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CISCO-LWAPP-TC-MIB

25 objects
This module defines textual conventions used throughout the Cisco enterprise MIBs designed for implementation on Central Controllers that terminate the Light Weight Access Point Protocol from LWAPP Access Points. The relationship between CC and the LWAPP APs can be depicted as follows: +......+ +......+ +......+ +......+ + + + + + + + + + CC + + CC + + CC + + CC + + + + + + + + + +......+ +......+ +......+ +......+ .. . . . .. . . . . . . . . . . . . . . . . . . . . . . . +......+ +......+ +......+ +......+ +......+ + + + + + + + + + + + AP + + AP + + AP + + AP + + AP + + + + + + + + + + + +......+ +......+ +......+ +......+ +......+ . . . . . . . . . . . . . . . . . . . . . . . . +......+ +......+ +......+ +......+ +......+ + + + + + + + + + + + MN + + MN + + MN + + MN + + MN + + + + + + + + + + + +......+ +......+ +......+ +......+ +......+ The LWAPP tunnel exists between the controller and the APs. The MNs communicate with the APs through the protocol defined by the 802.11 standard. LWAPP APs, upon bootup, discover and join one of the controllers and the controller pushes the configuration, that includes the WLAN parameters, to the LWAPP APs. The APs then encapsulate all the 802.11 frames from wireless clients inside LWAPP frames and forward the LWAPP frames to the controller. GLOSSARY Access Point ( AP ) An entity that contains an 802.11 medium access control ( MAC ) and physical layer ( PHY ) interface and provides access to the distribution services via the wireless medium for associated clients. LWAPP APs encapsulate all the 802.11 frames in LWAPP frames and sends it to the controller to which it is logically connected. Advanced Encryption Standard ( AES ) In cryptography, the Advanced Encryption Standard (AES), also known as Rijndael, is a block cipher adopted as an encryption standard by the US government. It is expected to be used worldwide and analysed extensively, as was the case with its predecessor, the Data Encryption Standard (DES). AES was adopted by National Institute of Standards and Technology (NIST) as US FIPS PUB 197 in November 2001 after a 5-year standardisation process. Central Controller ( CC ) The central entity that terminates the LWAPP protocol tunnel from the LWAPP APs. Throughout this MIB, this entity is also referred to as 'controller'. Light Weight Access Point Protocol ( LWAPP ) This is a generic protocol that defines the communication between the Access Points and the Central Controller. Management Frame Protection ( MFP ) A proprietary mechanism devised to integrity protect the otherwise unprotected management frames of the 802.11 protocol specification. Message Integrity Check ( MIC ) A checksum computed on a sequence of bytes and made known to the receiving party in a data communication, to let the receiving party make sure the bytes received were not compromised enroute. Mobile Node ( MN ) A roaming 802.11 wireless device in a wireless network associated with an access point. Temporal Key Integrity Protocol ( TKIP ) A security protocol defined to enhance the limitations of WEP. Message Integrity Check and per-packet keying on all WEP-encrypted frames are two significant enhancements provided by TKIP to WEP. Wired Equivalent Privacy ( WEP ) A security method defined by 802.11. WEP uses a symmetric key stream cipher called RC4 to encrypt the data packets. 802.11n 802.11n builds upon previous 802.11 standards by adding MIMO (multiple-input multiple-output). MIMO uses multiple transmitter and receiver antennas to allow for increased data throughput through spatial multiplexing and increased range. Control/Extension Channel A single 802.11 channel is 20 MHz wide. 802.11n allows the use of channels of width 40 MHz by combining two 20 MHz channels. The channels are known as the primary or control channel and secondary or extension channel. Both the channels are used for transmission and reception of data. REFERENCE [1] Part 11 Wireless LAN Medium Access Control ( MAC ) and Physical Layer ( PHY ) Specifications. [2] Draft-obara-capwap-lwapp-00.txt, IETF Light Weight Access Point Protocol. [3] Enhanced Wireless Consortium MAC Specification, v1.24. [4] Enhanced Wireless Consortium PHY Specification, v1.27.
Imported Objects
CISCO-SMIciscoMgmt
SNMPv2-SMIGauge32 MODULE-IDENTITY Unsigned32
SNMPv2-TCTEXTUAL-CONVENTION
OIDNameAccessStatusDescription
1.3.6.1.4.1.9.9.514IdentityciscoLwappTextualConventionsThis module defines textual conventions used throughout the Cisco enterprise MIBs designed for implementation on Central Controllers that terminate the Light W…
Type Definitions
NameSyntaxStatusDescription
CcxServiceVersionINTEGER { none(1), version1(2), version2(3) }currentThis textual convention defines the service versions supported by a CCX Next client. The supported services include foundation, location, management and voice.
CLApAssocFailureReasonINTEGER { unknown(1), notSupported(2) }currentThis textual convention defines the possible reasons for an AP's failure to get associated to a controller. The semantics are as follows: unknown - The reason for the AP not being able to associate is unknown. notSuppor…
CLApDot11RadioRoleINTEGER { shutdown(0), upDownlink(1), uplink(2), downlink(3), access(4), uplinkAccess(5), downlinkAccess(6), upDownlinkAccess(7), unknown(8) }currentThis textual convention defines the possible values of role a radio can support. shutdown(0) - This role states that the radio is shut down. upDownlink(1) - This radio provides both uplink and downlink access. uplink(2)…
CLApDot11RadioSubbandINTEGER { all(1), sub49(2), sub52(3), sub54(4), sub58(5) }currentThis textual convention defines the possible values of subbands a radio can support. Currently, this information is applicable to A radios. all(1) - This radio is a regular A radio that operates in the full A band spect…
CLApIfTypeINTEGER { dot11bg(1), dot11a(2), uwb(3), dot11abgn(4), rlan(5), dot11_6ghz(6), dot11_xor_5_6ghz(7) }currentThis textual convention defines the type of a wireless interface. The semantics are as follows: dot11bg - This value indicates that the radio interface follows 802.11b or 802.11g standard. dot11a - This value indicates …
CLApModeINTEGER { local(0), monitor(1), remote(2), rogueDetector(3), sniffer(4), bridge(5), seConnect(6), remoteBridge(7), remoteHybrid(8), sensor(9) }currentThis textual convention defines the working mode of the AP. local(0) - This mode enables the access points to serve the clients. monitor(1) - This mode enables the access points to monitor all of its cycles scanning the…
CLApNtpStatusINTEGER { notValid(1), none(2), unreachable(3), synched(4), notSynched(5), waitSynch(6), authFail(7), notSuitable(8), unknown(9) }currentThis textual convention defines the NTP status. The semantics are as follows: notValid - This value indicates NTP status is not valid. none - This value indicates NTP status is not received. unreachable - This value ind…
CLCdpAdvtVersionTypeINTEGER { cdpv1(1), cdpv2(2) }currentThis textual convention lists the versions of the CDP protocol in use in LWAPP APs and Controllers.
CLClientPowerSaveModeINTEGER { active(1), powersave(2) }currentThis textual convention defines power management mode of this client. The possible two modes are: active(1) - The client is not in power-save mode and it is actively sending or receiving data. powersave(2) - The client …
CLDot11BandINTEGER { band2dot4(1), band5(2), maui-6ghz(3) }currentThis textual convention defines the 802.11 frequency band. The semantics are as follows: band2dot4 - This value indicates that the 2.4 GHz band is in use. band5 - This value indicates that the 5 GHz band is in use. maui…
CLDot11ChannelUnsigned32 (1..14 | 34 | 36 | 38 | 40 | 42 | 44 | 46 | 48 | 52 | 56 | 60 | 64 | 149 | 153 | 157 | 161)currentThis textual convention defines the possible channel numbers in an 802.11 communication channel. The 802.11 radio interface of an Access Point operates in one of the possible channels at any point of time for wireless d…
CLDot11ChannelBandwidthINTEGER { five(1), ten(2), twenty(3), aboveforty(4), belowforty(5) }currentThis textual convention defines the channel bandwidth for 802.11n radio interfaces. The semantics are as follows: five - This value indicates that the bandwidth is 5 MHz. ten - This value indicates that the bandwidth is…
CLDot11ClientStatusINTEGER { idle(1), aaaPending(2), authenticated(3), associated(4), powersave(5), disassociated(6), tobedeleted(7), probing(8), excluded(9) }currentThis textual convention defines the states of an 802.11 client. The semantics are as follows: idle(1) - client is in idle mode. aaaPending(2) - client's authentication is pending. Request has been sent to AAA server for…
CLDot11RfParamModeINTEGER { default(1), custom(2), auto(3) }currentThis textual convention defines how the RF parameters used to manage roaming are chosen by the controller. default - controller reverts back to the default values specified for the RF parameters. auto - controller deter…
CLEventFramesBITS { cLAssocRequestFrm(0), cLAssocResponseFrm(1), cLReAssocRequestFrm(2), cLReAssocResponseFrm(3), cLProbeRequestFrm(4), cLProbeResponseFrm(5), cLReserved1(6), cLReserved2(7), cLBeaconFrm(8), cLAtimFrm(9), cLDissociationFrm(10), cLAuthenticationFrm(11), cLDeAuthenticationFrm(12) }currentThis textual convention defines the possible 802.11 management frame subtypes. cLAssocRequestFrm - 802.11 Association Request frame cLAssocResponseFrm - 802.11 Association Response frame cLReAssocRequestFrm - 802.11 Rea…
CLMfpEventSourceINTEGER { infrastructureMfp(1), clientMfp(2) }currentThe source of the MFP anomaly event. infrastructureMfp - The source of the MFP event is an infrastructure device that implements MFP. clientMfp - The source of the MFP event is a client device that implements MFP.
CLMfpEventTypeINTEGER { invalidMic(1), invalidSeq(2), noMic(3), unexpectedMic(4), ccmpNoEncryptError(16), ccmpDecryptError(17), ccmpInvalidReplayCtr(19), tkipNoEncryptError(20), tkipInvalidIcv(21), tkipInvalidMic(22), tkipInvalidMhdrIe(23), tkipInvalidReplayCtr(24), bcastDisassociationFrameRcvd(32), bcastDeauthenticationFrameRcvd(33), bcastActionFrameRcvd(34) }currentThe type of the MFP anomaly event. invalidMic - The MFP Validation has identified that the MIC carried by a particular management frame is invalid. invalidSeq - The MFP validation has identified that a particular manage…
CLMfpVersionINTEGER { mfpv1(1), mfpv2(2) }currentThis textual convention lists the versions of the MFP protocol.
CLSecEncryptTypeBITS { tkip(0), aes(1) }currentThis textual convention defines the type of encryption to be applied to a WLAN. The semantics are as follows: tkip - This value indicates that TKIP encryption is configured for data protection. aes - This value indicate…
CLSecKeyFormatINTEGER { default(1), hex(2), ascii(3) }currentThis textual convention defines the type of the key configured for encryption.
CLTimeBaseStatusINTEGER { cTimeBaseInSync(1), cTimeBaseNotInSync(2) }currentThis textual convention is used to define the time synchronization of entities with their respective time bases. cTimeBaseInSync - This value indicates that the respective entity is in synchronization with its time base…
CLTsmDot11CurrentPacketsGauge32currentThe number of packets received over a specified period of time.
CLWebAuthTypeINTEGER { internalDefault(1), internalCustom(2), external(3) }currentRepresents either one of the following web auth types internalDefault(1) - The default login page will be presented to the client for authentication. internalCustom(2) - The administrator has created and uploaded a cust…
DscpINTEGER (0..63)currentAn integer that is in the range of the diffserv codepoint values.