重复独立运行信息泄漏的严格约束

David M. Smith, Geoffrey Smith
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引用次数: 8

摘要

我们研究了定量信息流中的一个问题,即找出具有b列的通道C的n次重复独立运行所造成的最大信息泄漏。虽然这种情况是普遍感兴趣的,但它特别受到使用称为盲化和桶化的对策实现的加密计时攻击的研究的推动。我们根据乘法贝叶斯容量(也称为最小容量)来测量泄漏,并且我们证明了大大改进了先前已知的紧边界。为了能够有效地计算我们的新边界,我们使用解析组合技术来研究它们,证明它们满足一个有用的递归式,并且(当b = 2时)与Ramanujan的q函数密切相关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Tight Bounds on Information Leakage from Repeated Independent Runs
We investigate a problem in quantitative information flow, namely to find the maximum information leakage caused by n repeated independent runs of a channel C with b columns. While this scenario is of general interest, it is particularly motivated by the study of timing attacks on cryptography implemented using the countermeasures known as blinding and bucketing. We measure leakage in terms of multiplicative Bayes capacity (also known as min-capacity) and we prove tight bounds that greatly improve the previously-known ones. To enable efficient computation of our new bounds, we investigate them using techniques of analytic combinatorics, proving that they satisfy a useful recurrence and (when b = 2) a close connection to Ramanujan's Q-function.
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