Adjustable Credit Scheduling for High Performance Network Virtualization

Zhibo Chang, Jian Li, Ruhui Ma, Zhi-Jian Huang, Haibing Guan
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引用次数: 12

Abstract

Virtualization technology is now widely adopted in cloud computing to support heterogeneous and dynamic workload. The scheduler in a virtual machine monitor (VMM) plays an important role in allocating resources. However, the type of applications in virtual machines (VM) is unknown to the scheduler, and I/O-intensive and CPU-intensive applications are treated the same. This makes virtual systems unable to take full advantage of high performance networks such as 10-Gigabit Ethernet. In this paper, we review the SR-IOV networking solution and show by experiment that the current credit scheduler in Xen does not utilize high performance networks efficiently. For this reason, we propose a novel scheduling model with two optimizations to eliminate the bottleneck caused by scheduler. In this model, guest domains are divided into I/O-intensive domains and CPU-intensive domains according to their monitored behaviour. I/O-intensive domains can obtain extra credits that CPU-intensive domains are willing to share. Besides, the total available credits is adjusted agilely to accelerate the I/O responsiveness. Our experimental evaluation with benchmarks shows that the new scheduling model improves bandwidth even when the system's load is very high.
面向高性能网络虚拟化的可调信用调度
虚拟化技术现在在云计算中被广泛采用,以支持异构和动态工作负载。虚拟机监视器(VMM)中的调度器在分配资源方面起着重要作用。但是,调度器不知道虚拟机(VM)中的应用程序类型,I/ o密集型应用程序和cpu密集型应用程序的处理方式是一样的。这使得虚拟系统无法充分利用高性能网络,如10千兆以太网。在本文中,我们回顾了SR-IOV网络解决方案,并通过实验证明了当前Xen中的信用调度程序没有有效地利用高性能网络。为此,我们提出了一种新的调度模型,通过两个优化来消除调度程序造成的瓶颈。在该模型中,根据监控的行为将客域划分为I/ o密集型域和cpu密集型域。I/ o密集型域可以获得cpu密集型域愿意共享的额外积分。此外,可以灵活地调整总可用信用额度,以加快I/O响应速度。我们的基准测试实验评估表明,即使在系统负载非常高的情况下,新的调度模型也能提高带宽。
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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