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    • 33. 发明授权
    • Prediction based priority scheduling
    • 基于预测的优先级调度
    • US08185899B2
    • 2012-05-22
    • US11683147
    • 2007-03-07
    • David M. DalyPeter A. FranaszekLuis A. Lastras-Montano
    • David M. DalyPeter A. FranaszekLuis A. Lastras-Montano
    • G06F9/46
    • G06F9/4881
    • Systems and methods are provided that schedule task requests within a computing system based upon the history of task requests. The history of task requests can be represented by a historical log that monitors the receipt of high priority task request submissions over time. This historical log in combination with other user defined scheduling rules is used to schedule the task requests. Task requests in the computer system are maintained in a list that can be divided into a hierarchy of queues differentiated by the level of priority associated with the task requests contained within that queue. The user-defined scheduling rules give scheduling priority to the higher priority task requests, and the historical log is used to predict subsequent submissions of high priority task requests so that lower priority task requests that would interfere with the higher priority task requests will be delayed or will not be scheduled for processing.
    • 提供了系统和方法,其基于任务请求的历史在计算系统内调度任务请求。 任务请求的历史可以由历史日志表示,该日志监视随时间的收到高优先级任务请求提交。 该历史日志与其他用户定义的调度规则相结合用于调度任务请求。 计算机系统中的任务请求被维护在列表中,该列表可以被划分成由包含在该队列内的任务请求所关联的优先级所区分的队列层次。 用户定义的调度规则给予较高优先级任务请求的调度优先级,并且使用历史日志来预测高优先级任务请求的后续提交,使得将干扰较高优先级任务请求的较低优先级任务请求将被延迟或 不会安排进行处理。
    • 36. 发明授权
    • System, method and storage medium for memory management
    • 用于内存管理的系统,方法和存储介质
    • US07386679B2
    • 2008-06-10
    • US10709128
    • 2004-04-15
    • Peter A. FranaszekLuis A. Lastras
    • Peter A. FranaszekLuis A. Lastras
    • G06F12/08
    • G06F12/0862G06F12/0895G06F2212/1024G06F2212/502G06F2212/6022G06F2212/6024
    • A system for memory management including a tag controlled buffer in communication with a memory device. The memory device includes a plurality of pages divided into a plurality of individually addressable lines. The tag controlled buffer includes a prefetch buffer including at least one of the individually addressable lines from the memory device. The tag controlled buffer also includes a tag cache in communication with the prefetch buffer. The tag cache includes a plurality of tags, where each tag is associated with one of the pages in the memory device and each tag includes a pointer to at least one of the lines in the prefetch buffer. Access to the lines in the prefetch buffer is controlled by the tag cache.
    • 一种用于存储器管理的系统,包括与存储器件通信的标签控制缓冲器。 存储装置包括被分成多个可单独寻址的行的多个页面。 标签控制缓冲器包括预取缓冲器,其包括来自存储器装置的至少一个可单独寻址的线路。 标签控制缓冲器还包括与预取缓冲器通信的标签缓存。 标签缓存包括多个标签,其中每个标签与存储器设备中的一个页面相关联,并且每个标签包括指向预取缓冲器中的至少一行的指针。 访问预取缓冲区中的行由标记缓存控制。
    • 38. 发明授权
    • Nonuniform compression span
    • 不均匀的压缩范围
    • US06847315B2
    • 2005-01-25
    • US10417707
    • 2003-04-17
    • Vittorio CastelliPeter A. Franaszek
    • Vittorio CastelliPeter A. Franaszek
    • G06F12/08H03M7/30H03M7/00
    • H03M7/3088G06F12/08G06F12/0802G06F2212/401
    • A method and structure stores and/or transmits and receives data in compressed form. Retrieval latencies are reduced by selectively transmitting a portion of the data in uncompressed form. When the apparatus is part of a computer architecture supporting main memory compression, a selected L2 cache line belonging to the unit of main memory compression is kept uncompressed. To minimize decompression latency, the uncompressed L2 cache line is stored with the compressed-memory directory. Alternatively, the uncompressed L2 cache line is stored in the compressed memory together with the rest of the memory compression unit it belongs to.
    • 方法和结构以压缩形式存储和/或发送和接收数据。 通过选择性地以未压缩形式传送数据的一部分来减少检索延迟。 当该设备是支持主存储器压缩的计算机体系结构的一部分时,属于主存储器压缩单元的所选择的L2高速缓存行保持未压缩。 为了最小化解压延迟,未压缩的L2高速缓存行与压缩内存目录一起存储。 或者,未压缩的L2高速缓存行与其所属的存储器压缩单元的其余部分一起存储在压缩存储器中。