Improved Time Bounds for Linearizable Implementations of Abstract Data Types

Jiaqi Wang, Edward Talmage, Hyunyoung Lee, J. Welch
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引用次数: 9

Abstract

Linearizability is a well-known consistency condition for shared objects in concurrent systems. We focus on the problem of implementing linearizable objects of arbitrary data types in message-passing systems with bounded, but uncertain, message delay and bounded, but non-zero, clock skew. We present an algorithm that exploits axiomatic properties of different operations to reduce the running time of each operation below that obtainable with previously known algorithms. We also prove lower bounds on the time complexity of various kinds of operations, specified by the axioms they satisfy, resulting in reduced gaps in some cases and tight bounds in others.
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抽象数据类型线性化实现的改进时间界限
线性性是并发系统中共享对象的一致性条件。我们关注在消息传递系统中实现任意数据类型的线性对象的问题,该系统具有有界但不确定的消息延迟和有界但非零的时钟偏差。我们提出了一种算法,该算法利用不同操作的公理性质来减少每个操作的运行时间,低于以前已知算法所能获得的运行时间。我们还证明了各种操作的时间复杂度的下界,由它们所满足的公理指定,从而导致某些情况下的间隙减小而另一些情况下的边界很紧。
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