基于线程的虚拟机实时检查点

Vasinee Siripoonya, K. Chanchio
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引用次数: 16

摘要

虚拟机检查指向是将虚拟机状态保存到文件以供以后恢复的机制。传统的检查点机制可能会造成长时间的延迟,并导致长时间的服务中断,因为它们必须停止虚拟机以保存状态,这可能会很大。在这项研究中,提出了一种新的基于线程的动态检查指向(TLC)机制。该机制利用了预复制实时迁移机制,引入了检查点线程,该线程负责大多数检查点活动。当检查点线程将虚拟机状态保存到持久存储时,允许虚拟机线程继续正常执行。但是,虚拟机线程将被定期中断,以增量方式将脏内存页复制到散列表中。中断将一直持续到检查点的最后阶段。这种方法在KVM中实现,其性能评估使用NAS并行基准进行。实验表明,这种方法可以在检查指向期间提供高水平的虚拟机响应。当在运行内存密集型工作负载的虚拟机上操作时,它还可以将检查指向开销降低到传统方法的0.53倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thread-Based Live Checkpointing of Virtual Machines
Virtual machine check pointing is the mechanism to save virtual machine state to a file for later recovery. Traditional check pointing mechanisms can suffer a long delay and cause a long disruption of services since they have to stop virtual machines to save state, which could be large. In this study, a novel Thread-based Live Check pointing (TLC) mechanism is proposed. This mechanism leverages the pre-copy live migration mechanism introducing a checkpoint thread, which is responsible for the majority of the check pointing activities. While the checkpoint thread is saving the virtual machine state to persistent storage, the virtual machine thread is allowed to progress with normal execution. However, the virtual machine thread will be periodically interrupted to incrementally copy dirty memory pages to a hash table. The interruptions will occur until the final stage of check pointing is reached. This approach is implemented in KVM and its performance evaluations are conducted using NAS parallel benchmarks. Experiments show that this approach can provide high levels of virtual machine responsiveness during check pointing. It can also reduce the check pointing overheads to as low as 0.53 times of that of the traditional approach, when operating on a virtual machine running memory intensive workloads.
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