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    • 12. 发明授权
    • VIOS cluster alert framework
    • VIOS集群警报框架
    • US08661089B2
    • 2014-02-25
    • US12962930
    • 2010-12-08
    • Neal Richard MarionJames A. PafumiJacob Jason RosalesMorgan Jeffrey RosasVasu Vallabhaneni
    • Neal Richard MarionJames A. PafumiJacob Jason RosalesMorgan Jeffrey RosasVasu Vallabhaneni
    • G06F15/16
    • G06F11/3034G06F11/0712G06F11/0793G06F11/3055
    • In a data processing system including a virtual I/O server (VIOS) cluster and multiple logical partitions (LPARs), at least one VIOS of the VIOS cluster performs functions of: receiving first registration information from one or more entities within the VIOS cluster; registering, based on the first registration information, a handler associated with a first message type; responsive to receiving second registration information, registering, based on the second registration information, a listener associated with a second message type; receiving a first message associated with a first alert event of the cluster; determining, based on the first message, that the handler is associated with the first message type; and calling the handler. In one embodiment, the handler is associated with a pointer to a subroutine, and registering the handler includes storing the pointer in a data structure that associates the handler with the first message type.
    • 在包括虚拟I / O服务器(VIOS)集群和多个逻辑分区(LPAR)的数据处理系统中,VIOS集群的至少一个VIOS执行以下功能:从VIOS集群中的一个或多个实体接收第一注册信息; 基于所述第一注册信息注册与第一消息类型相关联的处理程序; 响应于接收到第二注册信息,基于所述第二注册信息注册与第二消息类型相关联的侦听器; 接收与所述集群的第一警报事件相关联的第一消息; 基于所述第一消息确定所述处理程序与所述第一消息类型相关联; 并调用处理程序。 在一个实施例中,处理程序与指向子程序的指针相关联,并且注册处理程序包括将指针存储在将处理程序与第一消息类型相关联的数据结构中。
    • 14. 发明申请
    • SUPPORTING CLUSTER LEVEL SYSTEM DUMPS IN A CLUSTER ENVIRONMENT
    • 支持群集环境中的群集级别系统
    • US20120151265A1
    • 2012-06-14
    • US12964079
    • 2010-12-09
    • Carl Duane BenderJacob Jason RosalesMorgan Jeffrey RosasVasu Vallabhaneni
    • Carl Duane BenderJacob Jason RosalesMorgan Jeffrey RosasVasu Vallabhaneni
    • G06F11/07
    • G06F11/366
    • A method, system, and computer program product provides simultaneous debugging of multiple OS image and/or system dump pairs in a distributed storage repository. A management console receives a terminal debugging session request and a cluster selection from an interface and starts a debugger instance. The debugger instance autonomously identifies client LPARs and loads the system dump images assigned to the client LPARs. In response to receiving a selection of a first and second client LPARs, the debugger analyzes the first and second system dump images, respectively, and calculates relational information between the first analysis and the second analysis via one or more logical reasoning utilities of the management console. The debugger then loads the relational information to the management console interface with an analysis of one or more similarities between the first and second system dumps.
    • 一种方法,系统和计算机程序产品在分布式存储库中提供多个OS映像和/或系统转储对的同时调试。 管理控制台从接口接收终端调试会话请求和集群选择,并启动调试器实例。 调试器实例自动识别客户端LPAR并加载分配给客户端LPAR的系统转储映像。 响应于接收到第一和第二客户端LPAR的选择,调试器分别分析第一和第二系统转储映像,并且通过管理控制台的一个或多个逻辑推理实用程序来计算第一分析和第二分析之间的关系信息 。 调试器然后将关系信息加载到管理控制台界面,并分析第一个和第二个系统转储之间的一个或多个相似之处。
    • 15. 发明授权
    • Operating system image management
    • 操作系统映像管理
    • US08473692B2
    • 2013-06-25
    • US12913017
    • 2010-10-27
    • Jacob Jason RosalesMorgan Jeffrey RosasBasu VaidyanathanVasu Vallabhaneni
    • Jacob Jason RosalesMorgan Jeffrey RosasBasu VaidyanathanVasu Vallabhaneni
    • G06F13/00G06F13/28
    • G06F9/485G06F9/5077
    • In a data processing system including multiple logical partitions (LPARs), an application executes on a first logical partition (LPAR) of the multiple LPARs, where the application uses a first operation system stored in a first memory partition of a shared pool memory of the data processing system. A virtualization management component (a) initiates an update process that quiesces operations of the first LPAR, (b) pages in, via a virtual input/output server coupled to a first paging device, a first image of a second operating system from the first paging device to the shared pool memory; (c) changes one or more pointers associated with the application to point to one or more portions of the second operating system, such that the application uses the second operating system, when resumed; and (b) resumes execution the application.
    • 在包括多个逻辑分区(LPAR)的数据处理系统中,应用程序在多个LPAR的第一逻辑分区(LPAR)上执行,其中应用使用存储在第一存储器分区中的第一操作系统, 数据处理系统。 虚拟化管理组件(a)启动停止所述第一LPAR的操作的更新过程,(b)经由耦合到第一寻呼设备的虚拟输入/输出服务器从第一LPAR的第二操作系统的第一映像 寻呼设备到共享池内存; (c)将与所述应用相关联的一个或多个指针改变为指向所述第二操作系统的一个或多个部分,使得当所述应用程序恢复时使用所述第二操作系统; 和(b)恢复执行应用程序。
    • 16. 发明授权
    • Multiple node/virtual input/output (I/O) server (VIOS) failure recovery in clustered partition mobility
    • 多节点/虚拟输入/输出(I / O)服务器(VIOS)在集群分区移动性中的故障恢复
    • US08521703B2
    • 2013-08-27
    • US12940468
    • 2010-11-05
    • Greg R. MewhinneyDavid NevarezJames A. PafumiJacob Jason Rosales
    • Greg R. MewhinneyDavid NevarezJames A. PafumiJacob Jason Rosales
    • G06F17/30
    • G06F11/2046G06F11/1425G06F11/1482G06F11/203G06F11/3006G06F11/3055G06F2201/815
    • A system and computer program product utilizes cluster-awareness to effectively support a live partition mobility (LPM) event and provide recovery from node failure within a Virtual Input/Output (I/O) Server (VIOS) cluster. An LPM utility creates a monitoring thread on a first VIOS on initiation of a corresponding LPM event. The monitoring thread tracks a status of an LPM and records status information in the mobility table of a database. The LPM utility creates other monitoring threads on other VIOSes running on the (same) source server. If the first VIOS sustains one of multiple failures, the LPM utility provides notification to other functioning nodes/VIOSes. The LPM utility enables a functioning monitoring thread to update the LPM status. In particular, a last monitoring thread may perform cleanup/update operations within the database based on an indication that there are nodes on the first server that are in failed state.
    • 系统和计算机程序产品利用集群感知来有效地支持实时分区移动性(LPM)事件,并提供虚拟输入/输出(IOS)服务器(VIOS)集群中节点故障的恢复。 LPM实用程序在启动相应的LPM事件时在第一个VIOS上创建一个监视线程。 监控线程跟踪LPM的状态,并将状态信息记录在数据库的移动表中。 LPM实用程序在(同一)源服务器上运行的其他VIOS上创建其他监视线程。 如果第一个VIOS维持多个故障之一,则LPM实用程序会向其他运行的节点/ VIOS提供通知。 LPM实用程序使运行的监视线程更新LPM状态。 特别地,最后一个监视线程可以基于在第一服务器上处于故障状态的节点的指示来执行数据库内的清理/更新操作。
    • 17. 发明申请
    • Automatic Data Recovery System
    • 自动数据恢复系统
    • US20100017670A1
    • 2010-01-21
    • US12176587
    • 2008-07-21
    • Jacob Jason RosalesJorge D. RodriguezJorge A. RasilloRene Ruben Martinez
    • Jacob Jason RosalesJorge D. RodriguezJorge A. RasilloRene Ruben Martinez
    • G06F11/14
    • G06F11/1402G06F11/1435
    • A method, programmed medium and system are provided for recovering media-stored program code and/or user data when data on the same media are lost or corrupted. The system includes retrieving user data and/or program code from an external source when the actual data/code is not readable. When initiating the load of local storage, an initial scan for damaged regions is performed. If the initial scan determines that there are damaged/bad regions, the media player will look for the necessary data and/or code to patch the digital media. In one embodiment, a hardware or software look-ahead reader function, for example, is enabled to retrieve the original undamaged data/code from the local storage when an attempt to read a region from an optical disk fails due to a bad region. If the region in question is not stored locally, then a request is automatically transmitted to the original data provider to re-send the original data/code, which may include original program code. The data provider will then respond by sending the missing data/code to the user system where it will, in turn, be stored within the local storage device for further access and use.
    • 提供了一种编程介质和系统,用于在相同介质上的数据丢失或损坏时恢复媒体存储的程序代码和/或用户数据。 当实际数据/代码不可读时,系统包括从外部源检索用户数据和/或程序代码。 当启动本地存储的负载时,执行损坏区域的初始扫描。 如果初始扫描确定存在损坏/不良区域,则媒体播放器将寻找必要的数据和/或代码来修补数字媒体。 在一个实施例中,当从光盘读取区域的尝试由于不良区域而失败时,例如能够从本地存储器检索原始的未损坏数据/代码的硬件或软件预读读取器功能。 如果有问题的区域没有在本地存储,那么请求将自动发送到原始数据提供者,以重新发送原始数据/代码,其中可能包括原始程序代码。 然后,数据提供者将通过将丢失的数据/代码发送到用户系统来进行响应,该用户系统又将存储在本地存储设备中以便进一步访问和使用。