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QEMU-Based Fault Injection for a System-Level Analysis of Software Countermeasures Against Fault Attacks

机译:基于Qemu的故障注射,用于对故障攻击的软件对策的系统级分析

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Physical attacks, such as fault attacks, pose a decisive threat for the security of devices in the Internet of Things. An important class of countermeasures for fault attacks is fault tolerant software that is applicable for systems based on COTS hardware. In order to evaluate software countermeasures against fault attacks, fault injection is needed. However, established fault injection approaches require manufactured products or hardware details (e.g. netlists, RTL models), which are not available when using COTS hardware. In this paper, we present a QEMU-based fault injection platform that supports commercial COTS processors that are widely-used in the embedded domain. This framework allows a system-level analysis of software countermeasures by featuring the simulation of high-level hardware faults targeting, for example, memory cells, register cells, or the correct execution of instructions. The framework supports the generation of realistic fault attack scenarios. We illustrate the practicability of the approach by presenting two exemplary use cases.
机译:诸如故障攻击之类的物理攻击对事物互联网中设备的安全构成了决定性的威胁。故障攻击的一个重要阶级对策是容错软件,适用于基于COTS硬件的系统。为了评估防止故障攻击的软件对策,需要故障注入。然而,已建立的故障注入方法需要制造的产品或硬件详细信息(例如NetLists,RTL型号),在使用COTS硬件时不可用。在本文中,我们介绍了一种基于Qemu的故障注入平台,支持在嵌入式域中广泛使用的商业COTS处理器。该框架通过针对目标的高级硬件故障的模拟,例如存储器单元,寄存器单元或正确执行来实现软件对策的系统级分析。该框架支持生成现实故障攻击方案。我们通过呈现两个示例性用例来说明该方法的实用性。

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