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The Impact of System Design Parameters on Application Noise Sensitivity

机译:系统设计参数对应用噪声灵敏度的影响

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Operating system noise, or ȁC;jitter,ȁD; is a key limiter of application scalability in high end computing systems. Several studies have attempted to quantify the sources and effects of system interference, though few of these studies show the influence that architectural and system characteristics have on the impact of OS noise at scale. In this paper, we examine the impact of three such system properties: platform balance, ȁC;noisyȁD; node distribution, and non-blocking collective operations. Using a previouslydeveloped noise injection tool, we explore how the impact of noise varies with these platform characteristics. We provide detailed performance results that indicate that a system with relatively less network bandwidth is able to absorb more noise than a system with more network bandwidth. Our results also show that application performance can be significantly degraded by only a subset of noisy nodes. Furthermore, the placement of the noisy nodes is also important, especially for applications that make substantial use of collective communication operations that are tree-based. Lastly, performance results indicate that nonblocking collective operations have the ability to greatly mitigate the impact of OS interference. Combined, these results show that the impact of OS noise is not solely a property of application communication behavior, but is also influenced by other properties of the system architecture and system software environment.
机译:操作系统噪声,或ȁC;抖动,ȁD;是高端计算系统中应用程序可伸缩性的关键限制因素。几项研究试图量化系统干扰的来源和影响,尽管这些研究中很少有研究表明体系结构和系统特性对OS噪声的影响具有大规模的影响。在本文中,我们研究了三个这样的系统属性的影响:平台平衡,ȁC;噪声ȁD;以及节点分布和非阻塞的集体行动。使用以前开发的噪声注入工具,我们探索了噪声的影响如何随这些平台特性而变化。我们提供的详细性能结果表明,网络带宽相对较小的系统比网络带宽较大的系统能够吸收更多的噪声。我们的结果还表明,只有一小部分嘈杂的节点才能显着降低应用程序的性能。此外,噪声节点的放置也很重要,特别是对于大量使用基于树的集体通信操作的应用程序而言。最后,性能结果表明,无阻塞的集体操作具有极大地减轻OS干扰影响的能力。综合起来,这些结果表明,操作系统噪声的影响不仅是应用程序通信行为的属性,而且还受到系统体系结构和系统软件环境的其他属性的影响。

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