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Bringing Order to Chaos: The Case of Collision-Resistant Chameleon-Hashes

机译:整理混乱:抗冲突变色龙哈希的案例

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Chameleon-hash functions, introduced by Krawczyk and Rabin at NDSS 2000, are trapdoor collision-resistant hash-functions parametrized by a public key. If the corresponding secret key is known, arbitrary collisions for the hash function can be efficiently found. Chameleon-hash functions have prominent applications in the design of cryptographic primitives, such as lifting non-adaptively secure signatures to adaptively secure ones. Recently, this primitive also received a lot of attention as a building block in more complex cryptographic applications ranging from editable blockchains to advanced signature and encryption schemes. We observe that in latter applications various different notions of collision-resistance are used, and it is not always clear if the respective notion does really cover what seems intuitively required by the application. Therefore, we revisit existing collision-resistance notions in the literature, study their relations, and-using the example of the recent redactable blockchain proposals- discuss which practical impact different notions of collision-resistance might have. Moreover, we provide a stronger, and arguably more desirable, notion of collision-resistance than what is known from the literature. Finally, we present a surprisingly simple and efficient black-box construction of chameleon-hash functions achieving this strong notion.
机译:Chameleon-hash函数由Krawczyk和Rabin在NDSS 2000上引入,它们是由公用密钥参数化的,具有防陷门碰撞功能的哈希函数。如果已知相应的密钥,则可以有效地找到哈希函数的任意冲突。变色龙哈希函数在密码原语的设计中具有重要的应用,例如将非自适应安全签名提升为自适应安全签名。最近,该原语作为更复杂的密码应用程序的构建块也受到了广泛的关注,这些应用程序包括可编辑的区块链,高级签名和加密方案。我们观察到,在后面的应用程序中,使用了各种不同的抗碰撞概念,并且始终不清楚各个概念是否确实涵盖了该应用程序直观所需的内容。因此,我们将回顾文献中现有的抗冲撞概念,研究它们之间的关系,并以最近可编辑的区块链提案为例,讨论不同的抗冲撞概念可能具有哪些实际影响。此外,我们提供了比文献中更强的抗冲强度的概念,并且可以说是更令人期望的。最后,我们提出了一种变色龙哈希函数的令人惊讶的简单有效的黑盒构造,从而实现了这一强大的概念。

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