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Reducing Storage Overhead with Small Write Bottleneck Avoiding in Cloud RAID System

机译:减少Cloud RAID系统中的写入瓶颈,减少存储开销

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Cloud storage systems commonly use replication of stored data sets to ensure high reliability and availability. However, the high storage overhead of replication becomes increasingly unacceptable with the explosive growth of data stored in cloud. Some cloud storage systems have attempted to replace replication with erasure coding to reduce storage overhead, that is just the thinking behind Cloud RAID. A well-designed Cloud RAID mechanism should achieve the right tradeoffs between storage efficiency, performance, and reliability. As there exists no widely-accepted methods for Cloud RAID, we present a workloads-based Cloud RAID schema¨CSelective Cloud RAID (SCR for short). SCR treats primary storage and backup storage with different RAIDmethods, the former at the level of directories, and the latter at the level of individual files. SCR has three distinct advantages over previous attempts at Cloud RAID: (1) it can significantly reduce the storage overhead compared with threeway replication, (2) it can avoid most cases of the "small write bottleneck" and simplify system maintenance, (3) its implementation is modular, therefore, it is easy to configure different erasure codes for different workloads. Additionally, we have implemented a SCR prototype with RDP code, which shows significant benefits over Blaum-Roth codes in degraded read performance. To verify the effectiveness of SCR, we perform theoretical analysis and elaborate benchmark tests to evaluate the performance of SCR prototype.
机译:云存储系统通常使用存储数据集的复制来确保高可靠性和可用性。但是,随着云中存储数据的爆炸性增长,复制的高存储开销变得越来越难以接受。一些云存储系统试图用擦除编码代替复制以减少存储开销,这只是Cloud RAID的思想。精心设计的Cloud RAID机制应在存储效率,性能和可靠性之间实现正确的权衡。由于没有广泛接受的Cloud RAID方法,因此我们提出了一种基于工作负载的Cloud RAID模式-CSelective Cloud RAID(简称SCR)。 SCR使​​用不同的RAID方法处理主存储和备份存储,前一种在目录级别,而后一种在单个文件级别。与以前的Cloud RAID尝试相比,SCR具有三个明显的优势:(1)与三向复制相比,它可以显着减少存储开销;(2)它可以避免大多数情况下的“小写瓶颈”并简化系统维护,(3)它的实现是模块化的,因此很容易为不同的工作负载配置不同的擦除代码。此外,我们已经实现了带有RDP代码的SCR原型,该原型在降低的读取性能方面显示了优于Blaum-Roth代码的显着优势。为了验证SCR的有效性,我们进行了理论分析和精心设计的基准测试,以评估SCR原型的性能。

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