A Fast Lock-Free Internal Binary Search Tree

Arunmoezhi Ramachandran, N. Mittal
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引用次数: 29

Abstract

We present a new lock-free algorithm for concurrent manipulation of a binary search tree in an asynchronous shared memory system that supports search, insert and delete operations. It combines ideas from two recently proposed lock-free algorithms: one of them provides good performance for a read-dominated workload and the other one for a write-dominated workload. Specifically, it uses internal representation of a search tree (as in the first one) and is based on marking edges instead of nodes (as in the second one). Our experiments indicate that our new lock-free algorithm outperforms other lock-free algorithms in most cases providing up to 35% improvement in some cases over the next best algorithm.
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一个快速无锁内部二叉搜索树
提出了一种新的无锁算法,用于异步共享内存系统中二叉搜索树的并发操作,该算法支持搜索、插入和删除操作。它结合了最近提出的两种无锁算法的思想:其中一种算法为以读为主的工作负载提供了良好的性能,另一种算法为以写为主的工作负载提供了良好的性能。具体来说,它使用搜索树的内部表示(如第一个),并且基于标记边缘而不是节点(如第二个)。我们的实验表明,我们的新无锁算法在大多数情况下优于其他无锁算法,在某些情况下比次优算法提高了35%。
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