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Energy-Adaptive Dual-Field Processor for High-Performance Elliptic Curve Cryptographic Applications

机译:高性能椭圆曲线密码学应用的能量自适应双场处理器

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We present an elliptic curve cryptographic (ECC) processor, capable of parallel and serial operation modes, with the unified architecture for both prime field and binary field cryptosystems, featuring comprehensive cryptographic functions to fulfill realistic security applications. An advanced field inversion method and the scheduler-controlled datapath are integrated into the processor to provide high-throughput and energy-adaptive security computing with power-performance trade off. Using 130-nm CMOS technology, the fabricated chip measures 4.97 mm$^2$ with the core area of 1.35 mm$^2$ . A 160-bit point scalar multiplication with coordinate conversion can be done in 385 $mu$ s at 141 MHz with core power of 80.4 mW over $GF(p)$ and in 272 $mu$s at 158 MHz with 79.6 mW over $GF(2^m)$. The comparison of throughput, area, power, and energy consumption among different ECC designs justifies that our high-throughput processor chip provides power- and energy-efficient implementation with the flexibility of dual-field ECC.
机译:我们提出了一种椭圆曲线密码(ECC)处理器,该处理器具有并行和串行操作模式,具有针对主场和二进制场密码系统的统一体系结构,具有全面的密码功能,可以满足现实的安全应用。先进的场反转方法和调度程序控制的数据路径已集成到处理器中,以提供高通量和能量自适应的安全计算,并在功耗与性能之间进行了权衡。使用130 nm CMOS技术,制成的芯片尺寸为4.97 mm 2,核心面积为1.35 mm 2。具有坐标转换功能的160位点标量乘法可以在141 MHz时的385μmus中实现,核心功率在$ GF(p)$以上时为80.4 mW,在158 MHz时在272 MHz的μμs中实现79.6 mW以上。 GF(2 ^ m)$。比较不同ECC设计之间的吞吐量,面积,功耗和能耗,可以证明我们的高吞吐量处理器芯片具有双场ECC的灵活性,可提供省电高效的实施方案。

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