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Leakier Wires: Exploiting FPGA Long Wires for Covert- and Side-channel Attacks

机译:Leakier电线:利用FPGA长电线应对隐蔽和侧通道攻击

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In complex FPGA designs, implementations of algorithms and protocols from third-party sources are common. However, the monolithic nature of FPGAs means that all sub-circuits share common on-chip infrastructure, such as routing resources. This presents an attack vector for all FPGAs that contain designs from multiple vendors, especially for FPGAs used in multi-tenant cloud environments, or integrated into multi-core processors. In this article, we show that "long" routing wires present a new source of information leakage on FPGAs, by influencing the delay of adjacent long wires. We show that the effect is measurable for both static and dynamic signals and that it can be detected using small on-board circuits. We characterize the channel in detail and show that it is measurable even when multiple competing circuits (including multiple long-wire transmitters) are present and can be replicated on different generations and families of Xilinx devices (Virtex 5, Virtex 6, Artix 7, and Spartan 7). We exploit the leakage to create a covert channel with 6kbps of bandwidth and 99.9% accuracy, and a side channel, which can recover signals kept constant for only 1.3 mu s, with an accuracy of more than 98.4%. Finally, we propose countermeasures to reduce the impact of this leakage.(1)
机译:在复杂的FPGA设计中,来自第三方的算法和协议的实现是很常见的。但是,FPGA的单片性质意味着所有子电路共享通用的片上基础架构,例如路由资源。这为包含多个供应商的设计的所有FPGA提供了一个攻击媒介,尤其是针对多租户云环境中使用的或集成到多核处理器中的FPGA。在本文中,我们证明了“长”布线会通过影响相邻的长布线的延迟而在FPGA上提供新的信息泄漏源。我们表明,对于静态和动态信号而言,这种影响都是可以测量的,并且可以使用小型车载电路检测到。我们详细描述了该通道的特性,并表明即使存在多个竞争电路(包括多个长线发送器),并且可以在Xilinx器件的不同世代和系列(Virtex 5,Virtex 6,Artix 7和斯巴达人7)。我们利用泄漏来创建具有6kbps带宽和99.9%的准确度的隐蔽通道,以及一个可以恢复仅1.3μs的恒定信号(准确率超过98.4%)的隐蔽通道。最后,我们提出对策以减少这种泄漏的影响。(1)

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