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Improvements for High Performance Elliptic Curve Cryptosystem Processor over GF(2^163)

机译:GF(2 ^ 163)上的高性能椭圆曲线密码系统处理器的改进

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Improvements of the Elliptic Curve Cryptosystem (ECC) point multiplication processor is presented in this paper. The main contributions of this paper are the improved finite field multiplier, which uses a 2-stage Karatsuba-Ofman multiplier architecture. Furthermore, a revised algorithm is proposed for the projective to affine coordinate conversion, which computes 2 inversion operations simultaneously with the numerator portion, in order to make better use of parallel cores implemented in the ECC processor. The design is implemented on a Virtex 4 XC4VLX80 FPGA and the implementation results show that the ECC processor can compute a point multiplication in 6.72 us. This time is the fastest to the authors' best knowledge. Thus, the ECC processor proposed in this paper is suitable for applications where high-throughput is required, such as network servers.
机译:本文提出了对椭圆曲线密码系统(ECC)点乘法处理器的改进。本文的主要贡献是改进的有限域乘法器,它使用了两级Karatsuba-Ofman乘法器体系结构。此外,针对射影到仿射坐标转换提出了一种改进的算法,该算法与分子部分同时计算2个反演运算,以便更好地利用在ECC处理器中实现的并行核。该设计在Virtex 4 XC4VLX80 FPGA上实现,实现结果表明ECC处理器可以在6.72 us的时间内计算出点乘法。这是作者所知最快的时间。因此,本文提出的ECC处理器适用于需要高吞吐量的应用,例如网络服务器。

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