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    • 1. 发明申请
    • METHOD AND APPARATUS TO MAXIMIZE POWER OF A COMPUTER SYSTEM FOR EFFECTIVE TESTING
    • 最大限度地提高计算机系统功率的方法和设备进行有效的测试
    • US20110093731A1
    • 2011-04-21
    • US12580546
    • 2009-10-16
    • Alok ParikhAmandeep Singh
    • Alok ParikhAmandeep Singh
    • G06F1/28
    • G06F11/24
    • Implementations of the present invention may involve methods and systems to improve the combined power consumption and thermal response of individual components of a computer system as the components are stressed concurrently during simulation or testing of the system. A group of operating system-level instruction sets for several individual components of the computer system may be designed to stress the components and executed concurrently while power and thermal measurements are taken. The instruction sets may utilize one or more software threads of the computer system or hardware threads such that minimal interference between components occurs as the system is tested. Further, the system components may be partitioned between separate instruction sets. By minimizing the interference between the components while the system is operating, a more accurate power consumption and thermal effect measurements may be taken on the computer system to better approximate the performance of the system.
    • 本发明的实现可以涉及用于在模拟或测试系统期间同时强调组件的同时改善计算机系统的各个组件的组合功耗和热响应的方法和系统。 一组用于计算机系统的几个单独组件的操作系统级指令集可以设计成在进行功率和热测量时同时施加组件并同时执行。 指令集可以利用计算机系统的一个或多个软件线程或硬件线程,使得当系统被测试时,组件之间的最小干扰发生。 此外,系统组件可以在分开的指令集之间分区。 通过在系统运行时最小化组件之间的干扰,可以在计算机系统上进行更精确的功耗和热效应测量,以更好地近似系统的性能。
    • 2. 发明申请
    • METHOD AND APPARATUS FOR MINIMIZING WORKING MEMORY CONTENTIONS IN COMPUTING SYSTEMS
    • 在计算机系统中最小化工作记忆内容的方法和装置
    • US20130007370A1
    • 2013-01-03
    • US13175350
    • 2011-07-01
    • Alok ParikhAmandeep Singh
    • Alok ParikhAmandeep Singh
    • G06F12/08G06F12/02
    • G06F12/0842
    • Implementations of the present disclosure involve an apparatus and/or method for allocating, dividing and accessing memory of a multi-threaded computing system based at least in part on the structural hierarchy of the components of the computing system. Allocating partitions of memory based on the hierarchy structure of the computing system may isolate the threads of the computing system such that cache-memory contention by a plurality of executing threads may be reduced. In general, the apparatus and/or method may analyze the hierarchal structure of the components of the computing system utilized in the execution of applications and divide the available memory of the system between the various components. This division of the system memory creates exclusive partitions in the caches of the computing system based on the processor and cache hierarchy. The partitions may be used by different applications or by different sections of the same application to store accessed memory in cache for quick retrieval.
    • 本公开的实现涉及用于至少部分地基于计算系统的组件的结构层次来分配,划分和访问多线程计算系统的存储器的装置和/或方法。 基于计算系统的层次结构分配存储器的分区可以隔离计算系统的线程,使得可以减少多个执行线程的高速缓冲存储器争用。 通常,装置和/或方法可以分析在执行应用中使用的计算系统的组件的分层结构,并且在各种组件之间划分系统的可用存储器。 系统内存的这种划分是基于处理器和缓存层次结构在计算系统的高速缓存中创建独占的分区。 分区可以由不同的应用程序或相同应用程序的不同部分使用,以将访问的存储器存储在高速缓存中以进行快速检索。
    • 3. 发明授权
    • Method and apparatus to maximize power of a computer system for effective testing
    • 最大限度地提高计算机系统功率以进行有效测试的方法和装置
    • US08402292B2
    • 2013-03-19
    • US12580546
    • 2009-10-16
    • Alok ParikhAmandeep Singh
    • Alok ParikhAmandeep Singh
    • G06F1/26
    • G06F11/24
    • Implementations of the present invention may involve methods and systems to improve the combined power consumption and thermal response of individual components of a computer system as the components are stressed concurrently during simulation or testing of the system. A group of operating system-level instruction sets for several individual components of the computer system may be designed to stress the components and executed concurrently while power and thermal measurements are taken. The instruction sets may utilize one or more software threads of the computer system or hardware threads such that minimal interference between components occurs as the system is tested. Further, the system components may be partitioned between separate instruction sets. By minimizing the interference between the components while the system is operating, a more accurate power consumption and thermal effect measurements may be taken on the computer system to better approximate the performance of the system.
    • 本发明的实现可以涉及用于在模拟或测试系统期间同时强调组件的同时改善计算机系统的各个组件的组合功耗和热响应的方法和系统。 一组用于计算机系统的几个单独组件的操作系统级指令集可以设计成在进行功率和热测量时同时施加组件并同时执行。 指令集可以利用计算机系统的一个或多个软件线程或硬件线程,使得当系统被测试时,组件之间的最小干扰发生。 此外,系统组件可以在分开的指令集之间分区。 通过在系统运行时最小化组件之间的干扰,可以在计算机系统上进行更精确的功耗和热效应测量,以更好地近似系统的性能。