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    • 4. 发明授权
    • Apparatus, program product and method of replacing failed hardware device through concurrent maintenance operation
    • 通过并发维护操作代替故障硬件设备的装置,程序产品和方法
    • US06820157B1
    • 2004-11-16
    • US09107768
    • 1998-06-30
    • Curtis Shannon EideWilliam Alan ThompsonJames Lee Naylor
    • Curtis Shannon EideWilliam Alan ThompsonJames Lee Naylor
    • G06F1300
    • G06F8/656
    • An apparatus, program product and method of replacing a failed hardware device in a computer each rely solely on program code and/or other computer facilities that are ensured of being available in the computer during a concurrent maintenance operation, so that, even in the event that a failure occurs in such a hardware device, successful performance of the concurrent maintenance operation is ensured. For example, the initiation of power up and power down functions necessary to permit replacement of a failed device may be performed through a control panel or other similar facility in a computer that is continuously available when a computer is in a fully or partially active and powered-on state. Also, a concurrent replacement operation may be supported that automatically detects a lock-up condition resulting from a failed attempt to access data using a failed hardware device, and that, upon replacement of the device with a suitable replacement device, automatically associates a resource that was previously associated with the failed device with the replacement device such that the failed attempt to access data may be automatically resumed, thereby automating the recovery from the lock-up condition.
    • 更换计算机中的故障硬件设备的装置,程序产品和方法每个都仅依赖于在并行维护操作期间确保在计算机中可用的程序代码和/或其他计算机设施,使得即使在事件 在这种硬件设备中发生故障,确保并发维护操作的成功执行。 例如,可以通过计算机中的控制面板或其他类似设施来执行启动启动和断电功能以允许更换故障设备,这些设备在计算机处于完全或部分主动和供电状态时可连续可用 - 状态。 此外,可以支持并发替换操作,其自动检测由于使用故障硬件设备访问数据的尝试失败而导致的锁定条件,并且在用适当的替换设备替换设备时,自动关联 以前与替换设备的故障设备关联,使得访问数据的失败尝试可以自动恢复,从而使锁定状态的恢复自动化。
    • 5. 发明授权
    • Controlling access to physical indicators in a logically partitioned computer system
    • 控制对逻辑分区计算机系统中物理指标的访问
    • US08140717B2
    • 2012-03-20
    • US12238757
    • 2008-09-26
    • Curtis Shannon EideAditya Kumar
    • Curtis Shannon EideAditya Kumar
    • G06F3/00G06F9/00
    • G06F9/45558G06F2009/45579
    • A low-level logical partitioning function associates partitions, partitionable entities, and location codes. Partitionable entities are hardware components, not necessarily individually replaceable. The location code reflects the physical topology of the system packaging. It is preferably a string of concatenated elements, each element representing a device in a hierarchical level of devices which may contain other devices. A respective location code is likewise associated with each of multiple physical indicators. The location code of partitionable entities allocated to a partition is compared with the indicator's location code to determine whether a process executing within a partition can access the indicator. Preferably, each partition has a virtual indicator corresponding to a physical indicator, the state of the physical indicator being derived as a function of the states of multiple virtual indicators for multiple partitions.
    • 低级逻辑分区功能将分区,可分区实体和位置代码相关联。 可分区实体是硬件组件,不一定可单独替换。 位置代码反映了系统包装的物理拓扑。 优选地是串联的元件串,每个元件表示可以包含其他设备的设备的分层级中的设备。 相应的位置代码同样与多个物理指示器中的每一个相关联。 分配给分区的可分区实体的位置代码与指示符的位置代码进行比较,以确定分区内执行的进程是否可以访问指示符。 优选地,每个分区具有对应于物理指示符的虚拟指示符,物理指示符的状态作为多个分区的多个虚拟指示符的状态的函数导出。
    • 7. 发明申请
    • Controlling Access to Physical Indicators in a Logically Partitioned Computer System
    • 控制对逻辑分区计算机系统中物理指标的访问
    • US20100083252A1
    • 2010-04-01
    • US12238757
    • 2008-09-26
    • Curtis Shannon EideAditya Kumar
    • Curtis Shannon EideAditya Kumar
    • G06F9/44
    • G06F9/45558G06F2009/45579
    • A low-level logical partitioning function associates partitions, partitionable entities, and location codes. Partitionable entities are hardware components, not necessarily individually replaceable. The location code reflects the physical topology of the system packaging. It is preferably a string of concatenated elements, each element representing a device in a hierarchical level of devices which may contain other devices. A respective location code is likewise associated with each of multiple physical indicators. The location code of partitionable entities allocated to a partition is compared with the indicator's location code to determine whether a process executing within a partition can access the indicator. Preferably, each partition has a virtual indicator corresponding to a physical indicator, the state of the physical indicator being derived as a function of the states of multiple virtual indicators for multiple partitions.
    • 低级逻辑分区功能将分区,可分区实体和位置代码相关联。 可分区实体是硬件组件,不一定可单独替换。 位置代码反映了系统包装的物理拓扑。 优选地是串联的元件串,每个元件表示可以包含其他设备的设备的分层级中的设备。 相应的位置代码同样与多个物理指示器中的每一个相关联。 分配给分区的可分区实体的位置代码与指示符的位置代码进行比较,以确定分区内执行的进程是否可以访问指示符。 优选地,每个分区具有对应于物理指示符的虚拟指示符,物理指示符的状态作为多个分区的多个虚拟指示符的状态的函数导出。
    • 10. 发明申请
    • Managing Condition Indicators that Use the Same Physical Indicator Device in a Logically Partitioned Computer System
    • 管理在逻辑分区计算机系统中使用相同物理指示器的条件指示器
    • US20100079302A1
    • 2010-04-01
    • US12238776
    • 2008-09-26
    • Curtis Shannon EideAditya Kumar
    • Curtis Shannon EideAditya Kumar
    • G08B5/00
    • G06F9/5077G06F11/32
    • A computer system independently maintains states of multiple condition indicators as logical state data, each indicator for a different respective condition and having at least an active and inactive state. Multiple condition indicators share a single human-perceptible physical indicator having at least (N+1) states, where N is the number of condition indicators, the physical indicator states including a state for all conditions inactive, and a respective separate state for each respective condition active. Preferably, the conditions comprise a fault condition and an identify condition, and the physical indicator is a light which is off if neither condition is active, is constant on if the fault condition is active, and is flashing if the identify condition is active.
    • 计算机系统将多个条件指示器的状态独立地维持为逻辑状态数据,每个指示符用于不同的相应条件并且具有至少一个活动和非活动状态。 多个条件指示符共享具有至少(N + 1)个状态的单个人类可感知的物理指示符,其中N是条件指示符的数量,物理指示符状态包括所有条件不活动的状态,以及各个相应的单独状态 条件激活。 优选地,条件包括故障条件和识别条件,并且物理指示符是如果两个条件都不活动则关闭的指示灯,如果故障状态是活动的则该指示灯是恒定的,并且如果识别条件是活动的则闪烁。