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HV~2M: A novel approach to boost inter-VM network performance for Xen-based HVMs

机译:HV〜2M:提高基于Xen的HVM的VM间网络性能的新颖方法

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摘要

Despite the rapid development and the wide use, visualization confronts new challenges on improving network I/O performance. For virtual machines co-existed on a server, inter-VM network performance turns out to be worse than expected. Although many efforts have been dedicated to that issue on par-avirtualized (PV) machines, HVMs (Hardware Virtual Machines) get less attention. However, co-resident HVMs are also suffering from low network I/O performance which troubles IaaS cloud infrastructure providers. Such problem is prominent as in the front-back network model several performance bottlenecks appear when inter-VM traffic is being handled. In this paper, we propose a novel approach and implement a prototype called "HV~2M" to optimize inter-HVM network performance, which mainly address the throughput issues. HV~2M takes advantages of the existing mechanisms for HVMs provided by Xen and is totally hardware independent. Unlike the existing idea, HV~2M pushes data to the receivers without using shared memory buffer to transfer the pending network data. To evaluate our work, we test and compare network response time, network throughput and CPU utilization with other popular approaches such as SR-IOV. The result shows that the new communication model has great improvements in network delay and throughput with little pressure on Domain-0.
机译:尽管发展迅速且用途广泛,但是可视化在提高网络I / O性能方面面临着新的挑战。对于服务器上共存的虚拟机,事实证明,VM间网络性能比预期的要差。尽管在半虚拟化(PV)机器上已为解决该问题做出了许多努力,但HVM(硬件虚拟机)却很少受到关注。但是,共同驻留的HVM也遭受网络I / O性能低下的困扰,这给IaaS云基础架构提供商带来了麻烦。这个问题很突出,因为在前后网络模型中处理虚拟机间流量时会出现一些性能瓶颈。在本文中,我们提出了一种新颖的方法,并实现了一个名为“ HV〜2M”的原型来优化HVM之间的网络性能,主要解决了吞吐量问题。 HV〜2M利用Xen提供的HVM现有机制的优势,并且完全独立于硬件。与现有想法不同,HV〜2M将数据推送到接收器,而无需使用共享内存缓冲区来传输未决的网络数据。为了评估我们的工作,我们测试并比较了网络响应时间,网络吞吐量和CPU利用率以及其他流行的方法,例如SR-IOV。结果表明,新的通信模型极大地改善了网络延迟和吞吐量,而对Domain-0的压力却很小。

著录项

  • 来源
    《The Journal of Systems and Software》 |2016年第4期|54-68|共15页
  • 作者单位

    School of Computer Science and Engineering, State Key Laboratory of Software Development Environment, Belhang University, Beijing, 100191, China ,Science and Technology on Information Transmission and Dissemination in Communication Networks Laboratory, Shijiazhuang 050081, China;

    School of Computer Science and Engineering, State Key Laboratory of Software Development Environment, Belhang University, Beijing, 100191, China ,Science and Technology on Information Transmission and Dissemination in Communication Networks Laboratory, Shijiazhuang 050081, China;

    School of Computer Science and Engineering, State Key Laboratory of Software Development Environment, Belhang University, Beijing, 100191, China;

    School of Computer Science and Engineering, State Key Laboratory of Software Development Environment, Belhang University, Beijing, 100191, China;

    School of Computing, Informatics, Decision Systems Engineering, Arizona State University, USA;

    School of Engineering, University of Pennsylvania, USA;

    Department of Computer Science and Engineering, University of California, San Diego, USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Virtualization; Xen; HVM; Network; I/O; Inter-VM communication;

    机译:虚拟化;Xen;HVM;网络;I / O;VM间通讯;

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