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Systematic Engineering of Control Protocols for Covert Channels

机译:隐蔽通道的控制协议的系统工程

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Within the last years, new techniques for network covert channels arose, such as covert channel overlay networking, protocol switching covert channels, and adaptive covert channels. These techniques have in common that they rely on covert channel-internal control protocols (so called micro protocols) placed within the hidden bits of a covert channel's payload. An adaptable approach for the engineering of such micro protocols is not available. This paper introduces a protocol engineering technique for micro protocols. We present a two-layer system comprising six steps to create a micro protocol design. The approach tries to combine different goals: (1) simplicity, (2) ensuring a standard-conform behaviour of the underlying protocol if the micro protocol is used within a binary protocol header, as well as we provide an optimization technique to (3) raise as little attention as possible. We apply a context-free and regular grammar to analyze the micro protocol's behavior within the context of the underlying network protocol.
机译:在过去的几年中,出现了用于网络隐蔽通道的新技术,例如隐蔽通道覆盖网络,协议交换隐蔽通道和自适应隐蔽通道。这些技术的共同点在于它们依赖于隐蔽通道内部控制协议(所谓的微协议),该协议位于隐蔽通道有效负载的隐蔽位内。目前尚无法使用适用于此类微协议工程的适应性方法。本文介绍了一种用于微协议的协议工程技术。我们提出了一个包含六个步骤的两层系统,以创建微协议设计。该方法尝试组合不同的目标:(1)简单性;(2)如果在二进制协议标头中使用微协议,则确保基础协议的标准行为,并且我们为(3)提供了一种优化技术引起尽可能少的关注。我们应用无上下文的常规语法来分析底层网络协议上下文中的微协议行为。

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