Wellfleet-ST2-MIB device MIB details by Wellfleet
Wellfleet-ST2-MIB file content
The SNMP protocol is used to for conveying information and commands between agents and managing entities. SNMP uses the User Datagram Protocol (UDP) as the transport protocol for passing data between managers and agents. The reasons for using UDP for SNMP are, firstly it has low overheads in comparison to TCP, which uses a 3-way hand shake for connection. Secondly, in congested networks, SNMP over TCP is a bad idea because TCP in order to maintain reliability will flood the network with retransmissions.
Management information (MIB) is represented as a collection of managed objects. These objects together form a virtual information base called MIB. An agent may implement many MIBs, but all agents must implement a particular MIB called MIB-II [16]. This standard defines variables for things such as interface statistics (interface speeds, MTU, octets sent, octets received, etc.) as well as various other things pertaining to the system itself (system location, system contact, etc.). The main goal of MIB-II is to provide general TCP/IP management information.
Use ActiveXperts Network Monitor 2024 to import vendor-specific MIB files, inclusing Wellfleet-ST2-MIB.
Vendor: | Wellfleet |
---|---|
Mib: | Wellfleet-ST2-MIB [download] [view objects] |
Tool: | ActiveXperts Network Monitor 2024 [download] (ships with advanced SNMP/MIB tools) |
Wellfleet-ST2-MIB DEFINITIONS ::= BEGIN -- Created by mdl2asn version 3.1 -- Creation date: Wed Aug 30 16:48:03 EDT 1995 IMPORTS IpAddress, Counter FROM RFC1155-SMI OBJECT-TYPE FROM RFC-1212 DisplayString FROM RFC1213-MIB wfReservationProtocolGroup FROM Wellfleet-COMMON-MIB; wfSt2Group OBJECT IDENTIFIER ::= { wfReservationProtocolGroup 2 } wfSt2BaseGroup OBJECT IDENTIFIER ::= { wfSt2Group 1 } wfSt2BaseDelete OBJECT-TYPE SYNTAX INTEGER { create(1), delete(2) } ACCESS read-write STATUS mandatory DESCRIPTION "This value determines whether ST2 is configured on this slot." DEFVAL { create } ::= { wfSt2BaseGroup 1 } wfSt2BaseDisable OBJECT-TYPE SYNTAX INTEGER { enable(1), disable(2) } ACCESS read-write STATUS mandatory DESCRIPTION "This value determines whether ST2 is to startup." DEFVAL { enable } ::= { wfSt2BaseGroup 2 } wfSt2BaseState OBJECT-TYPE SYNTAX INTEGER { notpresent(4), initializing(3), down(2), up(1) } ACCESS read-only STATUS mandatory DESCRIPTION "This value records the current state of ST2." DEFVAL { notpresent } ::= { wfSt2BaseGroup 3 } wfSt2BaseRoutingVers OBJECT-TYPE SYNTAX DisplayString ACCESS read-only STATUS mandatory DESCRIPTION "'This read-only parameter identifies the executor node's Routing version number. The format is the same as for the Network Management version number.'" ::= { wfSt2BaseGroup 4 } wfSt2BaseTunnelCapability OBJECT-TYPE SYNTAX INTEGER { yes(1), no(2) } ACCESS read-write STATUS mandatory DESCRIPTION "This is the tunnelling capability flag for the router." DEFVAL { no } ::= { wfSt2BaseGroup 5 } wfSt2BaseTunnelDisable OBJECT-TYPE SYNTAX INTEGER { enable(1), disable(2) } ACCESS read-write STATUS mandatory DESCRIPTION "This is the tunnelling enabled flag for the router." DEFVAL { disable } ::= { wfSt2BaseGroup 6 } wfSt2BaseAgentDBGMask OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "This is the ST2 base agent debug mask." ::= { wfSt2BaseGroup 7 } wfSt2BaseReservedParameter1 OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "This is the ST2 base reserved parameter." ::= { wfSt2BaseGroup 8 } wfSt2BaseReservedParameter2 OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "This is the ST2 base reserved parameter." ::= { wfSt2BaseGroup 9 } wfSt2CircuitTable OBJECT-TYPE SYNTAX SEQUENCE OF WfSt2CircuitEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "' Table of ST2 Circuit Configuration and Counter Records'" ::= { wfSt2Group 2 } wfSt2CircuitEntry OBJECT-TYPE SYNTAX WfSt2CircuitEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "'Parameters information about all circuits currently known. NOTE: depending on the type of object being querried (e.g., a level 1 vs. a level 2 router or end system) some variables may not be present.'" INDEX { wfSt2CircuitID } ::= { wfSt2CircuitTable 1 } WfSt2CircuitEntry ::= SEQUENCE { wfSt2CircuitDelete INTEGER, wfSt2CircuitDisable INTEGER, wfSt2CircuitCommonState INTEGER, wfSt2CircuitID INTEGER, wfSt2CircuitCommonType INTEGER, wfSt2CircuitIPAddress IpAddress, wfSt2CircuitTmoAccept INTEGER, wfSt2CircuitRetryAccept INTEGER, wfSt2CircuitTmoConnect INTEGER, wfSt2CircuitRetryConnect INTEGER, wfSt2CircuitTmoDisconnect INTEGER, wfSt2CircuitRetryDisconnect INTEGER, wfSt2CircuitTmoHidChange INTEGER, wfSt2CircuitRetryHidChange INTEGER, wfSt2CircuitTmoRefuse INTEGER, wfSt2CircuitRetryRefuse INTEGER, wfSt2CircuitTmoHello INTEGER, wfSt2CircuitRetryHello INTEGER, wfSt2CircuitMTU INTEGER, wfSt2CircuitDBGMask INTEGER, wfSt2CircuitHelloFailure INTEGER, wfSt2CircuitHidProposed INTEGER, wfSt2CircuitBadStCksum Counter, wfSt2CircuitEncodeBadParm Counter, wfSt2CircuitEncodeWrongParms Counter, wfSt2CircuitMsgInHidColl Counter, wfSt2CircuitMsgInNoCon Counter, wfSt2CircuitNotSt2 Counter, wfSt2CircuitParmMissing Counter, wfSt2CircuitScmpRefNum Counter, wfSt2CircuitScmp0rVlid Counter, wfSt2CircuitScmp0sVlid Counter, wfSt2CircuitScmpBadVlid Counter, wfSt2CircuitScmpCksum Counter, wfSt2CircuitScmpFailedResources Counter, wfSt2CircuitScmpFailedRoute Counter, wfSt2CircuitScmpLenInconsist Counter, wfSt2CircuitScmpRxTimeOut Counter, wfSt2CircuitScmpXmtCnt Counter, wfSt2CircuitScmpRcvCnt Counter, wfSt2CircuitDataXmtCnt Counter, wfSt2CircuitDataRcvCnt Counter, wfSt2CircuitSt2StreamCnt Counter, wfSt2CircuitHelloXmtCnt Counter, wfSt2CircuitHelloRcvCnt Counter, wfSt2CircuitHelloRAckCnt Counter, wfSt2CircuitLbPoliceDrop Counter, wfSt2CircuitPbsDropCnt Counter, wfSt2CircuitOverDrop2Cnt Counter, wfSt2CircuitPktCnt Counter, wfSt2CircuitScmpXmt Counter, wfSt2CircuitScmpRcv Counter, wfSt2CircuitBWAlloc Counter, wfSt2CircuitRsvdParameter1 INTEGER, wfSt2CircuitRsvdParameter2 INTEGER } wfSt2CircuitDelete OBJECT-TYPE SYNTAX INTEGER { create(1), delete(2) } ACCESS read-write STATUS mandatory DESCRIPTION "This value determines whether the circuit is configured" DEFVAL { create } ::= { wfSt2CircuitEntry 1 } wfSt2CircuitDisable OBJECT-TYPE SYNTAX INTEGER { enable(1), disable(2) } ACCESS read-write STATUS mandatory DESCRIPTION "'This value represents the circuit's Network Management operational state. NOTE: These values are incremented by one compared to the standard St2 values in order to maintain compliance with RFC 1155.'" DEFVAL { enable } ::= { wfSt2CircuitEntry 2 } wfSt2CircuitCommonState OBJECT-TYPE SYNTAX INTEGER { notpresent(4), initializing(3), down(2), up(1) } ACCESS read-only STATUS mandatory DESCRIPTION "This value represents the circuit's operational state." DEFVAL { down } ::= { wfSt2CircuitEntry 3 } wfSt2CircuitID OBJECT-TYPE SYNTAX INTEGER ACCESS read-only STATUS mandatory DESCRIPTION "A unique value for each known circuit." ::= { wfSt2CircuitEntry 4 } wfSt2CircuitCommonType OBJECT-TYPE SYNTAX INTEGER { sync(1), ethernet(6), fddi(15), smds(100), fr(101), atm(102), ring(103), ppp(104) } ACCESS read-only STATUS mandatory DESCRIPTION "'Represents the type of the circuit.'" ::= { wfSt2CircuitEntry 5 } wfSt2CircuitIPAddress OBJECT-TYPE SYNTAX IpAddress ACCESS read-write STATUS mandatory DESCRIPTION "Network Interface IP address of this ST2 circuit" ::= { wfSt2CircuitEntry 6 } wfSt2CircuitTmoAccept OBJECT-TYPE SYNTAX INTEGER { taccdef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit accept ..." DEFVAL { taccdef } ::= { wfSt2CircuitEntry 7 } wfSt2CircuitRetryAccept OBJECT-TYPE SYNTAX INTEGER { raccdef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive accept ..." DEFVAL { raccdef } ::= { wfSt2CircuitEntry 8 } wfSt2CircuitTmoConnect OBJECT-TYPE SYNTAX INTEGER { tcondef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit connect ..." DEFVAL { tcondef } ::= { wfSt2CircuitEntry 9 } wfSt2CircuitRetryConnect OBJECT-TYPE SYNTAX INTEGER { rcondef(5) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive connect ..." DEFVAL { rcondef } ::= { wfSt2CircuitEntry 10 } wfSt2CircuitTmoDisconnect OBJECT-TYPE SYNTAX INTEGER { tdiscondef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit disconnect ..." DEFVAL { tdiscondef } ::= { wfSt2CircuitEntry 11 } wfSt2CircuitRetryDisconnect OBJECT-TYPE SYNTAX INTEGER { rdiscondef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive disconnect ..." DEFVAL { rdiscondef } ::= { wfSt2CircuitEntry 12 } wfSt2CircuitTmoHidChange OBJECT-TYPE SYNTAX INTEGER { thidchgdef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit hid change ..." DEFVAL { thidchgdef } ::= { wfSt2CircuitEntry 13 } wfSt2CircuitRetryHidChange OBJECT-TYPE SYNTAX INTEGER { rhidchgdef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive Hid Change ..." DEFVAL { rhidchgdef } ::= { wfSt2CircuitEntry 14 } wfSt2CircuitTmoRefuse OBJECT-TYPE SYNTAX INTEGER { trefusedef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit refuse ..." DEFVAL { trefusedef } ::= { wfSt2CircuitEntry 15 } wfSt2CircuitRetryRefuse OBJECT-TYPE SYNTAX INTEGER { rrefusedef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive refuse ..." DEFVAL { rrefusedef } ::= { wfSt2CircuitEntry 16 } wfSt2CircuitTmoHello OBJECT-TYPE SYNTAX INTEGER { thellodef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit hello ..." DEFVAL { thellodef } ::= { wfSt2CircuitEntry 17 } wfSt2CircuitRetryHello OBJECT-TYPE SYNTAX INTEGER { rhellodef(5) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive hello ..." DEFVAL { rhellodef } ::= { wfSt2CircuitEntry 18 } wfSt2CircuitMTU OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "Maximum transmission unit ..." ::= { wfSt2CircuitEntry 19 } wfSt2CircuitDBGMask OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "Debug mask ..." ::= { wfSt2CircuitEntry 20 } wfSt2CircuitHelloFailure OBJECT-TYPE SYNTAX INTEGER { preserve(1), down(2) } ACCESS read-write STATUS mandatory DESCRIPTION "The stream is to be preserved even though helloing fails." DEFVAL { down } ::= { wfSt2CircuitEntry 21 } wfSt2CircuitHidProposed OBJECT-TYPE SYNTAX INTEGER { locally(1), remotely(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Hid proposed flag ..." DEFVAL { locally } ::= { wfSt2CircuitEntry 22 } wfSt2CircuitBadStCksum OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Bad St2 checksum ..." ::= { wfSt2CircuitEntry 23 } wfSt2CircuitEncodeBadParm OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Bad parameter encoding ..." ::= { wfSt2CircuitEntry 24 } wfSt2CircuitEncodeWrongParms OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Wrong parameter encoded ..." ::= { wfSt2CircuitEntry 25 } wfSt2CircuitMsgInHidColl OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Message in Hid ..." ::= { wfSt2CircuitEntry 26 } wfSt2CircuitMsgInNoCon OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Message in No ..." ::= { wfSt2CircuitEntry 27 } wfSt2CircuitNotSt2 OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Not an St2 packet ..." ::= { wfSt2CircuitEntry 28 } wfSt2CircuitParmMissing OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Circuit parameter missing ..." ::= { wfSt2CircuitEntry 29 } wfSt2CircuitScmpRefNum OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Number of Scmp refuses ..." ::= { wfSt2CircuitEntry 30 } wfSt2CircuitScmp0rVlid OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp Or Vlid ..." ::= { wfSt2CircuitEntry 31 } wfSt2CircuitScmp0sVlid OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp Os Vlid ..." ::= { wfSt2CircuitEntry 32 } wfSt2CircuitScmpBadVlid OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Bad Scmp Vlid ..." ::= { wfSt2CircuitEntry 33 } wfSt2CircuitScmpCksum OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp checksun ..." ::= { wfSt2CircuitEntry 34 } wfSt2CircuitScmpFailedResources OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp recources failed ..." ::= { wfSt2CircuitEntry 35 } wfSt2CircuitScmpFailedRoute OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp routed failed ..." ::= { wfSt2CircuitEntry 36 } wfSt2CircuitScmpLenInconsist OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp packet length inconsistent ..." ::= { wfSt2CircuitEntry 37 } wfSt2CircuitScmpRxTimeOut OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp receive time outs ..." ::= { wfSt2CircuitEntry 38 } wfSt2CircuitScmpXmtCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp transmit count ..." ::= { wfSt2CircuitEntry 39 } wfSt2CircuitScmpRcvCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp receive count ..." ::= { wfSt2CircuitEntry 40 } wfSt2CircuitDataXmtCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Transmited data count ..." ::= { wfSt2CircuitEntry 41 } wfSt2CircuitDataRcvCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "received data count ..." ::= { wfSt2CircuitEntry 42 } wfSt2CircuitSt2StreamCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "St2 stream count ..." ::= { wfSt2CircuitEntry 43 } wfSt2CircuitHelloXmtCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Hellos transmitted count ..." ::= { wfSt2CircuitEntry 44 } wfSt2CircuitHelloRcvCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Hellos received count ..." ::= { wfSt2CircuitEntry 45 } wfSt2CircuitHelloRAckCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Hellos received acknowledged coubt ..." ::= { wfSt2CircuitEntry 46 } wfSt2CircuitLbPoliceDrop OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Learning bridge police drop count ..." ::= { wfSt2CircuitEntry 47 } wfSt2CircuitPbsDropCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Pbs drop count ..." ::= { wfSt2CircuitEntry 48 } wfSt2CircuitOverDrop2Cnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Over drop ? count ..." ::= { wfSt2CircuitEntry 49 } wfSt2CircuitPktCnt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Circuit packet count ..." ::= { wfSt2CircuitEntry 50 } wfSt2CircuitScmpXmt OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp packets transmitted ..." ::= { wfSt2CircuitEntry 51 } wfSt2CircuitScmpRcv OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Scmp packets received ..." ::= { wfSt2CircuitEntry 52 } wfSt2CircuitBWAlloc OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "Circuit bandwith allocated ..." ::= { wfSt2CircuitEntry 53 } wfSt2CircuitRsvdParameter1 OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "Circuit reserved parameter" ::= { wfSt2CircuitEntry 54 } wfSt2CircuitRsvdParameter2 OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "Circuit reserved parameter" ::= { wfSt2CircuitEntry 55 } wfSt2NeighborTable OBJECT-TYPE SYNTAX SEQUENCE OF WfSt2NeighborEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "The ST2 neighbor routing table" ::= { wfSt2Group 3 } wfSt2NeighborEntry OBJECT-TYPE SYNTAX WfSt2NeighborEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Neighbor Table" INDEX { wfSt2NeighborNxtHopIPAddr } ::= { wfSt2NeighborTable 1 } WfSt2NeighborEntry ::= SEQUENCE { wfSt2NeighborDelete INTEGER, wfSt2NeighborDisable INTEGER, wfSt2NeighborNxtHopIPAddr IpAddress, wfSt2NeighborRteExplr INTEGER, wfSt2NeighborHelloProtocol INTEGER, wfSt2NeighborType INTEGER, wfSt2NeighborPriorityLevel INTEGER, wfSt2NeighborRsvdParameter1 INTEGER, wfSt2NeighborRsvdParameter2 INTEGER, wfSt2NeighborLocalIPAddress IpAddress, wfSt2NeighborTmoAccept INTEGER, wfSt2NeighborRetryAccept INTEGER, wfSt2NeighborTmoConnect INTEGER, wfSt2NeighborRetryConnect INTEGER, wfSt2NeighborTmoDisconnect INTEGER, wfSt2NeighborRetryDisconnect INTEGER, wfSt2NeighborTmoHidChange INTEGER, wfSt2NeighborRetryHidChange INTEGER, wfSt2NeighborTmoRefuse INTEGER, wfSt2NeighborRetryRefuse INTEGER, wfSt2NeighborTmoHello INTEGER, wfSt2NeighborRetryHello INTEGER } wfSt2NeighborDelete OBJECT-TYPE SYNTAX INTEGER { create(1), delete(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Determines whether the base record is configured" DEFVAL { create } ::= { wfSt2NeighborEntry 1 } wfSt2NeighborDisable OBJECT-TYPE SYNTAX INTEGER { enable(1), disable(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Determines whether the base record is active" DEFVAL { enable } ::= { wfSt2NeighborEntry 2 } wfSt2NeighborNxtHopIPAddr OBJECT-TYPE SYNTAX IpAddress ACCESS read-only STATUS mandatory DESCRIPTION "IP address of next hop router" ::= { wfSt2NeighborEntry 3 } wfSt2NeighborRteExplr OBJECT-TYPE SYNTAX INTEGER { yes(1), no(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Is the neighbor capable of route exploration" DEFVAL { no } ::= { wfSt2NeighborEntry 4 } wfSt2NeighborHelloProtocol OBJECT-TYPE SYNTAX INTEGER { enable(1), active(2), disable(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Helloing in use" DEFVAL { enable } ::= { wfSt2NeighborEntry 5 } wfSt2NeighborType OBJECT-TYPE SYNTAX INTEGER { local(1), tunnel(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Neighbor type, local or tunnel" DEFVAL { local } ::= { wfSt2NeighborEntry 6 } wfSt2NeighborPriorityLevel OBJECT-TYPE SYNTAX INTEGER(1..16) ACCESS read-write STATUS mandatory DESCRIPTION "Route exploration or tunnel priority level" DEFVAL { 8 } ::= { wfSt2NeighborEntry 7 } wfSt2NeighborRsvdParameter1 OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "neighbor reserved parameter" ::= { wfSt2NeighborEntry 8 } wfSt2NeighborRsvdParameter2 OBJECT-TYPE SYNTAX INTEGER ACCESS read-write STATUS mandatory DESCRIPTION "neighbor reserved parameter" ::= { wfSt2NeighborEntry 9 } wfSt2NeighborLocalIPAddress OBJECT-TYPE SYNTAX IpAddress ACCESS read-write STATUS mandatory DESCRIPTION "Network Interface IP address of the local tunnel endpoint" DEFVAL { 0 } ::= { wfSt2NeighborEntry 10 } wfSt2NeighborTmoAccept OBJECT-TYPE SYNTAX INTEGER { taccdef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit accept ..." DEFVAL { taccdef } ::= { wfSt2NeighborEntry 11 } wfSt2NeighborRetryAccept OBJECT-TYPE SYNTAX INTEGER { raccdef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive accept ..." DEFVAL { raccdef } ::= { wfSt2NeighborEntry 12 } wfSt2NeighborTmoConnect OBJECT-TYPE SYNTAX INTEGER { tcondef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit connect ..." DEFVAL { tcondef } ::= { wfSt2NeighborEntry 13 } wfSt2NeighborRetryConnect OBJECT-TYPE SYNTAX INTEGER { rcondef(5) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive connect ..." DEFVAL { rcondef } ::= { wfSt2NeighborEntry 14 } wfSt2NeighborTmoDisconnect OBJECT-TYPE SYNTAX INTEGER { tdiscondef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit disconnect ..." DEFVAL { tdiscondef } ::= { wfSt2NeighborEntry 15 } wfSt2NeighborRetryDisconnect OBJECT-TYPE SYNTAX INTEGER { rdiscondef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive disconnect ..." DEFVAL { rdiscondef } ::= { wfSt2NeighborEntry 16 } wfSt2NeighborTmoHidChange OBJECT-TYPE SYNTAX INTEGER { thidchgdef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit hid change ..." DEFVAL { thidchgdef } ::= { wfSt2NeighborEntry 17 } wfSt2NeighborRetryHidChange OBJECT-TYPE SYNTAX INTEGER { rhidchgdef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive Hid Change ..." DEFVAL { rhidchgdef } ::= { wfSt2NeighborEntry 18 } wfSt2NeighborTmoRefuse OBJECT-TYPE SYNTAX INTEGER { trefusedef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit refuse ..." DEFVAL { trefusedef } ::= { wfSt2NeighborEntry 19 } wfSt2NeighborRetryRefuse OBJECT-TYPE SYNTAX INTEGER { rrefusedef(3) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive refuse ..." DEFVAL { rrefusedef } ::= { wfSt2NeighborEntry 20 } wfSt2NeighborTmoHello OBJECT-TYPE SYNTAX INTEGER { thellodef(10) } ACCESS read-write STATUS mandatory DESCRIPTION "Transmit hello ..." DEFVAL { thellodef } ::= { wfSt2NeighborEntry 21 } wfSt2NeighborRetryHello OBJECT-TYPE SYNTAX INTEGER { rhellodef(5) } ACCESS read-write STATUS mandatory DESCRIPTION "Receive hello ..." DEFVAL { rhellodef } ::= { wfSt2NeighborEntry 22 } END -- Wellfleet-ST2-MIB