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    • 2. 发明授权
    • Path maximum transmission unit determination
    • 路径最大传输单元确定
    • US07920481B2
    • 2011-04-05
    • US12192186
    • 2008-08-15
    • Robert L. WinterNarayanan Subramaniam
    • Robert L. WinterNarayanan Subramaniam
    • H04L12/26
    • H04L45/00H04L45/26H04L47/10H04L47/36H04L47/365
    • Disclosed are techniques for determining a path maximum transmission unit (MTU) of a communication path connecting two or more nodes of a network. A node initiates a connection with a remote node by repeatedly transmitting increasingly-larger path MTU discovery messages until the size of a path MTU discovery message exceeds the link MTU of a link within the communication path. This results in the generation and transmission of an MTU error message back to the initiating node. The edge router linked to the initiating node generates a MTU change message in response to receiving the MTU error message and multicasts the MTU change message to all local nodes to which it is linked. The MTU change message directs the receiving nodes to update their destination caches to reflect the path MTU discovered through the use of the increasing-size path MTU discovery messages and the resulting MTU error message.
    • 公开了用于确定连接网络的两个或多个节点的通信路径的路径最大传输单元(MTU)的技术。 节点通过重复发送越来越大的路径MTU发现消息来发起与远程节点的连接,直到路径MTU发现消息的大小超过通信路径内的链路的链路MTU。 这导致MTU错误消息的生成和传输回到发起节点。 链接到发起节点的边缘路由器响应于接收到MTU错误消息而生成MTU改变消息,并将MTU改变消息多播到与其链接的所有本地节点。 MTU更改消息指示接收节点更新其目的地高速缓存,以反映通过使用增加大小的路径MTU发现消息和由此产生的MTU错误消息发现的路径MTU。
    • 3. 发明申请
    • PATH MAXIMUM TRANSMISSION UNIT DETERMINATION
    • 路径最大传输单元确定
    • US20090316574A1
    • 2009-12-24
    • US12192186
    • 2008-08-15
    • Robert L. WinterNarayanan Subramaniam
    • Robert L. WinterNarayanan Subramaniam
    • H04L12/24H04L12/56
    • H04L45/00H04L45/26H04L47/10H04L47/36H04L47/365
    • Disclosed are techniques for determining a path maximum transmission unit (MTU) of a communication path connecting two or more nodes of a network. A node initiates a connection with a remote node by repeatedly transmitting increasingly-larger path MTU discovery messages until the size of a path MTU discovery message exceeds the link MTU of a link within the communication path. This results in the generation and transmission of an MTU error message back to the initiating node. The edge router linked to the initiating node generates a MTU change message in response to receiving the MTU error message and multicasts the MTU change message to all local nodes to which it is linked. The MTU change message directs the receiving nodes to update their destination caches to reflect the path MTU discovered through the use of the increasing-size path MTU discovery messages and the resulting MTU error message.
    • 公开了用于确定连接网络的两个或多个节点的通信路径的路径最大传输单元(MTU)的技术。 节点通过重复发送越来越大的路径MTU发现消息来发起与远程节点的连接,直到路径MTU发现消息的大小超过通信路径内的链路的链路MTU。 这导致MTU错误消息的生成和传输回到发起节点。 链接到发起节点的边缘路由器响应于接收到MTU错误消息而生成MTU改变消息,并将MTU改变消息多播到与其链接的所有本地节点。 MTU更改消息指示接收节点更新其目的地高速缓存,以反映通过使用增加大小的路径MTU发现消息和由此产生的MTU错误消息发现的路径MTU。
    • 4. 发明授权
    • Method, apparatus and system for automatic loading of a network stack
    • 用于自动加载网络堆栈的方法,装置和系统
    • US08413173B2
    • 2013-04-02
    • US11970516
    • 2008-01-07
    • Robert L. WinterNarayanan Subramaniam
    • Robert L. WinterNarayanan Subramaniam
    • G06F9/44
    • G06F9/4411
    • The disclosure provides a method and system for loading a first and second Internet Protocol network communication stacks in an information handling system (IHS). The method and system include loading the first Internet Protocol network communication stack and creating and registering a module management kernel thread to automatically load the second Internet Protocol network stack only when called upon. The kernel thread registers with the IHS′ kernel socket layer and Ethernet driver to receive notice of calls corresponding to the second Internet Protocol network communication stack. Upon receiving notice, the kernel thread loads the second Internet Protocol network communication stack and subsequently deregisters from the IHS′ kernel socket layer and Ethernet driver.
    • 本公开提供了一种用于在信息处理系统(IHS)中加载第一和第二互联网协议网络通信栈的方法和系统。 该方法和系统包括加载第一互联网协议网络通信栈,并创建和注册模块管理内核线程,以便仅在被请求时自动加载第二个Internet协议网络堆栈。 内核线程与IHS的内核套接字层和以太网驱动程序注册,以接收对应于第二个Internet协议网络通信栈的呼叫通知。 在收到通知后,内核线程加载第二个Internet协议网络通信堆栈,随后从IHS的内核套接字层和以太网驱动程序中注销。
    • 9. 发明申请
    • System and Method of Enabling a Multi-Chassis Virtual Switch for Virtual Server Network Provisioning
    • 启用虚拟服务器网络配置的多机箱虚拟交换机的系统和方法
    • US20130173810A1
    • 2013-07-04
    • US13340816
    • 2011-12-30
    • Narayanan Subramaniam
    • Narayanan Subramaniam
    • G06F15/16
    • H04L49/70G06F15/161
    • A multi-chassis server system has several chassis, each including a chassis management controller (CMC) and a blade server with a blade management controller (BMC) and a virtual switch (VS). The first CMC establishes management sessions with the second CMC and the first BMC. The second CMC establishes a management session with the second BMC. A switch path on a virtual switch is provided via a management session to the first CMC and another switch path on another virtual switch is provided via a management session to the second chassis management controller and by another management session to the first CMC. The switch paths are aggregated into a chassis management controller virtual switch on the first chassis management controller.
    • 多机箱服务器系统具有多个机箱,每个机箱包括机箱管理控制器(CMC)和具有刀片管理控制器(BMC)和虚拟交换机(VS)的刀片服务器。 第一个CMC与第二个CMC和第一个BMC建立管理会话。 第二个CMC与第二个BMC建立管理会议。 虚拟交换机上的切换路径经由管理会话提供给第一CMC,并且另一虚拟交换机上的另一交换机路径经由管理会话提供给第二机箱管理控制器,并由另一管理会话提供给第一CMC。 交换机路径被聚合到第一机箱管理控制器上的机箱管理控制器虚拟交换机。