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Multi-communication type debugging probe

机译:多通信类型调试探针

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摘要

Embedded systems have been growing in ubiquity in recent years. It is expected that the dependence for devices with these systems will continue to grow as technology advances into the era of the Internet of Things (IoT). However, with more interconnectivity comes more vulnerability. If an attacker were to gain access to a single device in a system of interconnected devices, they could obtain a lot more information since they have several devices to listen to. In this paper, we address the relevance of commercial debuggers and how they allow penetration tests and reverse engineering [1] on embedded systems. These debuggers require the testers to be very familiar with the device to be tested. Some of the information the tester needs to have include the type of processor being used on the device, the type of protocol implemented and the pin-out of the transmission lines. We propose a design for a probe that would not be restricted to a specific processor or prior knowledge of the target device pin-out. Instead, our probe will eliminate the time spent on active probing in order to locate the appropriate communication lines. We were able to design and build a prototype which has been able to locate transmission lines on a RS-232 protocol.
机译:近年来,嵌入式系统无处不在。预计随着技术进入物联网(IoT)时代,对具有这些系统的设备的依赖将继续增长。但是,随着互连性的提高,脆弱性也会增加。如果攻击者要访问由互连设备组成的系统中的单个设备,则由于可以获得多个设备来监听,因此他们可以获得更多的信息。在本文中,我们讨论了商用调试器的相关性以及它们如何允许在嵌入式系统上进行渗透测试和逆向工程[1]。这些调试器要求测试人员非常熟悉要测试的设备。测试人员需要具备的一些信息包括设备上使用的处理器类型,实现的协议类型以及传输线的引脚排列。我们提出了一种探头的设计,该探头将不仅限于特定处理器或目标设备引出线的先验知识。取而代之的是,我们的探针将消除为确定合适的通信线路而花费在主动探测上的时间。我们能够设计并制造出能够在RS-232协议上定位传输线的原型。

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