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An efficient many-core architecture for Elliptic Curve Cryptography security assessment

机译:高效的椭圆曲线密码学安全评估多核架构

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Elliptic Curve Cryptography (ECC) is a popular tool to construct public-key crypto-systems. The security of ECC is based on the hardness of the elliptic curve discrete logarithm problem (ECDLP). Implementing and analyzing the performance of the best known methods to solve the ECDLP is useful to assess the security of ECC and choose security parameters in practice. We present a novel many-core hardware architecture implementing the parallel version of Pollard's rho algorithm to solve the ECDLP. This architecture results in a speed-up of almost 300% compared to the state of the art and we use it to estimate the monetary cost of solving the Certicom ECCp-131 challenge using FPGAs.
机译:椭圆曲线密码术(ECC)是一种构建公用密钥密码系统的流行工具。 ECC的安全性基于椭圆曲线离散对数问题(ECDLP)的硬度。实施和分析解决ECDLP的最佳方法的性能有助于评估ECC的安全性,并在实践中选择安全性参数。我们提出了一种新颖的多核硬件体系结构,该体系结构实现了并行版本的Pollard的rho算法来解决ECDLP。与现有技术相比,该体系结构的速度提高了将近300%,我们用它来估算使用FPGA解决Certicom ECCp-131挑战的金钱成本。

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