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Architectural Diversity: Bio-Inspired Hardware Security for FPGAs

机译:建筑多样性:FPGA的生物启发硬件安全

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Security of computing systems has emerged as a major concern in today's society, as attacks on CPUs, ran-somware, and botnets are becoming all the more common. One of the primary enablers of these widespread attacks is the mass production of computer hardware. While this is beneficial for design, fabrication, and test, it leaves all devices with the same hardware vulnerable to the same attacks. In nature, diversity at the genetic level helps ensure survival of a species, and provides resilience to some individuals against certain pathogens. While diversity has been explored at the software level, its applicability to hardware is less obvious. This paper explores the application of mutating hardware, inspired by evolution in nature, to Field Programmable Gate Arrays, and provides examples of low-overhead modifications to a typical FPGA architecture that enables secure, mutating architectures for current- and next-generation FPGAs.
机译:计算系统的安全成为当今社会中的一个主要问题,因为对CPU,RAN-Somware和Botnets的攻击变得越来越普遍。这些广泛攻击的主要推动者之一是计算机硬件的批量生产。虽然这对设计,制造和测试有益,但它使所有具有相同硬件的设备易受相同的攻击。本质上,遗传水平的多样性有助于确保物种的生存,并为某些病原体提供对某些人的影响。虽然在软件级别探索了多样性,但其对硬件的适用性不太明显。本文探讨了突变硬件的应用,以自然的进化启发,以现场可编程门阵列,并为典型的FPGA架构提供低开销修改的示例,该典型的FPGA架构可以实现当前和下一代FPGA的安全性,突变架构。

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