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Design and implementation of multiple cryptographic algorithm interface circuit based on secure SoC

机译:基于安全SoC的多种密码算法接口电路的设计与实现

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Based on the requirements of integrating multiple cryptographic algorithm IP cores into secure SoC, after analyzing the existing design of interface circuit, an interface circuit of the multiple cryptographic algorithm IP core is designed and implemented in this paper. Using the bridge technology, it achieves the dynamic reconfiguration of three cryptographic algorithm IP cores—AES, ECC and SHA1 tied to one dual-port RAM, as well as interconnection with the MCU. It not only effectively solves the inconsistent of the operation frequency and the interface data width of the multiple cryptographic algorithm IP cores, but also increases interior resource utilization rate of secure SoC and cryptographic service speed, obtaining excellent cost performance.
机译:根据将多个密码算法IP内核集成到安全SoC中的要求,在分析现有接口电路设计的基础上,设计并实现了多密码算法IP内核的接口电路。使用桥接技术,它可以实现三个加密算法IP核(AES,ECC和SHA1)的动态重新配置,该IP核与一个双端口RAM绑定在一起,并与MCU互连。它不仅有效地解决了多个密码算法IP核的工作频率和接口数据宽度不一致的问题,而且还提高了安全SoC的内部资源利用率和密码服务速度,从而获得了出色的性价比。

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