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Universally composable security: a new paradigm for cryptographic protocols

机译:普遍是可协增的安全性:加密协议的新范式

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We propose a novel paradigm for defining security of cryptographic protocols, called universally composable security. The salient property of universally composable definitions of security is that they guarantee security even when a secure protocol is composed of an arbitrary set of protocols, or more generally when the protocol is used as a component of an arbitrary system. This is an essential property for maintaining security of cryptographic protocols in complex and unpredictable environments such as the Internet. In particular, universally composable definitions guarantee security even when an unbounded number of protocol instances are executed concurrently in an adversarially controlled manner, they guarantee non-malleability with respect to arbitrary protocols, and more. We show how to formulate universally composable definitions of security for practically any cryptographic task. Furthermore, we demonstrate that practically any such definition can be realized using known techniques, as long as only a minority of the participants are corrupted. We then proceed to formulate universally composable definitions of a wide array of cryptographic tasks, including authenticated and secure communication, key-exchange, public-key encryption, signature, commitment, oblivious transfer, zero knowledge and more. We also make initial steps towards studying the realizability of the proposed definitions in various settings.
机译:我们提出了一种用于定义加密协议的安全性的新型范例,称为普遍可协调的安全性。普遍可商品定义的安全性的突出性是,即使在安全协议由一组任意协议组成时,它们也可以保证安全性,或者在协议用作任意系统的组件时,即使是当任意系统的组件。这是维护复杂和不可预测环境中的加密协议安全性的重要属性,例如互联网。特别地,即使在惯常控制的方式同时执行未染色的协议实例时,也可以保证安全性的普遍可编程定义安全性,它们保证了关于任意协议的非延伸性等等。我们展示了如何为几乎所有加密任务制定普遍的可组合的安全定义。此外,我们证明了实际上可以使用已知技术来实现任何此类定义,只要只有少数参与者损坏。然后,我们继续制定广泛的加密任务的普遍可组合定义,包括经过身份验证和安全的通信,密钥交换,公钥加密,签名,承诺,不知情转移,零知识等。我们还致力于研究各种设置中所提出的定义的可实现性的初步步骤。

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