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Cryptography with Constant Input Locality (Extended Abstract)

机译:恒定输入位置的密码(扩展摘要)

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摘要

We study the following natural question: Which cryptographic primitives (if any) can be realized by functions with constant input locality, namely functions in which every bit of the input influences only a constant number of bits of the output? This continues the study of cryptography in low complexity classes. It was recently shown (Applebaum et al., FOCS 2004) that, under standard cryptographic assumptions, most cryptographic primitives can be realized by functions with constant output locality, namely ones in which every bit of the output is influenced by a constant number of bits from the input. We (almost) characterize what cryptographic tasks can be performed with constant input locality. On the negative side, we show that primitives which require some form of non-malleability (such as digital signatures, message authentication, or non-malleable encryption) cannot be realized with constant input locality. On the positive side, assuming the intractability of certain problems from the domain of error correcting codes (namely, hardness of decoding a random linear code or the security of the McEliece cryptosystem), we obtain new constructions of one-way functions, pseudorandom generators, commitments, and semantically-secure public-key encryption schemes whose input locality is constant. Moreover, these constructions also enjoy constant output locality. Therefore, they give rise to cryptographic hardware that has constant-depth, constant fan-in and constant fan-out. As a byproduct, we obtain a pseudorandom generator whose output and input locality are both optimal (namely, 3).
机译:我们研究以下自然问题:可以通过恒定输入局部的函数来实现哪些加密原语(如果有的话),即输入的每位的功能只影响输出的恒定数量的函数这继续在低复杂性类别中研究加密。它最近显示(AppleBaum等,Focs 2004),在标准加密假设下,大多数加密基元可以通过恒定输出局部的函数实现,即输出的每位的每个位受到恒定数量的函数从输入。我们(差不多)表征可以使用恒定输入局部执行的加密任务。在消极方面,我们表明需要使用恒定输入局部性地实现某种形式的非磁带性(例如数字签名,消息认证或非可助理加密)的原语。在正面,假设来自纠错码的域的某些问题的诡计(即,解码随机线性代码的硬度或MECELIENCE密码系统的安全性),我们获得了单向函数,伪随机发生器的新建构造,承诺和语义安全的公共密钥加密方案,其输入局部是常量。此外,这些结构还享有恒定的输出局部性。因此,它们引起了具有恒定深度,恒定扇形和恒定扇出的加密硬件。作为副产品,我们获得了伪随机发生器,其输出和输入局部均为最佳(即,3)。

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