-- ********************************************************************** -- -- Product: 3Com LinkBuilder Repeater Groups -- MIB Version: 2.00A -- Comments: The MIB is used in conjunction with version 2.00 of -- the FMS agent software, which supports all FMS, FMS II -- and 10BT/BTi units. This release is hosted on a 3C16030 -- FMS Management Module. -- -- History: Date Reason for Change -- 4th October 1993 Created from 1.30 MIB. -- PDDRM Monitor Port Table now -- supports per-port control of -- link-state and partition traps. -- 11th November 1993 Created from 1.40 MIB. -- Added support Resilience. -- Added support for FMS II Units. -- Added support for Modular Bridge. -- Added SMART MIB Objects. -- -- ********************************************************************** -- Copyright 3Com Technologies Limited. (1991) (1992) (1993) -- ********************************************************************** -- -------------------------------------------------------------------- -- ************ THE STARTING POINT FOR ALL MIB DEFINITIONS ************ -- -------------------------------------------------------------------- LBHUB-REPEATER-MIB DEFINITIONS ::= BEGIN IMPORTS mgmt, NetworkAddress, IpAddress, Counter, Gauge, TimeTicks, enterprises FROM RFC1155-SMI OBJECT-TYPE FROM RFC-1212 TRAP-TYPE FROM RFC-1215 DisplayString, PhysAddress FROM RFC1213-MIB; -- This MIB module uses the extended OBJECT-TYPE macro as -- defined in RFC 1212; -- MIB-II (same prefix as MIB-I) mib-2 OBJECT IDENTIFIER ::= { mgmt 1 } -- textual conventions DisplayString ::= OCTET STRING -- 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) PhysAddress ::= OCTET STRING -- 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. -- groups in MIB-II system OBJECT IDENTIFIER ::= { mib-2 1 } interfaces OBJECT IDENTIFIER ::= { mib-2 2 } at OBJECT IDENTIFIER ::= { mib-2 3 } ip OBJECT IDENTIFIER ::= { mib-2 4 } icmp OBJECT IDENTIFIER ::= { mib-2 5 } tcp OBJECT IDENTIFIER ::= { mib-2 6 } udp OBJECT IDENTIFIER ::= { mib-2 7 } egp OBJECT IDENTIFIER ::= { mib-2 8 } -- historical (some say hysterical) -- cmot OBJECT IDENTIFIER ::= { mib-2 9 } transmission OBJECT IDENTIFIER ::= { mib-2 10 } snmp OBJECT IDENTIFIER ::= { mib-2 11 } dot1dBridge OBJECT IDENTIFIER ::= { mib-2 17 } -- -------------------------------------------------------------------- -- ******************* PRIVATE BRANCH FOR 3Com ************************ -- -------------------------------------------------------------------- -- private OBJECT IDENTIFIER ::= { internet 4 } -- enterprises OBJECT IDENTIFIER ::= { private 1 } a3Com OBJECT IDENTIFIER ::= { enterprises 43 } products OBJECT IDENTIFIER ::= { a3Com 1 } terminalServer OBJECT IDENTIFIER ::= { products 1 } dedicatedBridgeServer OBJECT IDENTIFIER ::= { products 2 } dedicatedRouteServer OBJECT IDENTIFIER ::= { products 3 } brouter OBJECT IDENTIFIER ::= { products 4 } genericMSWorkstation OBJECT IDENTIFIER ::= { products 5 } genericMSServer OBJECT IDENTIFIER ::= { products 6 } genericUnixServer OBJECT IDENTIFIER ::= { products 7 } hub OBJECT IDENTIFIER ::= { products 8 } cards OBJECT IDENTIFIER ::= { products 9 } chipsets OBJECT IDENTIFIER ::= { products 10 } linkBuilder3GH OBJECT IDENTIFIER ::= { hub 1 } linkBuilder10BTi OBJECT IDENTIFIER ::= { hub 2 } linkBuilderECS OBJECT IDENTIFIER ::= { hub 3 } linkBuilderMSH OBJECT IDENTIFIER ::= { hub 4 } linkBuilderFMS OBJECT IDENTIFIER ::= { hub 5 } linkBuilderFDDIwg OBJECT IDENTIFIER ::= { hub 6 } linkBuilderFMSII OBJECT IDENTIFIER ::= { hub 7 } linkSwitchFMS OBJECT IDENTIFIER ::= { hub 8 } linkSwitchMSH OBJECT IDENTIFIER ::= { hub 9 } linkBuilderFMSLBridge OBJECT IDENTIFIER ::= { hub 10 } linkBuilder3GH-cards OBJECT IDENTIFIER ::= { cards 1 } linkBuilder10BTi-cards OBJECT IDENTIFIER ::= { cards 2 } linkBuilderECS-cards OBJECT IDENTIFIER ::= { cards 3 } linkBuilderMSH-cards OBJECT IDENTIFIER ::= { cards 4 } linkBuilderFMS-cards OBJECT IDENTIFIER ::= { cards 5 } linkBuilderFMSII-cards OBJECT IDENTIFIER ::= { cards 6 } linkBuilder10BTi-cards-utp OBJECT IDENTIFIER ::= { linkBuilder10BTi-cards 1 } linkBuilder10BT-cards-utp OBJECT IDENTIFIER ::= { linkBuilder10BTi-cards 2 } linkBuilderFMS-cards-utp OBJECT IDENTIFIER ::= { linkBuilderFMS-cards 1 } linkBuilderFMS-cards-coax OBJECT IDENTIFIER ::= { linkBuilderFMS-cards 2 } linkBuilderFMS-cards-fiber OBJECT IDENTIFIER ::= { linkBuilderFMS-cards 3 } linkBuilderFMS-cards-12fiber OBJECT IDENTIFIER ::= { linkBuilderFMS-cards 4 } linkBuilderFMS-cards-24utp OBJECT IDENTIFIER ::= { linkBuilderFMS-cards 5 } linkBuilderFMSII-cards-12tp-rj45 OBJECT IDENTIFIER ::= { linkBuilderFMSII-cards 1 } linkBuilderFMSII-cards-10coax-bnc OBJECT IDENTIFIER ::= { linkBuilderFMSII-cards 2 } linkBuilderFMSII-cards-6fiber-st OBJECT IDENTIFIER ::= { linkBuilderFMSII-cards 3 } linkBuilderFMSII-cards-12fiber-st OBJECT IDENTIFIER ::= { linkBuilderFMSII-cards 4 } linkBuilderFMSII-cards-24tp-rj45 OBJECT IDENTIFIER ::= { linkBuilderFMSII-cards 5 } linkBuilderFMSII-cards-24tp-telco OBJECT IDENTIFIER ::= { linkBuilderFMSII-cards 6 } --experimental OBJECT IDENTIFIER ::= { a3Com 2 } amp-mib OBJECT IDENTIFIER ::= { a3Com 3 } genericTrap OBJECT IDENTIFIER ::= { a3Com 4 } viewBuilderApps OBJECT IDENTIFIER ::= { a3Com 5 } specificTrap OBJECT IDENTIFIER ::= { a3Com 6 } linkBuilder3GH-mib OBJECT IDENTIFIER ::= { a3Com 7 } linkBuilder10BTi-mib OBJECT IDENTIFIER ::= { a3Com 8 } linkBuilderECS-mib OBJECT IDENTIFIER ::= { a3Com 9 } generic OBJECT IDENTIFIER ::= { a3Com 10 } genExperimental OBJECT IDENTIFIER ::= { generic 1 } setup OBJECT IDENTIFIER ::= { generic 2 } sysLoader OBJECT IDENTIFIER ::= { generic 3 } security OBJECT IDENTIFIER ::= { generic 4 } gauges OBJECT IDENTIFIER ::= { generic 5 } asciiAgent OBJECT IDENTIFIER ::= { generic 6 } serialIf OBJECT IDENTIFIER ::= { generic 7 } repeaterMgmt OBJECT IDENTIFIER ::= { generic 8 } endStation OBJECT IDENTIFIER ::= { generic 9 } localSnmp OBJECT IDENTIFIER ::= { generic 10 } manager OBJECT IDENTIFIER ::= { generic 11 } unusedGeneric12 OBJECT IDENTIFIER ::= { generic 12 } chassis OBJECT IDENTIFIER ::= { generic 14 } mrmResilience OBJECT IDENTIFIER ::= { generic 15 } tokenRing OBJECT IDENTIFIER ::= { generic 16 } multiRepeater OBJECT IDENTIFIER ::= { generic 17 } bridgeMgmt OBJECT IDENTIFIER ::= { generic 18 } fault OBJECT IDENTIFIER ::= { generic 19 } poll OBJECT IDENTIFIER ::= { generic 20 } powerSupply OBJECT IDENTIFIER ::= { generic 21 } testData OBJECT IDENTIFIER ::= { genExperimental 1 } ifExtensions OBJECT IDENTIFIER ::= { genExperimental 2 } netBuilder-mib OBJECT IDENTIFIER ::= { a3Com 11 } lBridgeECS-mib OBJECT IDENTIFIER ::= { a3Com 12 } deskMan-mib OBJECT IDENTIFIER ::= { a3Com 13 } linkBuilderMSH-mib OBJECT IDENTIFIER ::= { a3Com 14 } linkBuilderFMS-mib OBJECT IDENTIFIER ::= { a3Com 15 } linkBuilderFDDI-wghub-mib OBJECT IDENTIFIER ::= { a3Com 16 } linkSwitch-mib OBJECT IDENTIFIER ::= { a3Com 17 } snmpDot3RptrMgt OBJECT IDENTIFIER ::= {mib-2 22} MacAddress ::= OCTET STRING (SIZE(6)) rptrBasicPackage OBJECT IDENTIFIER ::= {snmpDot3RptrMgt 1} rptrMonitorPackage OBJECT IDENTIFIER ::= {snmpDot3RptrMgt 2} rptrAddrTrackPackage OBJECT IDENTIFIER ::= {snmpDot3RptrMgt 3} rptrRptrInfo OBJECT IDENTIFIER ::= {rptrBasicPackage 1} rptrGroupInfo OBJECT IDENTIFIER ::= {rptrBasicPackage 2} rptrPortInfo OBJECT IDENTIFIER ::= {rptrBasicPackage 3} rptrMonitorRptrInfo OBJECT IDENTIFIER ::= {rptrMonitorPackage 1} rptrMonitorGroupInfo OBJECT IDENTIFIER ::= {rptrMonitorPackage 2} rptrMonitorPortInfo OBJECT IDENTIFIER ::= {rptrMonitorPackage 3} rptrAddrTrackRptrInfo OBJECT IDENTIFIER ::= {rptrAddrTrackPackage 1} -- this subtree is currently unused rptrAddrTrackGroupInfo OBJECT IDENTIFIER ::= {rptrAddrTrackPackage 2} -- this subtree is currently unused rptrAddrTrackPortInfo OBJECT IDENTIFIER ::= {rptrAddrTrackPackage 3} -- -- The BASIC GROUP -- -- Implementation of the Basic Group is mandatory for all -- managed repeaters. -- -- Basic Repeater Information -- -- Configuration, STATUS, and control objects for the overall -- repeater -- rptrGroupCapacity OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "The rptrGroupCapacity is the number of groups that can be contained within the repeater. Within each managed repeater, the groups are uniquely numbered in the range from 1 to rptrGroupCapacity. Some groups may not be present in the repeater, in which case the actual number of groups present will be less than rptrGroupCapacity. The number of groups present will never be greater than rptrGroupCapacity. Note: In practice, this will generally be the number of field-replaceable units (i.e., modules, cards, or boards) that can fit in the physical repeater enclosure, and the group numbers will correspond to numbers marked on the physical enclosure." ::= {rptrRptrInfo 1} rptrOperSTATUS OBJECT-TYPE SYNTAX INTEGER { other(1), -- undefined or unknown STATUS ok(2), -- no known failures rptrFailure(3), -- repeater-related failure groupFailure(4), -- group-related failure portFailure(5), -- port-related failure generalFailure(6) -- failure, unspecified type } ACCESS read-only STATUS mandatory DESCRIPTION "The rptrOperSTATUS object indicates the operational state of the repeater. The rptrHealthText object may be consulted for more specific information about the state of the repeater's health. In the case of multiple kinds of failures (e.g., repeater failure and port failure), the value of this attribute shall reflect the highest priority failure in the following order, listed highest priority first: rptrFailure(3) groupFailure(4) portFailure(5) generalFailure(6)." ::= {rptrRptrInfo 2} rptrHealthText OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "The health text object is a text string that provides information relevant to the operational state of the repeater. Agents may use this string to provide detailed information on current failures, including how they were detected, and/or instructions for problem resolution. The contents are agent-specific." ::= {rptrRptrInfo 3} rptrReset OBJECT-TYPE SYNTAX INTEGER { noReset(1), reset(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Setting this object to reset(2) causes a transition to the START state of Fig 9-2 in section 9 [IEEE 802.3 Std]. Setting this object to noReset(1) has no effect. The agent will always return the value noReset(1) when this object is read. After receiving a request to set this variable to reset(2), the agent is allowed to delay the reset for a short period. For example, the implementor may choose to delay the reset long enough to allow the SNMP response to be transmitted. In any event, the SNMP response must be transmitted. This action does not reset the management counters defined in this document nor does it affect the portAdminSTATUS parameters. Included in this action is the execution of a disruptive Self-Test with the following characteristics: a) The nature of the tests is not specified. b) The test resets the repeater but without affecting management information about the repeater. c) The test does not inject packets onto any segment. d) Packets received during the test may or may not be transferred. e) The test does not interfere with management functions. After performing this self-test, the agent will update the repeater health information (including rptrOperSTATUS and rptrHealthText), and send a rptrHealth trap." ::= {rptrRptrInfo 4} rptrNonDisruptTest OBJECT-TYPE SYNTAX INTEGER { noSelfTest(1), selfTest(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Setting this object to selfTest(2) causes the repeater to perform a agent-specific, non- disruptive self-test that has the following characteristics: a) The nature of the tests is not specified. b) The test does not change the state of the repeater or management information about the repeater. c) The test does not inject packets onto any segment. d) The test does not prevent the relay of any packets. e) The test does not interfere with management functions. After performing this test, the agent will update the repeater health information (including rptrOperSTATUS and rptrHealthText) and send a rptrHealth trap. Note that this definition allows returning an 'okay' result after doing a trivial test. Setting this object to noSelfTest(1) has no effect. The agent will always return the value noSelfTest(1) when this object is read." ::= {rptrRptrInfo 5} rptrTotalPartitionedPorts OBJECT-TYPE SYNTAX Gauge ACCESS read-only STATUS mandatory DESCRIPTION "This object returns the total number of ports in the repeater whose current state meets all three of the following criteria: rptrPortOperSTATUS does not have the value notPresent(3), rptrPortAdminSTATUS is enabled(1), and rptrPortAutoPartitionState is autoPartitioned(2)." ::= {rptrRptrInfo 6} -- -- The Basic Port Group Table -- rptrGroupTable OBJECT-TYPE SYNTAX SEQUENCE OF RptrGroupEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Table of descriptive and STATUS information about the groups of ports." ::= {rptrGroupInfo 1} rptrGroupEntry OBJECT-TYPE SYNTAX RptrGroupEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "An entry in the table, containing information about a single group of ports." INDEX {rptrGroupIndex} ::= {rptrGroupTable 1} RptrGroupEntry ::= SEQUENCE { rptrGroupIndex INTEGER, rptrGroupDescr DisplayString, rptrGroupObjectID OBJECT IDENTIFIER, rptrGroupOperSTATUS INTEGER, rptrGroupLastOperSTATUSChange TimeTicks, rptrGroupPortCapacity INTEGER } rptrGroupIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the group within the repeater for which this entry contains information. This value is never greater than rptrGroupCapacity." ::= {rptrGroupEntry 1} rptrGroupDescr OBJECT-TYPE SYNTAX DisplayString (SIZE (0..255)) ACCESS read-only STATUS mandatory DESCRIPTION "A textual description of the group. This value should include the full name and version identification of the group's hardware type and indicate how the group is differentiated from other types of groups in the repeater. Plug-in Module, Rev A' or 'Barney Rubble 10BASE-T 4-port SIMM socket Version 2.1' are examples of valid group descriptions. It is mandatory that this only contain printable ASCII characters." ::= {rptrGroupEntry 2} rptrGroupObjectID OBJECT-TYPE SYNTAX OBJECT IDENTIFIER ACCESS read-only STATUS mandatory DESCRIPTION "The vendor's authoritative identification of the group. This value may be allocated within the SMI enterprises subtree (1.3.6.1.4.1) and provides a straight-forward and unambiguous means for determining what kind of group is being managed. For example, this object could take the value 1.3.6.1.4.1.4242.1.2.14 if vendor 'Flintstones, Inc.' was assigned the subtree 1.3.6.1.4.1.4242, and had assigned the identifier 1.3.6.1.4.1.4242.1.2.14 to its 'Wilma Flintstone 6-Port FOIRL Plug-in Module.'" ::= {rptrGroupEntry 3} rptrGroupOperSTATUS OBJECT-TYPE SYNTAX INTEGER { other(1), operational(2), malfunctioning(3), notPresent(4), underTest(5), resetInProgress(6) } ACCESS read-only STATUS mandatory DESCRIPTION "An object that indicates the operational STATUS of the group. A STATUS of notPresent(4) indicates that the group is temporarily or permanently physically and/or logically not a part of the repeater. It is an implementation-specific matter as to whether the agent effectively removes notPresent entries from the table. A STATUS of operational(2) indicates that the group is functioning, and a STATUS of malfunctioning(3) indicates that the group is malfunctioning in some way." ::= {rptrGroupEntry 4} rptrGroupLastOperSTATUSChange OBJECT-TYPE SYNTAX TimeTicks ACCESS read-only STATUS mandatory DESCRIPTION "An object that contains the value of sysUpTime at the time that the value of the rptrGroupOperSTATUS object for this group last changed. A value of zero indicates that the group's operational STATUS has not changed since the agent last restarted." ::= {rptrGroupEntry 5} rptrGroupPortCapacity OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "The rptrGroupPortCapacity is the number of ports that can be contained within the group. Valid range is 1-1024. Within each group, the ports are uniquely numbered in the range from 1 to rptrGroupPortCapacity. Note: In practice, this will generally be the number of ports on a module, card, or board, and the port numbers will correspond to numbers marked on the physical embodiment." ::= {rptrGroupEntry 6} -- -- The Basic Port Table -- rptrPortTable OBJECT-TYPE SYNTAX SEQUENCE OF RptrPortEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Table of descriptive and STATUS information about the ports." ::= {rptrPortInfo 1} rptrPortEntry OBJECT-TYPE SYNTAX RptrPortEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "An entry in the table, containing information about a single port." INDEX {rptrPortGroupIndex,rptrPortIndex} ::= {rptrPortTable 1} RptrPortEntry ::= SEQUENCE { rptrPortGroupIndex INTEGER, rptrPortIndex INTEGER, rptrPortAdminSTATUS INTEGER, rptrPortAutoPartitionState INTEGER, rptrPortOperSTATUS INTEGER } rptrPortGroupIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the group containing the port for which this entry contains information." ::= {rptrPortEntry 1} rptrPortIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the port within the group for which this entry contains information. This value can never be greater than rptrGroupPortCapacity for the associated group." ::= {rptrPortEntry 2} rptrPortAdminSTATUS OBJECT-TYPE SYNTAX INTEGER { enabled(1), disabled(2) } ACCESS read-write STATUS mandatory DESCRIPTION "Setting this object to disabled(2) disables the port. A disabled port neither transmits nor receives. Once disabled, a port must be explicitly enabled to restore operation. A port which is disabled when power is lost or when a reset is exerted shall remain disabled when normal operation resumes. The admin STATUS takes precedence over auto- partition and functionally operates between the auto-partition mechanism and the AUI/PMA. Setting this object to enabled(1) enables the port and exerts a BEGIN on the port's auto-partition state machine. (In effect, when a port is disabled, the value of rptrPortAutoPartitionState for that port is frozen until the port is next enabled. When the port becomes enabled, the rptrPortAutoPartitionState becomes notAutoPartitioned(1), regardless of its pre-disabling state.)" ::= {rptrPortEntry 3} rptrPortAutoPartitionState OBJECT-TYPE SYNTAX INTEGER { notAutoPartitioned(1), autoPartitioned(2) } ACCESS read-only STATUS mandatory DESCRIPTION "The autoPartitionState flag indicates whether the port is currently partitioned by the repeater's auto-partition protection. The conditions that cause port partitioning are specified in partition state machine in Section 9 [IEEE 802.3 Std]. They are not differentiated here." ::= {rptrPortEntry 4} rptrPortOperSTATUS OBJECT-TYPE SYNTAX INTEGER { operational(1), notOperational(2), notPresent(3) } ACCESS read-only STATUS mandatory DESCRIPTION "This object indicates the port's operational STATUS. The notPresent(3) status indicates the port is physically removed (note this may or may not be possible depending on the type of port.) The operational(1) STATUS indicates that the port is enabled (see rptrPortAdminSTATUS) and working, even though it might be auto-partitioned (see rptrPortAutoPartitionState). If this object has the value operational(1) and rptrPortAdminSTATUS is set to disabled(2), it is expected that this object's value will soon change to notOperational(2)." ::= {rptrPortEntry 5} -- -- The MONITOR GROUP -- -- Implementation of this group is optional, but within the -- group all elements are mandatory. If a managed repeater -- implements any part of this group, the entire group shall -- be implemented. -- -- Repeater Monitor Information -- -- Performance monitoring statistics for the repeater -- rptrMonitorTransmitCollisions OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented every time the repeater state machine enters the TRANSMIT COLLISION state from any state other than ONE PORT LEFT (Ref: Fig 9-2, IEEE 802.3 Std). The approximate minimum time for rollover of this counter is 16 hours." ::= {rptrMonitorRptrInfo 1} -- -- The Group Monitor Table -- rptrMonitorGroupTable OBJECT-TYPE SYNTAX SEQUENCE OF RptrMonitorGroupEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Table of performance and error statistics for the groups." ::= {rptrMonitorGroupInfo 1} rptrMonitorGroupEntry OBJECT-TYPE SYNTAX RptrMonitorGroupEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "An entry in the table, containing total performance and error statistics for a single group. Regular retrieval of the information in this table provides a means of tracking the performance and health of the networked devices attached to this group's ports. The counters in this table are redundant in the sense that they are the summations of information already available through other objects. However, these sums provide a considerable optimization of network management traffic over the otherwise necessary retrieval of the individual counters included in each sum." INDEX {rptrMonitorGroupIndex} ::= {rptrMonitorGroupTable 1} RptrMonitorGroupEntry ::= SEQUENCE { rptrMonitorGroupIndex INTEGER, rptrMonitorGroupTotalFrames Counter, rptrMonitorGroupTotalOctets Counter, rptrMonitorGroupTotalErrors Counter } rptrMonitorGroupIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the group within the repeater for which this entry contains information." ::= {rptrMonitorGroupEntry 1} rptrMonitorGroupTotalFrames OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "The total number of frames of valid frame length that have been received on the ports in this group and for which the FCSError and CollisionEvent signals were not asserted. This counter is the summation of the values of the rptrMonitorPortReadableFrames counters for all of the ports in the group. This statistic provides one of the parameters necessary for obtaining the packet error rate. The approximate minimum time for rollover of this counter is 80 hours." ::= {rptrMonitorGroupEntry 2} rptrMonitorGroupTotalOctets OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "The total number of octets contained in the valid frames that have been received on the ports in this group. This counter is the summation of the values of the rptrMonitorPortReadableOctets counters for all of the ports in the group. This statistic provides an indicator of the total data transferred. The approximate minimum time for rollover of this counter is 58 minutes." ::= {rptrMonitorGroupEntry 3} rptrMonitorGroupTotalErrors OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "The total number of errors which have occurred on all of the ports in this group. This counter is the summation of the values of the rptrMonitorPortTotalErrors counters for all of the ports in the group." ::= {rptrMonitorGroupEntry 4} -- -- The Port Monitor Table -- rptrMonitorPortTable OBJECT-TYPE SYNTAX SEQUENCE OF RptrMonitorPortEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Table of performance and error statistics for the ports." ::= {rptrMonitorPortInfo 1} rptrMonitorPortEntry OBJECT-TYPE SYNTAX RptrMonitorPortEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "An entry in the table, containing performance and error statistics for a single port." INDEX {rptrMonitorPortGroupIndex,rptrMonitorPortIndex} ::= {rptrMonitorPortTable 1} RptrMonitorPortEntry ::= SEQUENCE { rptrMonitorPortGroupIndex INTEGER, rptrMonitorPortIndex INTEGER, rptrMonitorPortReadableFrames Counter, rptrMonitorPortReadableOctets Counter, rptrMonitorPortFCSErrors Counter, rptrMonitorPortAlignmentErrors Counter, rptrMonitorPortFrameTooLongs Counter, rptrMonitorPortShortEvents Counter, rptrMonitorPortRunts Counter, rptrMonitorPortCollisions Counter, rptrMonitorPortLateEvents Counter, rptrMonitorPortVeryLongEvents Counter, rptrMonitorPortDataRateMismatches Counter, rptrMonitorPortAutoPartitions Counter, rptrMonitorPortTotalErrors Counter } rptrMonitorPortGroupIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the group containing the port for which this entry contains information." ::= {rptrMonitorPortEntry 1} rptrMonitorPortIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the port within the group for which this entry contains information." ::= {rptrMonitorPortEntry 2} rptrMonitorPortReadableFrames OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This object is the number of frames of valid frame length that have been received on this port. This counter is incremented by one for each frame received on this port whose OctetCount is greater than or equal to minFrameSize and less than or equal to maxFrameSize (Ref: IEEE 802.3 Std, 4.4.2.1) and for which the FCSError and CollisionEvent signals are not asserted. This statistic provides one of the parameters necessary for obtaining the packet error rate. The approximate minimum time for rollover of this counter is 80 hours." ::= {rptrMonitorPortEntry 3} rptrMonitorPortReadableOctets OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This object is the number of octets contained in valid frames that have been received on this port. This counter is incremented by OctetCount for each frame received on this port which has been determined to be a readable frame (i.e., including FCS octets but excluding framing bits and dribble bits). This statistic provides an indicator of the total data transferred. The approximate minimum time for rollover of this counter is 58 minutes." ::= {rptrMonitorPortEntry 4} rptrMonitorPortFCSErrors OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each frame received on this port with the FCSError signal asserted and the FramingError and CollisionEvent signals deasserted and whose OctetCount is greater than or equal to minFrameSize and less than or equal to maxFrameSize (Ref: 4.4.2.1, IEEE 802.3 Std). The approximate minimum time for rollover of this counter is 80 hours." ::= {rptrMonitorPortEntry 5} rptrMonitorPortAlignmentErrors OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each frame received on this port with the FCSError and FramingError signals asserted and CollisionEvent signal deasserted and whose OctetCount is greater than or equal to minFrameSize and less than or equal to maxFrameSize (Ref: IEEE 802.3 Std, 4.4.2.1). If rptrMonitorPortAlignmentErrors is incremented then the rptrMonitorPortFCSErrors Counter shall not be incremented for the same frame. The approximate minimum time for rollover of this counter is 80 hours." ::= {rptrMonitorPortEntry 6} rptrMonitorPortFrameTooLongs OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each frame received on this port whose OctetCount is greater than maxFrameSize (Ref: 4.4.2.1, IEEE 802.3 Std). If rptrMonitorPortFrameTooLongs is incremented then neither the rptrMonitorPortAlignmentErrors nor the rptrMonitorPortFCSErrors counter shall be incremented for the frame. The approximate minimum time for rollover of this counter is 61 days." ::= {rptrMonitorPortEntry 7} rptrMonitorPortShortEvents OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each CarrierEvent on this port with ActivityDuration less than ShortEventMaxTime. ShortEventMaxTime is greater than 74 bit times and less than 82 bit times. ShortEventMaxTime has tolerances included to provide for circuit losses between a conformance test point at the AUI and the measurement point within the state machine. Note: shortEvents may indicate externally generated noise hits which will cause the repeater to transmit Runts to its other ports, or propagate a collision (which may be late) back to the transmitting DTE and damaged frames to the rest of the network. Implementors may wish to consider selecting the ShortEventMaxTime towards the lower end of the allowed tolerance range to accommodate bit losses suffered through physical channel devices not budgeted for within this standard. The approximate minimum time for rollover of this counter is 16 hours." ::= {rptrMonitorPortEntry 8} rptrMonitorPortRunts OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each CarrierEvent on this port that meets one of the following two conditions. Only one test need be made. a) The ActivityDuration is greater than ShortEventMaxTime and less than ValidPacketMinTime and the CollisionEvent signal is deasserted. b) The OctetCount is less than 64, the ActivityDuration is greater than ShortEventMaxTime and the CollisionEvent signal is deasserted. ValidPacketMinTime is greater than or equal to 552 bit times and less than 565 bit times. An event whose length is greater than 74 bit times but less than 82 bit times shall increment either the shortEvents counter or the runts counter but not both. A CarrierEvent greater than or equal to 552 bit times but less than 565 bit times may or may not be counted as a runt. ValidPacketMinTime has tolerances included to provide for circuit losses between a conformance test point at the AUI and the measurement point within the state machine. Runts usually indicate collision fragments, a normal network event. In certain situations associated with large diameter networks a percentage of collision fragments may exceed ValidPacketMinTime. The approximate minimum time for rollover of this counter is 16 hours." ::= {rptrMonitorPortEntry 9} rptrMonitorPortCollisions OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for any CarrierEvent signal on any port for which the CollisionEvent signal on this port is also asserted. The approximate minimum time for rollover of this counter is 16 hours." ::= {rptrMonitorPortEntry 10} rptrMonitorPortLateEvents OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each CarrierEvent on this port in which the CollIn(X) variable transitions to the value SQE (Ref: 9.6.6.2, IEEE 802.3 Std) while the ActivityDuration is greater than the LateEventThreshold. Such a CarrierEvent is counted twice, as both a collision and as a lateEvent. The LateEventThreshold is greater than 480 bit times and less than 565 bit times. LateEventThreshold has tolerances included to permit an implementation to build a single threshold to serve as both the LateEventThreshold and ValidPacketMinTime threshold. The approximate minimum time for rollover of this counter is 81 hours." ::= {rptrMonitorPortEntry 11} rptrMonitorPortVeryLongEvents OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each CarrierEvent on this port whose ActivityDuration is greater than the MAU Jabber Lockup Protection timer TW3 (Ref: 9.6.1 & 9.6.5, IEEE 802.3 Std). Other counters may be incremented as appropriate." ::= {rptrMonitorPortEntry 12} rptrMonitorPortDataRateMismatches OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each frame received on this port that meets all of the following conditions: a) The CollisionEvent signal is not asserted. b) The ActivityDuration is greater than ValidPacketMinTime. c) The frequency (data rate) is detectably mismatched from the local transmit frequency. The exact degree of mismatch is vendor specific and is to be defined by the vendor for conformance testing. When this event occurs, other counters whose increment conditions were satisfied may or may not also be incremented, at the implementor's discretion. Whether or not the repeater was able to maintain data integrity is beyond the scope of this standard." ::= {rptrMonitorPortEntry 13} rptrMonitorPortAutoPartitions OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each time the repeater has automatically partitioned this port. The conditions that cause port partitioning are specified in the partition state machine in Section 9 [IEEE 802.3 Std]. They are not differentiated here." ::= {rptrMonitorPortEntry 14} rptrMonitorPortTotalErrors OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "The total number of errors which have occurred on this port. This counter is the summation of the values of other error counters (for the same port), namely: rptrMonitorPortFCSErrors, rptrMonitorPortAlignmentErrors, rptrMonitorPortFrameTooLongs, rptrMonitorPortShortEvents, rptrMonitorPortLateEvents, rptrMonitorPortVeryLongEvents, and rptrMonitorPortDataRateMismatches. This counter is redundant in the sense that it is the summation of information already available through other objects. However, it is included specifically because the regular retrieval of this object as a means of tracking the health of a port provides a considerable optimization of network management traffic over the otherwise necessary retrieval of the summed counters." ::= {rptrMonitorPortEntry 15} -- -- The ADDRESS TRACKING GROUP -- -- Implementation of this group is optional; it is appropriate -- for all systems which have the necessary instrumentation. If a -- managed repeater implements any part of this group, the entire -- group shall be implemented. -- -- The Port Address Tracking Table -- rptrAddrTrackTable OBJECT-TYPE SYNTAX SEQUENCE OF RptrAddrTrackEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Table of address mapping information about the ports." ::= {rptrAddrTrackPortInfo 1} rptrAddrTrackEntry OBJECT-TYPE SYNTAX RptrAddrTrackEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "An entry in the table, containing address mapping information about a single port." INDEX {rptrAddrTrackGroupIndex,rptrAddrTrackPortIndex} ::= {rptrAddrTrackTable 1} RptrAddrTrackEntry ::= SEQUENCE { rptrAddrTrackGroupIndex INTEGER, rptrAddrTrackPortIndex INTEGER, rptrAddrTrackLastSourceAddress MacAddress, -- DEPRECATED OBJECT rptrAddrTrackSourceAddrChanges Counter, rptrAddrTrackNewLastSrcAddress OCTET STRING } rptrAddrTrackGroupIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the group containing the port for which this entry contains information." ::= {rptrAddrTrackEntry 1} rptrAddrTrackPortIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the port within the group for which this entry contains information." ::= {rptrAddrTrackEntry 2} rptrAddrTrackLastSourceAddress OBJECT-TYPE SYNTAX MacAddress ACCESS read-only STATUS deprecated DESCRIPTION "This object is the SourceAddress of the last readable frame (i.e., counted by rptrMonitorPortReadableFrames) received by this port. This object has been deprecated because its value is undefined when no frames have been observed on this port. The replacement object is rptrAddrTrackNewLastSrcAddress." ::= {rptrAddrTrackEntry 3} rptrAddrTrackSourceAddrChanges OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "This counter is incremented by one for each time that the rptrAddrTrackLastSourceAddress attribute for this port has changed. This may indicate whether a link is connected to a single DTE or another multi-user segment. The approximate minimum time for rollover of this counter is 81 hours." ::= {rptrAddrTrackEntry 4} rptrAddrTrackNewLastSrcAddress OBJECT-TYPE SYNTAX OCTET STRING (SIZE(0..6)) ACCESS read-only STATUS mandatory DESCRIPTION "This object is the SourceAddress of the last readable frame (i.e., counted by rptrMonitorPortReadableFrames) received by this port. If no frames have been received by this port since the agent began monitoring the port activity, the agent shall return a string of length zero." ::= {rptrAddrTrackEntry 5} -- Traps for use by Repeaters -- Traps are defined using the conventions in RFC 1215 [6]. --rptrHealth TRAP-TYPE -- ENTERPRISE snmpDot3RptrMgt -- VARIABLES {rptrOperSTATUS} -- DESCRIPTION -- "The rptrHealth trap conveys information related -- to the operational STATUS of the repeater. This -- trap is sent either when the value of -- rptrOperSTATUS changes, or upon completion of a -- non-disruptive test. -- -- The rptrHealth trap must contain the -- rptrOperSTATUS object. The agent may optionally -- include the rptrHealthText object in the varBind -- list. See the rptrOperSTATUS and rptrHealthText -- objects for descriptions of the information that -- is sent. -- -- The agent must throttle the generation of -- consecutive rptrHealth traps so that there is at -- least a five-second gap between traps of this -- type. When traps are throttled, they are dropped, -- not queued for sending at a future time. (Note -- that 'generating' a trap means sending to all -- configured recipients.)" -- ::= 21 -- --rptrGroupChange TRAP-TYPE -- ENTERPRISE snmpDot3RptrMgt -- VARIABLES {rptrGroupIndex} -- DESCRIPTION -- "This trap is sent when a change occurs in the -- group structure of a repeater. This occurs only -- when a group is logically or physically removed -- from or added to a repeater. The varBind list -- contains the identifier of the group that was -- removed or added. -- -- The agent must throttle the generation of -- consecutive rptrGroupChange traps for the same -- group so that there is at least a five-second gap -- between traps of this type. When traps are -- throttled, they are dropped, not queued for -- sending at a future time. (Note that 'generating' -- a trap means sending to all configured -- recipients.)" -- ::= 22 -- --rptrResetEvent TRAP-TYPE -- ENTERPRISE snmpDot3RptrMgt -- VARIABLES {rptrOperSTATUS} -- DESCRIPTION -- "The rptrResetEvent trap conveys information -- related to the operational STATUS of the repeater. -- This trap is sent on completion of a repeater -- reset action. A repeater reset action is defined -- as an a transition to the START state of Fig 9-2 -- in section 9 [IEEE 802.3 Std], when triggered by a -- management command (e.g., an SNMP Set on the -- rptrReset object). -- -- The agent must throttle the generation of -- consecutive rptrResetEvent traps so that there is -- at least a five-second gap between traps of this -- type. When traps are throttled, they are dropped, -- not queued for sending at a future time. (Note -- that 'generating' a trap means sending to all -- configured recipients.) -- -- The rptrResetEvent trap is not sent when the agent -- restarts and sends an SNMP coldStart or warmStart -- trap. However, it is recommended that a repeater -- agent send the rptrOper STATUS object as an -- optional object with its coldStart and warmStart -- trap PDUs. -- -- The rptrOper STATUS object must be included in the -- varbind list sent with this trap. The agent may -- optionally include the rptrHealthText object as -- well." -- ::= 23 snmpDot3MauMgt OBJECT IDENTIFIER ::= { mib-2 26 } dot3RpMauBasicGroup OBJECT IDENTIFIER ::= { snmpDot3MauMgt 1 } dot3IfMauBasicGroup OBJECT IDENTIFIER ::= { snmpDot3MauMgt 2 } dot3BroadMauBasicGroup OBJECT IDENTIFIER ::= { snmpDot3MauMgt 3 } -- object identifiers for MAU types -- (see rpMauType and ifMauType for usage) dot3MauType OBJECT IDENTIFIER ::= { snmpDot3MauMgt 4 } dot3MauTypeAUI OBJECT IDENTIFIER ::= { dot3MauType 1 } -- no internal MAU, view from AUI dot3MauType10Base5 OBJECT IDENTIFIER ::= { dot3MauType 2 } -- thick coax MAU (per 802.3 section 8) dot3MauTypeFoirl OBJECT IDENTIFIER ::= { dot3MauType 3 } -- FOIRL MAU (per 802.3 section 9.9) dot3MauType10Base2 OBJECT IDENTIFIER ::= { dot3MauType 4 } -- thin coax MAU (per 802.3 section 10) dot3MauType10BaseT OBJECT IDENTIFIER ::= { dot3MauType 5 } -- UTP MAU (per 802.3 section 14) dot3MauType10BaseFP OBJECT IDENTIFIER ::= { dot3MauType 6 } -- passive fiber MAU (per 802.3 section 16) dot3MauType10BaseFB OBJECT IDENTIFIER ::= { dot3MauType 7 } -- sync fiber MAU (per 802.3 section 17) dot3MauType10BaseFL OBJECT IDENTIFIER ::= { dot3MauType 8 } -- async fiber MAU (per 802.3 section 18) dot3MauType10Broad36 OBJECT IDENTIFIER ::= { dot3MauType 9 } -- broadband DTE MAU (per 802.3 section 11) -- -- The Repeater MAU Basic Group -- -- Implementation of the Repeater MAU Basic Group is mandatory -- for MAUs attached to repeaters. -- -- The Basic Repeater MAU Table -- rpMauTable OBJECT-TYPE SYNTAX SEQUENCE OF RpMauEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "Table of descriptive and status information about the MAU(s) attached to the ports of a repeater." ::= { dot3RpMauBasicGroup 1 } rpMauEntry OBJECT-TYPE SYNTAX RpMauEntry ACCESS not-accessible STATUS mandatory DESCRIPTION "An entry in the table, containing information about a single MAU." INDEX { rpMauGroupIndex, rpMauPortIndex, rpMauIndex } ::= { rpMauTable 1 } RpMauEntry ::= SEQUENCE { rpMauGroupIndex INTEGER, rpMauPortIndex INTEGER, rpMauIndex INTEGER, rpMauType OBJECT IDENTIFIER, rpMauStatus INTEGER, rpMauMediaAvailable INTEGER, rpMauMediaAvailableStateExits Counter, rpMauJabberState INTEGER, rpMauJabberingStateEnters Counter } rpMauGroupIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This variable uniquely identifies the repeater group containing the port to which the MAU described by this entry is connected." REFERENCE "Reference RFC1368, rptrGroupIndex." ::= { rpMauEntry 1 } rpMauPortIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This variable uniquely identifies the repeater port within group rpMauGroupIndex to which the MAU described by this entry is connected." REFERENCE "Reference RFC 1368, rptrPortIndex." ::= { rpMauEntry 2 } rpMauIndex OBJECT-TYPE SYNTAX INTEGER (1..1024) ACCESS read-only STATUS mandatory DESCRIPTION "This variable uniquely identifies the MAU connected to port rpMauPortIndex within group rpMauGroupIndex that is described by this entry." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, aMAUID." ::= { rpMauEntry 3 } rpMauType OBJECT-TYPE SYNTAX OBJECT IDENTIFIER ACCESS read-only STATUS mandatory DESCRIPTION "This object identifies the 10 Mb/s baseband MAU type. An initial set of MAU types are defined above. The assignment of OBJECT IDENTIFIERs to new types of MAUs is managed by the IANA. If the MAU type is unknown, the object identifier unknownMauType OBJECT IDENTIFIER ::= { 0 0 } is returned. Note that unknownMauType is a syntactically valid object identifier, and any conformant implementation of ASN.1 and the BER must be able to generate and recognize this value." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, aMAUType." ::= { rpMauEntry 4 } rpMauStatus OBJECT-TYPE SYNTAX INTEGER { other(1), unknown(2), operational(3), standby(4), shutdown(5), reset(6) } ACCESS read-write STATUS mandatory DESCRIPTION "The current state of the MAU. This object may be implemented as a read-only object by those agents and MAUs that do not implement software control of the MAU state. Some agents may not support setting the value of this object to some of the enumerated values. The value other(1) is returned if the MAU is in a state other than one of the states 2 through 6. The value unknown(2) is returned when the MAU's true state is unknown; for example, when it is being initialized. A MAU in the operational(3) state is fully functional, operates, and passes signals to its attached DTE or repeater port in accordance to its specification. A MAU in standby(4) state forces DI and CI and the media transmitter to idle. Standby(4) mode only applies to link type MAUs. The state of rpMauMediaAvailable is unaffected. A MAU in shutdown(5) state assumes the same condition on DI, CI, and the media transmitter as though it were powered down. The MAU may return other(1) value for the mauJabber and rpMauMediaAvailable objects when it is in this state. For an AUI, this state will remove power from the AUI. Setting this variable to the value reset(6) resets the MAU in the same manner as a power-off, power- on cycle of at least one-half second would. The agent is not required to return the value reset (6). Setting this variable to the value operational(3), standby(4), or shutdown(5) causes the MAU to assume the respective state except that setting a mixing-type MAU or an AUI to standby(4) will cause the MAU to enter the shutdown state." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, aMAUAdminState, and 20.2.3.3, acMAUAdminControl and acResetMAUAction." ::= { rpMauEntry 5 } rpMauMediaAvailable OBJECT-TYPE SYNTAX INTEGER { other(1), unknown(2), available(3), notAvailable(4), remoteFault(5), invalidSignal(6) } ACCESS read-only STATUS mandatory DESCRIPTION "If the MAU is a link or fiber type (FOIRL, 10BASE-T, 10BASE-F) then this is equivalent to the link test fail state/low light function. For an AUI or a coax (including broadband) MAU this indicates whether or not loopback is detected on the DI circuit. The value of this attribute persists between packets for MAU types AUI, 10BASE5, 10BASE2, 10BROAD36, and 10BASE-FP. The value other(1) is returned if the mediaAvailable state is not one of 2 through 6. The value unknown(2) is returned when the MAU's true state is unknown; for example, when it is being initialized. At power-up or following a reset, the value of this attribute will be unknown for AUI, coax, and 10BASE-FP MAUs. For these MAUs loopback will be tested on each transmission during which no collision is detected. If DI is receiving input when DO returns to IDL after a transmission and there has been no collision during the transmission then loopback will be detected. The value of this attribute will only change during non-collided transmissions for AUI, coax, and 10BASE-FP MAUs. The value available(3) indicates that the link, light, or loopback is normal. The value notAvailable(4) indicates link loss, low light, or no loopback. The value remoteFault(5) indicates that a fault has been detected at the remote end of the link. The value invalidSignal(6) indicates that an invalid signal has been received from the other end of the link. Both remoteFault(5) and invalidSignal(6) apply only to MAUs of type 10BASE-FB." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, aMediaAvailable." ::= { rpMauEntry 6 } rpMauMediaAvailableStateExits OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "A count of the number of times that rpMauMediaAvailable for this MAU instance leaves the state available(3)." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, lostMediaCount." ::= { rpMauEntry 7 } rpMauJabberState OBJECT-TYPE SYNTAX INTEGER { other(1), unknown(2), noJabber(3), jabbering(4) } ACCESS read-only STATUS mandatory DESCRIPTION "The value other(1) is returned if the jabber state is not 2, 3, or 4. The agent must always return other(1) for MAU type dot3MauTypeAUI. The value unknown(2) is returned when the MAU's true state is unknown; for example, when it is being initialized. If the MAU is not jabbering the agent returns noJabber(3). This is the 'normal' state. If the MAU is in jabber state the agent returns the jabbering(4) value." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, aJabber.jabberFlag." ::= { rpMauEntry 8 } rpMauJabberingStateEnters OBJECT-TYPE SYNTAX Counter ACCESS read-only STATUS mandatory DESCRIPTION "A count of the number of times that rpMauJabberState for this MAU instance enters the state jabbering(4). For a MAU of type dot3MauTypeAUI, this counter will always indicate zero." REFERENCE "Reference IEEE 802.3 MAU Mgt, 20.2.3.2, aJabber.jabberCounter." ::= { rpMauEntry 9 } -- Traps for use by 802.3 MAUs -- Traps are defined using the conventions in RFC 1215 [8]. --rpMauJabberTrap TRAP-TYPE -- ENTERPRISE snmpDot3MauMgt -- VARIABLES { rpMauJabberState } -- DESCRIPTION -- "This trap is sent whenever a managed repeater MAU -- enters the jabber state. -- -- The agent must throttle the generation of -- consecutive rpMauJabberTraps so that there is at -- least a five-second gap between them." -- REFERENCE -- "Reference IEEE 802.3 MAU Mgt, 20.2.3.4, -- nJabberNotification." -- ::= 24 ------------------------------------------------------------------------------------------ -- -- -- The whole of the a3Com(43).linkbuilder10BTi-mib(8).snmpDot3RpMauMgt(5) -- -- group has been deprecated. -- -- The group is currently still implemented for backwards compatability, -- -- but all new applications should use mib-2(1).snmpDot3MauMgt(26) instead. -- -- -- ------------------------------------------------------------------------------------------ END