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Backdoors: Definition, Deniability and Detection

机译:后门:定义,可否认性和检测

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摘要

Detecting backdoors is a difficult task; automating that detection process is equally challenging. Evidence for these claims lie in both the lack of automated tooling, and the fact that the vast majority of real-world backdoors are still detected by labourious manual analysis. The term backdoor, casually used in both the literature and the media, does not have a concrete or rigorous definition. In this work we provide such a definition. Further, we present a framework for reasoning about backdoors through four key components, which allows them to be modelled succinctly and provides a means of rigorously defining the process of their detection. Moreover, we introduce the notion of deniability in regard to backdoor implementations which permits reasoning about the attribution and accountability of backdoor implementers. We show our framework is able to model eleven, diverse, real-world backdoors, and one, more complex backdoor from the literature, and, in doing so, provides a means to reason about how they can be detected and their deniability. Further, we demonstrate how our framework can be used to decompose backdoor detection methodologies, which serves as a basis for developing future backdoor detection tools, and shows how current state-of-the-art approaches consider neither a sound nor complete model.
机译:检测后门是一项艰巨的任务。使检测过程自动化同样具有挑战性。这些主张的证据既在于缺乏自动化工具,也在于事实世界中的绝大多数后门仍然可以通过费力的手动分析来检测到。在文学和媒体中经常使用的后门一词没有具体或严格的定义。在这项工作中,我们提供了这样的定义。此外,我们提供了一个通过四个关键组件对后门进行推理的框架,该框架允许对后门进行简洁的建模,并提供一种严格定义后门检测过程的方法。此外,我们引入了关于后门实施的可否认性的概念,该概念允许对后门实施者的归属和责任进行推理。我们展示了我们的框架能够对文献中的11个多样的真实后门和一个更复杂的后门进行建模,并通过这种方式提供了一种推理方法,从而可以对其进行检测并确定其可否认性。此外,我们演示了如何将我们的框架用于分解后门检测方法,该方法可作为开发未来后门检测工具的基础,并说明当前的最新方法如​​何既不考虑健全模型也不考虑完整模型。

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