Predicting the Performance Impact of Increasing Memory Bandwidth for Scientific Workflows

N. Gonzalez, J. Brunheroto, F. Artico, Yoonho Park, T. Carvalho, C. Miers, M. A. Pillon, G. Koslovski
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Abstract

The disparity between the bandwidth provided by modern processors and by the main memory led to the issue known as memory wall, in which application performance becomes completely bound by memory speed. Newer technologies are trying to increase memory bandwidth to address this issue, but the fact is that the effects of increasing bandwidth to application performance still lack exploration. This paper investigates these effects for scientific workflows focusing on the definition of a performance model and on the execution of experiments to validate the rationale for the model. The main contribution is based on two observations: memory bound applications benefit more from an increase to memory bandwidth, and the effects of improving bandwidth for a particular application gradually diminish as bandwidth is increased.
预测增加内存带宽对科学工作流的性能影响
现代处理器和主内存提供的带宽之间的差距导致了所谓的“内存墙”问题,即应用程序性能完全受内存速度的限制。新的技术正在尝试增加内存带宽来解决这个问题,但事实是,增加带宽对应用程序性能的影响仍然缺乏探索。本文研究了这些对科学工作流程的影响,重点是性能模型的定义和实验的执行,以验证模型的基本原理。主要贡献基于两个观察结果:内存绑定应用程序从内存带宽的增加中获益更多,并且随着带宽的增加,对特定应用程序提高带宽的影响逐渐减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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