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ALV: A New Data Redistribution Approach to RAID-5 Scaling

机译:ALV:RAID-5扩展的新数据重新分配方法

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When a RAID-5 volume is scaled up with added disks, data have to be redistributed from original disks to all disks including the original and the new. Existing online scaling techniques suffer from long redistribution times as well as negative impacts on application performance. By leveraging our insight into a reordering window, this paper presents ALV, a new data redistribution approach to RAID-5 scaling. The reordering window is a result of the natural space hole as data being redistributed, and it grows in size. The data inside the reordering window can migrate in any order without overwriting other in-use data chunks. The ALV approach exploits three novel techniques. First, ALV changes the movement order of data chunks to access multiple successive chunks via a single I/O. Second, ALV updates mapping metadata lazily to minimize the number of metadata writes while ensuring data consistency. Third, ALV uses an on/off logical valve to adaptively adjust the redistribution rate depending on application workload. We implemented ALV in Linux Kernel 2.6.18 and evaluated its performance by replaying three real-system traces: TPC-C, Cello-99, and SPC-Web. The results demonstrated that ALV outperformed the conventional approach consistently by 53.31-73.91 percent in user response time and by 24.07-29.27 percent in redistribution time.
机译:使用添加的磁盘按比例扩展RAID-5卷时,必须将数据从原始磁盘重新分发到所有磁盘,包括原始磁盘和新磁盘。现有的在线扩展技术遭受重新分配时间长以及对应用程序性能的负面影响的困扰。通过利用我们对重新排序窗口的洞察力,本文提出了ALV,一种用于RAID-5扩展的新数据重新分配方法。重新排序窗口是自然空间空洞的结果,因为数据被重新分配,并且它的大小不断增加。重新排序窗口中的数据可以按任何顺序迁移,而不会覆盖其他正在使用的数据块。 ALV方法利用了三种新颖的技术。首先,ALV更改数据块的移动顺序,以通过单个I / O访问多个连续的块。其次,ALV延迟更新映射元数据以最大程度地减少元数据写入次数,同时确保数据一致性。第三,ALV使用开/关逻辑阀根据应用程序的工作量自适应地调整重新分配速率。我们在Linux Kernel 2.6.18中实现了ALV,并通过重播三个真实系统跟踪来评估其性能:TPC-C,Cello-99和SPC-Web。结果表明,ALV在用户响应时间方面始终优于传统方法,分别达到53.31-73.91%,在重新分配时间方面达到24.07-29.27%。

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