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EVENODD: An Efficient Scheme for Tolerating Double Disk Failures in RAID Architectures

机译:EVENODD:在RAID体系结构中容忍双磁盘故障的有效方案

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摘要

We present a novel method, that we call EVENODD, for tolerating up to two disk failures in RAID architectures. EVENODD employs the addition of only two redundant disks and consists of simple exclusive-OR computations. This redundant storage is optimal, in the sense that two failed disks cannot be retrieved with less than two redundant disks. A major advantage of EVENODD is that it only requires parity hardware, which is typically present in standard RAID-5 controllers. Hence, EVENODD can be implemented on standard RAID-5 controllers without any hardware changes. The most commonly used scheme that employes optimal redundant storage (i.e., two extra disks) is based on Reed-Solomon (RS) error-correcting codes. This scheme requires computation over finite fields and results in a more complex implementation. For example, we show that the complexity of implementing EVENODD in a disk array with 15 disks is about 50% of the one required when using the RS scheme. The new scheme is not limited to RAID architectures: it can be used in any system requiring large symbols and relatively short codes, for instance, in multitrack magnetic recording. To this end, we also present a decoding algorithm for one column (track) in error.
机译:我们提出了一种新颖的方法,称为EVENODD,它可以容忍RAID体系结构中的两个磁盘故障。 EVENODD仅添加了两个冗余磁盘,并由简单的异或计算组成。从不能用少于两个冗余磁盘来检索两个故障磁盘的意义上说,该冗余存储是最佳的。 EVENODD的主要优点是它仅需要奇偶校验硬件,通常在标准RAID-5控制器中存在。因此,EVENODD可以在标准RAID-5控制器上实现,而无需任何硬件更改。采用最佳冗余存储(即两个额外的磁盘)的最常用方案是基于Reed-Solomon(RS)纠错码。该方案需要在有限域上进行计算,并导致更复杂的实现。例如,我们表明,在具有15个磁盘的磁盘阵列中实现EVENODD的复杂度约为使用RS方案时所需磁盘复杂度的50%。新方案不限于RAID体系结构:它可以用于需要大符号和相对短代码的任何系统中,例如在多磁道磁记录中。为此,我们还提出了一种针对错误的一列(轨道)的解码算法。

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