计算机科学
加密
密码学
密钥封装
信息泄露
NIST公司
专用集成电路
公钥密码术
嵌入式系统
对称密钥算法
算法
计算机网络
自然语言处理
作者
Aobo Li,Jiahao Lu,Dongsheng Liu,Xiang Li,Shuo Yang,Tianze Huang,Jiaming Zhang,Siqi Xiong,Chenjun Yang
标识
DOI:10.1109/a-sscc58667.2023.10347915
摘要
Most information is transmitted through untrusted channels, and people use traditional asymmetric encryption methods/algorithms to prevent information leakage. Post-quantum cryptography (PQC) alternatives are refining to counter the possibility of brute-forcing encryption in finite time with progressively feasible quantum computers. As the winner of the NIST PQC project global competition, CRYSTALS-KYBER (Kyber) has a balance of security and efficiency. This paper proposes an efficient ASIC for chip-level applications of Kyber. Configurable operators and data generators are designed. Separation of secure memory and public memory from bus arbiter ensures leak-proof of critical information. A unified command and control system schedule execution process and data interaction. The proposed Kyber processor is fabricated and properly verified at a 40nm process, achieving high energy efficiency for the execution of the Kyber key encapsulation mechanism (KEM).
科研通智能强力驱动
Strongly Powered by AbleSci AI