Toward I/O-efficient protection against silent data corruptions in RAID arrays

Mingqiang Li, P. Lee
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引用次数: 9

Abstract

Although RAID is a well-known technique to protect data against disk errors, it is vulnerable to silent data corruptions that cannot be detected by disk drives. Existing integrity protection schemes designed for RAID arrays often introduce high I/O overhead. Our key insight is that by properly designing an integrity protection scheme that adapts to the read/write characteristics of storage workloads, the I/O overhead can be significantly mitigated. In view of this, this paper presents a systematic study on I/O-efficient integrity protection against silent data corruptions in RAID arrays. We formalize an integrity checking model, and justify that a large proportion of disk reads can be checked with simpler and more I/O-efficient integrity checking mechanisms. Based on this integrity checking model, we construct two integrity protection schemes that provide complementary performance advantages for storage workloads with different user write sizes. We further propose a quantitative method for choosing between the two schemes in real-world scenarios. Our trace-driven simulation results show that with the appropriate integrity protection scheme, we can reduce the I/O overhead to below 15%.
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迈向I/ o高效保护,防止RAID阵列中的静默数据损坏
尽管RAID是一种众所周知的保护数据不受磁盘错误影响的技术,但它很容易受到磁盘驱动器无法检测到的静默数据损坏的影响。为RAID阵列设计的现有完整性保护方案通常会带来很高的I/O开销。我们的关键见解是,通过适当地设计适应存储工作负载读/写特征的完整性保护方案,可以显著降低I/O开销。鉴于此,本文系统地研究了RAID阵列中I/ o高效完整性保护,以防止数据静默损坏。我们形式化了一个完整性检查模型,并证明可以使用更简单、I/ o效率更高的完整性检查机制来检查大部分磁盘读取。基于该完整性检查模型,我们构建了两种完整性保护方案,为不同用户写大小的存储工作负载提供互补的性能优势。我们进一步提出了一种定量方法,用于在现实场景中选择两种方案。我们的跟踪驱动仿真结果表明,使用适当的完整性保护方案,我们可以将I/O开销降低到15%以下。
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