FPGA中的抗量子加密

Renata C. Policarpo, A. S. Nery, R. D. O. Albuquerque
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引用次数: 0

摘要

使用加密技术来保证敏感数据的机密性、真实性和完整性已经成为必须的。此外,量子计算机的进步正逐渐对公钥加密技术构成威胁。如果没有适当的保安措施,诈骗分子很容易取得个人及敏感资料。NIST用于公钥加密系统标准化的后量子加密(PQC)过程的第三轮结果使CRYSTALS-Kyber成为密钥封装的第一种机制。本研究的目的是提供使用高阶合成(HLS)技术的可重构CRYSTAL-Kyber加速器的规格。我们的架构在低成本Zynq FPGA (XC7Z020-1 CLG400C)上需要大约2200个lut, 3001个ff和28个DSP。在100 MHz频率下,加速器在一次密钥交换仿真中所花费的总时间约为0.84 ms,该过程的估计功耗为1.695W。
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Quantum-resistant Cryptography in FPGA
The use of cryptography techniques to guarantee confidentiality, authenticity and integrity of sensitive data has become mandatory. Besides, advancements in quantum computers are gradually posing a threat to public key encryption technology. Without proper security measures, fraudsters may easily gain access to one's personal and sensitive data. The result of the third round of NIST's Post-Quantum Cryptography (PQC) process for standardization of public-key cryptography systems brought CRYSTALS-Kyber as the first mechanism selected for key encapsulation. The aim of this study is to provide the specification of a reconfigurable CRYSTAL-Kyber accelerator using High-Level Synthesis (HLS) technology. Our architecture requires about 2200 LUTs, 3001 FFs and 28 DSP on a low-cost Zynq FPGA (XC7Z020-1 CLG400C). The total time spent by the accelerator in a key exchange simulation is approximately 0.84 ms, operating at 100 MHz, and the estimated power consumption in this process is 1.695W.
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