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Signcryption schemes with insider security in an ideal permutation model

机译:在理想的排列模型中具有内部安全性的签约方案

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Signcryption aims to provide both confidentiality and authentication of messages more efficiently than performing encryption and signing independently.The “Commit-then-Sign & Encrypt” (CtS&E) method allows to perform encryption and signing in parallel.Parallel execution of cryptographic algorithms decreases the computation time needed to signcrypt messages.CtS&E uses weaker cryptographic primitives in a generic way to achieve a strong security notion of signcryption.Various message pre-processing schemes, also known as message padding, have been used in signcryption as a commitment scheme in CtS&E.Due to its elegance and versatility, the sponge structure turns out to be a useful tool for designing new padding schemes such as SpAEP[T.?K. Bansal, D. Chang and S.?K. Sanadhya,Sponge based CCA2 secure asymmetric encryption for arbitrary length message,Information Security and Privacy – ACISP 2015,Lecture Notes in Comput. Sci. 9144,Springer, Berlin 2015, 93–106],while offering further avenues for optimization and parallelism in the context of signcryption.In this work, we design a generic and efficient signcryption scheme featuring parallel encryption and signature on top of a sponge-based message-padding underlying structure.Unlike other existing schemes, the proposed scheme also supports arbitrarily long messages.We prove the construction secure when instantiated from weakly secure asymmetric primitives such as a trapdoor one-way encryption and a universal unforgeable signature.With a careful analysis and simple tweaks, we demonstrate how different combinations of weakly secure probabilistic and deterministic encryption and signature schemes can be used to construct a strongly secure signcryption scheme, further broadening the choices of underlying primitives to cover essentially any combination thereof.To the best of our knowledge, this is the first signcryption scheme based on the sponge structure that also offers strong security using weakly secure underlying asymmetric primitives, even deterministic ones, along with the ability to handle long messages, efficiently.
机译:Signcreption旨在提供比执行加密和独立签名更有效的信息和身份验证。“提交的符号和加密”(CTS&E)方法允许执行加密并并行签名。加密算法的并行执行会降低签名消息所需的计算时间。CTS&E以通用方式使用较弱的加密原语来实现强烈的签名安全概念。各种消息预处理方案,也称为消息填充,已被用于CTS&E中的签名方案。由于其优雅和多功能性,海绵结构是设计新的填充方案的有用工具,例如Spaep[t.?k。 Bansal,D. chang和S.?k。 Sanadhya,基于海绵的CCA2安全的非对称加密,用于任意长度消息,信息安全和隐私 - ACISP 2015,计算中的讲义。 SCI。 9144,Springer,柏林2015,93-106],在签名的背景下提供进一步的途径以优化和并行性。在这项工作中,我们设计了一种在基于海绵的消息填充顶部结构的平行加密和签名中具有平行加密和签名的通用和高效的签名方案。与其他现有计划不同,所提出的方案也支持任意长的消息。我们证明了从弱安全的不对称基元等于诸如Trapdoor单向加密和通用不可监视的签名的弱牢固的不对称基元安全。通过仔细分析和简单的调整,我们展示了弱安全概率和确定性加密和签名方案的不同组合来构建强烈的签出方案,进一步扩展了基本上基本上的基元的选择。据我们所知,这是一种基于海绵结构的第一个Sorncryption方案,其使用弱安全的底层不对称原语,即使是确定性的,也提供了强大的安全性,以及有效地处理长信息的能力。

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