实用并行Lempel-Ziv分解

Julian Shun, Fuyao Zhao
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引用次数: 19

摘要

在大数据时代,对高效数据压缩算法的需求日益增长。一种广泛使用的数据压缩方法是Lempel-Ziv-77 (LZ77)方法,它是gzip和PKZIP等流行压缩包中的子例程。最近有很多人致力于开发用于Lempel-Ziv分解(相当于LZ77压缩)的实用顺序算法,但在实际并行实现方面的研究并不令人满意。在这项工作中,我们提出了一个简单的工作效率并行算法的Lempel-Ziv分解。我们从理论上证明,我们的算法需要线性工作,对于常数字母,运行时间为O(log2 n)(随机化),运行时间为O(nλ) (λ <;1)整数字母。实验结果表明,我们的算法是有效的,并且相对于最佳顺序实现的Lempel-Ziv分解获得了良好的加速。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Practical Parallel Lempel-Ziv Factorization
In the age of big data, the need for efficient data compression algorithms has grown. A widely used data compression method is the Lempel-Ziv-77 (LZ77) method, being a subroutine in popular compression packages such as gzip and PKZIP. There has been a lot of recent effort on developing practical sequential algorithms for Lempel-Ziv factorization (equivalent to LZ77 compression), but research in practical parallel implementations has been less satisfactory. In this work, we present a simple work-efficient parallel algorithm for Lempel-Ziv factorization. We show theoretically that our algorithm requires linear work and runs in O(log2 n) time (randomized) for constant alphabets and O(nϵ) time (ϵ <; 1) for integer alphabets. We present experimental results showing that our algorithm is efficient and achieves good speedup with respect to the best sequential implementations of Lempel-Ziv factorization.
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