A general technique for non-blocking trees

Trevor Brown, Faith Ellen, E. Ruppert
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引用次数: 103

Abstract

We describe a general technique for obtaining provably correct, non-blocking implementations of a large class of tree data structures where pointers are directed from parents to children. Updates are permitted to modify any contiguous portion of the tree atomically. Our non-blocking algorithms make use of the LLX, SCX and VLX primitives, which are multi-word generalizations of the standard LL, SC and VL primitives and have been implemented from single-word CAS. To illustrate our technique, we describe how it can be used in a fairly straightforward way to obtain a non-blocking implementation of a chromatic tree, which is a relaxed variant of a red-black tree. The height of the tree at any time is O(c + log n), where n is the number of keys and c is the number of updates in progress. We provide an experimental performance analysis which demonstrates that our Java implementation of a chromatic tree rivals, and often significantly outperforms, other leading concurrent dictionaries.
非阻塞树的一般技术
我们描述了一种通用技术,用于获得可证明正确的、非阻塞的大型树数据结构类的实现,其中指针从父指针指向子指针。允许更新以原子方式修改树的任何连续部分。我们的非阻塞算法使用LLX、SCX和VLX原语,它们是标准LL、SC和VL原语的多词泛化,并从单词CAS中实现。为了说明我们的技术,我们描述了如何以一种相当直接的方式使用它来获得色树的非阻塞实现,色树是红黑树的一种轻松变体。任何时候树的高度都是O(c + log n),其中n是键的个数,c是正在进行的更新的个数。我们提供了一个实验性的性能分析,它证明了我们的色树Java实现可以与其他领先的并发字典相媲美,并且通常显著优于它们。
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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