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首页> 外文期刊>ACM Transactions on Storage >STAIR Codes: A General Family of Erasure Codes for Tolerating Device and Sector Failures
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STAIR Codes: A General Family of Erasure Codes for Tolerating Device and Sector Failures

机译:楼梯代码:容忍设备和扇区故障的通用擦除代码系列

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Practical storage systems often adopt erasure codes to tolerate device failures and sector failures, both of which are prevalent in the field. However, traditional erasure codes employ device-level redundancy to protect against sector failures, and hence incur significant space overhead. Recent sector-disk (SD) codes are available only for limited configurations. By making a relaxed but practical assumption, we construct a general family of erasure codes called STAIR codes, which efficiently and provably tolerate both device and sector failures without any restriction on the size of a storage array and the numbers of tolerable device failures and sector failures. We propose the upstairs encoding and downstairs encoding methods, which provide complementary performance advantages for different configurations. We conduct extensive experiments on STAIR codes in terms of space saving, encoding/decoding speed, and update cost. We demonstrate that STAIR codes not only improve space efficiency over traditional erasure codes, but also provide better computational efficiency than SD codes based on our special code construction. Finally, we present analytical models that characterize the reliability of STAIR codes, and show that the support of a wider range of configurations by STAIR codes is critical for tolerating sector failure bursts discovered in the field.
机译:实际的存储系统通常采用擦除代码来容忍设备故障和扇区故障,这两种故障在现场都很普遍。但是,传统的擦除代码采用设备级冗余来防止扇区故障,因此会产生大量的空间开销。最近的扇区磁盘(SD)代码仅适用于有限的配置。通过一个宽松但实际的假设,我们构建了一个称为STAIR码的通用擦除码系列,该码有效且可证明地容忍了设备和扇区故障,而对存储阵列的大小以及可容忍的设备故障和扇区故障的数量没有任何限制。我们提出了楼上编码和楼下编码方法,它们为不同的配置提供了互补的性能优势。我们在节省空间,编码/解码速度和更新成本方面对STAIR代码进行了广泛的实验。我们证明,基于我们的特殊代码构造,STAIR代码不仅比传统的擦除代码提高了空间效率,而且比SD代码提供了更好的计算效率。最后,我们提出了表征STAIR代码可靠性的分析模型,并表明STAIR代码支持更广泛的配置对于容忍在现场发现的扇区故障突发至关重要。

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