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From Stateless to Stateful: Generic Authentication and Authenticated Encryption Constructions with Application to TLS

机译:从无状态到状态:通用身份验证和经过身份验证的加密结构,其应用于TLS

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Authentication and authenticated encryption with associated data (AEAD) are applied in cryptographic protocols to provide message integrity. The definitions in the literature and the constructions used in practice all protect against forgeries, but offer varying levels of protection against replays, reordering, and drops. As a result of the lack of a systematic hierarchy of authentication and AEAD security notions, gaps have arisen in the literature, specifically in the provable security analysis of the Transport Layer Security (TLS) protocol. We present a hierarchy of authentication and AEAD security notions, interpolating between the lowest level of protection (against forgeries) and the highest level (against forgeries, replays, reordering, and drops). We show generically how to construct higher level schemes from a basic scheme and appropriate use of sequence numbers, and apply that to close the gap in the analysis of TLS record layer encryption.
机译:使用关联数据(AEAD)的身份验证和经过身份验证的加密应用于加密协议以提供消息完整性。文献中的定义和实践中使用的结构所有防止伪造者,但为重播,重新排序和下降提供不同程度的保护。由于缺乏认证和AEAD安全概念的系统层次,文献中出现了间隙,特别是在传输层安全性(TLS)协议的可提供安全分析中。我们提出了身份验证和AEAD安全概述的层次结构,在最低级别的保护(反对伪造)和最高级别(针对伪造,重放,重新排序和丢弃)之间的层次结构。我们仿文地显示了如何从基本方案构建更高级别的方案,并适当使用序列号,并应用于关闭TLS记录层加密分析中的间隙。

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