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The Dancing Bear: A New Way of Composing Ciphers

机译:跳舞熊:编写密码的新方式

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This note presents a new way of composing cryptographic primitives which makes some novel combinations possible. For example, one can do threshold decryption using standard block ciphers, or using an arbitrary mix of different decryption algorithms - such as any three keys out of two AES keys, a 3DES key, an RSA key and a one-time pad. We also provide a new way to combine different types of primitive, such as encryption and signature. For example, Alice can construct a convertible signature that only Bob can verify, but which he can make world-verifiable using an AES key. We can incorporate even more exotic primitives, such as micropayments and puzzles, into compound constructs. Previously, there had been two basic ways to combine cryptographic primitives. One could either design a compound primitive, perhaps using the homomorphic properties of discrete exponentiation, or one could embed several primitives into a protocol. Neither is ideal for all applications, and both have been extremely vulnerable to design errors. We provide a third construction that also allows the designer to do new things.We show, for example, how to incorporate cyclic dominance into a cryptographic mechanism, and how it might be used in a digital election scheme. Our new construction not only complements existing ways of composing crypto primitives; it also has the virtue of simplicity.
机译:本说明介绍了构成加密原语的新方式,这可能成为一些新的组合。例如,可以使用标准块密码或使用不同解密算法的任意混合进行阈值解密 - 例如两个AES键,3DES键,RSA键和一次性焊盘中的任何三个键。我们还提供了一种新的方式来组合不同类型的原始,如加密和签名。例如,Alice可以构建只有BOB可以验证的可转换签名,但是他可以使用AES密钥进行世界可验证的。我们可以将更多的异乎寻常的原语(例如微挖和难题)纳入复合构建体。此前,有两种基本方法来结合加密基元。可以设计复合原语,或许使用离散指数的同态性能,或者可以将若干原语嵌入一个方案中。所有应用程序都不是理想的,两者都非常容易受到设计错误。我们提供第三种结构,也允许设计师做新的事情。我们展示了如何将循环优势纳入加密机制,以及如何在数字选举方案中使用。我们的新施工不仅补充了编写加密原语的现有方式;它也具有简单性的美德。

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