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Secure Path Verification

机译:安全路径验证

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摘要

Many embedded systems, like medical, sensing, automotive, military, require basic security functions, often referred to as "secure communications". Nowadays, interest has been growing around defining new security related properties, expressing relationships with information flow and access control. In particular, novel research works are focused on formalizing generic security requirements as propagation properties. These kinds of properties, we name them Path properties, are used to see whether it is possible to leak secure data via unexpected paths. In this paper we compare Path properties, described above, with formal security properties expressed in CTL Logic, named Taint properties. We also compare two verification techniques used to verify Path and Taint properties considering an abstraction of a Secure Embedded Architecture discussing the advantages and drawbacks of each approach.
机译:许多嵌入式系统,如医疗,传感,汽车,军事,需要基本的安全功能,通常被称为“安全通信”。 如今,兴趣在定义新的安全性相关属性周围,表达与信息流和访问控制的关系。 特别是,新颖的研究作品专注于将通用安全要求正式化为传播属性。 我们将这些属性命名为Path属性,用于了解是否可以通过意外路径泄漏安全数据。 在本文中,我们比较上面描述的路径属性,在CTL逻辑中表达的正式安全属性,命名为Taint属性。 我们还比较了两种用于验证验证路径和TAINT属性的验证技术,考虑到安全嵌入式架构的抽象讨论了每种方法的优点和缺点。

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