虚拟机热迁移算法原理及性能特点

Petter Svärd, B. Hudzia, Steve Walsh, Johan Tordsson, E. Elmroth
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引用次数: 46

摘要

自Clark等人在2005年首次演示以来,虚拟机的实时迁移已经成为管理程序的标准特性,并创建了一个活跃的研究领域。然而,正在进行的大量实时迁移研究主要集中在对已知技术的性能改进上,其中大多数是Clark方法的变体。为了使实时迁移超越增量性能改进,有必要更深入地了解实时迁移问题本身及其基本原则。为了解决这个问题,本文将退一步研究实时迁移的基本特征。本文确定了实时迁移的五个基本特性,并利用这些特性对三种实时迁移方法进行了调查、分类和比较:预拷贝、后拷贝和混合。评估的算法包括来自Clark的著名技术以及新颖的RDMA内核方法。我们对算法基本特性的分析通过一组实验得到了验证。在这些方法中,我们迁移具有大内存大小的虚拟机,以托管具有高页面污染率的工作负载,以暴露不同方法的差异和限制。最后,我们提供了在不同场景中使用哪种方法的指导方针。
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Principles and Performance Characteristics of Algorithms for Live VM Migration
Since first demonstrated by Clark et al. in 2005, live migration of virtual machines has both become a standard feature of hypervisors and created an active field of research. However, the rich ongoing research in live migration focusmainly on performance improvements to well-known techniques, most of them being variations of the Clark approach. In order to advance live migration beyond incremental performance improvements, it is important to gain a deeper understanding of the live migration problem itself and its underlying principles. To address this issue, this contribution takes a step back and investigates the essential characteristics of live migration. The paper identifies five fundamental properties of live migration and uses these to investigate, categorize, and compare three approaches to live migration: precopy, postcopy and hybrid. The evaluated algorithms include well-known techniques derived from that of Clark as well as novel RDMA in-kernel approaches. Our analysis of the fundamental properties of the algorithms is validated by a set of experiments. In these, we migrate virtual machines with large memory sizes hosting workloads with high page dirtying rates to expose differences and limitations of the different approaches. Finally, we provide guidelines for which approach to use in different scenarios.
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