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Comparison of Three CPU-Core Families for IoT Applications in Terms of Security and Performance of AES-GCM

机译:在AES-GCM的安全性和性能方面比较三个CPU核心系列对IOT应用的

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This article describes the implementation of the AES-GCM for IoT-oriented low-end 8/16/32-bit general-purpose processors. Although various aspects of implementations of the AES-GCM for high-end processors and hardware were examined in detail, the low-end processors to a lesser extent. This article estimates the speed and memory demand for various approaches to ensuring resistance to attacks, such as timing analysis and simple power analysis by ensuring the constant algorithm execution time. A particular attention is paid to the low-level multiplication implementation in GF (2(128)) for each architecture as a key galois/counter mode operation, because low-end processors do not have ready-made instructions for carry-less multiplication. For each AVR/MSP430/ARM Cortex-M3 processor core, a constant time implementation of carry-less multiplication is proposed, the performance of which approaches the Not Constant Time algorithm.
机译:本文介绍了IOT导向的低端8/16/32位通用处理器的AES-GCM的实现。尽管将AES-GCM的实现的各种方面详细检查了高端处理器和硬件,但低端处理器在较小程度上进行了较小。本文估计各种方法的速度和内存需求,以确保抗攻击的抵抗,例如通过确保恒定算法执行时间来进行定时分析和简单的功率分析。对于每个架构的GF(2(128))中的低级乘法实现,作为一个关键的Galois /计数器模式操作,将特定的注意力支付给GF(2(128))中的低级乘法实现,因为低端处理器没有用于更少的乘法的现成指令。对于每个AVR / MSP430 / ARM Cortex-M3处理器核心,提出了不断乘法乘法的恒定时间,其性能接近不恒定的时间算法。

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