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    • 1. 发明授权
    • Universal network interface controller
    • 通用网络接口控制器
    • US09042383B2
    • 2015-05-26
    • US13173189
    • 2011-06-30
    • Ariel HendelMartin LundNicholas Ilyadis
    • Ariel HendelMartin LundNicholas Ilyadis
    • H04L12/66H04L12/931
    • 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。
    • 2. 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。
    • 5. 发明授权
    • Method and system for implementing energy efficient ethernet techniques in a MACSec enabled PHY
    • 在启用MACSec的PHY中实现节能以太网技术的方法和系统
    • US08995289B2
    • 2015-03-31
    • US12482194
    • 2009-06-10
    • Wael William DiabNicholas Ilyadis
    • Wael William DiabNicholas Ilyadis
    • G01R31/08H04J1/16H04L1/00H04L12/26G06F15/173G06F1/00H04L29/06H04L12/10
    • H04L63/16H04L12/10
    • Aspects of a method and system for implementing energy efficient Ethernet techniques in a MACSec enabled PHY are provided. In this regard, an Ethernet PHY comprising memory may be operable to perform packet processing functions comprising MACSec protocol processing and energy efficient Ethernet (EEE) processing. In this regard, the memory may be utilized for implementing the MACSec protocol processing and energy efficient Ethernet (EEE) processing. The Ethernet packet processing functions may comprise packet inspection, packet generation, and packet modification. The energy efficient Ethernet (EEE) processing may comprise generating and/or inspecting messages for controlling when to transition into and out-of an energy-saving mode. The Ethernet PHY may be operable to monitor signals and/or conditions within the Ethernet PHY and control transitions into and out-of an energy-saving mode based on the monitored signals and/or conditions. The energy saving mode may comprise a low power idle mode and/or a subset PHY mode.
    • 提供了一种用于在启用MACSec的PHY中实现高能效以太网技术的方法和系统的方面。 在这方面,包括存储器的以太网PHY可以用于执行包括MACSec协议处理和能效以太网(EEE)处理的分组处理功能。 在这方面,存储器可以用于实现MACSec协议处理和能效以太网(EEE)处理。 以太网分组处理功能可以包括分组检查,分组生成和分组修改。 能效以太网(EEE)处理可以包括生成和/或检查用于控制何时转换到节能模式和从节能模式转移的消息。 以太网PHY可以用于监视以太网PHY中的信号和/或条件,并且基于所监视的信号和/或条件来控制转换到和超出节能模式。 节能模式可以包括低功率空闲模式和/或子集PHY模式。
    • 10. 发明申请
    • System, device, and method for address management in a distributed communication environment
    • US20050190754A1
    • 2005-09-01
    • US10606847
    • 2003-06-26
    • Sandeep GolikeriDa-Hai DingNicholas IlyadisTimothy CunninghamManish Patel
    • Sandeep GolikeriDa-Hai DingNicholas IlyadisTimothy CunninghamManish Patel
    • H04L12/56H04L29/12H04Q11/00
    • H04L29/12047H04L29/12009H04L45/742H04L49/351H04L61/15
    • A distributed address database management technique involves maintaining an address database by each of a number of interconnected modules. Each module maintains a number of locally owned address entries and a number of remotely owned address entries in the address database. Each module monitors the status of its locally owned address entries, maintains the locally owned address entries based upon the status, and provides the status to the other interconnected modules. Each module maintains the remotely owned address entries based upon the status received from the other interconnected modules. When a module adds a locally owned address entry to its address database, the module notifies the other interconnected modules, which in turn add a corresponding remotely owned address entry to their respective address databases. When a module purges a locally owned address entry from its address database, the module notifies the other interconnected modules, which in turn purge the corresponding remotely owned address entries from their respective address databases. Each module may periodically send a keep-alive message including a list of active addresses to the other interconnected modules, which maintain a persistence timer for each of the remotely owned address entries and purge a particular remotely owned address entry if the corresponding persistence timer expires before receiving a keep-alive message identifying the remotely owned address entry as an active remotely owned address entry. Upon receiving a keep-alive message, a module adds a remotely owned address entry for a particular address to its address database if such a remotely owned address entry is not already maintained in the address database. A module purges all remotely owned address entries from its address database if the module is reconfigured to operate in a stand-alone mode. A module purges all remotely owned address entries associated with a particular interconnected module if that particular interconnected module is removed.