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    • 3. 发明授权
    • Seamlessly switching overlay network relay trees
    • 无缝切换覆盖网络中继树
    • US07839798B2
    • 2010-11-23
    • US11766958
    • 2007-06-22
    • Jian TangChong LuoJiang Li
    • Jian TangChong LuoJiang Li
    • H04L12/28
    • H04L67/104H04L45/16H04L45/42H04L45/64H04L65/80H04L67/1089
    • Technologies for switching a set of nodes in an overlay network from one relay tree configuration to another without duplicate packets or packet loss at any of the nodes. A commander node calculates a new relay tree as well as a media stream set configuration for each node in the overlay network, each media stream set corresponding to the new relay tree. Media stream sets include a unique version number or the like that identifies the specific relay tree configuration of which they are a part. Also provided are technologies for associating a media stream with a particular relay tree configuration and the corresponding media stream set of each node in the overlay network.
    • 用于将覆盖网络中的一组节点从一个中继树配置切换到另一个不具有任何节点处的重复分组或分组丢失的技术。 指挥员节点为覆盖网络中的每个节点计算新的中继树以及媒体流集合配置,每个媒体流集合对应于新的中继树。 媒体流集合包括识别它们是其一部分的特定中继树配置的唯一版本号等。 还提供了用于将媒体流与特定中继树配置和覆盖网络中的每个节点的相应媒体流集合相关联的技术。
    • 10. 发明申请
    • PARALLEL PROCESSING OF PLATFORM LEVEL CHANGES DURING SYSTEM QUIESCE
    • 系统测试期间平台水平变化的并行处理
    • US20090077553A1
    • 2009-03-19
    • US11854953
    • 2007-09-13
    • Jian TangYufu Li
    • Jian TangYufu Li
    • G06F9/46
    • G06F9/44505G06F8/656G06F9/4405
    • Various embodiments described herein provide one or more of systems, methods, and software/firmware that provide increased efficiency in implementing configuration changes during system quiesce time. Some embodiments may separate a quiesce data buffer into small slices wherein each slice includes configuration change data or instructions. These slices may be individually distributed by a system bootstrap processor, or other processor, to other processors or logical processors of a multi-core processor in the system. In some such embodiments, the system bootstrap processor and application processors may change system configuration in parallel while a system is in a quiesce state so as to minimize time spent in the quiesce state. Furthermore, typical system configuration change become local operations, such as local hardware register modifications, which suffer much less transaction delay than remote hardware register accesses as has been previously performed. These embodiments, and others, are described in greater detail herein.
    • 本文描述的各种实施例提供系统,方法和软件/固件中的一个或多个,其在系统静止时间期间提供更高的效率来实现配置改变。 一些实施例可以将静默数据缓冲区分成小片,其中每个片包括配置改变数据或指令。 这些切片可以由系统引导处理器或其他处理器单独分配到系统中的多核处理器的其他处理器或逻辑处理器。 在一些这样的实施例中,系统引导处理器和应用处理器可以在系统处于静止状态时并行地改变系统配置,以便最小化在静止状态下花费的时间。 此外,典型的系统配置更改成为本地操作,例如本地硬件寄存器修改,其比之前执行的远程硬件寄存器访问的事务延迟要少得多。 这些实施例和其他实施例在此更详细地描述。