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    • 3. 发明授权
    • Preventing loops in networks operating different protocols to provide loop-free topology
    • 防止运行不同协议的网络中的环路提供无环路拓扑
    • US08630303B2
    • 2014-01-14
    • US12927475
    • 2010-11-15
    • Tameen KhanRonak DesaiDino Farinacci
    • Tameen KhanRonak DesaiDino Farinacci
    • H04L12/28
    • H04L45/18H04L12/4633H04L45/02H04L45/52
    • A method and apparatus for preventing loops in a network with network devices operating a spanning tree protocol and network devices operating a link state routing protocol to prevent loops are disclosed. In one embodiment, a method includes receiving from one of the network devices operating a link state protocol, a link state routing synchronization packet at a first network device in communication with one of the network devices operating the spanning tree protocol, blocking at the first network device, boundary ports in communication with the network devices operating the spanning tree protocol, transmitting a link state routing synchronization acknowledgement packet at the first network device after the boundary ports are blocked, and performing a loop-free topology convergence process at the first network device.
    • 公开了一种用于防止具有操作生成树协议的网络设备的网络中的环路和操作链路状态路由协议以防止环路的网络设备的方法和装置。 在一个实施例中,一种方法包括从操作链路状态协议的网络设备中的一个接收第一网络设备的链路状态路由同步分组,其中与运行生成树协议的网络设备之一通信,在第一网络 设备,与运行生成树协议的网络设备通信的边界端口,在边界端口被阻塞之后在第一网络设备处发送链路状态路由同步确认分组,并且在第一网络设备处执行无环路拓扑收敛过程 。
    • 4. 发明申请
    • Preventing loops in networks operating different protocols to provide loop-free topology
    • 防止运行不同协议的网络中的环路提供无环路拓扑
    • US20110064002A1
    • 2011-03-17
    • US12927475
    • 2010-11-15
    • Tameen KhanRonak DesaiDino Farinacci
    • Tameen KhanRonak DesaiDino Farinacci
    • H04L12/28
    • H04L45/18H04L12/4633H04L45/02H04L45/52
    • A method and apparatus for preventing loops in a network with network devices operating a spanning tree protocol and network devices operating a link state routing protocol to prevent loops are disclosed. In one embodiment, a method includes receiving from one of the network devices operating a link state protocol, a link state routing synchronization packet at a first network device in communication with one of the network devices operating the spanning tree protocol, blocking at the first network device, boundary ports in communication with the network devices operating the spanning tree protocol, transmitting a link state routing synchronization acknowledgement packet at the first network device after the boundary ports are blocked, and performing a loop-free topology convergence process at the first network device.
    • 公开了一种用于防止具有操作生成树协议的网络设备的网络中的环路和操作链路状态路由协议以防止环路的网络设备的方法和装置。 在一个实施例中,一种方法包括从操作链路状态协议的网络设备中的一个接收第一网络设备的链路状态路由同步分组,其中与运行生成树协议的网络设备之一通信,在第一网络 设备,与运行生成树协议的网络设备通信的边界端口,在边界端口被阻塞之后在第一网络设备处发送链路状态路由同步确认分组,并且在第一网络设备处执行无环路拓扑收敛过程 。
    • 6. 发明授权
    • Logical partitioning of a physical device
    • 物理设备的逻辑分区
    • US08225134B2
    • 2012-07-17
    • US11697612
    • 2007-04-06
    • Ronak DesaiRamana MellacheruvuDino FarinacciAmitkumar PatelUmesh Mahajan
    • Ronak DesaiRamana MellacheruvuDino FarinacciAmitkumar PatelUmesh Mahajan
    • G06F11/00
    • H04L41/0654G06F11/1482G06F2201/815H04L69/32H04L69/40
    • In one embodiment, an indication of a fault condition is received relating to a first service running on a physical device in a computer network. The first service is associated with a first virtual device context defined on the physical device. Then, the first service is disabled without affecting operation of a second service on the physical device. The second service is associated with a second virtual device context defined on the physical device. In another embodiment, a first virtual device context is created on a physical device in a computer network. Then, a second virtual device context is created on the physical device. The first virtual device context may then be managed independently of the second virtual device context such that resources assigned to a virtual device context are managed without affecting management of another virtual device context.
    • 在一个实施例中,接收与在计算机网络中的物理设备上运行的第一服务有关的故障状况的指示。 第一服务与在物理设备上定义的第一虚拟设备上下文相关联。 然后,第一服务被禁用,而不影响物理设备上的第二服务的操作。 第二服务与在物理设备上定义的第二虚拟设备上下文相关联。 在另一个实施例中,在计算机网络中的物理设备上创建第一虚拟设备上下文。 然后,在物理设备上创建第二虚拟设备上下文。 然后可以独立于第二虚拟设备上下文管理第一虚拟设备上下文,使得分配给虚拟设备上下文的资源被管理,而不影响另一虚拟设备上下文的管理。
    • 7. 发明授权
    • Logical partitioning of a physical device
    • 物理设备的逻辑分区
    • US08949662B2
    • 2015-02-03
    • US13543671
    • 2012-07-06
    • Ronak DesaiRamana MellacheruvuDino FarinacciAmitkumar PatelUmesh Mahajan
    • Ronak DesaiRamana MellacheruvuDino FarinacciAmitkumar PatelUmesh Mahajan
    • G06F11/00H04L12/24G06F11/14H04L29/14H04L29/08
    • H04L41/0654G06F11/1482G06F2201/815H04L69/32H04L69/40
    • In one embodiment, an indication of a fault condition is received relating to a first service running on a physical device in a computer network. The first service is associated with a first virtual device context defined on the physical device. Then, the first service is disabled without affecting operation of a second service on the physical device. The second service is associated with a second virtual device context defined on the physical device. In another embodiment, a first virtual device context is created on a physical device in a computer network. Then, a second virtual device context is created on the physical device. The first virtual device context may then be managed independently of the second virtual device context such that resources assigned to a virtual device context are managed without affecting management of another virtual device context.
    • 在一个实施例中,接收与在计算机网络中的物理设备上运行的第一服务有关的故障状况的指示。 第一服务与在物理设备上定义的第一虚拟设备上下文相关联。 然后,第一服务被禁用,而不影响物理设备上的第二服务的操作。 第二服务与在物理设备上定义的第二虚拟设备上下文相关联。 在另一个实施例中,在计算机网络中的物理设备上创建第一虚拟设备上下文。 然后,在物理设备上创建第二虚拟设备上下文。 然后可以独立于第二虚拟设备上下文管理第一虚拟设备上下文,使得分配给虚拟设备上下文的资源被管理,而不影响另一虚拟设备上下文的管理。
    • 9. 发明申请
    • System and method for running a multiple spanning tree protocol with a very large number of domains
    • 用于运行具有非常大数量域的多生成树协议的系统和方法
    • US20070258390A1
    • 2007-11-08
    • US11416559
    • 2006-05-03
    • Tameen KhanRonak DesaiShekher BulusuFrancois TalletNorman FinnMunish Mehta
    • Tameen KhanRonak DesaiShekher BulusuFrancois TalletNorman FinnMunish Mehta
    • H04L12/28
    • H04L12/462H04L12/467H04L45/48
    • A system and method runs a multiple spanning tree protocol (MSTP) in a computer network having a very large number of bridge domains. The computer network includes a plurality of intermediate network devices, each having a plurality of ports for forwarding network messages. Within each device, a plurality of bridge domains are defined, each bridge domain is identified by a Virtual Local Area Network (VLAN) Identifier (VID), and one or more device ports. For each port, a separate mapping of VIDs to Multiple Spanning Tree Instances (MSTIs), based on the bridge domains defined at the port, is established. Each mapping is converted to a port-based configuration digest, which is entered into Spanning Tree Protocol (STP) control messages sent from the respective port. Ports receiving STP control messages whose configuration digest values that match the configuration digests values computed for the ports are said to be in the same Multiple Spanning Tree region. Ports whose configuration digests differ from the configuration digests of received STP control messages are said to be in different regions.
    • 系统和方法在具有非常大数量的网桥域的计算机网络中运行多生成树协议(MSTP)。 计算机网络包括多个中间网络设备,每个中间网络设备具有用于转发网络消息的多个端口。 在每个设备中,定义了多个桥接域,每个网桥域由虚拟局域网(VLAN)标识符(VID)和一个或多个设备端口来标识。 对于每个端口,建立基于端口定义的桥接域的VID到多生成树实例(MSTI)的单独映射。 每个映射被转换为基于端口的配置摘要,它被输入到从相应端口发送的生成树协议(STP)控制消息。 接收STP控制消息的端口的配置摘要值与配置摘要值计算的端口称为处于相同的“多生成树”区域。 其配置摘要与接收的STP控制消息的配置摘要不同的端口据说在不同的区域。
    • 10. 发明授权
    • Transient loop prevention in a hybrid layer-2 network
    • 混合层2网络中的瞬态环路预防
    • US08811168B2
    • 2014-08-19
    • US13291638
    • 2011-11-08
    • Saurabh JainTameen KhanSanjay SaneRonak Desai
    • Saurabh JainTameen KhanSanjay SaneRonak Desai
    • H04J1/16H04L12/56
    • H04L45/18H04L45/04H04L45/66H04L49/351
    • In one embodiment, a first switch is located at a first border between first networks that utilize a STP to detect and break loops and second networks. The first switch is interconnected via the first networks with a second switch located at a second border between the first networks and the second networks. The first switch detects, via a protocol other than STP, addition of a link in the second networks that provides a new path across the second networks between the first switch and the second switch. The first switch blocks data packets from traversing through one or more network boundary ports of the first switch coupled to the first networks, while allowing STP BPDUs to traverse through the one or more network boundary ports, for a period of time sufficient for the first networks to discover the new path using STP.
    • 在一个实施例中,第一交换机位于利用STP检测和中断环路和第二网络的第一网络之间的第一边界。 第一交换机经由第一网络与位于第一网络和第二网络之间的第二边界处的第二交换机相互连接。 第一交换机通过除了STP之外的协议来检测在第二网络中添加链路,以在第一交换机和第二交换机之间跨越第二网络提供新的路径。 第一交换机阻止数据分组穿过耦合到第一网络的第一交换机的一个或多个网络边界端口,同时允许STP BPDU跨越一个或多个网络边界端口遍历足够于第一网络的时间段 发现使用STP的新路径。