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Breaking Hitag2 with Reconfigurable Hardware

机译:用可重构的硬件打破希塔格2

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The Hitag2 stream cipher is used in many real world applications, such as car immobilizers and door opening systems, as well as for the access control of buildings. The short length of the 48-bit secret key employed makes the cipher vulnerable to a brute-force attack, i.e., exhaustive key search. In this paper we develop the first hardware architecture for the cryptanalysis of Hitag2 by means of exhaustive key search. Our implementation on the Cost-Optimized Parallel Code-Breaker COPACOBANA is able to reveal the secret key of a Hitag2 transponder in less than 2 hours (103.5 minutes) in the worst case. The speed of our approach outperforms all previously proposed attacks and requires only 2 sniffed communications between a car and a tag. Our findings thus define a new lower limit for the cloning of car keys in practice. Moreover, the attack is arbitrarily parallelizable and could thus be run on multiple COPACOBANAs to decrease the time to find the secret key.
机译:Hitag2流密码用于许多现实世界应用,例如汽车防盗器和门开放系统,以及建筑物的访问控制。所采用的48位密钥的短长度使得密码容易受到蛮力攻击的攻击,即详尽的钥匙搜索。在本文中,我们通过详尽的钥匙搜索开发了Hitag2密码分析的第一个硬件架构。我们对成本优化的并行代码断路器Copacobana的实现能够在最坏的情况下在不到2小时内(103.5分钟)在少于2小时内揭示HITAG2转发器的秘密密钥。我们的方法的速度优于所有先前提出的攻击,并且在汽车和标签之间只需要2个嗅探通信。因此,我们的研究结果定义了在实践中克隆汽车键的新下限。此外,攻击是任意并行化,因此可以在多个Copacobanas上运行,以减少找到密钥的时间。

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