物联网系统软件的程序流程认证

Nafisa Ahmed, M. A. Talib, Q. Nasir
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引用次数: 6

摘要

远程认证是通过检测软件或硬件对原始配置的修改,在网络上测量设备完整性的过程。已经引入了几种基于远程软件的认证机制,这些机制依赖于严格的时间限制和其他不切实际的限制,这使得它们对物联网系统不方便。尽管已经做了一些研究来解决这些问题,但他们将可信硬件设备集成到被证明的设备中以实现他们的目标,这对于许多用例来说是昂贵且不方便的。在本文中,我们提出了“双重认证”,它包括两个阶段:静态和动态。静态认证阶段检查被认证设备的内存。动态认证技术可以检查应用程序代码的执行正确性,并检测运行时攻击。我们的目标是通过开发一种优化的动态技术来检查应用程序流,从而最小化开销并检测这些攻击。优化将在证明方和验证方进行。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Program-flow attestation of IoT systems software
Remote attestation is the process of measuring the integrity of a device over the network, by detecting modification of software or hardware from the original configuration. Several remote software-based attestation mechanisms have been introduced, that rely on strict time constraints and other impractical constraints that make them inconvenient for IoT systems. Although some research is done to address these issues, they integrated trusted hardware devices to the attested devices to accomplish their aim, which is costly and not convenient for many use cases. In this paper, we propose “Dual Attestation” that includes two stages: static and dynamic. The static attestation phase checks the memory of the attested device. The dynamic attestation technique checks the execution correctness of the application code and can detect the runtime attacks. The objectives are to minimize the overhead and detect these attacks, by developing an optimized dynamic technique that checks the application program flow. The optimization will be done in the prover and the verifier sides.
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