Attack Detection Through Monitoring of Timing Deviations in Embedded Real-Time Systems

Nicolas Bellec, Simon Rokicki, I. Puaut
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引用次数: 6

Abstract

Real-time embedded systems (RTES) are required to interact more and more with their environment, thereby increasing their attack surface. Recent security breaches on car brakes and other critical components have already proven the feasibility of attacks on RTES. Such attacks may change the control-flow of the programs, which may lead to violations of the system's timing constraints. In this paper, we present a technique to detect attacks in RTES based on timing information. Our technique, designed for single-core processors, is based on a monitor implemented in hardware to preserve the predictability of instrumented programs. The monitor uses timing information (Worst-Case Execution Time-WCET) of code regions to detect attacks. The proposed technique guarantees that attacks that delay the run-time of any region beyond its WCET are detected. Since the number of regions in programs impacts the memory resources consumed by the hardware monitor, our method includes a region selection algorithm that limits the amount of memory consumed by the monitor. An implementation of the hardware monitor and its simulation demonstrates the practicality of our approach. In particular, an experimental study evaluates the attack detection latency.
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基于时间偏差监测的嵌入式实时系统攻击检测
实时嵌入式系统(RTES)需要与环境进行越来越多的交互,从而增加了攻击面。最近在汽车刹车和其他关键部件上的安全漏洞已经证明了攻击RTES的可行性。这种攻击可能会改变程序的控制流,这可能导致违反系统的时间限制。本文提出了一种基于时序信息的RTES攻击检测技术。我们的技术是为单核处理器设计的,它基于硬件实现的监视器,以保持仪器程序的可预测性。监视器使用代码区域的定时信息(最坏情况执行时间- wcet)来检测攻击。所提出的技术保证检测到任何超出其WCET的区域的延迟运行时间的攻击。由于程序中的区域数量会影响硬件监视器所消耗的内存资源,因此我们的方法包括一个区域选择算法,该算法可以限制监视器所消耗的内存量。硬件监视器的实现及其仿真验证了该方法的实用性。特别是,实验研究评估了攻击检测延迟。
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