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Indistinguishability Obfuscation Without Multilinear Maps: New Paradigms via Low Degree Weak Pseudorandomness and Security Amplification

机译:没有多线性地图的禁止区分混淆:通过低度弱伪随机和安全放大的新范式

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The existence of secure indistinguishability obfuscators (iO) has far-reaching implications, significantly expanding the scope of problems amenable to cryptographic study. All known approaches to constructing iO rely on d-linear maps. While secure bilinear maps are well established in cryptographic literature, the security of candidates for d > 2 is poorly understood. We propose a new approach to constructing iO for general circuits. Unlike all previously known realizations of iO, we avoid the use of d-linear maps of degree d ≥ 3. At the heart of our approach is the assumption that a new weak pseudorandom object exists. We consider two related variants of these objects, which we call perturbation resilient generator (ΔRG) and pseudo flawed-smudging generator (PFG), respectively. At a high level, both objects are polynomially expanding functions whose outputs partially hide (or smudge) small noise vectors when added to them. We further require that they are computable by a family of degree-3 polynomials over Z. We show how they can be used to construct functional encryption schemes with weak security guarantees. Finally, we use novel amplification techniques to obtain full security. As a result, we obtain iO for general circuits assuming: - Subexponentially secure LWE - Bilinear Maps - poly(λ)-secure 3-block-local PRGs- ΔRGs or PFGs.
机译:安全不可分辨混淆器(IO)的存在有着深远的影响,显著扩大问题的范围服从密码研究。所有已知的方法来构建IO依靠d-线性映射。而安全的双线性映射在加密文献很好地建立,对于d候选的安全> 2知之甚少。我们提出了一个新的方法来构建IO一般电路。与IO的所有已知的实现中,我们避免使用度d≥3 d-线性图的在我们的方法的心脏是一个新的弱伪对象存在的假设。我们认为这些目标,我们分别称之为扰动弹性发生器(ΔRG)和伪缺陷,污迹发生器(PFG),两个相关变种。在高级别上,这两个对象多项式展开时添加到它们,它们的输出部分地隐藏(或污迹)小噪声向量的功能。我们进一步要求,他们是由一个家庭度为3的多项式在Z的我们展示他们如何可以用来构建与弱的安全保障功能的加密方案可计算的。最后,我们使用新的扩增技术,以获得充分的安全性。其结果是,我们得到IO为一般电路假设: - Subexponentially安全LWE - 双线性映射 - 聚(λ)安全3 - 嵌段 - 本地PRGs-ΔRGs或功能群。

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