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Characterising and Comparing the Energy Consumption of Side Channel Attack Countermeasures and Lightweight Cryptography on Embedded Devices

机译:嵌入式设备侧通道攻击对策和轻量级密码术的能耗表征和比较

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This paper uses an Instruction Set Architecture(ISA) based statistical energy model of an ARM Cortex-M4microprocessor to evaluate the energy consumption of an implementation of AES with different side channel attack (SCA) countermeasures and an implementation of lightweight ciphers PRESENT, KLEIN and ZORRO with and without Boolean first order masking. In this way, we assess the additional energy consumption of using different SCA countermeasures and using lightweight block ciphers on 32 bit embedded devices. In addition to this, we provide a methodology for developing an ISA based energy model for cryptographic software with an accuracy of +/-5%. In addition to providing our methodology for developing this model, we also show that using variations of instructions that reduce the size of code can reduce the energy consumption by as much as 30% +/- 40% and that memory instructions reduce the predictability of our energy model.
机译:本文采用了ARM Cortex-M4MicroCrocescessor的基于指令集架构(ISA)的统计能量模型,以评估AES的实施的能耗(SCA)对策,克莱因和佐罗的轻量级纤维素的实施没有布尔的第一订单屏蔽。通过这种方式,我们评估了使用不同SCA对策的额外能耗,并在32位嵌入式设备上使用轻量级块CIPHERS。除此之外,我们还提供一种用于开发基于ISA的加密软件的能量模型,精度为+/- 5%。除了提供我们的方法的开发方法外,还表明,使用减少代码大小的指令的变化可以将能量消耗降低多达30%+/- 40%,并且内存指令降低了我们的可预测性能源模型。

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