彩虹签名方案的抗故障分析实现

M. Nakkar, Moustafa Mahmoud, A. Youssef
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引用次数: 3

摘要

多变量公钥密码系统(MPKC)是基于在有限域上求解一组多变量非线性方程组的难度的密码方案。MPKC被认为对量子攻击是安全的。Rainbow是一个MPKC签名方案,是MPKC后量子密码学的主要候选方案之一。在本文中,我们提出并比较了彩虹签名方案的两种抗故障分析实现。我们实现的硬件平台是Xilinx FPGA Virtex 7系列。我们对彩虹签名的实现在191个周期内完成,使用20ns时钟周期,这比之前报道的实现有所改进。使用相同的时钟周期,验证在141个周期内完成。这两种抗故障分析方案提供了不同级别的保护,并分别增加了33%和9%的面积开销。第一种保护方案获得约72%的时间开销,而第二种保护方案没有任何时间开销。
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Fault analysis-resistant implementation of Rainbow Signature scheme
Multivariate Public Key Cryptosystems (MPKC) are cryptographic schemes based on the difficulty of solving a set of multivariate system of nonlinear equations over a finite field. MPKC are considered to be secure against quantum attacks. Rainbow, an MPKC signature scheme, is among the leading MPKC candidates for post quantum cryptography. In this paper, we propose and compare two fault analysis-resistant implementations for the Rainbow signature scheme. The hardware platform for our implementations is Xilinx FPGA Virtex 7 family. Our implementation for the Rainbow signature completes in 191 cycles using a 20ns clock period which is an improvement over the previously reported implementations. The verification completes in 141 cycles using the same clock period. The two proposed fault analysis-resistant schemes offer different levels of protections and increase the area overhead by a factor of 33% and 9%, respectively. The first protection scheme acquires a time overhead of about 72%, but the second one does not have any time overhead.
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