Network Working Group E. Bell Request for Comments: 2674 3Com Corp. Category: Standards Track A. Smith Extreme Networks P. Langille Newbridge Networks A. Rijhsinghani Cabletron Systems K. McCloghrie cisco Systems August 1999
Network Working Group E. Bell Request for Comments: 2674 3Com Corp. Category: Standards Track A. Smith Extreme Networks P. Langille Newbridge Networks A. Rijhsinghani Cabletron Systems K. McCloghrie cisco Systems August 1999
Definitions of Managed Objects for Bridges with Traffic Classes, Multicast Filtering and Virtual LAN Extensions
具有流量类、多播过滤和虚拟LAN扩展的网桥的托管对象定义
Status of this Memo
本备忘录的状况
This document specifies an Internet standards track protocol for the Internet community, and requests discussion and suggestions for improvements. Please refer to the current edition of the "Internet Official Protocol Standards" (STD 1) for the standardization state and status of this protocol. Distribution of this memo is unlimited.
本文件规定了互联网社区的互联网标准跟踪协议,并要求进行讨论和提出改进建议。有关本协议的标准化状态和状态,请参考当前版本的“互联网官方协议标准”(STD 1)。本备忘录的分发不受限制。
Copyright Notice
版权公告
Copyright (C) The Internet Society (1999). All Rights Reserved.
版权所有(C)互联网协会(1999年)。版权所有。
Abstract
摘要
This memo defines a portion of the Management Information Base (MIB) for use with network management protocols in TCP/IP based internets. In particular, it defines two MIB modules for managing the new capabilities of MAC bridges defined by the IEEE 802.1D-1998 MAC Bridges and the IEEE 802.1Q-1998 Virtual LAN (VLAN) standards for bridging between Local Area Network (LAN) segments. One MIB module defines objects for managing the 'Traffic Classes' and 'Enhanced Multicast Filtering' components of IEEE 802.1D-1998. The other MIB module defines objects for managing IEEE 802.1Q VLANs.
此备忘录定义了管理信息库(MIB)的一部分,用于基于TCP/IP的Internet中的网络管理协议。特别是,它定义了两个MIB模块,用于管理由IEEE 802.1D-1998 MAC网桥和IEEE 802.1Q-1998虚拟LAN(VLAN)标准定义的MAC网桥的新功能,用于局域网(LAN)网段之间的桥接。一个MIB模块定义了用于管理IEEE 802.1D-1998的“流量类”和“增强多播过滤”组件的对象。另一个MIB模块定义用于管理IEEE 802.1Q VLAN的对象。
Provisions are made for support of transparent bridging. Provisions are also made so that these objects apply to bridges connected by subnetworks other than LAN segments. This memo also includes several MIB modules in a manner that is compliant to the SMIv2 [V2SMI].
为支持透明桥接作出了规定。还作出规定,使这些对象适用于由除LAN段以外的子网连接的网桥。本备忘录还包括几个MIB模块,其方式符合SMIv2[V2SMI]。
This memo supplements RFC 1493 [BRIDGEMIB] and (to a lesser extent) RFC 1525 [SBRIDGEMIB].
本备忘录补充了RFC 1493[BRIDGEMIB]和(在较小程度上)RFC 1525[SBRIDGEMIB]。
Table of Contents
目录
1 The SNMP Management Framework ................................... 3 2 Overview ........................................................ 4 2.1 Scope ......................................................... 4 3 Structure of MIBs ............................................... 5 3.1 Structure of Extended Bridge MIB module ....................... 5 3.1.1 Relationship to IEEE 802.1D-1998 Manageable Objects ......... 6 3.1.2 Relationship to IEEE 802.1Q Manageable Objects .............. 8 3.1.3 The dot1dExtBase Group ...................................... 8 3.1.4 The dot1dPriority Group ..................................... 9 3.1.5 The dot1dGarp Group ......................................... 9 3.1.6 The dot1dGmrp Group ......................................... 9 3.1.7 The dot1dTpHCPortTable ...................................... 9 3.1.8 The dot1dTpPortOverflowTable ................................ 9 3.2 Structure of Virtual Bridge MIB module ........................ 9 3.2.1 Relationship to IEEE 802.1Q Manageable Objects .............. 9 3.2.2 The dot1qBase Group .........................................13 3.2.3 The dot1qTp Group ...........................................13 3.2.4 The dot1qStatic Group .......................................13 3.2.5 The dot1qVlan Group .........................................13 3.3 Textual Conventions ...........................................13 3.4 Relationship to Other MIBs ....................................14 3.4.1 Relationship to the 'system' group ..........................14 3.4.2 Relation to Interfaces MIB ..................................14 3.4.2.1 Layering Model ............................................15 3.4.2.2 ifStackTable ..............................................16 3.4.2.3 ifRcvAddressTable .........................................16 3.4.3 Relation to Original Bridge MIB .............................16 3.4.3.1 The dot1dBase Group .......................................16 3.4.3.2 The dot1dStp Group ........................................17 3.4.3.3 The dot1dTp Group .........................................17 3.4.3.4 The dot1dStatic Group .....................................17 3.4.3.5 Additions to the Original Bridge MIB ......................18 4 Definitions for Extended Bridge MIB .............................18 5 Definitions for Virtual Bridge MIB ..............................39 6 Acknowledgments .................................................80 7 Security Considerations .........................................80 8 References ......................................................81 9 Authors' Addresses ..............................................84 10 Intellectual Property ..........................................85 11 Full Copyright Statement .......................................86
1 The SNMP Management Framework ................................... 3 2 Overview ........................................................ 4 2.1 Scope ......................................................... 4 3 Structure of MIBs ............................................... 5 3.1 Structure of Extended Bridge MIB module ....................... 5 3.1.1 Relationship to IEEE 802.1D-1998 Manageable Objects ......... 6 3.1.2 Relationship to IEEE 802.1Q Manageable Objects .............. 8 3.1.3 The dot1dExtBase Group ...................................... 8 3.1.4 The dot1dPriority Group ..................................... 9 3.1.5 The dot1dGarp Group ......................................... 9 3.1.6 The dot1dGmrp Group ......................................... 9 3.1.7 The dot1dTpHCPortTable ...................................... 9 3.1.8 The dot1dTpPortOverflowTable ................................ 9 3.2 Structure of Virtual Bridge MIB module ........................ 9 3.2.1 Relationship to IEEE 802.1Q Manageable Objects .............. 9 3.2.2 The dot1qBase Group .........................................13 3.2.3 The dot1qTp Group ...........................................13 3.2.4 The dot1qStatic Group .......................................13 3.2.5 The dot1qVlan Group .........................................13 3.3 Textual Conventions ...........................................13 3.4 Relationship to Other MIBs ....................................14 3.4.1 Relationship to the 'system' group ..........................14 3.4.2 Relation to Interfaces MIB ..................................14 3.4.2.1 Layering Model ............................................15 3.4.2.2 ifStackTable ..............................................16 3.4.2.3 ifRcvAddressTable .........................................16 3.4.3 Relation to Original Bridge MIB .............................16 3.4.3.1 The dot1dBase Group .......................................16 3.4.3.2 The dot1dStp Group ........................................17 3.4.3.3 The dot1dTp Group .........................................17 3.4.3.4 The dot1dStatic Group .....................................17 3.4.3.5 Additions to the Original Bridge MIB ......................18 4 Definitions for Extended Bridge MIB .............................18 5 Definitions for Virtual Bridge MIB ..............................39 6 Acknowledgments .................................................80 7 Security Considerations .........................................80 8 References ......................................................81 9 Authors' Addresses ..............................................84 10 Intellectual Property ..........................................85 11 Full Copyright Statement .......................................86
The SNMP Management Framework presently consists of five major components:
SNMP管理框架目前由五个主要组件组成:
o An overall architecture, described in an Architecture for Describing SNMP Management Frameworks [ARCH].
o 总体架构,在用于描述SNMP管理框架的架构[ARCH]中描述。
o Mechanisms for describing and naming objects and events for the purpose of management. The first version of this Structure of Management Information (SMI) is called SMIv1 and described in STD 16, RFC 1155 [V1SMI], STD 16, RFC 1212 [V1CONCISE] and RFC 1215 [V1TRAPS]. The second version, called SMIv2, is described in STD 58, RFC 2578 [V2SMI], STD 58, RFC 2579 [V2TC] and STD 58, RFC 2580 [V2CONFORM].
o 为管理目的描述和命名对象和事件的机制。这种管理信息结构(SMI)的第一个版本称为SMIv1,在STD 16、RFC 1155[V1SMI]、STD 16、RFC 1212[V12]和RFC 1215[V15]中进行了描述。第二个版本称为SMIv2,在STD 58、RFC 2578[V2SMI]、STD 58、RFC 2579[V2TC]和STD 58、RFC 2580[V2CONFORM]中进行了描述。
o Message protocols for transferring management information. The first version of the SNMP message protocol is called SNMPv1 and described in STD 15, RFC 1157 [V1PROTO]. A second version of the SNMP message protocol, which is not an Internet standards track protocol, is called SNMPv2c and described in RFC 1901 [V2COMMUNITY] and RFC 1906 [V2TRANS]. The third version of the message protocol is called SNMPv3 and described in RFC 1906 [V2TRANS], Message Processing and Dispatching [V3MPC] and User-based Security Model [V3USM].
o 用于传输管理信息的消息协议。SNMP消息协议的第一个版本称为SNMPv1,并在STD 15 RFC 1157[V1PROTO]中进行了描述。SNMP消息协议的第二个版本不是Internet标准跟踪协议,称为SNMPv2c,在RFC 1901[V2COMMUNITY]和RFC 1906[V2TRANS]中进行了描述。消息协议的第三个版本称为SNMPv3,在RFC1906[V2TRANS]、消息处理和调度[V3MPC]和基于用户的安全模型[V3USM]中进行了描述。
o Protocol operations for accessing management information. The first set of protocol operations and associated PDU formats is described in STD 15, RFC 1157 [V1PROTO]. A second set of protocol operations and associated PDU formats is described in RFC 1905 [V2PROTO].
o 访问管理信息的协议操作。STD 15、RFC 1157[V1PROTO]中描述了第一组协议操作和相关PDU格式。RFC1905[V2PROTO]中描述了第二组协议操作和相关PDU格式。
o A set of fundamental applications described in SNMPv3 Applications [V3APPS] and the view-based access control mechanism described in View-based Access Control Model [V3VACM].
o SNMPv3应用程序[V3APPS]中描述的一组基本应用程序,以及基于视图的访问控制模型[V3VACM]中描述的基于视图的访问控制机制。
Managed objects are accessed via a virtual information store, termed the Management Information Base or MIB. Objects in the MIB are defined using the mechanisms defined in the SMI.
托管对象通过虚拟信息存储(称为管理信息库或MIB)进行访问。MIB中的对象是使用SMI中定义的机制定义的。
This memo specifies a MIB module that is compliant to the SMIv2. A MIB conforming to the SMIv1 can be produced through the appropriate translations. The resulting translated MIB must be semantically equivalent, except where objects or events are omitted because no translation is possible (use of Counter64). Some machine readable information in SMIv2 will be converted into textual descriptions in
此备忘录指定了符合SMIv2的MIB模块。通过适当的翻译,可以生成符合SMIv1的MIB。生成的已翻译MIB必须在语义上等效,除非由于无法翻译而省略了对象或事件(使用计数器64)。SMIv2中的一些机器可读信息将在中转换为文本描述
SMIv1 during the translation process. However, this loss of machine readable information is not considered to change the semantics of the MIB.
翻译过程中的SMIv1。但是,这种机器可读信息的丢失不被认为会改变MIB的语义。
A common device present in many networks is the Bridge. This device is used to connect Local Area Network segments below the network layer. These devices are often known as 'layer 2 switches'.
网桥是许多网络中常见的设备。此设备用于连接网络层下方的局域网段。这些设备通常被称为“第二层交换机”。
There are two major modes defined for this bridging: Source-Route and transparent. Source-Route bridging is described by IEEE 802.5 [802.5]. and is not discussed further in this document.
为此桥接定义了两种主要模式:源路由和透明。源路由桥接由IEEE 802.5[802.5]描述。在本文件中不作进一步讨论。
The transparent method of bridging is defined by IEEE 802.1D-1998 [802.1D] which is an update to the original IEEE 802.1D specification [802.1D-ORIG]. Managed objects for that original specification of transparent bridging were defined in RFC 1493 [BRIDGEMIB].
透明桥接方法由IEEE 802.1D-1998[802.1D]定义,它是对原始IEEE 802.1D规范[802.1D-ORIG]的更新。RFC 1493[BRIDGEMIB]中定义了该透明桥接原始规范的托管对象。
The original IEEE 802.1D is augmented by IEEE 802.1Q-1998 [802.1Q] to provide support for 'virtual bridged LANs' where a single bridged physical LAN network may be used to support multiple logical bridged LANs, each of which offers a service approximately the same as that defined by IEEE 802.1D. Such virtual LANs (VLANs) are an integral feature of switched LAN networks. A VLAN can be viewed as a group of end-stations on multiple LAN segments and can communicate as if they were on a single LAN. IEEE 802.1Q defines port-based Virtual LANs where membership is determined by the bridge port on which data frames are received. This memo defines the objects needed for the management of port-based VLANs in bridge entities.
最初的IEEE 802.1D由IEEE 802.1Q-1998[802.1Q]扩展,以提供对“虚拟桥接LAN”的支持,其中单个桥接物理LAN网络可用于支持多个逻辑桥接LAN,每个逻辑桥接LAN提供的服务与IEEE 802.1D定义的服务大致相同。这种虚拟局域网(VLAN)是交换式LAN网络的一个组成部分。VLAN可以看作是多个LAN网段上的一组终端站,可以像在单个LAN上一样进行通信。IEEE 802.1Q定义了基于端口的虚拟LAN,其中成员身份由接收数据帧的网桥端口确定。此备忘录定义了管理网桥实体中基于端口的VLAN所需的对象。
This memo defines those objects needed for the management of a bridging entity operating in the transparent mode, as well as some objects applicable to all types of bridges. Managed objects for Source-Route bridging are defined in RFC 1525 [SRBRIDGEMIB].
本备忘录定义了在透明模式下运行的桥接实体管理所需的对象,以及适用于所有类型桥接的一些对象。RFC 1525[SRBRIDGEMIB]中定义了源路由桥接的托管对象。
This MIB includes a comprehensive set of managed objects which attempts to match the set defined in IEEE 802.1D and IEEE 802.1Q. However, to be consistent with the spirit of the SNMP Framework, a subjective judgement was made to omit the objects from those standards most 'costly' to implement in an agent and least 'essential' for fault and configuration management. The omissions are described in section 3 below.
此MIB包括一组全面的托管对象,试图与IEEE 802.1D和IEEE 802.1Q中定义的对象集相匹配。然而,为了与SNMP框架的精神保持一致,作出了主观判断,从那些在代理中实施的“成本最高”且对故障和配置管理“最基本”的标准中省略了对象。下文第3节描述了这些遗漏。
Historical note:
历史注释:
The original bridge MIB [BRIDGEMIB] used the following principles for determining inclusion of an object in the BRIDGE-MIB module:
原始桥MIB[BRIDGEMIB]使用以下原则来确定是否将对象包含在bridge-MIB模块中:
(1) Start with a small set of essential objects and add only as further objects are needed.
(1) 从一小组基本对象开始,仅在需要其他对象时添加。
(2) Require objects be essential for either fault or configuration management.
(2) 要求对象对于故障管理或配置管理至关重要。
(3) Consider evidence of current use and/or utility.
(3) 考虑当前使用和/或实用工具的证据。
(4) Limit the total of objects.
(4) 限制对象的总数。
(5) Exclude objects which are simply derivable from others in this or other MIBs.
(5) 排除在此MIB或其他MIB中可从其他MIB派生的对象。
(6) Avoid causing critical sections to be heavily instrumented. The guideline that was followed is one counter per critical section per layer.
(6) 避免对关键部分进行大量检测。遵循的准则是每层每临界截面一个计数器。
This document defines additional objects, on top of those existing in the original BRIDGE-MIB module defined in [BRIDGEMIB]: that MIB module is to be maintained unchanged for backwards compatibility. Section 3.4.3 of the present document contains some recommendations regarding usage of objects in the original bridge MIB by devices implementing the enhancements defined here.
本文档在[BRIDGEMIB]中定义的原始BRIDGE-MIB模块中现有对象的基础上定义了其他对象:为了向后兼容,MIB模块将保持不变。本文档的第3.4.3节包含一些关于实现此处定义的增强功能的设备使用原始网桥MIB中对象的建议。
Two MIB modules are defined here:
此处定义了两个MIB模块:
(1) Managed objects for an extended bridge MIB module P-BRIDGE-MIB for the traffic class and multicast filtering enhancements defined by IEEE 802.1D-1998 [802.1D].
(1) IEEE 802.1D-1998[802.1D]定义的流量类和多播过滤增强的扩展网桥MIB模块P-bridge-MIB的托管对象。
(2) Managed objects for a virtual bridge MIB module Q-BRIDGE-MIB for the Virtual LAN bridging enhancements defined by IEEE 802.1Q-1998 [802.1Q].
(2) 虚拟网桥MIB模块Q-bridge-MIB的托管对象,用于IEEE 802.1Q-1998[802.1Q]定义的虚拟LAN桥接增强功能。
Objects in this MIB are arranged into groups. Each group is organized as a set of related objects. The overall structure and assignment of objects to their groups is shown below.
此MIB中的对象按组排列。每个组都组织为一组相关对象。对象的总体结构及其组的分配如下所示。
This section contains a cross-reference to the objects defined in IEEE 802.1D-1998 [802.1D]. It also details those objects that are not considered necessary in this MIB module.
本节包含对IEEE 802.1D-1998[802.1D]中定义的对象的交叉引用。它还详细说明了在此MIB模块中不需要的对象。
Some objects defined by IEEE 802.1D-1998 have been included in the virtual bridge MIB module rather than this one: entries in dot1qTpGroupTable, dot1qForwardAllTable and dot1qForwardUnregisteredTable are required for virtual bridged LANs with additional indexing (e.g. per-VLAN, per-FDB) and so are not defined here. Instead, devices which do not implement virtual bridged LANs but do implement the Extended Forwarding Services defined by IEEE 802.1D (i.e. dynamic learning of multicast group addresses and group service requirements in the filtering database) should implement these tables with a fixed value for dot1qFdbId (the value 1 is recommended) or dot1qVlanIndex (the value 1 is recommended). Devices which support Extended Filtering Services should support dot1qTpGroupTable, dot1qForwardAllTable and dot1qForwardUnregisteredTable.
IEEE 802.1D-1998定义的某些对象已包含在虚拟网桥MIB模块中,而不是此模块中:具有附加索引(例如,每个VLAN、每个FDB)的虚拟网桥LAN需要dot1qTpGroupTable、dot1qForwardAllTable和dot1qForwardUnregisteredTable中的条目,因此此处未定义。相反,不实现虚拟桥接LAN但实现IEEE 802.1D定义的扩展转发服务(即,过滤数据库中多播组地址和组服务要求的动态学习)的设备应使用dot1qFdbId的固定值(建议值1)实现这些表或dot1qVlanIndex(建议值为1)。支持扩展筛选服务的设备应支持dot1qTpGroupTable、dot1qForwardAllTable和dot1qforwardunregistedtable。
Extended Bridge MIB Name IEEE 802.1D-1998 Name
扩展网桥MIB名称IEEE 802.1D-1998名称
dot1dExtBase Bridge dot1dDeviceCapabilities dot1dExtendedFilteringServices dot1dTrafficClasses dot1dTrafficClassesEnabled dot1dGmrpStatus .ApplicantAdministrativeControl dot1dPriority dot1dPortPriorityTable dot1dPortDefaultUserPriority .UserPriority dot1dPortNumTrafficClasses dot1dUserPriorityRegenTable .UserPriorityRegenerationTable dot1dUserPriority dot1dRegenUserPriority dot1dTrafficClassTable .TrafficClassTable dot1dTrafficClassPriority dot1dTrafficClass dot1dPortOutboundAccessPriorityTable .OutboundAccessPriorityTable dot1dPortOutboundAccessPriority dot1dGarp dot1dPortGarpTable dot1dPortGarpJoinTime .JoinTime dot1dPortGarpLeaveTime .LeaveTime dot1dPortGarpLeaveAllTime .LeaveAllTime dot1dGmrp dot1dPortGmrpTable dot1dPortGmrpStatus .ApplicantAdministrativeControl dot1dPortGmrpFailedRegistrations .FailedRegistrations dot1dPortGmrpLastPduOrigin .OriginatorOfLastPDU dot1dTp dot1dTpHCPortTable dot1dTpHCPortInFrames .BridgePort.FramesReceived dot1dTpHCPortOutFrames .ForwardOutBound dot1dTpHCPortInDiscards .DiscardInbound dot1dTpPortOverflowTable dot1dTpPortInOverflowFrames .BridgePort.FramesReceived dot1dTpPortOutOverflowFrames .ForwardOutBound dot1dTpPortInOverflowDiscards .DiscardInbound
Dot1TextBase桥Dot1DeviceCapabilities Dot1ExtendedFilteringServices Dot1TrafficClasses Dot1TrafficClasses Enabled dot1dGmrpStatus.ApplicationAdministrativeControl Dot1Priority Dot1Priority Dot1PortPriorityTable Dot1DefaultUserPriority.UserPriority Dot1PortNumTrafficClasses Dot1UserPriorityRegentable.UserPriorityRegenerationTableDot1UserPriority dot1dRegenUserPriority Dot1TrafficClassTable.TrafficClassTable Dot1TrafficClassPriority Dot1TrafficClass Dot1OutboundAccessPriorityTable.OutboundAccessPriorityTable Dot1OutboundAccessPriority dot1dGarp Dot1PortGarpJoinTime.JoinTime Dot1PortGarpLaveTime.LeaveTime Dot1PortGarpLaveAllTime.LeaveAllTime dot1dGmrp Dot1dPortgMaptable dot1dPortGmrpStatus.Application Administrative Control dot1dPortGmrpFailedRegistrations.FailedRegistrations Dot1dPortgMRPlastdUorigin.OrigatorFlastDu dot1dTp Dot1dTPhPortable Dot1dTPhPortinFrames.BridgePort.Frames接收的Dot1dTPhPortoutFrames.ForwardOutBound Dot1dTPhPortInDiscards.DiscardInbound dot1dTpPortOverflowTable dot1dTpPortInOverflowFrames.BridgePort.Frames接收到的dot1dTpPortOutOverflowFrames.ForwardOutBound dot1dTpPortInOverflowDiscards.DiscardInbound
The following IEEE 802.1D-1998 management objects have not been included in the Bridge MIB for the indicated reasons.
由于指出的原因,网桥MIB中未包括以下IEEE 802.1D-1998管理对象。
IEEE 802.1D-1998 Object Disposition
IEEE 802.1D-1998对象配置
Bridge.StateValue not considered useful Bridge.ApplicantAdministrativeControl not provided per-attribute (e.g. per-VLAN, per-Group). Only per-{device,port,application} control is provided in this MIB.
Bridge.StateValue未被视为有用的Bridge.ApplicationAdministrativeControl未为每个属性(例如每个VLAN、每个组)提供。此MIB中仅提供每-{device,port,application}控件。
This section contains section number cross-references to manageable objects defined in IEEE 802.1Q-1998 [802.1Q]. These objects have been included in this MIB as they provide a natural fit with the IEEE 802.1D objects with which they are co-located.
本节包含对IEEE 802.1Q-1998[802.1Q]中定义的可管理对象的节号交叉引用。这些对象已包含在本MIB中,因为它们与IEEE 802.1D对象(它们位于同一位置)自然匹配。
Extended Bridge MIB Name IEEE 802.1Q-1998 Section and Name
扩展网桥MIB名称IEEE 802.1Q-1998节和名称
dot1dExtBase Bridge dot1dDeviceCapabilities dot1qStaticEntryIndividualPort 5.2 implementation options dot1qIVLCapable dot1qSVLCapable dot1qHybridCapable dot1qConfigurablePvidTagging 12.10.1.1 read bridge vlan config dot1dLocalVlanCapable dot1dPortCapabilitiesTable dot1dPortCapabilities dot1qDot1qTagging 5.2 implementation options dot1qConfigurableAcceptableFrameTypes 5.2 implementation options dot1qIngressFiltering 5.2 implementation options
DOT1TextBase网桥DOT1DeviceCapabilities DOT1QStationCentryinDivUALPORT 5.2实现选项DOT1QIVLABLE DOT1QSVLABLE DOT1QHybridABLE DOT1QConfigulatablePVidTagging 12.10.1.1读取网桥vlan配置DOT1LocalVLABLE DOT1PortCapabilities DOT1Portabilities DOT1QDOT1QTAGING 5.2实现选项DOT1QConfigurationAcceptableFrameTypes 5.2实现选项DOT1QingPressFiltering 5.2实现选项
This group contains the objects which are applicable to all bridges implementing the traffic class and multicast filtering features of IEEE 802.1D-1998 [802.1D]. It includes per-device configuration of GARP and GMRP protocols. This group will be implemented by all devices which implement the extensions defined in 802.1D-1998.
该组包含适用于所有实现IEEE 802.1D-1998[802.1D]流量类和多播过滤功能的网桥的对象。它包括GARP和GMRP协议的每个设备配置。该组将由实现802.1D-1998中定义的扩展的所有设备实现。
This group contains the objects for configuring and reporting status of priority-based queuing mechanisms in a bridge. This includes per-port user_priority treatment, mapping of user_priority in frames into internal traffic classes and outbound user_priority and access_priority.
此组包含用于配置和报告网桥中基于优先级的排队机制状态的对象。这包括每端口用户优先级处理、将帧中的用户优先级映射到内部流量类以及出站用户优先级和访问优先级。
This group contains the objects for configuring and reporting on operation of the Generic Attribute Registration Protocol (GARP).
此组包含用于配置和报告通用属性注册协议(GARP)操作的对象。
This group contains the objects for configuring and reporting on operation of the GARP Multicast Registration Protocol (GMRP).
此组包含用于配置和报告GARP多播注册协议(GMRP)操作的对象。
This table extends the dot1dTp group from the original bridge MIB [BRIDGEMIB] and contains the objects for reporting port bridging statistics for high capacity network interfaces.
此表从原始网桥MIB[BRIDGEMIB]扩展了dot1dTp组,并包含用于报告高容量网络接口的端口桥接统计信息的对象。
This table extends the dot1dTp group from the original bridge MIB [BRIDGEMIB] and contains the objects for reporting the upper bits of port bridging statistics for high capacity network interfaces for when 32-bit counters are inadequate.
此表从原始网桥MIB[BRIDGEMIB]扩展了dot1dTp组,并包含用于在32位计数器不足时报告高容量网络接口端口桥接统计信息高位的对象。
Objects in this MIB are arranged into groups. Each group is organized as a set of related objects. The overall structure and assignment of objects to their groups is shown below. Some manageable objects defined in the original bridge MIB [BRIDGEMIB] need to be indexed differently when they are used in a VLAN bridging environment: these objects are, therefore, effectively duplicated by new objects with different indexing which are defined in the Virtual Bridge MIB.
此MIB中的对象按组排列。每个组都组织为一组相关对象。对象的总体结构及其组的分配如下所示。当在VLAN桥接环境中使用原始网桥MIB[BRIDGEMIB]中定义的一些可管理对象时,需要对其进行不同的索引:因此,这些对象由虚拟网桥MIB中定义的具有不同索引的新对象进行有效复制。
This section contains section-number cross-references to manageable objects defined in clause 12 of IEEE 802.1Q-1998 [802.1Q]. It also details those objects that are not considered necessary in this MIB module.
本节包含IEEE 802.1Q-1998[802.1Q]第12条中定义的可管理对象的章节号交叉引用。它还详细说明了在此MIB模块中不需要的对象。
Note: unlike IEEE 802.1D-1998, IEEE 802.1Q-1998 [802.1Q] did not define exact syntax for a set of managed objects: the following cross-references indicate the section numbering of the descriptions of management operations from clause 12 in the latter document.
注:与IEEE 802.1D-1998不同,IEEE 802.1Q-1998[802.1Q]没有为一组受管对象定义准确的语法:以下交叉引用表示后一文件第12条中管理操作描述的章节编号。
Virtual Bridge MIB object IEEE 802.1Q-1998 Reference
虚拟网桥MIB对象IEEE 802.1Q-1998参考
dot1qBase dot1qVlanVersionNumber 12.10.1.1 read bridge vlan config dot1qMaxVlanId 12.10.1.1 read bridge vlan config dot1qMaxSupportedVlans 12.10.1.1 read bridge vlan config dot1qNumVlans dot1qGvrpStatus 12.9.2.1/2 read/set garp applicant controls dot1qTp dot1qFdbTable dot1qFdbId dot1qFdbDynamicCount 12.7.1.1.3 read filtering d/base dot1qTpFdbTable dot1qTpFdbAddress dot1qTpFdbPort dot1qTpFdbStatus dot1qTpGroupTable 12.7.7.1 read filtering entry dot1qTpGroupAddress dot1qTpGroupEgressPorts dot1qTpGroupLearnt dot1qForwardAllTable 12.7.7.1 read filtering entry dot1qForwardAllPorts dot1qForwardAllStaticPorts dot1qForwardAllForbiddenPorts dot1qForwardUnregisteredTable 12.7.7.1 read filtering entry dot1qForwardUnregisteredPorts dot1qForwardUnregisteredStaticPorts dot1qForwardUnregisteredForbiddenPorts dot1qStatic dot1qStaticUnicastTable 12.7.7.1 create/delete/read filtering entry 12.7.6.1 read permanent database dot1qStaticUnicastAddress dot1qStaticUnicastReceivePort dot1qStaticUnicastAllowedToGoTo dot1qStaticUnicastStatus dot1qStaticMulticastTable 12.7.7.1 create/delete/read filtering entry 12.7.6.1 read permanent database dot1qStaticMulticastAddress dot1qStaticMulticastReceivePort dot1qStaticMulticastStaticEgressPorts
dot1qBase dot1qVlanVersionNumber 12.10.1.1 read bridge vlan config dot1qMaxVlanId 12.10.1.1 read bridge vlan config dot1qMaxSupportedVlans 12.10.1.1 read bridge vlan config dot1qNumVlans dot1qGvrpStatus 12.9.2.1/2 read/set garp applicant controls dot1qTp dot1qFdbTable dot1qFdbId dot1qFdbDynamicCount 12.7.1.1.3 read filtering d/base dot1qTpFdbTable dot1qTpFdbAddress dot1qTpFdbPort dot1qTpFdbStatus dot1qTpGroupTable 12.7.7.1 read filtering entry dot1qTpGroupAddress dot1qTpGroupEgressPorts dot1qTpGroupLearnt dot1qForwardAllTable 12.7.7.1 read filtering entry dot1qForwardAllPorts dot1qForwardAllStaticPorts dot1qForwardAllForbiddenPorts dot1qForwardUnregisteredTable 12.7.7.1 read filtering entry dot1qForwardUnregisteredPorts dot1qForwardUnregisteredStaticPorts dot1qForwardUnregisteredForbiddenPorts dot1qStatic dot1qStaticUnicastTable 12.7.7.1 create/delete/read filtering entry 12.7.6.1 read permanent database dot1qStaticUnicastAddress dot1qStaticUnicastReceivePort dot1qStaticUnicastAllowedToGoTo dot1qStaticUnicastStatus dot1qStaticMulticastTable 12.7.7.1 create/delete/read filtering entry 12.7.6.1 read permanent database dot1qStaticMulticastAddress dot1qStaticMulticastReceivePort dot1qStaticMulticastStaticEgressPorts
dot1qStaticMulticastForbiddenEgressPorts dot1qStaticMulticastStatus dot1qVlan dot1qVlanNumDeletes dot1qVlanCurrentTable 12.10.2.1 read vlan configuration 12.10.3.5 read VID to FID allocations 12.10.3.6 read FID allocated to VID 12.10.3.7 read VIDs allocated to FID dot1qVlanTimeMark dot1qVlanIndex dot1qVlanFdbId dot1qVlanCurrentEgressPorts dot1qVlanCurrentUntaggedPorts dot1qVlanStatus dot1qVlanCreationTime dot1qVlanStaticTable 12.7.7.1/2/3 create/delete/read filtering entry 12.7.6.1 read permanent database 12.10.2.2 create vlan config 12.10.2.3 delete vlan config dot1qVlanStaticName 12.4.1.3 set bridge name dot1qVlanStaticEgressPorts dot1qVlanForbiddenEgressPorts dot1qVlanStaticUntaggedPorts dot1qVlanStaticRowStatus dot1qNextFreeLocalVlanIndex dot1qPortVlanTable 12.10.1.1 read bridge vlan configuration dot1qPvid 12.10.1.2 configure PVID values dot1qPortAcceptableFrameTypes 12.10.1.3 configure acceptable frame types parameter dot1qPortIngressFiltering 12.10.1.4 configure ingress filtering parameters dot1qPortGvrpStatus 12.9.2.2 read/set garp applicant controls dot1qPortGvrpFailedRegistrations dot1qPortGvrpLastPduOrigin dot1qPortVlanStatisticsTable 12.6.1.1 read forwarding port counters dot1qTpVlanPortInFrames dot1qTpVlanPortOutFrames dot1qTpVlanPortInDiscards dot1qTpVlanPortInOverflowFrames dot1qTpVlanPortOutOverflowFrames dot1qTpVlanPortInOverflowDiscards
dot1qStaticMulticastForbiddenEgressPorts dot1qStaticMulticastStatus dot1qVlan dot1qVlanNumDeletes dot1qVlanCurrentTable 12.10.2.1 read vlan configuration 12.10.3.5 read VID to FID allocations 12.10.3.6 read FID allocated to VID 12.10.3.7 read VIDs allocated to FID dot1qVlanTimeMark dot1qVlanIndex dot1qVlanFdbId dot1qVlanCurrentEgressPorts dot1qVlanCurrentUntaggedPorts dot1qVlanStatus dot1qVlanCreationTime dot1qVlanStaticTable 12.7.7.1/2/3 create/delete/read filtering entry 12.7.6.1 read permanent database 12.10.2.2 create vlan config 12.10.2.3 delete vlan config dot1qVlanStaticName 12.4.1.3 set bridge name dot1qVlanStaticEgressPorts dot1qVlanForbiddenEgressPorts dot1qVlanStaticUntaggedPorts dot1qVlanStaticRowStatus dot1qNextFreeLocalVlanIndex dot1qPortVlanTable 12.10.1.1 read bridge vlan configuration dot1qPvid 12.10.1.2 configure PVID values dot1qPortAcceptableFrameTypes 12.10.1.3 configure acceptable frame types parameter dot1qPortIngressFiltering 12.10.1.4 configure ingress filtering parameters dot1qPortGvrpStatus 12.9.2.2 read/set garp applicant controls dot1qPortGvrpFailedRegistrations dot1qPortGvrpLastPduOrigin dot1qPortVlanStatisticsTable 12.6.1.1 read forwarding port counters dot1qTpVlanPortInFrames dot1qTpVlanPortOutFrames dot1qTpVlanPortInDiscards dot1qTpVlanPortInOverflowFrames dot1qTpVlanPortOutOverflowFrames dot1qTpVlanPortInOverflowDiscards
dot1qPortVlanHCStatisticsTable 12.6.1.1 read forwarding port counters dot1qTpVlanPortHCInFrames dot1qTpVlanPortHCOutFrames dot1qTpVlanPortHCInDiscards dot1qLearningConstraintsTable 12.10.3.1/3/4 read/set/delete vlan learning constraints 12.10.3.2 read vlan learning constraints for VID dot1qConstraintVlan dot1qConstraintSet dot1qConstraintType dot1qConstraintStatus dot1qConstraintSetDefault dot1qConstraintTypeDefault
DOT1QPortVLANC统计表12.6.1.1读取转发端口计数器DOT1QTPVLANPortHciframes dot1qTpVlanPortHCOutFrames DOT1QTPVLANPortHcidCards DOT1QLearningConstraints表12.10.3.1/4读取/设置/删除vlan学习约束12.10.3.2读取VID DOT1QCONSTVLAN DOT1QCONSTVLAN dot1qConstraintSet dot1qConstraintType的vlan学习约束dot1qConstraintStatus dot1qConstraintSetDefault dot1qConstraintTypeDefault
The following IEEE 802.1Q management objects have not been included in the Bridge MIB for the indicated reasons.
由于指出的原因,网桥MIB中未包括以下IEEE 802.1Q管理对象。
IEEE 802.1Q-1998 Operation Disposition
IEEE 802.1Q-1998操作配置
reset bridge (12.4.1.4) not considered useful
复位电桥(12.4.1.4)不被认为有用
reset vlan bridge (12.10.1.5) not considered useful
重置vlan网桥(12.10.1.5)不被认为有用
read forwarding port counters (12.6.1.1) discard on error details not considered useful
读取转发端口计数器(12.6.1.1)错误时丢弃详细信息不可用
read permanent database (12.7.6.1) permanent database size not considered useful number of static filtering count rows in entries dot1qStaticUnicastTable + dot1qStaticMulticastTable number of static VLAN count rows in registration entries dot1qVlanStaticTable
读取永久数据库(12.7.6.1)永久数据库大小未被视为有用项dot1qStaticUnicastTable中的静态筛选计数行数+DOT1QSTATICMULITCASTABLE注册项dot1qVlanStaticTable中的静态VLAN计数行数
read filtering entry range use GetNext operation. (12.7.7.4)
读取筛选条目范围使用GetNext操作。(12.7.7.4)
read filtering database (12.7.1.1) filtering database size not considered useful number of dynamic group address count rows applicable to each entries (12.7.1.3) FDB in dot1dTpGroupTable
读取筛选数据库(12.7.1.1)筛选数据库大小未被视为有用的动态组地址计数行数适用于dot1dTpGroupTable中的每个条目(12.7.1.3)FDB
read garp state (12.9.3.1) not considered useful
读取garp状态(12.9.3.1)不认为有用
notify vlan registration failure not considered useful (12.10.1.6)
通知vlan注册失败不被认为有用(12.10.1.6)
notify learning constraint violation (12.10.3.10) not considered useful
通知学习约束违反(12.10.3.10)被视为无效
This mandatory group contains the objects which are applicable to all bridges implementing IEEE 802.1Q virtual LANs.
此强制组包含适用于实现IEEE 802.1Q虚拟LAN的所有网桥的对象。
This group contains objects that control the operation and report the status of transparent bridging. This includes management of the dynamic Filtering Databases for both unicast and multicast forwarding. This group will be implemented by all bridges that perform destination-address filtering.
此组包含控制操作和报告透明桥接状态的对象。这包括管理单播和多播转发的动态筛选数据库。此组将由执行目标地址筛选的所有网桥实现。
This group contains objects that control static configuration information for transparent bridging. This includes management of the static entries in the Filtering Databases for both unicast and multicast forwarding.
此组包含控制透明桥接的静态配置信息的对象。这包括管理过滤数据库中单播和多播转发的静态条目。
This group contains objects that control configuration and report status of the Virtual LANs known to a bridge. This includes management of the statically configured VLANs as well as reporting VLANs discovered by other means e.g. GVRP. It also controls configuration and reports status of per-port objects relating to VLANs and reports traffic statistics. It also provides for management of the VLAN Learning Constraints.
此组包含控制网桥已知的虚拟LAN的配置和报告状态的对象。这包括管理静态配置的VLAN,以及报告通过其他方式(如GVRP)发现的VLAN。它还控制与VLAN相关的每个端口对象的配置和报告状态,并报告流量统计信息。它还提供了VLAN学习约束的管理。
The datatypes MacAddress, BridgeId, Timeout, EnabledStatus, PortList, VlanIndex and VlanId are used as textual conventions in this document. These textual conventions have NO effect on either the syntax nor the semantics of any managed object. Objects defined using these conventions are always encoded by means of the rules that define their primitive type. Hence, no changes to the SMI or the SNMP are necessary to accommodate these textual conventions which are adopted merely for the convenience of readers.
数据类型MacAddress、BridgeId、Timeout、EnabledStatus、PortList、VlanIndex和VlanId在本文档中用作文本约定。这些文本约定对任何托管对象的语法或语义都没有影响。使用这些约定定义的对象总是通过定义其基本类型的规则进行编码。因此,不需要对SMI或SNMP进行任何更改来适应这些仅为方便读者而采用的文本约定。
As described above, some IEEE 802.1D management objects have not been included in this MIB because they overlap with objects in other MIBs applicable to a bridge implementing this MIB. In particular, it is assumed that a bridge implementing this MIB will also implement (at least) the 'system' group defined in MIB-II [MIB2], the 'interfaces' group defined in [INTERFACEMIB] and the original bridge MIB [BRIDGEMIB].
如上所述,一些IEEE 802.1D管理对象未包含在此MIB中,因为它们与其他MIB中的对象重叠,这些MIB适用于实现此MIB的网桥。具体而言,假设实现此MIB的网桥还将实现(至少)MIB-II[MIB2]中定义的“系统”组、[INTERFACEMIB]中定义的“接口”组和原始网桥MIB[BRIDGEMIB]。
In MIB-II, the 'system' group is defined as being mandatory for all systems such that each managed entity contains one instance of each object in the 'system' group. Thus, those objects apply to the entity as a whole irrespective of whether the entity's sole functionality is bridging, or whether bridging is only a subset of the entity's functionality.
在MIB-II中,“系统”组被定义为所有系统的必需组,因此每个受管实体包含“系统”组中每个对象的一个实例。因此,这些对象作为一个整体应用于实体,而不管实体的唯一功能是桥接,还是桥接只是实体功能的子集。
The Interfaces Group MIB [INTERFACEMIB], requires that any MIB which is an adjunct of the Interfaces Group MIB, clarify specific areas within the Interfaces Group MIB. These areas were intentionally left vague in the Interfaces Group MIB to avoid over-constraining the MIB, thereby precluding management of certain media-types.
接口组MIB[INTERFACEMIB]要求作为接口组MIB附属的任何MIB澄清接口组MIB内的特定区域。在接口组MIB中故意将这些区域保留为模糊区域,以避免过度约束MIB,从而排除对某些媒体类型的管理。
The Interfaces Group MIB enumerates several areas which a media-specific MIB must clarify. Each of these areas is addressed in a following subsection. The implementor is referred to the Interfaces Group MIB in order to understand the general intent of these areas.
接口组MIB列举了媒体特定MIB必须澄清的几个方面。以下小节将介绍这些领域中的每一个领域。为了理解这些领域的一般意图,实现者被称为接口组MIB。
In the Interfaces Group MIB, the 'interfaces' group is defined as being mandatory for all systems and contains information on an entity's interfaces, where each interface is thought of as being attached to a `subnetwork'. (Note that this term is not to be confused with `subnet' which refers to an addressing partitioning scheme used in the Internet suite of protocols.) The term 'segment' is used in this memo to refer to such a subnetwork, whether it be an Ethernet segment, a 'ring', a WAN link, or even an X.25 virtual circuit.
在接口组MIB中,“接口”组被定义为所有系统的必需组,并包含实体接口的信息,其中每个接口被视为连接到“子网络”。(请注意,不要将此术语与“子网”混淆,后者指的是互联网协议套件中使用的寻址分区方案。)本备忘录中使用的术语“段”指的是此类子网,无论是以太网段、“环网”、WAN链路,甚至是X.25虚拟电路。
Implicit in this Extended Bridge MIB is the notion of ports on a bridge. Each of these ports is associated with one interface of the 'interfaces' group (one row in ifTable) and, in most situations, each port is associated with a different interface. However, there are situations in which multiple ports are associated with the same
在这个扩展的网桥MIB中,隐含着网桥上端口的概念。这些端口中的每一个都与“接口”组的一个接口(ifTable中的一行)相关联,并且在大多数情况下,每个端口都与不同的接口相关联。但是,在某些情况下,多个端口与同一个端口关联
interface. An example of such a situation would be several ports each corresponding one-to-one with several X.25 virtual circuits but all on the same interface.
界面这种情况的一个例子是多个端口,每个端口对应一对一的多个X.25虚拟电路,但都在同一接口上。
Each port is uniquely identified by a port number. A port number has no mandatory relationship to an interface number, but in the simple case a port number will have the same value as the corresponding interface's interface number. Port numbers are in the range (1..dot1dBaseNumPorts).
每个端口都由端口号唯一标识。端口号与接口号没有强制关系,但在简单的情况下,端口号将与相应接口的接口号具有相同的值。端口号的范围为(1..dot1dbasenumport)。
Some entities perform other functionality as well as bridging through the sending and receiving of data on their interfaces. In such situations, only a subset of the data sent/received on an interface is within the domain of the entity's bridging functionality. This subset is considered to be delineated according to a set of protocols, with some protocols being bridged, and other protocols not being bridged. For example, in an entity which exclusively performed bridging, all protocols would be considered as being bridged, whereas in an entity which performed IP routing on IP datagrams and only bridged other protocols, only the non-IP data would be considered as being bridged. Thus, this Extended Bridge MIB (and in particular, its counters) is applicable only to that subset of the data on an entity's interfaces which is sent/received for a protocol being bridged. All such data is sent/received via the ports of the bridge.
一些实体通过在其接口上发送和接收数据来执行其他功能以及桥接。在这种情况下,接口上发送/接收的数据只有一个子集在实体桥接功能的域内。该子集被认为是根据一组协议来描述的,其中一些协议被桥接,而其他协议没有被桥接。例如,在专门执行桥接的实体中,所有协议都将被视为桥接,而在对IP数据报执行IP路由且仅桥接其他协议的实体中,只有非IP数据将被视为桥接。因此,此扩展网桥MIB(尤其是其计数器)仅适用于实体接口上的数据子集,该数据子集是针对正在桥接的协议发送/接收的。所有此类数据通过网桥的端口发送/接收。
This memo assumes the interpretation of the Interfaces Group to be in accordance with the Interfaces Group MIB [INTERFACEMIB] which states that the interfaces table (ifTable) contains information on the managed resource's interfaces and that each sub-layer below the internetwork layer of a network interface is considered an interface.
本备忘录假设接口组的解释符合接口组MIB[INTERFACEMIB],其中说明接口表(ifTable)包含受管资源接口的信息,并且网络接口的网络层下的每个子层都被视为接口。
This document recommends that, within an entity, VLANs which are instantiated as an entry in dot1qVlanCurrentTable by either management configuration through dot1qVlanStaticTable or by dynamic means (e.g. through GVRP), are NOT also represented by an entry in ifTable.
本文件建议,在实体内,通过dot1qVlanStaticTable的管理配置或通过动态方式(例如,通过GVRP)实例化为dot1qVlanCurrentTable中的条目的VLAN也不由ifTable中的条目表示。
Where an entity contains higher-layer protocol entities e.g. IP-layer interfaces that transmit and receive traffic to/from a VLAN, these should be represented in the ifTable as interfaces of type propVirtual(53). Protocol-specific types such as l3ipxvlan(137) should not be used here since there is no implication that the bridge will perform any protocol filtering before delivering up to these virtual interfaces.
如果实体包含高层协议实体,例如向VLAN发送和接收流量的IP层接口,则这些实体应在ifTable中表示为propVirtual(53)类型的接口。此处不应使用特定于协议的类型,如l3ipxvlan(137),因为这并不意味着网桥将在交付到这些虚拟接口之前执行任何协议过滤。
In addition, the Interfaces Group MIB [INTERFACEMIB] defines a table 'ifStackTable' for describing the relationship between logical interfaces within an entity. It is anticipated that implementors will use this table to describe the binding of e.g. IP interfaces to physical ports, although the presence of VLANs makes the representation less than perfect for showing connectivity: the ifStackTable cannot represent the full capability of the IEEE 802.1Q VLAN bridging standard since that makes a distinction between VLAN bindings on 'ingress' to and 'egress' from a port: these relationships may or may not be symmetrical whereas Interface MIB Evolution assumes a symmetrical binding for transmit and receive. This makes it necessary to define other manageable objects for configuring which ports are members of which VLANs.
此外,接口组MIB[INTERFACEMIB]定义了一个表“ifStackTable”,用于描述实体内逻辑接口之间的关系。预计实施者将使用此表来描述例如IP接口与物理端口的绑定,尽管VLAN的存在使得表示不太适合显示连接性:ifStackTable不能表示IEEE 802.1Q VLAN桥接标准的全部功能,因为这区分了端口“入口”和“出口”上的VLAN绑定:这些关系可能是对称的,也可能不是对称的接口MIB演进假定传输和接收采用对称绑定。这就需要定义其他可管理对象来配置哪些端口是哪些VLAN的成员。
This table contains all MAC addresses, unicast, multicast, and broadcast, for which an interface will receive packets and forward them up to a higher layer entity for local consumption. Note that this does not include addresses for data-link layer control protocols such as Spanning-Tree, GMRP or GVRP. The format of the address, contained in ifRcvAddressAddress, is the same as for ifPhysAddress.
此表包含所有MAC地址、单播、多播和广播,接口将接收这些地址的数据包并将其转发到更高层实体以供本地使用。请注意,这不包括数据链路层控制协议(如生成树、GMRP或GVRP)的地址。ifRcvAddressAddress中包含的地址格式与ifPhysAddress的格式相同。
This table does not include unicast or multicast addresses which are accepted for possible forwarding out some other port. This table is explicitly not intended to provide a bridge address filtering mechanism.
此表不包括单播或多播地址,这些地址可用于转发其他端口。此表明确不是为了提供网桥地址过滤机制。
This section defines how objects in the original bridge MIB module [BRIDGEMIB] should be represented for devices which implement the extensions: some of the old objects are less useful in such devices but must still be implemented for reasons of backwards compatibility. Note that formal conformance statements for that MIB module do not exist since it is defined in SMIv1.
本节定义了如何为实现扩展的设备表示原始桥接MIB模块[BRIDGEMIB]中的对象:一些旧对象在此类设备中不太有用,但出于向后兼容性的原因,仍然必须实现。请注意,该MIB模块的正式一致性声明不存在,因为它是在SMIv1中定义的。
This mandatory group contains the objects which are applicable to all types of bridges. Interpretation of this group is unchanged.
此必填组包含适用于所有类型桥梁的对象。对这一组的解释没有改变。
This group contains the objects that denote the bridge's state with respect to the Spanning Tree Protocol. Interpretation of this group is unchanged.
该组包含表示与生成树协议相关的网桥状态的对象。对这一组的解释没有改变。
This group contains objects that describe the entity's state with respect to transparent bridging.
此组包含描述实体相对于透明桥接的状态的对象。
In a device operating with a single Filtering Database, interpretation of this group is unchanged.
在使用单个筛选数据库运行的设备中,此组的解释保持不变。
In a device supporting multiple Filtering Databases, this group is interpreted as follows:
在支持多个筛选数据库的设备中,此组解释如下:
dot1dTpLearnedEntryDiscards The number of times that *any* of the FDBs became full.
DOT1DTPREARNEDENTRY放弃*任何*FDB已满的次数。
dot1dTpAgingTime This applies to all Filtering Databases.
dot1dTpAgingTime这适用于所有筛选数据库。
dot1dTpFdbTable Report MAC addresses learned on each port, regardless of which Filtering Database they have been learnt in. If an address has been learnt in multiple databases on a single port, report it only once. If an address has been learnt in multiple databases on more than one port, report the entry on any one of the valid ports.
dot1dTpFdbTable报告在每个端口上学习到的MAC地址,而不管它们在哪个过滤数据库中学习到。如果在一个端口上的多个数据库中读入了一个地址,则只报告一次。如果在多个数据库中的多个端口上读入了一个地址,请在任何一个有效端口上报告该条目。
dot1dTpPortTable This table is port-based and is not affected by multiple Filtering Databases or multiple VLANs. The counters should include frames received or transmitted for all VLANs. Note that equivalent 64-bit port statistics counters, as well as other objects to represent the upper 32 bits of these counters, are defined in this document for high capacity network interfaces. These have confromance statements to indicate for which speeds of interface they are required.
dot1dTpPortTable此表基于端口,不受多个筛选数据库或多个VLAN的影响。计数器应包括为所有VLAN接收或传输的帧。请注意,本文档中为高容量网络接口定义了等效的64位端口统计计数器以及表示这些计数器的上32位的其他对象。它们具有confromance语句,以指示所需的接口速度。
This optional group contains objects that describe the configuration of destination-address filtering.
此可选组包含描述目标地址筛选配置的对象。
In a device operating with a single Filtering Database, interpretation of this group is unchanged.
在使用单个筛选数据库运行的设备中,此组的解释保持不变。
In a device supporting multiple Filtering Databases, this group is interpreted as follows:
在支持多个筛选数据库的设备中,此组解释如下:
dot1dStaticTable Entries read from this table include all static entries from all of the Filtering Databases. Entries for the same MAC address and receive port in more than one Filtering Database must appear only once since these are the indices of this table. This table should be implemented as read-only in devices that support multiple Forwarding Databases - instead, write access should be provided through dot1qStaticUnicastTable and dot1qStaticMulticastTable, as defined in this document.
从该表读取的dot1dStaticTable条目包括所有筛选数据库中的所有静态条目。多个筛选数据库中相同MAC地址和接收端口的条目只能出现一次,因为它们是此表的索引。此表应在支持多个转发数据库的设备中以只读方式实现-相反,应通过本文档中定义的dot1qStaticUnicastTable和DOT1QSTATICMULITCASTTABLE提供写访问。
In addition to the objects in the original bridge MIB [BRIDGEMIB], this document contains:
除了原始桥MIB[BRIDGEMIB]中的对象外,本文档还包含:
(1) support for multiple traffic classes and dynamic multicast filtering as per IEEE 802.1D-1998 [802.1D].
(1) 根据IEEE 802.1D-1998[802.1D],支持多个流量类别和动态多播过滤。
(2) support for bridged Virtual LANs as per IEEE 802.1Q-1998 [802.1Q].
(2) 根据IEEE 802.1Q-1998[802.1Q]对桥接虚拟LAN的支持。
(3) support for 64-bit versions of original bridge MIB [BRIDGEMIB] port counters.
(3) 支持64位版本的原始网桥MIB[BRIDGEMIB]端口计数器。
P-BRIDGE-MIB DEFINITIONS ::= BEGIN
P-BRIDGE-MIB DEFINITIONS ::= BEGIN
-- ------------------------------------------------------------- -- MIB for IEEE 802.1p devices -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- MIB for IEEE 802.1p devices -- -------------------------------------------------------------
IMPORTS MODULE-IDENTITY, OBJECT-TYPE, Counter32, Counter64 FROM SNMPv2-SMI TruthValue, TimeInterval, MacAddress, TEXTUAL-CONVENTION FROM SNMPv2-TC MODULE-COMPLIANCE, OBJECT-GROUP FROM SNMPv2-CONF dot1dTp, dot1dTpPort, dot1dBridge, dot1dBasePortEntry, dot1dBasePort FROM BRIDGE-MIB;
从SNMPv2 SMI TruthValue导入模块标识、对象类型、计数器32、计数器64、时间间隔、MACAAddress、从SNMPv2 TC导入文本约定模块符合性、从SNMPv2 CONF dot1dTp导入对象组、从BRIDGE-MIB导入dot1dTpPort、从BRIDGE-MIB导入dot1dBasePortEntry、从BRIDGE-MIB导入dot1dBasePort;
pBridgeMIB MODULE-IDENTITY LAST-UPDATED "9908250000Z" ORGANIZATION "IETF Bridge MIB Working Group" CONTACT-INFO " Les Bell Postal: 3Com Europe Ltd. 3Com Centre, Boundary Way Hemel Hempstead, Herts. HP2 7YU UK Phone: +44 1442 438025 Email: Les_Bell@3Com.com
PBRIDGEIB模块标识最后更新的“9908250000Z”组织“IETF桥接MIB工作组”联系方式“Les Bell邮政:3Com欧洲有限公司3Com中心,Herts Hemel Hempstead边界路。HP2 7YU英国电话:+44 1442 438025电子邮件:Les_Bell@3Com.com
Andrew Smith Postal: Extreme Networks 3585 Monroe St. Santa Clara CA 95051 USA Phone: +1 408 579 2821 Email: andrew@extremenetworks.com
Andrew Smith Postal:Extreme Networks 3585美国加利福尼亚州圣克拉拉门罗街95051电话:+1 408 579 2821电子邮件:andrew@extremenetworks.com
Paul Langille Postal: Newbridge Networks 5 Corporate Drive Andover, MA 01810 USA Phone: +1 978 691 4665 Email: langille@newbridge.com
Paul Langille邮政:美国马萨诸塞州安多弗市新桥网络5号企业大道01810电话:+1 978 691 4665电子邮件:langille@newbridge.com
Anil Rijhsinghani Postal: Cabletron Systems 50 Minuteman Road Andover, MA 01810 USA Phone: +1 978 684 1295 Email: anil@cabletron.com
Anil Rijhsinghani邮政:Cabletron Systems 50 Minuteman Road Andover,MA 01810美国电话:+1 978 684 1295电子邮件:anil@cabletron.com
Keith McCloghrie Postal: cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134-1706 USA Phone: +1 408 526 5260 Email: kzm@cisco.com"
基思·麦克洛赫里邮政:思科系统公司,美国加利福尼亚州圣何塞西塔斯曼大道170号95134-1706电话:+1408 526 5260电子邮件:kzm@cisco.com"
DESCRIPTION "The Bridge MIB Extension module for managing Priority and Multicast Filtering, defined by IEEE 802.1D-1998."
描述“用于管理优先级和多播过滤的网桥MIB扩展模块,由IEEE 802.1D-1998定义。”
-- revision history
--修订历史
REVISION "9908250000Z" DESCRIPTION "Initial version, published as RFC 2674."
修订版“9908250000Z”说明“初始版本,发布为RFC 2674。”
::= { dot1dBridge 6 }
::= { dot1dBridge 6 }
pBridgeMIBObjects OBJECT IDENTIFIER ::= { pBridgeMIB 1 }
pBridgeMIBObjects OBJECT IDENTIFIER ::= { pBridgeMIB 1 }
-- ------------------------------------------------------------- -- Textual Conventions -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Textual Conventions -- -------------------------------------------------------------
EnabledStatus ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "A simple status value for the object." SYNTAX INTEGER { enabled(1), disabled(2) }
EnabledStatus ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "A simple status value for the object." SYNTAX INTEGER { enabled(1), disabled(2) }
-- -------------------------------------------------------------
-- -------------------------------------------------------------
-- ------------------------------------------------------------- -- groups in the P-BRIDGE MIB -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- groups in the P-BRIDGE MIB -- -------------------------------------------------------------
dot1dExtBase OBJECT IDENTIFIER ::= { pBridgeMIBObjects 1 } dot1dPriority OBJECT IDENTIFIER ::= { pBridgeMIBObjects 2 } dot1dGarp OBJECT IDENTIFIER ::= { pBridgeMIBObjects 3 } dot1dGmrp OBJECT IDENTIFIER ::= { pBridgeMIBObjects 4 }
dot1dExtBase OBJECT IDENTIFIER ::= { pBridgeMIBObjects 1 } dot1dPriority OBJECT IDENTIFIER ::= { pBridgeMIBObjects 2 } dot1dGarp OBJECT IDENTIFIER ::= { pBridgeMIBObjects 3 } dot1dGmrp OBJECT IDENTIFIER ::= { pBridgeMIBObjects 4 }
-- -------------------------------------------------------------
-- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the dot1dExtBase group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the dot1dExtBase group -- -------------------------------------------------------------
dot1dDeviceCapabilities OBJECT-TYPE SYNTAX BITS { dot1dExtendedFilteringServices(0), -- can perform filtering of -- individual multicast addresses -- controlled by GMRP. dot1dTrafficClasses(1), -- can map user priority to -- multiple traffic classes.
dot1dDeviceCapabilities OBJECT-TYPE SYNTAX BITS { dot1dExtendedFilteringServices(0), -- can perform filtering of -- individual multicast addresses -- controlled by GMRP. dot1dTrafficClasses(1), -- can map user priority to -- multiple traffic classes.
dot1qStaticEntryIndividualPort(2), -- dot1qStaticUnicastReceivePort & -- dot1qStaticMulticastReceivePort -- can represent non-zero entries. dot1qIVLCapable(3), -- Independent VLAN Learning. dot1qSVLCapable(4), -- Shared VLAN Learning. dot1qHybridCapable(5), -- both IVL & SVL simultaneously. dot1qConfigurablePvidTagging(6), -- whether the implementation -- supports the ability to -- override the default PVID -- setting and its egress status -- (VLAN-Tagged or Untagged) on -- each port. dot1dLocalVlanCapable(7) -- can support multiple local -- bridges, outside of the scope -- of 802.1Q defined VLANs. } MAX-ACCESS read-only STATUS current DESCRIPTION "Indicates the optional parts of IEEE 802.1D and 802.1Q that are implemented by this device and are manageable through this MIB. Capabilities that are allowed on a per-port basis are indicated in dot1dPortCapabilities." REFERENCE "ISO/IEC 15802-3 Section 5.2, IEEE 802.1Q/D11 Section 5.2, 12.10.1.1.3/b/2" ::= { dot1dExtBase 1 }
dot1qStaticEntryIndividualPort(2), -- dot1qStaticUnicastReceivePort & -- dot1qStaticMulticastReceivePort -- can represent non-zero entries. dot1qIVLCapable(3), -- Independent VLAN Learning. dot1qSVLCapable(4), -- Shared VLAN Learning. dot1qHybridCapable(5), -- both IVL & SVL simultaneously. dot1qConfigurablePvidTagging(6), -- whether the implementation -- supports the ability to -- override the default PVID -- setting and its egress status -- (VLAN-Tagged or Untagged) on -- each port. dot1dLocalVlanCapable(7) -- can support multiple local -- bridges, outside of the scope -- of 802.1Q defined VLANs. } MAX-ACCESS read-only STATUS current DESCRIPTION "Indicates the optional parts of IEEE 802.1D and 802.1Q that are implemented by this device and are manageable through this MIB. Capabilities that are allowed on a per-port basis are indicated in dot1dPortCapabilities." REFERENCE "ISO/IEC 15802-3 Section 5.2, IEEE 802.1Q/D11 Section 5.2, 12.10.1.1.3/b/2" ::= { dot1dExtBase 1 }
dot1dTrafficClassesEnabled OBJECT-TYPE SYNTAX TruthValue MAX-ACCESS read-write STATUS current DESCRIPTION "The value true(1) indicates that Traffic Classes are enabled on this bridge. When false(2), the bridge operates with a single priority level for all traffic." DEFVAL { true } ::= { dot1dExtBase 2 }
dot1dTrafficClassesEnabled OBJECT-TYPE SYNTAX TruthValue MAX-ACCESS read-write STATUS current DESCRIPTION "The value true(1) indicates that Traffic Classes are enabled on this bridge. When false(2), the bridge operates with a single priority level for all traffic." DEFVAL { true } ::= { dot1dExtBase 2 }
dot1dGmrpStatus OBJECT-TYPE SYNTAX EnabledStatus MAX-ACCESS read-write STATUS current DESCRIPTION
dot1dGmrpStatus对象类型语法启用状态MAX-ACCESS读写状态当前说明
"The administrative status requested by management for GMRP. The value enabled(1) indicates that GMRP should be enabled on this device, in all VLANs, on all ports for which it has not been specifically disabled. When disabled(2), GMRP is disabled, in all VLANs, on all ports and all GMRP packets will be forwarded transparently. This object affects both Applicant and Registrar state machines. A transition from disabled(2) to enabled(1) will cause a reset of all GMRP state machines on all ports." DEFVAL { enabled } ::= { dot1dExtBase 3 }
"The administrative status requested by management for GMRP. The value enabled(1) indicates that GMRP should be enabled on this device, in all VLANs, on all ports for which it has not been specifically disabled. When disabled(2), GMRP is disabled, in all VLANs, on all ports and all GMRP packets will be forwarded transparently. This object affects both Applicant and Registrar state machines. A transition from disabled(2) to enabled(1) will cause a reset of all GMRP state machines on all ports." DEFVAL { enabled } ::= { dot1dExtBase 3 }
-- ------------------------------------------------------------- -- Port Capabilities Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Port Capabilities Table -- -------------------------------------------------------------
dot1dPortCapabilitiesTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortCapabilitiesEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains capabilities information about every port that is associated with this bridge." ::= { dot1dExtBase 4 }
dot1dPortCapabilitiesTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortCapabilitiesEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains capabilities information about every port that is associated with this bridge." ::= { dot1dExtBase 4 }
dot1dPortCapabilitiesEntry OBJECT-TYPE SYNTAX Dot1dPortCapabilitiesEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A set of capabilities information about this port indexed by dot1dBasePort." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortCapabilitiesTable 1 }
dot1dPortCapabilitiesEntry OBJECT-TYPE SYNTAX Dot1dPortCapabilitiesEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A set of capabilities information about this port indexed by dot1dBasePort." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortCapabilitiesTable 1 }
Dot1dPortCapabilitiesEntry ::= SEQUENCE { dot1dPortCapabilities BITS }
Dot1dPortCapabilitiesEntry ::= SEQUENCE { dot1dPortCapabilities BITS }
dot1dPortCapabilities OBJECT-TYPE SYNTAX BITS { dot1qDot1qTagging(0), -- supports 802.1Q VLAN tagging of -- frames and GVRP. dot1qConfigurableAcceptableFrameTypes(1), -- allows modified values of
dot1dPortCapabilities OBJECT-TYPE SYNTAX BITS { dot1qDot1qTagging(0), -- supports 802.1Q VLAN tagging of -- frames and GVRP. dot1qConfigurableAcceptableFrameTypes(1), -- allows modified values of
-- dot1qPortAcceptableFrameTypes. dot1qIngressFiltering(2) -- supports the discarding of any -- frame received on a Port whose -- VLAN classification does not -- include that Port in its Member -- set. } MAX-ACCESS read-only STATUS current DESCRIPTION "Indicates the parts of IEEE 802.1D and 802.1Q that are optional on a per-port basis that are implemented by this device and are manageable through this MIB." REFERENCE "ISO/IEC 15802-3 Section 5.2, IEEE 802.1Q/D11 Section 5.2" ::= { dot1dPortCapabilitiesEntry 1 }
-- dot1qPortAcceptableFrameTypes. dot1qIngressFiltering(2) -- supports the discarding of any -- frame received on a Port whose -- VLAN classification does not -- include that Port in its Member -- set. } MAX-ACCESS read-only STATUS current DESCRIPTION "Indicates the parts of IEEE 802.1D and 802.1Q that are optional on a per-port basis that are implemented by this device and are manageable through this MIB." REFERENCE "ISO/IEC 15802-3 Section 5.2, IEEE 802.1Q/D11 Section 5.2" ::= { dot1dPortCapabilitiesEntry 1 }
-- ------------------------------------------------------------- -- the dot1dPriority group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the dot1dPriority group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Port Priority Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Port Priority Table -- -------------------------------------------------------------
dot1dPortPriorityTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains information about every port that is associated with this transparent bridge." ::= { dot1dPriority 1 }
dot1dPortPriorityTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains information about every port that is associated with this transparent bridge." ::= { dot1dPriority 1 }
dot1dPortPriorityEntry OBJECT-TYPE SYNTAX Dot1dPortPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A list of Default User Priorities for each port of a transparent bridge. This is indexed by dot1dBasePort." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortPriorityTable 1 }
dot1dPortPriorityEntry OBJECT-TYPE SYNTAX Dot1dPortPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A list of Default User Priorities for each port of a transparent bridge. This is indexed by dot1dBasePort." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortPriorityTable 1 }
Dot1dPortPriorityEntry ::= SEQUENCE {
Dot1dPortPriorityEntry ::= SEQUENCE {
dot1dPortDefaultUserPriority INTEGER, dot1dPortNumTrafficClasses INTEGER }
dot1dPortDefaultUserPriority整数,dot1dPortNumTrafficClasses整数}
dot1dPortDefaultUserPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-write STATUS current DESCRIPTION "The default ingress User Priority for this port. This only has effect on media, such as Ethernet, that do not support native User Priority." ::= { dot1dPortPriorityEntry 1 }
dot1dPortDefaultUserPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-write STATUS current DESCRIPTION "The default ingress User Priority for this port. This only has effect on media, such as Ethernet, that do not support native User Priority." ::= { dot1dPortPriorityEntry 1 }
dot1dPortNumTrafficClasses OBJECT-TYPE SYNTAX INTEGER (1..8) MAX-ACCESS read-write STATUS current DESCRIPTION "The number of egress traffic classes supported on this port. This object may optionally be read-only." ::= { dot1dPortPriorityEntry 2 }
dot1dPortNumTrafficClasses OBJECT-TYPE SYNTAX INTEGER (1..8) MAX-ACCESS read-write STATUS current DESCRIPTION "The number of egress traffic classes supported on this port. This object may optionally be read-only." ::= { dot1dPortPriorityEntry 2 }
-- ------------------------------------------------------------- -- User Priority Regeneration Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- User Priority Regeneration Table -- -------------------------------------------------------------
dot1dUserPriorityRegenTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dUserPriorityRegenEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A list of Regenerated User Priorities for each received User Priority on each port of a bridge. The Regenerated User Priority value may be used to index the Traffic Class Table for each input port. This only has effect on media that support native User Priority. The default values for Regenerated User Priorities are the same as the User Priorities." REFERENCE "ISO/IEC 15802-3 Section 6.4" ::= { dot1dPriority 2 }
dot1dUserPriorityRegenTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dUserPriorityRegenEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A list of Regenerated User Priorities for each received User Priority on each port of a bridge. The Regenerated User Priority value may be used to index the Traffic Class Table for each input port. This only has effect on media that support native User Priority. The default values for Regenerated User Priorities are the same as the User Priorities." REFERENCE "ISO/IEC 15802-3 Section 6.4" ::= { dot1dPriority 2 }
dot1dUserPriorityRegenEntry OBJECT-TYPE SYNTAX Dot1dUserPriorityRegenEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A mapping of incoming User Priority to a Regenerated User Priority." INDEX { dot1dBasePort, dot1dUserPriority } ::= { dot1dUserPriorityRegenTable 1 }
dot1dUserPriorityRegenEntry OBJECT-TYPE SYNTAX Dot1dUserPriorityRegenEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A mapping of incoming User Priority to a Regenerated User Priority." INDEX { dot1dBasePort, dot1dUserPriority } ::= { dot1dUserPriorityRegenTable 1 }
Dot1dUserPriorityRegenEntry ::= SEQUENCE { dot1dUserPriority INTEGER, dot1dRegenUserPriority INTEGER }
Dot1dUserPriorityRegenEntry ::= SEQUENCE { dot1dUserPriority INTEGER, dot1dRegenUserPriority INTEGER }
dot1dUserPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS not-accessible STATUS current DESCRIPTION "The User Priority for a frame received on this port." ::= { dot1dUserPriorityRegenEntry 1 }
dot1dUserPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS not-accessible STATUS current DESCRIPTION "The User Priority for a frame received on this port." ::= { dot1dUserPriorityRegenEntry 1 }
dot1dRegenUserPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-write STATUS current DESCRIPTION "The Regenerated User Priority the incoming User Priority is mapped to for this port." ::= { dot1dUserPriorityRegenEntry 2 }
dot1dRegenUserPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-write STATUS current DESCRIPTION "The Regenerated User Priority the incoming User Priority is mapped to for this port." ::= { dot1dUserPriorityRegenEntry 2 }
-- ------------------------------------------------------------- -- Traffic Class Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Traffic Class Table -- -------------------------------------------------------------
dot1dTrafficClassTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dTrafficClassEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table mapping evaluated User Priority to Traffic Class, for forwarding by the bridge. Traffic class is a number in the range (0..(dot1dPortNumTrafficClasses-1))." REFERENCE
DOT1TRAFFICLASSTABLE DOT1TRAFFICLASSENTRY MAX-ACCESS不可访问状态的对象类型语法序列当前描述“将评估的用户优先级映射到流量类的表,用于通过网桥转发。流量类是范围(0..(dot1dPortNumTrafficClasses-1))内的数字。”参考
"ISO/IEC 15802-3 Table 7-2" ::= { dot1dPriority 3 }
"ISO/IEC 15802-3 Table 7-2" ::= { dot1dPriority 3 }
dot1dTrafficClassEntry OBJECT-TYPE SYNTAX Dot1dTrafficClassEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "User Priority to Traffic Class mapping." INDEX { dot1dBasePort, dot1dTrafficClassPriority } ::= { dot1dTrafficClassTable 1 }
dot1dTrafficClassEntry OBJECT-TYPE SYNTAX Dot1dTrafficClassEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "User Priority to Traffic Class mapping." INDEX { dot1dBasePort, dot1dTrafficClassPriority } ::= { dot1dTrafficClassTable 1 }
Dot1dTrafficClassEntry ::= SEQUENCE { dot1dTrafficClassPriority INTEGER, dot1dTrafficClass INTEGER }
Dot1dTrafficClassEntry ::= SEQUENCE { dot1dTrafficClassPriority INTEGER, dot1dTrafficClass INTEGER }
dot1dTrafficClassPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS not-accessible STATUS current DESCRIPTION "The Priority value determined for the received frame. This value is equivalent to the priority indicated in the tagged frame received, or one of the evaluated priorities, determined according to the media-type.
Dot1TrafficClassPriority对象类型语法整数(0..7)MAX-ACCESS not ACCESS STATUS current DESCRIPTION“为接收到的帧确定的优先级值。此值相当于接收到的标记帧中指示的优先级,或根据媒体类型确定的一个评估优先级。
For untagged frames received from Ethernet media, this value is equal to the dot1dPortDefaultUserPriority value for the ingress port.
对于从以太网介质接收的未标记帧,此值等于入口端口的dot1dPortDefaultUserPriority值。
For untagged frames received from non-Ethernet media, this value is equal to the dot1dRegenUserPriority value for the ingress port and media-specific user priority." ::= { dot1dTrafficClassEntry 1 }
For untagged frames received from non-Ethernet media, this value is equal to the dot1dRegenUserPriority value for the ingress port and media-specific user priority." ::= { dot1dTrafficClassEntry 1 }
dot1dTrafficClass OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-write STATUS current DESCRIPTION "The Traffic Class the received frame is mapped to." ::= { dot1dTrafficClassEntry 2 }
dot1dTrafficClass OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-write STATUS current DESCRIPTION "The Traffic Class the received frame is mapped to." ::= { dot1dTrafficClassEntry 2 }
-- -------------------------------------------------------------
-- -------------------------------------------------------------
-- Outbound Access Priority Table -- -------------------------------------------------------------
-- Outbound Access Priority Table -- -------------------------------------------------------------
dot1dPortOutboundAccessPriorityTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortOutboundAccessPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table mapping Regenerated User Priority to Outbound Access Priority. This is a fixed mapping for all port types, with two options for 802.5 Token Ring." REFERENCE "ISO/IEC 15802-3 Table 7-3" ::= { dot1dPriority 4 }
dot1dPortOutboundAccessPriorityTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortOutboundAccessPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table mapping Regenerated User Priority to Outbound Access Priority. This is a fixed mapping for all port types, with two options for 802.5 Token Ring." REFERENCE "ISO/IEC 15802-3 Table 7-3" ::= { dot1dPriority 4 }
dot1dPortOutboundAccessPriorityEntry OBJECT-TYPE SYNTAX Dot1dPortOutboundAccessPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Regenerated User Priority to Outbound Access Priority mapping." INDEX { dot1dBasePort, dot1dRegenUserPriority } ::= { dot1dPortOutboundAccessPriorityTable 1 }
dot1dPortOutboundAccessPriorityEntry OBJECT-TYPE SYNTAX Dot1dPortOutboundAccessPriorityEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Regenerated User Priority to Outbound Access Priority mapping." INDEX { dot1dBasePort, dot1dRegenUserPriority } ::= { dot1dPortOutboundAccessPriorityTable 1 }
Dot1dPortOutboundAccessPriorityEntry ::= SEQUENCE { dot1dPortOutboundAccessPriority INTEGER }
Dot1dPortOutboundAccessPriorityEntry ::= SEQUENCE { dot1dPortOutboundAccessPriority INTEGER }
dot1dPortOutboundAccessPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-only STATUS current DESCRIPTION "The Outbound Access Priority the received frame is mapped to." ::= { dot1dPortOutboundAccessPriorityEntry 1 }
dot1dPortOutboundAccessPriority OBJECT-TYPE SYNTAX INTEGER (0..7) MAX-ACCESS read-only STATUS current DESCRIPTION "The Outbound Access Priority the received frame is mapped to." ::= { dot1dPortOutboundAccessPriorityEntry 1 }
-- ------------------------------------------------------------- -- the dot1dGarp group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the dot1dGarp group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The GARP Port Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The GARP Port Table -- -------------------------------------------------------------
dot1dPortGarpTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortGarpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table of GARP control information about every bridge port. This is indexed by dot1dBasePort." ::= { dot1dGarp 1 }
dot1dPortGarpTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortGarpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table of GARP control information about every bridge port. This is indexed by dot1dBasePort." ::= { dot1dGarp 1 }
dot1dPortGarpEntry OBJECT-TYPE SYNTAX Dot1dPortGarpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "GARP control information for a bridge port." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortGarpTable 1 }
dot1dPortGarpEntry OBJECT-TYPE SYNTAX Dot1dPortGarpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "GARP control information for a bridge port." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortGarpTable 1 }
Dot1dPortGarpEntry ::= SEQUENCE { dot1dPortGarpJoinTime TimeInterval, dot1dPortGarpLeaveTime TimeInterval, dot1dPortGarpLeaveAllTime TimeInterval }
Dot1dPortGarpEntry ::= SEQUENCE { dot1dPortGarpJoinTime TimeInterval, dot1dPortGarpLeaveTime TimeInterval, dot1dPortGarpLeaveAllTime TimeInterval }
dot1dPortGarpJoinTime OBJECT-TYPE SYNTAX TimeInterval MAX-ACCESS read-write STATUS current DESCRIPTION "The GARP Join time, in centiseconds." DEFVAL { 20 } ::= { dot1dPortGarpEntry 1 }
dot1dPortGarpJoinTime OBJECT-TYPE SYNTAX TimeInterval MAX-ACCESS read-write STATUS current DESCRIPTION "The GARP Join time, in centiseconds." DEFVAL { 20 } ::= { dot1dPortGarpEntry 1 }
dot1dPortGarpLeaveTime OBJECT-TYPE SYNTAX TimeInterval MAX-ACCESS read-write STATUS current DESCRIPTION "The GARP Leave time, in centiseconds." DEFVAL { 60 } ::= { dot1dPortGarpEntry 2 }
dot1dPortGarpLeaveTime OBJECT-TYPE SYNTAX TimeInterval MAX-ACCESS read-write STATUS current DESCRIPTION "The GARP Leave time, in centiseconds." DEFVAL { 60 } ::= { dot1dPortGarpEntry 2 }
dot1dPortGarpLeaveAllTime OBJECT-TYPE SYNTAX TimeInterval MAX-ACCESS read-write STATUS current DESCRIPTION "The GARP LeaveAll time, in centiseconds." DEFVAL { 1000 } ::= { dot1dPortGarpEntry 3 }
dot1dPortGarpLeaveAllTime OBJECT-TYPE SYNTAX TimeInterval MAX-ACCESS read-write STATUS current DESCRIPTION "The GARP LeaveAll time, in centiseconds." DEFVAL { 1000 } ::= { dot1dPortGarpEntry 3 }
-- ------------------------------------------------------------- -- The GMRP Port Configuration and Status Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The GMRP Port Configuration and Status Table -- -------------------------------------------------------------
dot1dPortGmrpTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortGmrpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table of GMRP control and status information about every bridge port. Augments the dot1dBasePortTable." ::= { dot1dGmrp 1 }
dot1dPortGmrpTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dPortGmrpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table of GMRP control and status information about every bridge port. Augments the dot1dBasePortTable." ::= { dot1dGmrp 1 }
dot1dPortGmrpEntry OBJECT-TYPE SYNTAX Dot1dPortGmrpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "GMRP control and status information for a bridge port." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortGmrpTable 1 }
dot1dPortGmrpEntry OBJECT-TYPE SYNTAX Dot1dPortGmrpEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "GMRP control and status information for a bridge port." AUGMENTS { dot1dBasePortEntry } ::= { dot1dPortGmrpTable 1 }
Dot1dPortGmrpEntry ::= SEQUENCE { dot1dPortGmrpStatus EnabledStatus, dot1dPortGmrpFailedRegistrations Counter32, dot1dPortGmrpLastPduOrigin MacAddress }
Dot1dPortGmrpEntry ::= SEQUENCE { dot1dPortGmrpStatus EnabledStatus, dot1dPortGmrpFailedRegistrations Counter32, dot1dPortGmrpLastPduOrigin MacAddress }
dot1dPortGmrpStatus OBJECT-TYPE SYNTAX EnabledStatus MAX-ACCESS read-write STATUS current
dot1dPortGmrpStatus对象类型语法启用状态MAX-ACCESS读写状态当前
DESCRIPTION "The administrative state of GMRP operation on this port. The value enabled(1) indicates that GMRP is enabled on this port in all VLANs as long as dot1dGmrpStatus is also enabled(1). A value of disabled(2) indicates that GMRP is disabled on this port in all VLANs: any GMRP packets received will be silently discarded and no GMRP registrations will be propagated from other ports. Setting this to a value of enabled(1) will be stored by the agent but will only take effect on the GMRP protocol operation if dot1dGmrpStatus also indicates the value enabled(1). This object affects all GMRP Applicant and Registrar state machines on this port. A transition from disabled(2) to enabled(1) will cause a reset of all GMRP state machines on this port." DEFVAL { enabled } ::= { dot1dPortGmrpEntry 1 }
DESCRIPTION "The administrative state of GMRP operation on this port. The value enabled(1) indicates that GMRP is enabled on this port in all VLANs as long as dot1dGmrpStatus is also enabled(1). A value of disabled(2) indicates that GMRP is disabled on this port in all VLANs: any GMRP packets received will be silently discarded and no GMRP registrations will be propagated from other ports. Setting this to a value of enabled(1) will be stored by the agent but will only take effect on the GMRP protocol operation if dot1dGmrpStatus also indicates the value enabled(1). This object affects all GMRP Applicant and Registrar state machines on this port. A transition from disabled(2) to enabled(1) will cause a reset of all GMRP state machines on this port." DEFVAL { enabled } ::= { dot1dPortGmrpEntry 1 }
dot1dPortGmrpFailedRegistrations OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The total number of failed GMRP registrations, for any reason, in all VLANs, on this port." ::= { dot1dPortGmrpEntry 2 }
dot1dPortGmrpFailedRegistrations OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The total number of failed GMRP registrations, for any reason, in all VLANs, on this port." ::= { dot1dPortGmrpEntry 2 }
dot1dPortGmrpLastPduOrigin OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS read-only STATUS current DESCRIPTION "The Source MAC Address of the last GMRP message received on this port." ::= { dot1dPortGmrpEntry 3 }
dot1dPortGmrpLastPduOrigin OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS read-only STATUS current DESCRIPTION "The Source MAC Address of the last GMRP message received on this port." ::= { dot1dPortGmrpEntry 3 }
-- ------------------------------------------------------------- -- High Capacity Port Table for Transparent Bridges -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- High Capacity Port Table for Transparent Bridges -- -------------------------------------------------------------
dot1dTpHCPortTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dTpHCPortEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains information about every high capacity port that is associated with this transparent bridge." ::= { dot1dTp 5 }
dot1dTpHCPortTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dTpHCPortEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains information about every high capacity port that is associated with this transparent bridge." ::= { dot1dTp 5 }
dot1dTpHCPortEntry OBJECT-TYPE SYNTAX Dot1dTpHCPortEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Statistics information for each high capacity port of a transparent bridge." INDEX { dot1dTpPort } ::= { dot1dTpHCPortTable 1 }
dot1dTpHCPortEntry OBJECT-TYPE SYNTAX Dot1dTpHCPortEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Statistics information for each high capacity port of a transparent bridge." INDEX { dot1dTpPort } ::= { dot1dTpHCPortTable 1 }
Dot1dTpHCPortEntry ::= SEQUENCE { dot1dTpHCPortInFrames Counter64, dot1dTpHCPortOutFrames Counter64, dot1dTpHCPortInDiscards Counter64 }
Dot1dTpHCPortEntry ::= SEQUENCE { dot1dTpHCPortInFrames Counter64, dot1dTpHCPortOutFrames Counter64, dot1dTpHCPortInDiscards Counter64 }
dot1dTpHCPortInFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of frames that have been received by this port from its segment. Note that a frame received on the interface corresponding to this port is only counted by this object if and only if it is for a protocol being processed by the local bridging function, including bridge management frames." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpHCPortEntry 1 }
dot1dTpHCPortInFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of frames that have been received by this port from its segment. Note that a frame received on the interface corresponding to this port is only counted by this object if and only if it is for a protocol being processed by the local bridging function, including bridge management frames." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpHCPortEntry 1 }
dot1dTpHCPortOutFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of frames that have been transmitted by this port to its segment. Note that a frame transmitted on the interface corresponding to this port is only counted by this object if and only if it is for a protocol being processed by the local bridging function, including bridge management frames."
dot1dTpHCPortOutFrames对象类型语法计数器64 MAX-ACCESS只读状态当前说明“此端口传输到其段的帧数。请注意,仅当且仅当本地桥接功能正在处理协议(包括桥接管理帧)时,此对象才对在与此端口对应的接口上传输的帧进行计数。”
REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpHCPortEntry 2 }
REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpHCPortEntry 2 }
dot1dTpHCPortInDiscards OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "Count of valid frames that have been received by this port from its segment which were discarded (i.e., filtered) by the Forwarding Process." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpHCPortEntry 3 }
dot1dTpHCPortInDiscards OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "Count of valid frames that have been received by this port from its segment which were discarded (i.e., filtered) by the Forwarding Process." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpHCPortEntry 3 }
-- ---------------------------------------------------- -- Upper part of High Capacity Port Table for Transparent Bridges -- ----------------------------------------------------
-- ---------------------------------------------------- -- Upper part of High Capacity Port Table for Transparent Bridges -- ----------------------------------------------------
dot1dTpPortOverflowTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1dTpPortOverflowEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains the most-significant bits of statistics counters for ports that are associated with this transparent bridge that are on high capacity interfaces, as defined in the conformance clauses for this table. This table is provided as a way to read 64-bit counters for agents which support only SNMPv1.
Dot1dTpPortOverflowEntry MAX-ACCESS的dot1dTpPortOverflowTable对象类型语法序列不可访问状态当前说明“一个表,其中包含与此高容量接口上的透明网桥关联的端口的统计计数器的最高有效位,如此表的一致性条款中所定义。此表用于读取仅支持SNMPv1的代理的64位计数器。
Note that the reporting of most-significant and least-significant counter bits separately runs the risk of missing an overflow of the lower bits in the interval between sampling. The manager must be aware of this possibility, even within the same varbindlist, when interpreting the results of a request or asynchronous notification." ::= { dot1dTp 6 }
Note that the reporting of most-significant and least-significant counter bits separately runs the risk of missing an overflow of the lower bits in the interval between sampling. The manager must be aware of this possibility, even within the same varbindlist, when interpreting the results of a request or asynchronous notification." ::= { dot1dTp 6 }
dot1dTpPortOverflowEntry OBJECT-TYPE SYNTAX Dot1dTpPortOverflowEntry MAX-ACCESS not-accessible
dot1dTpPortOverflowEntry对象类型语法dot1dTpPortOverflowEntry MAX-ACCESS不可访问
STATUS current DESCRIPTION "The most significant bits of statistics counters for a high capacity interface of a transparent bridge. Each object is associated with a corresponding object in dot1dTpPortTable which indicates the least significant bits of the counter." INDEX { dot1dTpPort } ::= { dot1dTpPortOverflowTable 1 }
STATUS current DESCRIPTION "The most significant bits of statistics counters for a high capacity interface of a transparent bridge. Each object is associated with a corresponding object in dot1dTpPortTable which indicates the least significant bits of the counter." INDEX { dot1dTpPort } ::= { dot1dTpPortOverflowTable 1 }
Dot1dTpPortOverflowEntry ::= SEQUENCE { dot1dTpPortInOverflowFrames Counter32, dot1dTpPortOutOverflowFrames Counter32, dot1dTpPortInOverflowDiscards Counter32 }
Dot1dTpPortOverflowEntry ::= SEQUENCE { dot1dTpPortInOverflowFrames Counter32, dot1dTpPortOutOverflowFrames Counter32, dot1dTpPortInOverflowDiscards Counter32 }
dot1dTpPortInOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1dTpPortInFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpPortOverflowEntry 1 }
dot1dTpPortInOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1dTpPortInFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpPortOverflowEntry 1 }
dot1dTpPortOutOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1dTpPortOutFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpPortOverflowEntry 2 }
dot1dTpPortOutOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1dTpPortOutFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpPortOverflowEntry 2 }
dot1dTpPortInOverflowDiscards OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current
dot1dtpportinoverflow丢弃对象类型语法计数器32 MAX-ACCESS只读状态当前
DESCRIPTION "The number of times the associated dot1dTpPortInDiscards counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpPortOverflowEntry 3 }
DESCRIPTION "The number of times the associated dot1dTpPortInDiscards counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1dTpPortOverflowEntry 3 }
-- ------------------------------------------------------------- -- IEEE 802.1p MIB - Conformance Information -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- IEEE 802.1p MIB - Conformance Information -- -------------------------------------------------------------
pBridgeConformance OBJECT IDENTIFIER ::= { pBridgeMIB 2 }
pBridgeConformance OBJECT IDENTIFIER ::= { pBridgeMIB 2 }
pBridgeGroups OBJECT IDENTIFIER ::= { pBridgeConformance 1 }
pBridgeGroups OBJECT IDENTIFIER ::= { pBridgeConformance 1 }
pBridgeCompliances OBJECT IDENTIFIER ::= { pBridgeConformance 2 }
pBridgeCompliances OBJECT IDENTIFIER ::= { pBridgeConformance 2 }
-- ------------------------------------------------------------- -- units of conformance -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- units of conformance -- -------------------------------------------------------------
pBridgeExtCapGroup OBJECT-GROUP OBJECTS { dot1dDeviceCapabilities, dot1dPortCapabilities } STATUS current DESCRIPTION "A collection of objects indicating the optional capabilites of the device." ::= { pBridgeGroups 1 }
pBridgeExtCapGroup OBJECT-GROUP OBJECTS { dot1dDeviceCapabilities, dot1dPortCapabilities } STATUS current DESCRIPTION "A collection of objects indicating the optional capabilites of the device." ::= { pBridgeGroups 1 }
pBridgeDeviceGmrpGroup OBJECT-GROUP OBJECTS { dot1dGmrpStatus } STATUS current DESCRIPTION "A collection of objects providing device-level control for the Multicast Filtering extended bridge services." ::= { pBridgeGroups 2 }
pBridgeDeviceGmrpGroup OBJECT-GROUP OBJECTS { dot1dGmrpStatus } STATUS current DESCRIPTION "A collection of objects providing device-level control for the Multicast Filtering extended bridge services." ::= { pBridgeGroups 2 }
pBridgeDevicePriorityGroup OBJECT-GROUP OBJECTS { dot1dTrafficClassesEnabled } STATUS current DESCRIPTION "A collection of objects providing device-level control for the Priority services." ::= { pBridgeGroups 3 }
pBridgeDevicePriorityGroup OBJECT-GROUP OBJECTS { dot1dTrafficClassesEnabled } STATUS current DESCRIPTION "A collection of objects providing device-level control for the Priority services." ::= { pBridgeGroups 3 }
pBridgeDefaultPriorityGroup OBJECT-GROUP OBJECTS { dot1dPortDefaultUserPriority } STATUS current DESCRIPTION "A collection of objects defining the User Priority applicable to each port for media which do not support native User Priority." ::= { pBridgeGroups 4 }
pBridgeDefaultPriorityGroup OBJECT-GROUP OBJECTS { dot1dPortDefaultUserPriority } STATUS current DESCRIPTION "A collection of objects defining the User Priority applicable to each port for media which do not support native User Priority." ::= { pBridgeGroups 4 }
pBridgeRegenPriorityGroup OBJECT-GROUP OBJECTS { dot1dRegenUserPriority } STATUS current DESCRIPTION "A collection of objects defining the User Priorities applicable to each port for media which support native User Priority." ::= { pBridgeGroups 5 }
pBridgeRegenPriorityGroup OBJECT-GROUP OBJECTS { dot1dRegenUserPriority } STATUS current DESCRIPTION "A collection of objects defining the User Priorities applicable to each port for media which support native User Priority." ::= { pBridgeGroups 5 }
pBridgePriorityGroup OBJECT-GROUP OBJECTS { dot1dPortNumTrafficClasses, dot1dTrafficClass } STATUS current DESCRIPTION "A collection of objects defining the traffic classes within a bridge for each evaluated User Priority." ::= { pBridgeGroups 6 }
pBridgePriorityGroup OBJECT-GROUP OBJECTS { dot1dPortNumTrafficClasses, dot1dTrafficClass } STATUS current DESCRIPTION "A collection of objects defining the traffic classes within a bridge for each evaluated User Priority." ::= { pBridgeGroups 6 }
pBridgeAccessPriorityGroup OBJECT-GROUP OBJECTS { dot1dPortOutboundAccessPriority } STATUS current DESCRIPTION "A collection of objects defining the media dependent outbound access level for each priority." ::= { pBridgeGroups 7 }
pBridgeAccessPriorityGroup OBJECT-GROUP OBJECTS { dot1dPortOutboundAccessPriority } STATUS current DESCRIPTION "A collection of objects defining the media dependent outbound access level for each priority." ::= { pBridgeGroups 7 }
pBridgePortGarpGroup OBJECT-GROUP OBJECTS { dot1dPortGarpJoinTime, dot1dPortGarpLeaveTime, dot1dPortGarpLeaveAllTime } STATUS current DESCRIPTION "A collection of objects providing port level control and status information for GARP operation." ::= { pBridgeGroups 8 }
pBridgePortGarpGroup OBJECT-GROUP OBJECTS { dot1dPortGarpJoinTime, dot1dPortGarpLeaveTime, dot1dPortGarpLeaveAllTime } STATUS current DESCRIPTION "A collection of objects providing port level control and status information for GARP operation." ::= { pBridgeGroups 8 }
pBridgePortGmrpGroup OBJECT-GROUP OBJECTS { dot1dPortGmrpStatus, dot1dPortGmrpFailedRegistrations, dot1dPortGmrpLastPduOrigin } STATUS current DESCRIPTION "A collection of objects providing port level control and status information for GMRP operation." ::= { pBridgeGroups 9 }
pBridgePortGmrpGroup OBJECT-GROUP OBJECTS { dot1dPortGmrpStatus, dot1dPortGmrpFailedRegistrations, dot1dPortGmrpLastPduOrigin } STATUS current DESCRIPTION "A collection of objects providing port level control and status information for GMRP operation." ::= { pBridgeGroups 9 }
pBridgeHCPortGroup OBJECT-GROUP OBJECTS { dot1dTpHCPortInFrames, dot1dTpHCPortOutFrames, dot1dTpHCPortInDiscards } STATUS current DESCRIPTION "A collection of objects providing 64-bit statistics counters for high capacity bridge ports." ::= { pBridgeGroups 10 }
pBridgeHCPortGroup OBJECT-GROUP OBJECTS { dot1dTpHCPortInFrames, dot1dTpHCPortOutFrames, dot1dTpHCPortInDiscards } STATUS current DESCRIPTION "A collection of objects providing 64-bit statistics counters for high capacity bridge ports." ::= { pBridgeGroups 10 }
pBridgePortOverflowGroup OBJECT-GROUP OBJECTS { dot1dTpPortInOverflowFrames, dot1dTpPortOutOverflowFrames, dot1dTpPortInOverflowDiscards } STATUS current DESCRIPTION "A collection of objects providing overflow statistics counters for high capacity bridge ports." ::= { pBridgeGroups 11 }
pBridgePortOverflowGroup OBJECT-GROUP OBJECTS { dot1dTpPortInOverflowFrames, dot1dTpPortOutOverflowFrames, dot1dTpPortInOverflowDiscards } STATUS current DESCRIPTION "A collection of objects providing overflow statistics counters for high capacity bridge ports." ::= { pBridgeGroups 11 }
-- ------------------------------------------------------------- -- compliance statements -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- compliance statements -- -------------------------------------------------------------
pBridgeCompliance MODULE-COMPLIANCE STATUS current DESCRIPTION "The compliance statement for device support of Priority and Multicast Filtering extended bridging services."
pBridgeCompliance MODULE-COMPLIANCE STATUS当前描述“设备支持优先级和多播过滤扩展桥接服务的符合性声明”
MODULE MANDATORY-GROUPS { pBridgeExtCapGroup }
模块强制组{pBridgeExtCapGroup}
GROUP pBridgeDeviceGmrpGroup DESCRIPTION "This group is mandatory for devices supporting the GMRP application, defined by IEEE 802.1D Extended Filtering Services."
GROUP pBridgeDeviceGmrpGroup DESCRIPTION“此组对于支持GMRP应用程序的设备是必需的,由IEEE 802.1D扩展过滤服务定义。”
GROUP pBridgeDevicePriorityGroup DESCRIPTION "This group is mandatory only for devices supporting the priority forwarding operations defined by IEEE 802.1D."
GROUP pBridgeDevicePriorityGroup DESCRIPTION“此组仅对支持IEEE 802.1D定义的优先级转发操作的设备是必需的。”
GROUP pBridgeDefaultPriorityGroup DESCRIPTION "This group is mandatory only for devices supporting the priority forwarding operations defined by the extended bridge services with media types, such as Ethernet, that do not support native User Priority."
GROUP pBridgeDefaultPriorityGroup DESCRIPTION“此组仅对支持扩展网桥服务定义的优先级转发操作的设备是强制性的,这些设备具有不支持本机用户优先级的媒体类型,如以太网。”
GROUP pBridgeRegenPriorityGroup DESCRIPTION "This group is mandatory only for devices supporting the priority forwarding operations defined by IEEE 802.1D and which have interface media types that support native User Priority e.g. IEEE 802.5."
GROUP pBridgeRegenPriorityGroup DESCRIPTION“此组仅对支持IEEE 802.1D定义的优先级转发操作且具有支持本机用户优先级的接口媒体类型(如IEEE 802.5)的设备是必需的。”
GROUP pBridgePriorityGroup DESCRIPTION "This group is mandatory only for devices supporting the priority forwarding operations defined by IEEE 802.1D."
GROUP pBridgePriorityGroup DESCRIPTION“此组仅对支持IEEE 802.1D定义的优先级转发操作的设备是必需的。”
GROUP pBridgeAccessPriorityGroup DESCRIPTION "This group is optional and is relevant only for devices supporting the priority forwarding operations defined by IEEE 802.1D and which have interface media types that support native Access Priority e.g. IEEE 802.5."
GROUP pBridgeAccessPriorityGroup DESCRIPTION“此组是可选的,仅与支持IEEE 802.1D定义的优先级转发操作的设备相关,并且具有支持本机访问优先级的接口媒体类型,例如IEEE 802.5。”
GROUP pBridgePortGarpGroup DESCRIPTION "This group is mandatory for devices supporting any of the GARP applications: e.g. GMRP, defined by the extended filtering services of 802.1D; or GVRP, defined by 802.1Q (refer to the Q-BRIDGE-MIB for conformance statements for GVRP)."
GROUP pBridgePortGarpGroup DESCRIPTION“此组对于支持任何GARP应用程序的设备是强制性的:例如,由802.1D的扩展过滤服务定义的GMRP;或由802.1Q定义的GVRP(有关GVRP的一致性声明,请参阅Q-BRIDGE-MIB)。”
GROUP pBridgePortGmrpGroup DESCRIPTION "This group is mandatory for devices supporting the GMRP application, as defined by IEEE 802.1D Extended Filtering Services."
GROUP pBridgePortGmrpGroup DESCRIPTION“此组对于支持GMRP应用程序的设备是必需的,如IEEE 802.1D扩展过滤服务所定义。”
GROUP pBridgeHCPortGroup DESCRIPTION "Support for this group in a device is mandatory for those bridge ports which map to network interfaces that have the value of the corresponding instance of ifSpeed greater than 650,000,000 bits/second."
GROUP pBridgeHCPortGroup DESCRIPTION“对于映射到网络接口的网桥端口(其对应的ifSpeed实例的值大于650000000位/秒),设备中必须支持此组。”
GROUP pBridgePortOverflowGroup DESCRIPTION "Support for this group in a device is mandatory for those bridge ports which map to network interfaces that have the value of the corresponding instance of ifSpeed greater than 650,000,000 bits/second."
GROUP pBridgePortOverflowGroup DESCRIPTION“对于映射到网络接口的网桥端口(其对应的ifSpeed实例的值大于650000000位/秒),必须在设备中支持此组。”
OBJECT dot1dPortNumTrafficClasses MIN-ACCESS read-only DESCRIPTION "Write access is not required."
对象dot1dPortNumTrafficClasses MIN-ACCESS只读说明“不需要写访问权限。”
OBJECT dot1dTrafficClass MIN-ACCESS read-only DESCRIPTION "Write access is not required."
对象Dot1TrafficClass最小访问只读说明“不需要写访问。”
OBJECT dot1dRegenUserPriority MIN-ACCESS read-only DESCRIPTION "Write access is not required."
对象DOT1DREGUSERPRIORITY MIN-ACCESS只读描述“不需要写访问。”
::= { pBridgeCompliances 1 }
::= { pBridgeCompliances 1 }
END
终止
Q-BRIDGE-MIB DEFINITIONS ::= BEGIN
Q-BRIDGE-MIB DEFINITIONS ::= BEGIN
-- ------------------------------------------------------------- -- MIB for IEEE 802.1Q Devices -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- MIB for IEEE 802.1Q Devices -- -------------------------------------------------------------
IMPORTS MODULE-IDENTITY, OBJECT-TYPE, Counter32, Counter64, Unsigned32, TimeTicks FROM SNMPv2-SMI RowStatus, TruthValue, TEXTUAL-CONVENTION, MacAddress FROM SNMPv2-TC SnmpAdminString FROM SNMP-FRAMEWORK-MIB MODULE-COMPLIANCE, OBJECT-GROUP FROM SNMPv2-CONF dot1dBridge, dot1dBasePortEntry, dot1dBasePort FROM BRIDGE-MIB EnabledStatus FROM P-BRIDGE-MIB TimeFilter FROM RMON2-MIB;
从SNMPv2 SMI RowStatus导入模块标识、对象类型、计数器32、计数器64、无符号32、时间刻度、TruthValue、文本约定、从SNMPv2导入MacAddress从SNMPv2 TC导入SNMPAdministring从SNMP-FRAMEWORK-MIB模块合规性导入对象组从SNMPv2 CONF Dot1Bridge导入对象组、从dot1dBasePortEntry导入对象组、,来自网桥-MIB的dot1dBasePort从RMON2-MIB的P-BRIDGE-MIB时间过滤器启用状态;
qBridgeMIB MODULE-IDENTITY LAST-UPDATED "9908250000Z" ORGANIZATION "IETF Bridge MIB Working Group"
qBridgeMIB模块标识最后更新的“9908250000Z”组织“IETF桥接MIB工作组”
CONTACT-INFO " Les Bell Postal: 3Com Europe Ltd. 3Com Centre, Boundary Way Hemel Hempstead, Herts. HP2 7YU UK Phone: +44 1442 438025 Email: Les_Bell@3Com.com
联系信息“Les Bell邮政:3Com欧洲有限公司,位于Herts Hemel Hempstead边界路3Com中心。HP2 7YU英国电话:+44 1442 438025电子邮件:Les_Bell@3Com.com
Andrew Smith Postal: Extreme Networks 3585 Monroe St. Santa Clara CA 95051 USA Phone: +1 408 579 2821 Email: andrew@extremenetworks.com
Andrew Smith Postal:Extreme Networks 3585美国加利福尼亚州圣克拉拉门罗街95051电话:+1 408 579 2821电子邮件:andrew@extremenetworks.com
Paul Langille Postal: Newbridge Networks 5 Corporate Drive Andover, MA 01810 USA Phone: +1 978 691 4665 Email: langille@newbridge.com
Paul Langille邮政:美国马萨诸塞州安多弗市新桥网络5号企业大道01810电话:+1 978 691 4665电子邮件:langille@newbridge.com
Anil Rijhsinghani Postal: Cabletron Systems 50 Minuteman Road Andover, MA 01810 USA Phone: +1 978 684 1295 Email: anil@cabletron.com
Anil Rijhsinghani邮政:Cabletron Systems 50 Minuteman Road Andover,MA 01810美国电话:+1 978 684 1295电子邮件:anil@cabletron.com
Keith McCloghrie Postal: cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134-1706 USA Phone: +1 408 526 5260 Email: kzm@cisco.com" DESCRIPTION "The VLAN Bridge MIB module for managing Virtual Bridged Local Area Networks, as defined by IEEE 802.1Q-1998."
基思·麦克洛赫里邮政:思科系统公司,美国加利福尼亚州圣何塞西塔斯曼大道170号95134-1706电话:+1408 526 5260电子邮件:kzm@cisco.com“描述”用于管理IEEE 802.1Q-1998定义的虚拟桥接局域网的VLAN网桥MIB模块
-- revision history
--修订历史
REVISION "9908250000Z" DESCRIPTION "Initial version, published as RFC 2674."
修订版“9908250000Z”说明“初始版本,发布为RFC 2674。”
::= { dot1dBridge 7 }
::= { dot1dBridge 7 }
qBridgeMIBObjects OBJECT IDENTIFIER ::= { qBridgeMIB 1 }
qBridgeMIBObjects OBJECT IDENTIFIER ::= { qBridgeMIB 1 }
-- ------------------------------------------------------------- -- Textual Conventions -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Textual Conventions -- -------------------------------------------------------------
PortList ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "Each octet within this value specifies a set of eight ports, with the first octet specifying ports 1 through 8, the second octet specifying ports 9 through 16, etc. Within each octet, the most significant bit represents the lowest numbered port, and the least significant bit represents the highest numbered port. Thus, each port of the bridge is represented by a single bit within the value of this object. If that bit has a value of '1' then that port is included in the set of ports; the port is not included if its bit has a value of '0'." SYNTAX OCTET STRING
PortList ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "Each octet within this value specifies a set of eight ports, with the first octet specifying ports 1 through 8, the second octet specifying ports 9 through 16, etc. Within each octet, the most significant bit represents the lowest numbered port, and the least significant bit represents the highest numbered port. Thus, each port of the bridge is represented by a single bit within the value of this object. If that bit has a value of '1' then that port is included in the set of ports; the port is not included if its bit has a value of '0'." SYNTAX OCTET STRING
VlanIndex ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "A value used to index per-VLAN tables: values of 0 and 4095 are not permitted; if the value is between 1 and 4094 inclusive, it represents an IEEE 802.1Q VLAN-ID with global scope within a given bridged domain (see VlanId textual convention). If the value is greater than 4095 then it represents a VLAN with scope local to the particular agent, i.e. one without a global VLAN-ID assigned to it. Such VLANs are outside the scope of IEEE 802.1Q but it is convenient to be able to manage them in the same way using this MIB." SYNTAX Unsigned32
VlanIndex ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "A value used to index per-VLAN tables: values of 0 and 4095 are not permitted; if the value is between 1 and 4094 inclusive, it represents an IEEE 802.1Q VLAN-ID with global scope within a given bridged domain (see VlanId textual convention). If the value is greater than 4095 then it represents a VLAN with scope local to the particular agent, i.e. one without a global VLAN-ID assigned to it. Such VLANs are outside the scope of IEEE 802.1Q but it is convenient to be able to manage them in the same way using this MIB." SYNTAX Unsigned32
VlanId ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "A 12-bit VLAN ID used in the VLAN Tag header." SYNTAX INTEGER (1..4094)
VlanId ::= TEXTUAL-CONVENTION STATUS current DESCRIPTION "A 12-bit VLAN ID used in the VLAN Tag header." SYNTAX INTEGER (1..4094)
-- ------------------------------------------------------------- -- groups in the Q-BRIDGE MIB -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- groups in the Q-BRIDGE MIB -- -------------------------------------------------------------
dot1qBase OBJECT IDENTIFIER ::= { qBridgeMIBObjects 1 } dot1qTp OBJECT IDENTIFIER ::= { qBridgeMIBObjects 2 } dot1qStatic OBJECT IDENTIFIER ::= { qBridgeMIBObjects 3 } dot1qVlan OBJECT IDENTIFIER ::= { qBridgeMIBObjects 4 }
dot1qBase OBJECT IDENTIFIER ::= { qBridgeMIBObjects 1 } dot1qTp OBJECT IDENTIFIER ::= { qBridgeMIBObjects 2 } dot1qStatic OBJECT IDENTIFIER ::= { qBridgeMIBObjects 3 } dot1qVlan OBJECT IDENTIFIER ::= { qBridgeMIBObjects 4 }
-- -------------------------------------------------------------
-- -------------------------------------------------------------
-- ------------------------------------------------------------- -- dot1qBase group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- dot1qBase group -- -------------------------------------------------------------
dot1qVlanVersionNumber OBJECT-TYPE SYNTAX INTEGER { version1(1) } MAX-ACCESS read-only STATUS current DESCRIPTION "The version number of IEEE 802.1Q that this device supports." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.1" ::= { dot1qBase 1 }
dot1qVlanVersionNumber OBJECT-TYPE SYNTAX INTEGER { version1(1) } MAX-ACCESS read-only STATUS current DESCRIPTION "The version number of IEEE 802.1Q that this device supports." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.1" ::= { dot1qBase 1 }
dot1qMaxVlanId OBJECT-TYPE SYNTAX VlanId MAX-ACCESS read-only STATUS current DESCRIPTION "The maximum IEEE 802.1Q VLAN ID that this device supports." REFERENCE "IEEE 802.1Q/D11 Section 9.3.2.3" ::= { dot1qBase 2 }
dot1qMaxVlanId OBJECT-TYPE SYNTAX VlanId MAX-ACCESS read-only STATUS current DESCRIPTION "The maximum IEEE 802.1Q VLAN ID that this device supports." REFERENCE "IEEE 802.1Q/D11 Section 9.3.2.3" ::= { dot1qBase 2 }
dot1qMaxSupportedVlans OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS read-only STATUS current DESCRIPTION "The maximum number of IEEE 802.1Q VLANs that this device supports." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.1" ::= { dot1qBase 3 }
dot1qMaxSupportedVlans OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS read-only STATUS current DESCRIPTION "The maximum number of IEEE 802.1Q VLANs that this device supports." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.1" ::= { dot1qBase 3 }
dot1qNumVlans OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS read-only STATUS current DESCRIPTION "The current number of IEEE 802.1Q VLANs that are configured in this device." REFERENCE "IEEE 802.1Q/D11 Section 12.7.1.1" ::= { dot1qBase 4 }
dot1qNumVlans OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS read-only STATUS current DESCRIPTION "The current number of IEEE 802.1Q VLANs that are configured in this device." REFERENCE "IEEE 802.1Q/D11 Section 12.7.1.1" ::= { dot1qBase 4 }
dot1qGvrpStatus OBJECT-TYPE SYNTAX EnabledStatus MAX-ACCESS read-write STATUS current DESCRIPTION "The administrative status requested by management for GVRP. The value enabled(1) indicates that GVRP should be enabled on this device, on all ports for which it has not been specifically disabled. When disabled(2), GVRP is disabled on all ports and all GVRP packets will be forwarded transparently. This object affects all GVRP Applicant and Registrar state machines. A transition from disabled(2) to enabled(1) will cause a reset of all GVRP state machines on all ports." DEFVAL { enabled } ::= { dot1qBase 5 }
dot1qGvrpStatus OBJECT-TYPE SYNTAX EnabledStatus MAX-ACCESS read-write STATUS current DESCRIPTION "The administrative status requested by management for GVRP. The value enabled(1) indicates that GVRP should be enabled on this device, on all ports for which it has not been specifically disabled. When disabled(2), GVRP is disabled on all ports and all GVRP packets will be forwarded transparently. This object affects all GVRP Applicant and Registrar state machines. A transition from disabled(2) to enabled(1) will cause a reset of all GVRP state machines on all ports." DEFVAL { enabled } ::= { dot1qBase 5 }
-- ------------------------------------------------------------- -- the dot1qTp group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the dot1qTp group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the current Filtering Database Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- the current Filtering Database Table -- -------------------------------------------------------------
dot1qFdbTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains configuration and control information for each Filtering Database currently operating on this device. Entries in this table appear automatically when VLANs are assigned FDB IDs in the dot1qVlanCurrentTable." ::= { dot1qTp 1 }
dot1qFdbTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains configuration and control information for each Filtering Database currently operating on this device. Entries in this table appear automatically when VLANs are assigned FDB IDs in the dot1qVlanCurrentTable." ::= { dot1qTp 1 }
dot1qFdbEntry OBJECT-TYPE SYNTAX Dot1qFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information about a specific Filtering Database." INDEX { dot1qFdbId } ::= { dot1qFdbTable 1 }
dot1qFdbEntry OBJECT-TYPE SYNTAX Dot1qFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information about a specific Filtering Database." INDEX { dot1qFdbId } ::= { dot1qFdbTable 1 }
Dot1qFdbEntry ::= SEQUENCE { dot1qFdbId Unsigned32, dot1qFdbDynamicCount Counter32 }
Dot1qFdbEntry ::= SEQUENCE { dot1qFdbId Unsigned32, dot1qFdbDynamicCount Counter32 }
dot1qFdbId OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS not-accessible STATUS current DESCRIPTION "The identity of this Filtering Database." ::= { dot1qFdbEntry 1 }
dot1qFdbId OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS not-accessible STATUS current DESCRIPTION "The identity of this Filtering Database." ::= { dot1qFdbEntry 1 }
dot1qFdbDynamicCount OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The current number of dynamic entries in this Filtering Database." REFERENCE "IEEE 802.1Q/D11 Section 12.7.1.1.3" ::= { dot1qFdbEntry 2 }
dot1qFdbDynamicCount OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The current number of dynamic entries in this Filtering Database." REFERENCE "IEEE 802.1Q/D11 Section 12.7.1.1.3" ::= { dot1qFdbEntry 2 }
-- ------------------------------------------------------------- -- Multiple Forwarding Databases for 802.1Q Transparent devices -- This table is an alternative to the dot1dTpFdbTable, -- previously defined for 802.1D devices which only support a -- single Forwarding Database. -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Multiple Forwarding Databases for 802.1Q Transparent devices -- This table is an alternative to the dot1dTpFdbTable, -- previously defined for 802.1D devices which only support a -- single Forwarding Database. -- -------------------------------------------------------------
dot1qTpFdbTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qTpFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains information about unicast entries for which the device has forwarding and/or filtering information. This information is used by the transparent bridging function in determining how to propagate a received frame." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7" ::= { dot1qTp 2 }
dot1qTpFdbTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qTpFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table that contains information about unicast entries for which the device has forwarding and/or filtering information. This information is used by the transparent bridging function in determining how to propagate a received frame." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7" ::= { dot1qTp 2 }
dot1qTpFdbEntry OBJECT-TYPE SYNTAX Dot1qTpFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information about a specific unicast MAC address for which the device has some forwarding and/or filtering information." INDEX { dot1qFdbId, dot1qTpFdbAddress } ::= { dot1qTpFdbTable 1 }
dot1qTpFdbEntry OBJECT-TYPE SYNTAX Dot1qTpFdbEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information about a specific unicast MAC address for which the device has some forwarding and/or filtering information." INDEX { dot1qFdbId, dot1qTpFdbAddress } ::= { dot1qTpFdbTable 1 }
Dot1qTpFdbEntry ::= SEQUENCE { dot1qTpFdbAddress MacAddress, dot1qTpFdbPort INTEGER, dot1qTpFdbStatus INTEGER }
Dot1qTpFdbEntry ::= SEQUENCE { dot1qTpFdbAddress MacAddress, dot1qTpFdbPort INTEGER, dot1qTpFdbStatus INTEGER }
dot1qTpFdbAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current
dot1qTpFdbAddress对象类型语法MacAddress MAX-ACCESS不可访问状态当前
DESCRIPTION "A unicast MAC address for which the device has forwarding and/or filtering information." ::= { dot1qTpFdbEntry 1 }
DESCRIPTION "A unicast MAC address for which the device has forwarding and/or filtering information." ::= { dot1qTpFdbEntry 1 }
dot1qTpFdbPort OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS read-only STATUS current DESCRIPTION "Either the value '0', or the port number of the port on which a frame having a source address equal to the value of the corresponding instance of dot1qTpFdbAddress has been seen. A value of '0' indicates that the port number has not been learned but that the device does have some forwarding/filtering information about this address (e.g. in the dot1qStaticUnicastTable). Implementors are encouraged to assign the port value to this object whenever it is learned even for addresses for which the corresponding value of dot1qTpFdbStatus is not learned(3)." ::= { dot1qTpFdbEntry 2 }
dot1qTpFdbPort OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS read-only STATUS current DESCRIPTION "Either the value '0', or the port number of the port on which a frame having a source address equal to the value of the corresponding instance of dot1qTpFdbAddress has been seen. A value of '0' indicates that the port number has not been learned but that the device does have some forwarding/filtering information about this address (e.g. in the dot1qStaticUnicastTable). Implementors are encouraged to assign the port value to this object whenever it is learned even for addresses for which the corresponding value of dot1qTpFdbStatus is not learned(3)." ::= { dot1qTpFdbEntry 2 }
dot1qTpFdbStatus OBJECT-TYPE SYNTAX INTEGER { other(1), invalid(2), learned(3), self(4), mgmt(5) } MAX-ACCESS read-only STATUS current DESCRIPTION "The status of this entry. The meanings of the values are: other(1) - none of the following. This may include the case where some other MIB object (not the corresponding instance of dot1qTpFdbPort, nor an entry in the dot1qStaticUnicastTable) is being used to determine if and how frames addressed to the value of the corresponding instance of dot1qTpFdbAddress are being forwarded. invalid(2) - this entry is no longer valid (e.g., it was learned but has since aged out), but has not yet been flushed from the table. learned(3) - the value of the corresponding instance of dot1qTpFdbPort was learned and is being used.
dot1qTpFdbStatus OBJECT-TYPE SYNTAX INTEGER { other(1), invalid(2), learned(3), self(4), mgmt(5) } MAX-ACCESS read-only STATUS current DESCRIPTION "The status of this entry. The meanings of the values are: other(1) - none of the following. This may include the case where some other MIB object (not the corresponding instance of dot1qTpFdbPort, nor an entry in the dot1qStaticUnicastTable) is being used to determine if and how frames addressed to the value of the corresponding instance of dot1qTpFdbAddress are being forwarded. invalid(2) - this entry is no longer valid (e.g., it was learned but has since aged out), but has not yet been flushed from the table. learned(3) - the value of the corresponding instance of dot1qTpFdbPort was learned and is being used.
self(4) - the value of the corresponding instance of dot1qTpFdbAddress represents one of the device's addresses. The corresponding instance of dot1qTpFdbPort indicates which of the device's ports has this address. mgmt(5) - the value of the corresponding instance of dot1qTpFdbAddress is also the value of an existing instance of dot1qStaticAddress." ::= { dot1qTpFdbEntry 3 }
self(4) - the value of the corresponding instance of dot1qTpFdbAddress represents one of the device's addresses. The corresponding instance of dot1qTpFdbPort indicates which of the device's ports has this address. mgmt(5) - the value of the corresponding instance of dot1qTpFdbAddress is also the value of an existing instance of dot1qStaticAddress." ::= { dot1qTpFdbEntry 3 }
-- ------------------------------------------------------------- -- Dynamic Group Registration Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Dynamic Group Registration Table -- -------------------------------------------------------------
dot1qTpGroupTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qTpGroupEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing filtering information for VLANs configured into the bridge by (local or network) management, or learnt dynamically, specifying the set of ports to which frames received on a VLAN for this FDB and containing a specific Group destination address are allowed to be forwarded." ::= { dot1qTp 3 }
dot1qTpGroupTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qTpGroupEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing filtering information for VLANs configured into the bridge by (local or network) management, or learnt dynamically, specifying the set of ports to which frames received on a VLAN for this FDB and containing a specific Group destination address are allowed to be forwarded." ::= { dot1qTp 3 }
dot1qTpGroupEntry OBJECT-TYPE SYNTAX Dot1qTpGroupEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Filtering information configured into the bridge by management, or learnt dynamically, specifying the set of ports to which frames received on a VLAN and containing a specific Group destination address, are allowed to be forwarded. The subset of these ports learnt dynamically is also provided." INDEX { dot1qVlanIndex, dot1qTpGroupAddress } ::= { dot1qTpGroupTable 1 }
dot1qTpGroupEntry OBJECT-TYPE SYNTAX Dot1qTpGroupEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Filtering information configured into the bridge by management, or learnt dynamically, specifying the set of ports to which frames received on a VLAN and containing a specific Group destination address, are allowed to be forwarded. The subset of these ports learnt dynamically is also provided." INDEX { dot1qVlanIndex, dot1qTpGroupAddress } ::= { dot1qTpGroupTable 1 }
Dot1qTpGroupEntry ::= SEQUENCE { dot1qTpGroupAddress MacAddress, dot1qTpGroupEgressPorts PortList, dot1qTpGroupLearnt
Dot1qTpGroupEntry ::= SEQUENCE { dot1qTpGroupAddress MacAddress, dot1qTpGroupEgressPorts PortList, dot1qTpGroupLearnt
PortList }
端口列表}
dot1qTpGroupAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current DESCRIPTION "The destination Group MAC address in a frame to which this entry's filtering information applies." ::= { dot1qTpGroupEntry 1 }
dot1qTpGroupAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current DESCRIPTION "The destination Group MAC address in a frame to which this entry's filtering information applies." ::= { dot1qTpGroupEntry 1 }
dot1qTpGroupEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The complete set of ports, in this VLAN, to which frames destined for this Group MAC address are currently being explicitly forwarded. This does not include ports for which this address is only implicitly forwarded, in the dot1qForwardAllPorts list." ::= { dot1qTpGroupEntry 2 }
dot1qTpGroupEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The complete set of ports, in this VLAN, to which frames destined for this Group MAC address are currently being explicitly forwarded. This does not include ports for which this address is only implicitly forwarded, in the dot1qForwardAllPorts list." ::= { dot1qTpGroupEntry 2 }
dot1qTpGroupLearnt OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The subset of ports in dot1qTpGroupEgressPorts which were learnt by GMRP or some other dynamic mechanism, in this Filtering database." ::= { dot1qTpGroupEntry 3 }
dot1qTpGroupLearnt OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The subset of ports in dot1qTpGroupEgressPorts which were learnt by GMRP or some other dynamic mechanism, in this Filtering database." ::= { dot1qTpGroupEntry 3 }
-- ------------------------------------------------------------- -- Service Requirements Group -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Service Requirements Group -- -------------------------------------------------------------
dot1qForwardAllTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qForwardAllEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing forwarding information for each VLAN, specifying the set of ports to which forwarding of all multicasts applies, configured statically by management or dynamically by GMRP. An entry appears in this table for all VLANs that are currently
dot1qForwardAllTable对象类型Dot1qForwardAllEntry MAX-ACCESS的语法序列不可访问状态当前描述“包含每个VLAN的转发信息的表,指定所有多播转发应用到的端口集,由管理层静态配置或由GMRP动态配置。”。此表中会显示一个条目,用于当前正在使用的所有VLAN
instantiated." REFERENCE "IEEE 802.1Q/D11 Section 12.7.2, 12.7.7" ::= { dot1qTp 4 }
instantiated." REFERENCE "IEEE 802.1Q/D11 Section 12.7.2, 12.7.7" ::= { dot1qTp 4 }
dot1qForwardAllEntry OBJECT-TYPE SYNTAX Dot1qForwardAllEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Forwarding information for a VLAN, specifying the set of ports to which all multicasts should be forwarded, configured statically by management or dynamically by GMRP." INDEX { dot1qVlanIndex } ::= { dot1qForwardAllTable 1 }
dot1qForwardAllEntry OBJECT-TYPE SYNTAX Dot1qForwardAllEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Forwarding information for a VLAN, specifying the set of ports to which all multicasts should be forwarded, configured statically by management or dynamically by GMRP." INDEX { dot1qVlanIndex } ::= { dot1qForwardAllTable 1 }
Dot1qForwardAllEntry ::= SEQUENCE { dot1qForwardAllPorts PortList, dot1qForwardAllStaticPorts PortList, dot1qForwardAllForbiddenPorts PortList }
Dot1qForwardAllEntry ::= SEQUENCE { dot1qForwardAllPorts PortList, dot1qForwardAllStaticPorts PortList, dot1qForwardAllForbiddenPorts PortList }
dot1qForwardAllPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The complete set of ports in this VLAN to which all multicast group-addressed frames are to be forwarded. This includes ports for which this need has been determined dynamically by GMRP, or configured statically by management." ::= { dot1qForwardAllEntry 1 }
dot1qForwardAllPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The complete set of ports in this VLAN to which all multicast group-addressed frames are to be forwarded. This includes ports for which this need has been determined dynamically by GMRP, or configured statically by management." ::= { dot1qForwardAllEntry 1 }
dot1qForwardAllStaticPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current
dot1qForwardAllStaticPorts对象类型语法端口列表最大访问读写状态当前
DESCRIPTION "The set of ports configured by management in this VLAN to which all multicast group-addressed frames are to be forwarded. Ports entered in this list will also appear in the complete set shown by dot1qForwardAllPorts. This value will be restored after the device is reset. This only applies to ports that are members of the VLAN, defined by dot1qVlanCurrentEgressPorts. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardAllForbiddenPorts. The default value is a string of ones of appropriate length, to indicate standard non-EFS behaviour, i.e. forward all multicasts to all ports." ::= { dot1qForwardAllEntry 2 }
DESCRIPTION "The set of ports configured by management in this VLAN to which all multicast group-addressed frames are to be forwarded. Ports entered in this list will also appear in the complete set shown by dot1qForwardAllPorts. This value will be restored after the device is reset. This only applies to ports that are members of the VLAN, defined by dot1qVlanCurrentEgressPorts. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardAllForbiddenPorts. The default value is a string of ones of appropriate length, to indicate standard non-EFS behaviour, i.e. forward all multicasts to all ports." ::= { dot1qForwardAllEntry 2 }
dot1qForwardAllForbiddenPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports configured by management in this VLAN for which the Service Requirement attribute Forward All Multicast Groups may not be dynamically registered by GMRP. This value will be restored after the device is reset. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardAllStaticPorts. The default value is a string of zeros of appropriate length." ::= { dot1qForwardAllEntry 3 }
dot1qForwardAllForbiddenPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports configured by management in this VLAN for which the Service Requirement attribute Forward All Multicast Groups may not be dynamically registered by GMRP. This value will be restored after the device is reset. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardAllStaticPorts. The default value is a string of zeros of appropriate length." ::= { dot1qForwardAllEntry 3 }
dot1qForwardUnregisteredTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qForwardUnregisteredEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing forwarding information for each VLAN, specifying the set of ports to which forwarding of multicast group-addressed frames for which there is no more specific forwarding information applies. This is configured statically by management and determined dynamically by GMRP. An entry appears in this table for all VLANs that are currently instantiated." REFERENCE "IEEE 802.1Q/D11 Section 12.7.2, 12.7.7" ::= { dot1qTp 5 }
dot1qForwardUnregisteredTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qForwardUnregisteredEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing forwarding information for each VLAN, specifying the set of ports to which forwarding of multicast group-addressed frames for which there is no more specific forwarding information applies. This is configured statically by management and determined dynamically by GMRP. An entry appears in this table for all VLANs that are currently instantiated." REFERENCE "IEEE 802.1Q/D11 Section 12.7.2, 12.7.7" ::= { dot1qTp 5 }
dot1qForwardUnregisteredEntry OBJECT-TYPE SYNTAX Dot1qForwardUnregisteredEntry
dot1qForwardUnregisteredEntry对象类型语法dot1qForwardUnregisteredEntry
MAX-ACCESS not-accessible STATUS current DESCRIPTION "Forwarding information for a VLAN, specifying the set of ports to which all multicasts for which there is no more specific forwarding information shall be forwarded. This is configured statically by management or dynamically by GMRP." INDEX { dot1qVlanIndex } ::= { dot1qForwardUnregisteredTable 1 }
MAX-ACCESS not-accessible STATUS current DESCRIPTION "Forwarding information for a VLAN, specifying the set of ports to which all multicasts for which there is no more specific forwarding information shall be forwarded. This is configured statically by management or dynamically by GMRP." INDEX { dot1qVlanIndex } ::= { dot1qForwardUnregisteredTable 1 }
Dot1qForwardUnregisteredEntry ::= SEQUENCE { dot1qForwardUnregisteredPorts PortList, dot1qForwardUnregisteredStaticPorts PortList, dot1qForwardUnregisteredForbiddenPorts PortList }
Dot1qForwardUnregisteredEntry ::= SEQUENCE { dot1qForwardUnregisteredPorts PortList, dot1qForwardUnregisteredStaticPorts PortList, dot1qForwardUnregisteredForbiddenPorts PortList }
dot1qForwardUnregisteredPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The complete set of ports in this VLAN to which multicast group-addressed frames for which there is no more specific forwarding information will be forwarded. This includes ports for which this need has been determined dynamically by GMRP, or configured statically by management." ::= { dot1qForwardUnregisteredEntry 1 }
dot1qForwardUnregisteredPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The complete set of ports in this VLAN to which multicast group-addressed frames for which there is no more specific forwarding information will be forwarded. This includes ports for which this need has been determined dynamically by GMRP, or configured statically by management." ::= { dot1qForwardUnregisteredEntry 1 }
dot1qForwardUnregisteredStaticPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports configured by management, in this VLAN, to which multicast group-addressed frames for which there is no more specific forwarding information are to be forwarded. Ports entered in this list will also appear in the complete set shown by dot1qForwardUnregisteredPorts. This value will be restored after the device is reset. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardUnregisteredForbiddenPorts. The
dot1qForwardUnregisteredStaticPorts对象类型语法端口列表MAX-ACCESS读写状态当前说明“管理层在此VLAN中配置的一组端口,多播组寻址的帧没有更多特定的转发信息要转发到这些端口。在此列表中输入的端口也将显示在dot1qForwardUnregisteredPorts显示的完整集合中。该值将在设备复位后恢复。如果某个端口已经是dot1qForwardUnregisteredForbiddenPorts中端口集的成员,则不能在此集中添加该端口。这个
default value is a string of zeros of appropriate length, although this has no effect with the default value of dot1qForwardAllStaticPorts." ::= { dot1qForwardUnregisteredEntry 2 }
default value is a string of zeros of appropriate length, although this has no effect with the default value of dot1qForwardAllStaticPorts." ::= { dot1qForwardUnregisteredEntry 2 }
dot1qForwardUnregisteredForbiddenPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports configured by management in this VLAN for which the Service Requirement attribute Forward Unregistered Multicast Groups may not be dynamically registered by GMRP. This value will be restored after the device is reset. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardUnregisteredStaticPorts. The default value is a string of zeros of appropriate length." ::= { dot1qForwardUnregisteredEntry 3 }
dot1qForwardUnregisteredForbiddenPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports configured by management in this VLAN for which the Service Requirement attribute Forward Unregistered Multicast Groups may not be dynamically registered by GMRP. This value will be restored after the device is reset. A port may not be added in this set if it is already a member of the set of ports in dot1qForwardUnregisteredStaticPorts. The default value is a string of zeros of appropriate length." ::= { dot1qForwardUnregisteredEntry 3 }
-- ------------------------------------------------------------- -- The Static (Destination-Address Filtering) Database -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The Static (Destination-Address Filtering) Database -- -------------------------------------------------------------
dot1qStaticUnicastTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qStaticUnicastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing filtering information for Unicast MAC addresses for each Filtering Database, configured into the device by (local or network) management specifying the set of ports to which frames received from specific ports and containing specific unicast destination addresses are allowed to be forwarded. A value of zero in this table as the port number from which frames with a specific destination address are received, is used to specify all ports for which there is no specific entry in this table for that particular destination address. Entries are valid for unicast addresses only." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7, ISO/IEC 15802-3 Section 7.9.1" ::= { dot1qStatic 1 }
dot1qStaticUnicastTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qStaticUnicastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing filtering information for Unicast MAC addresses for each Filtering Database, configured into the device by (local or network) management specifying the set of ports to which frames received from specific ports and containing specific unicast destination addresses are allowed to be forwarded. A value of zero in this table as the port number from which frames with a specific destination address are received, is used to specify all ports for which there is no specific entry in this table for that particular destination address. Entries are valid for unicast addresses only." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7, ISO/IEC 15802-3 Section 7.9.1" ::= { dot1qStatic 1 }
dot1qStaticUnicastEntry OBJECT-TYPE SYNTAX Dot1qStaticUnicastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Filtering information configured into the device by (local or network) management specifying the set of ports to which frames received from a specific port and containing a specific unicast destination address are allowed to be forwarded." INDEX { dot1qFdbId, dot1qStaticUnicastAddress, dot1qStaticUnicastReceivePort } ::= { dot1qStaticUnicastTable 1 }
dot1qStaticUnicastEntry OBJECT-TYPE SYNTAX Dot1qStaticUnicastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Filtering information configured into the device by (local or network) management specifying the set of ports to which frames received from a specific port and containing a specific unicast destination address are allowed to be forwarded." INDEX { dot1qFdbId, dot1qStaticUnicastAddress, dot1qStaticUnicastReceivePort } ::= { dot1qStaticUnicastTable 1 }
Dot1qStaticUnicastEntry ::= SEQUENCE { dot1qStaticUnicastAddress MacAddress, dot1qStaticUnicastReceivePort INTEGER, dot1qStaticUnicastAllowedToGoTo PortList, dot1qStaticUnicastStatus INTEGER }
Dot1qStaticUnicastEntry ::= SEQUENCE { dot1qStaticUnicastAddress MacAddress, dot1qStaticUnicastReceivePort INTEGER, dot1qStaticUnicastAllowedToGoTo PortList, dot1qStaticUnicastStatus INTEGER }
dot1qStaticUnicastAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current DESCRIPTION "The destination MAC address in a frame to which this entry's filtering information applies. This object must take the value of a unicast address." ::= { dot1qStaticUnicastEntry 1 }
dot1qStaticUnicastAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current DESCRIPTION "The destination MAC address in a frame to which this entry's filtering information applies. This object must take the value of a unicast address." ::= { dot1qStaticUnicastEntry 1 }
dot1qStaticUnicastReceivePort OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS not-accessible STATUS current DESCRIPTION "Either the value '0', or the port number of the port from which a frame must be received in order for this entry's filtering information to apply. A value of zero indicates that this entry applies on all ports of the
DOT1QSTATICUNICASTREECEIVEPORT对象类型语法整数(0..65535)MAX-ACCESS不可访问状态当前描述“值“0”或必须从中接收帧才能应用此项筛选信息的端口的端口号。值为零表示此项应用于
device for which there is no other applicable entry." ::= { dot1qStaticUnicastEntry 2 }
device for which there is no other applicable entry." ::= { dot1qStaticUnicastEntry 2 }
dot1qStaticUnicastAllowedToGoTo OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports for which a frame with a specific unicast address will be flooded in the event that it has not been learned. It also specifies the set of ports a specific unicast address may be dynamically learnt on. The dot1qTpFdbTable will have an equivalent entry with a dot1qTpFdbPort value of '0' until this address has been learnt, when it will be updated with the port the address has been seen on. This only applies to ports that are members of the VLAN, defined by dot1qVlanCurrentEgressPorts. The default value of this object is a string of ones of appropriate length." REFERENCE "IEEE 802.1Q/D11 Table 8-5, ISO/IEC 15802-3 Table 7-5" ::= { dot1qStaticUnicastEntry 3 }
dot1qStaticUnicastAllowedToGoTo OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports for which a frame with a specific unicast address will be flooded in the event that it has not been learned. It also specifies the set of ports a specific unicast address may be dynamically learnt on. The dot1qTpFdbTable will have an equivalent entry with a dot1qTpFdbPort value of '0' until this address has been learnt, when it will be updated with the port the address has been seen on. This only applies to ports that are members of the VLAN, defined by dot1qVlanCurrentEgressPorts. The default value of this object is a string of ones of appropriate length." REFERENCE "IEEE 802.1Q/D11 Table 8-5, ISO/IEC 15802-3 Table 7-5" ::= { dot1qStaticUnicastEntry 3 }
dot1qStaticUnicastStatus OBJECT-TYPE SYNTAX INTEGER { other(1), invalid(2), permanent(3), deleteOnReset(4), deleteOnTimeout(5) } MAX-ACCESS read-write STATUS current DESCRIPTION "This object indicates the status of this entry. other(1) - this entry is currently in use but the conditions under which it will remain so differ from the following values. invalid(2) - writing this value to the object removes the corresponding entry. permanent(3) - this entry is currently in use and will remain so after the next reset of the bridge. deleteOnReset(4) - this entry is currently in use and will remain so until the next reset of the bridge.
dot1qStaticUnicastStatus OBJECT-TYPE SYNTAX INTEGER { other(1), invalid(2), permanent(3), deleteOnReset(4), deleteOnTimeout(5) } MAX-ACCESS read-write STATUS current DESCRIPTION "This object indicates the status of this entry. other(1) - this entry is currently in use but the conditions under which it will remain so differ from the following values. invalid(2) - writing this value to the object removes the corresponding entry. permanent(3) - this entry is currently in use and will remain so after the next reset of the bridge. deleteOnReset(4) - this entry is currently in use and will remain so until the next reset of the bridge.
deleteOnTimeout(5) - this entry is currently in use and will remain so until it is aged out." DEFVAL { permanent } ::= { dot1qStaticUnicastEntry 4 }
deleteOnTimeout(5) - this entry is currently in use and will remain so until it is aged out." DEFVAL { permanent } ::= { dot1qStaticUnicastEntry 4 }
dot1qStaticMulticastTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qStaticMulticastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing filtering information for Multicast and Broadcast MAC addresses for each VLAN, configured into the device by (local or network) management specifying the set of ports to which frames received from specific ports and containing specific Multicast and Broadcast destination addresses are allowed to be forwarded. A value of zero in this table as the port number from which frames with a specific destination address are received, is used to specify all ports for which there is no specific entry in this table for that particular destination address. Entries are valid for Multicast and Broadcast addresses only." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7, ISO/IEC 15802-3 Section 7.9.1" ::= { dot1qStatic 2 }
dot1qStaticMulticastTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qStaticMulticastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing filtering information for Multicast and Broadcast MAC addresses for each VLAN, configured into the device by (local or network) management specifying the set of ports to which frames received from specific ports and containing specific Multicast and Broadcast destination addresses are allowed to be forwarded. A value of zero in this table as the port number from which frames with a specific destination address are received, is used to specify all ports for which there is no specific entry in this table for that particular destination address. Entries are valid for Multicast and Broadcast addresses only." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7, ISO/IEC 15802-3 Section 7.9.1" ::= { dot1qStatic 2 }
dot1qStaticMulticastEntry OBJECT-TYPE SYNTAX Dot1qStaticMulticastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Filtering information configured into the device by (local or network) management specifying the set of ports to which frames received from this specific port for this VLAN and containing this Multicast or Broadcast destination address are allowed to be forwarded." INDEX { dot1qVlanIndex, dot1qStaticMulticastAddress, dot1qStaticMulticastReceivePort } ::= { dot1qStaticMulticastTable 1 }
dot1qStaticMulticastEntry OBJECT-TYPE SYNTAX Dot1qStaticMulticastEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Filtering information configured into the device by (local or network) management specifying the set of ports to which frames received from this specific port for this VLAN and containing this Multicast or Broadcast destination address are allowed to be forwarded." INDEX { dot1qVlanIndex, dot1qStaticMulticastAddress, dot1qStaticMulticastReceivePort } ::= { dot1qStaticMulticastTable 1 }
Dot1qStaticMulticastEntry ::= SEQUENCE { dot1qStaticMulticastAddress MacAddress, dot1qStaticMulticastReceivePort INTEGER, dot1qStaticMulticastStaticEgressPorts PortList, dot1qStaticMulticastForbiddenEgressPorts PortList, dot1qStaticMulticastStatus INTEGER }
Dot1qStaticMulticastEntry ::= SEQUENCE { dot1qStaticMulticastAddress MacAddress, dot1qStaticMulticastReceivePort INTEGER, dot1qStaticMulticastStaticEgressPorts PortList, dot1qStaticMulticastForbiddenEgressPorts PortList, dot1qStaticMulticastStatus INTEGER }
dot1qStaticMulticastAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current DESCRIPTION "The destination MAC address in a frame to which this entry's filtering information applies. This object must take the value of a Multicast or Broadcast address." ::= { dot1qStaticMulticastEntry 1 }
dot1qStaticMulticastAddress OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS not-accessible STATUS current DESCRIPTION "The destination MAC address in a frame to which this entry's filtering information applies. This object must take the value of a Multicast or Broadcast address." ::= { dot1qStaticMulticastEntry 1 }
dot1qStaticMulticastReceivePort OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS not-accessible STATUS current DESCRIPTION "Either the value '0', or the port number of the port from which a frame must be received in order for this entry's filtering information to apply. A value of zero indicates that this entry applies on all ports of the device for which there is no other applicable entry." ::= { dot1qStaticMulticastEntry 2 }
dot1qStaticMulticastReceivePort OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS not-accessible STATUS current DESCRIPTION "Either the value '0', or the port number of the port from which a frame must be received in order for this entry's filtering information to apply. A value of zero indicates that this entry applies on all ports of the device for which there is no other applicable entry." ::= { dot1qStaticMulticastEntry 2 }
dot1qStaticMulticastStaticEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current
Dot1QStaticMulticastStaticRegressPorts对象类型语法端口列表最大访问读写状态当前
DESCRIPTION "The set of ports to which frames received from a specific port and destined for a specific Multicast or Broadcast MAC address must be forwarded, regardless of any dynamic information e.g. from GMRP. A port may not be added in this set if it is already a member of the set of ports in dot1qStaticMulticastForbiddenEgressPorts. The default value of this object is a string of ones of appropriate length." ::= { dot1qStaticMulticastEntry 3 }
DESCRIPTION "The set of ports to which frames received from a specific port and destined for a specific Multicast or Broadcast MAC address must be forwarded, regardless of any dynamic information e.g. from GMRP. A port may not be added in this set if it is already a member of the set of ports in dot1qStaticMulticastForbiddenEgressPorts. The default value of this object is a string of ones of appropriate length." ::= { dot1qStaticMulticastEntry 3 }
dot1qStaticMulticastForbiddenEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports to which frames received from a specific port and destined for a specific Multicast or Broadcast MAC address must not be forwarded, regardless of any dynamic information e.g. from GMRP. A port may not be added in this set if it is already a member of the set of ports in dot1qStaticMulticastStaticEgressPorts. The default value of this object is a string of zeros of appropriate length." ::= { dot1qStaticMulticastEntry 4 }
dot1qStaticMulticastForbiddenEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-write STATUS current DESCRIPTION "The set of ports to which frames received from a specific port and destined for a specific Multicast or Broadcast MAC address must not be forwarded, regardless of any dynamic information e.g. from GMRP. A port may not be added in this set if it is already a member of the set of ports in dot1qStaticMulticastStaticEgressPorts. The default value of this object is a string of zeros of appropriate length." ::= { dot1qStaticMulticastEntry 4 }
dot1qStaticMulticastStatus OBJECT-TYPE SYNTAX INTEGER { other(1), invalid(2), permanent(3), deleteOnReset(4), deleteOnTimeout(5) } MAX-ACCESS read-write STATUS current DESCRIPTION "This object indicates the status of this entry. other(1) - this entry is currently in use but the conditions under which it will remain so differ from the following values. invalid(2) - writing this value to the object removes the corresponding entry. permanent(3) - this entry is currently in use and will remain so after the next reset of the bridge.
dot1qStaticMulticastStatus OBJECT-TYPE SYNTAX INTEGER { other(1), invalid(2), permanent(3), deleteOnReset(4), deleteOnTimeout(5) } MAX-ACCESS read-write STATUS current DESCRIPTION "This object indicates the status of this entry. other(1) - this entry is currently in use but the conditions under which it will remain so differ from the following values. invalid(2) - writing this value to the object removes the corresponding entry. permanent(3) - this entry is currently in use and will remain so after the next reset of the bridge.
deleteOnReset(4) - this entry is currently in use and will remain so until the next reset of the bridge. deleteOnTimeout(5) - this entry is currently in use and will remain so until it is aged out." DEFVAL { permanent } ::= { dot1qStaticMulticastEntry 5 }
deleteOnReset(4) - this entry is currently in use and will remain so until the next reset of the bridge. deleteOnTimeout(5) - this entry is currently in use and will remain so until it is aged out." DEFVAL { permanent } ::= { dot1qStaticMulticastEntry 5 }
-- ------------------------------------------------------------- -- The Current VLAN Database -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The Current VLAN Database -- -------------------------------------------------------------
dot1qVlanNumDeletes OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times a VLAN entry has been deleted from the dot1qVlanCurrentTable (for any reason). If an entry is deleted, then inserted, and then deleted, this counter will be incremented by 2." ::= { dot1qVlan 1 }
dot1qVlanNumDeletes OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times a VLAN entry has been deleted from the dot1qVlanCurrentTable (for any reason). If an entry is deleted, then inserted, and then deleted, this counter will be incremented by 2." ::= { dot1qVlan 1 }
dot1qVlanCurrentTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qVlanCurrentEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing current configuration information for each VLAN currently configured into the device by (local or network) management, or dynamically created as a result of GVRP requests received." ::= { dot1qVlan 2 }
dot1qVlanCurrentTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qVlanCurrentEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing current configuration information for each VLAN currently configured into the device by (local or network) management, or dynamically created as a result of GVRP requests received." ::= { dot1qVlan 2 }
dot1qVlanCurrentEntry OBJECT-TYPE SYNTAX Dot1qVlanCurrentEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information for a VLAN configured into the device by (local or network) management, or dynamically created as a result of GVRP requests received." INDEX { dot1qVlanTimeMark, dot1qVlanIndex } ::= { dot1qVlanCurrentTable 1 }
dot1qVlanCurrentEntry OBJECT-TYPE SYNTAX Dot1qVlanCurrentEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information for a VLAN configured into the device by (local or network) management, or dynamically created as a result of GVRP requests received." INDEX { dot1qVlanTimeMark, dot1qVlanIndex } ::= { dot1qVlanCurrentTable 1 }
Dot1qVlanCurrentEntry ::= SEQUENCE { dot1qVlanTimeMark TimeFilter, dot1qVlanIndex VlanIndex, dot1qVlanFdbId Unsigned32, dot1qVlanCurrentEgressPorts PortList, dot1qVlanCurrentUntaggedPorts PortList, dot1qVlanStatus INTEGER, dot1qVlanCreationTime TimeTicks }
Dot1qVlanCurrentEntry ::= SEQUENCE { dot1qVlanTimeMark TimeFilter, dot1qVlanIndex VlanIndex, dot1qVlanFdbId Unsigned32, dot1qVlanCurrentEgressPorts PortList, dot1qVlanCurrentUntaggedPorts PortList, dot1qVlanStatus INTEGER, dot1qVlanCreationTime TimeTicks }
dot1qVlanTimeMark OBJECT-TYPE SYNTAX TimeFilter MAX-ACCESS not-accessible STATUS current DESCRIPTION "A TimeFilter for this entry. See the TimeFilter textual convention to see how this works." ::= { dot1qVlanCurrentEntry 1 }
dot1qVlanTimeMark OBJECT-TYPE SYNTAX TimeFilter MAX-ACCESS not-accessible STATUS current DESCRIPTION "A TimeFilter for this entry. See the TimeFilter textual convention to see how this works." ::= { dot1qVlanCurrentEntry 1 }
dot1qVlanIndex OBJECT-TYPE SYNTAX VlanIndex MAX-ACCESS not-accessible STATUS current DESCRIPTION "The VLAN-ID or other identifier refering to this VLAN." ::= { dot1qVlanCurrentEntry 2 }
dot1qVlanIndex OBJECT-TYPE SYNTAX VlanIndex MAX-ACCESS not-accessible STATUS current DESCRIPTION "The VLAN-ID or other identifier refering to this VLAN." ::= { dot1qVlanCurrentEntry 2 }
dot1qVlanFdbId OBJECT-TYPE SYNTAX Unsigned32 MAX-ACCESS read-only STATUS current DESCRIPTION "The Filtering Database used by this VLAN. This is one of the dot1qFdbId values in the dot1qFdbTable. This value is allocated automatically by the device whenever the VLAN is created: either dynamically by GVRP, or by
dot1qVlanFdbId对象类型语法Unsigned32 MAX-ACCESS只读状态当前描述“此VLAN使用的筛选数据库。这是dot1qFdbId表中的dot1qFdbId值之一。每当创建VLAN时,设备会自动分配此值:由GVRP动态分配,或由
management, in dot1qVlanStaticTable. Allocation of this value follows the learning constraints defined for this VLAN in dot1qLearningConstraintsTable." ::= { dot1qVlanCurrentEntry 3 }
management, in dot1qVlanStaticTable. Allocation of this value follows the learning constraints defined for this VLAN in dot1qLearningConstraintsTable." ::= { dot1qVlanCurrentEntry 3 }
dot1qVlanCurrentEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The set of ports which are transmitting traffic for this VLAN as either tagged or untagged frames." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanCurrentEntry 4 }
dot1qVlanCurrentEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The set of ports which are transmitting traffic for this VLAN as either tagged or untagged frames." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanCurrentEntry 4 }
dot1qVlanCurrentUntaggedPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The set of ports which are transmitting traffic for this VLAN as untagged frames." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanCurrentEntry 5 }
dot1qVlanCurrentUntaggedPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-only STATUS current DESCRIPTION "The set of ports which are transmitting traffic for this VLAN as untagged frames." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanCurrentEntry 5 }
dot1qVlanStatus OBJECT-TYPE SYNTAX INTEGER { other(1), permanent(2), dynamicGvrp(3) } MAX-ACCESS read-only STATUS current DESCRIPTION "This object indicates the status of this entry. other(1) - this entry is currently in use but the conditions under which it will remain so differ from the following values. permanent(2) - this entry, corresponding to an entry in dot1qVlanStaticTable, is currently in use and will remain so after the next reset of the device. The port lists for this entry include ports from the equivalent dot1qVlanStaticTable entry and ports learnt dynamically. dynamicGvrp(3) - this entry is currently in use
dot1qVlanStatus OBJECT-TYPE SYNTAX INTEGER { other(1), permanent(2), dynamicGvrp(3) } MAX-ACCESS read-only STATUS current DESCRIPTION "This object indicates the status of this entry. other(1) - this entry is currently in use but the conditions under which it will remain so differ from the following values. permanent(2) - this entry, corresponding to an entry in dot1qVlanStaticTable, is currently in use and will remain so after the next reset of the device. The port lists for this entry include ports from the equivalent dot1qVlanStaticTable entry and ports learnt dynamically. dynamicGvrp(3) - this entry is currently in use
and will remain so until removed by GVRP. There is no static entry for this VLAN and it will be removed when the last port leaves the VLAN." ::= { dot1qVlanCurrentEntry 6 }
and will remain so until removed by GVRP. There is no static entry for this VLAN and it will be removed when the last port leaves the VLAN." ::= { dot1qVlanCurrentEntry 6 }
dot1qVlanCreationTime OBJECT-TYPE SYNTAX TimeTicks MAX-ACCESS read-only STATUS current DESCRIPTION "The value of sysUpTime when this VLAN was created." ::= { dot1qVlanCurrentEntry 7 }
dot1qVlanCreationTime OBJECT-TYPE SYNTAX TimeTicks MAX-ACCESS read-only STATUS current DESCRIPTION "The value of sysUpTime when this VLAN was created." ::= { dot1qVlanCurrentEntry 7 }
-- ------------------------------------------------------------- -- The Static VLAN Database -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The Static VLAN Database -- -------------------------------------------------------------
dot1qVlanStaticTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qVlanStaticEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing static configuration information for each VLAN configured into the device by (local or network) management. All entries are permanent and will be restored after the device is reset." ::= { dot1qVlan 3 }
dot1qVlanStaticTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qVlanStaticEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing static configuration information for each VLAN configured into the device by (local or network) management. All entries are permanent and will be restored after the device is reset." ::= { dot1qVlan 3 }
dot1qVlanStaticEntry OBJECT-TYPE SYNTAX Dot1qVlanStaticEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Static information for a VLAN configured into the device by (local or network) management." INDEX { dot1qVlanIndex } ::= { dot1qVlanStaticTable 1 }
dot1qVlanStaticEntry OBJECT-TYPE SYNTAX Dot1qVlanStaticEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Static information for a VLAN configured into the device by (local or network) management." INDEX { dot1qVlanIndex } ::= { dot1qVlanStaticTable 1 }
Dot1qVlanStaticEntry ::= SEQUENCE { dot1qVlanStaticName SnmpAdminString, dot1qVlanStaticEgressPorts PortList, dot1qVlanForbiddenEgressPorts PortList,
Dot1qVlanStaticEntry ::= SEQUENCE { dot1qVlanStaticName SnmpAdminString, dot1qVlanStaticEgressPorts PortList, dot1qVlanForbiddenEgressPorts PortList,
dot1qVlanStaticUntaggedPorts PortList, dot1qVlanStaticRowStatus RowStatus }
DOT1QVLANtaticUntagedPorts端口列表,DOT1QVLANtaticRowStatus RowStatus}
dot1qVlanStaticName OBJECT-TYPE SYNTAX SnmpAdminString (SIZE (0..32)) MAX-ACCESS read-create STATUS current DESCRIPTION "An administratively assigned string, which may be used to identify the VLAN." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanStaticEntry 1 }
dot1qVlanStaticName OBJECT-TYPE SYNTAX SnmpAdminString (SIZE (0..32)) MAX-ACCESS read-create STATUS current DESCRIPTION "An administratively assigned string, which may be used to identify the VLAN." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanStaticEntry 1 }
dot1qVlanStaticEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-create STATUS current DESCRIPTION "The set of ports which are permanently assigned to the egress list for this VLAN by management. Changes to a bit in this object affect the per-port per-VLAN Registrar control for Registration Fixed for the relevant GVRP state machine on each port. A port may not be added in this set if it is already a member of the set of ports in dot1qVlanForbiddenEgressPorts. The default value of this object is a string of zeros of appropriate length, indicating not fixed." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7.3, 11.2.3.2.3" ::= { dot1qVlanStaticEntry 2 }
dot1qVlanStaticEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-create STATUS current DESCRIPTION "The set of ports which are permanently assigned to the egress list for this VLAN by management. Changes to a bit in this object affect the per-port per-VLAN Registrar control for Registration Fixed for the relevant GVRP state machine on each port. A port may not be added in this set if it is already a member of the set of ports in dot1qVlanForbiddenEgressPorts. The default value of this object is a string of zeros of appropriate length, indicating not fixed." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7.3, 11.2.3.2.3" ::= { dot1qVlanStaticEntry 2 }
dot1qVlanForbiddenEgressPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-create STATUS current DESCRIPTION "The set of ports which are prohibited by management from being included in the egress list for this VLAN. Changes to this object that cause a port to be included or excluded affect the per-port per-VLAN Registrar
DOT1QVLAN禁止出口端口对象类型语法PortList MAX-ACCESS read create STATUS current DESCRIPTION“管理层禁止包含在此VLAN的出口列表中的端口集。对此对象的更改会导致包含或排除端口,从而影响每个VLAN注册器的每个端口
control for Registration Forbidden for the relevant GVRP state machine on each port. A port may not be added in this set if it is already a member of the set of ports in dot1qVlanStaticEgressPorts. The default value of this object is a string of zeros of appropriate length, excluding all ports from the forbidden set." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7.3, 11.2.3.2.3" ::= { dot1qVlanStaticEntry 3 }
control for Registration Forbidden for the relevant GVRP state machine on each port. A port may not be added in this set if it is already a member of the set of ports in dot1qVlanStaticEgressPorts. The default value of this object is a string of zeros of appropriate length, excluding all ports from the forbidden set." REFERENCE "IEEE 802.1Q/D11 Section 12.7.7.3, 11.2.3.2.3" ::= { dot1qVlanStaticEntry 3 }
dot1qVlanStaticUntaggedPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-create STATUS current DESCRIPTION "The set of ports which should transmit egress packets for this VLAN as untagged. The default value of this object for the default VLAN (dot1qVlanIndex = 1) is a string of appropriate length including all ports. There is no specified default for other VLANs. If a device agent cannot support the set of ports being set then it will reject the set operation with an error. An example might be if a manager attempts to set more than one VLAN to be untagged on egress where the device does not support this IEEE 802.1Q option." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanStaticEntry 4 }
dot1qVlanStaticUntaggedPorts OBJECT-TYPE SYNTAX PortList MAX-ACCESS read-create STATUS current DESCRIPTION "The set of ports which should transmit egress packets for this VLAN as untagged. The default value of this object for the default VLAN (dot1qVlanIndex = 1) is a string of appropriate length including all ports. There is no specified default for other VLANs. If a device agent cannot support the set of ports being set then it will reject the set operation with an error. An example might be if a manager attempts to set more than one VLAN to be untagged on egress where the device does not support this IEEE 802.1Q option." REFERENCE "IEEE 802.1Q/D11 Section 12.10.2.1" ::= { dot1qVlanStaticEntry 4 }
dot1qVlanStaticRowStatus OBJECT-TYPE SYNTAX RowStatus MAX-ACCESS read-create STATUS current DESCRIPTION "This object indicates the status of this entry." ::= { dot1qVlanStaticEntry 5 }
dot1qVlanStaticRowStatus OBJECT-TYPE SYNTAX RowStatus MAX-ACCESS read-create STATUS current DESCRIPTION "This object indicates the status of this entry." ::= { dot1qVlanStaticEntry 5 }
dot1qNextFreeLocalVlanIndex OBJECT-TYPE SYNTAX INTEGER (0|4096..2147483647) MAX-ACCESS read-only STATUS current DESCRIPTION "The next available value for dot1qVlanIndex of a local VLAN entry in dot1qVlanStaticTable. This will report values >=4096 if a new Local VLAN may be created or else the value 0 if this is not possible.
dot1qNextFreeLocalVlanIndex对象类型语法整数(0 | 4096..2147483647)MAX-ACCESS只读状态当前描述“dot1qVlanStaticTable中本地VLAN项的dot1qVlanIndex的下一个可用值。如果可以创建新的本地VLAN,则报告值>=4096,否则报告值0(如果不可能)。
A row creation operation in this table for an entry with a local VlanIndex value may fail if the current value of this object is not used as the index. Even if the value read is used, there is no guarantee that it will still be the valid index when the create operation is attempted - another manager may have already got in during the intervening time interval. In this case, dot1qNextFreeLocalVlanIndex should be re-read and the creation re-tried with the new value.
如果未将此对象的当前值用作索引,则此表中具有本地VlanIndex值的项的行创建操作可能会失败。即使使用了读取的值,也不能保证在尝试创建操作时它仍然是有效的索引-在中间的时间间隔内可能已经有另一个管理器进入。在这种情况下,应重新读取dot1qNextFreeLocalVlanIndex,并使用新值重新尝试创建。
This value will automatically change when the current value is used to create a new row." ::= { dot1qVlan 4 }
This value will automatically change when the current value is used to create a new row." ::= { dot1qVlan 4 }
-- ------------------------------------------------------------- -- The VLAN Port Configuration Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The VLAN Port Configuration Table -- -------------------------------------------------------------
dot1qPortVlanTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qPortVlanEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing per port control and status information for VLAN configuration in the device." ::= { dot1qVlan 5 }
dot1qPortVlanTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qPortVlanEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing per port control and status information for VLAN configuration in the device." ::= { dot1qVlan 5 }
dot1qPortVlanEntry OBJECT-TYPE SYNTAX Dot1qPortVlanEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information controlling VLAN configuration for a port on the device. This is indexed by dot1dBasePort." AUGMENTS { dot1dBasePortEntry } ::= { dot1qPortVlanTable 1 }
dot1qPortVlanEntry OBJECT-TYPE SYNTAX Dot1qPortVlanEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Information controlling VLAN configuration for a port on the device. This is indexed by dot1dBasePort." AUGMENTS { dot1dBasePortEntry } ::= { dot1qPortVlanTable 1 }
Dot1qPortVlanEntry ::= SEQUENCE { dot1qPvid VlanIndex, dot1qPortAcceptableFrameTypes INTEGER, dot1qPortIngressFiltering TruthValue, dot1qPortGvrpStatus EnabledStatus,
Dot1qPortVlanEntry ::= SEQUENCE { dot1qPvid VlanIndex, dot1qPortAcceptableFrameTypes INTEGER, dot1qPortIngressFiltering TruthValue, dot1qPortGvrpStatus EnabledStatus,
dot1qPortGvrpFailedRegistrations Counter32, dot1qPortGvrpLastPduOrigin MacAddress }
dot1qPortGvrpFailedRegistrations计数器32,dot1qPortGvrpLastPduOrigin MacAddress}
dot1qPvid OBJECT-TYPE SYNTAX VlanIndex MAX-ACCESS read-write STATUS current DESCRIPTION "The PVID, the VLAN ID assigned to untagged frames or Priority-Tagged frames received on this port." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.1" DEFVAL { 1 } ::= { dot1qPortVlanEntry 1 }
dot1qPvid OBJECT-TYPE SYNTAX VlanIndex MAX-ACCESS read-write STATUS current DESCRIPTION "The PVID, the VLAN ID assigned to untagged frames or Priority-Tagged frames received on this port." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.1" DEFVAL { 1 } ::= { dot1qPortVlanEntry 1 }
dot1qPortAcceptableFrameTypes OBJECT-TYPE SYNTAX INTEGER { admitAll(1), admitOnlyVlanTagged(2) } MAX-ACCESS read-write STATUS current DESCRIPTION "When this is admitOnlyVlanTagged(2) the device will discard untagged frames or Priority-Tagged frames received on this port. When admitAll(1), untagged frames or Priority-Tagged frames received on this port will be accepted and assigned to the PVID for this port.
dot1qPortAcceptableFrameTypes OBJECT-TYPE SYNTAX INTEGER { admitAll(1), admitOnlyVlanTagged(2) } MAX-ACCESS read-write STATUS current DESCRIPTION "When this is admitOnlyVlanTagged(2) the device will discard untagged frames or Priority-Tagged frames received on this port. When admitAll(1), untagged frames or Priority-Tagged frames received on this port will be accepted and assigned to the PVID for this port.
This control does not affect VLAN independent BPDU frames, such as GVRP and STP. It does affect VLAN dependent BPDU frames, such as GMRP." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.3" DEFVAL { admitAll } ::= { dot1qPortVlanEntry 2 }
This control does not affect VLAN independent BPDU frames, such as GVRP and STP. It does affect VLAN dependent BPDU frames, such as GMRP." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.3" DEFVAL { admitAll } ::= { dot1qPortVlanEntry 2 }
dot1qPortIngressFiltering OBJECT-TYPE SYNTAX TruthValue MAX-ACCESS read-write STATUS current
dot1qPortIngressFiltering对象类型语法TruthValue MAX-ACCESS读写状态当前
DESCRIPTION "When this is true(1) the device will discard incoming frames for VLANs which do not include this Port in its Member set. When false(2), the port will accept all incoming frames.
DESCRIPTION“如果这是真的(1),设备将丢弃VLAN的传入帧,VLAN的成员集中不包括此端口。如果是假的(2),端口将接受所有传入帧。
This control does not affect VLAN independent BPDU frames, such as GVRP and STP. It does affect VLAN dependent BPDU frames, such as GMRP." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.4" DEFVAL { false } ::= { dot1qPortVlanEntry 3 }
This control does not affect VLAN independent BPDU frames, such as GVRP and STP. It does affect VLAN dependent BPDU frames, such as GMRP." REFERENCE "IEEE 802.1Q/D11 Section 12.10.1.4" DEFVAL { false } ::= { dot1qPortVlanEntry 3 }
dot1qPortGvrpStatus OBJECT-TYPE SYNTAX EnabledStatus MAX-ACCESS read-write STATUS current DESCRIPTION "The state of GVRP operation on this port. The value enabled(1) indicates that GVRP is enabled on this port, as long as dot1qGvrpStatus is also enabled for this device. When disabled(2) but dot1qGvrpStatus is still enabled for the device, GVRP is disabled on this port: any GVRP packets received will be silently discarded and no GVRP registrations will be propagated from other ports. This object affects all GVRP Applicant and Registrar state machines on this port. A transition from disabled(2) to enabled(1) will cause a reset of all GVRP state machines on this port." DEFVAL { enabled } ::= { dot1qPortVlanEntry 4 }
dot1qPortGvrpStatus OBJECT-TYPE SYNTAX EnabledStatus MAX-ACCESS read-write STATUS current DESCRIPTION "The state of GVRP operation on this port. The value enabled(1) indicates that GVRP is enabled on this port, as long as dot1qGvrpStatus is also enabled for this device. When disabled(2) but dot1qGvrpStatus is still enabled for the device, GVRP is disabled on this port: any GVRP packets received will be silently discarded and no GVRP registrations will be propagated from other ports. This object affects all GVRP Applicant and Registrar state machines on this port. A transition from disabled(2) to enabled(1) will cause a reset of all GVRP state machines on this port." DEFVAL { enabled } ::= { dot1qPortVlanEntry 4 }
dot1qPortGvrpFailedRegistrations OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The total number of failed GVRP registrations, for any reason, on this port." ::= { dot1qPortVlanEntry 5 }
dot1qPortGvrpFailedRegistrations OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The total number of failed GVRP registrations, for any reason, on this port." ::= { dot1qPortVlanEntry 5 }
dot1qPortGvrpLastPduOrigin OBJECT-TYPE SYNTAX MacAddress MAX-ACCESS read-only STATUS current
dot1qPortGvrpLastPduOrigin对象类型语法MacAddress MAX-ACCESS只读状态当前
DESCRIPTION "The Source MAC Address of the last GVRP message received on this port." ::= { dot1qPortVlanEntry 6 }
DESCRIPTION "The Source MAC Address of the last GVRP message received on this port." ::= { dot1qPortVlanEntry 6 }
-- ------------------------------------------------------------- -- Per port VLAN Statistics Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- Per port VLAN Statistics Table -- -------------------------------------------------------------
dot1qPortVlanStatisticsTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qPortVlanStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing per-port, per-VLAN statistics for traffic received. Separate objects are provided for both the most-significant and least-significant bits of statistics counters for ports that are associated with this transparent bridge. The most-significant bit objects are only required on high capacity interfaces, as defined in the conformance clauses for these objects. This mechanism is provided as a way to read 64-bit counters for agents which support only SNMPv1.
dot1qPortVlanStatisticsTable对象类型Dot1qPortVlanStatisticsEntry的语法序列MAX-ACCESS不可访问状态当前描述“一个包含每个端口、每个VLAN的接收流量统计信息的表。为与此透明网桥关联的端口的统计计数器的最高有效位和最低有效位提供了单独的对象。最高有效位对象仅在高容量接口上需要,如这些对象的一致性条款中所定义。提供此机制是为了读取仅支持SNMPv1的代理的64位计数器。
Note that the reporting of most-significant and least- significant counter bits separately runs the risk of missing an overflow of the lower bits in the interval between sampling. The manager must be aware of this possibility, even within the same varbindlist, when interpreting the results of a request or asynchronous notification." ::= { dot1qVlan 6 }
Note that the reporting of most-significant and least- significant counter bits separately runs the risk of missing an overflow of the lower bits in the interval between sampling. The manager must be aware of this possibility, even within the same varbindlist, when interpreting the results of a request or asynchronous notification." ::= { dot1qVlan 6 }
dot1qPortVlanStatisticsEntry OBJECT-TYPE SYNTAX Dot1qPortVlanStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Traffic statistics for a VLAN on an interface." INDEX { dot1dBasePort, dot1qVlanIndex } ::= { dot1qPortVlanStatisticsTable 1 }
dot1qPortVlanStatisticsEntry OBJECT-TYPE SYNTAX Dot1qPortVlanStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Traffic statistics for a VLAN on an interface." INDEX { dot1dBasePort, dot1qVlanIndex } ::= { dot1qPortVlanStatisticsTable 1 }
Dot1qPortVlanStatisticsEntry ::= SEQUENCE {
Dot1qPortVlanStatisticsEntry ::= SEQUENCE {
dot1qTpVlanPortInFrames Counter32, dot1qTpVlanPortOutFrames Counter32, dot1qTpVlanPortInDiscards Counter32, dot1qTpVlanPortInOverflowFrames Counter32, dot1qTpVlanPortOutOverflowFrames Counter32, dot1qTpVlanPortInOverflowDiscards Counter32 }
dot1qTpVlanPortInFrames计数器32、dot1qTpVlanPortOutFrames计数器32、dot1qTpVlanPortInDiscards计数器32、DOT1QTPVlanportinFlowFrames计数器32、dot1qTpVlanPortOutOverflowFrames计数器32、DOT1QTPVlanportinFlowDiscards计数器32}
dot1qTpVlanPortInFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN. Note that a frame received on this port is counted by this object if and only if it is for a protocol being processed by the local forwarding process for this VLAN. This object includes received bridge management frames classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(a)" ::= { dot1qPortVlanStatisticsEntry 1 }
dot1qTpVlanPortInFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN. Note that a frame received on this port is counted by this object if and only if it is for a protocol being processed by the local forwarding process for this VLAN. This object includes received bridge management frames classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(a)" ::= { dot1qPortVlanStatisticsEntry 1 }
dot1qTpVlanPortOutFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames transmitted by this port to its segment from the local forwarding process for this VLAN. This includes bridge management frames originated by this device which are classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(d)" ::= { dot1qPortVlanStatisticsEntry 2 }
dot1qTpVlanPortOutFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames transmitted by this port to its segment from the local forwarding process for this VLAN. This includes bridge management frames originated by this device which are classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(d)" ::= { dot1qPortVlanStatisticsEntry 2 }
dot1qTpVlanPortInDiscards OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN which were discarded due to VLAN related reasons. Specifically, the IEEE 802.1Q counters for Discard Inbound and Discard on Ingress Filtering." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 3 }
dot1qTpVlanPortInDiscards OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN which were discarded due to VLAN related reasons. Specifically, the IEEE 802.1Q counters for Discard Inbound and Discard on Ingress Filtering." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 3 }
dot1qTpVlanPortInOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1qTpVlanPortInFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 4 }
dot1qTpVlanPortInOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1qTpVlanPortInFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 4 }
dot1qTpVlanPortOutOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1qTpVlanPortOutFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 5 }
dot1qTpVlanPortOutOverflowFrames OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1qTpVlanPortOutFrames counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 5 }
dot1qTpVlanPortInOverflowDiscards OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1qTpVlanPortInDiscards counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 6 }
dot1qTpVlanPortInOverflowDiscards OBJECT-TYPE SYNTAX Counter32 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of times the associated dot1qTpVlanPortInDiscards counter has overflowed." REFERENCE "ISO/IEC 15802-3 Section 14.6.1.1.3" ::= { dot1qPortVlanStatisticsEntry 6 }
dot1qPortVlanHCStatisticsTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qPortVlanHCStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing per port, per VLAN statistics for traffic on high capacity interfaces." ::= { dot1qVlan 7 }
dot1qPortVlanHCStatisticsTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qPortVlanHCStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing per port, per VLAN statistics for traffic on high capacity interfaces." ::= { dot1qVlan 7 }
dot1qPortVlanHCStatisticsEntry OBJECT-TYPE SYNTAX Dot1qPortVlanHCStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Traffic statistics for a VLAN on a high capacity interface." INDEX { dot1dBasePort, dot1qVlanIndex } ::= { dot1qPortVlanHCStatisticsTable 1 }
dot1qPortVlanHCStatisticsEntry OBJECT-TYPE SYNTAX Dot1qPortVlanHCStatisticsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "Traffic statistics for a VLAN on a high capacity interface." INDEX { dot1dBasePort, dot1qVlanIndex } ::= { dot1qPortVlanHCStatisticsTable 1 }
Dot1qPortVlanHCStatisticsEntry ::= SEQUENCE { dot1qTpVlanPortHCInFrames Counter64, dot1qTpVlanPortHCOutFrames Counter64, dot1qTpVlanPortHCInDiscards Counter64 }
Dot1qPortVlanHCStatisticsEntry ::= SEQUENCE { dot1qTpVlanPortHCInFrames Counter64, dot1qTpVlanPortHCOutFrames Counter64, dot1qTpVlanPortHCInDiscards Counter64 }
dot1qTpVlanPortHCInFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN. Note that a frame received on this port is counted by this object if and only if it is for a protocol being processed by the local forwarding process for this VLAN. This object includes received bridge management frames classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(a)" ::= { dot1qPortVlanHCStatisticsEntry 1 }
dot1qTpVlanPortHCInFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN. Note that a frame received on this port is counted by this object if and only if it is for a protocol being processed by the local forwarding process for this VLAN. This object includes received bridge management frames classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(a)" ::= { dot1qPortVlanHCStatisticsEntry 1 }
dot1qTpVlanPortHCOutFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames transmitted by this port to its segment from the local forwarding process for this VLAN. This includes bridge management frames originated by this device which are classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(d)" ::= { dot1qPortVlanHCStatisticsEntry 2 }
dot1qTpVlanPortHCOutFrames OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames transmitted by this port to its segment from the local forwarding process for this VLAN. This includes bridge management frames originated by this device which are classified as belonging to this VLAN (e.g. GMRP, but not GVRP or STP)." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3(d)" ::= { dot1qPortVlanHCStatisticsEntry 2 }
dot1qTpVlanPortHCInDiscards OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN which were discarded due to VLAN related reasons. Specifically, the IEEE 802.1Q counters for Discard Inbound and Discard on Ingress Filtering." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3" ::= { dot1qPortVlanHCStatisticsEntry 3 }
dot1qTpVlanPortHCInDiscards OBJECT-TYPE SYNTAX Counter64 MAX-ACCESS read-only STATUS current DESCRIPTION "The number of valid frames received by this port from its segment which were classified as belonging to this VLAN which were discarded due to VLAN related reasons. Specifically, the IEEE 802.1Q counters for Discard Inbound and Discard on Ingress Filtering." REFERENCE "IEEE 802.1Q/D11 Section 12.6.1.1.3" ::= { dot1qPortVlanHCStatisticsEntry 3 }
-- ------------------------------------------------------------- -- The VLAN Learning Constraints Table -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- The VLAN Learning Constraints Table -- -------------------------------------------------------------
dot1qLearningConstraintsTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qLearningConstraintsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing learning constraints for sets of Shared and Independendent VLANs." REFERENCE "IEEE 802.1Q/D11 Section 12.10.3.1" ::= { dot1qVlan 8 }
dot1qLearningConstraintsTable OBJECT-TYPE SYNTAX SEQUENCE OF Dot1qLearningConstraintsEntry MAX-ACCESS not-accessible STATUS current DESCRIPTION "A table containing learning constraints for sets of Shared and Independendent VLANs." REFERENCE "IEEE 802.1Q/D11 Section 12.10.3.1" ::= { dot1qVlan 8 }
dot1qLearningConstraintsEntry OBJECT-TYPE SYNTAX Dot1qLearningConstraintsEntry MAX-ACCESS not-accessible STATUS current
Dot1QLearningConstraintEntry对象类型语法Dot1QLearningConstraintEntry MAX-ACCESS不可访问状态当前
DESCRIPTION "A learning constraint defined for a VLAN." INDEX { dot1qConstraintVlan, dot1qConstraintSet } ::= { dot1qLearningConstraintsTable 1 }
DESCRIPTION "A learning constraint defined for a VLAN." INDEX { dot1qConstraintVlan, dot1qConstraintSet } ::= { dot1qLearningConstraintsTable 1 }
Dot1qLearningConstraintsEntry ::= SEQUENCE { dot1qConstraintVlan VlanIndex, dot1qConstraintSet INTEGER, dot1qConstraintType INTEGER, dot1qConstraintStatus RowStatus }
Dot1qLearningConstraintsEntry ::= SEQUENCE { dot1qConstraintVlan VlanIndex, dot1qConstraintSet INTEGER, dot1qConstraintType INTEGER, dot1qConstraintStatus RowStatus }
dot1qConstraintVlan OBJECT-TYPE SYNTAX VlanIndex MAX-ACCESS not-accessible STATUS current DESCRIPTION "The index of the row in dot1qVlanCurrentTable for the VLAN constrained by this entry." ::= { dot1qLearningConstraintsEntry 1 }
dot1qConstraintVlan OBJECT-TYPE SYNTAX VlanIndex MAX-ACCESS not-accessible STATUS current DESCRIPTION "The index of the row in dot1qVlanCurrentTable for the VLAN constrained by this entry." ::= { dot1qLearningConstraintsEntry 1 }
dot1qConstraintSet OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS not-accessible STATUS current DESCRIPTION "The identity of the constraint set to which dot1qConstraintVlan belongs. These values may be chosen by the management station." ::= { dot1qLearningConstraintsEntry 2 }
dot1qConstraintSet OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS not-accessible STATUS current DESCRIPTION "The identity of the constraint set to which dot1qConstraintVlan belongs. These values may be chosen by the management station." ::= { dot1qLearningConstraintsEntry 2 }
dot1qConstraintType OBJECT-TYPE SYNTAX INTEGER { independent(1), shared(2) } MAX-ACCESS read-create STATUS current DESCRIPTION "The type of constraint this entry defines. independent(1) - the VLAN, dot1qConstraintVlan, uses an independent filtering database from all
dot1qConstraintType OBJECT-TYPE SYNTAX INTEGER { independent(1), shared(2) } MAX-ACCESS read-create STATUS current DESCRIPTION "The type of constraint this entry defines. independent(1) - the VLAN, dot1qConstraintVlan, uses an independent filtering database from all
other VLANs in the same set, defined by dot1qConstraintSet. shared(2) - the VLAN, dot1qConstraintVlan, shares the same filtering database as all other VLANs in the same set, defined by dot1qConstraintSet." ::= { dot1qLearningConstraintsEntry 3 }
other VLANs in the same set, defined by dot1qConstraintSet. shared(2) - the VLAN, dot1qConstraintVlan, shares the same filtering database as all other VLANs in the same set, defined by dot1qConstraintSet." ::= { dot1qLearningConstraintsEntry 3 }
dot1qConstraintStatus OBJECT-TYPE SYNTAX RowStatus MAX-ACCESS read-create STATUS current DESCRIPTION "The status of this entry." ::= { dot1qLearningConstraintsEntry 4 }
dot1qConstraintStatus OBJECT-TYPE SYNTAX RowStatus MAX-ACCESS read-create STATUS current DESCRIPTION "The status of this entry." ::= { dot1qLearningConstraintsEntry 4 }
dot1qConstraintSetDefault OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS read-write STATUS current DESCRIPTION "The identity of the constraint set to which a VLAN belongs, if there is not an explicit entry for that VLAN in dot1qLearningConstraintsTable." ::= { dot1qVlan 9 }
dot1qConstraintSetDefault OBJECT-TYPE SYNTAX INTEGER (0..65535) MAX-ACCESS read-write STATUS current DESCRIPTION "The identity of the constraint set to which a VLAN belongs, if there is not an explicit entry for that VLAN in dot1qLearningConstraintsTable." ::= { dot1qVlan 9 }
dot1qConstraintTypeDefault OBJECT-TYPE SYNTAX INTEGER { independent(1), shared(2) } MAX-ACCESS read-write STATUS current DESCRIPTION "The type of constraint set to which a VLAN belongs, if there is not an explicit entry for that VLAN in dot1qLearningConstraintsTable. The types are as defined for dot1qConstraintType." ::= { dot1qVlan 10 }
dot1qConstraintTypeDefault OBJECT-TYPE SYNTAX INTEGER { independent(1), shared(2) } MAX-ACCESS read-write STATUS current DESCRIPTION "The type of constraint set to which a VLAN belongs, if there is not an explicit entry for that VLAN in dot1qLearningConstraintsTable. The types are as defined for dot1qConstraintType." ::= { dot1qVlan 10 }
-- ------------------------------------------------------------- -- IEEE 802.1Q MIB - Conformance Information -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- IEEE 802.1Q MIB - Conformance Information -- -------------------------------------------------------------
qBridgeConformance OBJECT IDENTIFIER ::= { qBridgeMIB 2 }
qBridgeConformance OBJECT IDENTIFIER ::= { qBridgeMIB 2 }
qBridgeGroups OBJECT IDENTIFIER ::= { qBridgeConformance 1 }
qBridgeGroups OBJECT IDENTIFIER ::= { qBridgeConformance 1 }
qBridgeCompliances OBJECT IDENTIFIER ::= { qBridgeConformance 2 }
qBridgeCompliances OBJECT IDENTIFIER ::= { qBridgeConformance 2 }
-- ------------------------------------------------------------- -- units of conformance -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- units of conformance -- -------------------------------------------------------------
qBridgeBaseGroup OBJECT-GROUP OBJECTS { dot1qVlanVersionNumber, dot1qMaxVlanId, dot1qMaxSupportedVlans, dot1qNumVlans, dot1qGvrpStatus } STATUS current DESCRIPTION "A collection of objects providing device level control and status information for the Virtual LAN bridge services." ::= { qBridgeGroups 1 }
qBridgeBaseGroup OBJECT-GROUP OBJECTS { dot1qVlanVersionNumber, dot1qMaxVlanId, dot1qMaxSupportedVlans, dot1qNumVlans, dot1qGvrpStatus } STATUS current DESCRIPTION "A collection of objects providing device level control and status information for the Virtual LAN bridge services." ::= { qBridgeGroups 1 }
qBridgeFdbUnicastGroup OBJECT-GROUP OBJECTS { dot1qFdbDynamicCount, dot1qTpFdbPort, dot1qTpFdbStatus } STATUS current DESCRIPTION "A collection of objects providing information about all unicast addresses, learnt dynamically or statically configured by management, in each Filtering Database." ::= { qBridgeGroups 2 }
qBridgeFdbUnicastGroup OBJECT-GROUP OBJECTS { dot1qFdbDynamicCount, dot1qTpFdbPort, dot1qTpFdbStatus } STATUS current DESCRIPTION "A collection of objects providing information about all unicast addresses, learnt dynamically or statically configured by management, in each Filtering Database." ::= { qBridgeGroups 2 }
qBridgeFdbMulticastGroup OBJECT-GROUP OBJECTS { dot1qTpGroupEgressPorts, dot1qTpGroupLearnt }
qBridgeFdbMulticastGroup OBJECT-GROUP OBJECTS { dot1qTpGroupEgressPorts, dot1qTpGroupLearnt }
STATUS current DESCRIPTION "A collection of objects providing information about all multicast addresses, learnt dynamically or statically configured by management, in each Filtering Database." ::= { qBridgeGroups 3 }
STATUS current DESCRIPTION "A collection of objects providing information about all multicast addresses, learnt dynamically or statically configured by management, in each Filtering Database." ::= { qBridgeGroups 3 }
qBridgeServiceRequirementsGroup OBJECT-GROUP OBJECTS { dot1qForwardAllPorts, dot1qForwardAllStaticPorts, dot1qForwardAllForbiddenPorts, dot1qForwardUnregisteredPorts, dot1qForwardUnregisteredStaticPorts, dot1qForwardUnregisteredForbiddenPorts } STATUS current DESCRIPTION "A collection of objects providing information about service requirements, learnt dynamically or statically configured by management, in each Filtering Database." ::= { qBridgeGroups 4 }
qBridgeServiceRequirementsGroup OBJECT-GROUP OBJECTS { dot1qForwardAllPorts, dot1qForwardAllStaticPorts, dot1qForwardAllForbiddenPorts, dot1qForwardUnregisteredPorts, dot1qForwardUnregisteredStaticPorts, dot1qForwardUnregisteredForbiddenPorts } STATUS current DESCRIPTION "A collection of objects providing information about service requirements, learnt dynamically or statically configured by management, in each Filtering Database." ::= { qBridgeGroups 4 }
qBridgeFdbStaticGroup OBJECT-GROUP OBJECTS { dot1qStaticUnicastAllowedToGoTo, dot1qStaticUnicastStatus, dot1qStaticMulticastStaticEgressPorts, dot1qStaticMulticastForbiddenEgressPorts, dot1qStaticMulticastStatus } STATUS current DESCRIPTION "A collection of objects providing information about unicast and multicast addresses statically configured by management, in each Filtering Database or VLAN." ::= { qBridgeGroups 5 }
qBridgeFdbStaticGroup OBJECT-GROUP OBJECTS { dot1qStaticUnicastAllowedToGoTo, dot1qStaticUnicastStatus, dot1qStaticMulticastStaticEgressPorts, dot1qStaticMulticastForbiddenEgressPorts, dot1qStaticMulticastStatus } STATUS current DESCRIPTION "A collection of objects providing information about unicast and multicast addresses statically configured by management, in each Filtering Database or VLAN." ::= { qBridgeGroups 5 }
qBridgeVlanGroup OBJECT-GROUP OBJECTS { dot1qVlanNumDeletes, dot1qVlanFdbId, dot1qVlanCurrentEgressPorts, dot1qVlanCurrentUntaggedPorts, dot1qVlanStatus, dot1qVlanCreationTime }
qBridgeVlanGroup OBJECT-GROUP OBJECTS { dot1qVlanNumDeletes, dot1qVlanFdbId, dot1qVlanCurrentEgressPorts, dot1qVlanCurrentUntaggedPorts, dot1qVlanStatus, dot1qVlanCreationTime }
STATUS current DESCRIPTION "A collection of objects providing information about all VLANs currently configured on this device." ::= { qBridgeGroups 6 }
STATUS current DESCRIPTION "A collection of objects providing information about all VLANs currently configured on this device." ::= { qBridgeGroups 6 }
qBridgeVlanStaticGroup OBJECT-GROUP OBJECTS { dot1qVlanStaticName, dot1qVlanStaticEgressPorts, dot1qVlanForbiddenEgressPorts, dot1qVlanStaticUntaggedPorts, dot1qVlanStaticRowStatus, dot1qNextFreeLocalVlanIndex } STATUS current DESCRIPTION "A collection of objects providing information about VLANs statically configured by management." ::= { qBridgeGroups 7 }
qBridgeVlanStaticGroup OBJECT-GROUP OBJECTS { dot1qVlanStaticName, dot1qVlanStaticEgressPorts, dot1qVlanForbiddenEgressPorts, dot1qVlanStaticUntaggedPorts, dot1qVlanStaticRowStatus, dot1qNextFreeLocalVlanIndex } STATUS current DESCRIPTION "A collection of objects providing information about VLANs statically configured by management." ::= { qBridgeGroups 7 }
qBridgePortGroup OBJECT-GROUP OBJECTS { dot1qPvid, dot1qPortAcceptableFrameTypes, dot1qPortIngressFiltering, dot1qPortGvrpStatus, dot1qPortGvrpFailedRegistrations, dot1qPortGvrpLastPduOrigin } STATUS current DESCRIPTION "A collection of objects providing port level VLAN control and status information for all ports." ::= { qBridgeGroups 8 }
qBridgePortGroup OBJECT-GROUP OBJECTS { dot1qPvid, dot1qPortAcceptableFrameTypes, dot1qPortIngressFiltering, dot1qPortGvrpStatus, dot1qPortGvrpFailedRegistrations, dot1qPortGvrpLastPduOrigin } STATUS current DESCRIPTION "A collection of objects providing port level VLAN control and status information for all ports." ::= { qBridgeGroups 8 }
qBridgeVlanStatisticsGroup OBJECT-GROUP OBJECTS { dot1qTpVlanPortInFrames, dot1qTpVlanPortOutFrames, dot1qTpVlanPortInDiscards } STATUS current DESCRIPTION "A collection of objects providing per-port packet statistics for all VLANs currently configured on this device." ::= { qBridgeGroups 9 }
qBridgeVlanStatisticsGroup OBJECT-GROUP OBJECTS { dot1qTpVlanPortInFrames, dot1qTpVlanPortOutFrames, dot1qTpVlanPortInDiscards } STATUS current DESCRIPTION "A collection of objects providing per-port packet statistics for all VLANs currently configured on this device." ::= { qBridgeGroups 9 }
qBridgeVlanStatisticsOverflowGroup OBJECT-GROUP OBJECTS { dot1qTpVlanPortInOverflowFrames, dot1qTpVlanPortOutOverflowFrames, dot1qTpVlanPortInOverflowDiscards } STATUS current DESCRIPTION "A collection of objects providing overflow counters for per-port packet statistics for all VLANs currently configured on this device for high capacity interfaces, defined as those that have the value of the corresponding instance of ifSpeed greater than 650,000,000 bits/second." ::= { qBridgeGroups 10 }
qBridgeVlanStatisticsOverflowGroup OBJECT-GROUP OBJECTS { dot1qTpVlanPortInOverflowFrames, dot1qTpVlanPortOutOverflowFrames, dot1qTpVlanPortInOverflowDiscards } STATUS current DESCRIPTION "A collection of objects providing overflow counters for per-port packet statistics for all VLANs currently configured on this device for high capacity interfaces, defined as those that have the value of the corresponding instance of ifSpeed greater than 650,000,000 bits/second." ::= { qBridgeGroups 10 }
qBridgeVlanHCStatisticsGroup OBJECT-GROUP OBJECTS { dot1qTpVlanPortHCInFrames, dot1qTpVlanPortHCOutFrames, dot1qTpVlanPortHCInDiscards } STATUS current DESCRIPTION "A collection of objects providing per-port packet statistics for all VLANs currently configured on this device for high capacity interfaces, defined as those that have the value of the corresponding instance of ifSpeed greater than 650,000,000 bits/second." ::= { qBridgeGroups 11 }
qBridgeVlanHCStatisticsGroup OBJECT-GROUP OBJECTS { dot1qTpVlanPortHCInFrames, dot1qTpVlanPortHCOutFrames, dot1qTpVlanPortHCInDiscards } STATUS current DESCRIPTION "A collection of objects providing per-port packet statistics for all VLANs currently configured on this device for high capacity interfaces, defined as those that have the value of the corresponding instance of ifSpeed greater than 650,000,000 bits/second." ::= { qBridgeGroups 11 }
qBridgeLearningConstraintsGroup OBJECT-GROUP OBJECTS { dot1qConstraintType, dot1qConstraintStatus } STATUS current DESCRIPTION "A collection of objects defining the Filtering Database constraints all VLANs have with each other." ::= { qBridgeGroups 12 }
qBridgeLearningConstraintsGroup OBJECT-GROUP OBJECTS { dot1qConstraintType, dot1qConstraintStatus } STATUS current DESCRIPTION "A collection of objects defining the Filtering Database constraints all VLANs have with each other." ::= { qBridgeGroups 12 }
qBridgeLearningConstraintDefaultGroup OBJECT-GROUP OBJECTS { dot1qConstraintSetDefault, dot1qConstraintTypeDefault }
qBridgeLearningConstraintDefaultGroup OBJECT-GROUP OBJECTS { dot1qConstraintSetDefault, dot1qConstraintTypeDefault }
STATUS current DESCRIPTION "A collection of objects defining the default Filtering Database constraints for VLANs which have no specific constraints defined." ::= { qBridgeGroups 13 }
STATUS current DESCRIPTION "A collection of objects defining the default Filtering Database constraints for VLANs which have no specific constraints defined." ::= { qBridgeGroups 13 }
-- ------------------------------------------------------------- -- compliance statements -- -------------------------------------------------------------
-- ------------------------------------------------------------- -- compliance statements -- -------------------------------------------------------------
qBridgeCompliance MODULE-COMPLIANCE STATUS current DESCRIPTION "The compliance statement for device support of Virtual LAN Bridge services."
qBridgeCompliance MODULE-COMPLIANCE STATUS当前描述“虚拟LAN网桥服务的设备支持合规声明”
MODULE MANDATORY-GROUPS { qBridgeBaseGroup, qBridgeVlanGroup, qBridgeVlanStaticGroup, qBridgePortGroup }
MODULE MANDATORY-GROUPS { qBridgeBaseGroup, qBridgeVlanGroup, qBridgeVlanStaticGroup, qBridgePortGroup }
GROUP qBridgeFdbUnicastGroup DESCRIPTION "This group is mandatory for bridges that implement 802.1Q transparent bridging."
GROUP qBridgeFdbUnicastGroup DESCRIPTION“对于实现802.1Q透明桥接的网桥,此组是必需的。”
GROUP qBridgeFdbMulticastGroup DESCRIPTION "This group is mandatory for bridges that implement 802.1Q transparent bridging."
GROUP qBridgeFdbMulticastGroup DESCRIPTION“对于实现802.1Q透明桥接的网桥,此组是必需的。”
GROUP qBridgeServiceRequirementsGroup DESCRIPTION "This group is mandatory for bridges that implement extended filtering services. All objects must be read-write if extended-filtering services are enabled."
组qBridgeServiceRequirementsGroup DESCRIPTION“此组对于实现扩展筛选服务的网桥是必需的。如果启用了扩展筛选服务,则所有对象都必须是读写的。”
GROUP qBridgeFdbStaticGroup DESCRIPTION "This group is optional."
组qBridgeFdbStaticGroup DESCRIPTION“此组是可选的。”
GROUP qBridgeVlanStatisticsGroup DESCRIPTION "This group is optional as there may be significant implementation cost associated with its support."
GROUP qBridgeVlanStatisticsGroup DESCRIPTION“此组是可选的,因为可能存在与其支持相关的重大实施成本。”
GROUP qBridgeVlanStatisticsOverflowGroup DESCRIPTION "This group is optional as there may be significant implementation cost associated with its support. It is most relevant for high capacity interfaces where the SNMP agent supports only SNMPv1."
GROUP qBridgeVlanStatisticsOverflowGroup DESCRIPTION“此组是可选的,因为其支持可能会带来巨大的实施成本。它与SNMP代理仅支持SNMPv1的高容量接口最相关。”
GROUP qBridgeVlanHCStatisticsGroup DESCRIPTION "This group is optional as there may be significant implementation cost associated with its support. It is most relevant for high capacity interfaces."
组qBridgeVlanHCStatisticsGroup DESCRIPTION“此组是可选的,因为它的支持可能会带来巨大的实施成本。它与高容量接口最相关。”
GROUP qBridgeLearningConstraintsGroup DESCRIPTION "This group is mandatory for devices implementing both Independent VLAN Learning (IVL) and Shared VLAN Learning (SVL) modes of operation of the filtering database, as defined by IEEE 802.1Q."
GROUP qBridgeLearningConstraintsGroup DESCRIPTION“此组对于实现过滤数据库的独立VLAN学习(IVL)和共享VLAN学习(SVL)操作模式的设备是必需的,如IEEE 802.1Q所定义。”
GROUP qBridgeLearningConstraintDefaultGroup DESCRIPTION "This group is mandatory for devices implementing both Independent VLAN Learning (IVL) and Shared VLAN Learning (SVL) modes of operation of the filtering database, as defined by IEEE 802.1Q."
GROUP qBridgeLearningConstraintDefaultGroup DESCRIPTION“此组对于实现过滤数据库的独立VLAN学习(IVL)和共享VLAN学习(SVL)操作模式(如IEEE 802.1Q所定义)的设备是必需的。”
OBJECT dot1qPortAcceptableFrameTypes MIN-ACCESS read-only DESCRIPTION "Write access is not required as this is an optional capability in IEEE 802.1Q."
对象dot1qPortAcceptableFrameTypes最小访问只读描述“不需要写访问,因为这是IEEE 802.1Q中的可选功能。”
OBJECT dot1qPortIngressFiltering MIN-ACCESS read-only DESCRIPTION "Write access is not required as this is an optional capability in IEEE 802.1Q."
OBJECT dot1qPortIngressFiltering MIN-ACCESS只读描述“不需要写访问,因为这是IEEE 802.1Q中的可选功能。”
OBJECT dot1qConstraintSetDefault MIN-ACCESS read-only DESCRIPTION "Write access is not required as this is an optional capability in IEEE 802.1Q."
对象dot1qConstraintSetDefault MIN-ACCESS只读描述“不需要写访问,因为这是IEEE 802.1Q中的可选功能。”
OBJECT dot1qConstraintTypeDefault MIN-ACCESS read-only DESCRIPTION "Write access is not required as this is an optional capability in IEEE 802.1Q."
对象dot1qConstraintTypeDefault MIN-ACCESS只读描述“不需要写访问,因为这是IEEE 802.1Q中的可选功能。”
::= { qBridgeCompliances 1 }
::= { qBridgeCompliances 1 }
END
终止
This document expands upon previous work which resulted in the original bridge MIB [BRIDGEMIB].
本文档扩展了以前的工作,这些工作产生了原始的桥接MIB[BRIDGEMIB]。
Much of the groundwork for this document was performed by the IEEE 802.1 working group during the definition of the IEEE 802.1D updates [802.1D] and IEEE 802.1Q [802.1Q].
本文件的大部分基础工作由IEEE 802.1工作组在定义IEEE 802.1D更新[802.1D]和IEEE 802.1Q[802.1Q]期间完成。
The authors wish to thank the members of the Bridge Working Group and David Harrington in particular for their many comments and suggestions which improved this effort.
作者希望感谢桥梁工作组成员,特别是David Harrington,他们提出了许多意见和建议,改进了这项工作。
There are a number of management objects defined in this MIB that have a MAX-ACCESS clause of read-write and/or read-create. Such objects may be considered sensitive or vulnerable in some network environments. The support for SET operations in a non-secure environment without proper protection can have a negative effect on network operations.
此MIB中定义了许多管理对象,它们的MAX-ACCESS子句为read-write和/或read-create。在某些网络环境中,此类对象可能被视为敏感或易受攻击。在没有适当保护的非安全环境中支持SET操作可能会对网络操作产生负面影响。
SNMPv1 by itself is not a secure environment. Even if the network itself is secure (for example by using IPSec), even then, there is no control as to who on the secure network is allowed to access and GET/SET (read/change/create/delete) the objects in this MIB.
SNMPv1本身不是一个安全的环境。即使网络本身是安全的(例如通过使用IPSec),即使如此,也无法控制安全网络上的谁可以访问和获取/设置(读取/更改/创建/删除)此MIB中的对象。
It is recommended that the implementers consider the security features as provided by the SNMPv3 framework. Specifically, the use of the User-based Security Model [USM] and the View-based Access Control Model [VACM] is recommended.
建议实施者考虑SNMPv3框架提供的安全特性。具体而言,建议使用基于用户的安全模型[USM]和基于视图的访问控制模型[VACM]。
It is then a customer/user responsibility to ensure that the SNMP entity giving access to an instance of this MIB, is properly configured to give access to the objects only to those principals (users) that have legitimate rights to indeed GET or SET (change/create/delete) them.
然后,客户/用户有责任确保授予对此MIB实例访问权限的SNMP实体被正确配置为仅授予那些拥有确实获取或设置(更改/创建/删除)对象的合法权限的主体(用户)对对象的访问权限。
[ARCH] Harrington, D., Presuhn, R. and B. Wijnen, "An Architecture for Describing SNMP Management Frameworks", RFC 2571, April 1999.
[ARCH]Harrington,D.,Presohn,R.和B.Wijnen,“描述SNMP管理框架的体系结构”,RFC 2571,1999年4月。
[V1PROTO] Case, J., Fedor, M., Schoffstall, M. and J. Davin, "Simple Network Management Protocol", STD 15, RFC 1157, May 1990.
[V1PROTO]Case,J.,Fedor,M.,Schoffstall,M.和J.Davin,“简单网络管理协议”,STD 15,RFC 1157,1990年5月。
[V1SMI] Rose, M. and K. McCloghrie, "Structure and Identification of Management Information for TCP/IP-based Internets", STD 16, RFC 1155, May 1990.
[V1SMI]Rose,M.和K.McCloghrie,“基于TCP/IP的互联网管理信息的结构和识别”,STD 16,RFC 1155,1990年5月。
[V1CONCISE] Rose, M. and K. McCloghrie, "Concise MIB Definitions", STD 16, RFC 1212, March 1991.
[v1简明]Rose,M.和K.McCloghrie,“简明MIB定义”,STD 16,RFC 1212,1991年3月。
[V1TRAPS] Rose, M., "A Convention for Defining Traps for use with the SNMP", RFC 1215, March 1991.
[V1TRAPS]Rose,M.,“定义用于SNMP的陷阱的约定”,RFC1215,1991年3月。
[V2SMI] McCloghrie, K., Perkins, D., Schoenwaelder, J., Case, J., Rose, M. and S. Waldbusser, "Structure of Management Information Version 2 (SMIv2)", STD 58, RFC 2578, April 1999.
[V2SMI]McCloghrie,K.,Perkins,D.,Schoenwaeld,J.,Case,J.,Rose,M.和S.Waldbusser,“管理信息结构版本2(SMIv2)”,STD 58,RFC 2578,1999年4月。
[V2TC] McCloghrie, K., Perkins, D., Schoenwaelder, J., Case, J., Rose, M. and S. Waldbusser, "Textual Conventions for SMIv2", STD 58, RFC 2579, April 1999.
[V2TC]McCloghrie,K.,Perkins,D.,Schoenwaeld,J.,Case,J.,Rose,M.和S.Waldbusser,“SMIv2的文本约定”,STD 58,RFC 2579,1999年4月。
[V2CONFORM] McCloghrie, K., Perkins, D., Schoenwaelder, J., Case, J., Rose, M. and S. Waldbusser, "Conformance Statements for SMIv2", STD 58, RFC 2580, April 1999.
[V2CONFORM]McCloghrie,K.,Perkins,D.,Schoenwaeld,J.,Case,J.,Rose,M.和S.Waldbusser,“SMIv2的一致性声明”,STD 58,RFC 25801999年4月。
[V2COMMUNITY] Case, J., McCloghrie, K., Rose, M. and S. Waldbusser, "Introduction to Community-based SNMPv2", RFC 1901, January 1996.
[V2COMMUNITY]Case,J.,McCloghrie,K.,Rose,M.和S.Waldbusser,“基于社区的SNMPv2简介”,RFC 19011996年1月。
[V2TRANS] Case, J., McCloghrie, K., Rose, M. and S. Waldbusser, "Transport Mappings for Version 2 of the Simple Network Management Protocol (SNMPv2)", RFC 1906, January 1996.
[V2TRANS]Case,J.,McCloghrie,K.,Rose,M.和S.Waldbusser,“简单网络管理协议(SNMPv2)版本2的传输映射”,RFC 1906,1996年1月。
[V2PROTO] Case, J., McCloghrie, K., Rose, M. and S. Waldbusser, "Protocol Operations for Version 2 of the Simple Network Management Protocol (SNMPv2)", RFC 1905, January 1996.
[V2PROTO]Case,J.,McCloghrie,K.,Rose,M.和S.Waldbusser,“简单网络管理协议(SNMPv2)版本2的协议操作”,RFC 1905,1996年1月。
[V3INTRO] Case, J., Mundy, R., Partain, D. and B. Stewart, "Introduction to Version 3 of the Internet-standard Network Management Framework", RFC 2570, April 1999.
[V3INTRO]Case,J.,Mundy,R.,Partain,D.和B.Stewart,“互联网标准网络管理框架第3版简介”,RFC 25701999年4月。
[V3MPC] Case, J., Harrington D., Presuhn, R. and B. Wijnen, "Message Processing and Dispatching for the Simple Network Management Protocol (SNMP)", RFC 2572, April 1999.
[V3MPC]Case,J.,Harrington D.,Presohn,R.和B.Wijnen,“简单网络管理协议(SNMP)的消息处理和调度”,RFC 2572,1999年4月。
[V3USM] Blumenthal, U. and B. Wijnen, "The User-Based Security Model (USM) for Version 3 of the Simple Network Management Protocol (SNMPv3)", RFC 2574, April 1999.
[V3USM]Blumenthal,U.和B.Wijnen,“简单网络管理协议(SNMPv3)第3版基于用户的安全模型(USM)”,RFC 2574,1999年4月。
[V3APPS] Levi, D., Meyer, P. and B. Stewart, "SNMP Applications", RFC 2573, April 1999.
[V3APPS]Levi,D.,Meyer,P.和B.Stewart,“SNMP应用”,RFC 2573,1999年4月。
[V3VACM] Wijnen, B., Presuhn, R. and K. McCloghrie, "View-based Access Control Model for the Simple Network Management Protocol (SNMP)", RFC 2575, April 1999.
[V3VACM]Wijnen,B.,Presuhn,R.和K.McCloghrie,“简单网络管理协议(SNMP)基于视图的访问控制模型”,RFC 2575,1999年4月。
[ASN1] Information processing systems - Open Systems Interconnection - Specification of Abstract Syntax Notation One (ASN.1), International Organization for Standardization, International Standard 8824, December 1987.
[ASN1]信息处理系统.开放系统互连.抽象语法符号1规范(ASN.1),国际标准化组织,国际标准88241987年12月。
[ASN1BER] Information processing systems - Open Systems Interconnection - Specification of Basic Encoding Rules for Abstract Notation One (ASN.1), International Organization for Standardization, International Standard 8825, December 1987.
[ASN1BER]信息处理系统.开放系统互连.抽象符号1(ASN.1)基本编码规则规范,国际标准化组织,国际标准88251987年12月。
[802.1D-ORIG] ISO/IEC 10038, ANSI/IEEE Std 802.1D-1993 "MAC Bridges".
[802.1D-ORIG]ISO/IEC 10038,ANSI/IEEE标准802.1D-1993“MAC网桥”。
[802.1D] "Information technology - Telecommunications and information exchange between systems - Local and metropolitan area networks - Common specifications - Part 3: Media Access Control (MAC) Bridges: Revision. This is a revision of ISO/IEC 10038: 1993, 802.1j-1992 and 802.6k-1992. It incorporates P802.11c, P802.1p and P802.12e." ISO/IEC 15802-3: 1998.
[802.1D]“信息技术-系统间电信和信息交换-局域网和城域网-通用规范-第3部分:媒体访问控制(MAC)网桥:修订版。这是ISO/IEC 10038:1993、802.1j-1992和802.6k-1992的修订版。它包含了P802.11c、P802.1p和P802.12e。”ISO/IEC 15802-3:1998。
[802.1Q] ANSI/IEEE Standard 802.1Q, "IEEE Standards for Local and Metropolitan Area Networks: Virtual Bridged Local Area Networks", 1998.
[802.1Q]ANSI/IEEE标准802.1Q,“局域网和城域网的IEEE标准:虚拟桥接局域网”,1998年。
[BRIDGEMIB] Decker, E., Langille, P., Rijsinghani, A. and K. McCloghrie, "Definitions of Managed Objects for Bridges", RFC 1493, July 1993.
[BRIDGEMIB]Decker,E.,Langille,P.,Rijsinghani,A.和K.McCloghrie,“桥梁管理对象的定义”,RFC 1493,1993年7月。
[INTERFACEMIB] McCloghrie, K. and F. Kastenholz, "The Interfaces Group MIB using SMIv2", RFC 2233, November 1997.
[INTERFACEMIB]McCloghrie,K.和F.Kastenholz,“使用SMIv2的接口组MIB”,RFC 2233,1997年11月。
[SRBRIDGEMIB] Decker, E., McCloghrie, K., Langille, P. and A. Rijsinghani, "Definitions of Managed Objects for Source Routing Bridges", RFC 1525, September 1993.
[SRBRIDGEMIB]Decker,E.,McCloghrie,K.,Langille,P.和A.Rijsinghani,“源路由桥的托管对象定义”,RFC 15251993年9月。
[MIB2] McCloghrie K. and M. Rose, Editors, "Management Information Base for Network Management of TCP/IP-based internets", STD 17, RFC 1213, March 1991.
[MIB2]McCloghrie K.和M.Rose,编辑,“基于TCP/IP的互联网网络管理的管理信息库”,STD 17,RFC 1213,1991年3月。
Les Bell 3Com Europe Limited 3Com Centre, Boundary Way Hemel Hempstead Herts. HP2 7YU UK
Les Bell 3Com欧洲有限公司3Com中心,边界路Hemel Hempstead Herts。HP2 7YU英国
Phone: +44 1442 438025 EMail: Les_Bell@3Com.com
Phone: +44 1442 438025 EMail: Les_Bell@3Com.com
Andrew Smith Extreme Networks 3585 Monroe St. Santa Clara, CA 95051 USA
安德鲁·史密斯极限网络美国加利福尼亚州圣克拉拉门罗街3585号,邮编95051
Phone: +1 408 579 2821 EMail: andrew@extremenetworks.com
Phone: +1 408 579 2821 EMail: andrew@extremenetworks.com
Paul Langille Newbridge Networks 5 Corporate Drive Andover, MA 01810 USA
美国马萨诸塞州安多弗市公司大道5号保罗·兰吉尔新桥网络公司01810
Phone: +1 978 691 4665 EMail: langille@newbridge.com
Phone: +1 978 691 4665 EMail: langille@newbridge.com
Anil Rijhsinghani Cabletron Systems 50 Minuteman Road Andover, MA 01810 USA
美国马萨诸塞州安多弗市Minuteman路50号Anil Rijhsinghani Cabletron Systems 01810
Phone: +1 978 684 1295 EMail: anil@cabletron.com
Phone: +1 978 684 1295 EMail: anil@cabletron.com
Keith McCloghrie cisco Systems, Inc. 170 West Tasman Drive San Jose, CA 95134-1706 USA
Keith McCloghrie cisco Systems,Inc.美国加利福尼亚州圣何塞西塔斯曼大道170号,邮编95134-1706
Phone: +1 408 526 5260 EMail: kzm@cisco.com
Phone: +1 408 526 5260 EMail: kzm@cisco.com
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Acknowledgement
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