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The Magic of ELFs

机译:ELF的魔力

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摘要

We introduce the notion of an Extremely Lossy Function (ELF). An ELF is a family of functions with an image size that is tunable anywhere from injective to having a polynomial-sized image. Moreover, for any efficient adversary, for a sufficiently large polynomial r (necessarily chosen to be larger than the running time of the adversary), the adversary cannot distinguish the injective case from the case of image size r. We develop a handful of techniques for using ELFs, and show that such extreme lossiness is useful for instantiating random oracles in several settings. In particular, we show how to use ELFs to build secure point function obfuscation with auxiliary input, as well as polynomially many hardcore bits for any one-way function. Such applications were previously known from strong knowledge assumptions-for example, polynomially many hardcore bits were only known from differing inputs obfuscation, a notion whose plausibility has been seriously challenged. We also use ELFs to build a simple hash function with output intractability, a new notion we define that may be useful for generating common reference strings. Next, we give a construction of ELFs relying on the exponential hardness of the decisional Diffie-Hellman problem, which is plausible in elliptic curve groups. Combining with the applications above, our work gives several practical constructions relying on qualitatively different-and arguably better-assumptions than prior works.
机译:我们介绍了极有损函数(ELF)的概念。 ELF是一系列函数,其图像大小可以从内射到具有多项式大小的图像,都可以调整。此外,对于任何有效的对手,对于足够大的多项式r(必须选择为大于对手的运行时间),对手无法将单射情况与图像大小r的情况区分开。我们开发了一些使用ELF的技术,并证明了这种极端的损耗对于在多个设置中实例化随机预言很有用。特别是,我们展示了如何使用ELF建立带有辅助输入的安全点函数模糊处理,以及对于任何单向函数而言多项式多个硬核位。以前,这些应用程序是从强大的知识假设中得知的,例如,多项式仅从不同的输入混淆中才知道许多硬核位,这种说法的合理性已受到严重挑战。我们还使用ELF来构建具有输出难处理性的简单哈希函数,这是我们定义的新概念,可能对生成通用参考字符串有用。接下来,我们根据决策Diffie-Hellman问题的指数硬度给出ELF的构造,这在椭圆曲线组中是合理的。结合上面的应用,我们的工作提出了一些实际的构造,这些构造依赖于质量上比以前更好的假设。

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