HAETAE: Shorter Lattice-Based Fiat-Shamir Signatures

J. Cheon, Hyeong-Soon Choe, Julien Devevey, Tim Güneysu, Dongyeon Hong, Markus Krausz, Georg Land, Marc Möller, D. Stehlé, MinJune Yi
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引用次数: 9

Abstract

We present HAETAE (Hyperball bimodAl modulE rejecTion signAture schemE), a new lattice-based signature scheme. Like the NIST-selected Dilithium signature scheme, HAETAE is based on the Fiat-Shamir with Aborts paradigm, but our design choices target an improved complexity/compactness compromise that is highly relevant for many space-limited application scenarios. We primarily focus on reducing signature and verification key sizes so that signatures fit into one TCP or UDP datagram while preserving a high level of security against a variety of attacks. As a result, our scheme has signature and verification key sizes up to 39% and 25% smaller, respectively, compared than Dilithium. We provide a portable, constanttime reference implementation together with an optimized implementation using AVX2 instructions and an implementation with reduced stack size for the Cortex-M4. Moreover, we describe how to efficiently protect HAETAE against implementation attacks such as side-channel analysis, making it an attractive candidate for use in IoT and other embedded systems.
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HAETAE:基于较短格子的菲亚特-沙米尔签名
我们提出的 HAETAE(Hyperball bimodAl modulE rejecTion signAture schemE)是一种基于晶格的新型签名方案。与 NIST 选定的 Dilithium 签名方案一样,HAETAE 也是基于 Fiat-Shamir with Aborts 范式,但我们的设计目标是改进复杂性/紧凑性的折衷,这与许多空间受限的应用场景高度相关。我们的主要重点是减少签名和验证密钥的大小,以便将签名放入一个 TCP 或 UDP 数据报中,同时针对各种攻击保持高水平的安全性。因此,与 Dilithium 相比,我们的方案的签名和验证密钥大小分别减少了 39% 和 25%。我们为 Cortex-M4 提供了可移植的恒定时间参考实现,以及使用 AVX2 指令的优化实现和减少堆栈大小的实现。此外,我们还介绍了如何有效地保护 HAETAE 免受侧信道分析等实现攻击,使其成为物联网和其他嵌入式系统中极具吸引力的候选方案。
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