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Exploiting Data Deduplication to Accelerate Live Virtual Machine Migration

机译:利用重复数据删除来加速实时虚拟机迁移

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As one of the key characteristics of virtualization, live virtual machine (VM) migration provides great benefits for load balancing, power management, fault tolerance and other system maintenance issues in modern clusters and data centers. Although Pre-Copy is a widespread used migration algorithm, it does transfer a lot of duplicated memory image data from source to destination, which results in longer migration time and downtime. This paper proposes a novel VM migration approach, named Migration with Data Deduplication (MDD), which introduces data deduplication into migration. MDD utilizes the self-similarity of run-time memory image, uses hash based fingerprints to find identical and similar memory pages, and employs Run Length Encode (RLE) to eliminate redundant memory data during migration. Experiment demonstrates that compared with Xen''s default Pre-Copy migration algorithm, MDD can reduce 56.60% of total data transferred during migration, 34.93% of total migration time, and 26.16% of downtime on average.
机译:作为虚拟化的关键特性之一,实时虚拟机(VM)迁移可为现代集群和数据中心中的负载平衡,电源管理,容错和其他系统维护问题带来巨大好处。尽管Pre-Copy是一种广泛使用的迁移算法,但是它确实将许多重复的内存映像数据从源转移到目标,这导致更长的迁移时间和停机时间。本文提出了一种新颖的VM迁移方法,称为“带数据重复数据删除的迁移”(MDD),该方法将重复数据删除技术引入了迁移中。 MDD利用运行时内存映像的自相似性,使用基于哈希的指纹来查找相同和相似的内存页,并使用运行长度编码(RLE)来消除迁移期间的冗余内存数据。实验表明,与Xen的默认Pre-Copy迁移算法相比,MDD可以平均减少迁移期间传输的总数据的56.60%,总迁移时间的34.93%和平均停机时间的26.16%。

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