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437 lines
14 KiB
Plaintext
437 lines
14 KiB
Plaintext
-- *******************************************************************
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-- CISCO-LWAPP-DOT11-CLIENT-CCX-TC-MIB.my
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-- Sheeba Kamra Jan 2007
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--
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-- Copyright (c) 2006-2007 by Cisco Systems, Inc.
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--
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-- All rights reserved.
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-- *****************************************************************
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CISCO-LWAPP-DOT11-CLIENT-CCX-TC-MIB DEFINITIONS ::= BEGIN
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IMPORTS
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MODULE-IDENTITY
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FROM SNMPv2-SMI
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TEXTUAL-CONVENTION
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FROM SNMPv2-TC
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ciscoMgmt
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FROM CISCO-SMI;
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-- ********************************************************************
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-- * MODULE IDENTITY
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-- ********************************************************************
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ciscoLwappDot11ClientCCXTextualConventions MODULE-IDENTITY
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LAST-UPDATED "200703220000Z"
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ORGANIZATION "Cisco Systems Inc."
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CONTACT-INFO
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"Cisco Systems,
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Customer Service
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Postal: 170 West Tasman Drive
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San Jose, CA 95134
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USA
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Tel: +1 800 553-NETS
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Email: cs-wnbu-snmp@cisco.com"
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DESCRIPTION
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"This module defines the textual conventions used
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throughout the Cisco enterprise MIBs designed for
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implementation on Central Controllers (CC) that
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terminate the Light Weight Access Point Protocol
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tunnel from Light-weight LWAPP Access Points,
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specifically for the functions of the Cisco Client
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Extensions (CCX) program.
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This MIB provides textual conventions used in the
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configuration and status information mibs
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about the CCX clients that the controller is aware of.
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GLOSSARY
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Light Weight Access Point Protocol ( LWAPP )
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This is a generic protocol that defines the
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communication between the Access Points and the
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Central Controller.
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Mobile Node ( MN )
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A roaming 802.11 wireless device in a wireless
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network associated with an access point. Mobile Node,
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Mobile Station(Ms) and client are used
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interchangeably.
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Cisco Client eXtentions (CCX)
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The Cisco Client Extensions (CCX) Program is a
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program of working through silicon providers to
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embed Cisco client technology in wireless client
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reference designs, and to promote compliant and
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interoperable third-party clients with Cisco's
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infrastructure, thus further driving wireless adoption
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in the market.
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Extensible Authentication Protocol (EAP)
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The Extensible Authentication Protocol (EAP) is an
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Internet Engineering Task Force (IETF) standard that
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provides an infrastructure for network access clients and
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authentication servers to host plug-in modules for current
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and future authentication methods and technologies.
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Wired Equivalent Privacy (WEP)
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A security method defined by 802.11. WEP uses a
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symmetric key stream cipher called RC4 to encrypt the data
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packets.
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REFERENCE
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[1] Part 11 Wireless LAN Medium Access Control ( MAC )
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and Physical Layer ( PHY ) Specifications.
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[2] Draft-obara-capwap-lwapp-00.txt, IETF Light
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Weight Access Point Protocol.
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[3] Cisco Compatible Extensions for WLAN Devices
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Version 5.0.11"
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REVISION "200703220000Z"
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DESCRIPTION
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"Added 2 more radio types to CiscoLwappDot11ClientRadioType."
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REVISION "200702220000Z"
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DESCRIPTION
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"Reverted some of the enum names to be in line with the CCXV5
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spec."
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REVISION "200702190000Z"
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DESCRIPTION
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"Incorporated review comments."
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REVISION "200701300000Z"
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DESCRIPTION
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"Initial version of this mib module."
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::= { ciscoMgmt 611 }
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CiscoLwappDot11ClientReqStatus ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This field indicates the status of current request.The values
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used can be one of the following:
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initiate - this will be used to trigger a request to get
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some parameters from a CCX client.
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inProgress - this indicates that the request to get the
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details from the client is still in progress.
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success - indicates that the query was executed
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successfully.
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failed - this indicates that the request to get some
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parameters from a CCX client failed.
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requestNotProcessedByClient - indicates that the CCX client
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did not honour this request."
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SYNTAX INTEGER {
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initiate(1),
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inProgress(2),
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success(3),
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failure(4),
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requestNotProcessedByClient(5)
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}
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CiscoLwappDot11ClientSSId ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This represents the Service Set Identifier assigned
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to WLAN."
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SYNTAX OCTET STRING (SIZE (1..32))
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CiscoLwappDot11ClientAuthMethod ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This is the authentication method used by the client.
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The possible values are:
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none - this indicates that no authentication method is
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used
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preSharedKey - this refers to the method of using pre
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shared key for authentication
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eap - this is Extensible Authentication Protocol
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unknown - this indicates an authentication protocol other
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than the ones defined above"
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SYNTAX INTEGER {
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none(0),
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preSharedKey(1),
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eap(2),
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unknown(255)
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}
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CiscoLwappDot11ClientEAPMethod ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This identifies the Extensible Authentication Protocol(EAP)
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method used. The possible values are:
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leap - this is Lightweight Extensible Authentication
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Protocol
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eapFast - this is Extensible Authentication
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Protocol with Flexible Authentication via Secure Tunneling
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eapTls - this is Extensible Authentication
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Protocol with Transport Layer Security
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eapTtls - this is Extensible Authentication Protocol with
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Tunneled Transport Layer Security
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peap0EapMschap2 - this refers to Protected Extensible
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Authentication Protocol Version 0 with Microsoft
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Challenge Handshake Authentication Protocol version 2
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peap1EapGtc - this refers to Protected Extensible
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Authentication Protocol Version 1 with Generic Token Card
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eapMd5 - this is Extensible Authentication Protocol with
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Message-Digest algorithm 5
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eapSim - this is Extensible Authentication Protocol using
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the Global System for Mobile Communications (GSM)
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Subscriber Identity Module (SIM)
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preSharedKey - this refers to the method of using pre
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shared key for authentication
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unknown - this indicates an EAP method other
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than the ones defined above"
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SYNTAX INTEGER {
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leap(0),
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eapFast(1),
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eapTls(2),
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eapTtls(3),
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peap0EapMschap2(4),
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peap1EapGtc(5),
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eapMd5(6),
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eapSim(7),
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preSharedKey(8),
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unknown(255)
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}
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CiscoLwappDot11ClientKeyMgmtMethod ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This is the key management method used by the client.
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The possible values are:
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staticWep - this is Wired Equivalent Privacy with a static
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key defined
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dynamicWep - this is Wired Equivalent Privacy with a
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dynamic key
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wpa - this indicates wifi protected access
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wpaCckm - this is wifi protected access with
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Cisco Centralized Key Management
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wpa2 - this indicates version 2 of wifi protected access
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wpa2Cckm - this is wifi protected access
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version 2 with Cisco Centralized Key Management
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cckm - this indicates Cisco Centralized Key
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Management
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unknown - this indicates a key management method other
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than the ones defined above"
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SYNTAX INTEGER {
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none(0),
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staticWep(1),
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dynamicWep(2),
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wpa(3),
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wpaCckm(4),
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wpa2(5),
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wpa2Cckm(6),
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cckm(7),
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unknown(255)
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}
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CiscoLwappDot11ClientEncryptionMethod ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This is the encryption method used by the client.
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The possible values are:
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none - no encryption is used
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wep40 - this is Wired Equivalent Privacy with a 40 bit
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secret key
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wep104 - this is Wired Equivalent Privacy with a 104 bit
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secret key
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tkip - this indicates Temporal Key Integrity
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Protocol
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ckip - this is Cisco Key Integrity Protocol
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aesCcmp - this is Advanced Encryption Standard
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- Counter Mode Cipher Block Chaining-Message Authentication
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Code Protocol
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unknown - this indicates an encryption method other
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than the ones defined above"
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SYNTAX INTEGER {
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none(0),
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wep40(1),
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wep104(2),
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tkip(3),
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ckip(4),
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aesCcmp(5),
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unknown(255)
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}
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CiscoLwappDot11ClientCredentialType ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This indicates how the 802.11 credentials are configured for
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the client.
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The possible values are:
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localSaved - credentials are locally saved
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manuallyPrompted - client is prompted for the credentials
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hostOsLogin - this means the host operating system's login
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credentials will be used
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unknown - this indicates a credential method other
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than the ones defined above"
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SYNTAX INTEGER {
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localSaved(0),
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manuallyPrompted(1),
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hostOsLogin(2),
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unknown(255)
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}
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CiscoLwappDot11ClientPowerSaveMode ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This is the type of power save mode configured on the
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client. The possible values are:
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awake - this indicates that the client is constantly awake
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normal - this indicates normal power save mode
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maxPower - this indicates maximum power save mode
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uApsd - this indicates Unsolicited Automatic
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Power Save Delivery
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sApsd - this indicates Solicited Automatic Power
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Save Delivery
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unknown - this indicates a power save mode other
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than the ones defined above"
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SYNTAX INTEGER {
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awake(0),
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normal(1),
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maxPower(2),
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uApsd(3),
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sApsd(4),
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unknown(255)
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}
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CiscoLwappDot11ClientTxPowerMode ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This field identifies the transmit power mode of the
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client. The possible values are:
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fixed - this indicates that the client is operating at a
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fixed power mode
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automatic - this indicates that the client power will be
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determined automatically"
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SYNTAX INTEGER {
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fixed(0),
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automatic(1)
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}
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CiscoLwappDot11ClientRadioType ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This is the radio type of the client. The possible values
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are:
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unused - this is currently a reserved radio type and is
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not used
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fhss - this is Frequency-hopping spread spectrum based
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radio
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dsss - this is Direct Sequence spread spectrum based
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radio
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infraRedBaseband - this is infrared baseband based radio
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oFdm - this is orthogonal frequency division
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multiplexing based radio
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highRateDsss - this is high rate direct sequence spread
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spectrum based radio
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erp - this indicates effective radiated power based radio
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draft11n2point4Ghz - this indicates a 2.4 Ghz band radio
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as defined in draft 802.11n
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draft11n5Ghz - this indicates a 5 Ghz band radio
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as defined in draft 802.11n"
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SYNTAX INTEGER {
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unused(0),
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fhss(1),
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dsss(2),
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irBaseband(3),
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oFdm(4),
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highRateDsss(5),
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erp(6),
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draft11n2point4Ghz(7),
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draft11n5Ghz(8)
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}
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CiscoLwappDot11ClientDataRates ::= TEXTUAL-CONVENTION
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STATUS current
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DESCRIPTION
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"This field indicates the data rates supported by a
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client. If a data rate is supported by a client, the
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corresponding bit is set to 1 else it is
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set to 0. The different data rates (in Mhz) are 1, 2,
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5.5, 6, 9, 11, 12, 18, 24, 36, 48, 54."
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SYNTAX BITS {
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mhz1(0),
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mhz2(1),
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mhz5point5(2),
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mhz6(3),
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mhz9(4),
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mhz11(5),
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mhz12(6),
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mhz18(7),
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mhz24(8),
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mhz36(9),
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mhz48(10),
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mhz54(11)
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}
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END
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