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DoSGuard: Protecting pipelined MPSoCs against hardware Trojan based DoS attacks

机译:DoSGuard:保护流水线式MPSoC免受基于硬件Trojan的DoS攻击

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Billions of transistors on a chip and the power wall made embedded systems to be designed with Multiprocessor System-on-Chip (MPSoC) architectures. One utilization of MPSoCs is the Pipelined MPSoCs (PMPSoCs). As many reliable and safety critical systems are deployed with MPSoCs, denying their service would have adverse effects. One such possibility is the insertion of a hardware Trojan that performs Denial of Service (DoS) attacks. DoSGuard present a novel PMPSoC architecture that continues its execution in the presence of DoS Trojans in Third Party Intellectual Property (3PIP) cores. DoSGuard deploys two methods; one can detect the presence of Trojans and recover, and the other can also identify the 3PIPs under attack using buffer delays. While the state of the art incurs 3× area and power overheads, DoSGuard consumes 1.5M+3 area and leakage power (M is the number of cores in the base system) and a small (the power consumption of the monitoring system) dynamic power overheads. On a cycle accurate commercial multiprocessor simulator, DoSGuard takes 531 clock cycles to detect a DoS attack. With DoSGuard the throughput reduction due to a DoS attack varies with the application and the monitoring interval but is negligible (<; 10%) for real world scenarios, where millions of iterations take place.
机译:芯片上的数十亿个晶体管和功率墙使嵌入式系统可以采用多处理器片上系统(MPSoC)架构进行设计。流水线式MPSoC(PMPSoC)是MPSoC的一种用途。由于许多可靠且安全性至关重要的系统都与MPSoC一起部署,因此拒绝其服务将产生不利影响。一种这样的可能性是插入执行拒绝服务(DoS)攻击的硬件木马。 DoSGuard提供了一种新颖的PMPSoC架构,该架构可在第三方知识产权(3PIP)内核中存在DoS木马的情况下继续执行。 DoSGuard部署了两种方法:一个可以检测特洛伊木马的存在并进行恢复,另一个可以使用缓冲区延迟来识别受到攻击的3PIP。现有技术会产生3倍的面积和功率开销,而DoSGuard会消耗1.5M + 3的面积和泄漏功率(M是基本系统中的内核数),而动态功耗却很小(监视系统的功耗)间接费用。在周期精确的商用多处理器模拟器上,DoSGuard需要531个时钟周期来检测DoS攻击。使用DoSGuard,由于DoS攻击而导致的吞吐量降低随应用程序和监视间隔的不同而变化,但是对于发生数百万次迭代的实际场景而言,可以忽略不计(<; 10%)。

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