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On the speedup of single-disk failure recovery in XOR-coded storage systems: Theory and practice

机译:XOR编码存储系统中单磁盘故障恢复的加速:理论与实践

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Modern storage systems stripe redundant data across multiple disks to provide availability guarantees against disk failures. One form of data redundancy is based on XOR-based erasure codes, which use only XOR operations for encoding and decoding. In addition to providing failure tolerance, a storage system must also provide fast failure recovery to avoid data unavailability. We consider the problem of speeding up the recovery of a single-disk failure for arbitrary XOR-based erasure codes. We address this problem from both theoretical and practical perspectives. We propose a replace recovery algorithm, which uses a hill-climbing technique to search for a fast recovery solution, such that the solution search can be completed within a short time period. We further implement our replace recovery algorithm atop a parallelized architecture to justify its practicality. We experiment our replace recovery algorithm and its parallelized implementation on a networked storage system testbed, and demonstrate that our replace recovery algorithm uses less recovery time than the conventional approach.
机译:现代存储系统在多个磁盘上对冗余数据进行条带化,以提供针对磁盘故障的可用性保证。数据冗余的一种形式是基于基于XOR的擦除码,该擦除码仅使用XOR操作进行编码和解码。除了提供容错能力之外,存储系统还必须提供快速的故障恢复能力,以避免数据不可用。我们考虑为基于XOR的任意擦除代码加快恢复单个磁盘故障的问题。我们从理论和实践的角度来解决这个问题。我们提出了一种替换恢复算法,该算法使用爬山技术来搜索快速恢复解决方案,从而使解决方案搜索可以在短时间内完成。我们进一步在并行化架构之上实施替换恢复算法,以证明其实用性。我们在网络存储系统测试平台上对替换恢复算法及其并行实现进行了实验,并证明了与传统方法相比,替换恢复算法使用的恢复时间更少。

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