Efficient chosen-ciphertext secure public-key encryption scheme with high leakage-resilience

Baodong Qin, Shengli Liu, Kefei Chen
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引用次数: 27

Abstract

A leakage-resilient public-key encryption (PKE) scheme provides security even if an adversary obtains some information on the secret key. In recent years, much attention has been focused on designing provably secure PKE in the presence of key-leakage and almost all the constructions rely on an important building block namely hash proof system (HPS). However, in the setting of adaptive chosen-ciphertext attacks (CCA2), there are not many HPS-based leakage-resilient PKE schemes available. Moreover, most of them have an unsatisfactory leakage rate. In this study, the authors propose a new method of constructing leakage-resilient CCA2-secure PKE scheme from any tag-based strongly universal 2 HPS. The striking advantage of the authors scheme is the leakage rate, which is the best one among all known HPS-based indistinguishability key leakage CCA2-secure constructions. In particular, they present an instantiation under the n -linear assumption. In the cases of n = 1 (resp. n = 2), they actually obtain a decisional Diffie-Hellman (DDH)-based [resp. decisional linear (DLIN)-based] PKE scheme, where the leakage rate can be made to 1/4 (resp. 1/6). The authors DDH-based scheme achieves the best leakage rate among all known DDH-based (Cramer-Shoup-type) schemes. Their DLIN-based scheme is the first one that can achieve leakage of L /6 bits without pairing, where L is the length of the secret key.
具有高防泄漏能力的高效选择密文安全公钥加密方案
防泄漏公钥加密(PKE)方案提供了安全性,即使攻击者获得了秘密密钥上的一些信息。近年来,在存在密钥泄露的情况下,设计可证明安全的PKE成为人们关注的焦点,几乎所有的PKE结构都依赖于一个重要的构建块,即哈希证明系统(HPS)。然而,在自适应选择密文攻击(CCA2)的情况下,基于hps的防泄漏PKE方案并不多。而且,大多数的泄漏率都不令人满意。在这项研究中,作者提出了一种从任何基于标签的强通用2hps构建泄漏弹性cca2安全PKE方案的新方法。该方案的显著优点是泄漏率高,是目前已知的基于hps的不可分辨密钥泄漏cca2安全结构中最好的一种。特别地,他们给出了n线性假设下的实例。在n = 1的情况下。n = 2),他们实际上得到了一个基于决策的Diffie-Hellman (DDH) [p. 2]。基于决策线性(DLIN)的PKE方案,其中泄漏率可以达到1/4 (resp。1/6)。作者提出的基于ddh的方案在所有已知的基于ddh的(cramer - shoup型)方案中实现了最好的泄漏率。他们基于dlin的方案是第一个可以实现L/6位不配对泄漏的方案,其中L是密钥的长度。
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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