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    • 7. 发明授权
    • System and method to quantify digital data sharing in a multi-threaded execution
    • 在多线程执行中量化数字数据共享的系统和方法
    • US09535704B2
    • 2017-01-03
    • US14613066
    • 2015-02-03
    • Chen DingHao Luo
    • Chen DingHao Luo
    • G06F9/45G06F9/38G06F9/30
    • G06F9/3863G06F9/3001G06F9/30047G06F11/3404G06F11/3452G06F2201/865G06F2201/88G06F2201/885
    • A method to quantify a plurality of digital data sharing in a multi-threaded execution includes the steps of: providing at least one processor; providing a computer readable non-transitory storage medium including a computer readable multi-threaded executable code and a computer readable executable code to calculate a plurality of shared footprint values and an average shared footprint value; running the multi-threaded executable code on the at least one computer processor; running the computer readable executable code configured to calculate a plurality of shared footprint values and an average shared footprint value; calculating a plurality of shared footprint values by use of a linear-time process for a corresponding plurality of executable windows in time; and calculating and saving an average shared footprint value based on the plurality of shared footprint values to quantify by a metric the data sharing by the multi-threaded execution. A system to perform the method is also described.
    • 一种在多线程执行中量化多个数字数据共享的方法包括以下步骤:提供至少一个处理器; 提供包括计算机可读多线程可执行代码和计算机可读可执行代码的计算机可读非暂存存储介质,以计算多个共享足迹值和平均共享足迹值; 在所述至少一个计算机处理器上运行所述多线程可执行代码; 运行被配置为计算多个共享足迹值和平均共享足迹值的计算机可读可执行代码; 通过对时间上相应的多个可执行窗口的线性时间过程来计算多个共享足迹值; 以及基于所述多个共享足迹值来计算和保存平均共享足迹值,以通过所述多线程执行的度量来量化数据共享。 还描述了执行该方法的系统。
    • 8. 发明授权
    • Communication control device, information processing apparatus, parallel computer system, and control method for parallel computer system
    • 通信控制装置,信息处理装置,并行计算机系统以及并行计算机系统的控制方法
    • US09465675B2
    • 2016-10-11
    • US14538846
    • 2014-11-12
    • FUJITSU LIMITED
    • Hideki MiwaIkuo Miyoshi
    • G06F9/54G06F11/34
    • G06F9/54G06F9/546G06F11/3404G06F11/3423G06F11/3476
    • An arithmetic processing device executes a program, and gives first sequence information to a first start time when a first process included in the program starts a first interprocess communication. Then, the first start time and the first sequence information are written in a main storage device. When second sequence information given to a second start time when a second process starts a second interprocess communication is newer than the first sequence information, an operational circuit in a communication control device does not carry out an operation using the first start time. On the other hand, when the second sequence information corresponds to the first sequence information, the operational circuit carries out an operation using the first start time and the second start time and outputs the operation result.
    • 算术处理装置执行程序,并且当包括在程序中的第一处理开始第一进程间通信时,将第一序列信息提供给第一开始时间。 然后,将第一开始时间和第一序列信息写入主存储装置。 当第二处理开始第二进程通信的第二序列信息比第一序列信息更新时,通信控制装置中的运算电路不执行使用第一开始时间的操作。 另一方面,当第二序列信息对应于第一序列信息时,操作电路使用第一开始时间和第二开始时间进行操作,并输出运算结果。
    • 10. 发明授权
    • Parallelization and instrumentation in a producer graph oriented programming framework
    • 在生产者图形导向的编程框架中的并行化和检测
    • US09424050B2
    • 2016-08-23
    • US13669837
    • 2012-11-06
    • MUREX S.A.S.
    • Fady ChamiehElias Edde
    • G06F9/44G06F11/34
    • G06F9/4428G06F9/4488G06F9/4494G06F11/3404G06F11/3419G06F11/3428G06F11/3495G06F2201/865
    • Embodiments of parallelization and/or instrumentation in a producer graph oriented programming framework have been presented. In one embodiment, a request to run an application program is received, wherein object-oriented source code of the application program includes methods and producer dependency declarations, wherein the producer dependency declaration for a given method identifies a set of zero or more producers with outputs that are an input to the given method, wherein a producer is at least an instance and a method associated with that instance. Further, execution of the application program may be parallelized based on dependency between producers of the application program using the runtime. In some embodiments, the application program is instrumented using the runtime.
    • 已经介绍了生成器图形面向编程框架中的并行化和/或仪器化的实现。 在一个实施例中,接收运行应用程序的请求,其中应用程序的面向对象的源代码包括方法和生成器依赖性声明,其中给定方法的生成器依赖性声明识别具有输出的零个或多个生成器的集合 这是给定方法的输入,其中生产者至少是与该实例相关联的实例和方法。 此外,应用程序的执行可以基于使用运行时的应用程序的生成器之间的依赖性并行化。 在一些实施例中,使用运行时程序化应用程序。