用于动态MP-SoC保护的片上混合通信架构

Martha Johanna Sepúlveda, G. Gogniat, R. Pires, J. Wang, M. Strum
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引用次数: 6

摘要

mpsoc能够在同一芯片上支持多种应用。这种灵活性也代表了一个漏洞,使MPSoC的安全性特别具有挑战性。目前大多数mpsoc安全服务都是基于对称和公钥加密机制。因此,mpsoc集成了大量的密钥,这些密钥必须以有效和安全的方式交换。在这种情况下,如果密钥管理薄弱,任何安全概念都是无效的。在本文中,我们提出了一种基于片上混合通信(hoc)安全架构的实现,该架构结合了总线和片上网络(NoC),以解决mpsoc中高效和安全的密钥管理问题。HoC动态地实现了允许自定义安全性的qos(安全服务质量)概念。我们在几个mpsoc攻击场景中评估了我们的方法的有效性,并估计了它们对整体性能的影响。我们证明了我们的架构可以快速检测各种攻击,并为多个MPSoC应用程序快速配置不同的安全策略。与没有任何安全性的基于noc的架构相比,我们的混合方法分别节省了16%和25%的通信延迟和功耗。
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Hybrid-on-chip communication architecture for dynamic MP-SoC protection
MPSoCs are able to support multiple applications on the same chip. This flexibility also represents a vulnerability, turning the MPSoC security specially challenging. Most of the current MPSoCs security services are based on symmetric and public-key cryptographic mechanisms. So that, MPSoCs integrate a large set of keys that must be exchanged in an efficient and secure way. In such scenario, any security concept will be ineffective if the key management is weak. In this paper, we present the implementation of an on-chip hybrid communication (HoCs) security-based architecture, that combines bus and Network-on-chip (NoC), to address the efficient and secure key management at MPSoCs. The HoC implements dynamically the QoSS (Quality of Security Service) concept that allows the customization of security. We evaluate the effectiveness of our approach over several MPSoCs attack scenarios and estimate their impact on the overall performance. We show that our architecture can perform a fast detection of a wide range of attacks and a fast configuration of the different security policies for several MPSoC applications. Our hybrid approach saves upto 16% and 25% of communication latency and power consumption, respectively, when compared to the NoC-based architecture without any security.
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