隔离信任在工业控制系统芯片架构

Zane R. Franklin, C. Patterson, L. Lerner, R.J. Prado
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引用次数: 14

摘要

分布式工业控制系统(ICS)还在许多软件和硬件组件之间分配信任。一些恶意软件对策需要独立于应用程序、监控或驱动软件,这可能会引入漏洞。我们描述了可信赖的自主接口守护架构(TAIGA),它提供了一个片上的,数字的,安全版本的经典机械联锁。为了增强对关键嵌入式进程的信任,TAIGA在可编程逻辑控制器(PLC)处理器和硬件实现的接口控制器之间重新分配责任和权限,简化PLC软件,而不会显著降低性能,同时将可信组件与可更新软件分离。接口控制器由C代码合成,经过正式分析,允许对某些系统参数进行运行时检查和身份验证的更新,但不允许对代码进行更新。TAIGA的主要重点是确保过程稳定性,即使这需要覆盖来自处理器或监督节点的命令。TAIGA架构被映射到一个商业的、可配置的片上系统平台。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Isolating trust in an industrial control system-on-chip architecture
A distributed industrial control system (ICS) also distributes trust across many software and hardware components. There is a need for some malware countermeasures to be independent of application, supervisory or driver software, which can introduce vulnerabilities. We describe the Trustworthy Autonomic Interface Guardian Architecture (TAIGA) that provides an on-chip, digital, security version of classic mechanical interlocks. In order to enhance trust in critical embedded processes, TAIGA redistributes responsibilities and authorities between a Programmable Logic Controller (PLC) processor and a hardware-implemented interface controller, simplifying PLC software without significantly degrading performance while separating trusted components from updatable software. The interface controller is synthesized from C code, formally analyzed, and permits runtime checked, authenticated updates to certain system parameters but not code. TAIGA's main focus is ensuring process stability even if this requires overriding commands from the processor or supervisory nodes. The TAIGA architecture is mapped to a commercial, configurable system-on-chip platform.
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