-02-21 00:00, 2012-02-10 00:00, 2012-02-08 00:00, 2012-01-04 00:00, 2011-12-22 00:00, 2011-12-09 00:00, 2011-11-15 00:00, 2011-11-09 00:00, 2011-11-04 00:00, 2011-10-24 00:00, 2011-09-15 00:00, 2011-08-27 00:00, 2011-08-18 00:00, 2011-08-08 00:00, 2011-07-18 00:00, 2011-07-09 00:00, 2011-06-15 00:00, 2011-03-01 00:00, 2011-01-19 00:00, 2010-11-06 00:00, 2010-11-01 00:00, 2010-10-08 00:00, 2010-09-20 00:00, 2010-09-02 00:00, 2010-08-02 00:00, 2010-07-28 00:00, 2010-07-15 00:00, 2010-07-12 00:00, 2010-06-24 00:00, 2010-06-07 00:00, 2010-05-10 00:00, 2010-04-26 00:00, 2010-04-15 00:00, 2010-04-07 00:00, 2010-03-31 00:00, 2010-03-03 00:00, 2010-03-01 00:00, 2010-02-08 00:00, 2010-01-29 00:00, 2010-01-26 00:00, 2009-11-30 00:00, 2009-11-04 00:00, 2009-10-28 00:00, 2009-08-31 00:00, 2009-07-24 00:00, 2009-06-04 00:00, 2009-05-31 00:00, 2009-05-12 00:00, 2009-01-07 00:00, 2009-01-04 00:00, 2008-12-31 00:00, 2008-12-01 00:00, 2008-03-17 00:00, 2008-01-30 00:00, 2008-01-22 00:00, 2007-12-20 00:00, 2007-10-15 00:00, 2007-09-24 00:00, 2007-06-30 00:00, 2007-06-20 00:00, 2004-05-28 00:00, 2004-02-28 00:00, 2002-11-29 00:00
Namespace
huawei
Source file
HUAWEI-DEVICE-MIB
Digest
sha256:cc6ca9cac6c733aecc1190f2c811b3e6a48b108d41ce15264efa26eeafdb39e5

Description

The MIB module defines MIB objects which provide device management NMS interfaces.

Contact

Huawei Industrial Base Bantian, Longgang Shenzhen 518129 People's Republic of China Website: http://www.huawei.com Email: support@huawei.com

Imports

FromSymbols
HCNUM-TCCounterBasedGauge64
HUAWEI-MIBhuaweiUtility
HUAWEI-TC-MIBHWFrameType, HWPCBType, HWPortType, HWSubPCBType
IF-MIBifIndex
INET-ADDRESS-MIBInetAddress, InetAddressPrefixLength, InetAddressType
SNMPv2-CONFMODULE-COMPLIANCE, NOTIFICATION-GROUP, OBJECT-GROUP
SNMPv2-SMICounter64, Integer32, IpAddress, MODULE-IDENTITY, NOTIFICATION-TYPE, OBJECT-IDENTITY, OBJECT-TYPE, TimeTicks, Unsigned32, iso
SNMPv2-TCDateAndTime, DisplayString, RowStatus, TEXTUAL-CONVENTION, TruthValue

Imported by

7 module(s) in this corpus import this one.

Load order

Every file a consumer needs in order to load this module, dependencies first.

HCNUM-TC
HUAWEI-DEVICE-MIB
HUAWEI-MIB
HUAWEI-TC-MIB
IANAifType-MIB
IF-MIB
INET-ADDRESS-MIB
SNMPv2-CONF
SNMPv2-MIB
SNMPv2-SMI
SNMPv2-TC

Under this module's arcs

Where the registration tree carries on below this module.

ArcNameModule
1.3.6.1.4.1.2011.6.3.5hwMemoryDevHUAWEI-MEMORY-MIB

Objects

NameOIDSyntaxAccessStatus
hwSystemPara
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.1
hwSysIpAddr
OBJECT-TYPE
IP address of the system. It'd better not to modify this address when out-band NMS is used. It will take no effect to separately configure IP address or IP address mask.
1.3.6.1.4.1.2011.6.3.1.1IpAddressread-writecurrent
hwSysIpMask
OBJECT-TYPE
IP address mask of the system. This object can take effect only when hwSysIpAddr is also set.
1.3.6.1.4.1.2011.6.3.1.2IpAddressread-writecurrent
hwSysVersion
OBJECT-TYPE
The system software version format is consistent with the specification of HUAWEI product.For example, MA5600V800R008C00.
1.3.6.1.4.1.2011.6.3.1.3DisplayStringread-onlycurrent
hwSysTime
OBJECT-TYPE
This object is used for getting or setting current date and time of the system.
1.3.6.1.4.1.2011.6.3.1.4DateAndTimeread-writecurrent
hwSysWorkMode
OBJECT-TYPE
This object is used for obtaining the working mode of the UA5000. Options: 1. amsanamsan(1) -indicates that the active and standby control boards are in position, with the active control board of AMSAN and the standby control board of AMSAN 2. amsancmsan(2) -indicates that the active and standby control boards are in position, with the active control board of AMSAN and the standby control board of CMSAN 3. cmsancmsan(3) -indicates that the active and standby control boards are in position, with the active control board of CMSAN and the standby control board of CMSAN 4. cmsanamsan(4) -indicates that the active and standby control boards are in position, with the active control board of CMSAN and the standby control board of AMSAN 5. amsanoffline(5) -indicates that the standby control board is not in position and the active control board is AMSAN 6. cmsanoffline(6) -indicates that the standby control board is not in position and the active control board is CMSAN 7. gmsangmsan(7) -indicates that the active and standby control boards are in position, with the active control board of GMSAN and the standby control board of GMSAN 8: amsangmsan(8) -indicates that the active and standby control boards are in position, with the active control board of AMSAN and the standby control board of GMSAN 9. gmsanamsan(9) -indicates that the active and standby control boards are in position, with the active control board of GMSAN and the standby control board of AMSAN 10. cmsangmsan(10) -indicates that the active and standby control boards are in position, with the active control board of CMSAN and the standby control board of GMSAN 11. gmsancmsan(11) -indicates that the active and standby control boards are in position, with the active control board of GMSAN and the standby control board of CMSAN 12.gmsanoffline(12) -indicates that the standby control board is not in position and the active control board is GMSAN 13. null(65536) -indicates that the system work mode is not set
1.3.6.1.4.1.2011.6.3.1.5INTEGER {amsanamsan(1), amsancmsan(2), cmsancmsan(3), cmsanamsan(4), amsanoffline(5), cmsanoffline(6), gmsangmsan(7), amsangmsan(8), gmsanamsan(9), cmsangmsan(10), gmsancmsan(11), gmsanoffline(12), null(65536)}read-onlycurrent
hwSysAverageBufferUsed
OBJECT-TYPE
Query the average memory usage of the system. Collect the sum of the memory usage of all the boards that support memory query in the system, and then calculate the average value. The average value is the average memory usage of the system.
1.3.6.1.4.1.2011.6.3.1.6Integer32 (0..100)read-onlycurrent
hwSysRsvedVlan
OBJECT-TYPE
Describes the start VLAN ID of the reserved VLANs currently used by the system. Default: 4079 The system automatically uses the 15 VLANs starting from the configured start VLAN ID as reserved VLANs.
1.3.6.1.4.1.2011.6.3.1.7Integer32 (2..4079)read-onlycurrent
hwSysRsvedVlanDb
OBJECT-TYPE
Describes the start VLAN ID of the reserved VLANs configured in the system. The configuration takes effect after system restart. Range: 2-4079 Default: 4079 The system automatically uses the 15 VLANs starting from the configured start VLAN ID as reserved VLANs. VLANs 4094 and 4095 are fixedly reserved, and VLAN 1 is the native VLAN. Therefore, these three VLANs cannot be configured as the reserved VLANs.
1.3.6.1.4.1.2011.6.3.1.8Integer32 (2..4079)read-writecurrent
hwIopacketVersion
OBJECT-TYPE
The version information in the IO package, which is consistent with the system version information.
1.3.6.1.4.1.2011.6.3.1.9DisplayStringread-onlycurrent
hwSysWorkScenario
OBJECT-TYPE
System work scenario. Used to identify whether the control board is in the upgrade(2) or normal(1) scenario. Options: 1. normal(1) -the normal scene of the system. If the device need not provide seamless upgrade, set the scenario to normal(1). If the scenario is changed from upgrade(2) to normal(1) and the standby control board is in position, reset the standby control board. 2. upgrade(2)-the upgrade scene of the system. When the device needs to provide seamless upgrade, that is, the service is not interrupted during upgrade, set the scenario to upgrade(2). If it is set to upgrade(2), you can perform operations related to upgrade only, such as saving, loading, backup, active/standby switchover, system reset, and query.
1.3.6.1.4.1.2011.6.3.1.10INTEGER {normal(1), upgrade(2)}read-writecurrent
hwSysTemperatureHighThreshold
OBJECT-TYPE
The threshold of the system. When you set a high temperature threshold, you also need to set a low temperature threshold. Range:40~105 The invalid value is 65535.If the threshold is not configured,the invalid value will be returned.
1.3.6.1.4.1.2011.6.3.1.11Integer32read-writecurrent
hwSysTemperatureLowThreshold
OBJECT-TYPE
The threshold of the system. When you set a low temperature threshold, you also need to set a high temperature threshold. Range:-40~20 The invalid value is 65535.If the threshold is not configured,the invalid value will be returned.
1.3.6.1.4.1.2011.6.3.1.12Integer32read-writecurrent
hwSysExchangeMode
OBJECT-TYPE
System Exchange-Mode, Options: 1. backup(1) -indicates active/standby mode. Two control boards serve as the active and standby control boards respectively. The switching chip of the active control board works independently 2. loadSharing(2) -indicates load sharing mode. The switching chips of the two control boards work together to share the traffic 3. null(65536) -indicates system exchange mode is not set
1.3.6.1.4.1.2011.6.3.1.13INTEGER {backup(1), loadSharing(2), null(65536)}read-onlycurrent
hwSysActivePatch
OBJECT-TYPE
Display the information of the active patches in current system.
1.3.6.1.4.1.2011.6.3.1.14OCTET STRINGread-onlycurrent
hwSysDeactivePatch
OBJECT-TYPE
This object is used for querying the information about the deactivated patch in the current system.
1.3.6.1.4.1.2011.6.3.1.15OCTET STRINGread-onlycurrent
hwSystemAutoConfigStatus
OBJECT-TYPE
GE uplink software commissioning free configuration. Options: 1.enable(1) -the default value is enable 2.disable(2) -this object is no longer used
1.3.6.1.4.1.2011.6.3.1.16INTEGER {enable(1), disable(2)}read-writecurrent
hwSystemEnergySavingSwitch
OBJECT-TYPE
The energy-saving mode of system. Options: 1.basic(1) -when it is set to basic(1), the system energy saving mode is basic mode. 2.deep(2) -when it is set to deep(2), the system energy saving mode is deep mode. 3.optimal(3) -when it is set to optimal(3), the system energy saving mode is optimal mode. 4.standard(4) -when it is set to standard(4), the system energy saving mode is standard mode. The default value is basic(1).
1.3.6.1.4.1.2011.6.3.1.17INTEGER {basic(1), deep(2), optimal(3), standard(4)}read-writecurrent
hwSysEncoding
OBJECT-TYPE
The encoding mode of characters in the system. Options: 1. default(1) -indicates that the encoding mode is no set 2. gbk(2) -indicates that the encoding mode of characters is gbk 3. iso88591(3) -indicates that the encoding mode of characters is iso8859-1 4. utf8(4) -indicates that the encoding mode of characters is utf-8 The value can be gbk(2), iso8859-1(3), or utf-8(4). Default: 1
1.3.6.1.4.1.2011.6.3.1.18INTEGER {default(1), gbk(2), iso88591(3), utf8(4)}read-writecurrent
hwSysUpdateBoardVersion
OBJECT-TYPE
Update Board Version Options: 1.updateBoardVersion(1) -set operation only
1.3.6.1.4.1.2011.6.3.1.19INTEGER {updateBoardVersion(1)}read-writecurrent
hwSysUpdateBoardMaxTimeLen
OBJECT-TYPE
Update Board Version Max Time Len
1.3.6.1.4.1.2011.6.3.1.20Integer32 (1..24)read-writecurrent
hwSystemAdminStateMode
OBJECT-TYPE
System admin state mode. DEFVAL { private } Options: 1.grStandard(1) -grStandard mode complies with GR series standard(such as GR-1093, used in North America). 2.private(2) -private mode,Huawei devices support.
1.3.6.1.4.1.2011.6.3.1.21INTEGER {grStandard(1), private(2)}read-writecurrent
hwSystemAdminStatus
OBJECT-TYPE
The system admin status. Options: 1. nooperation(-1) -default state of the system. 2. is(1) -in service 3. oos(2) -out of service
1.3.6.1.4.1.2011.6.3.1.22INTEGER {nooperation(-1), is(1), oos(2)}read-writecurrent
hwSystemPrimaryStatus
OBJECT-TYPE
The system primary status. Options: 1. isNr(1) -in Service, normal 2. isAnr(2) -in service, abnormal 3. isRst(3) -in service, restricted 4. isAnrst(4) -in service, abnormal & restricted 5. oosAu(5) -out of service, autonomous 6. oosMa(6) -out of service, management 7. oosAuma(7) -out of service, autonomous & management 8. oosAurst(8) -out of service, autonomous & restricted 9. oosMaanr(9) -out of service, management & abnormal
1.3.6.1.4.1.2011.6.3.1.23INTEGER {isNr(1), isAnr(2), isRst(3), isAnrst(4), oosAu(5), oosMa(6), oosAuma(7), oosAurst(8), oosMaanr(9)}read-onlycurrent
hwDeviceArchType
OBJECT-TYPE
The hardware structure type of a device. Currently, the hardware structure types of the existing versions are as follows: Options: 1.arch1(1) -in MxUV8R305, the hardware structure type of the MA5620E, MA5620G, MA5626E, MA5626G, and MA5651(G) is arch1(1) In MxUV8R306, hardware structure type of the MA5610 is arch1(1) In MxUV8R307, hardware structure type of the MA5612, MA5620, and MA5626 is arch1(1) 2.arch2(2) -in MxUV8R306, the hardware structure type of the MA5616 and MA5652(G) is arch2(2) 3.arch3(3) -in MxUV8R308, hardware structure type of the MA5612, MA5620, MA5626, and MA5616 is arch3(3)
1.3.6.1.4.1.2011.6.3.1.24INTEGER {arch1(1), arch2(2), arch3(3)}read-onlycurrent
hwUplinkSysIPAddr
OBJECT-TYPE
The IP address of the uplink system of PVM, it is only used when PVM worked in integrated mode and the IPM worked as the uplink board.
1.3.6.1.4.1.2011.6.3.1.25IpAddressread-writecurrent
hwSysMainBoardTypeDesc
OBJECT-TYPE
The mainboard description.
1.3.6.1.4.1.2011.6.3.1.26OCTET STRING (SIZE(0..64))read-onlycurrent
hwSysEnergySaving
OBJECT-TYPE
The automatic energy saving function consists of seven sub-functions, which are indicated by bits .All bits are disabled by default. If a bit is 0, the represented function is disabled.if a bit is 1, the represented function is enabled.This function is independent of the energy saving function of the optical line terminal (OLT) products by powering off boards. The energy saving bits flag: 1. esEnergySavingService(0) - indicates energy-saving-service-related features, include the feature of automatically unbinding an extended profile. 2. esBoardAutoPowerOnOff(1) - indicates automatic power-off features on a board for energy saving, include the automatic power-on and power-off feature on a board. 3. esPlatform(2) - indicates platform-related energy saving features, include energy saving on the control board and upstream board. 4. esVector(3) - indicates vectoring-related energy saving features, include vectoring disabling feature. 5. esOpticalAccess(4) - indicates the optical access-related energy saving feature,and this object is reserved . 6. esCopperAccess(5) - indicates copper-access-related energy saving features,include MELT energy saving feature. 7. esInnovation(6) - indicates HuaWei's proprietary energy saving technologies,include the line driver(LD) energy saving feature.
1.3.6.1.4.1.2011.6.3.1.27Bits {esEnergySavingService(0), esBoardAutoPowerOnOff(1), esPlatform(2), esVector(3), esOpticalAccess(4), esCopperAccess(5), esInnovation(6)}read-writecurrent
hwSysSceneMode
OBJECT-TYPE
The device work scene. Options: 1. olt(1) -work in OLT scene 2. msan(3) -work in MSAN scene
1.3.6.1.4.1.2011.6.3.1.28INTEGER {olt(1), msan(3)}read-onlycurrent
hwSysFtpXmlConfigure
OBJECT-TYPE
The state of XML file. Options: 1. useful(1) -Xml file is useful 2. useless(2) -Xml file is useless
1.3.6.1.4.1.2011.6.3.1.29INTEGER {useful(1), useless(2)}read-onlycurrent
hwSysCentralizedMgmtPrimary
OBJECT-TYPE
The primary mode for centralized management. Options: 1. extendFrame(1) -Extended frame management 2. standAlone(2) -Stand alone management
1.3.6.1.4.1.2011.6.3.1.30INTEGER {extendFrame(1), standAlone(2)}read-writecurrent
hwUpgradeVerifyVersion
OBJECT-TYPE
The system software version used in update scene for HUAWEI product.For example, MA5600V800R008C00.
1.3.6.1.4.1.2011.6.3.1.31DisplayStringread-onlycurrent
hwDevLongitude
OBJECT-TYPE
The longitude of the device. The value expands 100000 times and the value 2147483647 indicates invalid longitude.
1.3.6.1.4.1.2011.6.3.1.32Integer32 (-18000000..18000000 | 2147483647)read-writecurrent
hwDevLatitude
OBJECT-TYPE
The latitude of the device. The value expands 100000 times and the value 2147483647 indicates invalid latitude.
1.3.6.1.4.1.2011.6.3.1.33Integer32 (-9000000..9000000 | 2147483647)read-writecurrent
hwDevElevation
OBJECT-TYPE
The elevation of the device, in unit of meters. The value 32767 indicates invalid elevation.
1.3.6.1.4.1.2011.6.3.1.34Integer32 (-32768..32767)read-writecurrent
hwDevHorizontalErr
OBJECT-TYPE
The horizontal error of the device, in unit of meters. The value 4294967295 indicates invalid horizontal error.
1.3.6.1.4.1.2011.6.3.1.35Unsigned32 (0..65535 | 4294967295)read-writecurrent
hwDevAltitudeErr
OBJECT-TYPE
The altitude error of the device, in unit of meters. The value 4294967295 indicates invalid altitude error.
1.3.6.1.4.1.2011.6.3.1.36Unsigned32 (0..65535 | 4294967295)read-writecurrent
hwDevAreaCode
OBJECT-TYPE
The area code of the device. The length of area code is 12. The characters can be 0, 1, 2, 3, 4, 5, 6, 7, 8 and 9. The zero-length string indicates invalid area code.
1.3.6.1.4.1.2011.6.3.1.37OCTET STRING (SIZE(0 | 12))read-writecurrent
hwDevGisTimeStamp
OBJECT-TYPE
The time stamp of the measurement signature, which is the number of seconds from 00:00 on January 1, 1970 to the current time. The value 4294967295 indicates invalid time stamp.
1.3.6.1.4.1.2011.6.3.1.38Unsigned32 (0..4294967295)read-writecurrent
hwDevGisDigest
OBJECT-TYPE
The check value of the measurement signature. The length of check value is 16. The characters can be 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, A, B, C, D, E and F. The zero-length string indicates invalid check value.
1.3.6.1.4.1.2011.6.3.1.39OCTET STRING (SIZE(0 | 16))read-writecurrent
hwDevGisCheckCode
OBJECT-TYPE
The check code of the device GPS information. The length of check code is 4. The characters can be 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, A, B, C, D, E and F. The zero-length string indicates invalid area check code.
1.3.6.1.4.1.2011.6.3.1.40OCTET STRING (SIZE(0 | 4))read-writecurrent
hwSysSsdSwitch
OBJECT-TYPE
The secure software downloading status. Options: 1. enable(1) -The secure software downloading is enable 2. disable(2) -The secure software downloading is disable
1.3.6.1.4.1.2011.6.3.1.41INTEGER {enable(1), disable(2)}read-writecurrent
hwSysFtpMode
OBJECT-TYPE
FTP connection mode. Options: 1. port(1) -Set the FTP connection mode to port. 2. passive(2) -Set the FTP connection mode to passive. Default: port(1)
1.3.6.1.4.1.2011.6.3.1.42INTEGER {port(1), passive(2)}read-writecurrent
hwSysMarketScene
OBJECT-TYPE
The device options: 1. carrier(1) -Device work in carrier scene. 2. enterprise(2) -Device work in enterprise scene. Default: carrier(1)
1.3.6.1.4.1.2011.6.3.1.43INTEGER {carrier(1), enterprise(2)}read-onlycurrent
hwDeviceCountryCode
OBJECT-TYPE
1. china(1) -Device of china. 2. oversea(2) -Device of oversea. Default: oversea(2)
1.3.6.1.4.1.2011.6.3.1.44INTEGER {china(1), oversea(2)}read-onlycurrent
hwSysDeviceNameMode
OBJECT-TYPE
1. simple(1) -Simplified device name. 2. detail(2) -Detailed device name. Default: simple(1)
1.3.6.1.4.1.2011.6.3.1.45INTEGER {simple(1), detail(2)}read-writecurrent
hwXponWorkMode
OBJECT-TYPE
The gpon work mode. Options: 1. gpon(1) -gpon workmode 2. combopon(2) -combopon workmode 3. invalid(3) -invalid value Default is combopon.
1.3.6.1.4.1.2011.6.3.1.46INTEGER {gpon(1), combopon(2), invalid(3)}read-writecurrent
hwVsManageMode
OBJECT-TYPE
Virtual system management mode. Options: 1. multiIP(1) -Set the virtual system multi-ip mode. 2. singleIP(2) -Set the virtual system single-ip mode. The default value multi-ip(1).
1.3.6.1.4.1.2011.6.3.1.47INTEGER {multiIP(1), singleIP(2)}read-writecurrent
hwSysIpv6Addr
OBJECT-TYPE
IPV6 address of the system.
1.3.6.1.4.1.2011.6.3.1.48InetAddressread-onlycurrent
hwSysIpv6Mask
OBJECT-TYPE
IPV6 Mask of the system.
1.3.6.1.4.1.2011.6.3.1.49InetAddressPrefixLengthread-onlycurrent
hwSysVersionVrcb
OBJECT-TYPE
The device MIB build version, used by NMS for MIB adaption.
1.3.6.1.4.1.2011.6.3.1.999DisplayStringread-onlycurrent
hwNmsParaTable
OBJECT-TYPE
The index of this table is hwNmsIndex. NMS parameters configuration table. This table is no longer used.
1.3.6.1.4.1.2011.6.3.2not-accessiblecurrent
hwNmsParaEntry
OBJECT-TYPE
The index of this entry is hwNmsIndex. NMS parameters configuration table. This table is no longer used.
1.3.6.1.4.1.2011.6.3.2.1not-accessiblecurrent
hwNmsIndex
OBJECT-TYPE
Index(1..32),at most supports 32 NMSs, exclusively identifies an NMS. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.1Integer32 (1..32)read-onlycurrent
hwNmsName
OBJECT-TYPE
Name of the NMS, which does not have to be consistent with that of the NMS workstation. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.2OCTET STRING (SIZE(0..63))read-writecurrent
hwNmsIp
OBJECT-TYPE
IP address of the NMS workstation that can be outband or inband address. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.3IpAddressread-writecurrent
hwNmsMask
OBJECT-TYPE
IP address mask of the NMS workstation. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.4IpAddressread-writedeprecated
hwNmsMaintainMode
OBJECT-TYPE
Maintenance mode of NMS workstation. If the IP address of the NMS station is in-band, the mode must also be in-band. This object is no longer used. Options: 1.inBandwidth(1) -in Bandwidth 2.outBandwidth(2) -out Bandwidth
1.3.6.1.4.1.2011.6.3.2.1.5INTEGER {inBandwidth(1), outBandwidth(2)}read-writedeprecated
hwNmsGetCommunity
OBJECT-TYPE
Community authentication name used for SNMP protocol GET operation, default value: public. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.6OCTET STRING (SIZE(0..31))read-writecurrent
hwNmsSetCommunity
OBJECT-TYPE
Community authentication name used for SNMP protocol SET operation, default value: private. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.7OCTET STRING (SIZE(0..31))read-writecurrent
hwNmsSnmpPort
OBJECT-TYPE
Snmp communication port of NMS workstation,default value:161. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.8Integer32read-writedeprecated
hwNmsTrapPort
OBJECT-TYPE
Trap receive Port of NMS workstation, default value:162. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.9Integer32read-writedeprecated
hwNmsClass
OBJECT-TYPE
Class of NMS station,default value is 3. This object is no longer used. Options: 1.ro(1) - read only 2.rw(2) - read write 3.rwWithTrap(3) - default value, read write with trap 4.trapOnly(4) - only with trap
1.3.6.1.4.1.2011.6.3.2.1.10INTEGER {ro(1), rw(2), rwWithTrap(3), trapOnly(4)}read-writedeprecated
hwNmsStatus
OBJECT-TYPE
Operation status of NMS station. The NMS station can be added,deleted and modified. This object is no longer used.
1.3.6.1.4.1.2011.6.3.2.1.11RowStatusread-createcurrent
hwSlotConf
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.3
hwFrameTable
OBJECT-TYPE
This table describes basic chassis information.
1.3.6.1.4.1.2011.6.3.3.1not-accessiblecurrent
hwFrameEntry
OBJECT-TYPE
The index of this entry is hwFrameTable. Shelf description table that describes basic information of a shelf. You can obtain the shelf information, including the shelf type, number of slots, and the shelf running status, and the shelf management status.
1.3.6.1.4.1.2011.6.3.3.1.1not-accessiblecurrent
hwFrameIndex
OBJECT-TYPE
The index of a shelf in the device.
1.3.6.1.4.1.2011.6.3.3.1.1.1Integer32 (0..1024)read-onlycurrent
hwFrameType
OBJECT-TYPE
The type of a shelf, which can be obtained from HUAWEI-TC-MIB.mib.
1.3.6.1.4.1.2011.6.3.3.1.1.2HWFrameTyperead-createcurrent
hwFrameDesc
OBJECT-TYPE
The description about the frame. It is used to describe some extra information. For convenient management, you can set the location of the room in which the shelf is located as the description.
1.3.6.1.4.1.2011.6.3.3.1.1.3OCTET STRING (SIZE(0..128))read-createcurrent
hwSlots
OBJECT-TYPE
The number of physical slots in the shelf.
1.3.6.1.4.1.2011.6.3.3.1.1.4Integer32read-onlycurrent
hwFrameOperStatus
OBJECT-TYPE
The operation status of frame. Options: 1. normal(1) -indicates that the shelf is running normally 2. fault(2) -indicates that the shelf is faulty 3. other(3) -indicates that the shelf is in a state other than the previous three states 4. discovery(4)-indicates that the shelf is in the auto discovery state and is to be activated 5. mismatch(5) -indicates that the shelf type is inconsistent with the configuration in the database of device 6. offline(6) -indicates that the shelf is offline or the link of the shelf is down
1.3.6.1.4.1.2011.6.3.3.1.1.5INTEGER {normal(1), fault(2), other(3), discovery(4), mismatch(5), offline(6)}read-onlycurrent
hwFrameAdminStatus
OBJECT-TYPE
The administration status of frame. Options: 1. nooperation(-1) - default state of the system 2. disable(1) - indicates that the frame administration state is disable 3. enable(2) - indicates that the frame administration state is enable 4. reset(3) - reset the shelf. If you need to reset the shelf immediately, perform the operation only. If you need to reset the shelf after a certain period, you also need to set hwFrameResetTimeout. If you need to reset the control shelf, the entire system is reset; otherwise, the control board in the specified shelf is reset 5. test(4) - test the frame 6. confirm(5) - confirm the frame 7. delete(6) - delete the frame info 8. batchconfirm(7) - confirm the boards in a shelf in batches 9. bind(8) - bind ont serial number with the extended frame ID
1.3.6.1.4.1.2011.6.3.3.1.1.6INTEGER {nooperation(-1), disable(1), enable(2), reset(3), test(4), confirm(5), delete(6), batchconfirm(7), bind(8)}read-createcurrent
hwFrameRowStatus
OBJECT-TYPE
The device that supports the slave shelf allows you to add a shelf (createAndGo(4)) and delete a shelf (destroy(6)) only. The device that does not support the slave shelf and does not support the setting operation.
1.3.6.1.4.1.2011.6.3.3.1.1.7RowStatusread-createcurrent
hwBackplaneVersion
OBJECT-TYPE
Backplane board version information. Use the new-line character \n (ACSII 0x0A) to space various version information. It mainly contains the following information: Hardware PCB version \n MAB version \n Board Type \n
1.3.6.1.4.1.2011.6.3.3.1.1.8OCTET STRING (SIZE(0..255))read-onlycurrent
hwBackplanePhySerialNum
OBJECT-TYPE
The vendor-specific serial number string for the physical entity. The preferred value is the serial number string actually printed on the component itself.
1.3.6.1.4.1.2011.6.3.3.1.1.9OCTET STRING (SIZE(0..32))read-onlycurrent
hwFrameResetTimeout
OBJECT-TYPE
Used to set the delay time of shelf reset, in unit of seconds. When you set hwFrameResetTimeout, you also need to set hwFrameAdminStatus to reset(3). If the shelf resetting fails, the device tries again in three seconds, until the resetting is successful or the number of resetting attempts exceeds the maximum. Initial value is -1.
1.3.6.1.4.1.2011.6.3.3.1.1.10Integer32 (-1 | 2..600)read-writecurrent
hwFrameCLEICode
OBJECT-TYPE
Frame CLEI Code (COMMON LANGUAGE Location Identifier Code): Used to identify the location and the type of a telecommunication device. For the definition of the CLEI Code, refer to the GR-485.
1.3.6.1.4.1.2011.6.3.3.1.1.11OCTET STRING (SIZE(0..640))read-onlycurrent
hwFrameTypeName
OBJECT-TYPE
Frame information description, to describe name information of the frame.
1.3.6.1.4.1.2011.6.3.3.1.1.12OCTET STRINGread-onlycurrent
hwFrameExtendPort
OBJECT-TYPE
The extending port of main frame which is used to connect extended frame.
1.3.6.1.4.1.2011.6.3.3.1.1.13Integer32read-writecurrent
hwFrameUplinkPort
OBJECT-TYPE
The uplink port of extended frame.
1.3.6.1.4.1.2011.6.3.3.1.1.14Integer32read-onlycurrent
hwFrameRackID
OBJECT-TYPE
Indicates the ID of the rack.
1.3.6.1.4.1.2011.6.3.3.1.1.15Integer32 (0..65535)read-writecurrent
hwFrameExtendingSubId
OBJECT-TYPE
Sub ID of extending frame. If extend type is ETH, sub ID is 0xffffffff, it is invalid. If extend type is GPON, sub ID is ont ID, it is valid.
1.3.6.1.4.1.2011.6.3.3.1.1.16Integer32read-onlycurrent
hwFrameExtendType
OBJECT-TYPE
The type of extended frame connecting to the main frame, its value is the same as the ifType of the extending port.
1.3.6.1.4.1.2011.6.3.3.1.1.17Integer32read-onlycurrent
hwFrameHardwareDesc
OBJECT-TYPE
Hardware description of frame.
1.3.6.1.4.1.2011.6.3.3.1.1.18OCTET STRING (SIZE(0..510))read-onlycurrent
hwFrameGponDeviceSn
OBJECT-TYPE
ONT serial number. The valid length of the serial number is 8, and 0 indicates that the node is not set.
1.3.6.1.4.1.2011.6.3.3.1.1.19OCTET STRING (SIZE(0..8))read-writecurrent
hwFramePhySerialNum
OBJECT-TYPE
The vendor-specific serial number string for the physical entity. The preferred value is the serial number string actually printed on the component itself.
1.3.6.1.4.1.2011.6.3.3.1.1.20OCTET STRING (SIZE(0..32))read-onlycurrent
hwFrameFanAlarm
OBJECT-TYPE
This MIB node is used to query the alarm status of the fan in the extended frame, which is represented by bits. Functions of each bit are as follows: 1: faSupportQuery(0) - indicates whether query of the alarm status of the fan in the extended frame is supported. If this bit is 0, the query is supported. If this bit is 1, the query is not supported. When the extended frame is normal and reports the fan alarm status to the main frame, the query is supported. In other cases, the query is not supported. 2: faFanState(1) - indicates the communication status of the fan in the extended frame. If this bit is 0, the communication is normal. If this bit is 1, the communication is abnormal. If the communication is abnormal, the value of faFanBlockState(2) and faFansBlockState(3) are invalid, user do not have to pay attention to them. 3: faFanBlockState(2) - indicates whether a single fan in the extended frame is blocked. If this bit is 0, no single fan is blocked. If this bit is 1, a single fan is blocked. 4: faFansBlockState(3) - indicates whether multiple fans in the extended frame are blocked. If this bit is 0, no multiple fans are blocked. If this bit is 1, multiple fans are blocked.
1.3.6.1.4.1.2011.6.3.3.1.1.21Bits {faSupportQuery(0), faFanState(1), faFanBlockState(2), faFansBlockState(3)}read-onlycurrent
hwFrameMacAddress
OBJECT-TYPE
The remote frame mac address, and its format is XX-XX-XX-XX-XX-XX. For local frame, the value is invalid.
1.3.6.1.4.1.2011.6.3.3.1.1.22OCTET STRING (SIZE(0..20))read-onlycurrent
hwFrameQueryAssit
OBJECT-TYPE
The number of assist frame of this frame.
1.3.6.1.4.1.2011.6.3.3.1.1.65536Integer32read-onlycurrent
hwSlotTable
OBJECT-TYPE
This table describes board information.
1.3.6.1.4.1.2011.6.3.3.2not-accessiblecurrent
hwSlotEntry
OBJECT-TYPE
The board description table, used to manage the running status of boards and board information, such as description of boards, daughter board quantity and board type. The indexes of this entry are hwFrameIndex and hwSlotIndex. For the hwFrameIndex object, refer to hwFrameTable. For example, 0.2 indicates that the board is in slot 2, shelf 0.
1.3.6.1.4.1.2011.6.3.3.2.1not-accessiblecurrent
hwSlotIndex
OBJECT-TYPE
A slot index is used to identify the location of a board in a shelf. You can locate a board in a shelf according to hwFrameIndex and hwSlotIndex. For the hwFrameIndex object, refer to hwFrameTable.
1.3.6.1.4.1.2011.6.3.3.2.1.1Integer32 (0..255)read-onlycurrent
hwSlotType
OBJECT-TYPE
Board type, which is defined in HUAWEI-TC-MIB.mib. The board type supported by a slot varies. For example, a slot can be inserted with a power board only, but certain slots can be inserted with voice service boards and broadband service boards. When adding a board by using the hwSlotRowStatus, you need to specify the board information such as board type and slot number. When adding a board, you need to check whether the board can be inserted in the specified slot.
1.3.6.1.4.1.2011.6.3.3.2.1.2HWPCBTyperead-createcurrent
hwSlotDesc
OBJECT-TYPE
The description about the board, providing additional information about a board for users. For example, you can set the services supported by the board as the description.
1.3.6.1.4.1.2011.6.3.3.2.1.3OCTET STRING (SIZE(0..64))read-createcurrent
hwSlotPcbVersion
OBJECT-TYPE
The PCB version information of the board. It has been discarded. The information of PCB version and other versions are described in the hwSlotVersion.
1.3.6.1.4.1.2011.6.3.3.2.1.4OCTET STRING (SIZE(0..64))read-onlydeprecated
hwSlotVersion
OBJECT-TYPE
The version information about the board. Refer to the technical specifications of Huawei Technologies Co., Ltd. Use the new-line character \n (ACSII 0x0A) to space various version information. If there is no corresponding version, the new-line character shall also be inserted to remain the order. Detailed order information: Hardware PCB version \n Software version \n Logic version \n DSP version \n Standby CPU software version \n Chip version \n Other software version of the chip with a software \n Other version information \n The version information may have a slight difference according to different types of boards. For example, the standby CPU software version is not displayed for certain boards.
1.3.6.1.4.1.2011.6.3.3.2.1.5OCTET STRING (SIZE(0..640))read-onlycurrent
hwSlotWorkMode
OBJECT-TYPE
Board working mode that describes whether the board is working in main state or in standby with loadshare, nullbackup, voice, satop state. Options: 1. main(1) - indicates that the active control board, supporting the get operation only 2. standby(2) - indicates that the standby control board, supporting the get operation only 3. loadshare(3) - indicates that the board working mode is load sharing 4. nullbackup(4) - indicates that the board working mode is backup 5. voice(5) - indicates to get and set the working mode of an EDT service board 6. satop(6) - indicates to get and set the working mode of an EDT service board or TOPB service board 7. pots(7) - indicates to get and set the working mode of an VDM service board 8. isdn(8) - indicates to get and set the working mode of an VDM service board 9. bonding(9) - indicates to get and set the working mode of an ADP service board 10. retransmission(10) - indicates to get and set the working mode of an ADP service board 11. nativetdm(11) - indicates to get and set the working mode of a TOPB service board 12. other(255) - indicates other working mode An EDT service board can be running either in voice mode, that is, voice(5), or in broadband mode, that is, satop(6). Setting the working mode of the EDT service board causes board resetting. An VDM service board can be running either in pots mode, that is, pots(7), or in isdn mode, that is, isdn(8). Setting the working mode of the VDM service board causes board resetting. Setting the board working mode may cause board resetting. When you are setting the working mode, you cannot set hwSlotAdminStatus or hwSlotRowStatus at the same time.
1.3.6.1.4.1.2011.6.3.3.2.1.6INTEGER {main(1), standby(2), loadshare(3), nullbackup(4), voice(5), satop(6), pots(7), isdn(8), bonding(9), retransmission(10), nativetdm(11), other(255)}read-writecurrent
hwSubSlots
OBJECT-TYPE
The number of sub boards supported by the board.
1.3.6.1.4.1.2011.6.3.3.2.1.7Integer32read-onlycurrent
hwSlotOperStatus
OBJECT-TYPE
The running status of a board. Options: 1. null(1) -indicates that the board is null 2. normal(2) -indicates that the board is running normally 3. fault(3) -indicates that the board is faulty but in position 4. forbidden(4) -indicates that the board is in position but disabled 5. autofind(5) -indicates that the board is in the autofind state. If a board is added through hwSlotRowStatus and the board is not confirmed, the board is in the autofind state. If a board is inserted in an idle slot, after the report of automatic registration, the board is also in the autofind state 6. config(6) -indicates that the board is in the configuration state. After a board that is in the auto discovery. state is confirmed, data needs to be configured on the board. The board is in the configuration state during data configuration. After a board is successfully configured, its status is changed from config(6) to normal(2). If the configuration fails, the board status is changed from config(6) to fault(3) 7. offline(7) -indicates that the board is faulty and is not in position 8. abnormal(8) -indicates that the board is abnormal 9. versionerr(9) -indicates that the board version is error 10. autoload(10) -indicates that the board is in the auto loading state. If detecting a software update, the board automatically loads the update. If a board is in the auto loading state, resetting or disabling the board may fail 11. outofservice(11) -indicates that the board is out of service 12. graceful(12) -indicates that the board running state is graceful 13. shutdown(13) -indicates that the board is in the shutdown state. 14. energysavingshutdown(14) -used for system energy saving. Reference to hwSysEnergySaving node for more detail. 15. hightempshutdown(15) -when the temperature of a board exceeds the high temperature threshold, the board is powered off in order to protect the board 16. manualshutdown(16) -services on certain boards can be recovered only after restart of the board. You can manually power off the board. Then, the board is in the manual shutdown state 17. mismatch(17) -when a board inserted in a slot is inconsistent with the configuration saved in the system, the board is in the mismatch(17) state 18. acoffshutdown(18) -used to protect system when there is no AC Power. Certain products use the power saving features, energysavingshutdown(14), hightempshutdown(15), manualshutdown(16),acoffshutdown(18) to distinguish the shutdown causes. For outofservice(11), graceful(12), refer to hwSlotEndServiceMode.
1.3.6.1.4.1.2011.6.3.3.2.1.8INTEGER {null(1), normal(2), fault(3), forbidden(4), autofind(5), config(6), offline(7), abnormal(8), versionerr(9), autoload(10), outofservice(11), graceful(12), shutdown(13), energysavingshutdown(14), hightempshutdown(15), manualshutdown(16), mismatch(17), acoffshutdown(18)}read-onlycurrent
hwSlotAdminStatus
OBJECT-TYPE
Board status management. This object cannot be set simultaneously with hwSlotRowStatus or hwSlotWorkMode. Options: 1. nooperation(-1) -default state of the system 2. disable(1) -disable the running of a board 3. enable(2) -enable the running of a board 4. reset(3) -reset a board 5. test(4) -test a board 6. confirm(5) -confirm the board in the discovery(5) state in hwSlotOperStatus After the operation, the board is in the config state 7. switch(6) -main board switchover on access network UA device 8. delete(7) -delete a board 9. forbidden(8) -forbid a board 10.unforbidden(9) -permit a board 11.endservice(10) -used in the exit delay of a board 12.startservice(11) -used in the exit delay of a board 13.poweron(12) -used to power on a board 14.poweroff(13) -used to power off a board 15.is(14) -in service 16.oos(15) -out of service 17.hotreset(16) -hotreset a board
1.3.6.1.4.1.2011.6.3.3.2.1.9INTEGER {nooperation(-1), disable(1), enable(2), reset(3), test(4), confirm(5), switch(6), delete(7), forbidden(8), unforbidden(9), endservice(10), startservice(11), poweron(12), poweroff(13), is(14), oos(15), hotreset(16)}read-createcurrent
hwSlotRowStatus
OBJECT-TYPE
Supported setting operations are createAndGo(4) and destroy(6). Options: 1. CreateAndGo(4) - When adding a board in offline mode, you must set the hwSlotType object at the same time. The hwSlotType object must support offline adding. After you add a board in offline mode on the NMS, if adding a daughter board is supported, you can also add a daughter board. See hwSubslotAdminStatus in hwSubslotTable. 2. Destroy(6) - Used to delete a board.
1.3.6.1.4.1.2011.6.3.3.2.1.10RowStatusread-createcurrent
hwSlotPhySerialNum
OBJECT-TYPE
The vendor-specific serial number string for the board. The preferred value is the serial number string actually printed on the component itself.
1.3.6.1.4.1.2011.6.3.3.2.1.11OCTET STRING (SIZE(0..32))read-onlycurrent
hwSlotShutdownState
OBJECT-TYPE
Shutdown state of the board. Options: 1. powerOffState(1) -indicates the power-off state 2. powerOnState(2) -indicates the power-on state This object is no longer used.
1.3.6.1.4.1.2011.6.3.3.2.1.12INTEGER {powerOffState(1), powerOnState(2)}read-onlycurrent
hwSlotTemprature
OBJECT-TYPE
The temperature of the board. (Unit:centigrade) The value 0X7FFFFFFF indicates invalid temperature.
1.3.6.1.4.1.2011.6.3.3.2.1.13Integer32read-onlycurrent
hwSlotUpdateVersion
OBJECT-TYPE
The message is reported if the current version of a board is inconsistent with the version saved in the flash memory. The contents of the message are as follows: Current BIOS version of the board 3 bytes BIOS version of the board in the flash 3 bytes Current software version of the board 3 bytes Software version of the board in the flash memory 3 bytes
1.3.6.1.4.1.2011.6.3.3.2.1.14OCTET STRING (SIZE(0..32))read-onlycurrent
hwSlotAdminForceOOSTime
OBJECT-TYPE
The timeout time before forcing to quit service of the board, in unit of minutes. Range: 1-1440 Default: 0 Unit: minutes
1.3.6.1.4.1.2011.6.3.3.2.1.15Integer32 (1..1440)read-createcurrent
hwSlotForceOOSTime
OBJECT-TYPE
The remain time of the forcing to out of service. Unit:Minute
1.3.6.1.4.1.2011.6.3.3.2.1.16Integer32 (0..86400)read-onlycurrent
hwSlotAdminForceOOSTimeoutWorkMode
OBJECT-TYPE
The handling after the timeout time elapses when a board delays in quitting service. Options: 1. forced(1) - force to handle 2. cancel(2) - cancel handling
1.3.6.1.4.1.2011.6.3.3.2.1.17INTEGER {forced(1), cancel(2)}read-createcurrent
hwSlotEndServiceMode
OBJECT-TYPE
The mode in which a board quits service. Options: 1. immediate(1) -quit service immediately 2. graceful(2) -quit service later
1.3.6.1.4.1.2011.6.3.3.2.1.18INTEGER {immediate(1), graceful(2)}read-createcurrent
hwSlotCLEICode
OBJECT-TYPE
Card CLEI Code(COMMON LANGUAGE Location Identifier Code): Used to identify the location and the type of a telecommunication device. For the definition of the CLEI Code, refer to the GR-485.
1.3.6.1.4.1.2011.6.3.3.2.1.19OCTET STRING (SIZE(0..640))read-onlycurrent
hwSlotNetworkRole
OBJECT-TYPE
Indicates the network role of a board. Options: 1. cascade(1) -indicates the subtending side, which is used for subtending and capturing certain protocol packets 2. network(2) -indicates the network side, which is used for upstream transmission 3. user(3) -indicates the user side, which is used for creating the service port 4. extend(4) -indicates the extend side, which is used for connecting to the extended frame 5. invalid(255)-indicates the invalid value
1.3.6.1.4.1.2011.6.3.3.2.1.20INTEGER {cascade(1), network(2), user(3), extend(4), invalid(255)}read-writecurrent
hwSlotTypeName
OBJECT-TYPE
Slot information description, to describe board name information of the slot.
1.3.6.1.4.1.2011.6.3.3.2.1.21OCTET STRING (SIZE(0..64))read-onlycurrent
hwSlotPrimaryStatus
OBJECT-TYPE
The primary status of the Board. Options: 1. isNr(1) -in Service, normal 2. isAnr(2) -in service, abnormal 3. isRst(3) -in service, restricted 4. isAnrst(4) -in service, abnormal & restricted 5. oosAu(5) -out of service, autonomous 6. oosMa(6) -out of service, management 7. oosAuma(7) -out of service, autonomous & management 8. oosAurst(8) -out of service, autonomous & restricted 9. oosMaanr(9) -out of service, management & abnormal 10. unknown(10) -unknown
1.3.6.1.4.1.2011.6.3.3.2.1.22INTEGER {isNr(1), isAnr(2), isRst(3), isAnrst(4), oosAu(5), oosMa(6), oosAuma(7), oosAurst(8), oosMaanr(9), unknown(10)}read-onlycurrent
hwSlotSecondaryStatus
OBJECT-TYPE
The secondary status of the board. This BITS structure can report the following status: 1. sstAins(0) -this bit position positively reports that the status of the board is automatic in-service 2. sstFaf(1) -facility failure 3. sstFlt(2) -fault 4. sstLpbk(3) -loopback 5. sstMea(4) -mismatch of equipment and attributes 6. sstSgeo(5) -supporting entity outage 7. sstStbyh(6) -standby-Hot 8. sstTs(7) -test 9. sstUas(8) -unassigned 10. sstUeq(9) -unequipped 11. sstWrk(10) -working 12. sstPwr(11) -power
1.3.6.1.4.1.2011.6.3.3.2.1.23Bits {sstAins(0), sstFaf(1), sstFlt(2), sstLpbk(3), sstMea(4), sstSgeo(5), sstStbyh(6), sstTs(7), sstUas(8), sstUeq(9), sstWrk(10), sstPwr(11)}read-onlycurrent
hwSlotCreateTime
OBJECT-TYPE
This object is used for getting the time of adding or creating a board.
1.3.6.1.4.1.2011.6.3.3.2.1.24DateAndTimeread-onlycurrent
hwSlotPortNumWorkMode
OBJECT-TYPE
Indicates the port number working mode of a board. The default value is portnumworkmode48(5). Options: 1. portnumworkmode8(1) - Indicates that the board is in 8-channel port number working mode. 2. portnumworkmode16(2) - Indicates that the board is in 16-channel port number working mode. 3. portnumworkmode24(3) - Indicates that the board is in 24-channel port number working mode. 4. portnumworkmode32(4) - Indicates that the board is in 32-channel port number working mode. 5. portnumworkmode48(5) - Indicates that the board is in 48-channel port number working mode. 6. other(255) - Indicates that the board is in invalid port working mode. Setting port working mode of a board triggers system restarts. Therefore, this node cannot be set concurrently with hwSlotAdminStatus, hwSlotRowStatus, and hwSlotWorkMode nodes.
1.3.6.1.4.1.2011.6.3.3.2.1.25INTEGER {portnumworkmode8(1), portnumworkmode16(2), portnumworkmode24(3), portnumworkmode32(4), portnumworkmode48(5), other(255)}read-writecurrent
hwSubslotTable
OBJECT-TYPE
Subslot description table that describes detailed information of each subslot attached to the board. The indexes of this table are hwFrameIndex, hwSlotIndex and hwSubslotIndex. For the hwFrameIndex object, refer to hwFrameTable; for the hwSlotIndex object, refer to hwSlotTable. For example, 0.1.0 indicates that a daughter board is in subslot 0, slot 1, shelf 0.
1.3.6.1.4.1.2011.6.3.3.3not-accessiblecurrent
hwSubslotEntry
OBJECT-TYPE
Subslot description table that describes detailed information of each subslot attached to the board. The indexes of this entry are hwFrameIndex, hwSlotIndex and hwSubslotIndex. For the hwFrameIndex object, refer to hwFrameTable; for the hwSlotIndex object, refer to hwSlotTable. For example, 0.1.0 indicates that a daughter board is in subslot 0, slot 1, shelf 0.
1.3.6.1.4.1.2011.6.3.3.3.1not-accessiblecurrent
hwSubslotIndex
OBJECT-TYPE
The index of a daughter board is determined by the physical position of the daughter board on the board. The hwSubslotIndex value of 65535 indicates the board itself.
1.3.6.1.4.1.2011.6.3.3.3.1.1Integer32 (0..255)read-onlycurrent
hwSubslotType
OBJECT-TYPE
For the definition of the daughter board type, refer to the HUAWEI-TC-MIB.mib. When adding a daughter board on a board, you need to specify the type of the daughter board and check whether the daughter board can be inserted in the specified subslot on the board.
1.3.6.1.4.1.2011.6.3.3.3.1.2HWSubPCBTyperead-createcurrent
hwSubslotPorts
OBJECT-TYPE
The number of physical ports owned by the sub board.
1.3.6.1.4.1.2011.6.3.3.3.1.3Integer32read-onlycurrent
hwSubslotOperStatus
OBJECT-TYPE
Operation status of the daughter board. Options: 1. uninstall(1) -indicates that the daughter board is not installed 2. normal(2) -indicates that the daughter board is running normally 3. fault(3) -indicates that the daughter board is faulty 4. forbidden(4) -the object is not used 5. autofind(5) -indicates that the daughter board is in the autofind state. 6. config(6) -indicates that the daughter board is in the configuration state. The daughter board is in the configuration state during data configuration. After a daughter board is successfully configured, its status is changed from config(6) to normal(2). If the configuration fails, the daughter board status is changed from config(6) to fault(3) 7. offline(7) -indicates that the daughter board is faulty and is not in position 8. abnormal(8) -indicates that the daughter board is abnormal 9. versionerr(9) -indicates that the daughter board version is error 10. autoload(10) -indicates that the daughter board is in the auto loading state. If detecting a software update, the daughter board automatically loads the update. If a daughter board is in the auto loading state, resetting or disabling the daughter board may fail 11. outofservice(11) -indicates that the daughter board is out of service 12. graceful(12) -indicates that the daughter board running state is graceful 13. shutdown(13) -indicates that the daughter board is in the shutdown state. 14. energysavingshutdown(14) -used for system energy saving. Reference to hwSysEnergySaving node for more detail. 15. hightempshutdown(15) -when the temperature of a daughter board exceeds the high temperature threshold, the daughter board is powered off in order to protect the daughter board 16. manualshutdown(16) -services on certain daughter boards can be recovered only after restart of the daughter board. You can manually power off the daughter board. Then, the daughter board is in the manual shutdown state 17. mismatch(17) -when a daughter board inserted in a slot is inconsistent with the configuration saved in the system, the daughter board is in the mismatch(17) state 18. acoffshutdown(18) -used to protect system when there is no AC Power. Certain products use the power saving features, energysavingshutdown(14), hightempshutdown(15), manualshutdown(16),acoffshutdown(18) to distinguish the shutdown causes.
1.3.6.1.4.1.2011.6.3.3.3.1.5INTEGER {uninstall(1), normal(2), fault(3), forbidden(4), autofind(5), config(6), offline(7), abnormal(8), versionerr(9), autoload(10), outofservice(11), graceful(12), shutdown(13), energysavingshutdown(14), hightempshutdown(15), manualshutdown(16), mismatch(17), acoffshutdown(18)}read-onlycurrent
hwSubslotAdminStatus
OBJECT-TYPE
Administration status of the daughter board in the subslot. This object is not used. Options: 1. nooperation(-1) -indicates the default state 2. disable(1) -indicates the disable state 3. enable(2) -indicates the enable state 4. reset(3) -indicates the reset state 5. test(4) -indicates the test state 6. confirm(5) -indicates the confirmation state 7. delete(6) -indicates the delete state 8. is(7) -indicates in service 9. oos(8) -indicates out of service 10. poweron(9) -indicates the poweron state 11. poweroff(10) -indicates the poweroff state
1.3.6.1.4.1.2011.6.3.3.3.1.7INTEGER {nooperation(-1), disable(1), enable(2), reset(3), test(4), confirm(5), delete(6), is(7), oos(8), poweron(9), poweroff(10)}read-createcurrent
hwSubslotVersion
OBJECT-TYPE
daughter board version information, obtained from the version information about the board on which the daughter board is located. Refer to the hwSlotVersion in the hwSlotTable.
1.3.6.1.4.1.2011.6.3.3.3.1.8OCTET STRING (SIZE(0..1024))read-createcurrent
hwSubSlotDesc
OBJECT-TYPE
The description about the daughter board. Do not support the setting operation.
1.3.6.1.4.1.2011.6.3.3.3.1.9OCTET STRING (SIZE(0..64))read-createcurrent
hwSubslotRowStatus
OBJECT-TYPE
Only the operation of adding a daughter board, that is, setting createAndGo(4), is supported. When adding a daughter board, you must set the hwSubslotType object at the same time. After you add a board by using the hwSlotAdminStatus object in hwSlotTable, if the board allows you to add a daughter board and the board status (hwSlotOperStatus) is discovery(5), you can add a daughter board in this way.
1.3.6.1.4.1.2011.6.3.3.3.1.10RowStatusread-createcurrent
hwSubSlotPhySerialNum
OBJECT-TYPE
The vendor-specific serial number string for the daughter board. The preferred value is the serial number string actually printed on the component itself.
1.3.6.1.4.1.2011.6.3.3.3.1.11OCTET STRING (SIZE(0..32))read-onlycurrent
hwSubslotTypeName
OBJECT-TYPE
daughter board type name in the subslot,refer to the HW-TC table.
1.3.6.1.4.1.2011.6.3.3.3.1.12OCTET STRING (SIZE(0..64))read-onlycurrent
hwSubslotPrimaryStatus
OBJECT-TYPE
The primary status of the daughter board. Options: 1. isNr(1) -in Service, normal 2. isAnr(2) -in service, abnormal 3. isRst(3) -in service, restricted 4. isAnrst(4) -in service, abnormal & restricted 5. oosAu(5) -out of service, autonomous 6. oosMa(6) -out of service, management 7. oosAuma(7) -out of service, autonomous & management 8. oosAurst(8) -out of service, autonomous & restricted 9. oosMaanr(9) -out of service, management & abnormal
1.3.6.1.4.1.2011.6.3.3.3.1.13INTEGER {isNr(1), isAnr(2), isRst(3), isAnrst(4), oosAu(5), oosMa(6), oosAuma(7), oosAurst(8), oosMaanr(9)}read-onlycurrent
hwSubslotSecondaryStatus
OBJECT-TYPE
The secondary status of the daughter board. This BITS structure can report the following status: 1. sstAins(0) -this bit position positively reports that the status of the daughter board is automatic in-service 2. sstFaf(1) -facility failure 3. sstFlt(2) -fault 4. sstLpbk(3) -loopback 5. sstMea(4) -mismatch of equipment and attributes 6. sstSgeo(5) -supporting entity outage 7. sstStbyh(6) -standby-Hot 8. sstTs(7) -test 9. sstUas(8) -unassigned 10. sstUeq(9) -unequipped 11. sstWrk(10) -working 12. sstPwr(11) -power
1.3.6.1.4.1.2011.6.3.3.3.1.14Bits {sstAins(0), sstFaf(1), sstFlt(2), sstLpbk(3), sstMea(4), sstSgeo(5), sstStbyh(6), sstTs(7), sstUas(8), sstUeq(9), sstWrk(10), sstPwr(11)}read-onlycurrent
hwSubslotCLEICode
OBJECT-TYPE
daughter board CLEI Code(COMMON LANGUAGE Location Identifier Code): Used to identify the location and the type of a telecommunication device. For the definition of the CLEI Code, refer to the GR-485.
1.3.6.1.4.1.2011.6.3.3.3.1.15OCTET STRING (SIZE(0..640))read-onlycurrent
hwSubslotTemperature
OBJECT-TYPE
The temperature of the daughter board. (Unit:centigrade) The value 0X7FFFFFFF indicates invalid temperature.
1.3.6.1.4.1.2011.6.3.3.3.1.16Integer32read-onlycurrent
hwSubslotCpuRate
OBJECT-TYPE
The cpu occupancy of the daughter board. The value -1 indicates invalid cpu occupancy.
1.3.6.1.4.1.2011.6.3.3.3.1.17Integer32 (-1 | 0..100)read-onlycurrent
hwSubslotRamUseRate
OBJECT-TYPE
The memory occupancy of the daughter board. The value -1 indicates invalid memory occupancy.
1.3.6.1.4.1.2011.6.3.3.3.1.18Integer32 (-1 | 0..100)read-onlycurrent
hwPortTable
OBJECT-TYPE
Port configuration table that describes the detailed information of physical ports in the board, including the type, status and rate of the port. This table must be implemented. The indexes of this table are hwFrameIndex, hwSlotIndex, hwSubslotIndex and hwPortIndex. hwFrameIndex refer to hwFrameTable, hwSlotIndex refer to hwSlotTable, hwSubslotIndex refer to hwSubslotTable.
1.3.6.1.4.1.2011.6.3.3.4not-accessiblecurrent
hwPortEntry
OBJECT-TYPE
Port configuration table that describes the detailed information of physical ports in the board, including the type, status and rate of the port. This table must be implemented. The indexes of this entry are hwFrameIndex, hwSlotIndex, hwSubslotIndex and hwPortIndex. hwFrameIndex refer to hwFrameTable, hwSlotIndex refer to hwSlotTable, hwSubslotIndex refer to hwSubslotTable.
1.3.6.1.4.1.2011.6.3.3.4.1not-accessiblecurrent
hwPortIndex
OBJECT-TYPE
Port index, indicating the physical number of the port on a board.
1.3.6.1.4.1.2011.6.3.3.4.1.1Integer32 (0..255)read-onlycurrent
hwPortType
OBJECT-TYPE
Port type, which is defined in HUAWEI-TC-MIB.mib.
1.3.6.1.4.1.2011.6.3.3.4.1.2HWPortTyperead-onlycurrent
hwPortDesc
OBJECT-TYPE
The description about the port, used to describe extra information of the port. For example, you can describe the user that connects to the port. The standby control board does not support setting of the port description.
1.3.6.1.4.1.2011.6.3.3.4.1.3OCTET STRING (SIZE(0..80))read-writecurrent
hwPortSpeed
OBJECT-TYPE
The speed of the port. Unit:Kbps
1.3.6.1.4.1.2011.6.3.3.4.1.4Integer32read-onlydeprecated
hwPortOperStatus
OBJECT-TYPE
Port operation status. Options: 1.normal(1) -indicates that the link is up or activated 2.fault(2) -indicates that port failure 3.localLoopback(3) -indicates that normal local loopback 4.forbidden(4) -indicates that the port is disabled 5.test(5) -indicates test start 6.remoteLoopback(6) -indicates normal remote loopback 7.activated(10) -indicates that the port is being activated 8.deactivated(11) -indicates that the link is down or deactivated 9.block(12) -indicates port blocking 10.nolight(13) -indicates no signal in ATM port 11.innerLocalLoopback(14) -indicates that inner local loopback toward inner system chipset (it's UTOPIA loopback for ADSL port) 12.innerRemoteLoopback(15)-indicates that inner remote loopback toward inner system chipset 13.locked(16) -indicates locked 14.busy(17) -indicates busy 15.maintain(18) -indicates maintenance 16.standbynormal(19) -indicates that the port on the standby control board is activated 17.standbyfault(20) -indicates that the port on the standby control board is faulty 18.adslloopbackafe(21) -indicates that AFE loopback 19.adslloopbackhybrid(22) -indicates that HYBRID loopback 20.rtuLocalLoopback(23) -indicates that RTU local loopback 21.rtuRemoteLoopback(24) -indicates that RTU remote loopback 22.linkup(25) -indicates eth port online 23.linkdown(26) -indicates eth port offline 24.powerDenied(50) -indicates port operation state is power denied
1.3.6.1.4.1.2011.6.3.3.4.1.5INTEGER {normal(1), fault(2), localLoopback(3), forbidden(4), test(5), remoteLoopback(6), activated(10), deactivated(11), block(12), nolight(13), innerLocalLoopback(14), innerRemoteLoopback(15), locked(16), busy(17), maintain(18), standbynormal(19), standbyfault(20), adslloopbackafe(21), adslloopbackhybrid(22), rtuLocalLoopback(23), rtuRemoteLoopback(24), linkup(25), linkdown(26), powerDenied(50)}read-onlycurrent
hwPortAdminStatus
OBJECT-TYPE
Port administration status. Options: 1.active(1) -activate the port 2.deactive(2) -deactivate the port 3.block(3) -block the port 4.unblock(4) -unblock the port 5.confirm(5) -confirm the port 6.delete(6) -delete the port 7.reset(7) -reset the port 8.localLoopback(8) -loop back the port 9.remoteLoopback(9) -remotely loop back the port 10.stopLoopback(11) -stop looping back the port 11.innerLocalLoopback(12) -inner local loopback toward inner system chipset 12.innerRemoteLoopback(13) -inner remote loopback toward inner system chipset 13.rtuLocalLoopback(14) -RTU local loopback RUT: Local loopback 14.rtuRemoteLoopback(15) -RTU remote loopback 15.utopiaLocalLoopback(16) -UTOPIA Local Loopback 16.afeLocalLoopback(17) -AFE Local Loopback 17.hybirdLocalLoopback(18) -HYBIRD Local Loopback 18.noLoopBackNoTest(50) -no loop back and no test 19.noLoopBackTest(51) -no loop back and test 20.localLoopBackNoTest(52) -Local loop back and no test 21.localLoopBackTest(53) -Local loop back test 22.remoteLoopBackNoTest(54) -Remote loopback and no test 23.remoteLoopBackTest(55) -Remote loopback and test 24.localLoopbackPTM(56) -PTM Local Loopback 25.eocLoopbackNoTest(57) -EOC Loop back and no test 26.eocLoopbackTest(58) -EOC Loop back and test 27.prohibited(59) -Port is prohibited
1.3.6.1.4.1.2011.6.3.3.4.1.6INTEGER {active(1), deactive(2), block(3), unblock(4), confirm(5), delete(6), reset(7), localLoopback(8), remoteLoopback(9), stopLoopback(11), innerLocalLoopback(12), innerRemoteLoopback(13), rtuLocalLoopback(14), rtuRemoteLoopback(15), utopiaLocalLoopback(16), afeLocalLoopback(17), hybirdLocalLoopback(18), noLoopBackNoTest(50), noLoopBackTest(51), localLoopBackNoTest(52), localLoopBackTest(53), remoteLoopBackNoTest(54), remoteLoopBackTest(55), localLoopbackPTM(56), eocLoopbackNoTest(57), eocLoopbackTest(58), prohibited(59)}read-writecurrent
hwPortNetworkRole
OBJECT-TYPE
Indicates the network role of a board. Options: 1. uplink(1) -indicates the uplink port 2. cascade(2) -indicates the subtending port 3. access(3) -indicates the downstream access port 4. extend(4) -indicates connectting to extended frame
1.3.6.1.4.1.2011.6.3.3.4.1.7INTEGER {uplink(1), cascade(2), access(3), extend(4)}read-writecurrent
hwPortTemprature
OBJECT-TYPE
The temperature of the port. The object is not used.
1.3.6.1.4.1.2011.6.3.3.4.1.8Integer32read-onlycurrent
hwPortPrimaryStatus
OBJECT-TYPE
The primary status of the port. Options: 1. isNr(1) -in Service, normal 2. isAnr(2) -in service, abnormal 3. isRst(3) -in service, restricted 4. isAnrst(4) -in service, abnormal & restricted 5. oosAu(5) -out of service, autonomous 6. oosMa(6) -out of service, management 7. oosAuma(7) -out of service, autonomous & management 8. oosAurst(8) -out of service, autonomous & restricted 9. oosMaanr(9) -out of service, management & abnormal
1.3.6.1.4.1.2011.6.3.3.4.1.9INTEGER {isNr(1), isAnr(2), isRst(3), isAnrst(4), oosAu(5), oosMa(6), oosAuma(7), oosAurst(8), oosMaanr(9)}read-onlycurrent
hwPortSecondaryStatus
OBJECT-TYPE
The secondary status of the port. This BITS structure can report the following status: 1. sstAins(0) -this bit position positively reports that the status of the port is automatic in-service 2. sstFaf(1) -facility failure 3. sstFlt(2) -fault 4. sstLpbk(3) -loopback 5. sstMea(4) -mismatch of equipment and attributes 6. sstSgeo(5) -supporting entity outage 7. sstStbyh(6) -standby-Hot 8. sstTs(7) -test 9. sstUas(8) -unassigned 10. sstUeq(9) -unequipped 11. sstWrk(10) -working 12. sstPwr(11) -power
1.3.6.1.4.1.2011.6.3.3.4.1.10Bits {sstAins(0), sstFaf(1), sstFlt(2), sstLpbk(3), sstMea(4), sstSgeo(5), sstStbyh(6), sstTs(7), sstUas(8), sstUeq(9), sstWrk(10), sstPwr(11)}read-onlycurrent
hwPortVsIDMask
OBJECT-TYPE
The virtual system mask of the port, each bit indicates the VAN to which the board belongs. For example, the first bit maps vs0, the second bit maps vs1, and the rest can be deducted by analog.
1.3.6.1.4.1.2011.6.3.3.4.1.11Integer32read-onlycurrent
hwFrameLinkNumber
OBJECT-TYPE
Number of frame Links, which refers to the number of links between the main frame and the standby frame of the current device. If there are many frames, but the device cannot know the link relation of the frames, then the initial value of this node is 0. If a user manually adds the link between the frames later, then this node shall be renewed. Default: 0
1.3.6.1.4.1.2011.6.3.3.5.1Integer32read-writecurrent
hwFrameLinkTable
OBJECT-TYPE
The index of this table is hwFrameLinkIndex. The frame link table. It describes the topology relation between the frames. For the device that can automatically discover the link relationship between the devices, this table can be implemented as read-only table. For the device whose inter-frame relation needs to be configured manually, this table shall support adding and deletion. All the links must locate on the two existing ports.
1.3.6.1.4.1.2011.6.3.3.5.2not-accessiblecurrent
hwFrameLinkEntry
OBJECT-TYPE
The index of this entry is hwFrameLinkIndex. The frame link table. It describes the topology relation between the frames. For the device that can automatically discover the link relationship between the devices, this table can be implemented as read-only table. For the device whose inter-frame relation needs to be configured manually, this table shall support adding and deletion. All the links must locate on the two existing ports.
1.3.6.1.4.1.2011.6.3.3.5.2.1not-accessiblecurrent
hwFrameLinkIndex
OBJECT-TYPE
Index of the frame link. It is sequentially numerated and exclusively identified in the device. There is no restriction to the coding rule.
1.3.6.1.4.1.2011.6.3.3.5.2.1.1Integer32 (0..65535)read-onlycurrent
hwFrameLinkLeftFrame
OBJECT-TYPE
The ID of the left node linked to the frame, corresponding to the hwFrameIndex in the hwFrameTable
1.3.6.1.4.1.2011.6.3.3.5.2.1.2Integer32read-writecurrent
hwFrameLinkLeftSlot
OBJECT-TYPE
The ID of the left slot linked to the frame, corresponding to the hwSlotIndex in the hwSlotTable. It indicates which slot of the left node is the link entry.
1.3.6.1.4.1.2011.6.3.3.5.2.1.3Integer32read-writecurrent
hwFrameLinkLeftSubSlot
OBJECT-TYPE
Link the left subslot, corresponding to the hwSubSlotIndex in the hwSubTable. It indicates which subslot of the left node is the link entry.
1.3.6.1.4.1.2011.6.3.3.5.2.1.4Integer32read-writecurrent
hwFrameLinkLeftPort
OBJECT-TYPE
The ID of the left port linked to the frame, corresponding to the hwPortIndex in the hwPortTable. It indicates which port of the left node is the link entry.
1.3.6.1.4.1.2011.6.3.3.5.2.1.5Integer32read-writecurrent
hwFrameLinkRightFrame
OBJECT-TYPE
The ID of the right node linked to the frame, corresponding to the hwFrameIndex of the hwFrameTable.
1.3.6.1.4.1.2011.6.3.3.5.2.1.6Integer32read-writecurrent
hwFrameLinkRightSlot
OBJECT-TYPE
The ID of the right slot linked the frame, corresponding to the hwSlotIndex of the hwSlotTable. It indicates which slot of the right node is the link entry.
1.3.6.1.4.1.2011.6.3.3.5.2.1.7Integer32read-writecurrent
hwFrameLinkRightSubSlot
OBJECT-TYPE
Link the right subslot, corresponding to the hwSubSlotIndex in the hwSubSlotTable. It indicates which subslot of the right node is the link entry.
1.3.6.1.4.1.2011.6.3.3.5.2.1.8Integer32read-writecurrent
hwFrameLinkRightPort
OBJECT-TYPE
The ID of the right port linked to the frame, corresponding to the hwPortIndex in the hwPortTable. It indicates which port of the right port is the link entry.
1.3.6.1.4.1.2011.6.3.3.5.2.1.9Integer32read-writecurrent
hwFrameLinkOperStatus
OBJECT-TYPE
The running status of the link. Options: 1.normal(1) - the running status of the link is normal 2.fault(2) - the running status of the link is fault 3.discovery(3) - the link is discovered
1.3.6.1.4.1.2011.6.3.3.5.2.1.10INTEGER {normal(1), fault(2), discovery(3)}read-onlycurrent
hwFrameLinkRowStatus
OBJECT-TYPE
The row status of the frame link, used to add or delete a link.
1.3.6.1.4.1.2011.6.3.3.5.2.1.11RowStatusread-createcurrent
hwFrameLinkNextIndex
OBJECT-TYPE
The frame link table indicates adding the index value to be assigned by the new link. This leaf is used to access an index ID of the next frame link dynamically assigned by the host before delivering the adding link. To deliver the adding link, the value of the leaf shall be accessed,and be delivered together with the frame link table. Otherwise, the host can not execute the operation and will return the error. Default: 0
1.3.6.1.4.1.2011.6.3.3.5.3Integer32 (0..254)read-onlycurrent
hwNarrowBoard
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.3.6
hwBoardAttrTable
OBJECT-TYPE
Inquiring or modifying AULaw, impedance and current or ringvoltage of ASL, A32 and H511POTS ports. The indexes of this table are hwFrameIndex and hwSlotIndex. For the hwFrameIndex object, refer to hwFrameTable; for the hwSlotIndex object, refer to hwSlotTable.
1.3.6.1.4.1.2011.6.3.3.6.1not-accessiblecurrent
hwBoardAttrEntry
OBJECT-TYPE
Inquiring or modifying AULaw, impedance and current or ringvoltage of ASL, A32 and H511POTS ports. The indexes of this entry are hwFrameIndex and hwSlotIndex. For the hwFrameIndex object, refer to hwFrameTable; for the hwSlotIndex object, refer to hwSlotTable.
1.3.6.1.4.1.2011.6.3.3.6.1.1not-accessiblecurrent
hwBoardAulaw
OBJECT-TYPE
Coding method of voice signal when digitalizing. In different country or area it should be A law or u law. 1 -- A law 2 -- u law
1.3.6.1.4.1.2011.6.3.3.6.1.1.1Integer32 (1..2)read-writecurrent
hwBoardCurrent
OBJECT-TYPE
Port current supported by the board. The value ranges from 1 to 10, which indicates the port current value supported under certain loopline impedance. 1 -- 25mA steady current 2 -- 16mA steady current 3 -- 35mA 2*200 4 -- 35mA 2*250 5 -- 35mA 2*400 6 -- 47mA 2*200 7 -- 47mA 2*250 8 -- 47mA 2*400 9 -- 17mA steady current 10 -- 20mA steady current
1.3.6.1.4.1.2011.6.3.3.6.1.1.2Integer32 (1..10)read-writecurrent
hwBoardImpedance
OBJECT-TYPE
Port impedance of the board. The following values indicates different impedance with different application circumstances. 1 -- Bureau machine in China(200+680|| 100nf) 2 -- User Machine in China(200+560|| 100nf) 3 -- 600 Interface 4 -- Interface of russian(150+510|| 47nf) 5 -- (220+820|| 115nf ) 6 -- (220+820|| 120nf ) 7 -- 900 Interface 8 -- Interface of Brazil(800|| 50nf) 9 -- BT(Zin=300+1000|| 220nf ,Zload=370+620|| 310nf) 10 -- HK_BT3(Zin=370+620|| 310nf,Zload=600) 11 -- HK_BT5(Zin=270+264|| 357nf+1434|| 265nf,Zload=600) 12 -- BT1(BT0 without AGC) 13 -- BT2(Zin=87+1052||228nF+229||28.4nF, Zload=270+264||357nF+1434||265nF) 14 -- BT3(Zin=87+1052||228nF+229||28.4nF, Zload=164+162||363nF+1227||350nF) 15 -- KPN(Zin= 270+750|| 150nf) 255 -- Private definition
1.3.6.1.4.1.2011.6.3.3.6.1.1.3Integer32 (1..15 | 255)read-writecurrent
hwBoardEnvironment
OBJECT-TYPE
The object is used to set and query the working environment of a board. Options: 1.emsan(1) -indicates that the device is on a terminal node or a convergence node 2.smsan(2) -indicates that the device is on a terminal node or a convergence node
1.3.6.1.4.1.2011.6.3.3.6.1.1.4INTEGER {emsan(1), smsan(2)}read-writecurrent
hwBoardWorkmode
OBJECT-TYPE
The object is used to set the working mode of the COMBO board. Options: 1.combo(1) -the broadband and voice parts of the board are powered on 2.powerSaving(2) -the board cuts off the power supply of the broadband part 3.auto(3) -normally the broadband and voice parts of the board are powered on When the mains supply is cut off, the board automatically cuts off the power supply of the broadband part
1.3.6.1.4.1.2011.6.3.3.6.1.1.5INTEGER {combo(1), powerSaving(2), auto(3)}read-writecurrent
hwBoardRingVoltage
OBJECT-TYPE
It is supported to config ringvoltage on virtual A04 board. It should be 41.5v or 45v. 1 -- 25Hz 41.5V 2 -- 25Hz 45V
1.3.6.1.4.1.2011.6.3.3.6.1.1.6Integer32 (1..2)read-writecurrent
hwBoardWorkState
OBJECT-TYPE
The object is used to query the working status of the COMBO board. Options: 1. combo(1) -if the broadband and voice parts of the board are powered on, the returned value is combo(1) ,DEFVAL { 1 } 2. powerSaving(2) -if only the voice part of the board is powered on, the returned value is powerSaving(2)
1.3.6.1.4.1.2011.6.3.3.6.1.1.7INTEGER {combo(1), powerSaving(2)}read-onlycurrent
hwVsPortTable
OBJECT-TYPE
Port query table that describes the detailed information of physical ports in the board, including the type, the virtual system mask of the port. The indexes of this table are hwFrameIndex, hwSlotIndex, hwSubslotIndex and hwPortIndex. hwFrameIndex refer to hwFrameTable, hwSlotIndex refer to hwSlotTable, hwSubslotIndex refer to hwSubslotTable, hwPortIndex refer to hwPortTable.
1.3.6.1.4.1.2011.6.3.3.7not-accessiblecurrent
hwVsPortEntry
OBJECT-TYPE
Port query table that describes the detailed information of physical ports in the board, including the type, the virtual system mask of the port. The indexes of this entry are hwFrameIndex, hwSlotIndex, hwSubslotIndex and hwPortIndex. hwFrameIndex refer to hwFrameTable, hwSlotIndex refer to hwSlotTable, hwSubslotIndex refer to hwSubslotTable, hwPortIndex refer to hwPortTable.
1.3.6.1.4.1.2011.6.3.3.7.1not-accessiblecurrent
hwVsPortType
OBJECT-TYPE
Port type, which is defined in HUAWEI-TC-MIB.mib.
1.3.6.1.4.1.2011.6.3.3.7.1.1HWPortTyperead-onlycurrent
hwVsPortVsMask
OBJECT-TYPE
The virtual system mask of the port, each bit indicates the VAN to which the port belongs. For example, the first bit maps vs0, the second bit maps vs1, and the rest can be deducted by analog.
1.3.6.1.4.1.2011.6.3.3.7.1.2Integer32read-onlycurrent
hwCpuDevTable
OBJECT-TYPE
This table describes the CPU usage, including the average CPU usage and periodic CPU usage.
1.3.6.1.4.1.2011.6.3.4not-accessiblecurrent
hwCpuDevEntry
OBJECT-TYPE
The indexes of this entry are hwFrameIndex, hwSlotIndex and hwCpuDevIndex. A table of CPU statistics.
1.3.6.1.4.1.2011.6.3.4.1not-accessiblecurrent
hwCpuDevIndex
OBJECT-TYPE
CPU index, hwFrameIndex, and hwSlotIndex constitute the HUAWEI-CPU-MIB index. For a single-CPU device, the value of this object is 0.
1.3.6.1.4.1.2011.6.3.4.1.1Integer32 (0..255)not-accessiblecurrent
hwCpuDevDuty
OBJECT-TYPE
The value of this object identifies the average CPU usage of a board or an entity.
1.3.6.1.4.1.2011.6.3.4.1.2Integer32 (0..100)read-onlycurrent
hwAvgDuty1min
OBJECT-TYPE
The value of this object identifies the average CPU usage of a board or entity 1 minute before the data is read.
1.3.6.1.4.1.2011.6.3.4.1.3Integer32 (0..100)read-onlycurrent
hwAvgDuty5min
OBJECT-TYPE
The value of this object identifies the average CPU usage of a board or entity 5 minutes before the data is read.
1.3.6.1.4.1.2011.6.3.4.1.4Integer32 (0..100)read-onlycurrent
hwCpuRunTime
OBJECT-TYPE
Duration of CPU running(s).
1.3.6.1.4.1.2011.6.3.4.1.5Integer32read-onlycurrent
hwCpuOverLoadNum
OBJECT-TYPE
Number of CPU overload.
1.3.6.1.4.1.2011.6.3.4.1.6Integer32read-onlycurrent
hwCpuOverLoadTime
OBJECT-TYPE
Duration of CPU overload(s).
1.3.6.1.4.1.2011.6.3.4.1.7Integer32read-onlycurrent
hwCpuCongestionNum
OBJECT-TYPE
Number of CPU congestion.
1.3.6.1.4.1.2011.6.3.4.1.8Integer32read-onlycurrent
hwCpuCongestionTime
OBJECT-TYPE
Duration of CPU congestion(s).
1.3.6.1.4.1.2011.6.3.4.1.9Integer32read-onlycurrent
hwMemoryDev
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.5
hwMemoryDevTable
OBJECT-TYPE
This table describes memory usage statistics, including the total memory, idle memory, and occupied memory.
1.3.6.1.4.1.2011.6.3.5.1not-accessiblecurrent
hwMemoryDevEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex, hwSlotIndex or hwMemoryDevModuleIndex. This table contains memory information.
1.3.6.1.4.1.2011.6.3.5.1.1not-accessiblecurrent
hwMemoryDevModuleIndex
OBJECT-TYPE
This object is only used for extension. For a single-CPU device, the value of this object is 0.
1.3.6.1.4.1.2011.6.3.5.1.1.1Integer32 (0..65535)not-accessiblecurrent
hwMemoryDevSize
OBJECT-TYPE
This object indicates the total memory size of a managed object, in bytes. It includes the free memory size and occupied memory size, that is, the sum of hwMemoryDevFree and hwMemoryDevRawSliceUsed. Each board has a memory. The memory size varies with products.
1.3.6.1.4.1.2011.6.3.5.1.1.2Unsigned32read-onlycurrent
hwMemoryDevFree
OBJECT-TYPE
This object indicates the idle memory size of the main control board, in bytes. The value of this object is always less than hwMemoryDevSize.
1.3.6.1.4.1.2011.6.3.5.1.1.3Unsigned32read-onlycurrent
hwMemoryDevRawSliceUsed
OBJECT-TYPE
This object indicates the total size of occupied raw slice memory, in bytes. The value of this object is always less than hwMemoryDevSize.
1.3.6.1.4.1.2011.6.3.5.1.1.4Unsigned32read-onlycurrent
hwMemoryDevLargestFree
OBJECT-TYPE
This object indicates the maximum number of consecutive bytes that are not occupied on a managed object. It is the maximum memory size that can be allocated by the system. The value of this object is always less than hwMemoryDevSize.
1.3.6.1.4.1.2011.6.3.5.1.1.5Unsigned32read-onlycurrent
hwMemoryDevFail
OBJECT-TYPE
This object indicates the number of memory allocation failures. The default value is 0.
1.3.6.1.4.1.2011.6.3.5.1.1.6Integer32read-onlycurrent
hwMemoryDevFailNoMem
OBJECT-TYPE
This object indicates the number of memory allocation failures due to the lack of idle memory. The default value is 0.
1.3.6.1.4.1.2011.6.3.5.1.1.7Integer32read-onlycurrent
hwMemoryDevSize64
OBJECT-TYPE
This object indicates the total size of memory modules on the managed object that exceeds 4 GB, in bytes.
1.3.6.1.4.1.2011.6.3.5.1.1.8CounterBasedGauge64read-onlycurrent
hwMemoryDevFree64
OBJECT-TYPE
This object indicates the idle memory size when the total size of memory modules on the managed object exceeds 4 GB, in bytes.
1.3.6.1.4.1.2011.6.3.5.1.1.9CounterBasedGauge64read-onlycurrent
hwBufferTable
OBJECT-TYPE
The index of this table is hwFrameIndex, hwSlotIndex, hwBufferModuleIndex or hwBufferSize. Buffer information table.
1.3.6.1.4.1.2011.6.3.5.2not-accessiblecurrent
hwBufferEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex, hwSlotIndex, hwBufferModuleIndex or hwBufferSize. Buffer information table.
1.3.6.1.4.1.2011.6.3.5.2.1not-accessiblecurrent
hwBufferModuleIndex
OBJECT-TYPE
Index of hwBufferTable.
1.3.6.1.4.1.2011.6.3.5.2.1.1Integer32 (0..65535)not-accessiblecurrent
hwBufferSize
OBJECT-TYPE
Contains the size of byte hwBuffers, in the unit of byte.
1.3.6.1.4.1.2011.6.3.5.2.1.2Integer32 (1..65535)not-accessiblecurrent
hwBufferCurrentTotal
OBJECT-TYPE
Contains the total number of hwBuffers currently.
1.3.6.1.4.1.2011.6.3.5.2.1.3Integer32read-onlycurrent
hwBufferCurrentUsed
OBJECT-TYPE
Contains the number of used hwBuffers currently.
1.3.6.1.4.1.2011.6.3.5.2.1.4Integer32read-onlycurrent
hwFlashDev
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.6
hwFlashDevTable
OBJECT-TYPE
The index of this table is hwFrameIndex, hwSlotIndex or hwFlashDevIndex. This table contains flash information.
1.3.6.1.4.1.2011.6.3.6.1not-accessiblecurrent
hwFlashDevEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex, hwSlotIndex or hwFlashDevIndex. This table contains flash information.
1.3.6.1.4.1.2011.6.3.6.1.1not-accessiblecurrent
hwFlashDevIndex
OBJECT-TYPE
Index of hwFlashDevTable.
1.3.6.1.4.1.2011.6.3.6.1.1.1Integer32 (0..65535)not-accessiblecurrent
hwFlashDevSize
OBJECT-TYPE
Total size in Octets of Flash memory,
1.3.6.1.4.1.2011.6.3.6.1.1.2Integer32read-onlycurrent
hwFlashDevFree
OBJECT-TYPE
Unused Size in Octets of Flash memory.
1.3.6.1.4.1.2011.6.3.6.1.1.3Integer32read-onlycurrent
hwFlashDevEraseTime
OBJECT-TYPE
The last time when Flash was erased after powerup.
1.3.6.1.4.1.2011.6.3.6.1.1.4TimeTicksread-onlycurrent
hwFlashDevEraseStatus
OBJECT-TYPE
Status of current or last flash erasing. Options: 1.flashErasing(1) - flash is executing erasing operation 2.flashErasedSuccessful(2) - flash erased successfully 3.flashErasedFail(3) - flash erased failed 4.flashReadOnly(4) - flash state is read only 5.flashOpenFailure(5) - open flash failed 6.bufferAllocationFailure(6) - allocating buffer on flash failed 7.noEraseAfterPowerOn(7) - there is no erasing operation after device was powered on
1.3.6.1.4.1.2011.6.3.6.1.1.5INTEGER {flashErasing(1), flashErasedSuccessful(2), flashErasedFail(3), flashReadOnly(4), flashOpenFailure(5), bufferAllocationFailure(6), noEraseAfterPowerOn(7)}read-onlycurrent
hwFlashDevStatus
OBJECT-TYPE
Status of the availability of flash. Options: 1.busy(1) - flash state is busy 2.available(2) - flash state is available
1.3.6.1.4.1.2011.6.3.6.1.1.6INTEGER {busy(1), available(2)}read-onlycurrent
hwAlarmInfo
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.7
hwAlarmTable
OBJECT-TYPE
The index of this table is hwAlarmSerialIndex. This table is no longer used.
1.3.6.1.4.1.2011.6.3.7.1not-accessibleobsolete
hwAlarmEntry
OBJECT-TYPE
The index of this entry is hwAlarmSerialIndex. This table is no longer used.
1.3.6.1.4.1.2011.6.3.7.1.1not-accessibleobsolete
hwAlarmSerialIndex
OBJECT-TYPE
This object is no longer used.
1.3.6.1.4.1.2011.6.3.7.1.1.1Integer32 (0..2147483647)read-onlyobsolete
hwObsoleteAlarmType
OBJECT-TYPE
The type of the Alarm.
1.3.6.1.4.1.2011.6.3.7.1.1.2INTEGER {alarm(1), restore(2), event(3)}read-onlyobsolete
hwAlarmOcurTime
OBJECT-TYPE
This object is no longer used.
1.3.6.1.4.1.2011.6.3.7.1.1.3DateAndTimeread-onlyobsolete
trapObjectIdValue
OBJECT-TYPE
This object is no longer used.
1.3.6.1.4.1.2011.6.3.7.1.1.4OCTET STRINGread-onlyobsolete
hwDevTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8
hwDevTrapVbOids
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.1
hwFrameAdminResult
OBJECT-TYPE
Frame administration result.
1.3.6.1.4.1.2011.6.3.8.1.1INTEGER {success(1), fail(2)}accessible-for-notifycurrent
hwSlotAdminResult
OBJECT-TYPE
Slot administration result.
1.3.6.1.4.1.2011.6.3.8.1.2INTEGER {success(1), fail(2)}accessible-for-notifycurrent
hwSubslotAdminResult
OBJECT-TYPE
Subslot administration result.
1.3.6.1.4.1.2011.6.3.8.1.3INTEGER {success(1), fail(2)}accessible-for-notifycurrent
hwPortAdminResult
OBJECT-TYPE
Port administration result.
1.3.6.1.4.1.2011.6.3.8.1.4INTEGER {success(1), fail(2)}accessible-for-notifycurrent
hwConfigChangeIP
OBJECT-TYPE
The serial IP of configuration changes. If the configuration changes is trigger by the command line users, the IP address is 0.0.0.0. If it is triggered by the SNMP user, the IP address is the SNMP user's IP address. The Trap of configuration changes will not be sent to the SNMP user, who triggered the configuration changes.
1.3.6.1.4.1.2011.6.3.8.1.5IpAddressaccessible-for-notifycurrent
hwDevUserLabelType
OBJECT-TYPE
User label type. 1. Frame type. 2. Slot type. 3. Port type.
1.3.6.1.4.1.2011.6.3.8.1.6Integer32accessible-for-notifycurrent
hwDevUserLabel
OBJECT-TYPE
User label.
1.3.6.1.4.1.2011.6.3.8.1.7OCTET STRINGaccessible-for-notifycurrent
hwDevVPI
OBJECT-TYPE
This node is reserved and has no actual meaning.
1.3.6.1.4.1.2011.6.3.8.1.8Integer32accessible-for-notifycurrent
hwDevVCI
OBJECT-TYPE
This node is reserved and has no actual meaning.
1.3.6.1.4.1.2011.6.3.8.1.9Integer32accessible-for-notifycurrent
hwDevVlanId
OBJECT-TYPE
This node is reserved and has no actual meaning.
1.3.6.1.4.1.2011.6.3.8.1.10Integer32accessible-for-notifycurrent
hwFrameTypeConfigured
OBJECT-TYPE
Type of the frame that is configured in database of device.
1.3.6.1.4.1.2011.6.3.8.1.11HWFrameTypeaccessible-for-notifycurrent
hwActualSlotTypeName
OBJECT-TYPE
Type and name of the inserted board.
1.3.6.1.4.1.2011.6.3.8.1.12OCTET STRING (SIZE(0..64))accessible-for-notifycurrent
hwOldDeviceIpAddr
OBJECT-TYPE
Old IP address of the device.
1.3.6.1.4.1.2011.6.3.8.1.13IpAddressaccessible-for-notifycurrent
hwNewDeviceIpAddr
OBJECT-TYPE
New IP address of the device.
1.3.6.1.4.1.2011.6.3.8.1.14IpAddressaccessible-for-notifycurrent
hwOldSubslotType0
OBJECT-TYPE
Type of the first daughter board that is used previously.
1.3.6.1.4.1.2011.6.3.8.1.15HWSubPCBTypeaccessible-for-notifycurrent
hwOldSubslotType1
OBJECT-TYPE
Type of the second daughter board that is used previously.
1.3.6.1.4.1.2011.6.3.8.1.16HWSubPCBTypeaccessible-for-notifycurrent
hwOldSubslotType2
OBJECT-TYPE
Type of the third daughter board that is used previously.
1.3.6.1.4.1.2011.6.3.8.1.17HWSubPCBTypeaccessible-for-notifycurrent
hwOldSubslotType3
OBJECT-TYPE
Type of the fourth daughter board that is used previously.
1.3.6.1.4.1.2011.6.3.8.1.18HWSubPCBTypeaccessible-for-notifycurrent
hwDevStandbyMainSlotTypeName
OBJECT-TYPE
Slot information description, to describe standby main board name information of the slot.
1.3.6.1.4.1.2011.6.3.8.1.19OCTET STRINGaccessible-for-notifycurrent
hwDevConfPreviousTable
OBJECT-TYPE
Previous Device querying table. It is used to query barcode and name of previous device which was replaced by a new one. The indexes of this table are hwFrameIndex and hwSlotIndex.
1.3.6.1.4.1.2011.6.3.8.1.20not-accessiblecurrent
hwDevConfPreviousEntry
OBJECT-TYPE
Previous Device querying table. It is used to query barcode and name of previous device which was replaced by a new one. The indexes of this entry are hwFrameIndex and hwSlotIndex.
1.3.6.1.4.1.2011.6.3.8.1.20.1not-accessiblecurrent
hwDevPreSlotTypeName
OBJECT-TYPE
Slot information description, to describe previous board name information of the slot. The indexes of the entry are hwFrameIndex and hwSlotIndex.
1.3.6.1.4.1.2011.6.3.8.1.20.1.1OCTET STRINGaccessible-for-notifycurrent
hwDevPreSlotPhySerialNum
OBJECT-TYPE
The vendor-specific serial number string for the previous board of the slot. The preferred value is the serial number string actually printed on the component itself. The indices of the entry are hwFrameIndex and hwSlotIndex.
1.3.6.1.4.1.2011.6.3.8.1.20.1.2OCTET STRINGaccessible-for-notifycurrent
hwSystemResParaTable
OBJECT-TYPE
The index of this table is hwResTypePara. System resource table.
1.3.6.1.4.1.2011.6.3.8.1.21not-accessiblecurrent
hwSystemResParaEntry
OBJECT-TYPE
The index of this entry is hwResTypePara. System resource table.
1.3.6.1.4.1.2011.6.3.8.1.21.1not-accessiblecurrent
hwResTypePara
OBJECT-TYPE
System resource type. Options: 1. memory(1) -indicates the memory resource 2. messageUnits(2)-indicates the message resource 3. cpu(3) -indicates the CPU resource
1.3.6.1.4.1.2011.6.3.8.1.21.1.1INTEGER {memory(1), messageUnits(2), cpu(3)}accessible-for-notifycurrent
hwResOccupancyPara
OBJECT-TYPE
System resource occupancy.
1.3.6.1.4.1.2011.6.3.8.1.21.1.2Integer32 (0..100)accessible-for-notifycurrent
hwTrapStorageName
OBJECT-TYPE
The first para of storage fault, which describe the storage name.
1.3.6.1.4.1.2011.6.3.8.1.22OCTET STRINGaccessible-for-notifycurrent
hwExtendBoardFrameIndex
OBJECT-TYPE
The frame index of the port connecting the main frame to the extended frame.
1.3.6.1.4.1.2011.6.3.8.1.23Integer32accessible-for-notifycurrent
hwExtendedFrameUplinkPort
OBJECT-TYPE
Another uplink port of extended frame.
1.3.6.1.4.1.2011.6.3.8.1.24Integer32accessible-for-notifycurrent
hwExtendBoardSlotIndex
OBJECT-TYPE
The slot index of the port connecting the main frame to the extended frame.
1.3.6.1.4.1.2011.6.3.8.1.25Integer32accessible-for-notifycurrent
hwExtendBoardPortIndex
OBJECT-TYPE
The port index of the port connecting the main frame to the extended frame.
1.3.6.1.4.1.2011.6.3.8.1.26Integer32accessible-for-notifycurrent
hwTrapHardFaultName
OBJECT-TYPE
The name of board hard fault.
1.3.6.1.4.1.2011.6.3.8.1.27OCTET STRINGaccessible-for-notifycurrent
hwTrapHardFaultEffect
OBJECT-TYPE
The effect of board hard fault.
1.3.6.1.4.1.2011.6.3.8.1.28OCTET STRINGaccessible-for-notifycurrent
hwSlotInputIdIndex
OBJECT-TYPE
Input Circuit Index.
1.3.6.1.4.1.2011.6.3.8.1.29Integer32 (0..255)accessible-for-notifycurrent
hwSlotInputType
OBJECT-TYPE
Voltage Input Type. Options: 1. localac(1) -local ac type. 2. localdc(2) -local dc type. 3. remoteac(3) -remote ac type. 4. remotedc(4) -remote dc type. 5. pd(5) -pd type. 6. channelvoltage(6) - channel voltage type.
1.3.6.1.4.1.2011.6.3.8.1.30INTEGER {localac(1), localdc(2), remoteac(3), remotedc(4), pd(5), channelvoltage(6)}accessible-for-notifycurrent
hwDevAutoDeployPhase
OBJECT-TYPE
Auto-deployment phase: 1. Download the auto-deployment policy file 2. Parse the auto-deployment policy file 3. Download the upgrade software 4. Download the configuration file 5. Download common configuration scripts 6. Download customized configuration scripts 7. Issue the automatic backup configuration 8. Download the database 9. Save the database and configuration file
1.3.6.1.4.1.2011.6.3.8.1.31DisplayStringaccessible-for-notifycurrent
hwVccLocalChassisId
OBJECT-TYPE
The index of local chassis.
1.3.6.1.4.1.2011.6.3.8.1.32Unsigned32accessible-for-notifycurrent
hwVccNeighbourChassisId
OBJECT-TYPE
The index of neighbour chassis.
1.3.6.1.4.1.2011.6.3.8.1.33Unsigned32accessible-for-notifycurrent
hwVccGroupId
OBJECT-TYPE
The index of data channel.
1.3.6.1.4.1.2011.6.3.8.1.34Unsigned32accessible-for-notifycurrent
hwVccLinkIfPhysicIndex
OBJECT-TYPE
The index of interface for the data link.
1.3.6.1.4.1.2011.6.3.8.1.35Unsigned32accessible-for-notifycurrent
hwVccLinkIfPhysicName
OBJECT-TYPE
The name of interface for the data link.
1.3.6.1.4.1.2011.6.3.8.1.36OCTET STRINGaccessible-for-notifycurrent
hwTrapPowerPortIndex
OBJECT-TYPE
The index of power port.
1.3.6.1.4.1.2011.6.3.8.1.37Integer32accessible-for-notifycurrent
hwDevTempMinorAlmThreshold
OBJECT-TYPE
The level-1 high temperature alarm threshold.
1.3.6.1.4.1.2011.6.3.8.1.38OCTET STRINGaccessible-for-notifycurrent
hwDevTempMajorAlmThreshold
OBJECT-TYPE
The level-2 high temperature alarm threshold.
1.3.6.1.4.1.2011.6.3.8.1.39OCTET STRINGaccessible-for-notifycurrent
hwDevTempCriticalAlmThreshold
OBJECT-TYPE
The level-3 high temperature alarm threshold.
1.3.6.1.4.1.2011.6.3.8.1.40OCTET STRINGaccessible-for-notifycurrent
hwDeviceCurrentTemp
OBJECT-TYPE
The current temperature of the device.
1.3.6.1.4.1.2011.6.3.8.1.41OCTET STRINGaccessible-for-notifycurrent
hwDevSnmpHostIpAddress
OBJECT-TYPE
The IP address of SNMP probe abnormal record.
1.3.6.1.4.1.2011.6.3.8.1.42InetAddressaccessible-for-notifycurrent
hwDevSnmpLastReceivedTime
OBJECT-TYPE
The last probe time of SNMP probe abnormal record.
1.3.6.1.4.1.2011.6.3.8.1.43DateAndTimeaccessible-for-notifycurrent
hwDevSnmpAverageInterval
OBJECT-TYPE
The average interval of SNMP probe abnormal record.
1.3.6.1.4.1.2011.6.3.8.1.44Integer32accessible-for-notifycurrent
hwDevSnmpMinimumInterval
OBJECT-TYPE
The minimum interval of SNMP probe abnormal record.
1.3.6.1.4.1.2011.6.3.8.1.45Integer32accessible-for-notifycurrent
hwDevSnmpMaxmumInterval
OBJECT-TYPE
The maxmum interval of SNMP probe abnormal record.
1.3.6.1.4.1.2011.6.3.8.1.46Integer32accessible-for-notifycurrent
hwDevSnmpReceivedCount
OBJECT-TYPE
The connection count of SNMP probe abnormal record.
1.3.6.1.4.1.2011.6.3.8.1.47Integer32accessible-for-notifycurrent
hwSubboardID
OBJECT-TYPE
The index ID of sub board.
1.3.6.1.4.1.2011.6.3.8.1.48Integer32accessible-for-notifycurrent
hwPowerSupplyChannelVoltage
OBJECT-TYPE
The value of power supply channel voltage.
1.3.6.1.4.1.2011.6.3.8.1.49OCTET STRINGaccessible-for-notifycurrent
hwPowerSupplyDescription
OBJECT-TYPE
The description of power supply.
1.3.6.1.4.1.2011.6.3.8.1.50OCTET STRINGaccessible-for-notifycurrent
hwBrokenFileName
OBJECT-TYPE
The name of broken file.
1.3.6.1.4.1.2011.6.3.8.1.51OCTET STRINGaccessible-for-notifycurrent
hwRtuRunCapacity
OBJECT-TYPE
The run capacity of system.
1.3.6.1.4.1.2011.6.3.8.1.52Integer32accessible-for-notifycurrent
hwRtuLicenseCapcity
OBJECT-TYPE
The run capacity of license.
1.3.6.1.4.1.2011.6.3.8.1.53Integer32accessible-for-notifycurrent
hwDevCommonTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.2
hwDevCommonTrapsPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.2.0
hwDevAlarmTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3
hwDevSystemTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.1
hwDevSystemTrapsPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.1.0
hwDevFrameTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.2
hwDevFrameTrapsPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.2.0
hwDevBoardTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.3
hwDevBoardTrapsPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.3.0
hwDevSubBoardTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.4
hwDevSubBoardTrapsPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.4.0
hwDevDiagTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.5
hwDevDiagTrapsPrefix
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.3.5.0
hwDevGeneralTrapsPre
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.5
hwDevGeneralTraps
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.8.5.0
hwAppBoardPara
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.9
hwAppBoardGlobalPara
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.9.1
hwAppBoardPhySlot
OBJECT-TYPE
The location of Application board.
1.3.6.1.4.1.2011.6.3.9.1.1Integer32read-onlycurrent
hwAppBoardMngtTable
OBJECT-TYPE
The index of this table is hwFrameIndex or hwSlotIndex. This is the App Application IP configuration table. This table is used to configure and query the IP configuration mode and IP address of an Application board.
1.3.6.1.4.1.2011.6.3.9.2not-accessiblecurrent
hwAppBoardMngtEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex or hwSlotIndex. This is the App Application IP configuration table. This table is used to configure and query the IP configuration mode and IP address of an Application board.
1.3.6.1.4.1.2011.6.3.9.2.1not-accessiblecurrent
hwAppBoardMngtVlan
OBJECT-TYPE
The management VLAN of Application board. Range: 1-4093
1.3.6.1.4.1.2011.6.3.9.2.1.1Integer32 (1..4093)read-writecurrent
hwAppBoardMngtIpType
OBJECT-TYPE
The type of Ip address. IPV4:1 IPV6:2
1.3.6.1.4.1.2011.6.3.9.2.1.2InetAddressTyperead-writecurrent
hwAppBoardMngtIp
OBJECT-TYPE
The IP address of the Application board
1.3.6.1.4.1.2011.6.3.9.2.1.3InetAddressread-writecurrent
hwAppBoardMngtMaskLength
OBJECT-TYPE
The mask length of the ip address. Range: 0-128
1.3.6.1.4.1.2011.6.3.9.2.1.4Integer32 (0..128)read-writecurrent
hwAppBoardMngtGateway
OBJECT-TYPE
The gateway of the Application board
1.3.6.1.4.1.2011.6.3.9.2.1.5InetAddressread-writecurrent
hwAppBoardMngtRowStatus
OBJECT-TYPE
RowStatus standard operation.
1.3.6.1.4.1.2011.6.3.9.2.1.6RowStatusread-createcurrent
hwCliUserMgmt
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.10
hwCliUserParaTable
OBJECT-TYPE
CLI user parameters configuration table.
1.3.6.1.4.1.2011.6.3.10.1not-accessiblecurrent
hwCliUserParaEntry
OBJECT-TYPE
CLI user parameters configuration table entity.
1.3.6.1.4.1.2011.6.3.10.1.1not-accessiblecurrent
hwCliUserName
OBJECT-TYPE
Name of the CLI user.
1.3.6.1.4.1.2011.6.3.10.1.1.1OCTET STRING (SIZE(1..15))not-accessiblecurrent
hwCliUserPassword
OBJECT-TYPE
password of the CLI user.
1.3.6.1.4.1.2011.6.3.10.1.1.2OCTET STRING (SIZE(0..15))read-createcurrent
hwCliUserLevel
OBJECT-TYPE
Level of CLI user(1:common,2:operator,3:administrator).
1.3.6.1.4.1.2011.6.3.10.1.1.3INTEGER {common(1), operator(2), administrator(3)}read-createcurrent
hwCliUserLogins
OBJECT-TYPE
The num of user can login in one time.
1.3.6.1.4.1.2011.6.3.10.1.1.4Integer32 (0..4)read-createcurrent
hwCliUserDecr
OBJECT-TYPE
Description of CLI user.
1.3.6.1.4.1.2011.6.3.10.1.1.5OCTET STRING (SIZE(0..30))read-createcurrent
hwCliUserRowStatus
OBJECT-TYPE
Operation status of CLI user,the CLI user can be added,deleted and modified.
1.3.6.1.4.1.2011.6.3.10.1.1.6RowStatusread-createcurrent
hwCliClientTable
OBJECT-TYPE
CLI client table.
1.3.6.1.4.1.2011.6.3.10.2not-accessiblecurrent
hwCliClientEntry
OBJECT-TYPE
CLI user parameters configuration table entity.
1.3.6.1.4.1.2011.6.3.10.2.1not-accessiblecurrent
hwCliClientID
OBJECT-TYPE
Client ID(1..5).
1.3.6.1.4.1.2011.6.3.10.2.1.1Integer32 (1..5)not-accessiblecurrent
hwCliClientUserName
OBJECT-TYPE
User name of client.
1.3.6.1.4.1.2011.6.3.10.2.1.2OCTET STRING (SIZE(1..15))read-onlycurrent
hwCliClientType
OBJECT-TYPE
Type of client(1:serial,2:telnet).
1.3.6.1.4.1.2011.6.3.10.2.1.3INTEGER {serial(1), telnet(2)}read-onlycurrent
hwCliClientIp
OBJECT-TYPE
The IP address of client.
1.3.6.1.4.1.2011.6.3.10.2.1.4IpAddressread-onlycurrent
hwCliClientLoginTime
OBJECT-TYPE
Login time of Client.
1.3.6.1.4.1.2011.6.3.10.2.1.5DateAndTimeread-onlycurrent
hwCliClientAdminStatus
OBJECT-TYPE
admin status of client, can disconnect client.
1.3.6.1.4.1.2011.6.3.10.2.1.6INTEGER {disconnect(1)}read-writecurrent
hwDevCompatibleTable
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.11
hwCompatibleSysOid
OBJECT-TYPE
This object indicates the compatible SYSOID of the new NE.
1.3.6.1.4.1.2011.6.3.11.1OBJECT IDENTIFIERread-onlycurrent
hwCompatibleVersion
OBJECT-TYPE
This object indicates the compatible version of the new NE.
1.3.6.1.4.1.2011.6.3.11.2OCTET STRING (SIZE(0..255))read-onlycurrent
hwCompatibleVRCB
OBJECT-TYPE
The compatible VRCB of new network element.
1.3.6.1.4.1.2011.6.3.11.3OCTET STRING (SIZE(0..255))read-onlycurrent
hwCompatibleProductName
OBJECT-TYPE
This object indicates the name of the compatible product of the new NE.
1.3.6.1.4.1.2011.6.3.11.4OCTET STRING (SIZE(0..255))read-onlycurrent
hwSysRegister
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.13
hwSysHandshakeEnable
OBJECT-TYPE
The switch of periodic handshake between the device and the NMS. The NMS uses the periodic handshake process to check whether the device is properly connected. Default: false Options: 1.nooperation(0) -default shakes hands of the system 2.true(1) -The device periodically shakes hands with the NMS 3.false(2) -The device does not periodically shake hands with the NMS
1.3.6.1.4.1.2011.6.3.13.1INTEGER {nooperation(0), true(1), false(2)}read-writecurrent
hwSysHandshakeInterval
OBJECT-TYPE
The interval for sending a handshake packet, in unit of minute Note: If the interval for sending a handshake packet is too long, the NMS cannot detect the disconnection between the device and the NMS promptly. If the interval for sending a handshake packet is too short, the number of handshake packets that the NMS needs to handle increases, which adds burden to the NMS. You can set the time interval according to the actual situation. Default: 300 Unit: Seconds
1.3.6.1.4.1.2011.6.3.13.2Unsigned32read-writecurrent
hwSysRegisterResponseStatus
OBJECT-TYPE
The NMS response to the periodic handshake packet from the device. Options: 1.nooperation(-1) -default state of the system 2.registering(1) -register is in processing 3.success(2) -The registration/handshake packet reported by the device is successfully handled 4.failure(3) -register failed 5.timeout(4) -register timeout
1.3.6.1.4.1.2011.6.3.13.3INTEGER {nooperation(-1), registering(1), success(2), failure(3), timeout(4)}read-writecurrent
hwCustomizedParameter
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.15
hwCustomizedParameterTable
OBJECT-TYPE
The index of this table is hwParaName. Customized parameter table. This table is no longer used.
1.3.6.1.4.1.2011.6.3.15.1not-accessiblecurrent
hwCustomizedParameterEntry
OBJECT-TYPE
The index of this entry is hwParaName. Customized parameter table. This table is no longer used.
1.3.6.1.4.1.2011.6.3.15.1.1not-accessiblecurrent
hwParaName
OBJECT-TYPE
The name of the parameter. This object is no longer used.
1.3.6.1.4.1.2011.6.3.15.1.1.1OCTET STRING (SIZE(1..32))not-accessiblecurrent
hwParaValue
OBJECT-TYPE
The value of the parameter. This object is no longer used.
1.3.6.1.4.1.2011.6.3.15.1.1.2OCTET STRING (SIZE(1..64))read-createcurrent
hwParaState
OBJECT-TYPE
The overwritten state of the parameter. This object is no longer used. Options: 1.readWrite(1) - read and write 2.readOnly(2) - read only
1.3.6.1.4.1.2011.6.3.15.1.1.3INTEGER {readWrite(1), readOnly(2)}read-createcurrent
hwParaRowStatus
OBJECT-TYPE
RowStatus standard operation. This object is no longer used.
1.3.6.1.4.1.2011.6.3.15.1.1.4RowStatusread-createcurrent
hwAutoReset
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.16
hwPingAutoResetTable
OBJECT-TYPE
The index of this table is hwHostIpAddr. Ping auto-reset table.
1.3.6.1.4.1.2011.6.3.16.1not-accessiblecurrent
hwPingAutoResetEntry
OBJECT-TYPE
The index of this entry is hwHostIpAddr. Ping auto-reset table.
1.3.6.1.4.1.2011.6.3.16.1.1not-accessiblecurrent
hwHostIpAddr
OBJECT-TYPE
The IP address of monitoring gateway
1.3.6.1.4.1.2011.6.3.16.1.1.1IpAddressread-onlycurrent
hwPacketNumber
OBJECT-TYPE
The number of the PING packets sent during every check, Default value: 5
1.3.6.1.4.1.2011.6.3.16.1.1.2Integer32read-writecurrent
hwIntervalTime
OBJECT-TYPE
The interval of sending PING packets. Default: 1 Unit: second
1.3.6.1.4.1.2011.6.3.16.1.1.3Integer32read-writecurrent
hwResponseTime
OBJECT-TYPE
Time-out time for the response of the PING packets. Unit: second Default: 2
1.3.6.1.4.1.2011.6.3.16.1.1.4Integer32read-writecurrent
hwLoopTime
OBJECT-TYPE
Interval between the cyclic checks Default value: 600 Unit: second
1.3.6.1.4.1.2011.6.3.16.1.1.5Integer32read-writecurrent
hwFailureThreshold
OBJECT-TYPE
The threshold of checking failed. Default value: 10
1.3.6.1.4.1.2011.6.3.16.1.1.6Integer32read-writecurrent
hwFailedTimes
OBJECT-TYPE
Times of checking failed
1.3.6.1.4.1.2011.6.3.16.1.1.7Integer32read-onlycurrent
hwAutoResetEnableStatus
OBJECT-TYPE
Enable status of auto-reset. Options: 1. enable(1) - enable 2. disable(2) - disable
1.3.6.1.4.1.2011.6.3.16.1.1.8INTEGER {enable(1), disable(2)}read-writecurrent
hwAutoResetRowStatus
OBJECT-TYPE
RowStatus standard operation
1.3.6.1.4.1.2011.6.3.16.1.1.9RowStatusread-createcurrent
hwSystemResource
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.17
hwSystemResTable
OBJECT-TYPE
The index of this table is hwFrameIndex, hwSlotIndex or hwResType. System resource table.
1.3.6.1.4.1.2011.6.3.17.1not-accessiblecurrent
hwSystemResEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex, hwSlotIndex or hwResType. System resource table.
1.3.6.1.4.1.2011.6.3.17.1.1not-accessiblecurrent
hwResType
OBJECT-TYPE
System resource type. Options: 1. memory(1) -indicates the memory resource 2. messageUnits(2)-indicates the message resource 3. cpu(3) -indicates the CPU resource
1.3.6.1.4.1.2011.6.3.17.1.1.1INTEGER {memory(1), messageUnits(2), cpu(3)}read-onlycurrent
hwResOverLoad
OBJECT-TYPE
System resource overload threshold. The following two system resources support querying and Threshold setting: memory(1), cpu(3). Memory(1) and cpu(3) have limited value ranges. MessageUnits(2) cannot be set or queried.
1.3.6.1.4.1.2011.6.3.17.1.1.2Integer32 (0..100)read-writecurrent
hwResOccupancy
OBJECT-TYPE
System resource occupancy.
1.3.6.1.4.1.2011.6.3.17.1.1.3Integer32 (0..100)read-onlycurrent
hwMemOccupancy
OBJECT-TYPE
System memory occupancy.
1.3.6.1.4.1.2011.6.3.17.2Integer32 (0..100)read-onlycurrent
hwCpuOccupancy
OBJECT-TYPE
System CPU occupancy.
1.3.6.1.4.1.2011.6.3.17.3Integer32 (0..100)read-onlycurrent
hwRingAttrTable
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.18
hwRingFrequency
OBJECT-TYPE
Frequency of ring. Options: 1. frequency16HZ(1) --The frequency of ring is 16HZ 2. frequency25HZ(2) --The frequency of ring is 25HZ 3. frequency50HZ(3) --The frequency of ring is 50HZ 4. frequency20HZ(4) --The frequency of ring is 20HZ
1.3.6.1.4.1.2011.6.3.18.1INTEGER {frequency16HZ(1), frequency25HZ(2), frequency50HZ(3), frequency20HZ(4)}read-writecurrent
hwRingacamplitude
OBJECT-TYPE
AC amplitude of ring. Options: 1. acamplitude74Vrms(1) --The AC amplitude of ring is 74Vrms 2. acamplitude65Vrms(2) --The AC amplitude of ring is 65Vrms 3. acamplitude50Vrms(3) --The AC amplitude of ring is 50Vrms 4. acamplitude75Vrms(4) --The AC amplitude of ring is 75Vrms 5. acamplitude70Vrms(5) --The AC amplitude of ring is 70Vrms
1.3.6.1.4.1.2011.6.3.18.2INTEGER {acamplitude74Vrms(1), acamplitude65Vrms(2), acamplitude50Vrms(3), acamplitude75Vrms(4), acamplitude70Vrms(5)}read-writecurrent
hwRingdcbias
OBJECT-TYPE
DC bias of ring. Options: 1 --The DC bias voltage of ring 20V 2 --The DC bias voltage of ring 30V.
1.3.6.1.4.1.2011.6.3.18.3Integer32 (1..2)read-writecurrent
hwIopacketfile
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.21
hwIopacketfileAdminStatus
OBJECT-TYPE
The status of the board software package. Options: 1. deactivepacketfile(0)-indicates that the status of the board software package is not active. 2. activepacketfile(1) -indicates that active the packet file. Perform activepacketfile(1), and the system queries all the boards. If the software version of a board is inconsistent with the version in the package, the software of the board is upgraded to the version in the package. Certain boards can be upgraded by a reset operation
1.3.6.1.4.1.2011.6.3.21.1INTEGER {deactivepacketfile(0), activepacketfile(1)}read-writecurrent
hwUpgrade
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.22
hwUpgradeRequestID
OBJECT-TYPE
The request index for automatic upgrade. For automatic upgrade: The NMS loads the NE program of the latest version, the data or configuration file after upgrade, and the package of the board to the active control board of the NE system. The NE automatically loads the NE program, the data or configuration file after upgrade, and the package, from the active control board to the standby control board in a synchronous manner. At this time, the NMS needs to deliver the command of upgrading and resetting to the active control board. When resetting the control board, you must specify hwUpgradeRequestID, hwUpgradeAdmin, hwUpgradeResetInterval. The operation is saved as a record entry. hwUpgradeRequestID is used to identify this operation. Therefore, its value cannot be the same as the operation request ID of another record entry. The hwUpgradeRequestID value of -1 indicates there is no upgrade going.
1.3.6.1.4.1.2011.6.3.22.1Integer32read-writecurrent
hwUpgradeAdmin
OBJECT-TYPE
The command of software active. Options: 1.nooperation(-1) - default state of the system. 2.uninterruptedAutoUpgrade(1) - uninterrupted auto upgrade. 3.upgradeSchedule(2) - reset system and acitve the software. If you need to active the software after a certain period,you also need to set hwUpgradeReserveTimeout or hwUpgradeReserveDateTime. 4.undoUpgradeSchedule(3) - negate the operation to active software. 5.interruptedAutoUpgrade(4) - interrupted auto upgrade.
1.3.6.1.4.1.2011.6.3.22.2INTEGER {nooperation(-1), uninterruptedAutoUpgrade(1), upgradeSchedule(2), undoUpgradeSchedule(3), interruptedAutoUpgrade(4)}read-writecurrent
hwUpgradeResetInterval
OBJECT-TYPE
The interval to force service boards to reset after the upgrade of mainboard has been completed. Unit:minute
1.3.6.1.4.1.2011.6.3.22.3Integer32 (-1..1440)read-writecurrent
hwUpgradeTargetVersion
OBJECT-TYPE
The target version of automatic upgrade. For example: MA5600V800R003C02. Allow querying the target version only during automatic upgrade. The system configuration management platform is locked during automatic upgrade. When you are setting the target version of an object in an upgrade, you also need to set hwUpgradeRequestID, hwUpgradeAdmin, and hwUpgradeResetInterval. Automatic upgrade requires consistency between the program version saved in the standby area of the system and the set target version. If the target version is not specified, the system performs automatic upgrade according to the version saved in the standby area of the system.
1.3.6.1.4.1.2011.6.3.22.4OCTET STRINGread-writecurrent
hwUpgradeReserveTimeout
OBJECT-TYPE
Used to set the delay time of software active, in unit of seconds. When you set hwUpgradeReserveTimeout, you also need to set hwUpgradeAdmin to upgradeSchedule(2). It is invalid to set both hwUpgradeReserveTimeout and hwUpgradeReserveDateTime. The hwUpgradeReserveTimeout value of -1 indicates the delay time of software active is not set.
1.3.6.1.4.1.2011.6.3.22.5Integer32 (-1 | 60..604800)read-writecurrent
hwUpgradeReserveDateTime
OBJECT-TYPE
This object is used for setting the date and time of software active. When you set hwUpgradeReserveDateTime, you also need to set hwUpgradeAdmin to upgradeSchedule(2). It is invalid to set both hwUpgradeReserveDateTime and hwUpgradeReserveTimeout. The configured time is the local time, and time zone configuration is not supported.
1.3.6.1.4.1.2011.6.3.22.6DateAndTimeread-writecurrent
hwEmergencyCallProtect
OBJECT-TYPE
This object is used for setting the emergence call protection function. If this object is set to enable, the system cannot be reset if the system is processing an emergence call. Options: 1.disable(1) - Indicates that the emergence call is disabled. 2.enable(2) - Indicates that the emergence call is enabled.
1.3.6.1.4.1.2011.6.3.22.7INTEGER {disable(1), enable(2)}read-writecurrent
hwUpgradeCapability
OBJECT-TYPE
The capability of upgrade. Options: 1.issu(0) - in servers software upgrade. 2.ossu(1) - out of servers softer upgrade. From left to right, each bit indicates a capability of upgrade. If the bit is set to 1, it indicates support the capability. If the bit is set to 0, it indicates not support the capability.
1.3.6.1.4.1.2011.6.3.22.8Bits {issu(0), ossu(1)}read-onlycurrent
hwAgentOntInfoTable
OBJECT-TYPE
The index of this table is hwFrameIndex, hwSlotIndex, hwPortIndex or hwOntIndex. OLT agent ONT INFO table. For hwFrameIndex, refer to hwFrameTable. For hwSlotIndex, refer to hwSlotTable. For hwPortIndex, refer to hwPortTable.
1.3.6.1.4.1.2011.6.3.23not-accessiblecurrent
hwAgentOntInfoEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex, hwSlotIndex, hwPortIndex or hwOntIndex. OLT agent ONT INFO table. For hwFrameIndex, refer to hwFrameTable. For hwSlotIndex, refer to hwSlotTable. For hwPortIndex, refer to hwPortTable.
1.3.6.1.4.1.2011.6.3.23.1not-accessiblecurrent
hwOntIndex
OBJECT-TYPE
ONT ID. Parameters hwFrameIndex and hwSlotIndex are obligatory, hwOntIndex and hwPortIndex are optional (the setting -1 indicates that the parameter is optional). For example, to set the information of all ONTs connected to a specified port returned, you can set hwOntIndex to -1; to set the information about the status of all ONTs connected to all ports of a specified slot returned, you can set hwPortIndex and hwOntIndex to -1
1.3.6.1.4.1.2011.6.3.23.1.1Integer32not-accessiblecurrent
hwOntState
OBJECT-TYPE
ONT state. data structure: -------------------------------------------------------------------------------------------------- | m | ONT state combination | ONT state combination | | ONT state combination | | (2B) | in Port x | in Port y | ..... | in Port n | -------------------------------------------------------------------------------------------------- / \ / \ / \ ----------------------------------- | x | ONT m-1 | | ONT 0 | |(2B) |state(1b)|...... |state(1b)| ----------------------------------- state enum: normal(0): ONT state is normal. fault(1): ONT state is fault.
1.3.6.1.4.1.2011.6.3.23.1.2OCTET STRINGread-onlycurrent
hwOntType
OBJECT-TYPE
ONT type. data structure: ONT IP + ONT type ------------------------------------------------------------------- | ONT NUM | ONT IP | ONT type | | ONT IP | ONT type | | (2B) | (4B) | (16B) | ...... | (4B) | (16B) | ------------------------------------------------------------------- Because of the restrictions on the SNMP packet, the packet of up to 8 KB can be transmitted. When the size of the packet to be reported exceeds 8 KB, the packet must be compressed. The compress format of the packet is shown in the following figure. ----------------------------------------------------------------------- | DATA-LENGTH | FLAG | TLV-NUM | TYPE | LEN | CRC | | ------------------------------------------------------------ | | | | | | | ----------------------------------------------------------------------- In the compressed packet: DATA-LENGTH occupies four bytes to store the whole length of the file, including the header structure. FLAG occupies two bytes to store the flag, which indicates the format of the file contents. In this compressed packet, the flag indicates that the format of the file contents is compressed. 0xFEFE indicates compress and 0 indicates non-compress. TLV-NUM indicates the number of TLVs that the file carries. In this compressed packet, TLV-NUM is 1, indicating the CRC value of the compressed content. The following continuous bytes TYPE, LEN, and CRC are data in the TLV format. Each of TYPE, LEN, and CRC occupies two bytes. In this compressed packet, TYPE, LEN, and CRC record the CRC value of the compressed content. TYPE indicates the CRC type. LEN indicates the number of bytes that the CRC occupies and the actual value is 2. CRC stores the CRC value of the compressed content. The actual returned content is compressed in the .zip format and stored in the final field of compressed content.
1.3.6.1.4.1.2011.6.3.23.1.3OCTET STRINGread-onlycurrent
hwOntVersion
OBJECT-TYPE
ONT version. data structure: ONT IP + ONT version ------------------------------------------------------------------------ | ONT NUM | ONT IP | ONT version | | ONT IP | ONT version | | (2B) | (4B) | (32B) | ...... | (4B) | (32B) | ------------------------------------------------------------------------
1.3.6.1.4.1.2011.6.3.23.1.4OCTET STRINGread-onlycurrent
hwConfigLock
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.24
hwConfigLockState
OBJECT-TYPE
Whether the system configuration is locked. Options: 1. locked(1) -the system configuration is locked 2. unlocked(2) -the system configuration is not locked The user who locks the system configuration can unlock it. Super users and the network administrator can forcibly unlock the system configuration. Other users cannot unlock it.
1.3.6.1.4.1.2011.6.3.24.1INTEGER {locked(1), unlocked(2)}read-onlycurrent
hwConfigUnlockInterval
OBJECT-TYPE
The interval for automatic unlock of the system configuration, in unit of minute. The system re-counts the time in these two cases: a user successfully locks the system configuration and the user who locks system configuration sets hwConfigUnlockInterval. If a user unlocks the system configuration within the automatic unlock interval, automatic unlock is not necessary. If the system configuration keeps locked, after the interval elapses, the system automatically unlocks it. If a NETCONF user successfully locks the system configuration, the system configuration will not be unlocked automatically,the automatic unlock interval is set as 0. Default: 5
1.3.6.1.4.1.2011.6.3.24.2Integer32 (0..255)read-writecurrent
hwConfigLockUserType
OBJECT-TYPE
The type of user who locks system configuration. Options: 1. nooperation(-1) -default type of the system 2. nms(1) -the user who access through the NMS 3. series(2) -the user who access through the serial interface 4. telnet(3) -the user who access through telnet 5. web(4) -the user who access through the web user interface 6. xml(5) -the user who access through the XML interface 7. ssh(6) -the user who access through SSH 8. netconf(7) -the user who access through NETCONF
1.3.6.1.4.1.2011.6.3.24.3INTEGER {nooperation(-1), nms(1), series(2), telnet(3), web(4), xml(5), ssh(6), netconf(7)}read-onlycurrent
hwConfigLockUserName
OBJECT-TYPE
The user name of the user who locks the configuration platform.
1.3.6.1.4.1.2011.6.3.24.4OCTET STRINGread-onlycurrent
hwConfigLockUserIPAddr
OBJECT-TYPE
The IP address of the user who locks the configuration platform. If a user who accesses through the serial port locks the configuration platform, the IP address is default value. DEFVAL { 255.255.255.255 }
1.3.6.1.4.1.2011.6.3.24.5IpAddressread-onlycurrent
hwConfigLockOperate
OBJECT-TYPE
The operation to lock or unlock config. Options: 1. lock(1) -before data configuration, use lock(1) to lock the configuration platform, preventing other users from modifying or deleting the configuration data just completed 2. unlock(2) -when the data configuration is complete, use unlock(2) to unlock the configuration platform. After that, other users can configure the system data If a user performs lock(1) and does not perform unlock(2) after data configuration, the system automatically unlocks after a certain period. For the interval for automatic unlock, refer to hwConfigUnlockInterval.
1.3.6.1.4.1.2011.6.3.24.6INTEGER {lock(1), unlock(2)}read-writecurrent
hwConfigLockUserInetAddressType
OBJECT-TYPE
The type of address in hwConfigLockUserInetAddress. Options: 1. unknown(0) -If a user who accesses through the serial port locks the configuration platform, the IP address type is unknown(0). 2. ipv4(1) -indicates that the IP address type is ipv4. 3. ipv6(2) -indicates that the IP address type is ipv6.
1.3.6.1.4.1.2011.6.3.24.7InetAddressType {unknown(0), ipv4(1), ipv6(2)}read-onlycurrent
hwConfigLockUserInetAddress
OBJECT-TYPE
The IP address of the user who locks the configuration platform. If a user who accesses through the serial port locks the configuration platform, the IP address is default value. DEFVAL { zero-length }
1.3.6.1.4.1.2011.6.3.24.8InetAddressread-onlycurrent
hwIntelligentPhoneParaTable
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.25
hwIntelligentPhoneMode
OBJECT-TYPE
The switch of Intelligent-phone mode: disable or enable. DEFVAL { disable } Options: 1. disable(1) -if it is set to disable(1), the settings of hwAttenuation and hwDetectionThreshold are not applied 2.enable(2) -if it is set to enable(2), the settings of hwAttenuation and hwDetectionThreshold take effect in the intelligent pay phone service (IPP)
1.3.6.1.4.1.2011.6.3.25.1INTEGER {disable(1), enable(2)}read-writecurrent
hwAttenuation
OBJECT-TYPE
The value of Intelligent-signal attenuation: 0 dBm to 14 dBm. From 0 to 14 independently indicates form 0 dBm to 14 dBm. Default: 5 dBm. DEFVAL { 5 }
1.3.6.1.4.1.2011.6.3.25.2Integer32 (0..14)read-writecurrent
hwDetectionThreshold
OBJECT-TYPE
The threshold of intelligent-signal detection: 0 dBm to 28 dBm. From 0 to 28 independently indicates form 0 dBm to -28 dBm. Default: -15 dBm. DEFVAL { 15 }
1.3.6.1.4.1.2011.6.3.25.3Integer32 (0..28)read-writecurrent
hwPstnBoardCfgTable
OBJECT-TYPE
The index of this table is hwFrameIndex or hwSlotIndex. PstnBoard config table.
1.3.6.1.4.1.2011.6.3.26not-accessiblecurrent
hwPstnBoardCfgEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex or hwSlotIndex. PstnBoard config table.
1.3.6.1.4.1.2011.6.3.26.1not-accessiblecurrent
hwPowerMode
OBJECT-TYPE
Indicates the power-mode of the board. Options: 1. generalMode(0) -Indicate that the board uses normal power supply 2. highMode(1) -Indicate that the board uses high-voltage power supply
1.3.6.1.4.1.2011.6.3.26.1.1INTEGER {generalMode(0), highMode(1)}read-writecurrent
hwNatOnuTable
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.27
hwNatOnuConfigInfoTable
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.27.1
hwNatOnuMgmtSwitch
OBJECT-TYPE
The status of the function of managing ONU through the NAT proxy for OLT: disable or enable. Options: 1.disable(1) - the state of the function is disabled 2.enable(2) - the state of the function is enabled
1.3.6.1.4.1.2011.6.3.27.1.1INTEGER {disable(1), enable(2)}read-onlycurrent
hwNatOnuVlanID
OBJECT-TYPE
The VLANID of the Management Channel which ONU belongs to. -1 (default value) indicates this value is not configured.
1.3.6.1.4.1.2011.6.3.27.1.2Integer32 (-1 | 2..4093)read-onlycurrent
hwNatOnuIpAddr
OBJECT-TYPE
The public IP Address of ONU under the Agent Management of OLT.
1.3.6.1.4.1.2011.6.3.27.1.3IpAddressread-onlycurrent
hwNatOnuPriority
OBJECT-TYPE
The Priority of the SNMP Message from ONU.
1.3.6.1.4.1.2011.6.3.27.1.4Integer32 (0..7)read-onlycurrent
hwNatOnuStartIp
OBJECT-TYPE
The start IP Address of ONU Inner Ip Segment.
1.3.6.1.4.1.2011.6.3.27.1.5IpAddressread-writecurrent
hwNatOnuIpScope
OBJECT-TYPE
The number of ONU Inner Ip.
1.3.6.1.4.1.2011.6.3.27.1.6Integer32 (1024..5120)read-writecurrent
hwNatOnuUDPInfoTable
OBJECT-TYPE
The index of this table is hwFrameIndex, hwSlotIndex, hwPortIndex or hwOntIndex. The UDP port distribution table of ONU.
1.3.6.1.4.1.2011.6.3.27.2not-accessiblecurrent
hwNatOnuUDPInfoEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex, hwSlotIndex, hwPortIndex or hwOntIndex. The UDP port distribution table of ONU.
1.3.6.1.4.1.2011.6.3.27.2.1not-accessiblecurrent
hwNatOnuUdpBegin
OBJECT-TYPE
The start UDP Port Number of ONU which is managed by OLT through NAT.
1.3.6.1.4.1.2011.6.3.27.2.1.1Integer32 (0..65528)read-onlycurrent
hwServiceMigrationTable
OBJECT-TYPE
The service migration object table of Port or ONT. The objects in hwServiceMigrationTable are used for migrating service operations associated with Port or ONT. The operations include adding and deleting a object. The indexes of this table are IfIndex, hwServiceMigrationOntId.
1.3.6.1.4.1.2011.6.3.28not-accessiblecurrent
hwServiceMigrationEntry
OBJECT-TYPE
The service migration object table of Port or ONT. The objects in hwServiceMigrationTable are used for migrating service operations associated with Port or ONT. The operations include adding and deleting a object. The indexes of this entry are IfIndex, hwServiceMigrationOntId.
1.3.6.1.4.1.2011.6.3.28.1not-accessiblecurrent
hwServiceMigrationOntId
OBJECT-TYPE
Ont ID. When hwOntId = 65535, the operating object is Port. When hwOntId != 65535, the operating object is ONT.
1.3.6.1.4.1.2011.6.3.28.1.1Integer32not-accessiblecurrent
hwServiceMigrationRowStatus
OBJECT-TYPE
Indicates the row status, used for creating or deleting a migration object. createAndGo(4) and destroy(6) are supported. During the query operation, active(1) is always returned for this leaf. Options: 1. active(1) -when this leaf is queried, the value is fixed to active(1). 2. createAndGo(4) -create a new instance of a conceptual row. 3. destroy(6) -delete the instances associated with an existing conceptual row.
1.3.6.1.4.1.2011.6.3.28.1.2RowStatusread-createcurrent
hwServiceCfgMngtTable
OBJECT-TYPE
The service configuration object table of Port or ONT. The objects in hwServiceCfgMngtTable are used for configuration operations associated with port or ONT. The operations include adding and deleting a object. The indexes of this table are IfIndex, hwServiceCfgOntId.
1.3.6.1.4.1.2011.6.3.29not-accessiblecurrent
hwServiceCfgMngtEntry
OBJECT-TYPE
The service configuration object table of Port or ONT. The objects in hwServiceCfgMngtTable are used for configuration operations associated with port or ONT. The operations include adding and deleting a object. The indexes of this entry are IfIndex, hwServiceCfgOntId.
1.3.6.1.4.1.2011.6.3.29.1not-accessiblecurrent
hwServiceCfgOntId
OBJECT-TYPE
Ont ID. When hwOntId = 65535, the operating object is Port. When hwOntId != 65535, the operating object is ONT.
1.3.6.1.4.1.2011.6.3.29.1.1Integer32not-accessiblecurrent
hwServiceCfgOperStatus
OBJECT-TYPE
The service configuration object status. Options: 1. srvCfgDeleting(1) -The operation is in deleting state. 2. srvCfgDeletionComplete(2) -The operation success. 3. srvCfgDeletionFailed(3) -The operation fail.
1.3.6.1.4.1.2011.6.3.29.1.2INTEGER {srvCfgDeleting(1), srvCfgDeletionComplete(2), srvCfgDeletionFailed(3)}read-onlycurrent
hwServiceCfgRowStatus
OBJECT-TYPE
Indicates the row status, used for creating or deleting a service configuration object. createAndGo(4) and destroy(6) are supported. During the query operation, active(1) is always returned for this leaf. Options: 1. active(1) -when this leaf is queried, the value is fixed to active(1). 2. createAndGo(4) -create a new instance of a conceptual row. 3. destroy(6) -delete the instances associated with an existing conceptual row.
1.3.6.1.4.1.2011.6.3.29.1.3RowStatusread-createcurrent
hwSysCapabilityTable
OBJECT-TYPE
Description of the device dynamic capability. The capability value is stored in 16 byte(128 bit), each bit denotes one capability, 1 equals support, 0 equals not. The index of this table is hwCapabilityFeatureID.
1.3.6.1.4.1.2011.6.3.30not-accessiblecurrent
hwSysCapabilityEntry
OBJECT-TYPE
Description of the device dynamic capability. The capability value is stored in 16 byte(128 bit), each bit denotes one capability, 1 equals support, 0 equals not. The index of this table is hwCapabilityFeatureID.
1.3.6.1.4.1.2011.6.3.30.1not-accessiblecurrent
hwCapabilityFeatureID
OBJECT-TYPE
The id of device feature. Options: 1.system(1) - feature of system
1.3.6.1.4.1.2011.6.3.30.1.1INTEGER {system(1)}read-onlycurrent
hwCapabilityFeatureValue
OBJECT-TYPE
The vaule of device capability. When hwCapabilityFeatureID equals system(1), bit from left to right represents: 0.AG capability 1.BFD capability The value of the bit is 0 means the capability is not supported. The value of the bit is 1 means the capability is supported.
1.3.6.1.4.1.2011.6.3.30.1.2OCTET STRING (SIZE(16))read-onlycurrent
hwCapabilityFeatureMask
OBJECT-TYPE
The mask of device capability. When hwCapabilityFeatureID equals system(1), bit from left to right represents: 0.AG capability 1.BFD capability The value of the bit is 0 means the 'capability value' is invalid. The value of the bit is 1 means the 'capability value' is valid.
1.3.6.1.4.1.2011.6.3.30.1.3OCTET STRING (SIZE(16))read-onlycurrent
hwDevLedLight
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.31
hwDevLedLightByNms
OBJECT-TYPE
This node supports the SET operation: If the pre-deployment on the NMS fails, the RUN indicator turns yellow by set ledOn(1). A half an hour later, the yellow indicator automatically turns off. If the pre-deployment on the NMS is successful, the RUN indicator must be set ledOff(2). This node supports the GET operation: The system returns null(3) when the GET operation is performed. 1,ledOn(1) --Network pre-deployment fail. 2,ledOff(2) --Network pre-deployment success. 3,null(3) --The return value of GET operation.
1.3.6.1.4.1.2011.6.3.31.1INTEGER {ledOn(1), ledOff(2), null(3)}read-writecurrent
hwBandwidth
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.32
hwBandwidthMode
OBJECT-TYPE
Configuring the bandwidth mode of the device. Options: 1.bandwidth40G(1) - 40G 2.bandwidth80G(2) - 80G 3.bandwidth160G(3) - 160G 4.bandwidth50G(4) - 50G 5.bandwidth100G(5) - 100G 6.bandwidth200G(6) - 200G
1.3.6.1.4.1.2011.6.3.32.1INTEGER {bandwidth40G(1), bandwidth80G(2), bandwidth160G(3), bandwidth50G(4), bandwidth100G(5), bandwidth200G(6)}read-writecurrent
hwOntRemoteHttpChnlCfgTable
OBJECT-TYPE
This table describes parameters that need to be delivered to the OLT and ONT during remote access to the ONT through the web page.
1.3.6.1.4.1.2011.6.3.34not-accessiblecurrent
hwOntRemoteHttpChnlCfgEntry
OBJECT-TYPE
The index of this entry is hwFrameIndex,hwSlotIndex,hwPortIndex,hwOntIndex.
1.3.6.1.4.1.2011.6.3.34.1not-accessiblecurrent
hwOntRemoteHttpChnlVlan
OBJECT-TYPE
Indicates the VLAN ID of the ONT. If this parameter is not specified, the system automatically obtains an unoccupied VLAN ID and uses it as the default VLAN ID.
1.3.6.1.4.1.2011.6.3.34.1.1Integer32 (1..4094)read-createcurrent
hwOntRemoteHttpChnlIpAddress
OBJECT-TYPE
Indicates the IP address of the ONT. If this parameter is not specified, the system selects an unoccupied IP address and uses it as the default IP address.
1.3.6.1.4.1.2011.6.3.34.1.2IpAddressread-createcurrent
hwOntRemoteHttpChnlHttpPort
OBJECT-TYPE
Indicates the web server port of the ONT. If this parameter is not specified, port 7017 is used by default.
1.3.6.1.4.1.2011.6.3.34.1.3Integer32 (0..65528)read-createcurrent
hwOntRemoteHttpChnlProtocol
OBJECT-TYPE
Indicates the protocol type of the web server of the ONT. If this parameter is not specified, HTTPS protocol is used by default.
1.3.6.1.4.1.2011.6.3.34.1.4INTEGER {http(1), https(2)}read-createcurrent
hwOntRemoteHttpChnlUserName
OBJECT-TYPE
Indicates the user name used for a temporary user to log in to the web server of the ONT. If this parameter is not specified, the existing user name and password are used for login.
1.3.6.1.4.1.2011.6.3.34.1.5OCTET STRING (SIZE(1..32))read-createcurrent
hwOntRemoteHttpChnlPassword
OBJECT-TYPE
Indicates the password used for a temporary user to log in to the web server of the ONT, which can consist of numbers, uppercase letters, lowercase letters, and special characters.
1.3.6.1.4.1.2011.6.3.34.1.6OCTET STRING (SIZE(6..32))read-createcurrent
hwOntRemoteHttpProxyPort
OBJECT-TYPE
Indicates the port ID of the TCP proxy during remote access to the ONT from the OLT through the web page, which is port 8024 fixedly.
1.3.6.1.4.1.2011.6.3.34.1.7Integer32read-onlycurrent
hwOntRemoteHttpChnlDuration
OBJECT-TYPE
Indicates the ONT login duration of a temporary user (unit: minute). If this parameter is not specified, the login duration is 30 minutes by default.
1.3.6.1.4.1.2011.6.3.34.1.8Integer32 (1..120)read-createcurrent
hwOntRemoteHttpProxyStatus
OBJECT-TYPE
Indicates the enabling status of the TCP proxy. The initial state is disable.
1.3.6.1.4.1.2011.6.3.34.1.9INTEGER {enable(1), disable(2)}read-onlycurrent
hwOntRemoteHttpChnlRowStatus
OBJECT-TYPE
Indicates the row status, used for creating or deleting a service configuration object. createAndGo(4) and destroy(6) are supported. During the query operation, active(1) is always returned for this leaf. Options: 2. createAndGo(4) -create a new instance of a conceptual row. 3. destroy(6) -delete the instances associated with an existing conceptual row.
1.3.6.1.4.1.2011.6.3.34.1.10RowStatusread-createcurrent
hwDevicePktStatTable
OBJECT-TYPE
This table is used to query statistics collected on some packets of a device.
1.3.6.1.4.1.2011.6.3.35not-accessiblecurrent
hwDevicePktStatEntry
OBJECT-TYPE
The indexes of this entry are hwFrameIndex and hwSlotIndex.
1.3.6.1.4.1.2011.6.3.35.1not-accessiblecurrent
hwDevicePktStatReset
OBJECT-TYPE
Reset the counter. Statistics can be cleared by setting the object to 1. Reading the value of the object is useless.
1.3.6.1.4.1.2011.6.3.35.1.1INTEGER {reset(1)}read-createcurrent
hwDevicePktStatVlanMismatch
OBJECT-TYPE
Number of packets whose VLAN tag does not match the interface configuration.
1.3.6.1.4.1.2011.6.3.35.1.2Counter64read-onlycurrent
hwDevConformance
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.101
hwDevCompliances
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.101.1
hwDevGroups
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.101.2
hwDevSnmpProbeMonitor
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.103
hwDevSnmpProbeMonitorPara
OBJECT-IDENTITY
1.3.6.1.4.1.2011.6.3.103.1
hwDevSnmpProbeMonitorSwitch
OBJECT-TYPE
The object specifies the switch state of SNMP probe monitor. Options: enable(1) -indicates the SNMP probe monitor switch is on. disable(2) -indicates the SNMP probe monitor switch is off. Default: enable(1).
1.3.6.1.4.1.2011.6.3.103.1.1INTEGER {enable(1), disable(2)}read-writecurrent
hwDevSnmpProbeMonitorActiveThreshold
OBJECT-TYPE
The object specifies the active-threshold of SNMP probe monitor. From 3 minutes to 60 minutes. Default: 15 minutes.
1.3.6.1.4.1.2011.6.3.103.1.2Integer32 (3..60)read-writecurrent
hwDevSnmpProbeHostTable
OBJECT-TYPE
The SNMP probe monitor table, which supports the functions of querying the information of SNMP probe monitor. The index of this table is hwDevSnmpProbeHostIndex.
1.3.6.1.4.1.2011.6.3.103.2not-accessiblecurrent
hwDevSnmpProbeHostEntry
OBJECT-TYPE
The SNMP probe monitor table, which supports the functions of querying the information of SNMP probe monitor. The index of this table is hwDevSnmpProbeHostIndex.
1.3.6.1.4.1.2011.6.3.103.2.1not-accessiblecurrent
hwDevSnmpProbeHostIndex
OBJECT-TYPE
The object specifies the index of SNMP probe monitor.
1.3.6.1.4.1.2011.6.3.103.2.1.1Integer32 (0..4)read-onlycurrent
hwDevSnmpProbeHostIpAddressType
OBJECT-TYPE
The object specifies the IP address type of SNMP probe monitor: Options: ipv4(1) -indicates an IPv4 address ipv6(2) -indicates an IPv6 address
1.3.6.1.4.1.2011.6.3.103.2.1.2InetAddressTyperead-onlycurrent
hwDevSnmpProbeHostIpAddress
OBJECT-TYPE
The object specifies the IP address of SNMP probe monitor.
1.3.6.1.4.1.2011.6.3.103.2.1.3InetAddressread-onlycurrent
hwDevSnmpProbeReceivedCount
OBJECT-TYPE
The object specifies the total probe count of SNMP probe monitor.
1.3.6.1.4.1.2011.6.3.103.2.1.4Integer32read-onlycurrent
hwDevSnmpProbeInitiallyReceivedTime
OBJECT-TYPE
The object specifies the initial probe time of SNMP probe monitor.
1.3.6.1.4.1.2011.6.3.103.2.1.5DateAndTimeread-onlycurrent
hwDevSnmpProbeRecentlyReceivedTime
OBJECT-TYPE
The object specifies the recent probe time of SNMP probe monitor.
1.3.6.1.4.1.2011.6.3.103.2.1.6DateAndTimeread-onlycurrent
hwDevSnmpProbeMinimumInterval
OBJECT-TYPE
The object specifies the minimum interval of SNMP probe monitor, unit second.
1.3.6.1.4.1.2011.6.3.103.2.1.7Integer32read-onlycurrent
hwDevSnmpProbeMaxmumInterval
OBJECT-TYPE
The object specifies the maxmum interval of SNMP probe monitor, unit second.
1.3.6.1.4.1.2011.6.3.103.2.1.8Integer32read-onlycurrent
hwDevSnmpProbeAverageInterval
OBJECT-TYPE
The object specifies the average interval of SNMP probe monitor, unit second.
1.3.6.1.4.1.2011.6.3.103.2.1.9Integer32read-onlycurrent
hwDevSnmpProbeRecordTable
OBJECT-TYPE
The abnormal record table of SNMP probe monitor, which supports the functions of querying the abnormal record of SNMP probe monitor. The index of this table is hwDevSnmpProbeRecordIndex.
1.3.6.1.4.1.2011.6.3.103.3not-accessiblecurrent
hwDevSnmpProbeRecordEntry
OBJECT-TYPE
The abnormal record table of SNMP probe monitor, which supports the functions of querying the abnormal record of SNMP probe monitor. The index of this table is hwDevSnmpProbeRecordIndex.
1.3.6.1.4.1.2011.6.3.103.3.1not-accessiblecurrent
hwDevSnmpProbeRecordIndex
OBJECT-TYPE
The object specifies the index of abnormal record.
1.3.6.1.4.1.2011.6.3.103.3.1.1Integer32 (0..49)read-onlycurrent
hwDevSnmpProbeRecordHostIpAddressType
OBJECT-TYPE
The object specifies the IP address type of abnormal record: Options: ipv4(1) -indicates an IPv4 address ipv6(2) -indicates an IPv6 address
1.3.6.1.4.1.2011.6.3.103.3.1.2InetAddressTyperead-onlycurrent
hwDevSnmpProbeRecordHostIpAddress
OBJECT-TYPE
The object specifies the IP address of abnormal record.
1.3.6.1.4.1.2011.6.3.103.3.1.3InetAddressread-onlycurrent
hwDevSnmpProbeRecordLastReceivedTime
OBJECT-TYPE
The object specifies the last probe time of abnormal record.
1.3.6.1.4.1.2011.6.3.103.3.1.4DateAndTimeread-onlycurrent
hwDevSnmpProbeRecordReceivedCount
OBJECT-TYPE
The object specifies the total probe count of abnormal record.
1.3.6.1.4.1.2011.6.3.103.3.1.5Integer32read-onlycurrent
hwDevSnmpProbeRecordMinimumInterval
OBJECT-TYPE
The object specifies the minimum interval of abnormal record, unit second.
1.3.6.1.4.1.2011.6.3.103.3.1.6Integer32read-onlycurrent
hwDevSnmpProbeRecordMaxmumInterval
OBJECT-TYPE
The object specifies the maxmum interval of abnormal record, unit second.
1.3.6.1.4.1.2011.6.3.103.3.1.7Integer32read-onlycurrent
hwDevSnmpProbeRecordAverageInterval
OBJECT-TYPE
The object specifies the average interval of the abnormal record, unit second.
1.3.6.1.4.1.2011.6.3.103.3.1.8Integer32read-onlycurrent

Notifications

NameOIDStatus
hwDevBoardDetectTrap
NOTIFICATION-TYPE
This trap message is reported when a board is detected.
1.3.6.1.4.1.2011.6.3.8.2.0.1current
hwDevBoardDisappearedTrap
NOTIFICATION-TYPE
This trap message is reported when a board disappears.
1.3.6.1.4.1.2011.6.3.8.2.0.2current
hwDevBoardStateChangedTrap
NOTIFICATION-TYPE
This trap message is reported when a board's state changes.
1.3.6.1.4.1.2011.6.3.8.2.0.3current
hwDevBoardStaChgOffLineTrap
NOTIFICATION-TYPE
This trap message is reported when a board's state changes from online to offline.
1.3.6.1.4.1.2011.6.3.8.2.0.4current
hwDevBoardAutoLoadTrap
NOTIFICATION-TYPE
This trap message is reported when a board starts to autoload.
1.3.6.1.4.1.2011.6.3.8.2.0.5current
hwDevUserlabelChangeTrap
NOTIFICATION-TYPE
This trap message is reported when a board's userlabel changes. The binding parameters hwDevVPI, hwDevVCI and hwDevVlanId are reserved and have no actual meaning.
1.3.6.1.4.1.2011.6.3.8.2.0.6current
hwDevSystemStateChangeTrap
NOTIFICATION-TYPE
This trap message is reported when the system state changes.
1.3.6.1.4.1.2011.6.3.8.2.0.7current
hwDevFrameDetectTrap
NOTIFICATION-TYPE
This trap message is reported when a frame is detected.
1.3.6.1.4.1.2011.6.3.8.2.0.8current
hwDevFrameDisappearedTrap
NOTIFICATION-TYPE
This trap message is reported when a frame disappears.
1.3.6.1.4.1.2011.6.3.8.2.0.9current
hwDevFrameStateChangeTrap
NOTIFICATION-TYPE
This trap message is reported when a frame's state changes.
1.3.6.1.4.1.2011.6.3.8.2.0.10current
hwDevExtendedFramePortChangeTrap
NOTIFICATION-TYPE
This trap message is reported when a extended frame's uplink port changes.
1.3.6.1.4.1.2011.6.3.8.2.0.11current
hwDevSnmpProbeRecordTrap
NOTIFICATION-TYPE
This trap message is reported when the abnormal record of SNMP probe monitor occurs.
1.3.6.1.4.1.2011.6.3.8.2.0.12current
hwDevSystemDataSynCancelTrap
NOTIFICATION-TYPE
This trap message is reported when the data synchronization between the active and standby control boards is canceled. The first hwSlotIndex indicates active main board index, the second hwSlotIndex indicates standby main board index.
1.3.6.1.4.1.2011.6.3.8.3.1.0.2current
hwDevActiveStandbyContolBoardInconsistentTrap
NOTIFICATION-TYPE
This trap message is reported when the active control board type is inconsistent with standby ctrol board type.
1.3.6.1.4.1.2011.6.3.8.3.1.0.3current
hwDevActiveStandbyDataSynCancelTrap
NOTIFICATION-TYPE
This trap message is reported when the data synchronization between the active and standby control boards is canceled. The first hwSlotIndex indicates active main board index, the second hwSlotIndex indicates standby main board index.
1.3.6.1.4.1.2011.6.3.8.3.1.0.5current
hwDevActiveStandbyDataSynCancelRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the data synchronization between the active and standby control boards recovers. The first hwSlotIndex indicates active main board index, the second hwSlotIndex indicates standby main board index.
1.3.6.1.4.1.2011.6.3.8.3.1.0.6current
hwDevSystemPoweroffTrap
NOTIFICATION-TYPE
This trap message is reported when the device is cut off.
1.3.6.1.4.1.2011.6.3.8.3.1.0.7current
hwDevSystemAutoDeployFailTrap
NOTIFICATION-TYPE
This trap message is reported when the auto-deployment fails.
1.3.6.1.4.1.2011.6.3.8.3.1.0.8current
hwDevSystemDeviceNameChangeTrap
NOTIFICATION-TYPE
This trap message is reported when the device name is changed.
1.3.6.1.4.1.2011.6.3.8.3.1.0.9current
hwDevFrameTypeInconsistentTrap
NOTIFICATION-TYPE
This trap message is reported when the actual shelf type is inconsistent with the configuration in the database of device. In this case, the configuration data delivery fails.
1.3.6.1.4.1.2011.6.3.8.3.2.0.1current
hwDevFrameRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the communication of the frame restored.
1.3.6.1.4.1.2011.6.3.8.3.2.0.2current
hwDevFrameFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the communication of the frame interrupted, the services in the frame fail.
1.3.6.1.4.1.2011.6.3.8.3.2.0.3current
hwDevExtendedFrameTypeInconsistentTrap
NOTIFICATION-TYPE
This trap message is reported when the actual shelf type is inconsistent with the configuration in the database of device. In this case, the configuration data delivery fails.
1.3.6.1.4.1.2011.6.3.8.3.2.0.4current
hwDevExtendedFrameDyingGaspAlarmTrap
NOTIFICATION-TYPE
This trap message is reported when the dying-gasp of the extended frame occurs.
1.3.6.1.4.1.2011.6.3.8.3.2.0.5current
hwDevExtendedFrameDyingGaspRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the dying-gasp of the extended frame recovers.
1.3.6.1.4.1.2011.6.3.8.3.2.0.6current
hwDevFrameIdOverLoadTrap
NOTIFICATION-TYPE
This trap message is reported when the frame ID exceeded the maximal number.
1.3.6.1.4.1.2011.6.3.8.3.2.0.7current
hwDevFrameCmtsAntitheftAuthFailTrap
NOTIFICATION-TYPE
This trap message is reported when the anti-theft authentication of the extended frame fails.
1.3.6.1.4.1.2011.6.3.8.3.2.0.8current
hwDevFrameCmtsAntitheftAuthRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the anti-theft authentication of the extended frame succeeds.
1.3.6.1.4.1.2011.6.3.8.3.2.0.9current
hwVccDataLinkFault
NOTIFICATION-TYPE
This object indicates that when the data link goes Down, the device sends a trap.
1.3.6.1.4.1.2011.6.3.8.3.2.0.10current
hwVccDataLinkFaultResume
NOTIFICATION-TYPE
This object indicates that when the data link goes Up, the device sends a trap.
1.3.6.1.4.1.2011.6.3.8.3.2.0.11current
hwVccDataChannelFault
NOTIFICATION-TYPE
This object indicates that when the data channel is down, the device sends a trap.
1.3.6.1.4.1.2011.6.3.8.3.2.0.12current
hwVccDataChannelFaultResume
NOTIFICATION-TYPE
This object indicates that when the data channel goes Up, the device sends a trap.
1.3.6.1.4.1.2011.6.3.8.3.2.0.13current
hwDeviceHighTemperatureMinorFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the device temperature exceeds the level-1 high temperature alarm threshold.
1.3.6.1.4.1.2011.6.3.8.3.2.0.14current
hwDeviceHighTemperatureMinorRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the device temperature exceeds the threshold for level-1 high temperature alarm recovery.
1.3.6.1.4.1.2011.6.3.8.3.2.0.15current
hwDeviceHighTemperatureMajorFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the device temperature exceeds the level-2 high temperature alarm threshold.
1.3.6.1.4.1.2011.6.3.8.3.2.0.16current
hwDeviceHighTemperatureMajorRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the device temperature exceeds the threshold for level-2 high temperature alarm recovery.
1.3.6.1.4.1.2011.6.3.8.3.2.0.17current
hwDeviceHighTemperatureCriticalFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the device temperature exceeds the level-3 high temperature alarm threshold.
1.3.6.1.4.1.2011.6.3.8.3.2.0.18current
hwDeviceHighTemperatureCriticalRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the device temperature exceeds the threshold for level-3 high temperature alarm recovery.
1.3.6.1.4.1.2011.6.3.8.3.2.0.19current
hwDevBoardMisMatchTrap
NOTIFICATION-TYPE
This trap message is reported when the type of the board that the user configured is inconsistent with the type of the board that is actually inserted.
1.3.6.1.4.1.2011.6.3.8.3.3.0.1current
hwDevBoardFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the communication of the board interrupted, the services in the board fail.
1.3.6.1.4.1.2011.6.3.8.3.3.0.3current
hwDevBoardRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the communication of the board restored.
1.3.6.1.4.1.2011.6.3.8.3.3.0.4current
hwDevBoardReplacedTrap
NOTIFICATION-TYPE
This trap message is reported when the board is successfully replaced by another board of the same type.
1.3.6.1.4.1.2011.6.3.8.3.3.0.5current
hwDevBoardEnterTemperatureProctectModeTrap
NOTIFICATION-TYPE
This trap message is reported when the temperature of active control board is too high, all the LAN switch ports of the service board will be powered off except GIU board.
1.3.6.1.4.1.2011.6.3.8.3.3.0.6current
hwDevBoardExitTemperatureProctectModeTrap
NOTIFICATION-TYPE
This trap message is reported when the temperature of active control board recovers to safe region from high temperature risk region, all the LAN switch ports of the service board will be powered on.
1.3.6.1.4.1.2011.6.3.8.3.3.0.7current
hwDevBoardTemperatureTooHighTrap
NOTIFICATION-TYPE
This trap message is reported when the current temperature of service board exceed the high temperature threshold.
1.3.6.1.4.1.2011.6.3.8.3.3.0.8current
hwDevBoardTemperatureTooHighRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the current temperature of service board recovers to the normal range from high temperature.
1.3.6.1.4.1.2011.6.3.8.3.3.0.9current
hwDevBoardTemperatureTooLowTrap
NOTIFICATION-TYPE
This trap message is reported when the current temperature of service board is exceed the low temperature threshold.
1.3.6.1.4.1.2011.6.3.8.3.3.0.10current
hwDevBoardTemperatureTooLowRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the current temperature of service board recovers to normal range from low temperature.
1.3.6.1.4.1.2011.6.3.8.3.3.0.11current
hwDevPowerInputFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the power input of the local shelf fails.
1.3.6.1.4.1.2011.6.3.8.3.3.0.12current
hwDevPowerInputRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the power input of the local shelf Recovers.
1.3.6.1.4.1.2011.6.3.8.3.3.0.13current
hwDevBoardOnlineStateTrap
NOTIFICATION-TYPE
This trap message is reported when the state of the board is online.
1.3.6.1.4.1.2011.6.3.8.3.3.0.14current
hwDevBoardPower5VFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the inner power of the board is abnormal.
1.3.6.1.4.1.2011.6.3.8.3.3.0.16current
hwDevBoardPower5VResumeTrap
NOTIFICATION-TYPE
This trap message is reported when the inner power of the board resumes.
1.3.6.1.4.1.2011.6.3.8.3.3.0.17current
hwDevStorageFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the certain storage is hardware fault or software fault.
1.3.6.1.4.1.2011.6.3.8.3.3.0.18current
hwDevStorageFaultRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the certain storage is hardware fault or software fault recovers.
1.3.6.1.4.1.2011.6.3.8.3.3.0.21current
hwFtpConfigureTrap
NOTIFICATION-TYPE
This trap message is reported when the board need automatic expand.
1.3.6.1.4.1.2011.6.3.8.3.3.0.22current
hwDevBoardAutomaticExpandFailTrap
NOTIFICATION-TYPE
This trap message is reported when the board automatic expand fail.
1.3.6.1.4.1.2011.6.3.8.3.3.0.23current
hwDevBoardAutomaticExpandRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the board automatic expand fail recovers.
1.3.6.1.4.1.2011.6.3.8.3.3.0.24current
hwDevBoardInputFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the input voltage of a line cannot be detected.
1.3.6.1.4.1.2011.6.3.8.3.3.0.26current
hwDevBoardInputRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when detected power unit singals recover.
1.3.6.1.4.1.2011.6.3.8.3.3.0.27current
hwDevPowerLackVoltageFaultTrap
NOTIFICATION-TYPE
This trap message is reported when remote power supply input is under-voltage.
1.3.6.1.4.1.2011.6.3.8.3.3.0.28current
hwDevPowerLackVolitageRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when voltage in the subrack recovers.
1.3.6.1.4.1.2011.6.3.8.3.3.0.29current
hwDevBoardReplaceFailTrap
NOTIFICATION-TYPE
This trap message is reported when the original board failed to replace with a new board.
1.3.6.1.4.1.2011.6.3.8.3.3.0.30current
hwDevPowerPortInputFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the power input of the local shelf fails.
1.3.6.1.4.1.2011.6.3.8.3.3.0.31current
hwDevPowerPortInputRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the power input of the local shelf Recovers.
1.3.6.1.4.1.2011.6.3.8.3.3.0.32current
hwDevPowerPortInputUnderVolFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the input power of the subrack is undervoltage.
1.3.6.1.4.1.2011.6.3.8.3.3.0.33current
hwDevPowerPortInputUnderVolRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the undervoltage power input of the subrack recovers.
1.3.6.1.4.1.2011.6.3.8.3.3.0.34current
hwDevImportantFileBrokenTrap
NOTIFICATION-TYPE
This trap message is reported when the important file is broken.
1.3.6.1.4.1.2011.6.3.8.3.3.0.35current
hwDevImportantFileBrokenRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the important file is recovery.
1.3.6.1.4.1.2011.6.3.8.3.3.0.36current
hwDevRtuLicCapacityExceedFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the running Rtu capacity exceed the license resource.
1.3.6.1.4.1.2011.6.3.8.3.3.0.37current
hwDevRtuLicCapacityExceedRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the running Rtu capacity restore to the same the license resource.
1.3.6.1.4.1.2011.6.3.8.3.3.0.38current
hwDevSubBoardTypeInconsistentTrap
NOTIFICATION-TYPE
This trap message is reported when the configured daughter board type or quantity is not the same as the actual type or quantity.
1.3.6.1.4.1.2011.6.3.8.3.4.0.1current
hwDevSubBoardMisMatchTrap
NOTIFICATION-TYPE
This trap message is reported when the combination of daughter board type in main control board is not supported.
1.3.6.1.4.1.2011.6.3.8.3.4.0.2current
hwDevSubBoardReplacedTrap
NOTIFICATION-TYPE
This trap message is reported when the board is successfully replaced by another board of the same type.
1.3.6.1.4.1.2011.6.3.8.3.4.0.3current
hwDevSubBoardTemperatureTooHighTrap
NOTIFICATION-TYPE
This trap message is reported when the current temperature of service sub board exceed the high temperature threshold.
1.3.6.1.4.1.2011.6.3.8.3.4.0.4current
hwDevSubBoardTemperatureTooHighRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the current temperature of service sub board recovers to the normal range from high temperature.
1.3.6.1.4.1.2011.6.3.8.3.4.0.5current
hwDevSubBoardFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the communication of the board interrupted.
1.3.6.1.4.1.2011.6.3.8.3.4.0.6current
hwDevSubBoardFaultRecoverTrap
NOTIFICATION-TYPE
This trap message is reported when the communication of the board restored.
1.3.6.1.4.1.2011.6.3.8.3.4.0.7current
hwDevSubBoardActStdInconsistentTrap
NOTIFICATION-TYPE
This trap message is reported when the subboards on the active and standby control boards are inconsistent.
1.3.6.1.4.1.2011.6.3.8.3.4.0.8current
hwDevSubBoardActStdInconsistentRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the subboards on the active and standby control boards recover consistent.
1.3.6.1.4.1.2011.6.3.8.3.4.0.9current
hwDiagResOverloadFaultTrap
NOTIFICATION-TYPE
This trap message is reported when the system resources usage exceeds the threshold The system resources include system CPU, system memory, and system messages.
1.3.6.1.4.1.2011.6.3.8.3.5.0.1current
hwDiagResOverloadRestoreTrap
NOTIFICATION-TYPE
This trap message is reported when the system resources usage recovers from the overload state to the normal state.
1.3.6.1.4.1.2011.6.3.8.3.5.0.2current
hwFrameAdminResultTrap
NOTIFICATION-TYPE
Frame administration result Trap report
1.3.6.1.4.1.2011.6.3.8.5.0.1current
hwSlotAdminResultTrap
NOTIFICATION-TYPE
Slot administration result Trap report
1.3.6.1.4.1.2011.6.3.8.5.0.2current
hwSubSlotAdminResultTrap
NOTIFICATION-TYPE
Subslot administration result Trap report
1.3.6.1.4.1.2011.6.3.8.5.0.3current
hwPortAdminResultTrap
NOTIFICATION-TYPE
Port administration result Trap report
1.3.6.1.4.1.2011.6.3.8.5.0.4current

Conformance

NameOIDStatus
hwDevCompliance
MODULE-COMPLIANCE
The compliance statement for SNMP entities which implement HUAWEI DEVICE MIB.
1.3.6.1.4.1.2011.6.3.101.1.1current
hwSystemParaGroup
OBJECT-GROUP
hwSystemPara.
1.3.6.1.4.1.2011.6.3.101.2.1current
hwFrameLinksGroup
OBJECT-GROUP
hwFrameLinks.
1.3.6.1.4.1.2011.6.3.101.2.2current
hwDevTrapVbOidsGroup
OBJECT-GROUP
hwDevTrapVbOids.
1.3.6.1.4.1.2011.6.3.101.2.3current
hwDevCompatibleTableGroup
OBJECT-GROUP
hwDevCompatibleTable.
1.3.6.1.4.1.2011.6.3.101.2.4current
hwDevCpuGroup
OBJECT-GROUP
hwDevCpuGroup.
1.3.6.1.4.1.2011.6.3.101.2.5current
hwDevMemGroup
OBJECT-GROUP
hwDevMemGroup.
1.3.6.1.4.1.2011.6.3.101.2.6current
hwDevBufGroup
OBJECT-GROUP
hwDevBufGroup.
1.3.6.1.4.1.2011.6.3.101.2.7current
hwDevGeneralTrapsGroup
NOTIFICATION-GROUP
hwDevGeneralTraps.
1.3.6.1.4.1.2011.6.3.101.2.8current
hwDevPacketStatisticsGroup
OBJECT-GROUP
hwDevPacketStatisticsGroup.
1.3.6.1.4.1.2011.6.3.101.2.9current