低延迟、高可用性业务的rRVM反向复制

Muyang He, Shaoning Pang, Denis Lavrov, Ding Lu, Yuan Zhang, A. Sarrafzadeh
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引用次数: 9

摘要

虚拟化通过封装受保护服务的虚拟机(VM)检查点的迭代复制,提供了一种实现高可用性的直接方法。不幸的是,传统的VM复制解决方案在响应延迟或状态恢复一致性方面存在缺陷,这限制了VM复制在生产中的采用。在本文中,我们将备用主机的功能扩展为网络请求的主要接收者,以便备用主机以网络数据包的形式保留主虚拟机(PVM)的状态。为此,我们重新设计了用于虚拟机复制的典型一致性模型和网络架构。其中,备用主机用于网络重定向和报文记录。如果主主机发生故障,记录的数据包将用于在备用主机上重新创建状态。实验结果表明,实时容错系统具有较强的恢复一致性和较低的响应延迟。我们将该系统命名为虚拟机反向复制(rRVM)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reverse Replication of Virtual Machines (rRVM) for Low Latency and High Availability Services
Virtualization supplies a straightforward approach to high availability through iterative replications of virtual machine (VM) checkpoints that encapsulate the protected services. Unfortunately, traditional VM replication solutions suffer from deficiencies in either response latency or state recovery consistency, which constrains the adoption of VM replication in production. In this paper, we extend the function of the secondary host to be the primary recipient of network requests so that the state of the primary VM (PVM) is retained by the secondary host in the form of network packets. In doing this, we redesign the typical consistency model and network architecture for virtual machine replication. Specifically, the secondary host is set for network redirection and packets recording. Should the primary host fail, the recorded packets are used to recreate the state on the secondary host. Experiments in this research demonstrate simultaneously strong recovery consistency and low response latency in our real-time fault tolerance system. We name the system reverse replication of virtual machines (rRVM).
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