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Efficient AES Implementations for ARM Based Platforms

机译:高效的ARM平台实现实现

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The Advanced Encryption Standard (AES) contest, started by the U.S. National Institute of Standards and Technology (NIST), saw the Rijndael algorithm as its winner. Although the AES is fully defined in terms of functionality, it requires best exploitation of architectural parameters in order to reach the optimum performance on specific architectures. Our work concentrates on ARM cores widely used in the embedded industry. Most promising implementation choices for the common ARM Instruction Set Architecture (ISA) are identified, and a new implementation for the linear mixing layer is proposed. The performance improvement over current implementations is demonstrated by a case study on the Intel StrongARM SA-1110 Microprocessor. Further improvements based on exploitation of memory hierarchies are also described, and the corresponding performance figures are presented.
机译:由美国国家标准和技术研究所(NIST)开始的高级加密标准(AES)比赛,将Rijndael算法作为其赢家。 虽然AES在功能方面完全定义,但它需要最佳利用架构参数,以便在特定架构上达到最佳性能。 我们的工作专注于嵌入式行业广泛应用的臂内核。 识别用于共同ARM指令集架构(ISA)的最有前途的实现选择,提出了线性混合层的新实现。 通过对Intel StrongArm SA-1110微处理器的案例研究证明了对电流实现的性能改进。 还描述了基于对存储层分层的开发的进一步改进,并且呈现了相应的性能图。

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