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    • 1. 发明申请
    • Methods and arrangements to remap non-volatile storage
    • 重新映射非易失性存储的方法和布置
    • US20090172340A1
    • 2009-07-02
    • US12006017
    • 2007-12-28
    • Jian TangYufu LiPing Wu
    • Jian TangYufu LiPing Wu
    • G06F12/06
    • G06F12/0246G06F2212/7202G06F2212/7211
    • Methods and arrangements for remapping the map between logical space and physical space in non-volatile storage are described. Embodiments include transformations, code, state machines or other logic to divide the non-volatile storage of the computing device into two portions, a fixed portion and a floating portion. The embodiments may also include remapping in system firmware of the computing device the current map from logical space to physical space of the floating portion of the non-volatile storage. The embodiments may also include storing the revised map. The embodiments may also include using the revised map to access the floating portion of the non-volatile storage.
    • 描述了在非易失性存储器中在逻辑空间和物理空间之间重映射映射的方法和布置。 实施例包括转换,代码,状态机或将计算设备的非易失性存储器分成两部分,固定部分和浮动部分的其他逻辑。 实施例还可以包括将当前映射从计算设备的系统固件重新映射到非易失性存储器的浮动部分的逻辑空间到物理空间。 实施例还可以包括存储修改的地图。 实施例还可以包括使用修改的映射来访问非易失性存储器的浮动部分。
    • 3. 发明授权
    • Extensible and flexible firmware architecture for reliability, availability, serviceability features
    • 可扩展和灵活的固件架构,可靠性,可用性,可维护性功能
    • US07941810B2
    • 2011-05-10
    • US11648419
    • 2006-12-28
    • Rahul KhannaJian TangYufu Li
    • Rahul KhannaJian TangYufu Li
    • G06F9/54G06F9/44
    • G06F11/004G06F11/0709G06F11/0793
    • Improved reliability, availability, and serviceability (RAS) is provided by an extensible and flexible firmware architecture. The architecture provides management for events, where an event is a response to an imminent failure of or capacity change requirement applicable to a component of the system. In response to an event, control of a system is transferred from an operating system to the firmware manager. The manager identifies an action that is specified by the event. Based on the action, the firmware manager selects a firmware handler from a plurality of firmware handlers. The firmware manager dispatches the selected firmware handler to perform the specified action. The firmware manager and the dispatched firmware handler exchange system-independent information regarding the event. The firmware manager also manages time-slices for the performance of the specified action by the dispatched firmware handler.
    • 通过可扩展且灵活的固件架构提供可靠性,可用性和可维护性(RAS)的提高。 该架构为事件提供管理,其中事件是对应用于系统组件的即将发生的故障或容量变化要求的响应。 响应于事件,将系统的控制从操作系统传送到固件管理器。 经理识别事件指定的动作。 基于该动作,固件管理器从多个固件处理器中选择固件处理程序。 固件管理器调度所选的固件处理程序以执行指定的操作。 固件管理器和发送的固件处理程序交换与事件有关的系统无关信息。 固件管理器还管理由分派的固件处理程序执行指定操作的时间片。
    • 4. 发明授权
    • Methods and arrangements to remap non-volatile storage
    • 重新映射非易失性存储的方法和安排
    • US07870363B2
    • 2011-01-11
    • US12006017
    • 2007-12-28
    • Jian TangYufu LiPing Wu
    • Jian TangYufu LiPing Wu
    • G06F12/06
    • G06F12/0246G06F2212/7202G06F2212/7211
    • Methods and arrangements for remapping the map between logical space and physical space in non-volatile storage are described. Embodiments include transformations, code, state machines or other logic to divide the non-volatile storage of the computing device into two portions, a fixed portion and a floating portion. The embodiments may also include remapping in system firmware of the computing device the current map from logical space to physical space of the floating portion of the non-volatile storage. The embodiments may also include storing the revised map. The embodiments may also include using the revised map to access the floating portion of the non-volatile storage.
    • 描述了在非易失性存储器中在逻辑空间和物理空间之间重映射映射的方法和布置。 实施例包括转换,代码,状态机或将计算设备的非易失性存储器分成两部分,固定部分和浮动部分的其他逻辑。 实施例还可以包括将当前映射从计算设备的系统固件重新映射到非易失性存储器的浮动部分的逻辑空间到物理空间。 实施例还可以包括存储修改的地图。 实施例还可以包括使用修改的映射来访问非易失性存储器的浮动部分。
    • 6. 发明申请
    • Extensible and flexible firmware architecture for reliability, availability, serviceability features
    • 可扩展和灵活的固件架构,可靠性,可用性,可维护性功能
    • US20080163256A1
    • 2008-07-03
    • US11648419
    • 2006-12-28
    • Rahul KhannaJian TangYufu Li
    • Rahul KhannaJian TangYufu Li
    • G06F9/44
    • G06F11/004G06F11/0709G06F11/0793
    • Improved reliability, availability, and serviceability (RAS) is provided by an extensible and flexible firmware architecture. The architecture provides management for events, where an event is a response to an imminent failure of or capacity change requirement applicable to a component of the system. In response to an event, control of a system is transferred from an operating system to the firmware manager. The manager identifies an action that is specified by the event. Based on the action, the firmware manager selects a firmware handler from a plurality of firmware handlers. The firmware manager dispatches the selected firmware handler to perform the specified action. The firmware manager and the dispatched firmware handler exchange system-independent information regarding the event. The firmware manager also manages time-slices for the performance of the specified action by the dispatched firmware handler.
    • 通过可扩展且灵活的固件架构提供可靠性,可用性和可维护性(RAS)的提高。 该架构为事件提供管理,其中事件是对应用于系统组件的即将发生的故障或容量变化要求的响应。 响应于事件,将系统的控制从操作系统传送到固件管理器。 经理识别事件指定的动作。 基于该动作,固件管理器从多个固件处理器中选择固件处理程序。 固件管理器调度所选的固件处理程序以执行指定的操作。 固件管理器和发送的固件处理程序交换与事件有关的系统无关信息。 固件管理器还管理由分派的固件处理程序执行指定操作的时间片。
    • 7. 发明申请
    • PARALLEL PROCESSING OF PLATFORM LEVEL CHANGES DURING SYSTEM QUIESCE
    • 系统测试期间平台水平变化的并行处理
    • US20090077553A1
    • 2009-03-19
    • US11854953
    • 2007-09-13
    • Jian TangYufu Li
    • Jian TangYufu Li
    • G06F9/46
    • G06F9/44505G06F8/656G06F9/4405
    • Various embodiments described herein provide one or more of systems, methods, and software/firmware that provide increased efficiency in implementing configuration changes during system quiesce time. Some embodiments may separate a quiesce data buffer into small slices wherein each slice includes configuration change data or instructions. These slices may be individually distributed by a system bootstrap processor, or other processor, to other processors or logical processors of a multi-core processor in the system. In some such embodiments, the system bootstrap processor and application processors may change system configuration in parallel while a system is in a quiesce state so as to minimize time spent in the quiesce state. Furthermore, typical system configuration change become local operations, such as local hardware register modifications, which suffer much less transaction delay than remote hardware register accesses as has been previously performed. These embodiments, and others, are described in greater detail herein.
    • 本文描述的各种实施例提供系统,方法和软件/固件中的一个或多个,其在系统静止时间期间提供更高的效率来实现配置改变。 一些实施例可以将静默数据缓冲区分成小片,其中每个片包括配置改变数据或指令。 这些切片可以由系统引导处理器或其他处理器单独分配到系统中的多核处理器的其他处理器或逻辑处理器。 在一些这样的实施例中,系统引导处理器和应用处理器可以在系统处于静止状态时并行地改变系统配置,以便最小化在静止状态下花费的时间。 此外,典型的系统配置更改成为本地操作,例如本地硬件寄存器修改,其比之前执行的远程硬件寄存器访问的事务延迟要少得多。 这些实施例和其他实施例在此更详细地描述。