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    • 21. 发明授权
    • Method and system for power control based on application awareness in a packet network switch
    • 基于分组网络交换机应用意识的功率控制方法和系统
    • US08437352B2
    • 2013-05-07
    • US11442928
    • 2006-05-30
    • Martin Lund
    • Martin Lund
    • H04L12/28H04W24/00H04W4/00
    • H04L47/12H04L43/0894H04L43/16H04L45/04H04L45/745H04L47/10H04L47/2441H04L49/256H04L49/35
    • Certain aspects of a method and system for a power control based on application awareness in a packet network switch are provided. Data communication flow may be monitored in ports in a packet network switch based on packet classification. Ports where data flow is not detected may have at least some functionality disabled to reduce power consumption. In this regard, a power saving mode may be utilized for disabling at least some functionality in a switch port, such as Ethernet ports, for example. A partially disabled port may be fully enabled when monitoring detects active data communication flow in that port. Port functionality may be enabled or disabled sequentially, for example. In some instances, a physical layer portion of the packet network switch may be utilized to adjust power in a port based on the data communication flow.
    • 提供了基于分组网络交换机中的应用意识的用于功率控制的方法和系统的某些方面。 可以基于分组分类在分组网络交换机的端口中监视数据通信流。 未检测到数据流的端口可能至少禁用某些功能以降低功耗。 在这方面,例如,可以利用省电模式来禁用交换机端口中的至少一些功能,例如以太网端口。 当监视检测到该端口中的活动数据通信流时,可以完全启用部分禁用的端口。 例如,可以顺序地启用或禁用端口功能。 在一些情况下,分组网络交换机的物理层部分可以用于基于数据通信流来调整端口中的功率。
    • 23. 发明授权
    • System and method for communicating between servers using a multi-server platform
    • 使用多服务器平台在服务器之间进行通信的系统和方法
    • US07966422B2
    • 2011-06-21
    • US10648004
    • 2003-08-26
    • Martin Lund
    • Martin Lund
    • G06F15/16G06F15/173
    • H04L45/00H04L69/40
    • Aspects of the invention may include receiving a packet from a first of a plurality of blade servers coupled via a common bus. An identifier associated with a second blade server may be determined based on at least a portion of the received packet and at least a portion of the received packet may be routed to at least the second blade server. At least a portion of the received packet may be transferred to at least the second blade server via the common bus. Routing of at least a portion of the received packet may be controlled by a switch blade which may also be coupled to the common bus. In order to route information in the server, an identifier of the first blade server, the second blade server and the switch blade may be determined. Exemplary identifiers may be a MAC address and/or an IP address.
    • 本发明的方面可以包括从经由公共总线耦合的多个刀片服务器中的第一个接收分组。 可以基于所接收的分组的至少一部分来确定与第二刀片服务器相关联的标识符,并且所接收的分组的至少一部分可以被路由到至少第二刀片服务器。 所接收的分组的至少一部分可以经由公共总线传送到至少第二刀片服务器。 接收到的分组的至少一部分的路由可以由也可以耦合到公共总线的开关刀片来控制。 为了在服务器中路由信息,可以确定第一刀片服务器,第二刀片服务器和切换刀片的标识符。 示例性标识符可以是MAC地址和/或IP地址。
    • 24. 发明授权
    • Method and system for providing synchronous running encoding and encryption
    • 提供同步运行编码和加密的方法和系统
    • US07730296B2
    • 2010-06-01
    • US10454011
    • 2003-06-04
    • Martin Lund
    • Martin Lund
    • H04L9/00H04L9/32G06F11/30G06F12/14
    • H04L9/12H04L9/00H04L25/14H04L25/4908
    • Aspects of the invention provide a method and system for coding information in a communication channel. More particularly, aspects of the invention provide an method and system for synchronous running encryption and/or encoding and corresponding decryption and decoding in a communication channel or link. Aspects of the method may include encoding and/or encrypting a first data using a first or second encoding table and/or a first or second encryption table. The method may indicate which one of the first or second encoding tables or which one of the first or second encryption tables were utilized for encoding and/or encrypting the said first data. The encoded and/or encrypted first data may subsequently be transferred downstream and decoded by synchronous decoder/decryptor using a corresponding decoding and/or decryption table. The corresponding decoding and/or decryption table may be determined based on the indicated first and/or second encoding and/or encrypting tables.
    • 本发明的方面提供了一种在通信信道中对信息进行编码的方法和系统。 更具体地,本发明的方面提供了用于在通信信道或链路中同步运行加密和/或编码以及对应的解密和解码的方法和系统。 方法的方面可以包括使用第一或第二编码表和/或第一或第二加密表来对第一数据进行编码和/或加密。 该方法可以指示第一或第二编码表中的哪个或第一或第二加密表中的哪一个被用于对所述第一数据进行编码和/或加密。 编码和/或加密的第一数据随后可以被下行传送并且由同步解码器/解密器使用对应的解码和/或解密表进行解码。 可以基于所指示的第一和/或第二编码和/或加密表来确定相应的解码和/或解密表。
    • 25. 发明申请
    • SYSTEM AND METHOD FOR COMMUNICATING USING A MULTISERVER PLATFORM
    • 使用多平台平台进行通信的系统和方法
    • US20090201927A1
    • 2009-08-13
    • US12423333
    • 2009-04-14
    • Martin LundGregory Young
    • Martin LundGregory Young
    • H04L12/56
    • H04L45/00H04L69/40
    • Aspects of the invention include receiving a first packet from a first of a plurality of blade servers at a first data rate and determining a second blade server that may receive the first packet. Data responsive to the received first packet may be transferred to the second blade server at a negotiated first data rate. A second packet comprising at least a portion of the first received packet may be transferred to the second blade server at the negotiated data rate. At least a portion of the first received packet may be transferred to at least the second blade server via a common bus. In another aspect of the invention, at least a third packet may be received from a network at a second data rate. Data responsive to the third packet may be transferred to at least a third blade server at a newly negotiated data rate.
    • 本发明的方面包括以第一数据速率从多个刀片服务器中的第一个服务器接收第一分组,并确定可以接收第一分组的第二刀片服务器。 响应于接收到的第一分组的数据可以以协商的第一数据速率传送到第二刀片服务器。 包括第一接收分组的至少一部分的第二分组可以以协商的数据速率传送到第二刀片服务器。 第一接收分组的至少一部分可以经由公共总线传送到至少第二刀片服务器。 在本发明的另一方面,可以以第二数据速率从网络接收至少第三分组。 响应于第三分组的数据可以以新协商的数据速率被传送到至少第三刀片服务器。
    • 26. 发明授权
    • System and method for communicating using a multiserver platform
    • 使用多服务器平台进行通信的系统和方法
    • US07519057B2
    • 2009-04-14
    • US10647962
    • 2003-08-26
    • Martin LundGregory Young
    • Martin LundGregory Young
    • H04L12/28G06F15/16G06F3/00
    • H04L45/00H04L69/40
    • Aspects of the invention include receiving a first packet from a first of a plurality of blade servers at a first data rate and determining a second blade server that may receive the first packet. Data responsive to the received first packet may be transferred to the second blade server at a negotiated first data rate. A second packet comprising at least a portion of the first received packet may be transferred to the second blade server at the negotiated data rate. At least a portion of the first received packet may be transferred to at least the second blade server via a common bus. In another aspect of the invention, at least a third packet may be received from a network at a second data rate. Data responsive to the third packet may be transferred to at least a third blade server at a newly negotiated data rate.
    • 本发明的方面包括以第一数据速率从多个刀片服务器中的第一个服务器接收第一分组,并确定可以接收第一分组的第二刀片服务器。 响应于接收到的第一分组的数据可以以协商的第一数据速率传送到第二刀片服务器。 包括第一接收分组的至少一部分的第二分组可以以协商的数据速率传送到第二刀片服务器。 第一接收分组的至少一部分可以经由公共总线传送到至少第二刀片服务器。 在本发明的另一方面,可以以第二数据速率从网络接收至少第三分组。 响应于第三分组的数据可以以新协商的数据速率被传送到至少第三刀片服务器。
    • 27. 发明申请
    • Method and system for adaptive queue and buffer control based on monitoring and active congestion avoidance in a packet network switch
    • 基于分组网络交换机监控和主动拥塞避免的自适应队列和缓冲区控制方法和系统
    • US20070280111A1
    • 2007-12-06
    • US11443382
    • 2006-05-30
    • Martin Lund
    • Martin Lund
    • H04J1/16
    • H04L69/16H04L47/10H04L47/12H04L47/27H04L47/30H04L49/3027H04L49/3036H04L49/503H04L69/163
    • Certain aspects of a method and system for an adaptive queue and buffer control based on monitoring and active congestion avoidance in a packet network switch are provided. When memory from a memory source is not available for allocation to one or more adaptive queues in a network device, such as a network switch, the TCP window size associated with the one ore more adaptive queues may be reduced. The window size may be reduced to a target size by utilizing one or more reduction steps, wherein the reduction steps may be programmable. When portions of the memory source become available for allocation to the adaptive queues, the window size may be increased. The window size may be increased to a target size by utilizing one or more increase steps, wherein the increase steps may be programmable.
    • 提供了一种基于分组网络交换机中的监控和主动拥塞避免的自适应队列和缓冲区控制的方法和系统的某些方面。 当来自存储器源的存储器不可用于分配到诸如网络交换机的网络设备中的一个或多个自适应队列时,可以减少与一个或多个自适应队列相关联的TCP窗口大小。 可以通过利用一个或多个减小步骤将窗口尺寸减小到目标尺寸,其中所述还原步骤可以是可编程的。 当存储器源的部分变得可用于分配给自适应队列时,窗口大小可以增加。 可以通过利用一个或多个增加步骤将窗口尺寸增加到目标尺寸,其中增加步骤可以是可编程的。
    • 29. 发明申请
    • Universal Network Interface Controller
    • 通用网络接口控制器
    • US20130003725A1
    • 2013-01-03
    • US13173189
    • 2011-06-30
    • Ariel HendelMARTIN LUNDNicholas Ilyadis
    • Ariel HendelMARTIN LUNDNicholas Ilyadis
    • H04L12/66
    • H04L49/358H04L49/505
    • A universal network interface controller (UNIC) is provided for interfacing a host computer to a switch fabric, a packet network, or both. The UNIC includes ingress transmit logic designed to transmit switch fabric data in memory associated with the host computer to a switch fabric. The UNIC further includes egress receive logic designed to receive switch fabric data from the switch fabric to store the received switch fabric data in the host memory associated with the host computer. As an option, the ingress transmit logic may be further designed to transmit packet network data in memory associated with the host computer to a packet network, such as Ethernet, and the egress receive logic may be further designed to receive the packet network data from the packet network and to store the received switch fabric data and the received packet network data in the host memory associated with the host computer.
    • 提供通用网络接口控制器(UNIC),用于将主机与交换结构,分组网络或两者接口。 UNIC包括入口传输逻辑,用于将与主计算机相关联的存储器中的交换结构数据传送到交换结构。 UNIC还包括出口接收逻辑,用于从交换结构接收交换结构数据,以将接收的交换结构数据存储在与主计算机相关联的主机存储器中。 作为选择,入口传输逻辑可以进一步被设计为将与主计算机相关联的存储器中的分组网络数据传送到诸如以太网的分组网络,并且出口接收逻辑可以被进一步设计为从 并将接收到的交换结构数据和接收到的分组网络数据存储在与主计算机相关联的主机存储器中。