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Virtualization on TrustZone-Enabled Microcontrollers? Voilà!

机译:在启用TrustZone的微控制器上进行虚拟化?瞧!

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With predictions pointing to more than 20 billion Internet-enabled 'things' by 2020 and much more to come, smart sensor nodes are expected to be predominant in the Internet of Things (IoT) era. As these systems are connected to the Internet and tend to implement an ever-growing number of mixed-criticality features, there is huge pressure for strong isolation to guarantee a reliable, secure, and predictable infrastructure. While virtualization has been a game-changer for consolidation and isolation in mid-to high-end embedded applications, for low-end and low-cost systems it is still in its infancy, and only a limited number of solutions have been proposed so far. This work aims at developing a lightweight hypervisor which provides strong isolation on resource-constrained devices. Our approach leverages TrustZone technology available on modern Arm microcontrollers (TrustZone-M) to implement a predictable virtualization infrastructure for low-end and low-cost systems. Experiments conducted on an Arm Musca-A multi-core platform demonstrate our solution achieves low memory footprint, high efficiency, and strict timing predictability.
机译:预测到2020年将有超过200亿个启用Internet的“事物”,并且未来还会更多,智能传感器节点预计将在物联网(IoT)时代占主导地位。由于这些系统已连接到Internet并倾向于实现数量不断增长的混合关键功能,因此,强烈要求进行强大的隔离以确保可靠,安全和可预测的基础结构。尽管虚拟化已成为中高端嵌入式应用程序中整合和隔离的游戏规则改变者,但对于低端和低成本系统而言,虚拟化仍处于起步阶段,到目前为止,仅提出了数量有限的解决方案。这项工作旨在开发一种轻量级的管理程序,该程序可在资源受限的设备上提供强大的隔离。我们的方法利用了现代Arm微控制器(TrustZone-M)上可用的TrustZone技术,为低端和低成本系统实现了可预测的虚拟化基础架构。在Arm Musca-A多核平台上进行的实验表明,我们的解决方案实现了低内存占用,高效率和严格的时序可预测性。

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