Generic Semantic Security against a Kleptographic Adversary

A. Russell, Qiang Tang, M. Yung, Hong-Sheng Zhou
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引用次数: 56

Abstract

Notable recent security incidents have generated intense interest in adversaries which attempt to subvert---perhaps covertly---crypto\-graphic algorithms. In this paper we develop (IND-CPA) Semantically Secure encryption in this challenging setting. This fundamental encryption primitive has been previously studied in the "kleptographic setting," though existing results must relax the model by introducing trusted components or otherwise constraining the subversion power of the adversary: designing a Public Key System that is kletographically semantically secure (with minimal trust) has remained elusive to date. In this work, we finally achieve such systems, even when all relevant cryptographic algorithms are subject to adversarial (kleptographic) subversion. To this end we exploit novel inter-component randomized cryptographic checking techniques (with an offline checking component), combined with common and simple software engineering modular programming techniques (applied to the system's black box specification level). Moreover, our methodology yields a strong generic technique for the preservation of any semantically secure cryptosystem when incorporated into the strong kleptographic adversary setting.
针对盗窃对手的通用语义安全性
最近一些值得注意的安全事件引起了人们对试图颠覆(可能是秘密地)加密图形算法的对手的强烈兴趣。在本文中,我们开发了(IND-CPA)语义安全加密。这个基本的加密原语之前已经在“窃密设置”中进行了研究,尽管现有的结果必须通过引入可信组件或以其他方式限制对手的颠覆能力来放松模型:设计一个在窃密语义上安全(具有最小信任)的公钥系统迄今为止仍然难以捉摸。在这项工作中,我们最终实现了这样的系统,即使所有相关的加密算法都受到对抗性(盗窃)的颠覆。为此,我们开发了新颖的组件间随机密码检查技术(使用离线检查组件),并结合了常见和简单的软件工程模块化编程技术(应用于系统的黑盒规范级别)。此外,我们的方法产生了一种强大的通用技术,用于保存任何语义安全的密码系统,当合并到强窃密对手设置中。
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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