改进磁盘阵列更新性能的方法

J. Menon, J. Kasson
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引用次数: 45

摘要

磁盘阵列是一组磁盘驱动器(和控制器),当其中一个(或多个)磁盘驱动器出现故障时,可以自动恢复数据。磁盘阵列用来以比镜像更低的成本实现高可用性的一种方法是奇偶校验技术。这种数组的主要缺点是它们需要四次磁盘访问来更新数据块——两次读取旧数据和奇偶校验,两次写入新数据和奇偶校验。作者描述了四种新方法来提高使用奇偶校验技术的磁盘阵列的更新性能,从四次访问到三次,在某些情况下,到两次。所有的方案都降低了将修改过的数据和奇偶校验块写回原始位置的要求,从而牺牲磁盘存储效率来提高更新性能。最好的技术,称为“浮动奇偶校验磁道”,实现了大大改进的更新性能,而只使用比传统阵列多1%的磁盘空间。
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Methods for improved update performance of disk arrays
A disk array is a set of disk drives (and controller) which can automatically recover data when one (or more) disk drives in the set fails. One method used by disk arrays to achieve high availability at lower cost than mirroring is a parity technique. The main drawback of such arrays are that they need four disk accesses to update a data block-two to read old data and parity, and two to write new data and parity. The authors describe four new methods to improve the update performance of disk arrays that use the parity technique from four accesses to three and, in some cases, to two. All the schemes sacrifice disk storage efficiency for improved update performance by relaxing the requirement that the modified data and parity blocks be written back into their original locations. The best technique, called 'floating parity track', achieves much improved update performance while using only 1% more disk space than traditional arrays.<>
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