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Virtualizing Modern High-Speed Interconnection Networks with Performance and Scalability

机译:具有性能和可伸缩性的虚拟化现代高速互连网络

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As one of the most important enabling technologies of cloud computing, virtualization brings to HPC good manageability, online system maintenance, performance isolation and fault isolation. Furthermore, previous study on VMM-bypass I/O that virtualizes OS-bypass networks (e.g. InfiniBand) relieved the worry of performance degradation coming along with virtualization. In this paper, we address the scalability challenges imposed upon OS-bypass networks under virtualized environments. The eXtended Reliable Connection (XRC) transport, proposed in modern high-speed interconnection networks to address the scalability problem in large scale applications, would not work in virtualized environments. To solve the problem, we propose VM-proof XRC design to eliminate the scalability gap between virtualized and native environments. Prototype evaluation shows that the virtualization of modern high-speed interconnection networks could get the same raw performance and scalability as in native non-virtualized environment with our VM-proof XRC design. The connection memory scalability shows a potential of 16 times improvement on virtualized clusters composed of 16-core nodes.
机译:作为云计算最重要的支持技术之一,虚拟化为HPC带来了良好的可管理性,在线系统维护,性能隔离和故障隔离。此外,先前有关虚拟化OS-bypass网络(例如InfiniBand)的VMM-bypass I / O的研究消除了虚拟化带来的性能下降的担忧。在本文中,我们解决了虚拟化环境下对OS-bypass网络施加的可伸缩性挑战。在现代高速互连网络中提出的扩展可靠连接(XRC)传输旨在解决大规模应用程序中的可伸缩性问题,在虚拟化环境中不起作用。为解决该问题,我们提出了防VM XRC设计,以消除虚拟化环境与本机环境之间的可伸缩性差距。原型评估表明,采用我们的VM防护XRC设计,现代高速互连网络的虚拟化可以获得与本地非虚拟化环境相同的原始性能和可扩展性。连接内存的可伸缩性显示,在由16个核心节点组成的虚拟化群集上,其潜力可提高16倍。

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