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    • 4. 发明授权
    • Maintaining client affinity in network load balancing systems
    • 在网络负载平衡系统中维护客户端关系
    • US08046467B2
    • 2011-10-25
    • US12201254
    • 2008-08-29
    • Vladimir PetterSiddhartha SenAndrea D'AmatoJimmy C. Yu
    • Vladimir PetterSiddhartha SenAndrea D'AmatoJimmy C. Yu
    • G06F15/173G06F15/16G06F9/46
    • G06F9/5061G06F2209/505H04L67/1002H04L67/1027H04L67/1029H04L67/1031
    • Described is a technology in a network load balancing system (node cluster), by which client affinity is preserved across cluster configuration changes, including for new connections from a previous client. Each node maintains a list of the clients that are to remain (have affinity, or “stickiness”) with that node, including following bucket redistribution resulting from convergence. Each affinity list is communicated during convergence so that other nodes may build an exception list or lists. Via a node's exception list, the node that owns a bucket corresponding to a client knows of the affinity with another node and thus drops any packets from that client. Affinity may expire, whereby the node having affinity with that client releases it and notifies the node owning the bucket for that client that the client is no longer to be treated as an exception.
    • 描述了网络负载平衡系统(节点集群)中的技术,通过该技术,可以跨集群配置更改保留客户端关联,包括来自以前客户端的新连接。 每个节点维护与该节点保持(具有亲和性或“粘性”)的客户端的列表,包括从收敛引起的后续重新分配。 每个关联列表在收敛时进行通信,以便其他节点可以构建一个例外列表或列表。 通过节点的异常列表,拥有与客户端相对应的桶的节点知道与另一个节点的亲和性,从而丢弃该客户端的任何数据包。 亲和度可能会过期,由此与该客户端具有亲和力的节点将释放它,并通知拥有该客户端的存储区的客户端不再将该客户端视为异常。
    • 5. 发明授权
    • Synchronizing state among load balancer components
    • 负载均衡器组件之间的同步状态
    • US08755283B2
    • 2014-06-17
    • US12972340
    • 2010-12-17
    • Parveen PatelVolodymyr IvanovMarios ZikosVladimir PetterVyacheslav KuznetsovDavid Allen Dion
    • Parveen PatelVolodymyr IvanovMarios ZikosVladimir PetterVyacheslav KuznetsovDavid Allen Dion
    • H04L12/407
    • H04L47/125H04L43/0876H04L45/22H04L47/11
    • The present invention extends to methods, systems, and computer program products for synchronizing state among load balancer components. Embodiments of the invention include load balancers using a consistent hashing algorithm to decide how new connections should be load balanced. Use of consistent hashing algorithm permits load balancers to work in a stateless manner in steady state. Load balancers start keeping flow state information (destination address for a given flow) about incoming packets when it is needed, i.e. such as, for example, when a change in destination host configuration is detected. State information is shared across load balancers in a deterministic way, which allows knowing which load balancer is authoritative (e.g., is the owner) for a given flow. Each load balancer can reach the authoritative load balancer to learn about a flow that cannot be determined locally.
    • 本发明扩展到用于在负载均衡器组件之间同步状态的方法,系统和计算机程序产品。 本发明的实施例包括使用一致的散列算法来确定新连接应如何负载平衡的负载平衡器。 使用一致的散列算法可以使负载平衡器以稳定的状态工作。 负载平衡器在需要时开始保存关于输入分组的流状态信息(给定流的目的地地址),例如当检测到目的主机配置的改变时。 状态信息以确定性的方式在负载平衡器之间共享,这允许了解哪个负载均衡器对于给定流量是权威的(例如,是所有者)。 每个负载均衡器可以到达权威负载平衡器,以了解当地无法确定的流量。
    • 7. 发明授权
    • Volumes and file system in cluster shared volumes
    • 集群共享卷中的卷和文件系统
    • US08463762B2
    • 2013-06-11
    • US12971322
    • 2010-12-17
    • Vladimir PetterVinod R. ShankarAndrea D'AmatoRajsekhar Das
    • Vladimir PetterVinod R. ShankarAndrea D'AmatoRajsekhar Das
    • G06F17/00
    • G06F17/30115
    • The present invention extends to methods, systems, and computer program products for sharing volumes between clustered nodes. Embodiments of the invention include a Clustered Shared Volume File System (CsvFs) that appears to clients as a local file system. The CsvFs communicates to a node where a disk is mounted to coordinate access to files on the disks. CsvFs uses Opportunistic Locks (oplocks) to decide when direct access to a volume is safe. CsvFs can be extended with oplock upgrade mechanisms that allow a coordinating node to tell CsvFs when it is safe to attempt to upgrade oplock. CsvFs also uses a transitivity property of oplocks to be able to grant (delegate) oplocks to clients that are on top of CsvFs.
    • 本发明扩展到用于在集群节点之间共享卷的方法,系统和计算机程序产品。 本发明的实施例包括作为本地文件系统向客户端显示的群集共享卷文件系统(CsvF)。 CsvF与安装磁盘的节点通信,以协调对磁盘上文件的访问。 CsvFs使用机会锁(oplocks)来决定直接访问卷是否安全。 可以使用oplock升级机制来扩展CsvF,允许协调节点在尝试升级oplock时安全地告诉CsvF。 CsvFs还使用oplock的传递性属性能够向位于CsvF之上的客户端授予(委托)oplock。
    • 9. 发明授权
    • Application sharing
    • 应用程序共享
    • US08407605B2
    • 2013-03-26
    • US12418270
    • 2009-04-03
    • Alex Say GoVladimir Petter
    • Alex Say GoVladimir Petter
    • G06F3/00G06F3/048G06F15/16
    • G06F3/04815G06F3/0481G06F3/1454G06F9/451G06F2209/545G09G5/14H04L12/1813H04L67/38
    • Ones of the windows associated with a software process are identified in a screen layout on a local display of a sharer network node. On the sharer network node, an image of the identified windows as they are arranged in the screen layout and free of obscuration by any other windows in the screen layout is generated. The image is transmitted from the sharer network node to a viewer network node. Also, commands derived from input device events on sharer and viewer network nodes are received. The received commands are processed into a command sequence, which is passed to a shared process executing on the sharer network node. Windows associated with the shared process are presented on the sharer network node in accordance with the received command sequence. An image of the presented windows is generated and transmitted from the sharer network node to the viewer network node.
    • 与软件过程相关联的窗口的一部分在共享网络节点的本地显示器上的屏幕布局中被识别。 在共享网络节点上,生成在屏幕布局中布置并被屏幕布局中的任何其他窗口遮蔽的识别窗口的图像。 图像从共享网络节点传输到观众网络节点。 此外,接收从共享者和查看器网络节点上的输入设备事件导出的命令。 接收到的命令被处理成一个命令序列,该序列被传递给在共享网络节点上执行的共享进程。 与共享进程相关联的Windows根据接收到的命令序列在共享者网络节点上呈现。 所生成的窗口的图像被生成并从共享者网络节点发送到观众网络节点。