基于虚拟化和安全扩展的ARM多层安全架构

Tamas K. Lengyel, T. Kittel, Jonas Pfoh, C. Eckert
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引用次数: 11

摘要

随着ARM架构成为增长最快的计算领域,移动市场的青睐平台,在平台上建立一个健全的安全架构是至关重要的。针对Android和iOS平台的恶意软件的惊人增长,以及移动市场之外的ARM架构的采用,只会增强这种需求。在本文中,我们研究了ARM架构及其仅在最新一代ARM处理器上可用的安全性和虚拟化扩展。考虑到这些扩展,我们提出了移动计算设备的多层安全体系结构的概念。我们的概念结合了自定义TrustZone组件,并利用Xen管理程序的高级功能,为安全性的各个方面提供了一个全面的框架,包括关键组件的负载和运行时验证、组件之间的强隔离以及用于异常检测的虚拟机自省。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Multi-tiered Security Architecture for ARM via the Virtualization and Security Extensions
As the ARM architecture has become the favored platform for the fastest growing computing segment, the mobile market, establishing a sound security architecture on the platform is paramount. The frightening increase in malware for the Android and iOS platforms in addition to the adoption of ARM architectures outside of the mobile market only bolster this need. In this paper, we investigate the ARM architecture as well as its security and virtualization extensions available only on the newest generation of ARM processors. Considering these extensions, we present a concept for a multi-tiered security architecture for mobile computing devices. Our concept combines a custom TrustZone component and leverages the advanced features of the Xen hypervisor to present an all encompassing framework for all aspects of security including both load and runtime verification of critical components, strong isolation between components, and virtual machine introspection for anomaly detection.
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