Union, intersection and refinement types and reasoning about type disjointness for secure protocol implementations

M. Backes, Catalin Hritcu, Matteo Maffei
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引用次数: 27

Abstract

We present a new type system for verifying the security of reference implementations of cryptographic protocols written in a core functional programming language. The type system combines prior work on refinement types, with union, intersection, and polymorphic types, and with the novel ability to reason statically about the disjointness of types. The increased expressivity enables the analysis of important protocol classes that were previously out of scope for the type-based analyses of reference protocol implementations. In particular, our types can statically characterize: i more usages of asymmetric cryptography, such as signatures of private data and encryptions of authenticated data; ii authenticity and integrity properties achieved by showing knowledge of secret data; iii applications based on zero-knowledge proofs. The type system comes with a mechanized proof of correctness and an efficient type-checker.
安全协议实现的并、交、精类型及类型不相交推理
我们提出了一种新型系统,用于验证用核心函数式编程语言编写的加密协议的参考实现的安全性。该类型系统结合了先前在细化类型、联合、交集和多态类型方面的工作,以及静态地推断类型的不连接性的新能力。增强的表达性支持对重要的协议类进行分析,而这些类以前超出了参考协议实现的基于类型分析的范围。特别是,我们的类型可以静态地描述非对称加密的更多用法,例如私有数据的签名和身份验证数据的加密;Ii通过显示对秘密数据的了解,实现真实性和完整性;Iii基于零知识证明的应用。类型系统带有一个机械化的正确性证明和一个有效的类型检查器。
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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