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Exploring the design space of curve-based cryptographic accelerators

机译:探索基于曲线的密码加速器的设计空间

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Due to its shortest key-length, Hyperelliptic Curve Cryptography (HECC) is considered as a promising Public Key Cryptography solution for securing future resource-constrained embedded systems. However, its mathematical complexity, compared to the Elliptic Curve Cryptography (ECC), is slowing down its standardization. In this paper, we try to fairly explore different hardware architectures of ECC and HECC under the same level of security through parallelizing modular arithmetic layer operations. Speed and cost results of the implemented curve-based cryptographic accelerators showed that without specific optimization, ECC still outperform HECC.
机译:由于其最短的密钥长度,超椭圆曲线密码术(HECC)被认为是一种有前途的公钥密码解决方案,可用于保护未来资源受限的嵌入式系统。但是,与椭圆曲线密码术(ECC)相比,其数学上的复杂性正在减缓其标准化。在本文中,我们尝试通过并行化模块化算术层操作,在相同的安全级别上公平地探索ECC和HECC的不同硬件体系结构。已实施的基于曲线的密码加速器的速度和成本结果表明,如果不进行特定的优化,ECC的性能仍将超过HECC。

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