具有树校验机的芯片级微机总线系统中的安全与认证通信

Sascha Mühlbach, S. Wallner
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引用次数: 10

摘要

为了防止越来越多的硬件黑客攻击,对嵌入式设备中芯片级微机总线系统的保护至关重要。为了保证芯片级微机总线系统的安全,提出了一种基于树校验机密钥更新体系结构(TPMRA)的认证密钥交换和加密方案。出于这个目的,设计和实现了一个可扩展的TPMRA ip核,以满足可变总线性能需求。它允许对总线参与者进行身份验证,以及从单个原语对芯片到芯片总线进行加密。该方案透明,易于应用于市场上任意嵌入式设备的微机总线系统。通过将ip核实现到外围总线对总线接口(AHB-APB-bridge)中,概念验证实现显示了TPMRA在标准化高级微处理器总线体系结构(AMBA)中的适用性。该解决方案无延迟,考虑到所有AMBA总线特性,可以使用低硬件开销来保护ARM总线系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Secure and Authenticated Communication in Chip-Level Microcomputer Bus Systems with Tree Parity Machines
The protection of chip-level microcomputer bus systems in embedded devices is essential to prevent the growing number of hardware hacking attacks. This paper presents an authenticated key exchange and encryption solution in order to ensure chip-level microcomputer bus systems via the tree parity machine rekeying architecture (TPMRA). Due to this intention, a scalable TPMRA IP-core is designed and implemented in order to meet variable bus performance requirements. It allows the authentication of the bus participants as well as the encryption of chip-to-chip buses from a single primitive. The solution is transparent and easy applicable to an arbitrary microcomputer bus system for embedded devices on the market. A proof of concept implementation shows the applicability of the TPMRA in the standardized advanced microprocessor bus architecture (AMBA) by implementing the IP-core into the peripheral bus-to-bus interface (AHB-APB-bridge). It will be shown that the solution is latency free and can be used in order to protect the ARM bus system with a low hardware overhead considering all AMBA bus features.
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