Path Oblivious Heap: Optimal and Practical Oblivious Priority Queue

E. Shi
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引用次数: 17

Abstract

We propose Path Oblivious Heap, an extremely simple, practical, and optimal oblivious priority queue. Our construction also implies a practical and optimal oblivious sorting algorithm which we call Path Oblivious Sort. Not only are our algorithms asymptotically optimal, we show that their practical performance is only a small constant factor worse than insecure baselines. More specificially, assuming roughly logarithmic client private storage, Path Oblivious Heap consumes 2× to 7× more bandwidth than the ordinary insecure binary heap; and Path Oblivious Sort consumes 4.5× to 6× more bandwidth than the insecure Merge Sort. We show that these performance results improve existing works by 1-2 orders of magnitude. Finally, we evaluate our algorithm for a multi-party computation scenario and show 7x to 8x reduction in the number of symmetric encryptions relative to the state of the art1.
路径无关堆:最优实用的无关优先队列
我们提出路径无关堆,一个非常简单,实用,最优的无关优先队列。我们的构造还暗示了一种实用的、最优的遗忘排序算法,我们称之为路径遗忘排序。我们的算法不仅是渐近最优的,而且我们表明它们的实际性能只比不安全基线差一个小的常数因子。更具体地说,假设客户端私有存储大致为对数,路径无关堆消耗的带宽比普通的不安全二进制堆多2到7倍;路径无关排序比不安全的归并排序多消耗4.5 ~ 6倍的带宽。我们表明,这些性能结果提高了现有作品的1-2个数量级。最后,我们针对多方计算场景评估了我们的算法,并显示相对于艺术状态,对称加密的数量减少了7到8倍。
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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