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    • 5. 发明申请
    • Method and apparatus for quick resumption
    • 快速恢复的方法和装置
    • US20070061558A1
    • 2007-03-15
    • US11229203
    • 2005-09-15
    • Michael RothmanGlenn HintonMark DoranVincent ZimmerMichael Kinney
    • Michael RothmanGlenn HintonMark DoranVincent ZimmerMichael Kinney
    • G06F9/00
    • G06F9/4418
    • During a process of transitioning a processing system from sleep mode to active mode, system firmware of the processing system may automatically determine whether an initialization task has been assigned to a component other than system firmware, based on data obtained from a resume descriptor stored in nonvolatile storage of the processing system. The system firmware may skip the initialization task if the initialization task has been assigned to a component other than the system firmware. For example, in one embodiment, the system firmware may determine whether the resume descriptor identifies one or more memory ranges. If so, the system firmware may forego initialization of at least one memory range identified in the resume descriptor when initializing a random access memory (RAM) of the processing system. Other embodiments are described and claimed.
    • 在将处理系统从睡眠模式转换到活动模式的过程中,处理系统的系统固件可以基于从存储在非易失性存储器中的恢复描述符获得的数据自动地确定初始化任务是否已被分配给系统固件以外的组件 存储处理系统。 如果将初始化任务分配给系统固件以外的组件,系统固件可能会跳过初始化任务。 例如,在一个实施例中,系统固件可以确定恢复描述符是否识别一个或多个存储器范围。 如果是这样,当初始化处理系统的随机存取存储器(RAM)时,系统固件可以放弃在恢复描述符中标识的至少一个存储器范围的初始化。 描述和要求保护其他实施例。
    • 8. 发明授权
    • LRU cache replacement for a partitioned set associative cache
    • 用于分区集关联高速缓存的LRU缓存替换
    • US07856633B1
    • 2010-12-21
    • US09534191
    • 2000-03-24
    • Chan W. LeeGlenn HintonRobert Krick
    • Chan W. LeeGlenn HintonRobert Krick
    • G06F9/46G06F13/00
    • G06F9/50G06F9/3017G06F9/3802G06F9/3808G06F9/382G06F9/3836G06F9/384G06F9/3851G06F9/3855G06F12/0842G06F12/121
    • A method of partitioning a memory resource, associated with a multi-threaded processor, includes defining the memory resource to include first and second portions that are dedicated to the first and second threads respectively. A third portion of the memory resource is then designated as being shared between the first and second threads. Upon receipt of an information item, (e.g., a microinstruction associated with the first thread and to be stored in the memory resource), a history of Least Recently Used (LRU) portions is examined to identify a location in either the first or the third portion, but not the second portion, as being a least recently used portion. The second portion is excluded from this examination on account of being dedicated to the second thread. The information item is then stored within a location, within either the first or the third portion, identified as having been least recently used.
    • 分割与多线程处理器相关联的存储器资源的方法包括定义存储器资源以分别包括专用于第一和第二线程的第一和第二部分。 然后,内存资源的第三部分被指定为在第一和第二线程之间共享。 在接收到信息项目(例如,与第一线程相关并且要存储在存储器资源中的微指令)时,检查最近最少使用(LRU)部分的历史以识别在第一或第三 部分,而不是第二部分,作为最近最少使用的部分。 第二部分由于专用于第二线程而被排除在本次考试之外。 然后将信息项目存储在第一或第三部分内,被标识为最近最少使用的位置内。