Group mutual exclusion in linear time and space

Yuan He, K. Gopalakrishnan, E. Gafni
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引用次数: 7

Abstract

We present two algorithms for the Group Mutual Exclusion (GME) Problem that satisfy the properties of Mutual Exclusion, Starvation Freedom, Bounded Exit, Concurrent Entry and First Come First Served. Both our algorithms use only simple read and write instructions, have O(N) Shared Space complexity and O(N) Remote Memory Reference (RMR) complexity in the Cache Coherency (CC) model. Our first algorithm is developed by generalizing the well-known Lamport's Bakery Algorithm for the classical mutual exclusion problem, while preserving its simplicity and elegance. However, it uses unbounded shared registers. Our second algorithm uses only bounded registers and is developed by generalizing Taubenfeld's Black and White Bakery Algorithm to solve the classical mutual exclusion problem using only bounded shared registers. We show that contrary to common perception our algorithms are the first to achieve these properties with these combination of complexities.
线性时空中的群互斥
给出了满足互斥、饥饿自由、有界出口、并发进入和先到先得等性质的群互斥问题的两种算法。我们的两种算法都只使用简单的读写指令,在缓存一致性(CC)模型中具有O(N)共享空间复杂度和O(N)远程内存引用(RMR)复杂度。我们的第一个算法是通过推广著名的Lamport's Bakery算法来解决经典互斥问题,同时保持了它的简单和优雅。但是,它使用无界共享寄存器。我们的第二种算法仅使用有界寄存器,并通过推广Taubenfeld的黑白面包店算法来解决仅使用有界共享寄存器的经典互斥问题。我们表明,与通常的看法相反,我们的算法是第一个通过这些复杂性组合实现这些属性的算法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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