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Energy-efficient Masking of the Trivium Stream Cipher

机译:Trivium流密码的节能屏蔽

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The widespread development of the Internet of Things (IoT) increases the amount of data exchanged through easily observable communication channels like wireless transmissions. Encryption is a tool commonly used to guarantee the confidentiality of those data. Unfortunately, traditional encryption methods (AES for eg.) hardly meet the constraints imposed on resource usage and power consumption. New cryptographic schemes that are more lightweight and better suited to such constrained targets have been proposed. A flagship representative of the lightweight cryptography portfolio is the Trivium stream cipher, one of the three finalists of the eStream competition. Despite the fact that no significant algebraic attacks against Trivium have been found since its first publication in 2008, many side-channel attacks have been proposed and implemented. However, the addition of countermeasures against such attacks has a significant impact on the energy consumption of hardware implementations of Trivium. In this work, we propose an energy-efficient implementation of the Trivium cipher provably protected against such leakages based on a Threshold Implementation (TI) masking scheme. Our energy-efficient approach takes advantage of the fact that the target for side-channel attacks is the initialization phase of Trivium, and consumes approximately 29.4% less power than a standard TI scheme.
机译:物联网(IoT)的广泛发展增加了通过易于观察的通信渠道(如无线传输)交换的数据量。加密是通常用于保证这些数据的机密性的工具。不幸的是,传统的加密方法(例如AES)几乎不能满足对资源使用和功耗的限制。已经提出了更轻量并且更适合于这样的受约束目标的新密码方案。 Trivium流密码是轻量级加密产品组合的旗舰代表,它是eStream竞赛的三项入围者之一。尽管自2008年首次发布以来,尚未发现针对Trivium的重要代数攻击,但已提出并实施了许多侧通道攻击。但是,增加针对此类攻击的对策对Trivium的硬件实现的能耗产生了重大影响。在这项工作中,我们提出了基于阈值实施(TI)屏蔽方案的Trivium密码的高能效实现,可有效地防止此类泄漏。我们的节能方法利用了以下事实:侧信道攻击的目标是Trivium的初始化阶段,并且比标准TI方案节省大约29.4%的功率。

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