在可重构处理器中实现保护区域以隔离执行加密算法

Ahmet Onur Durahim, E. Savaş, Kazim Yumbul
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引用次数: 2

摘要

我们在可重构和可扩展的嵌入式RISC处理器内设计并实现了一个保护区域,用于隔离执行加密算法。受保护区域是处理器子系统的集合,例如为高速执行整数操作而优化的功能单元、少量本地内存以及通用和专用寄存器。我们概述了在配备了保护区域的处理器中安全软件实现加密算法的原则。我们还通过在保护区中实现主要的加密算法,即RSA,椭圆曲线加密和AES,来证明保护区的效率和有效性。在时间效率方面,这三种加密算法的软件实现优于文献中报道的类似处理器上的等效软件实现。受保护区域以模块化方式设计,可以轻松集成到任何RISC处理器中;它的面积开销相当适中,因为它可以用于绝大多数嵌入式处理器。受保护区域还可以提供必要的支持,以便在处理器边界内实现TPM功能。
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Implementing a Protected Zone in a Reconfigurable Processor for Isolated Execution of Cryptographic Algorithms
We design and realize a protected zone inside a reconfigurable and extensible embedded RISC processor for isolated execution of cryptographic algorithms. The protected zone is a collection of processor subsystems such as functional units optimized for high-speed execution of integer operations, a small amount of local memory, and general- and special-purpose registers. We outline the principles for secure software implementation of cryptographic algorithms in a processor equipped with the protected zone. We also demonstrate the efficiency and effectiveness of the protected zone by implementing major cryptographic algorithms, namely RSA, elliptic curve cryptography, and AES in the protected zone. In terms of time efficiency, software implementations of these three cryptographic algorithms outperform equivalent software implementations on similar processors reported in the literature. The protected zone is designed in such a modular fashion that it can easily be integrated into any RISC processor; its area overhead is considerably moderate in the sense that it can be used in vast majority of embedded processors. The protected zone can also provide the necessary support to implement TPM functionality within the boundary of a processor.
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