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Efficient Pseudorandom Functions via On-the-Fly Adaptation

机译:通过可在---------ver-----------------------vereaptation的伪装功能

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Pseudorandom functions (PRFs) are one of the most fundamental building blocks in cryptography with numerous applications such as message authentication codes and private key encryption. In this work, we propose a new framework to construct PRFs with the overall goal to build efficient PRFs from standard assumptions with an almost tight proof of security. The main idea of our framework is to start from a PRF for any small domain (i.e. poly-sized domain) and turn it into an l-bounded pseudorandom function, i.e., into a PRF whose outputs are pseudorandom for the first l distinct queries to F. In the second step, we apply a novel technique which we call on-the-fly adaptation that turns any bounded PRF into a fully-fledged (large domain) PRF. Both steps of our framework have a tight security reduction, meaning that any successful attacker can be turned into an efficient algorithm for the underlying hard computational problem without any significant increase in the running time or loss of success probability. Instantiating our framework with specific number theoretic assumptions, we construct a PRF based on k-LIN (and thus DDH) that is faster than all known constructions, which reduces almost tightly to the underlying problem, and which has shorter keys. Instantiating our framework with general assumptions, we construct a PRF with very flat circuits whose security tightly reduces to the security of some small domain PRF.
机译:伪随机函数(PRFS)是加密中最基本的构建块之一,具有众多应用,如消息认证代码和私钥加密。在这项工作中,我们提出了一个新的框架,以构建PRF的整体目标,以从标准假设中建立高效的PRF,具有几乎紧张的安全证明。我们的框架的主要思想是从PRF开始任何小域(即多大域),并将其转换为L型伪随机函数,即进入PRF,其输出是第一个不同查询的伪随机的PRF F.在第二步中,我们应用了一种新颖的技术,我们调用了一般的适应,将任何有界PRF转变为完全成熟的(大域)PRF。我们的框架的两个步骤都有紧张的安全减少,这意味着任何成功的攻击者都可以将任何成功的攻击者转化为底层硬计算问题的有效算法,而无需运行时间或成功概率丢失任何显着增加。实例化我们的框架具有特定的数字理论假设,我们基于K-LIN(以及因此DDH)构建PRF,其比所有已知结构更快,这几乎紧紧地减少到潜在的问题,并且具有更短的键。使用一般假设实例化框架,我们构建一个具有非常平坦的电路的PRF,其安全性紧张地减少了一些小型域PRF的安全性。

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