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    • 3. 发明授权
    • Determining recovery time for interdependent resources in heterogeneous computing environment
    • 确定异构计算环境中相互依赖资源的恢复时间
    • US08037341B2
    • 2011-10-11
    • US12344893
    • 2008-12-29
    • Thomas LumppDavid B. PetersenWolfgang SchaeberleJuergen SchneiderIsabell Schwertle
    • Thomas LumppDavid B. PetersenWolfgang SchaeberleJuergen SchneiderIsabell Schwertle
    • G06F11/00
    • G06F11/2028
    • A system and associated method for determining a recovery time for a resource in a heterogeneous computing environment comprising interdependent resources. A graph for the resource representing all sequence dependencies and all group relations are created. The recovery time may be a cumulative startup time or a cumulative shutdown time of the resource considering interdependencies of the resource to other resources. The recovery time for all support resources having sequence dependencies with the resource is calculated and each node representing the support resources are removed from the graph. Then the recovery time for all member resources left in the graph that have group relations with the resource is calculated per a group type of the resource. The recovery time for the resource is a sum of the recovery time of all support resources, the recovery time of all member resources, and a unit recovery time of the resource.
    • 一种用于确定包含相互依赖资源的异构计算环境中的资源的恢复时间的系统和相关联的方法。 创建表示所有序列依赖关系和所有组关系的资源图。 考虑资源与其他资源的相互依赖关系,恢复时间可能是资源的累积启动时间或累积关闭时间。 计算与资源具有序列依赖关系的所有支持资源的恢复时间,并从图中删除表示支持资源的每个节点。 然后,根据资源的组类型计算图中留下与资源具有组关系的所有成员资源的恢复时间。 资源的恢复时间是所有支持资源的恢复时间,所有成员资源的恢复时间和资源的单元恢复时间之和。
    • 6. 发明申请
    • MAINTAINING MIRROR AND STORAGE SYSTEM COPIES OF VOLUMES AT MULTIPLE REMOTE SITES
    • 在多个远程站点维护卷筒和存储系统复印件
    • US20120079224A1
    • 2012-03-29
    • US12894044
    • 2010-09-29
    • Nicolas Mare ClaytonRobert Frederic KernDavid B. PetersenDavid Michael ShackelfordGail Andrea SpearJohn Glenn Thompson
    • Nicolas Mare ClaytonRobert Frederic KernDavid B. PetersenDavid Michael ShackelfordGail Andrea SpearJohn Glenn Thompson
    • G06F12/16G06F12/00
    • G06F11/1446G06F3/0646G06F11/1448G06F11/1456
    • Provided are a computer program product, system, and method for maintaining mirror and storage system copies of volumes at multiple remote sites. A first server maintains a mirror copy relationship in a computer readable storage medium between a first storage system at a first site and a second storage system at a second site to mirror data at the first storage system to the second storage system, wherein the first and second sites connect over a network. The first server performs a first point-in-time copy operation from the first storage system to a first storage system copy, wherein the data for the first storage system copy is consistent as of the determined point-in-time, wherein the point-in-time copy operation is completed upon creating a data structure indicating data for the first storage system copy as located at the first storage or the first storage system copy. The first server transmits a command to a second server to create a point-in-time copy of the second storage system. The second server processes mirror data transferred from the first server as part of the mirror copy relationship to determine when to create a second point-in-time copy from the second storage system to a second storage system copy in response to the command. The second server performs the second point-in-time copy operation, in response to determining from the mirror data to create the second point-in-time copy.
    • 提供了一种用于在多个远程站点维护卷的镜像和存储系统副本的计算机程序产品,系统和方法。 第一服务器在第一站点的第一存储系统和第二站点处的第二存储系统之间的计算机可读存储介质中维护镜像复制关系,以将第一存储系统处的数据镜像到第二存储系统,其中第一和 第二个网站通过网络连接。 第一服务器执行从第一存储系统到第一存储系统副本的第一时间点复制操作,其中用于第一存储系统副本的数据与确定的时间点一致,其中, 在创建指示位于第一存储或第一存储系统副本的第一存储系统副本的数据的数据结构时,完成准时复制操作。 第一服务器向第二服务器发送命令以创建第二存储系统的时间点副本。 第二服务器处理从第一服务器传送的镜像数据作为镜像复制关系的一部分,以响应于该命令来确定何时从第二存储系统创建第二时间点副本到第二存储系统副本。 响应于从镜像数据确定以创建第二时间点副本,第二服务器执行第二时间点复制操作。
    • 7. 发明授权
    • System and article of manufacture for mirroring data at storage locations
    • 用于在存储位置镜像数据的系统和制造
    • US08027952B2
    • 2011-09-27
    • US12233535
    • 2008-09-18
    • Robert Frederic KernWilliam Frank MickaGail Andrea SpearDavid B. Petersen
    • Robert Frederic KernWilliam Frank MickaGail Andrea SpearDavid B. Petersen
    • G06F7/00G06F17/00
    • G06F11/2058G06F11/2069G06F11/2071Y10S707/99953Y10S707/99955
    • Provided is a system and article of manufacture for mirroring data. A mirror policy indicating volumes in a first storage system is processed to mirror to volumes in a second storage system and volumes in the second storage system to mirror to volumes in a third storage system. The third storage system is at a first geographical location remote with respect to a second geographical location including the first and second storage systems. A command is transmitted to cause the copying of updates to the volumes in the first storage system to corresponding volumes in the second storage system indicated in the mirror policy. Upon an occurrence of an event, the causing the suspension of the copying of updates to the volumes in the first storage system indicated in the mirroring policy to the volumes in the second storage system. During the suspension of the copying of volumes between the first and second storage systems, causing the copying of updates to the volumes in the second storage system indicated in the mirroring policy to the volumes in the third storage system indicated in the mirroring policy.
    • 提供了用于镜像数据的系统和制品。 指示指示第一存储系统中的卷的镜像策略被镜像到第二存储系统中的卷和第二存储系统中的卷以镜像到第三存储系统中的卷。 第三存储系统位于相对于包括第一和第二存储系统的第二地理位置的远端的第一地理位置处。 发送命令以使得将第一存储系统中的卷的更新复制到镜像策略中指示的第二存储系统中的相应卷。 在发生事件时,导致将在镜像策略中指示的第一存储系统中的卷的更新复制到第二存储系统中的卷的暂停。 在暂停在第一和第二存储系统之间的卷的复制期间,导致将在镜像策略中指示的第二存储系统中的卷的更新复制到镜像策略中指示的第三存储系统中的卷。
    • 10. 发明授权
    • Determining recovery time for interdependent resources in heterogeneous computing environment
    • 确定异构计算环境中相互依赖资源的恢复时间
    • US08751856B2
    • 2014-06-10
    • US13270186
    • 2011-10-10
    • Thomas LumppDavid B. PetersenWolfgang SchaeberleJeurgen SchneiderIsabell Schwertle
    • Thomas LumppDavid B. PetersenWolfgang SchaeberleJeurgen SchneiderIsabell Schwertle
    • G06F11/00
    • G06F11/2028
    • Provided are techniques for determining a recovery time for a resource in a heterogeneous computing environment comprising interdependent resources. A graph for the resource representing all sequence dependencies and all group relations are created. The recovery time may be a cumulative startup time or a cumulative shutdown time of the resource considering interdependencies of the resource to other resources. The recovery time for all support resources having sequence dependencies with the resource is calculated and each node representing the support resources are removed from the graph. Then the recovery time for all member resources left in the graph that have group relations with the resource is calculated per a group type of the resource. The recovery time for the resource is a sum of the recovery time of all support resources, the recovery time of all member resources, and a unit recovery time of the resource.
    • 提供了用于确定包括相互依赖资源的异构计算环境中的资源的恢复时间的技术。 创建表示所有序列依赖关系和所有组关系的资源图。 考虑资源与其他资源的相互依赖关系,恢复时间可能是资源的累积启动时间或累积关闭时间。 计算与资源具有序列依赖关系的所有支持资源的恢复时间,并从图中删除表示支持资源的每个节点。 然后,根据资源的组类型计算图中留下与资源具有组关系的所有成员资源的恢复时间。 资源的恢复时间是所有支持资源的恢复时间,所有成员资源的恢复时间和资源的单元恢复时间之和。