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    • 4. 发明申请
    • BUILDING AN INTELLIGENT, SCALABLE SYSTEM DUMP FACILITY
    • 建立智能,可扩展的系统设备
    • US20160132381A1
    • 2016-05-12
    • US14573084
    • 2014-12-17
    • International Business Machines Corporation
    • Adekunle BelloDouglas GriffithAngela A. JaehdeRobert S. Manning
    • G06F11/07
    • G06F11/0778G06F11/0709G06F11/0748G06F11/0751
    • A method for building a scalable system dump facility is provided. The method includes loading a component into system memory. The component includes a plurality of program modules. A component text range table entry is created for each component, whereby the component text range table entry includes: an address range, a component identifier, a data collection function, and a link to one or more related components. Upon invoking a system dump facility, a failing function instruction is determined, based on an address of the failing instruction. The component text range table is searched for an address of a failing function that is in the address range. Memory regions that are associated with the address range are transferred to a storage device first. Memory regions that are associated with related components are transferred next. Remaining memory regions are then transferred.
    • 提供了一种用于构建可扩展系统转储设施的方法。 该方法包括将组件加载到系统内存中。 该组件包括多个程序模块。 为每个组件创建组件文本范围表条目,由此组件文本范围表条目包括:地址范围,组件标识符,数据收集功能以及到一个或多个相关组件的链接。 在调用系统转储设施时,将根据故障指令的地址确定故障功能指令。 搜索组件文本​​范围表,查找地址范围内的失败函数的地址。 与地址范围相关联的存储器区域首先被传送到存储设备。 与相关组件相关联的存储器区域接下来传输。 然后传输剩余的存储区域。
    • 7. 发明授权
    • Collaborative negotiation of system resources among virtual servers running in a network computing environment
    • 在网络计算环境中运行的虚拟服务器之间的系统资源协同协商
    • US09009722B2
    • 2015-04-14
    • US13759479
    • 2013-02-05
    • International Business Machines Corporation
    • Adekunle BelloAruna Yedavilli
    • G06F9/455H04L29/06H04L1/18H04L5/00H04L12/24H04L12/911
    • H04L47/76H04L1/1893H04L5/0035H04L29/06537H04L41/0896H04L47/70H04L67/1002H04L69/24
    • Virtual machines within a network computing environment negotiate among themselves with regard to the sharing of resources via respective resource managers. The resource agent monitors resource allocation patterns of its virtual machine and responsively updates usage data in a resource availability map and compares the updated usage data to a minimum operational requirements threshold and a surplus amount threshold. If the updated usage fails to meet the minimum operational requirements threshold, the resource agent determines a needed shortfall amount of resources, searches the resource availability map for offers of the shortfall from resource agents, and sends out a request to a resource agent offering the shortfall amount. If the updated usage data meets the minimum operational requirements threshold, the resource agent determines a surplus amount of a resource that exceeds the surplus amount threshold and creates and broadcasts an offer of the surplus amount to the other resource agents.
    • 网络计算环境中的虚拟机通过相应的资源管理器在资源共享方面进行协商。 资源代理监视其虚拟机的资源分配模式,并响应地更新资源可用性映射中的使用数据,并将更新的使用数据与最小操作需求阈值和剩余量阈值进行比较。 如果更新的使用不能满足最低操作需求阈值,则资源代理确定所需的资源量不足量,从资源代理中查找资源可用性映射以提供缺点,并向提供缺陷的资源代理发出请求 量。 如果更新的使用数据满足最小操作要求阈值,则资源代理确定超过剩余金额阈值的资源的剩余量,并创建并向其他资源代理广播剩余金额的报价。