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首页> 外文期刊>IEEE Transactions on Computers >On the Memory Access Patterns of Supercomputer Applications: Benchmark Selection and Its Implications
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On the Memory Access Patterns of Supercomputer Applications: Benchmark Selection and Its Implications

机译:超级计算机应用程序的内存访问模式:基准测试选择及其含义

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摘要

This paper compares the System Performance Evaluation Cooperative (SPEC) Integer and Floating-Point suites to a set of real-world applications for high-performance computing at Sandia National Laboratories. These applications focus on the high-end scientific and engineering domains; however, the techniques presented in this paper are applicable to any application domain. The applications are compared in terms of three memory properties: 1) temporal locality (or reuse over time), 2) spatial locality (or the use of data "near驴 data that has already been accessed), and 3) data intensiveness (or the number of unique bytes the application accesses). The results show that real-world applications exhibit significantly less spatial locality, often exhibit less temporal locality, and have much larger data sets than the SPEC benchmark suite. They further quantitatively demonstrate the memory properties of real supercomputing applications.
机译:本文将系统性能评估合作社(SPEC)整数和浮点套件与Sandia国家实验室的一组高性能计算的实际应用进行了比较。这些应用程序专注于高端科学和工程领域。但是,本文介绍的技术适用于任何应用领域。根据三种内存属性对应用程序进行了比较:1)时间局部性(或随着时间的重用),2)空间局部性(或使用数据“已访问的近驴数据”)和3)数据密集度(或结果表明,与SPEC基准测试套件相比,真实世界中的应用程序具有显着更少的空间局部性,常常仅具有较小的时间局部性和更大的数据集,从而进一步定量地证明了应用程序的内存特性。真正的超级计算应用程序。

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