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    • 2. 发明授权
    • Method and apparatus for recovering a multi-threaded process from a checkpoint
    • 从检查点恢复多线程进程的方法和装置
    • US06738926B2
    • 2004-05-18
    • US09882941
    • 2001-06-15
    • Bernd J. W. MathiskeGlenn C. Skinner
    • Bernd J. W. MathiskeGlenn C. Skinner
    • G06F1100
    • G06F11/1469
    • One embodiment of the present invention provides a system for recovering a process that is multi-threaded from checkpoint information that was previously stored for the process. During a recovery operation, the system first retrieves the checkpoint information for the process. Next, the system extracts an identifier for a program being run by the process as well as parameters of the program from the checkpoint information. The system also extracts thread identifiers for threads associated with the process from the checkpoint information. Next, the system modifies the program so that executing the program will cause threads associated with the process to be restored. The system then creates a replacement process to replace the process, and causes the replacement process to execute the modified program so that the threads are reconstituted within the replacement process.
    • 本发明的一个实施例提供了一种系统,用于从先前为进程存储的检查点信息中恢复多线程的进程。 在恢复操作期间,系统首先检索进程的检查点信息。 接下来,系统从检查点信息中提取由进程运行的程序以及程序的参数的标识符。 系统还从检查点信息中提取与进程关联的线程的线程标识符。 接下来,系统修改程序,以便执行程序将导致与进程关联的线程被还原。 然后,系统创建一个替换过程来替换该过程,并导致替换过程执行修改的程序,以便在替换过程中重新构建线程。
    • 3. 发明授权
    • Global mount mechanism used in maintaining a global name space utilizing
a distributed locking mechanism
    • 全局安装机制用于维护使用分布式锁定机制的全局名称空间
    • US5946685A
    • 1999-08-31
    • US884252
    • 1997-06-27
    • Samuel M. CramerGlenn C. Skinner
    • Samuel M. CramerGlenn C. Skinner
    • G06F13/14G06F12/00G06F17/30
    • G06F17/30171Y10S707/99931Y10S707/99938Y10S707/99942
    • A global mount mechanism capable of maintaining a consistent global name space in a distributed computing system including a plurality of nodes interconnected by a communications link is herein disclosed. The global mount mechanism mounts a new file system resource into the global name space in a coherent manner such that the new file system resource is mounted at the same mount point concurrently in each node. The global mount mechanism accommodates mount or unmount requests initiated from a requesting node for a resource located in a remote node. The global mount mechanism is also used to unmount a file system resource from the global name space. The global mount mechanism also includes an initialization procedure that is used to generate the global name space initially by providing each local mount point with a global locking capability.
    • 本文公开了能够在分布式计算系统中保持一致的全局名称空间的全局安装机制,包括通过通信链路互连的多个节点。 全局安装机制将新的文件系统资源以一致的方式安装到全局名称空间中,以便新文件系统资源在每个节点中并发安装在相同的安装点上。 全局安装机制适应从请求节点发起的用于位于远程节点中的资源的装载或卸载请求。 全局安装机制也用于从全局名称空间中卸载文件系统资源。 全局安装机制还包括一个初始化过程,用于最初通过为每个本地安装点提供全局锁定功能来生成全局名称空间。
    • 5. 发明授权
    • Cluster-wide resource usage monitoring
    • 集群范围的资源使用监控
    • US08392564B1
    • 2013-03-05
    • US11156822
    • 2005-06-20
    • Grzegorz J. CzajkowskiGlenn C. SkinnerLaurent P. DaynèsKrzysztof Palacz
    • Grzegorz J. CzajkowskiGlenn C. SkinnerLaurent P. DaynèsKrzysztof Palacz
    • G06F15/16
    • H04L41/5051H04L43/0876H04L43/12
    • An infrastructure including a cluster-global dispenser that evaluates resource consume requests against cluster-global resource management policies facilitates flexible and extensible monitoring and/or control of resource consumption for multiple and/or multi-component applications on a cluster of interconnected computers. Such an infrastructure facilitates application of comprehensive resource management to cluster computing, and compatibility with the level of abstraction offered by modern object-oriented languages. Such an infrastructure also maintains backwards-compatibility. Building on the foundation of a well-defined isolated component, the resulting resource management framework is capable of supporting a rich collection of resources and of defining policies. The notion of a cluster-global resource naturally captures the aggregation of node-local resource. This applies the familiar “single system image” attribute of cluster systems to the area of resource management. The ability to associate the multiple components (isolates) of a distributed application with a single resource domain (policy), dramatically simplifies resource accounting for cluster applications.
    • 包括集群全局分配器的基础设施,用于评估针对集群全局资源管理策略的资源消耗请求,有助于在互连计算机集群上的多个和/或多组件应用程序的资源消耗的灵活和可扩展的监控和/或控制。 这样的基础设施有助于集成计算的全面资源管理应用,以及与现代面向对象语言提供的抽象级别的兼容性。 这样的基础架构也保持向后兼容性。 基于明确界定的隔离组件的基础,由此产生的资源管理框架能够支持丰富的资源集合和定义策略。 集群全局资源的概念自然地捕获了节点本地资源的聚合。 这将集群系统中熟悉的单一系统映像属性应用于资源管理领域。 将分布式应用程序的多个组件(隔离)与单个资源域(策略)相关联的功能大大简化了集群应用程序的资源计费。