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HPC Performance Domains on Multi-core Processors with Virtualization

机译:具有虚拟化功能的多核处理器上的HPC性能域

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As the number of cores increases in multi-core processors, more applications execute at the same time. In this paper we present a simple and non-intrusive approach that guarantees performance isolation for High Performance Applications. This is achieved using virtualization by creating multiple virtual machines on the same processor, which can be seen as different Performance Domains. While previously this technique has been explored for increasing utilization, in this work we exploit it for improving performance of multiple co-executing applications. For the purpose of this work we have studied two different virtualization approaches: (ⅰ) conventional hosted virtualization and (ⅱ) bare-metal virtualization. To study the feasibility of this technique, we analyze the performance of applications when executing within a virtual machine. The isolation properties provided by both virtualization methods offer performance predictability for the executed applications. Our experimental results show that the performance overhead of executing on a virtualized environment is not significant, with the bare-metal virtualization resulting in an overhead of only 3%. Most importantly, virtualization is able to eliminate in some cases the negative effects of co-execution interference, thus applications running on virtual machines may achieve a better performance than running natively on the system.
机译:随着多核处理器中核数的增加,更多的应用程序将同时执行。在本文中,我们提出了一种简单且非侵入性的方法,该方法可确保高性能应用程序的性能隔离。通过在同一处理器上创建多个虚拟机(可以看作是不同的性能域)使用虚拟化来实现这一目标。尽管以前已经探索了该技术以提高利用率,但是在这项工作中,我们将其用于提高多个协同执行应用程序的性能。出于这项工作的目的,我们研究了两种不同的虚拟化方法:(ⅰ)常规托管虚拟化和(ⅱ)裸机虚拟化。为了研究此技术的可行性,我们分析了在虚拟机中执行时应用程序的性能。两种虚拟化方法提供的隔离属性为已执行的应用程序提供性能可预测性。我们的实验结果表明,在虚拟化环境上执行的性能开销并不重要,而裸机虚拟化仅导致3%的开销。最重要的是,虚拟化能够在某些情况下消除共执行干扰的负面影响,因此,与在系统上本地运行相比,在虚拟机上运行的应用程序可以获得更好的性能。

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