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    • 53. 发明授权
    • Method and system for virtual machine networking
    • 虚拟机网络的方法和系统
    • US08386642B2
    • 2013-02-26
    • US12714680
    • 2010-03-01
    • Uri Elzur
    • Uri Elzur
    • G06F15/173
    • G06F9/455H04L41/0213H04L41/0803H04L45/586H04L49/15H04L49/70Y02D30/30
    • Aspects of a method and system for networking are provided. In this regard, one or more circuits and/or processors in a network adapter of a first network device may determine whether to communicate traffic between virtual machines running on the first network device via a path that resides solely within the first network device, or via a path that comprises a second network device that is external to the first network device. The determination may be based, at least in part, on characteristics of the traffic. The determination may be based, at least in part, on capabilities and/or available resources of the network adapter. The determination may be based, at least in part, on management information exchanged between the one or more circuits and/or processors and one or more of: software running on the first network device, the second network device, and a third network device.
    • 提供了网络方法和系统的方面。 在这方面,第一网络设备的网络适配器中的一个或多个电路和/或处理器可以确定是否经由仅在第一网络设备内的路径,或者经由 包括在第一网络设备外部的第二网络设备的路径。 该决定可以至少部分地基于业务的特征。 该确定可以至少部分地基于网络适配器的能力和/或可用资源。 该确定可以至少部分地基于在一个或多个电路和/或处理器之间交换的管理信息以及在第一网络设备,第二网络设备和第三网络设备上运行的软件中的一个或多个。
    • 55. 发明授权
    • System and method for receive queue provisioning
    • 接收队列配置的系统和方法
    • US08031729B2
    • 2011-10-04
    • US12241917
    • 2008-09-30
    • Uri Elzur
    • Uri Elzur
    • H04L12/28
    • H04L49/9036H04L47/621H04L49/90H04L69/16H04L69/32
    • Systems and methods that provide receive queue provisioning are provided. In one embodiment, a communications system may include, for example, a first queue pair (QP), a second QP, a general pool and a resource manager. The first QP may be associated with a first connection and with at least one of a first limit value and an out-of-order threshold. The first QP may include, for example, a first send queue (SQ). The second QP may be associated with a second connection and with a second limit value. The second QP may include, for example, a second SQ. The general pool may include, for example, a shared receive queue (SRQ) that is shared by the first QP and the second QP. The resource manager may provide, for example, provisioning for the SRQ and may manage the first limit value and the second limit value.
    • 提供了提供接收队列配置的系统和方法。 在一个实施例中,通信系统可以包括例如第一队列对(QP),第二QP,普通池和资源管理器。 第一QP可以与第一连接相关联,并且与第一限制值和无序阈值中的至少一个相关联。 第一QP可以包括例如第一发送队列(SQ)。 第二QP可以与第二连接相关联并具有第二限制值。 第二QP可以包括例如第二SQ。 一般池可以包括例如由第一QP和第二QP共享的共享接收队列(SRQ)。 资源管理器可以提供例如为SRQ的供应,并且可以管理第一限制值和第二限制值。
    • 57. 发明申请
    • METHOD AND SYSTEM FOR HOLISTIC ENERGY MANAGEMENT IN ETHERNET NETWORKS
    • 以太网网络能源管理方法与系统
    • US20110176447A1
    • 2011-07-21
    • US13075077
    • 2011-03-29
    • Uri ElzurScott Powell
    • Uri ElzurScott Powell
    • H04L12/26
    • H04L12/12Y02D50/40Y02D50/42
    • Aspects of a method and system for holistic energy management in Ethernet networks are provided. In this regard, based on activity in one or more nodes in a network, power consumption in the network may be controlled via computational capabilities of node(s) in the network and/or via a data communication rate between nodes in the network. Activity in a network node may be determined based on deep packet inspection of traffic transmitted/received by the node, inspection of data exchanged between subsystems in the node, a state of an operating system running in the node, data processed or waiting to be processed in the node, information exchanged between an energy management entity in the node and an energy management entity in one or more other nodes, computing tasks delegated to the node, and/or instructions transmitted along with a computing task delegated to the node.
    • 提供了以太网中整体能源管理方法和系统的方面。 在这方面,基于网络中的一个或多个节点中的活动,可以通过网络中的节点的计算能力和/或经由网络中的节点之间的数据通信速率来控制网络中的功率消耗。 网络节点中的活动可以基于对节点发送/接收的业务的深度分组检查,对节点中的子系统之间交换的数据的检查,节点中运行的操作系统的状态,处理的数据或等待被处理来确定 在该节点中,节点中的能量管理实体与一个或多个其他节点中的能量管理实体之间交换的信息,委托给该节点的计算任务,和/或被委托给该节点的计算任务一起发送的指令。
    • 59. 发明授权
    • Method and system for holistic energy management in ethernet networks
    • 以太网网络整体能源管理方法与系统
    • US07916676B2
    • 2011-03-29
    • US12054189
    • 2008-03-24
    • Uri ElzurScott Powell
    • Uri ElzurScott Powell
    • G08C17/00
    • H04L12/12Y02D50/40Y02D50/42
    • Aspects of a method and system for holistic energy management in Ethernet networks are provided. In this regard, based on activity in one or more nodes in a network, power consumption in the network may be controlled via computational capabilities of node(s) in the network and/or via a data communication rate between nodes in the network. Activity in a network node may be determined based on deep packet inspection of traffic transmitted/received by the node, inspection of data exchanged between subsystems in the node, a state of an operating system running in the node, data processed or waiting to be processed in the node, information exchanged between an energy management entity in the node and an energy management entity in one or more other nodes, computing tasks delegated to the node, and/or instructions transmitted along with a computing task delegated to the node.
    • 提供了以太网中整体能源管理方法和系统的方面。 在这方面,基于网络中的一个或多个节点中的活动,可以通过网络中的节点的计算能力和/或经由网络中的节点之间的数据通信速率来控制网络中的功率消耗。 网络节点中的活动可以基于对节点发送/接收的业务的深度分组检查,对节点中的子系统之间交换的数据的检查,节点中运行的操作系统的状态,处理的数据或等待被处理来确定 在该节点中,在节点中的能量管理实体与一个或多个其他节点中的能量管理实体之间交换的信息,委托给该节点的计算任务,和/或被委派给该节点的计算任务一起发送的指令。
    • 60. 发明授权
    • System and method for handling out-of-order frames
    • 用于处理无序帧的系统和方法
    • US07912064B2
    • 2011-03-22
    • US12187783
    • 2008-08-07
    • Uri Elzur
    • Uri Elzur
    • H04L12/56
    • H04L69/16H04L12/2856H04L12/2898H04L12/4633H04L29/06H04L47/10H04L47/193H04L47/2441H04L47/27H04L47/32H04L47/34H04L49/90H04L49/9063H04L63/1458H04L69/10H04L69/12H04L69/161H04L69/162H04L69/163H04L69/166
    • A system for handling out-of-order frames may include one or more processors that enable receiving of an out-of-order frame via a network subsystem. The one or more processors may enable placing data of the out-of-order frame in a host memory, and managing information relating to one or more holes resulting from the out-of-order frame in a receive window. The one or more processors may enable setting a programmable limit with respect to a number of holes allowed in the receive window. The out-of-order frame is received via a TCP offload engine (TOE) of the network subsystem or a TCP-enabled Ethernet controller (TEEC) of the network subsystem. The network subsystem may not store the out-of-order frame on an onboard memory, and may not store one or more missing frames relating to the out-of-order frame. The network subsystem may include a network interface card (NIC).
    • 用于处理无序帧的系统可以包括能够经由网络子系统接收无序帧的一个或多个处理器。 一个或多个处理器可以使得将无序帧的数据放置在主机存储器中,并且在接收窗口中管理由无序帧产生的一个或多个孔的信息。 一个或多个处理器可以使得能够相对于在接收窗口中允许的多个孔设置可编程限制。 无序帧通过网络子系统的TCP卸载引擎(TOE)或网络子系统的TCP启用以太网控制器(TEEC)接收。 网络子系统可能不会将无序帧存储在板载存储器上,并且可能不存储与无序帧相关的一个或多个丢失帧。 网络子系统可以包括网络接口卡(NIC)。