紧格小格及其在哈希签名中的应用

Yang Yu, Huiwen Jia, Xiaoyun Wang
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引用次数: 3

摘要

这项工作旨在提高基于小工具的密码系统的实用性,重点是哈希和签名签名。为此,我们开发了一个紧凑的小工具框架,其中使用的小工具是一个方阵,而不是在以前的结构中使用的短而胖的小工具。为了使用这个紧凑的小工具,我们设计了一个专门的小工具采样器,称为半随机采样器,来计算近似的原像。它首先确定地计算误差,然后对原图像进行随机采样。结果表明,对于均匀随机目标,在不知道陷门的情况下,原像分布和误差分布是可以模拟的。这样可以保证签名应用的安全性。与以前算法中的高斯分布错误相比,确定性错误具有更小的大小,从而大大提高了安全性,并实现了实际工作的实例化。作为应用,我们分别提出了基于NTRU和Ring-LWE的两种实用高效的基于小工具的签名方案。基于NTRU的方案提供了与Falcon和Mitaka相当的效率,并且在不需要生成NTRU活板门的情况下实现简单。基于lwe的方案也达到了理想的总体性能。它不仅大大优于最先进的基于lwe的哈希签名签名,而且比基于lwe的Fiat-Shamir签名方案diilithium更小。这些结果填补了基于小工具的实际签名的长期空白。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Compact Lattice Gadget and Its Applications to Hash-and-Sign Signatures
This work aims to improve the practicality of gadget-based cryptosystems, with a focus on hash-and-sign signatures. To this end, we develop a compact gadget framework in which the used gadget is a square matrix instead of the short and fat one used in previous constructions. To work with this compact gadget, we devise a specialized gadget sampler, called semi-random sampler, to compute the approximate preimage. It first deterministically computes the error and then randomly samples the preimage. We show that for uniformly random targets, the preimage and error distributions are simulatable without knowing the trapdoor. This ensures the security of the signature applications. Compared to the Gaussian-distributed errors in previous algorithms, the deterministic errors have a smaller size, which lead to a substantial gain in security and enables a practically working instantiation. As the applications, we present two practically efficient gadget-based signature schemes based on NTRU and Ring-LWE respectively. The NTRU-based scheme offers comparable efficiency to Falcon and Mitaka and a simple implementation without the need of generating the NTRU trapdoor. The LWE-based scheme also achieves a desirable overall performance. It not only greatly outperforms the state-of-the-art LWE-based hash-and-sign signatures, but also has an even smaller size than the LWE-based Fiat-Shamir signature scheme Dilithium. These results fill the long-term gap in practical gadget-based signatures.
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