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    • 61. 发明授权
    • Method for power capping with co-operative dynamic voltage and frequency scaling via shared p-state table
    • 通过共同p状态表,通过合作动态电压和频率缩放功率封顶的方法
    • US08001402B2
    • 2011-08-16
    • US11950543
    • 2007-12-05
    • Vivek KashyapCharles R LefurgyDipankar Sarma
    • Vivek KashyapCharles R LefurgyDipankar Sarma
    • G06F1/32
    • G06F1/3203Y02D10/126
    • A co-operative mechanism in which a service processor and a host CPU (with an as running thereupon) work together to implement both power capping and utilization-based power savings, and with negligible side effects. Preferably, a 2-level modulation scheme is employed to undertake both power capping and energy savings simultaneously. Preferably, a frequency governor in the as running on a host processor saves power by modulating p-states based on a shared table, thus avoiding SMIs. The range of the p- I states in the shared table is adjusted to implement power capping in conjunction with power sensors in the system. This adjustment can be done either by a service processor, which can monitor total energy consumption, or an as or software running on the host processor, which can read energy consumption from the service processor and adjust the shared table.
    • 一种合作机制,其中服务处理器和主机CPU(与其一起运行)一起工作以实现功率封顶和基于利用的功率节省,并且具有可忽略的副作用。 优选地,采用2电平调制方案同时进行功率封顶和节能。 优选地,在主处理器上运行的频率调节器通过基于共享表调制p状态来节省功率,从而避免了SMI。 调整共享表中p-I状态的范围,以便与系统中的功率传感器一起实现功率封顶。 该调整可以由可以监视总能量消耗的服务处理器或者主机处理器上运行的as或软件来完成,该处理器可以从服务处理器读取能量消耗并调整共享表。
    • 62. 发明申请
    • Pipeline Across Isolated Computing Environments
    • 跨越隔离计算环境的管道
    • US20110161988A1
    • 2011-06-30
    • US12647418
    • 2009-12-25
    • Vivek Kashyap
    • Vivek Kashyap
    • G06F3/00
    • G06F9/545G06F9/544
    • A method, system, and article to support sharing resources in a computer system. An operating system within the computer system, the operating system having a kernel level and a user level, with the kernel level configured with a first container and a second container. The first container is assigned to a first namespace and the second container is assigned to a second namespace. Both the first and second namespaces are isolated from each other and at the same time in communication with at least one shared object. Communication across the containers is created through a socket in the namespace of the shared object of one or both of the containers. In addition, a conduit is formed between the containers by connecting the container absent the created socket to the container with the socket.
    • 一种支持在计算机系统中共享资源的方法,系统和文章。 计算机系统内的操作系统,操作系统具有内核级别和用户级别,内核级配置有第一容器和第二容器。 第一个容器被分配到第一个命名空间,第二个容器被分配到第二个命名空间。 第一个和第二个命名空间彼此隔离,同时与至少一个共享对象进行通信。 跨容器的通信通过一个或两个容器的共享对象的命名空间中的套接字创建。 此外,通过将没有创建的插座的容器连接到具有插座的容器,在容器之间形成导管。
    • 63. 发明授权
    • Enhancement of end-to-end network QoS
    • 增强端到端网络QoS
    • US07936772B2
    • 2011-05-03
    • US11777888
    • 2007-07-13
    • Vivek Kashyap
    • Vivek Kashyap
    • H04L12/28
    • H04L47/2441H04L47/2408H04L49/90H04L49/901H04L49/9031H04L49/9063
    • A network endpoint system and related method and computer program product for use in a network to support enhanced end-to-end QoS in the network. The network endpoint system is adapted to receive network data of varying priority on behalf of a data consumer operating at the application layer of a network protocol stack implemented by the network endpoint system. The network endpoint system includes a network interface controller adapted to receive network frames containing the network data, plural network data handling channels each having an associated priority, and priority processing logic adapted to transfer the network data from the network interface controller to the plural data handling channels on a prioritized basis according to the network data priority. Also disclosed are a network interface controller and a network node to support enhanced end-to-end QoS in a network.
    • 网络端点系统及相关方法和计算机程序产品,用于网络中以支持网络中增强的端到端QoS。 网络端点系统适于代表在由网络端点系统实现的网络协议栈的应用层操作的数据客户端接收不同优先级的网络数据。 网络端点系统包括适于接收包含网络数据的网络帧的网络接口控制器,每个具有相关优先级的多个网络数据处理通道,以及适于将网络数据从网络接口控制器传送到多个数据处理的优先级处理逻辑 根据网络数据优先级,以优先级为基础的信道。 还公开了一种网络接口控制器和网络节点,以支持网络中增强的端到端QoS。
    • 66. 发明申请
    • Method, apparatus and program storage device for providing mutual failover and load-balancing between interfaces in a network
    • 用于在网络中的接口之间提供相互故障切换和负载平衡的方法,装置和程序存储设备
    • US20090073875A1
    • 2009-03-19
    • US12274450
    • 2008-11-20
    • Vivek Kashyap
    • Vivek Kashyap
    • G06F11/00
    • H04L47/10H04L45/586H04L47/125
    • A method, apparatus and program storage device for providing mutual failover and load-balancing between interfaces in a network is disclosed. An active virtual interface and a passive virtual interface are provided for each of a first and a second computer interface. The active virtual interface of the first computer interface is communicatively coupled with the passive virtual interface of the second interface. The active virtual interface of the second computer interface is communicatively coupled with the passive virtual interface of the first computer interface. Data flow is directed over each of the first computer interface-active virtual interface and second computer interface active virtual interface when the first and second computer interface is available, else data flow is directed to the active virtual interface and passive virtual interface of an available first or second interface.
    • 公开了一种用于在网络中的接口之间提供相互故障切换和负载均衡的方法,装置和程序存储设备。 为第一和第二计算机接口中的每一个提供主动虚拟接口和被动虚拟接口。 第一计算机接口的主动虚拟接口与第二接口的被动虚拟接口通信耦合。 第二计算机接口的活动虚拟接口与第一计算机接口的被动虚拟接口通信地耦合。 当第一和第二计算机接口可用时,数据流针对第一计算机接口主动虚拟接口和第二计算机接口主动虚拟接口的每一个,否则数据流被引导到可用的第一和第二计算机接口的主动虚拟接口和被动虚拟接口 或第二接口。
    • 67. 发明申请
    • ENHANCEMENT OF END-TO-END NETWORK QOS
    • 端到端网络QOS的增强
    • US20090016217A1
    • 2009-01-15
    • US11777888
    • 2007-07-13
    • Vivek Kashyap
    • Vivek Kashyap
    • H04L12/56
    • H04L47/2441H04L47/2408H04L49/90H04L49/901H04L49/9031H04L49/9063
    • A network endpoint system and related method and computer program product for use in a network to support enhanced end-to-end QoS in the network. The network endpoint system is adapted to receive network data of varying priority on behalf of a data consumer operating at the application layer of a network protocol stack implemented by the network endpoint system. The network endpoint system includes a network interface controller adapted to receive network frames containing the network data, plural network data handling channels each having an associated priority, and priority processing logic adapted to transfer the network data from the network interface controller to the plural data handling channels on a prioritized basis according to the network data priority. Also disclosed are a network interface controller and a network node to support enhanced end-to-end QoS in a network.
    • 网络端点系统及相关方法和计算机程序产品,用于网络中以支持网络中增强的端到端QoS。 网络端点系统适于代表在由网络端点系统实现的网络协议栈的应用层操作的数据客户端接收不同优先级的网络数据。 网络端点系统包括适于接收包含网络数据的网络帧的网络接口控制器,每个具有相关优先级的多个网络数据处理通道,以及适于将网络数据从网络接口控制器传送到多个数据处理的优先级处理逻辑 根据网络数据优先级,以优先级为基础的信道。 还公开了一种网络接口控制器和网络节点,以支持网络中增强的端到端QoS。
    • 68. 发明申请
    • Inbound connection prioritization
    • 入站连接优先级
    • US20070130367A1
    • 2007-06-07
    • US11219983
    • 2005-11-18
    • Vivek Kashyap
    • Vivek Kashyap
    • G06F15/16
    • H04L49/90H04L69/32
    • Multiple listening sockets are supported on a single local address port through use of a duplication flag. Each of the listening sockets has a logical queue. Upon creation of a listening socket, the socket is classified and assigned an identifier. As data packets are received, a manager is provided to map the data packets to one of the listening sockets based upon the assigned classification. Receipt of the data packet by an appropriately classified socket, results in the data packet being placed on the logical queue of the assigned listening socket.
    • 通过使用复制标志,在单个本地地址端口上支持多个监听套接字。 每个监听套接字都有一个逻辑队列。 创建一个侦听套接字后,套接字被分类并分配一个标识符。 当接收到数据分组时,提供管理器以根据所分配的分类将数据分组映射到其中一个收听套接字。 通过适当分类的套接字接收数据包,导致数据包放置在分配的监听套接字的逻辑队列上。