MIBs Depot

FOUNDRY-SN-AGENT-MIB

Registered at
1.3.6.1.4.1.1991.1.1.1.1
1.3.6.1.4.1.1991.1.1.1.2
1.3.6.1.4.1.1991.1.1.1.3
1.3.6.1.4.1.1991.1.1.1.4
1.3.6.1.4.1.1991.1.1.2.1
1.3.6.1.4.1.1991.1.1.2.2
1.3.6.1.4.1.1991.1.1.2.3
1.3.6.1.4.1.1991.1.1.2.4
1.3.6.1.4.1.1991.1.1.2.5
1.3.6.1.4.1.1991.1.1.2.6
1.3.6.1.4.1.1991.1.1.2.7
1.3.6.1.4.1.1991.1.1.2.8
1.3.6.1.4.1.1991.1.1.2.9
1.3.6.1.4.1.1991.1.1.2.10
1.3.6.1.4.1.1991.1.1.2.11
1.3.6.1.4.1.1991.1.1.2.12
1.3.6.1.4.1.1991.1.1.2.13
1.3.6.1.4.1.1991.1.1.2.14
1.3.6.1.4.1.1991.1.1.2.15
1.3.6.1.4.1.1991.1.1.2.16
1.3.6.1.4.1.1991.1.1.5.1
1.3.6.1.4.1.1991.1.1.5.2
1.3.6.1.4.1.1991.4
Last updated
2011-12-22 00:00
Organization
Brocade Communications Systems, Inc.
Revisions
2011-12-22 00:00, 2010-06-02 00:00, 2009-09-30 00:00
Namespace
extreme
Source file
FOUNDRY-SN-AGENT-MIB
Digest
sha256:8e9fdd29f0a81268bcbb910a6613a953d64418ac09c58c2bbaaf1a33558418e2

Description

Copyright 1996-2010 Brocade Communications Systems, Inc. All rights reserved. This Brocade Communications Systems SNMP Management Information Base Specification embodies Brocade Communications Systems' confidential and proprietary intellectual property. Brocade Communications Systems retains all title and ownership in the Specification, including any revisions. This Specification is supplied AS IS, and Brocade Communications Systems makes no warranty, either express or implied, as to the use, operation, condition, or performance of the specification, and any unintended consequence it may on the user environment.

Contact

Technical Support Center 130 Holger Way, San Jose, CA 95134 Email: ipsupport@brocade.com Phone: 1-800-752-8061 URL: www.brocade.com

Imports

FromSymbols
FOUNDRY-SN-ROOT-MIBsnAgentSys, snChassis, snStack
HCNUM-TCCounterBasedGauge64
IF-MIBInterfaceIndex
INET-ADDRESS-MIBInetAddress, InetAddressType
SNMPv2-CONFMODULE-COMPLIANCE, NOTIFICATION-GROUP
SNMPv2-SMICounter32, Gauge32, Integer32, IpAddress, MODULE-IDENTITY, NOTIFICATION-TYPE, OBJECT-IDENTITY, OBJECT-TYPE, TimeTicks, Unsigned32, iso
SNMPv2-TCDisplayString, RowStatus, TEXTUAL-CONVENTION, TimeStamp, 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.

FOUNDRY-SN-AGENT-MIB
FOUNDRY-SN-ROOT-MIB
HCNUM-TC
IANAifType-MIB
IF-MIB
INET-ADDRESS-MIB
SNMPv2-CONF
SNMPv2-MIB
SNMPv2-SMI
SNMPv2-TC

Textual conventions

NameOIDSyntaxAccessStatus
BrcdImageType
TEXTUAL-CONVENTION
Image types supported by XMR/MLX and CES/CER
current
DisplayString
TEXTUAL-CONVENTION
This data type is used to model textual information taken from the NVT ASCII character set. By convention, objects with this syntax are declared as having SIZE (0..255)
current
MacAddress
TEXTUAL-CONVENTION
This data type is used to model media addresses. For many types of media, this will be in a binary representation. For example, an ethernet address would be represented as a string of 6 octets.
current

Objects

NameOIDSyntaxAccessStatus
snChasGen
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.1.1
snChasType
OBJECT-TYPE
The chassis type represents the type of Foundry product being managed.
1.3.6.1.4.1.1991.1.1.1.1.1DisplayString (SIZE(0..128))read-onlycurrent
snChasSerNum
OBJECT-TYPE
The serial number of the chassis. If the serial number is unknown or unavailable then the value should be a zero length string.
1.3.6.1.4.1.1991.1.1.1.1.2DisplayString (SIZE(0..128))read-onlycurrent
snChasPwrSupplyStatus
OBJECT-TYPE
This object is being deprecated, please use snChasPwrSupplyTable instead. A bit array that contains the value of the Chassis Power Supplies. This is a packed bit string; the 2 power supplies status are encoded into 4 bits (a nibble). There are multiple power supplies per chassis in this release. The following shows the meaning of each bit: (bit 0 is the least significant bit). bit position meaning ------------ ------- 20-31 reserved 19 Power Supply 8 DC (0=bad, 1=good). 18 Power Supply 7 DC (0=bad, 1=good). 17 Power Supply 8 present status (0=present, 1=not-present). 16 Power Supply 7 present status (0=present, 1=not-present). 15 Power Supply 6 DC (0=bad, 1=good). 14 Power Supply 5 DC (0=bad, 1=good). 13 Power Supply 6 present status (0=present, 1=not-present). 12 Power Supply 5 present status (0=present, 1=not-present). 11 Power Supply 4 DC (0=bad, 1=good). 10 Power Supply 3 DC (0=bad, 1=good). 9 Power Supply 4 present status (0=present, 1=not-present). 8 Power Supply 3 present status (0=present, 1=not-present). 4-7 reserved 3 Power Supply 2 DC (0=bad, 1=good). 2 Power Supply 1 DC (0=bad, 1=good). 1 Power Supply 2 present status (0=present, 1=not-present). 0 Power Supply 1 present status (0=present, 1=not-present).
1.3.6.1.4.1.1991.1.1.1.1.3Integer32read-onlydeprecated
snChasFanStatus
OBJECT-TYPE
This object is being deprecated, please use snChasFanTable instead. A bit array that contains the value of the fan status. This is a packed bit string. The status of each fan is encoded into one bit. bit value meaning --------- ------- 0 fan failure. 1 fan good. There are two fans per VLAN Switch chassis in this release. The following shows the meaning of each bit: (bit 0 is the least significant bit). bit position meaning ------------ ------- 6-31 reserved 5 fan6 status 4 fan5 status 3 fan4 status 2 fan3 status 1 fan2 status 0 fan1 status
1.3.6.1.4.1.1991.1.1.1.1.4Integer32read-onlydeprecated
snChasMainBrdDescription
OBJECT-TYPE
The main board description string. (It is obsoleted for Chassis Product)
1.3.6.1.4.1.1991.1.1.1.1.5DisplayString (SIZE(0..128))read-onlycurrent
snChasMainPortTotal
OBJECT-TYPE
The total number of ports for the main board. (It is obsoleted for Chassis Product)
1.3.6.1.4.1.1991.1.1.1.1.6INTEGER (1..24)read-onlycurrent
snChasExpBrdDescription
OBJECT-TYPE
The expansion board description string. Expansion board are those boards attaching on the main board. (It is obsoleted for Chassis Product)
1.3.6.1.4.1.1991.1.1.1.1.7DisplayString (SIZE(0..128))read-onlycurrent
snChasExpPortTotal
OBJECT-TYPE
The total number of ports for the expansion board. (It is obsoleted for Chassis Product)
1.3.6.1.4.1.1991.1.1.1.1.8INTEGER (1..24)read-onlycurrent
snChasStatusLeds
OBJECT-TYPE
A bit array that contains the value of the front panel status LEDs. This is a bit-map; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Status LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (Link off) 1 on (Link on) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 --------
1.3.6.1.4.1.1991.1.1.1.1.9Integer32read-onlycurrent
snChasTrafficLeds
OBJECT-TYPE
A bit array that contains the value of the front panel traffic LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Traffic LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no traffic) 1 on (traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 --------
1.3.6.1.4.1.1991.1.1.1.1.10Integer32read-onlycurrent
snChasMediaLeds
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Media LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 half duplex 1 full duplex The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 ---------
1.3.6.1.4.1.1991.1.1.1.1.11Integer32read-onlycurrent
snChasEnablePwrSupplyTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate power supply failure traps.
1.3.6.1.4.1.1991.1.1.1.1.12INTEGER {disabled(0), enabled(1)}read-writecurrent
snChasMainBrdId
OBJECT-TYPE
The main board identifier, which can uniquely identify a board type. It is an encoded octet string with the following meaning: octet 0 - octet string format version, which identifies the format of this string. If format version octet has the value 1, the octets after the version octet have the following meaning: octet 1 - product type, FIWG=0x57, FIBB=0x42, FIMLS=0x4D NI=0x4E, TI=0x54, TIRT=0x52 octet 2 - board type, POWERPC=1, ALPHA=2 The length of the octet string is 27. If format version octet has the value 2, the octets after the version octet have the following meaning: octet 1 - product type: BI_WG 0x57 BI_BB 0x42 BI_NI 0x4E NI_M4 0x4D BI_SLB 0x53 octet 2 - module type: MASTER_FIBER_8G 0x0 MASTER_FIBER_4G 0x1 MASTER_COPPER_16 0x2 SLAVE_FIBER_4G 0x3 FI_MASTER_FIBER_2G 0x4 FI_MASTER_FIBER_4G 0x5 MASTER_COPPER_8G 0x6 FI_MASTER_FIBER_8G 0x7 SLAVE_FIBER_8G 0x8 MASTER_COPPER_12_2 0x9 SLAVE_COPPER_24 0xA FI_SLAVE_COPPER_24 0xB SLAVE_100FX_8 0xD SLAVE_100FX_16 0xC SLAVE_COPPER_8G 0xE SLAVE_COPPER_16_2 0xF STACK_FIBER_8G 0x10 STACK_COPPER_8G 0x11 MASTER_FIBER_2G 0x12 SLAVE_100FX_24 0x13 MASTER_FIBER_0G 0x14 POS_622M 0x15 POS_155M 0x16 SLAVE_FIBER_2G 0x17 SLAVE_COPPER_2G 0x18 FI_SLAVE_FIBER_2G 0x19 FI_SLAVE_FIBER_4G 0x1A FI_SLAVE_FIBER_8G 0x1B FI_SLAVE_COPPER_8G 0x1C FI_MASTER_COPPER_8G 0x1D POS_155M2P 0x1E FI_MASTER_COPPER_4G 0x1F FI_MASTER_COPPER_2G 0x20 MASTER_COPPER_4G 0x21 MASTER_COPPER_2G 0x22 MASTER_M4_8G 0x23 MASTER_M4_4G 0x24 MASTER_M4_2G 0x25 MASTER_M4_0G 0x26 MASTER_M5_0G 0x27 POS_2488M 0x28 SLAVE_M5_0G 0x29 POS_N2488M 0x2A STACK_IPC_48_2 0x2B SLAVE_NPA_FIBER_4G 0x2C ATM_2PORT 0x2D ATM_4PORT 0x2E SLAVE_FIBER_10G 0x2F STACK_FES_48_2 0x30 STACK_FES_24_2 0x31 STACK_FES_96_4 0x32 STACK_FES_12G 0x33 STACK_FESX_24G 0x34 STACK_FESX_24_2_G 0x35 STACK_FESX_24_1_G 0x36 STACK_FESX_48G 0x37 STACK_FESX_48_2_G 0x38 STACK_FESX_48_1_G 0x39 SUPERX_FI_MGMT 0x40 SUPERX_FI_2P10G 0x41 SUPERX_FI_24GC 0x42 SUPERX_FI_24GF 0x43 SUPERX_FI_2P10G_WAN 0x44 SUPERX_FI_MGMT_II 0x4a SLAVE_JC_48E 0xC3 SLAVE_JC_48T 0xC4 MASTER_JC_M4_8G 0xC5 SLAVE_JC_8G 0xC6 SLAVE_JC_B16GF 0xC8 MASTER_JC_B2404 0xC9 SLAVE_JC_B16GC 0xCA The length of the octet string is 28. Both format version 1 and 2: octet 3 - processor type, PVR_M603=3, PVR_M604=4, PVR_M603E=6, PVR_M603EV=7, PVR_M750=8, PVR_M604E=9, PVR_M8245=81 octet 4 to octet 5 - processor speed in MHz octet 6 - MAC type: MAC_NONE=0 MAC_SEEQ_10_100=1, MAC_DEC_10_100=2, MAC_3COM_10_100=3, MAC_X10GMAC_10000=4, MAC_SEEQ_1000=5, MAC_GMAC_1000=6, MAC_VLSI_1000=7 octet 7 - PHY type, PHY_NONE=0, PHY_QSI=1, PHY_BROADCOM=2, PHY_ICS=3, PHY_NATIONAL=4, PHY_LEVEL1=6, PHY_BROADCOM_10_100=7, PHY_LEVEL24=8, PHY_BROADCOM_10000=9 (for 10G), PHY_3COM_10_100=9 (for others) octet 8 - port type, COPPER=0, FIBER=1 octet 9 - fiber port type, NONFIBER=0, SX_FIBER=1, LX_FIBER=2, LHX_FIBER=3, LX_SX_FIBER=4, LHB_FIBER=5 octet 10 to octet 13 - DRAM size in KBytes octet 14 to octet 17 - boot flash size in KBytes octet 18 to octet 21 - code flash size in KBytes octet 22 to octet 27 - serial number. Format version 1 only: octet 28 - chassis backplane type. chassis4000 = 0x00 chassis8000 = 0x02 chassis15000 = 0x01 chassisFISX = 0x04 Turbo8 = 0x07 (stack2) FastIron2 = 0x06 (stack1)
1.3.6.1.4.1.1991.1.1.1.1.13OCTET STRINGread-onlycurrent
snChasExpBrdId
OBJECT-TYPE
The expansion board identifier. Expansion board are those boards attaching on the main board. It is an encoded octet string with the following meaning: octet 0 - octet string format version, which identifies the format of this string. If format version octet has the value 1, the octets after the version octet have the following meaning: octet 1 - expansion board type, HUNDRED_MEG_1PORT=1, HUNDRED_MEG_2PORT=2, HUNDRED_MEG_1PORT_COPPER=3, HUNDRED_MEG_2PORT_COPPER=4, HUNDRED_MEG_2PORT_LX=5, GIGA_1PORT=8, GIGA_2PORT=9 octet 2 - fiber port type, NONFIBER=0, SX_FIBER=1, LX_FIBER=2, LHX_FIBER=3, LX_SX_FIBER=4 (It is obsoleted for Chassis Product)
1.3.6.1.4.1.1991.1.1.1.1.14OCTET STRINGread-onlycurrent
snChasSpeedLeds
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Speed LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 10 MBit 1 100 MBit The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 ---------
1.3.6.1.4.1.1991.1.1.1.1.15Integer32read-onlycurrent
snChasEnableFanTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate fan failure traps.
1.3.6.1.4.1.1991.1.1.1.1.16INTEGER {disabled(0), enabled(1)}read-writecurrent
snChasIdNumber
OBJECT-TYPE
An administratively-assigned chassis identity number, used by inventory control.
1.3.6.1.4.1.1991.1.1.1.1.17DisplayString (SIZE(0..64))read-writecurrent
snChasActualTemperature
OBJECT-TYPE
Temperature of the chassis. Each unit is 0.5 degrees Celcius. Only management module built with temperature sensor hardware is applicable. For those non-applicable management module, it returns no-such-name.
1.3.6.1.4.1.1991.1.1.1.1.18INTEGER (-110..250)read-onlycurrent
snChasWarningTemperature
OBJECT-TYPE
Actual temperature higher than this threshold value will trigger the switch to send a temperature warning trap. Each unit is 0.5 degrees Celcius. Only management module built with temperature sensor hardware is applicable. For those non-applicable management module, it returns no-such-name.
1.3.6.1.4.1.1991.1.1.1.1.19INTEGER (0..250)read-writecurrent
snChasShutdownTemperature
OBJECT-TYPE
Actual temperature higher than this threshold value will shutdown a partial of the switch hardware to cool down the system. Each unit is 0.5 degrees Celcius. Only management module built with temperature sensor hardware is applicable. For those non-applicable management module, it returns no-such-name.
1.3.6.1.4.1.1991.1.1.1.1.20INTEGER (0..250)read-writecurrent
snChasEnableTempWarnTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate temperature warning traps.
1.3.6.1.4.1.1991.1.1.1.1.21INTEGER {disabled(0), enabled(1)}read-writecurrent
snChasFlashCard
OBJECT-TYPE
A bit array that contains the value of the flash card status. This is a packed bit string. The status of each flash card is encoded into one bit. bit value meaning --------- ------- 0 flash card absent. 1 flash card present. There are up to two flash cards in this release. This object is valid if M4 management module is present. The following shows the meaning of each bit: (bit 0 is the least significant bit). bit position meaning ------------ ------- 2-31 reserved 1 flash card 2 status 0 flash card 1 status
1.3.6.1.4.1.1991.1.1.1.1.22Integer32read-onlycurrent
snChasFlashCardLeds
OBJECT-TYPE
A bit array that contains the value of the flash card LEDs. This is a packed bit string; each LED is encoded into 1 bit for each flash card. bit value meaning -------- --------- 0 off 1 on
1.3.6.1.4.1.1991.1.1.1.1.23Integer32read-onlycurrent
snChasNumSlots
OBJECT-TYPE
Number of slots of the chassis.
1.3.6.1.4.1.1991.1.1.1.1.24Integer32read-onlycurrent
snChasArchitectureType
OBJECT-TYPE
Architecture type.
1.3.6.1.4.1.1991.1.1.1.1.25INTEGER {stackable(1), bigIron(2), terathon(3), fifthGen(4)}read-onlycurrent
snChasProductType
OBJECT-TYPE
Product type.
1.3.6.1.4.1.1991.1.1.1.1.26INTEGER {invalid(0), mg8(1), ni40G(2), imr(3), biRx800(4), niXmr16000(5), biRx400(6), niXmr8000(7), biRx200(8), niXmr4000(9), niMlx16(10), niMlx8(11), niMlx4(12), niMlx32(13), niXmr32000(14), biRx32(15), niCES2000Series(16), niCER2000Series(17), brMlxE4(18), brMlxE8(19), brMlxE16(20), brMlxE32(21), biNI2(50), biBB(66), biM4(77), biNI(78), biSLB(83), biWG(87)}read-onlycurrent
snChasSystemMode
OBJECT-TYPE
System Mode. This object is only applicable to XMR/MLX/MLXe products. For example, if snChasProductType is niMlx4/niMlx8/niMlx16/niMlx32 then the this object returns mlx(2). If snChasProductType is niXmr4000/niXmr8000 niXmr160000/niXmr32000 this object returns xmr(1). If snChasProductType is brMlxE4/brMlxE8/brMlxE16/brMlxE32 this object returns either xmr(1) or mlx(2) depending on the mode of the system. This object is not supported for the other products.
1.3.6.1.4.1.1991.1.1.1.1.27INTEGER {xmr(1), mlx(2)}read-onlycurrent
snChasFactoryPartNumber
OBJECT-TYPE
Factory Part number assigned by the manufacturer.
1.3.6.1.4.1.1991.1.1.1.1.28DisplayString (SIZE(0..64))read-onlycurrent
snChasFactorySerialNumber
OBJECT-TYPE
Factory serial number assigned by the manufacturer.
1.3.6.1.4.1.1991.1.1.1.1.29DisplayString (SIZE(0..128))read-onlycurrent
snChasPwr
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.1.2
snChasPwrSupplyTable
OBJECT-TYPE
A table of each power supply information. Only installed power supply appears in a table row.
1.3.6.1.4.1.1991.1.1.1.2.1not-accessiblecurrent
snChasPwrSupplyEntry
OBJECT-TYPE
A row in the power supply table.
1.3.6.1.4.1.1991.1.1.1.2.1.1not-accessiblecurrent
snChasPwrSupplyIndex
OBJECT-TYPE
The index to power supply table.
1.3.6.1.4.1.1991.1.1.1.2.1.1.1Integer32read-onlycurrent
snChasPwrSupplyDescription
OBJECT-TYPE
The power supply description string.
1.3.6.1.4.1.1991.1.1.1.2.1.1.2DisplayString (SIZE(0..128))read-onlycurrent
snChasPwrSupplyOperStatus
OBJECT-TYPE
The power supply operation status.
1.3.6.1.4.1.1991.1.1.1.2.1.1.3INTEGER {other(1), normal(2), failure(3)}read-onlycurrent
snChasPwrSupply2Table
OBJECT-TYPE
A table of each power supply information for each unit. Only installed power supply appears in a table row.
1.3.6.1.4.1.1991.1.1.1.2.2not-accessiblecurrent
snChasPwrSupply2Entry
OBJECT-TYPE
A row in the power supply table.
1.3.6.1.4.1.1991.1.1.1.2.2.1not-accessiblecurrent
snChasPwrSupply2Unit
OBJECT-TYPE
The index to power supply table.
1.3.6.1.4.1.1991.1.1.1.2.2.1.1Integer32read-onlycurrent
snChasPwrSupply2Index
OBJECT-TYPE
The index to power supply table.
1.3.6.1.4.1.1991.1.1.1.2.2.1.2Integer32read-onlycurrent
snChasPwrSupply2Description
OBJECT-TYPE
The power supply description string.
1.3.6.1.4.1.1991.1.1.1.2.2.1.3DisplayString (SIZE(0..128))read-onlycurrent
snChasPwrSupply2OperStatus
OBJECT-TYPE
The power supply operation status.
1.3.6.1.4.1.1991.1.1.1.2.2.1.4INTEGER {other(1), normal(2), failure(3)}read-onlycurrent
snChasFan
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.1.3
snChasFanTable
OBJECT-TYPE
A table of each fan information. Only installed fan appears in a table row.
1.3.6.1.4.1.1991.1.1.1.3.1not-accessiblecurrent
snChasFanEntry
OBJECT-TYPE
A row in the fan table.
1.3.6.1.4.1.1991.1.1.1.3.1.1not-accessiblecurrent
snChasFanIndex
OBJECT-TYPE
The index to fan table.
1.3.6.1.4.1.1991.1.1.1.3.1.1.1Integer32read-onlycurrent
snChasFanDescription
OBJECT-TYPE
The fan description string.
1.3.6.1.4.1.1991.1.1.1.3.1.1.2DisplayString (SIZE(0..128))read-onlycurrent
snChasFanOperStatus
OBJECT-TYPE
The fan operation status.
1.3.6.1.4.1.1991.1.1.1.3.1.1.3INTEGER {other(1), normal(2), failure(3)}read-onlycurrent
snChasFan2Table
OBJECT-TYPE
A table of each fan information for each unit. Only installed fan appears in a table row.
1.3.6.1.4.1.1991.1.1.1.3.2not-accessiblecurrent
snChasFan2Entry
OBJECT-TYPE
A row in the fan table.
1.3.6.1.4.1.1991.1.1.1.3.2.1not-accessiblecurrent
snChasFan2Unit
OBJECT-TYPE
The index to fan table.
1.3.6.1.4.1.1991.1.1.1.3.2.1.1Integer32read-onlycurrent
snChasFan2Index
OBJECT-TYPE
The index to fan table.
1.3.6.1.4.1.1991.1.1.1.3.2.1.2Integer32read-onlycurrent
snChasFan2Description
OBJECT-TYPE
The fan description string.
1.3.6.1.4.1.1991.1.1.1.3.2.1.3DisplayString (SIZE(0..128))read-onlycurrent
snChasFan2OperStatus
OBJECT-TYPE
The fan operation status.
1.3.6.1.4.1.1991.1.1.1.3.2.1.4INTEGER {other(1), normal(2), failure(3)}read-onlycurrent
snChasUnit
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.1.4
snChasUnitTable
OBJECT-TYPE
A table of chassis information for each unit. Only active chassis appears in a table row.
1.3.6.1.4.1.1991.1.1.1.4.1not-accessiblecurrent
snChasUnitEntry
OBJECT-TYPE
A row in the chassis table.
1.3.6.1.4.1.1991.1.1.1.4.1.1not-accessiblecurrent
snChasUnitIndex
OBJECT-TYPE
The index to chassis table.
1.3.6.1.4.1.1991.1.1.1.4.1.1.1Integer32read-onlycurrent
snChasUnitSerNum
OBJECT-TYPE
The serial number of the chassis for each unit. If the serial number is unknown or unavailable then the value should be a zero length string.
1.3.6.1.4.1.1991.1.1.1.4.1.1.2DisplayString (SIZE(0..128))read-onlycurrent
snChasUnitNumSlots
OBJECT-TYPE
Number of slots of the chassis for each unit.
1.3.6.1.4.1.1991.1.1.1.4.1.1.3Integer32read-onlycurrent
snChasUnitActualTemperature
OBJECT-TYPE
Temperature of the chassis. Each unit is 0.5 degrees Celcius. Only management module built with temperature sensor hardware is applicable. For those non-applicable management module, it returns no-such-name.
1.3.6.1.4.1.1991.1.1.1.4.1.1.4INTEGER (-110..250)read-onlycurrent
snChasUnitWarningTemperature
OBJECT-TYPE
Actual temperature higher than this threshold value will trigger the switch to send a temperature warning trap. Each unit is 0.5 degrees Celcius. Only management module built with temperature sensor hardware is applicable. For those non-applicable management module, it returns no-such-name.
1.3.6.1.4.1.1991.1.1.1.4.1.1.5INTEGER (0..250)read-onlycurrent
snChasUnitShutdownTemperature
OBJECT-TYPE
Actual temperature higher than this threshold value will shutdown a partial of the switch hardware to cool down the system. Each unit is 0.5 degrees Celcius. Only management module built with temperature sensor hardware is applicable. For those non-applicable management module, it returns no-such-name.
1.3.6.1.4.1.1991.1.1.1.4.1.1.6INTEGER (0..250)read-onlycurrent
snChasUnitPartNum
OBJECT-TYPE
The part number of the chassis for each unit. If the part number is unknown or unavailable then the value should be a zero length string.
1.3.6.1.4.1.1991.1.1.1.4.1.1.7DisplayStringread-onlycurrent
snAgentGbl
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.1
snAgReload
OBJECT-TYPE
Action object to reboot the agent. The following values can only be read: other(1).....agent in unknown or other state running(2)...agent running busy(4).......reload not allowed at this time, flash is busy The following value can be written: reset(3).....do a hard reset The agent will return a response before the action occurs.
1.3.6.1.4.1.1991.1.1.2.1.1INTEGER {other(1), running(2), reset(3), busy(4)}read-writecurrent
snAgEraseNVRAM
OBJECT-TYPE
Action object to erase NVRAM of the agent. The following values can only be read: normal(1) error(2)... operation failed or bad flash erasing(4)...agent is erasing NVRAM flash busy(5).......operation not allowed at this time, flash is busy The following value can be written: erase(3).....do erase The agent will return a response even before the erase is done. And the read value will be erasing until erase is done. And the erase request will be rejected until error or normal.
1.3.6.1.4.1.1991.1.1.2.1.2INTEGER {normal(1), error(2), erase(3), erasing(4), busy(5)}read-writecurrent
snAgWriteNVRAM
OBJECT-TYPE
Action object to save all configuration info to NVRAM of the agent. The following values can only be read: normal(1) error(2)... operation failed or bad flash writing(4)...agent is writing NVRAM flash busy(5).......operation not allowed at this time, flash is busy The following value can be written: write(3).....do write The agent will return a response even before the write is done. And the read value will be writing until write is done. And the write request will be rejected until error or normal.
1.3.6.1.4.1.1991.1.1.2.1.3INTEGER {normal(1), error(2), write(3), writing(4), busy(5)}read-writecurrent
snAgConfigFromNVRAM
OBJECT-TYPE
This object is no more supported by FastIron and NetIron agents and should not be used. Action object to config the switch from NVRAM of the agent. The following values can only be read: normal(1) error(2)... operation failed or bad flash configing(4)...configing from NVRAM flash is in process. busy(5).......operation not allowed at this time, flash is busy The following value can be written: config(3).....do config The agent will return a response after config is done.
1.3.6.1.4.1.1991.1.1.2.1.4INTEGER {normal(1), error(2), config(3), configing(4), busy(5)}read-writecurrent
snAgTftpServerIp
OBJECT-TYPE
The tftp server address, this will be used for both download/upload image file and config file.
1.3.6.1.4.1.1991.1.1.2.1.5IpAddressread-writedeprecated
snAgImgFname
OBJECT-TYPE
Name of the image file including path currently associated with the system. When the object is not used, the value is a zero length string.
1.3.6.1.4.1.1991.1.1.2.1.6DisplayString (SIZE(0..32))read-writecurrent
snAgImgLoad
OBJECT-TYPE
Action object to down/up load a new image to the agent. The following values: Error values: from normal(1) to operationError(17) and tftpWrongFileType(23). loading(18) .. operation is in process. The following values are used for set : uploadMPPrimary(19)..upload the Primary image from MP flash to tftp server. downloadMPPrimary(20)..download the Primary image from tftp server to MP flash. uploadMPSecondary(21)..upload the Secondary image from MP flash to tftp server. downloadMPSecondary(22)..download the Secondary image from tftp server to MP flash. downloadSPPrimary(24)..download the Primary image from tftp server to SP flash. downloadSPSecondary(25)..download the Secondary image from tftp server to SP flash. uploadMPBootROM(26)..upload the Boot from flash image from MP flash to tftp server. downloadMPBootROM(27)..download the Boot from flash image from tftp server to MP flash. uploadMPBootTFTP(28)..upload the Boot from TFTP image from MP flash to tftp server. downloadMPBootTFTP(29)..download the Boot from TFTP image from tftp server to MP flash. uploadMPMonitor(30)..upload the Monitor image from MP flash to tftp server. downloadMPMonitor(31)..download the Monitor image from tftp server to MP flash. downloadSPBootROM(32)..download the Boot image from tftp server to SP flash. MP is the management processor, SP is the switch processor. The image filename is defined in snAgImgFname. The tftp server address is defined in snAgTftpServerIp. Atomic set of snAgImgLoad, snAgImgFname and snAgTftpServerIp is required to allow down/up load to happen. And the write request will be rejected during loading until error or normal.
1.3.6.1.4.1.1991.1.1.2.1.7INTEGER {normal(1), flashPrepareReadFailure(2), flashReadError(3), flashPrepareWriteFailure(4), flashWriteError(5), tftpTimeoutError(6), tftpOutOfBufferSpace(7), tftpBusy(8), tftpRemoteOtherErrors(9), tftpRemoteNoFile(10), tftpRemoteBadAccess(11), tftpRemoteDiskFull(12), tftpRemoteBadOperation(13), tftpRemoteBadId(14), tftpRemoteFileExists(15), tftpRemoteNoUser(16), operationError(17), loading(18), uploadMPPrimary(19), downloadMPPrimary(20), uploadMPSecondary(21), downloadMPSecondary(22), tftpWrongFileType(23), downloadSPPrimary(24), downloadSPSecondary(25), uploadMPBootROM(26), downloadMPBootROM(27), uploadMPBootTFTP(28), downloadMPBootTFTP(29), uploadMPMonitor(30), downloadMPMonitor(31), downloadSPBootROM(32)}read-writecurrent
snAgCfgFname
OBJECT-TYPE
Name of the config file(s) including path currently associated with the system. Some agents in special situations may support a value which contains multiple file names instead of a single file name. Multiple names are specified as a list of file names separated by semicolons (;). When the object is not used, the value is a zero length string.
1.3.6.1.4.1.1991.1.1.2.1.8DisplayString (SIZE(0..32))read-writecurrent
snAgCfgLoad
OBJECT-TYPE
Action object to down/up load a config image to the agent. The following values can be read : Error values: from normal(1) to operationError(17) and tftpWrongFileType(29). loading(18) .. operation is in process. The following value can be used to set: uploadFromFlashToServer(20)..upload the config from flash to tftp server. downloadToFlashFromServer(21)..download the config to flash from tftp server. uploadFromDramToServer(22)..upload the config from DRAM to tftp server. downloadToDramFromServer(23)..download the config to DRAM from tftp server. downloadToDramFromServerOverwrite(30)..download the config to DRAM from tftp server, clear the running-config, and overwrite with the new config. The following value can be used to set: uploadFromFlashToNMS(24)..upload the config from flash to NMS. downloadToFlashFromNMS(25)..download the config to flash from NMS. uploadFromDramToNMS(26)..upload the config from DRAM to NMS. downloadToDramFromNMS(27)..download the config to DRAM from NMS. The config filename is defined in snAgCfgFname. The tftp server address is defined in snAgTftpServerIp. Atomic set of snAgCfgLoad, snAgCfgFname and snAgTftpServerIp is required to allow down/up load to happen. And the write request will be rejected during loading until error or normal. For those NMS commands from (24) to (27), The snAgCfgEosTable MIB must be sent along in one PDU. A seperate write memory cli or set snAgWriteNVRAM is required to save the config to NVRAM.
1.3.6.1.4.1.1991.1.1.2.1.9INTEGER {normal(1), flashPrepareReadFailure(2), flashReadError(3), flashPrepareWriteFailure(4), flashWriteError(5), tftpTimeoutError(6), tftpOutOfBufferSpace(7), tftpBusy(8), tftpRemoteOtherErrors(9), tftpRemoteNoFile(10), tftpRemoteBadAccess(11), tftpRemoteDiskFull(12), tftpRemoteBadOperation(13), tftpRemoteBadId(14), tftpRemoteFileExists(15), tftpRemoteNoUser(16), operationError(17), loading(18), uploadFromFlashToServer(20), downloadToFlashFromServer(21), uploadFromDramToServer(22), downloadToDramFromServer(23), uploadFromFlashToNMS(24), downloadToFlashFromNMS(25), uploadFromDramToNMS(26), downloadToDramFromNMS(27), operationDoneWithNMS(28), tftpWrongFileType(29), downloadToDramFromServerOverwrite(30)}read-writecurrent
snAgDefGwayIp
OBJECT-TYPE
The default gateway (router) address.
1.3.6.1.4.1.1991.1.1.2.1.10IpAddressread-writecurrent
snAgImgVer
OBJECT-TYPE
The version of the running software in the form 'major.minor.maintenance[letters]'.
1.3.6.1.4.1.1991.1.1.2.1.11DisplayString (SIZE(0..32))read-onlycurrent
snAgFlashImgVer
OBJECT-TYPE
The version of the software image saved in local storage such as flash memory in the form 'major.minor.maintenance[letters]'. If not known or not available, then the value is a zero length string.
1.3.6.1.4.1.1991.1.1.2.1.12DisplayString (SIZE(0..32))read-onlycurrent
snAgGblIfIpAddr
OBJECT-TYPE
The interface ip address.
1.3.6.1.4.1.1991.1.1.2.1.13IpAddressread-writecurrent
snAgGblIfIpMask
OBJECT-TYPE
The interface ip address mask.
1.3.6.1.4.1.1991.1.1.2.1.14IpAddressread-writecurrent
snAgGblPassword
OBJECT-TYPE
System Security Access Password and this is only allowed to use for setting but not for reading. An SNMP-Get will get an null string. By default, this object needs to be in the same PDU while doing Set operation some critical SNMP objects. If command 'no snmp-server pw-check' is configured on the device, then this object is not needed in the PDU. The value of this object depends on the authentication method configured for SNMP. If there's no AAA authentication configuration for SNMP, this object will have the enable superuser password. If the AAA authentication for SNMP is configured and has leading method as enable or line, this object will have the corresponding enable or line password. If the switch has AAA authentication for SNMP operation, and the method specified is one of local, TACACS+, or RADIUS, this object will have format '<username> <password>' (note one space character in between). The max size allows concatenation of max 48 octets of username and 48 octets of password, with one blank character
1.3.6.1.4.1.1991.1.1.2.1.15DisplayString (SIZE(0..97))read-writecurrent
snAgTrpRcvrCurEntry
OBJECT-TYPE
The current total entries of the Trap Receiver Table are created.
1.3.6.1.4.1.1991.1.1.2.1.16INTEGER (0..255)read-onlycurrent
snAgGblDataRetrieveMode
OBJECT-TYPE
By default, this mode is set to nextbootCfg(0). The VLAN Table and Port-STP Table data will be retrieved according to this mode. nextbootCfg(0).........the nextboot configuration data are retrieved operationalData(1)..........the current running data are retrieved
1.3.6.1.4.1.1991.1.1.2.1.19INTEGER {nextbootCfg(0), operationalData(1)}read-writecurrent
snAgSystemLog
OBJECT-TYPE
The system log object to indicate whether any Network Management Station(NMS) has login. The first byte of the octet string is the value decribed below and followed by 4 bytes of secret code. login(1)..... a value for a NMS to login. heartbeat(2)... a value for the login NMS periodically to checkin; Otherwise, the Agent will automatically set this object to logout(3) after a timeout period. logout(3).... a value for a NMS to logout. changePassword(4).... a value for the login NMS to change password, only if snAgGblPasswordChangeMode was configured to 'anyMgmtEntity'. changeReadOnlyCommunity(5).... a value for the login NMS to change the read-only community string, only if snAgGblPasswordChangeMode was configured to 'anyMgmtEntity'. changeReadWriteCommunity(6).... a value for the login NMS to change the read-write community string, only if snAgGblPasswordChangeMode was configured to 'anyMgmtEntity'.
1.3.6.1.4.1.1991.1.1.2.1.20OCTET STRING (SIZE(5))read-writecurrent
snAgGblEnableColdStartTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate cold start traps.
1.3.6.1.4.1.1991.1.1.2.1.21INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblEnableLinkUpTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate link up traps.
1.3.6.1.4.1.1991.1.1.2.1.22INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblEnableLinkDownTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate link down traps.
1.3.6.1.4.1.1991.1.1.2.1.23INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblPasswordChangeMode
OBJECT-TYPE
Specify which management entity is allowed to change the password. 'anyMgmtEntity' management entities are SNMP management station, console command line interface, and telnet command line interface. For security reason, this object can only be modified by console command line interface or telnet command line interface. The default value is 'consoleAndTelnet', of which both console and telnet command line interfaces are allowed to change the password.
1.3.6.1.4.1.1991.1.1.2.1.24INTEGER {anyMgmtEntity(1), consoleAndTelnet(2), consoleOnly(3), telnetOnly(4)}read-onlycurrent
snAgGblReadOnlyCommunity
OBJECT-TYPE
SNMP read community string and this is only allowed to use for setting but not for reading. An SNMP-Get will get an zero length string. Set operation on this object is allowed only if command 'password-change any' is configured on the target device.
1.3.6.1.4.1.1991.1.1.2.1.25DisplayString (SIZE(0..32))read-writecurrent
snAgGblReadWriteCommunity
OBJECT-TYPE
SNMP read-write community string and this is only allowed to use for setting but not for reading. An SNMP-Get will get an zero length string. Set operation on this object is allowed only if command 'password-change any' is configured on the target device.
1.3.6.1.4.1.1991.1.1.2.1.26DisplayString (SIZE(0..32))read-writecurrent
snAgGblCurrentSecurityLevel
OBJECT-TYPE
This represnts the current log-in security level. Each level of security requires a password to permit user for different system configurations.
1.3.6.1.4.1.1991.1.1.2.1.27INTEGER (0..5)read-onlycurrent
snAgGblSecurityLevelSet
OBJECT-TYPE
This shows which the security level password to be set.
1.3.6.1.4.1.1991.1.1.2.1.28INTEGER (0..5)read-writecurrent
snAgGblLevelPasswordsMask
OBJECT-TYPE
This shows the bitmap of level passwords which successfully assigned to the system.
1.3.6.1.4.1.1991.1.1.2.1.29Integer32read-onlycurrent
snAgGblQueueOverflow
OBJECT-TYPE
false - The device queues are not overflow. true - The device queues are overflow.
1.3.6.1.4.1.1991.1.1.2.1.30INTEGER {false(0), true(1)}read-onlycurrent
snAgGblBufferShortage
OBJECT-TYPE
false - The device buffers are adequate. true - The device buffers are in shortage.
1.3.6.1.4.1.1991.1.1.2.1.31INTEGER {false(0), true(1)}read-onlycurrent
snAgGblDmaFailure
OBJECT-TYPE
false - The device DMAs are in good condition. true - One of the DMAs in the device fails.
1.3.6.1.4.1.1991.1.1.2.1.32INTEGER {false(0), true(1)}read-onlycurrent
snAgGblResourceLowWarning
OBJECT-TYPE
false - No, the device does not have resource-low-warning. true - Yes, the device does have resource-low-warning.
1.3.6.1.4.1.1991.1.1.2.1.33INTEGER {false(0), true(1)}read-onlycurrent
snAgGblExcessiveErrorWarning
OBJECT-TYPE
false - No, the device does not have any excessive collision, FCS errors, alignment warning etc. true - Yes, the device does have.
1.3.6.1.4.1.1991.1.1.2.1.34INTEGER {false(0), true(1)}read-onlycurrent
snAgGblCpuUtilData
OBJECT-TYPE
The statistics collection of utilization of the CPU in the device. In NetIron and FastIron platforms, reading this object resets all the counters. Therefore, a user need not set snAgGblUtilCollect.
1.3.6.1.4.1.1991.1.1.2.1.35Gauge32read-onlycurrent
snAgGblCpuUtilCollect
OBJECT-TYPE
enable(1) - The beginning of statistics collection of utilization of the CPU in the device. disable(0) - The end of statistics collection of utilization of the CPU in the device. This object is deprecated. User need not set this object. User can read snAgGblCpuUtilData to reset all the counters.
1.3.6.1.4.1.1991.1.1.2.1.36INTEGER {disabled(0), enabled(1)}read-writedeprecated
snAgGblTelnetTimeout
OBJECT-TYPE
Telnet session idling timeout value. Each value unit is one minute. FastIron and NetIron platforms support value upto 240 minutes. On these platforms, value 0 means telnet sessions do not timeout.
1.3.6.1.4.1.1991.1.1.2.1.37Integer32read-writecurrent
snAgGblEnableWebMgmt
OBJECT-TYPE
Enable/disable web management.
1.3.6.1.4.1.1991.1.1.2.1.38INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblSecurityLevelBinding
OBJECT-TYPE
This represnts the binding of a given password to which security level. A value of 255 indicates an invalid binding.
1.3.6.1.4.1.1991.1.1.2.1.39Integer32read-onlycurrent
snAgGblEnableSLB
OBJECT-TYPE
Enable/disable Server Load Balancing.
1.3.6.1.4.1.1991.1.1.2.1.40INTEGER {disabled(0), enabled(1)}read-onlycurrent
snAgSoftwareFeature
OBJECT-TYPE
A bit string representing the software feature of the running switch/router image. These features were conditional compiled to different product images. For each bit, exist feature has a value of 1, but non-exist feature has a value of 0. octet 0, bit 0 - RMON octet 0, bit 1 - ipx switching octet 0, bit 2 - server load balancing octet 0, bit 3 - layer 3 filter in switch octet 0, bit 4 - ipx routing octet 0, bit 5 - appletalk routing octet 0, bit 6 - ip multicast routing octet 0, bit 7 - local access control octet 1, bit 0 - BGP routing octet 1, bit 1 - loopback interface octet 1, bit 2 - BigIron multi-management module octet 1, bit 3 - BigIron SYSIF II octet 1, bit 4 - BigIron POS support octet 1, bit 5 - appletalk cable vlan octet 1, bit 6 - 64 subnet octet 1, bit 7 - multi-slot trunk octet 2, bit 0 - TACACS octet 2, bit 1 - Gigabit Ethernet port auto-negotiation mode octet 2, bit 2 - FSRP octet 2, bit 3 - Exodus requested OSPF enhancement octet 2, bit 4 - OSPF NSSA octet 2, bit 5 - POS octet 2, bit 6 - QOS octet 2, bit 7 - Single Span octet 3, bit 0 - Fast Span octet 3, bit 1 - Base L3 octet 3, bit 2 - static log buffer octet 3, bit 3 - L2 POS octet 3, bit 4 - BI15K octet 3, bit 5 - L2 ATM octet 3, bit 6 - ATM octet 3, bit 7 - NETFLOW octet 4, bit 0 - SFLOW octet 4, bit 1 - GVRP octet 4, bit 2 - GARP octet 4, bit 3 - dynamic trunk octet 4, bit 4 - IGC 8G octet 4, bit 5 - rate limit octet 4, bit 6 - IPC rate limit octet 4, bit 7 - MPLS octet 5, bit 0 - ISIS octet 5, bit 1 - link aggregation octet 5, bit 2 - port dual mode octet 5, bit 3 - private vlan octet 5, bit 4 - MBGP octet 5, bit 5 - ipv6 protocol vlan octet 5, bit 6 - X10G octet 5, bit 7 - fastiron edge switch/router (gridiron) octet 6, bit 0 - FDP octet 6, bit 1 - port tag type octet 6, bit 2 - wireless capable octet 6, bit 3 - snSwPortVlanId object has changed from read-only to read-write octet 6, bit 4 - LLDP Bit 0 is the least significant bit of an octet, and bit 7 is the most significant bit of an octet.
1.3.6.1.4.1.1991.1.1.2.1.41OCTET STRINGread-onlycurrent
snAgGblEnableModuleInsertedTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate hardware module inserted to chassis traps.
1.3.6.1.4.1.1991.1.1.2.1.42INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblEnableModuleRemovedTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate hardware module removed from chassis traps.
1.3.6.1.4.1.1991.1.1.2.1.43INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblTrapMessage
OBJECT-TYPE
A generic trap message string.
1.3.6.1.4.1.1991.1.1.2.1.44DisplayStringread-onlycurrent
snAgGblEnableTelnetServer
OBJECT-TYPE
Enable or disable telnet server in device.
1.3.6.1.4.1.1991.1.1.2.1.45INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgGblTelnetPassword
OBJECT-TYPE
Telnet Access Password and this is only useful for write operation. A read operation get a null string. Set operation on this object is allowed only if command 'password-change any' is configured on the target device. Another configuration affecting this is 'no snmp-server pw-check'. If its configured on the device, there's no need to pass another varbind snAgGblPassword. By default, 'snmp-server pw-check' is true, and thus needs to have snAgGblPassword along with this object. in the same Set PDU.
1.3.6.1.4.1.1991.1.1.2.1.46DisplayString (SIZE(0..48))read-writecurrent
snAgBuildDate
OBJECT-TYPE
The date of the built software.
1.3.6.1.4.1.1991.1.1.2.1.47DisplayString (SIZE(0..32))read-onlycurrent
snAgBuildtime
OBJECT-TYPE
The time of the built software.
1.3.6.1.4.1.1991.1.1.2.1.48DisplayString (SIZE(0..32))read-onlycurrent
snAgBuildVer
OBJECT-TYPE
The image label of the built software
1.3.6.1.4.1.1991.1.1.2.1.49DisplayString (SIZE(0..32))read-onlycurrent
snAgGblCpuUtil1SecAvg
OBJECT-TYPE
The statistics collection of 1 second CPU utilization.
1.3.6.1.4.1.1991.1.1.2.1.50Gauge32read-onlycurrent
snAgGblCpuUtil5SecAvg
OBJECT-TYPE
The statistics collection of 5 second CPU utilization.
1.3.6.1.4.1.1991.1.1.2.1.51Gauge32read-onlycurrent
snAgGblCpuUtil1MinAvg
OBJECT-TYPE
The statistics collection of 1 minute CPU utilization.
1.3.6.1.4.1.1991.1.1.2.1.52Gauge32read-onlycurrent
snAgGblDynMemUtil
OBJECT-TYPE
The system dynamic memory utilization, in unit of percentage. Deprecated: Refer to snAgSystemDRAMUtil. For NI platforms, refer to snAgentBrdMemoryUtil100thPercent
1.3.6.1.4.1.1991.1.1.2.1.53Gauge32read-onlydeprecated
snAgGblDynMemTotal
OBJECT-TYPE
The total amount of system dynamic memory, in number of bytes. Deprecated: Refer to snAgSystemDRAMTotal. For NI platforms, refer to snAgentBrdMemoryTotal
1.3.6.1.4.1.1991.1.1.2.1.54Integer32read-onlydeprecated
snAgGblDynMemFree
OBJECT-TYPE
The free amount of system dynamic memory, in number of bytes. Deprecated: Refer to snAgSystemDRAMFree. For NI platforms, refer to snAgentBrdMemoryAvailable
1.3.6.1.4.1.1991.1.1.2.1.55Gauge32read-onlydeprecated
snAgImgLoadSPModuleType
OBJECT-TYPE
The switch processor module type of which that receives the downloaded image.
1.3.6.1.4.1.1991.1.1.2.1.56INTEGER {other(1), vm1(2), pos12(3), pos48(4), atm(5), gignpa(6), lp(7)}read-writecurrent
snAgImgLoadSPModuleNumber
OBJECT-TYPE
The slot numner of a switch processor module that receives the downloaded image. Setting value 0 applies to all SP modules.
1.3.6.1.4.1.1991.1.1.2.1.57Integer32read-writecurrent
snAgTrapHoldTime
OBJECT-TYPE
The time in seconds for which traps will be witheld during system initialization.
1.3.6.1.4.1.1991.1.1.2.1.58INTEGER (1..600)read-writecurrent
snAgSFlowSourceInterface
OBJECT-TYPE
Use the ifIndex value here to specify the source interface to be used for sFlow packets. The interface should have IP address configured on it. Value of 0 indicates that source interface has not been configured for sFlow. Port 65534 is used to specify a null port.
1.3.6.1.4.1.1991.1.1.2.1.59InterfaceIndexread-writecurrent
snAgGblTelnetLoginTimeout
OBJECT-TYPE
Telnet session login timeout value in minutes. FastIron and NetIron platforms support value upto 10 minutes, and default of 1 minute.
1.3.6.1.4.1.1991.1.1.2.1.60Integer32read-writecurrent
snAgGblBannerExec
OBJECT-TYPE
EXEC process creation banner. Insert newlines using '\n' within the string.
1.3.6.1.4.1.1991.1.1.2.1.61DisplayStringread-writecurrent
snAgGblBannerIncoming
OBJECT-TYPE
Incoming terminal line banner. Insert newlines using '\n' within the string.
1.3.6.1.4.1.1991.1.1.2.1.62DisplayStringread-writecurrent
snAgGblBannerMotd
OBJECT-TYPE
Message-of-the-day banner. Insert newlines using '\n' within the string.
1.3.6.1.4.1.1991.1.1.2.1.63DisplayStringread-writecurrent
snAgWebMgmtServerTcpPort
OBJECT-TYPE
The TCP port number of web management interface.
1.3.6.1.4.1.1991.1.1.2.1.64INTEGER (1..65535)read-writecurrent
snAgTftpServerAddrType
OBJECT-TYPE
TFTP server IP address Type. Supported address types are ipv4(1) and ipv6(2)
1.3.6.1.4.1.1991.1.1.2.1.65InetAddressTyperead-writecurrent
snAgTftpServerAddr
OBJECT-TYPE
TFTP server IP address.
1.3.6.1.4.1.1991.1.1.2.1.66InetAddressread-writecurrent
snAgGblDeleteFirstBeforeDownload
OBJECT-TYPE
When set to true deletes the existing target file on the Management module flash. This object can be set to true only when the snAgImgLoad is set to downloadMPPrimary(20), downloadMPSecondary(22), downloadSPPrimary(24), downloadSPSecondary(25) or downloadMPMonitor(31) in the same SNMP set request PDU. This object is reset to false after successful or unsuccessful download of specified file to flash. Reading this object returns false(2).
1.3.6.1.4.1.1991.1.1.2.1.67TruthValueread-writecurrent
snAgentBrd
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.2
snAgentBrdTable
OBJECT-TYPE
A table of each physical board information.
1.3.6.1.4.1.1991.1.1.2.2.1not-accessiblecurrent
snAgentBrdEntry
OBJECT-TYPE
A row in the Agent Board table.
1.3.6.1.4.1.1991.1.1.2.2.1.1not-accessiblecurrent
snAgentBrdIndex
OBJECT-TYPE
The index to the Agent Interface Table.
1.3.6.1.4.1.1991.1.1.2.2.1.1.1Integer32read-onlycurrent
snAgentBrdMainBrdDescription
OBJECT-TYPE
The main board description string.
1.3.6.1.4.1.1991.1.1.2.2.1.1.2DisplayString (SIZE(0..128))read-onlycurrent
snAgentBrdMainBrdId
OBJECT-TYPE
The main board identifier, which can uniquely identify a board type. It is an encoded octet string with the following meaning: octet 0 - octet string format version, which identifies the format of this string. If format version octet has the value 2, the octets after the version octet have the following meaning: octet 1 - product type: BI_WG 0x57 BI_BB 0x42 BI_NI 0x4E BI_NI2 0x32 NI_M4 0x4D BI_SLB 0x53 octet 2 - module type: MASTER_FIBER_8G 0x0 MASTER_FIBER_4G 0x1 MASTER_COPPER_16 0x2 SLAVE_FIBER_4G 0x3 FI_MASTER_FIBER_2G 0x4 FI_MASTER_FIBER_4G 0x5 MASTER_COPPER_8G 0x6 FI_MASTER_FIBER_8G 0x7 SLAVE_FIBER_8G 0x8 MASTER_COPPER_12_2 0x9 SLAVE_COPPER_24 0xA FI_SLAVE_COPPER_24 0xB SLAVE_100FX_8 0xD SLAVE_100FX_16 0xC SLAVE_COPPER_8G 0xE SLAVE_COPPER_16_2 0xF STACK_FIBER_8G 0x10 STACK_COPPER_8G 0x11 MASTER_FIBER_2G 0x12 SLAVE_100FX_24 0x13 MASTER_FIBER_0G 0x14 POS_622M 0x15 POS_155M 0x16 SLAVE_FIBER_2G 0x17 SLAVE_COPPER_2G 0x18 FI_SLAVE_FIBER_2G 0x19 FI_SLAVE_FIBER_4G 0x1A FI_SLAVE_FIBER_8G 0x1B FI_SLAVE_COPPER_8G 0x1C FI_MASTER_COPPER_8G 0x1D POS_155M2P 0x1E FI_MASTER_COPPER_4G 0x1F FI_MASTER_COPPER_2G 0x20 MASTER_COPPER_4G 0x21 MASTER_COPPER_2G 0x22 MASTER_M4_8G 0x23 MASTER_M4_4G 0x24 MASTER_M4_2G 0x25 MASTER_M4_0G 0x26 MASTER_M5_0G 0x27 POS_2488M 0x28 SLAVE_M5_0G 0x29 POS_N2488M 0x2A STACK_IPC_48_2 0x2B SLAVE_NPA_FIBER_4G 0x2C ATM_2PORT 0x2D ATM_4PORT 0x2E SLAVE_FIBER_10G 0x2F STACK_FES_48_2 0x30 STACK_FES_24_2 0x31 STACK_FES_96_4 0x32 STACK_FES_12G 0x33 STACK_FESX_24G 0x34 STACK_FESX_24_2_G 0x35 STACK_FESX_24_1_G 0x36 STACK_FESX_48G 0x37 STACK_FESX_48_2_G 0x38 STACK_FESX_48_1_G 0x39 SUPERX_FI_MGMT 0x40 SUPERX_FI_2P10G 0x41 SUPERX_FI_24GC 0x42 SUPERX_FI_24GF 0x43 SUPERX_FI_2P10G_WAN 0x44 SUPERX_FI_MGMT_II 0x4a SLAVE_JC_48E 0xC3 SLAVE_JC_48T 0xC4 MASTER_JC_M4_8G 0xC5 SLAVE_JC_8G 0xC6 SLAVE_JC_B16GF 0xC8 MASTER_JC_B2404 0xC9 SLAVE_JC_B16GC 0xCA SLAVE_JC_B24FX 0xCE octet 3 - processor type, PVR_M603=3, PVR_M604=4, PVR_M603E=6, PVR_M603EV=7, PVR_M750=8, PVR_M604E=9, PVR_M8245=81 octet 4 to octet 5 - processor speed in MHz octet 6 - MAC type: MAC_NONE=0 MAC_SEEQ_10_100=1, MAC_DEC_10_100=2, MAC_3COM_10_100=3, MAC_X10GMAC_10000=4, MAC_SEEQ_1000=5, MAC_GMAC_1000=6, MAC_VLSI_1000=7 octet 7 - PHY type, PHY_NONE=0, PHY_QSI=1, PHY_BROADCOM=2, PHY_ICS=3, PHY_NATIONAL=4, PHY_LEVEL1=6, PHY_BROADCOM_10_100=7, PHY_LEVEL24=8, PHY_BROADCOM_10000=9 (for 10G), PHY_3COM_10_100=9 (for others) octet 8 - port type, COPPER=0, FIBER=1 octet 9 - fiber port type, NONFIBER=0, SX_FIBER=1, LX_FIBER=2, LHX_FIBER=3, LX_SX_FIBER=4, LHB_FIBER=5 octet 10 to octet 13 - DRAM size in KBytes octet 14 to octet 17 - boot flash size in KBytes octet 18 to octet 21 - code flash size in KBytes octet 22 to octet 27 - serial number. octet 28 - chassis backplane type. chassis4000 = 0x00 chassis8000 = 0x02 chassis15000 = 0x01 chassisFISX = 0x04 Turbo8 = 0x07 (stack2) FastIron2 = 0x06 (stack1)
1.3.6.1.4.1.1991.1.1.2.2.1.1.3OCTET STRINGread-onlycurrent
snAgentBrdMainPortTotal
OBJECT-TYPE
The total number of ports for the main board.
1.3.6.1.4.1.1991.1.1.2.2.1.1.4Integer32read-onlycurrent
snAgentBrdExpBrdDescription
OBJECT-TYPE
The expansion board description string. Expansion board are those boards attaching on the main board.
1.3.6.1.4.1.1991.1.1.2.2.1.1.5DisplayString (SIZE(0..128))read-onlycurrent
snAgentBrdExpBrdId
OBJECT-TYPE
The expansion board identifier. Expansion board are those boards attaching on the main board. It is an encoded octet string with the following meaning: octet 0 - octet string format version, which identifies the format of this string. If format version octet has the value 1, the octets after the version octet have the following meaning: octet 1 - expansion board type, HUNDRED_MEG_1PORT=1, HUNDRED_MEG_2PORT=2, HUNDRED_MEG_1PORT_COPPER=3, HUNDRED_MEG_2PORT_COPPER=4, HUNDRED_MEG_2PORT_LX=5, GIGA_1PORT=8, GIGA_2PORT=9 octet 2 - fiber port type, NONFIBER=0, SX_FIBER=1, LX_FIBER=2, LHX_FIBER=3, LX_SX_FIBER=4, LHB_FIBER=5
1.3.6.1.4.1.1991.1.1.2.2.1.1.6OCTET STRINGread-onlycurrent
snAgentBrdExpPortTotal
OBJECT-TYPE
The total number of ports for the expansion board.
1.3.6.1.4.1.1991.1.1.2.2.1.1.7INTEGER (0..24)read-onlycurrent
snAgentBrdStatusLeds
OBJECT-TYPE
A bit array that contains the value of the front panel status LEDs. This is a bit-map; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 32 that means 32 Ports Status LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (Link off) 1 on (Link on) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdStatusLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.8Integer32read-onlydeprecated
snAgentBrdTrafficLeds
OBJECT-TYPE
A bit array that contains the value of the front panel traffic LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Traffic LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no traffic) 1 on (traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdTrafficLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.9Integer32read-onlydeprecated
snAgentBrdMediaLeds
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Media LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 half duplex 1 full duplex The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdMediaLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.10Integer32read-onlydeprecated
snAgentBrdSpeedLeds
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Speed LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 10 MBit 1 100 MBit The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdSpeedLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.11Integer32read-onlydeprecated
snAgentBrdModuleStatus
OBJECT-TYPE
By default, this mode is set to notActivated(0). moduleEmpty(0) ......... The slot of the chassis is empty. moduleGoingDown(2) ..... The module is going down. moduleRejected(3) ...... The module is being rejected due to wrong configuration. moduleBad(4) ........... The module Hardware is bad. moduleConfigured(8) ...... The module is configured (stacking) moduleComingUp(9) ...... The module is in power-up cycle. moduleRunning(10) ....... The module is running. moduleBlocked(11) ....... The module is blocked, for full height card.
1.3.6.1.4.1.1991.1.1.2.2.1.1.12INTEGER {moduleEmpty(0), moduleGoingDown(2), moduleRejected(3), moduleBad(4), moduleConfigured(8), moduleComingUp(9), moduleRunning(10), moduleBlocked(11)}read-onlycurrent
snAgentBrdRedundantStatus
OBJECT-TYPE
The redundant status of a module. Non-management module always returns other(1). Management module returns the rest of the states.
1.3.6.1.4.1.1991.1.1.2.2.1.1.13INTEGER {other(1), active(2), standby(3), crashed(4), comingUp(5)}read-onlycurrent
snAgentBrdAlarmLeds
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs (for POS Module Only). This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Speed LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 no alarm 1 alarm The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdAlarmLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.14Integer32read-onlydeprecated
snAgentBrdTxTrafficLeds
OBJECT-TYPE
A bit array that contains the value of the front panel transmit traffic LEDs (for POS Module Only). This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Transmit Traffic LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no transmit traffic) 1 on (transmit traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdTxTrafficLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.15Integer32read-onlydeprecated
snAgentBrdRxTrafficLeds
OBJECT-TYPE
A bit array that contains the value of the front panel receive traffic LEDs (for POS Module Only). This is a packed bit string; each LED is encoded into 1 bit for each switch port. The maximum number of ports in one chassis is 24 that means 24 Ports Receive Traffic LEDs. The expansion port number always begins from the last main port number. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no receive traffic) 1 on (receive traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 (It was obsoleted after release 07100, replaced by snAgentBrdRxTrafficLedString)
1.3.6.1.4.1.1991.1.1.2.2.1.1.16Integer32read-onlydeprecated
snAgentBrdStatusLedString
OBJECT-TYPE
A bit array that contains the value of the front panel status LEDs. This is a bit-map; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (Link off) 1 on (Link on) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 --------
1.3.6.1.4.1.1991.1.1.2.2.1.1.17OCTET STRINGread-onlycurrent
snAgentBrdTrafficLedString
OBJECT-TYPE
A bit array that contains the value of the front panel traffic LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no traffic) 1 on (traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 --------
1.3.6.1.4.1.1991.1.1.2.2.1.1.18OCTET STRINGread-onlycurrent
snAgentBrdMediaLedString
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 half duplex 1 full duplex The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 ---------
1.3.6.1.4.1.1991.1.1.2.2.1.1.19OCTET STRINGread-onlycurrent
snAgentBrdSpeedLedString
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs. This is a packed bit string; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 10 MBit 1 100 MBit The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 ---------
1.3.6.1.4.1.1991.1.1.2.2.1.1.20OCTET STRINGread-onlycurrent
snAgentBrdAlarmLedString
OBJECT-TYPE
A bit array that contains the value of the front panel media LEDs (for POS Module Only). This is a packed bit string; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning --------- ------- 0 no alarm 1 alarm The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 ---------
1.3.6.1.4.1.1991.1.1.2.2.1.1.21OCTET STRINGread-onlycurrent
snAgentBrdTxTrafficLedString
OBJECT-TYPE
A bit array that contains the value of the front panel transmit traffic LEDs (for POS Module Only). This is a packed bit string; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no transmit traffic) 1 on (transmit traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 --------
1.3.6.1.4.1.1991.1.1.2.2.1.1.22OCTET STRINGread-onlycurrent
snAgentBrdRxTrafficLedString
OBJECT-TYPE
A bit array that contains the value of the front panel receive traffic LEDs (for POS Module Only). This is a packed bit string; each LED is encoded into 1 bit for each switch port. The following shows the meaning of each bit for each switch port: bit value meaning -------- --------- 0 off (no receive traffic) 1 on (receive traffic) The bitmap of LEDs are as following: (Port1) (Port4) (Port8) Bit (Bit0) (Bit3) (Bit7) Byte 1: LED1 LED2 LED3 LED4 LED5 LED6 LED7 LED8 Byte 2: LED9 LED10 LED11 LED12 LED13 LED14 LED15 LED16 Byte 3: LED17 LED18 LED19 LED20 LED21 LED22 LED23 LED24 --------
1.3.6.1.4.1.1991.1.1.2.2.1.1.23OCTET STRINGread-onlycurrent
snAgentBrdMemoryTotal
OBJECT-TYPE
The total memory in bytes within this module.
1.3.6.1.4.1.1991.1.1.2.2.1.1.24CounterBasedGauge64read-onlycurrent
snAgentBrdMemoryAvailable
OBJECT-TYPE
The total memory in bytes available for use within this module.
1.3.6.1.4.1.1991.1.1.2.2.1.1.25CounterBasedGauge64read-onlycurrent
snAgentBrdSerialNumber
OBJECT-TYPE
The Board Serial number. Zero length string indicates that module serial number has not been programmed within EEPROM or the module does not support serial number within EEPROM.
1.3.6.1.4.1.1991.1.1.2.2.1.1.26DisplayStringread-onlycurrent
snAgentBrdPartNumber
OBJECT-TYPE
The Board Part number. Zero length string indicates that module part number has not been programmed within EEPROM or the module does not support part number within EEPROM.
1.3.6.1.4.1.1991.1.1.2.2.1.1.27DisplayStringread-onlycurrent
snAgentBrdMemoryUtil100thPercent
OBJECT-TYPE
Dynamic memory utilization within this module in units of one-hundredth of a percent.
1.3.6.1.4.1.1991.1.1.2.2.1.1.28Unsigned32 (0..10000)read-onlycurrent
snAgentBrd2Table
OBJECT-TYPE
A table of each physical board information for each unit.
1.3.6.1.4.1.1991.1.1.2.2.2not-accessiblecurrent
snAgentBrd2Entry
OBJECT-TYPE
A row in the Agent Board table.
1.3.6.1.4.1.1991.1.1.2.2.2.1not-accessiblecurrent
snAgentBrd2Unit
OBJECT-TYPE
The index to the Agent module Table.
1.3.6.1.4.1.1991.1.1.2.2.2.1.1Integer32read-onlycurrent
snAgentBrd2Slot
OBJECT-TYPE
The index to the Agent module Table.
1.3.6.1.4.1.1991.1.1.2.2.2.1.2Integer32read-onlycurrent
snAgentBrd2MainBrdDescription
OBJECT-TYPE
The main board description string.
1.3.6.1.4.1.1991.1.1.2.2.2.1.3DisplayString (SIZE(0..128))read-onlycurrent
snAgentBrd2MainBrdId
OBJECT-TYPE
The main board identifier, which can uniquely identify a board type. It is an encoded octet string with the following meaning: octet 0 - octet string format version, which identifies the format of this string. If format version octet has the value 2, the octets after the version octet have the following meaning: octet 1 - product type: BI_WG 0x57 BI_BB 0x42 BI_NI 0x4E BI_NI2 0x32 NI_M4 0x4D BI_SLB 0x53 octet 2 - module type: MASTER_FIBER_8G 0x0 MASTER_FIBER_4G 0x1 MASTER_COPPER_16 0x2 SLAVE_FIBER_4G 0x3 FI_MASTER_FIBER_2G 0x4 FI_MASTER_FIBER_4G 0x5 MASTER_COPPER_8G 0x6 FI_MASTER_FIBER_8G 0x7 SLAVE_FIBER_8G 0x8 MASTER_COPPER_12_2 0x9 SLAVE_COPPER_24 0xA FI_SLAVE_COPPER_24 0xB SLAVE_100FX_8 0xD SLAVE_100FX_16 0xC SLAVE_COPPER_8G 0xE SLAVE_COPPER_16_2 0xF STACK_FIBER_8G 0x10 STACK_COPPER_8G 0x11 MASTER_FIBER_2G 0x12 SLAVE_100FX_24 0x13 MASTER_FIBER_0G 0x14 POS_622M 0x15 POS_155M 0x16 SLAVE_FIBER_2G 0x17 SLAVE_COPPER_2G 0x18 FI_SLAVE_FIBER_2G 0x19 FI_SLAVE_FIBER_4G 0x1A FI_SLAVE_FIBER_8G 0x1B FI_SLAVE_COPPER_8G 0x1C FI_MASTER_COPPER_8G 0x1D POS_155M2P 0x1E FI_MASTER_COPPER_4G 0x1F FI_MASTER_COPPER_2G 0x20 MASTER_COPPER_4G 0x21 MASTER_COPPER_2G 0x22 MASTER_M4_8G 0x23 MASTER_M4_4G 0x24 MASTER_M4_2G 0x25 MASTER_M4_0G 0x26 MASTER_M5_0G 0x27 POS_2488M 0x28 SLAVE_M5_0G 0x29 POS_N2488M 0x2A STACK_IPC_48_2 0x2B SLAVE_NPA_FIBER_4G 0x2C ATM_2PORT 0x2D ATM_4PORT 0x2E SLAVE_FIBER_10G 0x2F STACK_FES_48_2 0x30 STACK_FES_24_2 0x31 STACK_FES_96_4 0x32 STACK_FES_12G 0x33 STACK_FESX_24G 0x34 STACK_FESX_24_2_G 0x35 STACK_FESX_24_1_G 0x36 STACK_FESX_48G 0x37 STACK_FESX_48_2_G 0x38 STACK_FESX_48_1_G 0x39 SUPERX_FI_MGMT 0x40 SUPERX_FI_2P10G 0x41 SUPERX_FI_24GC 0x42 SUPERX_FI_24GF 0x43 SUPERX_FI_2P10G_WAN 0x44 SUPERX_FI_MGMT_II 0x4a SLAVE_JC_48E 0xC3 SLAVE_JC_48T 0xC4 MASTER_JC_M4_8G 0xC5 SLAVE_JC_8G 0xC6 SLAVE_JC_B16GF 0xC8 MASTER_JC_B2404 0xC9 SLAVE_JC_B16GC 0xCA octet 3 - processor type, PVR_M603=3, PVR_M604=4, PVR_M603E=6, PVR_M603EV=7, PVR_M750=8, PVR_M604E=9, PVR_M8245=81 octet 4 to octet 5 - processor speed in MHz octet 6 - MAC type: MAC_NONE=0 MAC_SEEQ_10_100=1, MAC_DEC_10_100=2, MAC_3COM_10_100=3, MAC_X10GMAC_10000=4, MAC_SEEQ_1000=5, MAC_GMAC_1000=6, MAC_VLSI_1000=7 octet 7 - PHY type, PHY_NONE=0, PHY_QSI=1, PHY_BROADCOM=2, PHY_ICS=3, PHY_NATIONAL=4, PHY_LEVEL1=6, PHY_BROADCOM_10_100=7, PHY_LEVEL24=8, PHY_BROADCOM_10000=9 (for 10G), PHY_3COM_10_100=9 (for others) octet 8 - port type, COPPER=0, FIBER=1 octet 9 - fiber port type, NONFIBER=0, SX_FIBER=1, LX_FIBER=2, LHX_FIBER=3, LX_SX_FIBER=4, LHB_FIBER=5 octet 10 to octet 13 - DRAM size in KBytes octet 14 to octet 17 - boot flash size in KBytes octet 18 to octet 21 - code flash size in KBytes octet 22 to octet 27 - serial number. octet 28 - chassis backplane type. chassis4000 = 0x00 chassis8000 = 0x02 chassis15000 = 0x01 chassisFISX = 0x04 Turbo8 = 0x07 (stack2) FastIron2 = 0x06 (stack1)
1.3.6.1.4.1.1991.1.1.2.2.2.1.4OCTET STRINGread-onlycurrent
snAgentBrd2MainPortTotal
OBJECT-TYPE
The total number of ports for the main board.
1.3.6.1.4.1.1991.1.1.2.2.2.1.5Integer32read-onlycurrent
snAgentBrd2ModuleStatus
OBJECT-TYPE
By default, this mode is set to notActivated(0). moduleEmpty(0) ......... The slot of the chassis is empty. moduleGoingDown(2) ..... The module is going down. moduleRejected(3) ...... The module is being rejected due to wrong configuration. moduleBad(4) ........... The module Hardware is bad. moduleConfigured(8) ...... The module is configured (stacking) moduleComingUp(9) ...... The module is in power-up cycle. moduleRunning(10) ....... The module is running. moduleBlocked(11) ....... The module is blocked, for full height card.
1.3.6.1.4.1.1991.1.1.2.2.2.1.6INTEGER {moduleEmpty(0), moduleGoingDown(2), moduleRejected(3), moduleBad(4), moduleConfigured(8), moduleComingUp(9), moduleRunning(10), moduleBlocked(11)}read-onlycurrent
snAgentBrd2RedundantStatus
OBJECT-TYPE
The redundant status of a module. Non-management module always returns other(1). Management module returns the rest of the states.
1.3.6.1.4.1.1991.1.1.2.2.2.1.7INTEGER {other(1), active(2), standby(3), crashed(4), comingUp(5)}read-onlycurrent
snAgentTrp
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.3
snAgTrpRcvrTable
OBJECT-TYPE
A table of managers which to send traps.
1.3.6.1.4.1.1991.1.1.2.3.1not-accessibledeprecated
snAgTrpRcvrEntry
OBJECT-TYPE
A row in the trap receiver table. The column snAgTrpRcvrStatus is used to create and delete rows in the table. Creation requires a SET PDU with objects snAgTrpRcvrIndex, snAgTrpRcvrIpAddr, snAgTrpRcvrComm and snAgTrpRcvrStatus.
1.3.6.1.4.1.1991.1.1.2.3.1.1not-accessibledeprecated
snAgTrpRcvrIndex
OBJECT-TYPE
The index to the Trap Receiver Table.
1.3.6.1.4.1.1991.1.1.2.3.1.1.1Integer32read-onlydeprecated
snAgTrpRcvrIpAddr
OBJECT-TYPE
The ip address for SNMP manager that is to receive the trap.
1.3.6.1.4.1.1991.1.1.2.3.1.1.2IpAddressread-writedeprecated
snAgTrpRcvrCommunityOrSecurityName
OBJECT-TYPE
Community string to use. In case of USM (SNMPv3) security model, this object is used to provide the security name.
1.3.6.1.4.1.1991.1.1.2.3.1.1.3OCTET STRING (SIZE(0..32))read-writedeprecated
snAgTrpRcvrStatus
OBJECT-TYPE
This object is used to create and delete rows in the table and control if they are used. The values that can be written are: ignore(5)...don't use this entry to send traps to at this time delete(3)...deletes the row create(4)...creates a new row If the row exists, then a SET with value of create(5) returns error 'badValue'. Deleted rows go away immediately. The following values can be returned on reads: other(1)....some other case valid(2)....the row exists and is valid ignore(5)...don't use this entry to send traps to at this time
1.3.6.1.4.1.1991.1.1.2.3.1.1.4INTEGER {other(1), valid(2), delete(3), create(4), ignore(5)}read-writedeprecated
snAgTrpRcvrUDPPort
OBJECT-TYPE
UDP port number of the trap receiver.
1.3.6.1.4.1.1991.1.1.2.3.1.1.5INTEGER (0..65535)read-writedeprecated
snAgTrpRcvrSecurityModel
OBJECT-TYPE
Version of trap format to be used.
1.3.6.1.4.1.1991.1.1.2.3.1.1.6INTEGER {v1(1), v2c(2), usm(3)}read-writedeprecated
snAgTrpRcvrSecurityLevel
OBJECT-TYPE
Used for USM (SNMPv3) security model to specify the level of security. The security name is provided by snAgTrpRcvrCommunityOrSecurityName.
1.3.6.1.4.1.1991.1.1.2.3.1.1.7INTEGER {noAuth(1), auth(2), authPriv(3)}read-writedeprecated
snAgentBoot
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.4
snAgBootSeqTable
OBJECT-TYPE
A table of image load sequnce instructions to the boot code. Boot code will start from instruction of the first valid entry to load the image. If failed, it will use the second valid entry and so on, until a succesful load has completed. Each entry must have an unique instruction, duplicate instructions will be rejected.
1.3.6.1.4.1.1991.1.1.2.4.1not-accessiblecurrent
snAgBootSeqEntry
OBJECT-TYPE
A row in the boot sequence table.
1.3.6.1.4.1.1991.1.1.2.4.1.1not-accessiblecurrent
snAgBootSeqIndex
OBJECT-TYPE
The index to the boot sequence table.
1.3.6.1.4.1.1991.1.1.2.4.1.1.1INTEGER (1..6)read-onlycurrent
snAgBootSeqInstruction
OBJECT-TYPE
The instruction for the boot code.
1.3.6.1.4.1.1991.1.1.2.4.1.1.2INTEGER {fromPrimaryFlash(1), fromSecondaryFlash(2), fromTftpServer(3), fromBootpServer(4), fromPcmciaCard1(5), fromPcmciaCard2(6)}read-writecurrent
snAgBootSeqIpAddr
OBJECT-TYPE
The ip address of the TFTP server if snAgBootSeqInstruction was set to 'fromTftpServer'; otherwise, this object is not used in any other boot instruction.
1.3.6.1.4.1.1991.1.1.2.4.1.1.3IpAddressread-writecurrent
snAgBootSeqFilename
OBJECT-TYPE
The image filename on the TFTP server if snAgBootSeqInstruction was set to 'fromTftpServer'; otherwise, this object is not used in any other boot instruction.
1.3.6.1.4.1.1991.1.1.2.4.1.1.4DisplayString (SIZE(0..32))read-writecurrent
snAgBootSeqRowStatus
OBJECT-TYPE
To create or delete a boot sequence table entry.
1.3.6.1.4.1.1991.1.1.2.4.1.1.5INTEGER {other(1), valid(2), delete(3), create(4)}read-writecurrent
snAgSpBootSeqTable
OBJECT-TYPE
A table of image load sequnce instructions to the boot code for the slave (line) modules. Boot code will start from instruction of the first valid entry to load the image. If failed, it will use the second valid entry and so on, until a succesful load has completed. Each entry must have an unique instruction, duplicate instructions will be rejected.
1.3.6.1.4.1.1991.1.1.2.4.2not-accessiblecurrent
snAgSpBootSeqEntry
OBJECT-TYPE
A row in the slave module boot sequence table.
1.3.6.1.4.1.1991.1.1.2.4.2.1not-accessiblecurrent
snAgSpBootSeqSpNumber
OBJECT-TYPE
The slot numner of a slave/witch processor module for which this boot sequence applies. Setting value 0 applies to all SP modules. Index 0 is valid only for setting to simplify the set operation for all the modules.
1.3.6.1.4.1.1991.1.1.2.4.2.1.1INTEGER (0..32)not-accessiblecurrent
snAgSpBootSeqIndex
OBJECT-TYPE
The index to the boot sequence table.
1.3.6.1.4.1.1991.1.1.2.4.2.1.2Integer32not-accessiblecurrent
snAgSpBootSeqInstruction
OBJECT-TYPE
The instruction for the boot code.
1.3.6.1.4.1.1991.1.1.2.4.2.1.3INTEGER {fromSpPrimaryFlash(1), fromSpSecondaryFlash(2), fromMpPrimaryFlash(3), fromMpSecondaryFlash(4), fromPcmciaCard1(5), fromPcmciaCard2(6), fromTftpServer(7), interactively(8)}read-writecurrent
snAgSpBootSeqIpAddr
OBJECT-TYPE
The ip address of the TFTP server if snAgBootSeqInstruction was set to 'fromTftpServer'; otherwise, this object is not used in any other boot instruction.
1.3.6.1.4.1.1991.1.1.2.4.2.1.4IpAddressread-writecurrent
snAgSpBootSeqFilename
OBJECT-TYPE
The image filename on the TFTP server if snAgBootSeqInstruction was set to 'fromTftpServer'; otherwise, this object is not used in any other boot instruction.
1.3.6.1.4.1.1991.1.1.2.4.2.1.5DisplayString (SIZE(0..32))read-writecurrent
snAgSpBootSeqRowStatus
OBJECT-TYPE
To create or delete a boot sequence table entry.
1.3.6.1.4.1.1991.1.1.2.4.2.1.6INTEGER {valid(1), delete(2), create(3)}read-writecurrent
snAgCfgEos
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.5
snAgCfgEosTable
OBJECT-TYPE
This table represents the fragmented Configuration File data packet with checksum include in each rows of this table. A SNMP-SET represents configuration file download, and a SNMP-GET represents configuration file upload. This action is only if the SNMP-SET of snAgCfgLoad command is sent along with this table consecutively. The applicable snAgCfgLoad command value is as followings: uploadFromFlashToNMS(23), downloadToFlashFromNMS(24), uploadFromDramToNMS(25), downloadToDramFromNMS(26).
1.3.6.1.4.1.1991.1.1.2.5.1not-accessiblecurrent
snAgCfgEosEntry
OBJECT-TYPE
An EOS row in the table of encoded octet strings for table snAgCfgEosTable.
1.3.6.1.4.1.1991.1.1.2.5.1.1not-accessiblecurrent
snAgCfgEosIndex
OBJECT-TYPE
Each VLAN EOS Buffer Identifier have a multiple VLAN table entries.
1.3.6.1.4.1.1991.1.1.2.5.1.1.1Integer32read-onlycurrent
snAgCfgEosPacket
OBJECT-TYPE
An encoded octet string. On reads it contains an integral number of configuration file data packets. The size of each encoded octet string is less than or equal to 1400 bytes.
1.3.6.1.4.1.1991.1.1.2.5.1.1.2OCTET STRING (SIZE(0..1000))read-writecurrent
snAgCfgEosChkSum
OBJECT-TYPE
A checksum of each configuration file data packet.
1.3.6.1.4.1.1991.1.1.2.5.1.1.3Integer32read-writecurrent
snAgentLog
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.6
snAgSysLogGbl
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.6.1
snAgSysLogGblEnable
OBJECT-TYPE
Enable/disable system logging.
1.3.6.1.4.1.1991.1.1.2.6.1.1INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgSysLogGblBufferSize
OBJECT-TYPE
The number of dynamic system logging entries.
1.3.6.1.4.1.1991.1.1.2.6.1.2Integer32read-writecurrent
snAgSysLogGblClear
OBJECT-TYPE
Clear dynamic and/or static system logging buffers.
1.3.6.1.4.1.1991.1.1.2.6.1.3INTEGER {normal(0), clearAll(1), clearDynamic(2), clearStatic(3)}read-writecurrent
snAgSysLogGblCriticalLevel
OBJECT-TYPE
Filter events going to the logging buffer. This is a packed bit string object of which each bit has the following meaning: (bit 0 is the least significant bit). bit position meaning ------------ ------- 8-31 reserved 7 Warning (warning conditions) 6 Notification (normal but significant conditions) 5 Informational (informational messages) 4 Error (error conditions) 3 Emergency (system is unusable) 2 Debugging (debugging messages) 1 Critical (critical conditions) 0 Alert (immediate action needed) Setting a critical level bit to 1 makes the logging buffer accept the corresponding event. Resetting a critical level bit to 0 makes the logging buffer reject the corresponding event.
1.3.6.1.4.1.1991.1.1.2.6.1.4Integer32read-writecurrent
snAgSysLogGblLoggedCount
OBJECT-TYPE
The number events logged in the system logging buffer.
1.3.6.1.4.1.1991.1.1.2.6.1.5Counter32read-onlycurrent
snAgSysLogGblDroppedCount
OBJECT-TYPE
The number of events dropped.
1.3.6.1.4.1.1991.1.1.2.6.1.6Counter32read-onlycurrent
snAgSysLogGblFlushedCount
OBJECT-TYPE
The number of times that the system logging buffer was cleared.
1.3.6.1.4.1.1991.1.1.2.6.1.7Counter32read-onlycurrent
snAgSysLogGblOverrunCount
OBJECT-TYPE
The number of times that the system logging buffer was wrapped around.
1.3.6.1.4.1.1991.1.1.2.6.1.8Counter32read-onlycurrent
snAgSysLogGblServer
OBJECT-TYPE
IP address of syslog server.
1.3.6.1.4.1.1991.1.1.2.6.1.9IpAddressread-writedeprecated
snAgSysLogGblFacility
OBJECT-TYPE
Facility code.
1.3.6.1.4.1.1991.1.1.2.6.1.10INTEGER {kern(1), user(2), mail(3), daemon(4), auth(5), syslog(6), lpr(7), news(8), uucp(9), sys9(10), sys10(11), sys11(12), sys12(13), sys13(14), sys14(15), cron(16), local0(17), local1(18), local2(19), local3(20), local4(21), local5(22), local6(23), local7(24)}read-writecurrent
snAgSysLogGblPersistenceEnable
OBJECT-TYPE
Enable/disable system logging persistence.
1.3.6.1.4.1.1991.1.1.2.6.1.11INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgSysLogBufferTable
OBJECT-TYPE
Dynamic system logging buffer table.
1.3.6.1.4.1.1991.1.1.2.6.2not-accessiblecurrent
snAgSysLogBufferEntry
OBJECT-TYPE
A row in the dynamic system logging buffer table.
1.3.6.1.4.1.1991.1.1.2.6.2.1not-accessiblecurrent
snAgSysLogBufferIndex
OBJECT-TYPE
The index to the dynamic system logging buffer table.
1.3.6.1.4.1.1991.1.1.2.6.2.1.1Integer32read-onlycurrent
snAgSysLogBufferTimeStamp
OBJECT-TYPE
A time stamp when the event is logged.
1.3.6.1.4.1.1991.1.1.2.6.2.1.2TimeTicksread-onlycurrent
snAgSysLogBufferCriticalLevel
OBJECT-TYPE
The critical level of this event.
1.3.6.1.4.1.1991.1.1.2.6.2.1.3INTEGER {other(1), alert(2), critical(3), debugging(4), emergency(5), error(6), informational(7), notification(8), warning(9)}read-onlycurrent
snAgSysLogBufferMessage
OBJECT-TYPE
The system logging message.
1.3.6.1.4.1.1991.1.1.2.6.2.1.4DisplayStringread-onlycurrent
snAgSysLogBufferCalTimeStamp
OBJECT-TYPE
A time stamp when the event is logged. This object returns a NULL terminated time stamp string if the system calendar time was set. It returns a zero length string if the system calendar time was not set.
1.3.6.1.4.1.1991.1.1.2.6.2.1.5DisplayStringread-onlycurrent
snAgStaticSysLogBufferTable
OBJECT-TYPE
Static system logging buffer table.
1.3.6.1.4.1.1991.1.1.2.6.3not-accessiblecurrent
snAgStaticSysLogBufferEntry
OBJECT-TYPE
A row in the static system logging buffer table.
1.3.6.1.4.1.1991.1.1.2.6.3.1not-accessiblecurrent
snAgStaticSysLogBufferIndex
OBJECT-TYPE
The index to the static system logging buffer table.
1.3.6.1.4.1.1991.1.1.2.6.3.1.1INTEGER (1..100)read-onlycurrent
snAgStaticSysLogBufferTimeStamp
OBJECT-TYPE
A time stamp when the event is logged.
1.3.6.1.4.1.1991.1.1.2.6.3.1.2TimeTicksread-onlycurrent
snAgStaticSysLogBufferCriticalLevel
OBJECT-TYPE
The critical level of this event.
1.3.6.1.4.1.1991.1.1.2.6.3.1.3INTEGER {other(1), alert(2), critical(3), debugging(4), emergency(5), error(6), informational(7), notification(8), warning(9)}read-onlycurrent
snAgStaticSysLogBufferMessage
OBJECT-TYPE
The system logging message.
1.3.6.1.4.1.1991.1.1.2.6.3.1.4DisplayStringread-onlycurrent
snAgStaticSysLogBufferCalTimeStamp
OBJECT-TYPE
A time stamp when the event is logged. This object returns a NULL terminated time stamp string if the system calendar time was set. It returns a zero length string if the system calendar time was not set.
1.3.6.1.4.1.1991.1.1.2.6.3.1.5DisplayStringread-onlycurrent
snAgSysLogServerTable
OBJECT-TYPE
System Log Server table.
1.3.6.1.4.1.1991.1.1.2.6.4not-accessiblecurrent
snAgSysLogServerEntry
OBJECT-TYPE
A row in the SysLog Server table.
1.3.6.1.4.1.1991.1.1.2.6.4.1not-accessiblecurrent
snAgSysLogServerIP
OBJECT-TYPE
IP address of syslog server.
1.3.6.1.4.1.1991.1.1.2.6.4.1.1IpAddressread-onlycurrent
snAgSysLogServerUDPPort
OBJECT-TYPE
UDP port number of syslog server.
1.3.6.1.4.1.1991.1.1.2.6.4.1.2INTEGER (0..65535)read-onlycurrent
snAgSysLogServerRowStatus
OBJECT-TYPE
This object is used to create and delete row in the table and control if they are used. The values that can be written are: delete(3)...deletes the row create(4)...creates a new row If the row exists, then a SET with value of create(4) returns error 'badValue'. Deleted rows go away immediately. The following values can be returned on reads: other(1)....some other case valid(2)....the row exists and is valid
1.3.6.1.4.1.1991.1.1.2.6.4.1.3INTEGER {other(1), valid(2), delete(3), create(4)}read-writecurrent
snAgentSysParaConfig
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.7
snAgentSysParaConfigTable
OBJECT-TYPE
A table of Agent of each board.
1.3.6.1.4.1.1991.1.1.2.7.1not-accessiblecurrent
snAgentSysParaConfigEntry
OBJECT-TYPE
A row in the Agent System Parameters Configuation table.
1.3.6.1.4.1.1991.1.1.2.7.1.1not-accessiblecurrent
snAgentSysParaConfigIndex
OBJECT-TYPE
The index to the Agent System Parameters Configuation Table.
1.3.6.1.4.1.1991.1.1.2.7.1.1.1Integer32read-onlycurrent
snAgentSysParaConfigDescription
OBJECT-TYPE
The main board description string.
1.3.6.1.4.1.1991.1.1.2.7.1.1.2DisplayString (SIZE(0..32))read-onlycurrent
snAgentSysParaConfigMin
OBJECT-TYPE
The minimum value of this Agent System Parameter.
1.3.6.1.4.1.1991.1.1.2.7.1.1.3Integer32read-onlycurrent
snAgentSysParaConfigMax
OBJECT-TYPE
The maximum value of this Agent System Parameter.
1.3.6.1.4.1.1991.1.1.2.7.1.1.4Integer32read-onlycurrent
snAgentSysParaConfigDefault
OBJECT-TYPE
The default value of this Agent System Parameter.
1.3.6.1.4.1.1991.1.1.2.7.1.1.5Integer32read-onlycurrent
snAgentSysParaConfigCurrent
OBJECT-TYPE
The current configurated value of this Agent System Parameter.
1.3.6.1.4.1.1991.1.1.2.7.1.1.6Integer32read-writecurrent
snAgentConfigModule
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.8
snAgentConfigModuleTable
OBJECT-TYPE
A table of each configured module information.
1.3.6.1.4.1.1991.1.1.2.8.1not-accessiblecurrent
snAgentConfigModuleEntry
OBJECT-TYPE
A row in the Agent Configured Module table.
1.3.6.1.4.1.1991.1.1.2.8.1.1not-accessiblecurrent
snAgentConfigModuleIndex
OBJECT-TYPE
The index to the Agent Configured Module Table.
1.3.6.1.4.1.1991.1.1.2.8.1.1.1Integer32read-onlycurrent
snAgentConfigModuleType
OBJECT-TYPE
The Configured Module Type.
1.3.6.1.4.1.1991.1.1.2.8.1.1.2INTEGER {bi8PortGigManagementModule(0), bi4PortGigManagementModule(1), bi16PortCopperManagementModule(2), bi4PortGigModule(3), fi2PortGigManagementModule(4), fi4PortGigManagementModule(5), bi8PortGigCopperManagementModule(6), fi8PortGigManagementModule(7), bi8PortGigModule(8), bi12PortGigCopper2PortGigFiberManagement(9), bi24PortCopperModule(10), fi24PortCopperModule(11), bi16Port100FXModule(12), bi8Port100FXModule(13), bi8PortGigCopperModule(14), bi12PortGigCopper2PortGigFiber(15), bi2PortGigManagementModule(18), bi24Port100FXModule(19), bi0PortManagementModule(20), pos622MbsModule(21), pos155MbsModule(22), bi2PortGigModule(23), bi2PortGigCopperModule(24), fi2PortGigModule(25), fi4PortGigModule(26), fi8PortGigModule(27), fi8PortGigCopperModule(28), fi8PortGigCopperManagementModule(29), pos155Mbs2PModule(30), fi4PortGigCopperManagementModule(31), fi2PortGigCopperManagementModule(32), bi4PortGigCopperManagementModule(33), bi2PortGigCopperManagementModule(34), bi8PortGigM4ManagementModule(35), bi4PortGigM4ManagementModule(36), bi2PortGigM4ManagementModule(37), bi0PortGigM4ManagementModule(38), bi0PortWSMManagementModule(39), biPos2Port2488MbsModule(40), bi0PortWSMModule(41), niPos2Port2488MbsModule(42), ni4802(43), bi4PortGigNPAModule(44), biAtm2Port155MbsModule(45), biAtm4Port155MbsModule(46), bi1Port10GigModule(47), fes4802Module(48), fes2402Module(49), fes9604Module(50), fes12GigCopperAndGigFiberModule(51), fesx24GigModule(52), fesx24Gig2TenGigModule(53), fesx24Gig1TenGigModule(54), fesx48GigModule(55), fesx48Gig2TenGigModule(56), fesx48Gig1TenGigModule(57), bi40PortGigCopperHVModule(58), bi60PortGigCopperHVModule(59), bi8Port10GigModule(60), bi10PortGigHVModule(61), bi20PortGigHVModule(62), bi24PortGigModule(63), bi24PortGigCopperModule(64), bi48PortGigCopperModule(65), bi24PortGigFiberModule(66), ni4Port10GigSPModule(75), ni40PortGigSPModule(76), ni40PortGigCopperSPModule(77), ni2Port10GigSPModule(78), ni10PortGigSPModule(79), ni20PortGigSPModule(80), xmr4Port10GigSPModule(81), xmr20PortGigSPModule(82), xmr2Port10GigSPModule(83), xmr20PortGigCopperSPModule(84), xmr20PortGigFXSPModule(85), niImrMrManagementModule(86), niXmrMrManagementModule(87), xer4Port10GigSPModule(88), xer2Port10GigSPModule(89), xer20PortGigCopperSPModule(90), xer20PortGigFXSPModule(91), mlx4Port10GigSPModule(92), mlx2Port10GigSPModule(93), mlx20PortGigCopperSPModule(94), mlx20PortGigFXSPModule(95), mlx48PortGigMrj21SPModule(103), fesx24GigFiberGigCopperModule(112), fesx24GigFiber2TenGigModule(113), fesx24GigFiber1TenGigModule(114), fgs24PortManagementModule(144), fgs48PortManagementModule(145), fgsXfp2Port10gModule(152), fgsCx42Port10gModule(153), fgsXfp1Cx41Port10gModule(154), fgsXpf1Port10gModule(155), fls24PortCopperBaseModule(160), fls48PortCopperBaseModule(161), flsXfp1Port10gModule(168), flsCx41Port10gModule(169), fcx624SBaseModule(176), fcx648SBaseModule(177), fcx624SPoeBaseModule(180), fcx648SPoeBaseModule(181), fcxXfp2Port10gModule(184), fcxCx42Port16gModule(185), fcx624SFBaseModule(192), biFiJc48ePort100fxIpcModule(195), biFiJc48tPort100fxIpcModule(196), biFiJc8PortGigM4ManagementModule(197), biFiJc8PortGigIgcModule(198), biFiJc16PortGigIgcModule(200), biJc24PortCopperIpc4GigIgcModule(201), biJc16PortGigCopperIgcModule(202), biFiJc24Port100fxIpcModule(206), bi2Port10GigModule(207), biJc48tPortRJ21OmpModule(208), biJc48ePortRJ45OmpModule(209), biJc24PortIpcRJ45PoeModule(212), biJc2PortGigIgcM4ManagementModule(214), fdryBi4Port10GigModule(1048), fdryBi40PortGigModule(1049), fdryBi1Port100FXManagementModule(1050), fdryBi2Port10GigModule(1051), fdryBi40PortGigCopperModule(1052), fdryBi60PortGigCopperModule(1053), fdryBi4Port10GigHVModule(1054), fdryBi2Port10GigHVModule(1055), fdryBi8Port10GigHVModule(1056), fdryBi40PortGigHVModule(1057), fdryBi40PortGigCopperHVModule(1058), fdryBi60PortGigCopperHVModule(1059), fdryBi8Port10GigModule(1060), fdryBi10PortGigHVModule(1061), fdryBi20PortGigHVModule(1062), fdryBi24PortGigModule(1063), fdryBi24PortGigCopperModule(1064), fdryBi48PortGigCopperModule(1065), fdryBi24PortGigFiberModule(1066), fdryBi16Port10GigModule(1067), fdryNi4Port10GigSPModule(1075), fdryNi40PortGigSPModule(1076), fdryNi40PortGigCopperSPModule(1077), fdryNi2Port10GigSPModule(1078), fdryNi10PortGigSPModule(1079), fdryNi20PortGigSPModule(1080), fdryXmr4Port10GigSPModule(1081), fdryXmr20PortGigSPModule(1082), fdryXmr2Port10GigSPModule(1083), fdryXmr20PortGigCopperSPModule(1084), fdryXmr20PortGigFXSPModule(1085), fdryNiImrMrManagementModule(1086), fdryNiXmrMrManagementModule(1087), fdryMlx4Port10GigSPModule(1088), fdryMlx2Port10GigSPModule(1089), fdryMlx20PortGigCopperSPModule(1090), fdryMlx20PortGigFXSPModule(1091), brMlx4Port10GigXModule(1093), brMlx24PortGigCopperXModule(1094), brMlx24PortGigSfpXModule(1095), niCes24PortFiberModule(1096), niCes24PortCopperModule(1097), niCes2Port10GigModule(1098), niCes48PortFiberModule(1099), niCes48PortCopperModule(1100), niCes48PortFiberWith2Port10GModule(1101), niCes48PortCopperWith2Port10GModule(1102), fdryMlx48PortGigMrj21SPModule(1103), fdryXmr2PortOC192SPModule(1104), fdryXmr1PortOC192SPModule(1105), fdryXmr8PortOC48SPModule(1106), fdryXmr4PortOC48SPModule(1107), fdryXmr2PortOC48SPModule(1108), fdryNiMlxMrManagementModule(1109), niMlx8Port10GigMModule(1110), niMlx8Port10GigDModule(1111), brMlx8Port10GigXModule(1112), brMlx2Port100GigXModule(1113), brcdMlxMr2ManagementModule(1114), brcdXmrMr2ManagementModule(1115), brcdMlx32Mr2ManagementModule(1116), brcdXmr32Mr2ManagementModule(1117), brcdNiXmr32MrManagementModule(1118), brcdNiMlx32MrManagementModule(1119), fdryIcx6430624BaseModule(2016), fdryIcx6430648BaseModule(2017), fdryIcx6430624PoeBaseModule(2020), fdryIcx6430648PoeBaseModule(2021), fdryIcx6430sfp4Port4gModule(2024), fdryIcx6450624BaseModule(2032), fdryIcx6450648BaseModule(2033), fdryIcx6450624PoeBaseModule(2036), fdryIcx6450648PoeBaseModule(2037), fdryIcx6450sfp4Port40gModule(2040), fdryFiV4Sx12ComboPortManagementModule(2064), fdryFiV4Sx2Port10gModule(2065), fdryFiV4Sx24PortGigCopperModule(2066), fdryFiV4Sx24PortGigFiberModule(2067), fdryFiV4Sx2Port10gLanWanModule(2068), fdryFiV4Sx24Port100m1gFiberModule(2069), fdryFiV4Sx12ComboPortManagement2Module(2074), fdryFiV4Sx210gPortManagementModule(2080), fdryFiSx0PortManagementModule(2081), fdryFiV4Sx4g4fPortManagementModule(2083), fdryFiV6Sx12ComboPortManagementModule(2096), fdryFiV6Sx24PortGigCopperModule(2098), fdryFiV6Sx2Port10gModule(2100), fdryFiV6Sx24Port100m1gFiberModule(2101), fdryFiV6Sx210gPortManagementModule(2102), fdryFiV6Sx48PortGigCopperPoeModule(2103), fdryFiV6Sx4g4fPortManagementModule(2104), fdryFiV6Sx12ComboPortManagement2Module(2105), fdryFiV6Sx48PortGigCopperModule(2106), fdryFcx624BaseModule(2208), fdryFcx648BaseModule(2209), fdryFcxSfpPlus4Port10gModule(2220), fdryFws24PortCopperBaseModule(2224), fdryFws48PortCopperBaseModule(2225), fdryFws24GPortCopperBaseModule(2226), fdryFws48GPortCopperBaseModule(2227), fdryIcx6610624BaseModule(2240), fdryIcx6610648BaseModule(2241), fdryIcx6610624PoeBaseModule(2244), fdryIcx6610648PoeBaseModule(2245), fdryIcx6610624FBaseModule(2246), fdryIcx6610DualMode8PortModule(2248), fdryIcx6610Qsfp10Port160gModule(2249)}read-writecurrent
snAgentConfigModuleRowStatus
OBJECT-TYPE
To create or delete a configured module table entry.
1.3.6.1.4.1.1991.1.1.2.8.1.1.3INTEGER {other(1), valid(2), delete(3), create(4)}read-writecurrent
snAgentConfigModuleDescription
OBJECT-TYPE
A description of the configured module.
1.3.6.1.4.1.1991.1.1.2.8.1.1.4DisplayStringread-onlycurrent
snAgentConfigModuleOperStatus
OBJECT-TYPE
Module operational status. Zero length string indicates that physical module has not been inserted to the chassis.
1.3.6.1.4.1.1991.1.1.2.8.1.1.5DisplayStringread-onlycurrent
snAgentConfigModuleSerialNumber
OBJECT-TYPE
Module serial number. Zero length string indicates that module serial number EEPROM has not been programmed or the module does not support serial number EEPROM.
1.3.6.1.4.1.1991.1.1.2.8.1.1.6DisplayStringread-onlycurrent
snAgentConfigModuleNumberOfPorts
OBJECT-TYPE
The number of ports of module.
1.3.6.1.4.1.1991.1.1.2.8.1.1.7Integer32read-onlycurrent
snAgentConfigModuleMgmtModuleType
OBJECT-TYPE
Management module type.
1.3.6.1.4.1.1991.1.1.2.8.1.1.8INTEGER {other(1), nonManagementModule(2), unknownManagementModule(3), m1ManagementModule(4), m2ManagementModule(5), m3ManagementModule(6), m4ManagementModule(7), m5ManagementModule(8), jetcoreStackManagementModule(9), muchoManagementModule(10), rottWeilerManagementModule(11), fesXStackManagementModule(12), fgsStackManagementModule(13), niCesManagementModule(14), fastIronSuperXManagementModule(15), fastIronSXRManagementModule(16), fastIronV6SuperXManagementModule(17), fastIronV6SXRManagementModule(18)}read-onlycurrent
snAgentConfigModuleNumberOfCpus
OBJECT-TYPE
The number of module CPUs.
1.3.6.1.4.1.1991.1.1.2.8.1.1.9Integer32read-onlycurrent
snAgentConfigModule2Table
OBJECT-TYPE
A table of each configured stacking module information.
1.3.6.1.4.1.1991.1.1.2.8.2not-accessiblecurrent
snAgentConfigModule2Entry
OBJECT-TYPE
A row in the Agent Configured Stacking Module table.
1.3.6.1.4.1.1991.1.1.2.8.2.1not-accessiblecurrent
snAgentConfigModule2Unit
OBJECT-TYPE
The index to the Agent Configured Module Table.
1.3.6.1.4.1.1991.1.1.2.8.2.1.1Integer32read-onlycurrent
snAgentConfigModule2Slot
OBJECT-TYPE
The index to the Agent Configured Module Table.
1.3.6.1.4.1.1991.1.1.2.8.2.1.2Integer32read-onlycurrent
snAgentConfigModule2Type
OBJECT-TYPE
The Configured Module Type.
1.3.6.1.4.1.1991.1.1.2.8.2.1.3INTEGER {bi8PortGigManagementModule(0), bi4PortGigManagementModule(1), bi16PortCopperManagementModule(2), bi4PortGigModule(3), fi2PortGigManagementModule(4), fi4PortGigManagementModule(5), bi8PortGigCopperManagementModule(6), fi8PortGigManagementModule(7), bi8PortGigModule(8), bi12PortGigCopper2PortGigFiberManagement(9), bi24PortCopperModule(10), fi24PortCopperModule(11), bi16Port100FXModule(12), bi8Port100FXModule(13), bi8PortGigCopperModule(14), bi12PortGigCopper2PortGigFiber(15), bi2PortGigManagementModule(18), bi24Port100FXModule(19), bi0PortManagementModule(20), pos622MbsModule(21), pos155MbsModule(22), bi2PortGigModule(23), bi2PortGigCopperModule(24), fi2PortGigModule(25), fi4PortGigModule(26), fi8PortGigModule(27), fi8PortGigCopperModule(28), fi8PortGigCopperManagementModule(29), pos155Mbs2PModule(30), fi4PortGigCopperManagementModule(31), fi2PortGigCopperManagementModule(32), bi4PortGigCopperManagementModule(33), bi2PortGigCopperManagementModule(34), bi8PortGigM4ManagementModule(35), bi4PortGigM4ManagementModule(36), bi2PortGigM4ManagementModule(37), bi0PortGigM4ManagementModule(38), bi0PortWSMManagementModule(39), biPos2Port2488MbsModule(40), bi0PortWSMModule(41), niPos2Port2488MbsModule(42), ni4802(43), bi4PortGigNPAModule(44), biAtm2Port155MbsModule(45), biAtm4Port155MbsModule(46), bi1Port10GigModule(47), fes4802Module(48), fes2402Module(49), fes9604Module(50), fes12GigCopperAndGigFiberModule(51), fesx24GigModule(52), fesx24Gig2TenGigModule(53), fesx24Gig1TenGigModule(54), fesx48GigModule(55), fesx48Gig2TenGigModule(56), fesx48Gig1TenGigModule(57), superx12ComboPortManagementModule(64), superx2PortTenGigModule(65), superx24PortGigCopperModule(66), superx24PortGigFiberModule(67), superx2PortTenGigLanWanModule(68), superx24Port100tx1PortGigFiberModule(69), superx12ComboPortManagement2Module(74), superxR2PortTenGigManagementModule(80), superxRManagementModule(81), fesx24GigFiberGigCopperModule(112), fesx24GigFiber2TenGigModule(113), fesx24GigFiber1TenGigModule(114), fgs24PortManagementModule(144), fgs48PortManagementModule(145), fgsXfp2Port10gModule(152), fgsCx42Port10gModule(153), fgsXfp1Cx41Port10gModule(154), fgsXpf1Port10gModule(155), fls24PortCopperBaseModule(160), fls48PortCopperBaseModule(161), flsXfp1Port10gModule(168), flsCx41Port10gModule(169), fcx624SBaseModule(176), fcx648SBaseModule(177), fcx624SPoeBaseModule(180), fcx648SPoeBaseModule(181), fcxXfp2Port10gModule(184), fcxCx42Port16gModule(185), fcx624SFBaseModule(192), biFiJc48ePort100fxIpcModule(195), biFiJc48tPort100fxIpcModule(196), biFiJc8PortGigM4ManagementModule(197), biFiJc8PortGigIgcModule(198), biFiJc16PortGigIgcModule(200), biJc24PortCopperIpc4GigIgcModule(201), biJc16PortGigCopperIgcModule(202), biFiJc24Port100fxIpcModule(206), bi2Port10GigModule(207), biJc48tPortRJ21OmpModule(208), biJc48ePortRJ45OmpModule(209), biJc24PortIpcRJ45PoeModule(212), biJc2PortGigIgcM4ManagementModule(214), fdryIcx6430624BaseModule(2016), fdryIcx6430648BaseModule(2017), fdryIcx6430624PoeBaseModule(2020), fdryIcx6430648PoeBaseModule(2021), fdryIcx6430sfp4Port4gModule(2024), fdryIcx6450624BaseModule(2032), fdryIcx6450648BaseModule(2033), fdryIcx6450624PoeBaseModule(2036), fdryIcx6450648PoeBaseModule(2037), fdryIcx6450sfp4Port40gModule(2040), fdryFcx624BaseModule(2208), fdryFcx648BaseModule(2209), fdryFcxSfpPlus4Port10gModule(2220), fdryFws24PortCopperBaseModule(2224), fdryFws48PortCopperBaseModule(2225), fdryFws24GPortCopperBaseModule(2226), fdryFws48GPortCopperBaseModule(2227), fdryIcx6610624BaseModule(2240), fdryIcx6610648BaseModule(2241), fdryIcx6610624PoeBaseModule(2244), fdryIcx6610648PoeBaseModule(2245), fdryIcx6610624FBaseModule(2246), fdryIcx6610DualMode8PortModule(2248), fdryIcx6610Qsfp10Port160gModule(2249)}read-writecurrent
snAgentConfigModule2RowStatus
OBJECT-TYPE
To create or delete a configured module table entry.
1.3.6.1.4.1.1991.1.1.2.8.2.1.4INTEGER {other(1), valid(2), delete(3), create(4)}read-writecurrent
snAgentConfigModule2Description
OBJECT-TYPE
A description of the configured module.
1.3.6.1.4.1.1991.1.1.2.8.2.1.5DisplayStringread-onlycurrent
snAgentConfigModule2OperStatus
OBJECT-TYPE
Module operational status. Zero length string indicates that physical module has not been inserted to the chassis.
1.3.6.1.4.1.1991.1.1.2.8.2.1.6DisplayStringread-onlycurrent
snAgentConfigModule2SerialNumber
OBJECT-TYPE
Module serial number. Zero length string indicates that module serial number EEPROM has not been programmed or the module does not support serial number EEPROM.
1.3.6.1.4.1.1991.1.1.2.8.2.1.7DisplayStringread-onlycurrent
snAgentConfigModule2NumberOfPorts
OBJECT-TYPE
The number of ports of module.
1.3.6.1.4.1.1991.1.1.2.8.2.1.8Integer32read-onlycurrent
snAgentConfigModule2MgmtModuleType
OBJECT-TYPE
Management module type.
1.3.6.1.4.1.1991.1.1.2.8.2.1.9INTEGER {other(1), nonManagementModule(2), unknownManagementModule(3), m1ManagementModule(4), m2ManagementModule(5), m3ManagementModule(6), m4ManagementModule(7), m5ManagementModule(8), jetcoreStackManagementModule(9), muchoManagementModule(10), rottWeilerManagementModule(11), fesXStackManagementModule(12), fgsStackManagementModule(13)}read-onlycurrent
snAgentConfigModule2NumberOfCpus
OBJECT-TYPE
The number of module CPUs.
1.3.6.1.4.1.1991.1.1.2.8.2.1.10Integer32read-onlycurrent
snAgentUser
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.9
snAgentUserGbl
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.9.1
snAgentUserMaxAccnt
OBJECT-TYPE
Maximum number of user account entries can be configured.
1.3.6.1.4.1.1991.1.1.2.9.1.1Integer32read-onlycurrent
snAgentUserAccntTable
OBJECT-TYPE
A table of user account information.
1.3.6.1.4.1.1991.1.1.2.9.2not-accessiblecurrent
snAgentUserAccntEntry
OBJECT-TYPE
A row in the Agent User table.
1.3.6.1.4.1.1991.1.1.2.9.2.1not-accessiblecurrent
snAgentUserAccntName
OBJECT-TYPE
The user name.
1.3.6.1.4.1.1991.1.1.2.9.2.1.1DisplayString (SIZE(1..48))read-onlycurrent
snAgentUserAccntPassword
OBJECT-TYPE
The user password.
1.3.6.1.4.1.1991.1.1.2.9.2.1.2DisplayString (SIZE(0..48))read-writecurrent
snAgentUserAccntEncryptCode
OBJECT-TYPE
The password encryption method code.
1.3.6.1.4.1.1991.1.1.2.9.2.1.3Integer32read-writecurrent
snAgentUserAccntPrivilege
OBJECT-TYPE
The user privilege.
1.3.6.1.4.1.1991.1.1.2.9.2.1.4Integer32read-writecurrent
snAgentUserAccntRowStatus
OBJECT-TYPE
To create or delete a user account table entry.
1.3.6.1.4.1.1991.1.1.2.9.2.1.5INTEGER {other(1), valid(2), delete(3), create(4), modify(5)}read-writecurrent
snAgentRedundant
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.10
snAgentRedunGbl
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.10.1
snAgentRedunActiveMgmtMod
OBJECT-TYPE
Slot number of the active management module. Setting this object does not take effect immediately. Saving configuration data to flash storage and reboot the system are required to take effect. Setting a value of 0 requests the system to auto-select an active management module after power up.
1.3.6.1.4.1.1991.1.1.2.10.1.1Integer32read-writecurrent
snAgentRedunSyncConfig
OBJECT-TYPE
Frequency of the backup management module copying the configuration data from the active management module. Each unit is 1 second. Setting a value 0 will disable the synchronization copy. Setting a negative value will initiate the synchronization copy once immediately.
1.3.6.1.4.1.1991.1.1.2.10.1.2Integer32read-writecurrent
snAgentRedunBkupCopyBootCode
OBJECT-TYPE
If enabled(1), the backup management module copies the boot code from the active management module to its boot code flash storage after power up, and whenever the active management module's boot code is updated. The backup management module does not copy if both boot codes were identical.
1.3.6.1.4.1.1991.1.1.2.10.1.3INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgentEnableMgmtModRedunStateChangeTrap
OBJECT-TYPE
Indicates whether the SNMP agent process is permitted to generate management module redundancy state change traps.
1.3.6.1.4.1.1991.1.1.2.10.1.4INTEGER {disabled(0), enabled(1)}read-writecurrent
snAgentRedunBkupBootLoad
OBJECT-TYPE
Action object to down load a new boot code from boot flash storage of the active management module to the backup management module. The following are returned values from get operation: normal(1)............no operation operationError(17)...error codes The following are input values from set operation: downloadBackup(20)...download the boot code from the active management module to the backup management module Any set operation is rejected during loading until error or normal state is reached.
1.3.6.1.4.1.1991.1.1.2.10.1.5INTEGER {normal(1), operationError(17), downloadBackup(20)}read-writecurrent
snAgentRedunSwitchOver
OBJECT-TYPE
To force a switch-over from standby to active state if the backup management module exists in a chassis.
1.3.6.1.4.1.1991.1.1.2.10.1.6INTEGER {other(1), reset(2)}read-writecurrent
snAgentCpu
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.11
snAgentCpuUtilTable
OBJECT-TYPE
Table to list utilization for all CPUs in the device.
1.3.6.1.4.1.1991.1.1.2.11.1not-accessiblecurrent
snAgentCpuUtilEntry
OBJECT-TYPE
A row in the CPU utilization table.
1.3.6.1.4.1.1991.1.1.2.11.1.1not-accessiblecurrent
snAgentCpuUtilSlotNum
OBJECT-TYPE
The slot number of module which contains the cpu.
1.3.6.1.4.1.1991.1.1.2.11.1.1.1Integer32read-onlycurrent
snAgentCpuUtilCpuId
OBJECT-TYPE
The id of cpu. For non-VM1/WSM management module, there is one CPU. For VM1/WSM there's one management CPU and three slave CPUs. The management CPU could be turned off. For POS and ATM there's no management CPU but two slave CPUs. Id for management cpu is 1. Value of 2 or greater are for slave CPUs.
1.3.6.1.4.1.1991.1.1.2.11.1.1.2Integer32read-onlycurrent
snAgentCpuUtilInterval
OBJECT-TYPE
The value, in seconds, for this utilization. For both management and slave CPU, we display utilization for 1 sec, 5 sec, 60 sec and 300 sec interval.
1.3.6.1.4.1.1991.1.1.2.11.1.1.3Integer32read-onlycurrent
snAgentCpuUtilValue
OBJECT-TYPE
The statistical CPU utilization in units of one-hundredth of a percent. This value is deprecated. Users are recommended to use snAgentCpuUtilPercent or snAgentCpuUtil100thPercent instead.
1.3.6.1.4.1.1991.1.1.2.11.1.1.4Gauge32read-onlydeprecated
snAgentCpuUtilPercent
OBJECT-TYPE
The statistical CPU utilization in units of a percent.
1.3.6.1.4.1.1991.1.1.2.11.1.1.5Gauge32read-onlycurrent
snAgentCpuUtil100thPercent
OBJECT-TYPE
The statistical CPU utilization in units of one-hundredth of a percent.
1.3.6.1.4.1.1991.1.1.2.11.1.1.6Gauge32read-onlycurrent
snCpuProcessTable
OBJECT-TYPE
Table to list utilization and runtime for all CPU processes in the device.
1.3.6.1.4.1.1991.1.1.2.11.2not-accessiblecurrent
snCpuProcessEntry
OBJECT-TYPE
A row in the CPU process table.
1.3.6.1.4.1.1991.1.1.2.11.2.1not-accessiblecurrent
snCpuProcessName
OBJECT-TYPE
The process name.
1.3.6.1.4.1.1991.1.1.2.11.2.1.1DisplayString (SIZE(1..48))read-onlycurrent
snCpuProcess5SecUtil
OBJECT-TYPE
The statistics collection of last 5 second process utilization.
1.3.6.1.4.1.1991.1.1.2.11.2.1.2Gauge32read-onlycurrent
snCpuProcess1MinUtil
OBJECT-TYPE
The statistics collection of last 1 minute process utilization.
1.3.6.1.4.1.1991.1.1.2.11.2.1.3Gauge32read-onlycurrent
snCpuProcess5MinUtil
OBJECT-TYPE
The statistics collection of last 5 minute process utilization.
1.3.6.1.4.1.1991.1.1.2.11.2.1.4Gauge32read-onlycurrent
snCpuProcess15MinUtil
OBJECT-TYPE
The statistics collection of last 15 minute process utilization.
1.3.6.1.4.1.1991.1.1.2.11.2.1.5Gauge32read-onlycurrent
snCpuProcessRuntime
OBJECT-TYPE
Process runtime in milliseconds.
1.3.6.1.4.1.1991.1.1.2.11.2.1.6Counter32read-onlycurrent
snAgentHw
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.12
snAgentHwICBMCounterTable
OBJECT-TYPE
Table to list the ICBM counter values. This table is not supported on 10G module.
1.3.6.1.4.1.1991.1.1.2.12.1not-accessiblecurrent
snAgentHwICBMCounterEntry
OBJECT-TYPE
A row representing ICBM counter values for that slot.
1.3.6.1.4.1.1991.1.1.2.12.1.1not-accessiblecurrent
snAgentHwICBMCounterSlot
OBJECT-TYPE
Slot number where ICBM resides.
1.3.6.1.4.1.1991.1.1.2.12.1.1.1Unsigned32read-onlycurrent
snAgentHwICBMCounterDMA
OBJECT-TYPE
DMA Id within a slot where ICBM resides. Valid only for Jetcore modules. For non-Jetcore modules, this index is ignored by the agent. In this case, value 0 will be returned by the agent.
1.3.6.1.4.1.1991.1.1.2.12.1.1.2Unsigned32read-onlycurrent
snAgentHwICBMCounterFreeDepth
OBJECT-TYPE
Current depth of the free queue for this ICBM.
1.3.6.1.4.1.1991.1.1.2.12.1.1.3Gauge32read-onlycurrent
snAgentHwICBMCounterWriteDrop
OBJECT-TYPE
Write sequencer drop count for this ICBM.
1.3.6.1.4.1.1991.1.1.2.12.1.1.4Counter32read-onlycurrent
snAgentHwICBMCounterWriteInput
OBJECT-TYPE
Write sequencer input counter for this ICBM.
1.3.6.1.4.1.1991.1.1.2.12.1.1.5Counter32read-onlycurrent
snAgentHwICBMCounterWriteOutput
OBJECT-TYPE
Write sequencer output counter for this ICBM.
1.3.6.1.4.1.1991.1.1.2.12.1.1.6Counter32read-onlycurrent
snAgentHwICBMCounterReadInput
OBJECT-TYPE
Read sequencer input counter for this ICBM.
1.3.6.1.4.1.1991.1.1.2.12.1.1.7Counter32read-onlycurrent
snAgentHwICBMCounterReadOutput
OBJECT-TYPE
Read sequencer output counter for this ICBM.
1.3.6.1.4.1.1991.1.1.2.12.1.1.8Counter32read-onlycurrent
snCAMIpStatTable
OBJECT-TYPE
Table to list the IP CAM statistics.
1.3.6.1.4.1.1991.1.1.2.12.2not-accessiblecurrent
snCAMIpStatEntry
OBJECT-TYPE
A row representing IP CAM statistics for a given interface and level.
1.3.6.1.4.1.1991.1.1.2.12.2.1not-accessiblecurrent
snCAMIpStatIfIndex
OBJECT-TYPE
ifIndex value of the local interface.
1.3.6.1.4.1.1991.1.1.2.12.2.1.1Unsigned32read-onlycurrent
snCAMIpStatLevel
OBJECT-TYPE
Level of CAM entry for that interface.
1.3.6.1.4.1.1991.1.1.2.12.2.1.2Unsigned32read-onlycurrent
snCAMIpStatFreeEntries
OBJECT-TYPE
Free entries in the IP CAM for that interface and level.
1.3.6.1.4.1.1991.1.1.2.12.2.1.3Unsigned32read-onlycurrent
snCAMIpStatTotalEntries
OBJECT-TYPE
Total entries in the IP CAM for that interface and level.
1.3.6.1.4.1.1991.1.1.2.12.2.1.4Unsigned32read-onlycurrent
snCAMStatTable
OBJECT-TYPE
Table to list the CAM statistics.
1.3.6.1.4.1.1991.1.1.2.12.3not-accessiblecurrent
snCAMStatEntry
OBJECT-TYPE
A row representing CAM statistics for a given DMA Id number.
1.3.6.1.4.1.1991.1.1.2.12.3.1not-accessiblecurrent
snCamStatDMAIdNumber
OBJECT-TYPE
DMA Id number.
1.3.6.1.4.1.1991.1.1.2.12.3.1.1Unsigned32read-onlycurrent
snCamStatDMAMasterNumber
OBJECT-TYPE
DMA Master for that DMA Id.
1.3.6.1.4.1.1991.1.1.2.12.3.1.2Unsigned32read-onlycurrent
snCamStatFreePool0Entries
OBJECT-TYPE
CAM free pool0 entries.
1.3.6.1.4.1.1991.1.1.2.12.3.1.3Unsigned32read-onlycurrent
snCamStatFreePool1Entries
OBJECT-TYPE
CAM free pool1 entries.
1.3.6.1.4.1.1991.1.1.2.12.3.1.4Unsigned32read-onlycurrent
snCamStatFreePool2Entries
OBJECT-TYPE
CAM free pool2 entries.
1.3.6.1.4.1.1991.1.1.2.12.3.1.5Unsigned32read-onlycurrent
snCamStatFreePool3Entries
OBJECT-TYPE
CAM free pool3 entries.
1.3.6.1.4.1.1991.1.1.2.12.3.1.6Unsigned32read-onlycurrent
snCamStatFreeL2Entries
OBJECT-TYPE
CAM Free L2 entries.
1.3.6.1.4.1.1991.1.1.2.12.3.1.7Unsigned32read-onlycurrent
snCamStatFreeL2LowestSection
OBJECT-TYPE
CAM Free L2 lowest section entries.
1.3.6.1.4.1.1991.1.1.2.12.3.1.8Unsigned32read-onlycurrent
snCamStatHostLookupCount
OBJECT-TYPE
CAM host lookup count for router.
1.3.6.1.4.1.1991.1.1.2.12.3.1.9Counter32read-onlycurrent
snCamStatRouteLookupCount
OBJECT-TYPE
CAM route lookup count for router.
1.3.6.1.4.1.1991.1.1.2.12.3.1.10Counter32read-onlycurrent
snCamStatLevel1
OBJECT-TYPE
CAM stat level1 entries for router.
1.3.6.1.4.1.1991.1.1.2.12.3.1.11Unsigned32read-onlycurrent
snCamStatLevel2
OBJECT-TYPE
CAM stat level2 entries for router.
1.3.6.1.4.1.1991.1.1.2.12.3.1.12Unsigned32read-onlycurrent
snCamStatLevel3
OBJECT-TYPE
CAM stat level3 entries for router.
1.3.6.1.4.1.1991.1.1.2.12.3.1.13Unsigned32read-onlycurrent
snCamStatMacFailCount
OBJECT-TYPE
CAM MAC fail count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.14Counter32read-onlycurrent
snCamStatIPRouteFailCount
OBJECT-TYPE
CAM IP route fail count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.15Counter32read-onlycurrent
snCamStatIPSessionFailCount
OBJECT-TYPE
CAM IP session fail count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.16Counter32read-onlycurrent
snCamStatIPMCastFailCount
OBJECT-TYPE
CAM IP multicast fail count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.17Counter32read-onlycurrent
snCamStatL2SessionFailCount
OBJECT-TYPE
CAM L2 session fail count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.18Counter32read-onlycurrent
snCamStatAddMACCount
OBJECT-TYPE
CAM add MAC count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.19Counter32read-onlycurrent
snCamStatAddVLANCount
OBJECT-TYPE
CAM add VLAN count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.20Counter32read-onlycurrent
snCamStatAddIPHostCount
OBJECT-TYPE
CAM add IP host count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.21Counter32read-onlycurrent
snCamStatAddIPRouteCount
OBJECT-TYPE
CAM add IP route count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.22Counter32read-onlycurrent
snCamStatAddIPSessionCount
OBJECT-TYPE
CAM add IP session count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.23Counter32read-onlycurrent
snCamStatAddIPMCastCount
OBJECT-TYPE
CAM add IP multicast count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.24Counter32read-onlycurrent
snCamStatAddL2SessionCount
OBJECT-TYPE
CAM add L2 session count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.25Counter32read-onlycurrent
snCamStatAddIPXCount
OBJECT-TYPE
CAM add IPX count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.26Counter32read-onlycurrent
snCamStatDeleteDMACamCount
OBJECT-TYPE
CAM delete DMA CAM count.
1.3.6.1.4.1.1991.1.1.2.12.3.1.27Counter32read-onlycurrent
snAgSystemDRAM
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.12.4
snAgSystemDRAMUtil
OBJECT-TYPE
The system dynamic memory utilization, in unit of percentage.
1.3.6.1.4.1.1991.1.1.2.12.4.1Gauge32read-onlycurrent
snAgSystemDRAMTotal
OBJECT-TYPE
The total amount of system dynamic memory, in number of bytes.
1.3.6.1.4.1.1991.1.1.2.12.4.2Integer32read-onlycurrent
snAgSystemDRAMFree
OBJECT-TYPE
The free amount of system dynamic memory, in number of bytes.
1.3.6.1.4.1.1991.1.1.2.12.4.3Integer32read-onlycurrent
snAgSystemDRAMForBGP
OBJECT-TYPE
The free amount of system dynamic memory used by BGP, in number of bytes.
1.3.6.1.4.1.1991.1.1.2.12.4.4Integer32read-onlycurrent
snAgSystemDRAMForOSPF
OBJECT-TYPE
The free amount of system dynamic memory used by OSPF, in number of bytes.
1.3.6.1.4.1.1991.1.1.2.12.4.5Integer32read-onlycurrent
snAgSystemDebug
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.12.5
snAgSystemDebugTotalIn
OBJECT-TYPE
Total incoming packet count. Sum of Buffer Manager and CPU read count.
1.3.6.1.4.1.1991.1.1.2.12.5.1Integer32read-onlycurrent
snAgSystemDebugTotalOut
OBJECT-TYPE
Total outgoing packet count.
1.3.6.1.4.1.1991.1.1.2.12.5.2Integer32read-onlycurrent
snAgSystemDebugCpuQueueRead
OBJECT-TYPE
CPU Queue read count.
1.3.6.1.4.1.1991.1.1.2.12.5.3Integer32read-onlycurrent
snAgSystemDebugDRAMBuffer
OBJECT-TYPE
DRAM buffer count.
1.3.6.1.4.1.1991.1.1.2.12.5.4Integer32read-onlycurrent
snAgSystemDebugBMBuffer
OBJECT-TYPE
BM buffer count.
1.3.6.1.4.1.1991.1.1.2.12.5.5Integer32read-onlycurrent
snAgSystemDebugBMFreeBuffer
OBJECT-TYPE
BM free buffer count.
1.3.6.1.4.1.1991.1.1.2.12.5.6Integer32read-onlycurrent
snAgSystemDebugBMFreeBufferMgmt
OBJECT-TYPE
BM free buffer management count.
1.3.6.1.4.1.1991.1.1.2.12.5.7Integer32read-onlycurrent
snAgSystemDebugIpcGigLock
OBJECT-TYPE
IPC GIG lock count.
1.3.6.1.4.1.1991.1.1.2.12.5.8Integer32read-onlycurrent
snAgSystemDebugDRAMGetError
OBJECT-TYPE
DRAM get error count.
1.3.6.1.4.1.1991.1.1.2.12.5.9Integer32read-onlycurrent
snAgSystemDebugDRAMToBMCopyFail
OBJECT-TYPE
DRAM to Buffer Manager copy fail count.
1.3.6.1.4.1.1991.1.1.2.12.5.10Integer32read-onlycurrent
snAgentTemp
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.13
snAgentTempTable
OBJECT-TYPE
Table to list temperatures of all the modules in the device. This table is applicable to only those modules with temperature sensors.
1.3.6.1.4.1.1991.1.1.2.13.1not-accessiblecurrent
snAgentTempEntry
OBJECT-TYPE
A row in the module temperature table.
1.3.6.1.4.1.1991.1.1.2.13.1.1not-accessiblecurrent
snAgentTempSlotNum
OBJECT-TYPE
The slot number of module which contains the temperature sensor represented by this row.
1.3.6.1.4.1.1991.1.1.2.13.1.1.1Integer32not-accessiblecurrent
snAgentTempSensorId
OBJECT-TYPE
The temperature sensor identifier of Slave module whose temperature is represented by this row, for management module: sensor#1 - Intake Side Temperature sensor# 2 - Exhaust Side Temperature.
1.3.6.1.4.1.1991.1.1.2.13.1.1.2Integer32not-accessiblecurrent
snAgentTempSensorDescr
OBJECT-TYPE
Describes the temperature sensor in a human readable form. This is the same as snAgentTempSensorId, which is numeric and used to traverse the temperature sensor table. The description provides the meaning and purpose of this senor.
1.3.6.1.4.1.1991.1.1.2.13.1.1.3DisplayString (SIZE(0..128))read-onlycurrent
snAgentTempValue
OBJECT-TYPE
Temperature of the the sensor represented by this row. Each unit is 0.5 degrees Celcius.
1.3.6.1.4.1.1991.1.1.2.13.1.1.4INTEGER (-110..250)read-onlycurrent
snAgentTempThresholdTable
OBJECT-TYPE
Table to list temperature threshold levels for 4 speeds of fan settings. Depending on the temperature level, the fans run at diffrent speeds of RPM. There are 4 levels of temperature settings for 4 fan speeds (low, medium, medium-high, high). This table is applicable to only those modules with temperature sensors. For each row, there are 2 temperature threshold values. The high value, if reached causes the fan to run at next high level speed and when it reduces the below the low value, the fan runs at next low spped.
1.3.6.1.4.1.1991.1.1.2.13.2not-accessiblecurrent
snAgentTempThresholdEntry
OBJECT-TYPE
A row in the module temperature threshold table.
1.3.6.1.4.1.1991.1.1.2.13.2.1not-accessiblecurrent
snAgentTempThresholdModule
OBJECT-TYPE
The module in the system for which threshold levels represented by this row are applicable.
1.3.6.1.4.1.1991.1.1.2.13.2.1.1INTEGER {mgmtModule(1), slaveModule(2), switchFabricModule(3)}not-accessiblecurrent
snAgentTempThresholdLevel
OBJECT-TYPE
The temperature threshold level of the module for which threshold levels represented by this row are applicable.
1.3.6.1.4.1.1991.1.1.2.13.2.1.2INTEGER {low(1), medium(2), mediumHhigh(3), high(4)}not-accessiblecurrent
snAgentTempThresholdHighValue
OBJECT-TYPE
The high value for the temperature threshold, above which the fans would need to operate at the next higher speed. If it reaches more than the high threshold value for 'high' level, the module will be shutdown.
1.3.6.1.4.1.1991.1.1.2.13.2.1.3INTEGER (-110..250)read-writecurrent
snAgentTempThresholdLowValue
OBJECT-TYPE
The low value for the temperature threshold, below which the fans would need to operate at the next lower speed. This value is not applicable for the 'low' level, as there is no more lower speeds than that.
1.3.6.1.4.1.1991.1.1.2.13.2.1.4INTEGER (-110..250)read-writecurrent
snAgentTemp2Table
OBJECT-TYPE
Table to list temperatures of the modules in the device for each unit. This table is applicable to only those modules with temperature sensors.
1.3.6.1.4.1.1991.1.1.2.13.3not-accessiblecurrent
snAgentTemp2Entry
OBJECT-TYPE
A row in the module temperature table.
1.3.6.1.4.1.1991.1.1.2.13.3.1not-accessiblecurrent
snAgentTemp2UnitNum
OBJECT-TYPE
The unit number of module which contains the temperature sensor represented by this row.
1.3.6.1.4.1.1991.1.1.2.13.3.1.1Integer32not-accessiblecurrent
snAgentTemp2SlotNum
OBJECT-TYPE
The slot number of module which contains the temperature sensor represented by this row.
1.3.6.1.4.1.1991.1.1.2.13.3.1.2Integer32not-accessiblecurrent
snAgentTemp2SensorId
OBJECT-TYPE
The temperature sensor identifier of Slave module whose temperature is represented by this row, for FastIron management module: sensor#1 - Intake Side Temperature sensor# 2 - Exhaust Side Temperature.
1.3.6.1.4.1.1991.1.1.2.13.3.1.3Integer32not-accessiblecurrent
snAgentTemp2SensorDescr
OBJECT-TYPE
Describes the temperature sensor in a human readable form. This is the same as snAgentTempSensorId, which is numeric and used to traverse the temperature sensor table. The description provides the meaning and purpose of this senor.
1.3.6.1.4.1.1991.1.1.2.13.3.1.4DisplayString (SIZE(0..128))read-onlycurrent
snAgentTemp2Value
OBJECT-TYPE
Temperature of the sensor represented by this row. Each unit is 0.5 degrees Celsius.
1.3.6.1.4.1.1991.1.1.2.13.3.1.5INTEGER (-110..250)read-onlycurrent
snAgentPoe
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.14
snAgentLicense
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.15
fdryLicenseTable
OBJECT-TYPE
A list of licenses maintained by license sub-system.
1.3.6.1.4.1.1991.1.1.2.15.1not-accessiblecurrent
fdryLicenseEntry
OBJECT-TYPE
An entry in a license table.
1.3.6.1.4.1.1991.1.1.2.15.1.1not-accessiblecurrent
fdryLicensePackageName
OBJECT-TYPE
Name of the package, whose license information, this entry displays.
1.3.6.1.4.1.1991.1.1.2.15.1.1.1DisplayString (SIZE(1..24))not-accessiblecurrent
fdryLicenseLid
OBJECT-TYPE
License Id (LID) of the chassis or the line module for which, this entry displays license information.
1.3.6.1.4.1.1991.1.1.2.15.1.1.2DisplayString (SIZE(1..11))not-accessiblecurrent
fdryLicenseHash
OBJECT-TYPE
A unique hash for identifying a license entry in the system. This helps traverse through the entries with same package name and LID.
1.3.6.1.4.1.1991.1.1.2.15.1.1.3DisplayString (SIZE(1..17))not-accessiblecurrent
fdryLicenseType
OBJECT-TYPE
The type of the license, which can be either normal or trial.
1.3.6.1.4.1.1991.1.1.2.15.1.1.4INTEGER {normal(1), trial(2)}read-onlycurrent
fdryLicensePrecedence
OBJECT-TYPE
Defines the priority of a particular trial license among those having the same package and LID. This is primarily used for determining which license to use, when there are many trial and normal licenses with same package name and LID.
1.3.6.1.4.1.1991.1.1.2.15.1.1.5Unsigned32 (0..65535)read-onlycurrent
fdryLicenseTrialDays
OBJECT-TYPE
The number of trial days for the license, if it's a trial license. Otherwise, the value has no meaning for normal licenses and read as 0 on Get operation.
1.3.6.1.4.1.1991.1.1.2.15.1.1.6Unsigned32 (0..65535)read-onlycurrent
fdryLicenseTrialTimeElapsed
OBJECT-TYPE
The number of trial hours for the license, if it's a trial license. Otherwise, the value has no meaning for normal licenses and read as 0 on Get operation.
1.3.6.1.4.1.1991.1.1.2.15.1.1.7Unsigned32 (0..65535)read-onlycurrent
fdryLicenseTrialTimeLeft
OBJECT-TYPE
The number of hours left for the trial license. This is derived from the total number of hours and the cumulative number of hours used. For a normal license, this is 0.
1.3.6.1.4.1.1991.1.1.2.15.1.1.8Unsigned32 (0..65535)read-onlycurrent
fdryLicenseTrialState
OBJECT-TYPE
This indicates the state of the trial license. Invalid means the license is not valid for this box, unused means the license is never used, avtive means it has been used at least once and expired means it has expired and can't be used any more.
1.3.6.1.4.1.1991.1.1.2.15.1.1.9INTEGER {invalid(1), unused(2), active(3), expired(4)}read-onlycurrent
fdryLicenseVendorInfo
OBJECT-TYPE
This is the Brocade specific package data which is an octet string. This contains encoded information of license specific information such as package bit mask, number of ports, etc.
1.3.6.1.4.1.1991.1.1.2.15.1.1.10DisplayStringread-onlycurrent
fdryLicenseSlot
OBJECT-TYPE
This indicates the slot number of the module, the license belongs to. There is a one to one mapping between LID and slot number, as each module has unique LID and can be present only in one slot.
1.3.6.1.4.1.1991.1.1.2.15.1.1.11Integer32read-onlycurrent
fdryLicensedFeatureInfo
OBJECT-TYPE
The features or packages enabled/licensed on the system.
1.3.6.1.4.1.1991.1.1.2.15.2Bits {ospf(0), isis(1), bgp(2), mpls(3)}read-onlycurrent
brcdSw
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.16
brcdSwPackageGroup
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.16.1
brcdSwPackageUpgrade
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.16.1.1
brcdSwPackageFname
OBJECT-TYPE
Name of the release package file or manifest file (including path) currently associated with the system. When the object is not used, the value is a zero length string.
1.3.6.1.4.1.1991.1.1.2.16.1.1.1DisplayString (SIZE(0..128))read-writecurrent
brcdSwPackageLoad
OBJECT-TYPE
Action object to upgrade the system using a release package. none(1) is the value after the system comes up and should not be used for set-request. The following values will download the release package from a TFTP server and upgrade the system : tftpToPrimary(2) installs both MP and LP application images to primary code. tftpToSecondary(3) installs both MP and LP application images to secondary code. tftpToMgmtModulePrimaryIntfModuleSecondary (4) installs MP application image to primary code and the LP application images to secondary code. tftpToMgmtModuleSecondaryIntfModulePrimary (5) installs MP application image to secondary code and the LP application images to primary code.
1.3.6.1.4.1.1991.1.1.2.16.1.1.2INTEGER {none(1), tftpToPrimary(2), tftpToSecondary(3), tftpToMgmtModulePrimaryIntfModuleSecondary(4), tftpToMgmtModuleSecondaryIntfModulePrimary(5)}read-writecurrent
brcdSwPackageLoadStatus
OBJECT-TYPE
This object indicates the progress of the upgrade operation. <TBD: more description>
1.3.6.1.4.1.1991.1.1.2.16.1.1.3INTEGER {normal(1), started(2), internalError(3), manifestFileDownloadError(4), manifestFileValidationError(5), downloadingManagementModuleBoot(6), downloadingManagementModuleMonitor(7), downloadingManagementModuleApplication(8), downloadingInterfaceModuleBoot(9), downloadingInterfaceModuleMonitor(10), downloadingInterfaceModuleApplication(11), downloadingInterfaceModuleFpga(12), downloadingFpgaMBridge(13), downloadingFpgaSBridge(14), downloadingFpgaHBridge(15), upgradingManagementModuleBoot(16), upgradingManagementModuleMonitor(17), upgradingManagementModuleApplication(18), upgradingInterfaceModuleBoot(19), upgradingInterfaceModuleMonitor(20), upgradingInterfaceModuleApplication(21), upgradingInterfaceModuleFpga(22), upgradingFpgaMBridge(23), upgradingFpgaSBridge(24), upgradingFpgaHBridge(25)}read-onlycurrent
brcdSwPackageUpgradeAllImages
OBJECT-TYPE
To specify an all-image upgrade. If set to true(1), the upgrade sequence will include the MP and LP BOOT images, and MP FPGA images (MBRIDGE/MBRIDGE32 and SBRIDGE/HSBRIDGE). For CES/CER the upgrade sequence includes the boot image. Default is false(2) which will upgrade only the MP and LP Monitor images, MP and LP Application images, and LP Bundled FPGA. For CES/CER, only the monitor, application, and FPGA images will be upgraded. For a read operation, this will always return false(2).
1.3.6.1.4.1.1991.1.1.2.16.1.1.4TruthValueread-writecurrent
brcdSwPackageUpgradeResultTable
OBJECT-TYPE
A table containing the summary of the upgrade operation.
1.3.6.1.4.1.1991.1.1.2.16.1.1.5not-accessiblecurrent
brcdSwPackageUpgradeResultEntry
OBJECT-TYPE
<TBD>
1.3.6.1.4.1.1991.1.1.2.16.1.1.5.1not-accessiblecurrent
brcdSwPackageUpgradeResultIndex
OBJECT-TYPE
The sequential index, or upgrade step.
1.3.6.1.4.1.1991.1.1.2.16.1.1.5.1.1Unsigned32not-accessiblecurrent
brcdSwPackageUpgradeResultImageType
OBJECT-TYPE
The associated image type for this step of upgrade process.
1.3.6.1.4.1.1991.1.1.2.16.1.1.5.1.2BrcdImageTyperead-onlycurrent
brcdSwPackageUpgradeResultStatus
OBJECT-TYPE
The upgrade status for this particular image upgrade.
1.3.6.1.4.1.1991.1.1.2.16.1.1.5.1.3INTEGER {ok(1), downloadFailed(2), installFailed(3)}read-onlycurrent
brcdSwPackageUpgradeResultTimeStamp
OBJECT-TYPE
The timestamp when this upgrade step was performed.
1.3.6.1.4.1.1991.1.1.2.16.1.1.5.1.4TimeStampread-onlycurrent
brcdSwPackageUpgradeResultDescription
OBJECT-TYPE
Summary description for this particular image upgrade. This is empty when brcdSwPackageLoadResultStatus is 'ok'.
1.3.6.1.4.1.1991.1.1.2.16.1.1.5.1.5DisplayString (SIZE(0..255))read-onlycurrent
brcdSwIntfModAutoUpgrade
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.2.16.1.2
brcdSwIntfModAutoUpgradeMode
OBJECT-TYPE
Specifies the mode of LP Auto-upgrade. <TBD: more description>
1.3.6.1.4.1.1991.1.1.2.16.1.2.1INTEGER {unknown(1), disabled(2), tftp(3), slot1(4), slot2(5)}read-writecurrent
brcdSwIntfModAutoUpgradeTftpAddrType
OBJECT-TYPE
TFTP server IP address Type. Supported address types are ipv4(1) and ipv6(2). <TBD: more description>
1.3.6.1.4.1.1991.1.1.2.16.1.2.2InetAddressTyperead-writecurrent
brcdSwIntfModAutoUpgradeTftpAddr
OBJECT-TYPE
TFTP server IP address. <TBD: more description>
1.3.6.1.4.1.1991.1.1.2.16.1.2.3InetAddressread-writecurrent
brcdSwIntfModAutoUpgradeSrcPath
OBJECT-TYPE
Specifies the path to the topmost directory of the release package relative to the root directory. If the source is a TFTP server, the root is the TFTP root. If the source is slot1 or slot2, the root is top-level directory '/'
1.3.6.1.4.1.1991.1.1.2.16.1.2.4DisplayString (SIZE(0..128))read-writecurrent
brcdSwIntfModAutoUpgradeAllImages
OBJECT-TYPE
Used to specify an all-image upgrade. If set to true(1), the upgrade sequence will include the LP BOOT image. Default is false(2), which will upgrade only the LP FPGA images. For a read operation, this will return the configured value.
1.3.6.1.4.1.1991.1.1.2.16.1.2.5TruthValueread-writecurrent
snStackGen
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.5.1
snStackPriSwitchMode
OBJECT-TYPE
The Stackable Management Primary Switch mode either enabled or disabled and the default is disabled mode. enabled(1)...........primary switch enabled disabled(0)..........primary switch disabled
1.3.6.1.4.1.1991.1.1.5.1.1INTEGER {disabled(0), enabled(1)}read-writecurrent
snStackMaxSecSwitch
OBJECT-TYPE
The Maximum Secondary Switches are allowed in the Stackable Management Group.
1.3.6.1.4.1.1991.1.1.5.1.2Integer32read-onlycurrent
snStackTotalSecSwitch
OBJECT-TYPE
The Total Secondary Switches currently connected to the Stackable Management Group.
1.3.6.1.4.1.1991.1.1.5.1.3Integer32read-onlycurrent
snStackSyncAllSecSwitch
OBJECT-TYPE
Synchronize all the secondary switches in the Stackable Management Group with the following commands. device(2)...........device related parameters. global(3)...........global parameters. local(4)............local parameters. The return result of the above commands are either normal(0)...........normal condition. invalid(1)...........invalid result.
1.3.6.1.4.1.1991.1.1.5.1.4INTEGER {normal(0), invalid(1), device(2), global(3), local(4)}read-writecurrent
snStackSmSlotIndex
OBJECT-TYPE
The Slot 0 is the Master slot and Slot 1-8 are slaves. All the slot-based MIB data can be retrieved with respect to this slot index such as snChassis global MIB.
1.3.6.1.4.1.1991.1.1.5.1.5INTEGER (0..8)read-writecurrent
snStackFmpSetProcess
OBJECT-TYPE
normal(0) - The set process is either in an idle state or FMP-SET-SUCCESS state. pending(1) - The pending process is waiting for the result of an FMP-SET. failure(2) - The failure result of an FMP-SET.
1.3.6.1.4.1.1991.1.1.5.1.6INTEGER {normal(0), pending(1), failure(2)}read-onlycurrent
snStackSecSwitchInfo
OBJECT-IDENTITY
1.3.6.1.4.1.1991.1.1.5.2
snStackSecSwitchTable
OBJECT-TYPE
If snSwGroupOperMode is configured as basic mode which is VLAN by Port, Layer2 switching, then this table is valid. Each VLAN switch port could have a number of VLAN IDs.
1.3.6.1.4.1.1991.1.1.5.2.1not-accessiblecurrent
snStackSecSwitchEntry
OBJECT-TYPE
An entry in the Stackable Management Secondary Switch Information table.
1.3.6.1.4.1.1991.1.1.5.2.1.1not-accessiblecurrent
snStackSecSwitchIndex
OBJECT-TYPE
The secondary switch index must not be greater than the snStackMaxSecSwitch.
1.3.6.1.4.1.1991.1.1.5.2.1.1.1INTEGER (1..26)read-onlycurrent
snStackSecSwitchSlotId
OBJECT-TYPE
The secondary switch slot ID must be set before the Configuration command sent from the primary switch to the secondary switch either manually or automatically - snStackSecSwitchCfgCmd.
1.3.6.1.4.1.1991.1.1.5.2.1.1.2INTEGER (1..26)read-writecurrent
snStackSecSwitchPortCnts
OBJECT-TYPE
The number of ports in this secondary switch.
1.3.6.1.4.1.1991.1.1.5.2.1.1.3INTEGER (1..26)read-onlycurrent
snStackSecSwitchEnabled
OBJECT-TYPE
The secondary switch has been selected to Stackable Management Group.
1.3.6.1.4.1.1991.1.1.5.2.1.1.4INTEGER {disabled(0), enabled(1)}read-writecurrent
snStackSecSwitchAck
OBJECT-TYPE
The secondary switch has sent reponse to the primary switch.
1.3.6.1.4.1.1991.1.1.5.2.1.1.5INTEGER {disabled(0), enabled(1)}read-onlycurrent
snStackSecSwitchMacAddr
OBJECT-TYPE
The secondary switch physical address. The physical address represents a MAC Station.
1.3.6.1.4.1.1991.1.1.5.2.1.1.6MacAddressread-onlycurrent
snStackSecSwitchSyncCmd
OBJECT-TYPE
Synchronize the secondary switches in the Stackable Management Group with the following commands. device(2)...........device related parameters. global(3)...........global parameters. local(4)............local parameters. The return result of the above commands are either normal(0)...........normal condition. invalid(1)...........invalid result.
1.3.6.1.4.1.1991.1.1.5.2.1.1.7INTEGER {normal(0), invalid(1), device(2), global(3), local(4)}read-writecurrent
snStackSecSwitchIpAddr
OBJECT-TYPE
The secondary switch IP Address and is used for manual-command of snStackSecSwitchCfgCmd.
1.3.6.1.4.1.1991.1.1.5.2.1.1.8IpAddressread-writecurrent
snStackSecSwitchSubnetMask
OBJECT-TYPE
The secondary switch IP Subnet Mask and is used for manual-command of snStackSecSwitchCfgCmd.
1.3.6.1.4.1.1991.1.1.5.2.1.1.9IpAddressread-writecurrent
snStackSecSwitchCfgCmd
OBJECT-TYPE
snStackSecSwitchSlotId must be set before the Configuration command sent from the primary switch to the secondary switch either manually or automatically. auto(2)...........auto-configuration command sent. manual(3).........manual-configuration command sent. if manual-mode is used, snStackSecSwitchIpAddr and snStackSecSwitchSubnetMask must be first set before this command is sent. The return result of the above commands are either normal(0)...........normal condition. invalid(1)..........invalid result.
1.3.6.1.4.1.1991.1.1.5.2.1.1.10INTEGER {normal(0), invalid(1), auto(2), manual(3)}read-writecurrent