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首页> 外文期刊>IEEE Transactions on Computers >Secure Memory Accesses on Networks-on-Chip
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Secure Memory Accesses on Networks-on-Chip

机译:片上网络上的安全内存访问

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Security is gaining increasing relevance in the development of embedded devices. Towards a secure system at each level of design, this paper addresses security aspects related to Network-on-Chip (NoC) architectures, foreseen as the communication infrastructure of next-generation embedded devices. In the context of NoC-based multiprocessor systems, we focus on the topic, not yet thoroughly faced, of data protection. In this paper, we present a secure NoC architecture composed of a set of Data Protection Units (DPUs) implemented within the Network Interfaces (NIs)footnote{Part of this work is under patent pending}. The run-time configuration of the programmable part of the DPUs is managed by a central unit, the Network Security Manager (NSM). The DPU, similar to a firewall, can check and limit the access rights (none, read, write, or both) of processors accessing data and instructions in a shared memory - in particular distinguishing between the operating roles (supervisor/user and secure/unsecure) of the processing elements. We explore different alternative implementations for the DPU and demonstrate how this unit does not affect the network latency if the memory request has the appropriate rights. We also focus on the dynamic updating of the DPUs to support their utilization in dynamic environments, and on the utilization of authentication techniques to increase the level of security.
机译:安全性在嵌入式设备的开发中正变得越来越重要。对于每个设计级别的安全系统,本文都针对与片上网络(NoC)架构有关的安全性方面进行了探讨,这些方面被视为下一代嵌入式设备的通信基础架构。在基于NoC的多处理器系统的背景下,我们重点关注尚未完全解决的数据保护主题。在本文中,我们介绍了一种安全的NoC架构,该架构由在网络接口(NI)脚注中实现的一组数据保护单元(DPU)组成{部分工作正在申请专利中}。 DPU可编程部分的运行时配置由中央单元Network Security Manager(NSM)管理。与防火墙类似,DPU可以检查和限制访问共享内存中的数据和指令的处理器的访问权限(无,读,写或两者都有)-特别是区分操作角色(主管/用户和安全/不安全)的处理元素。我们探讨了DPU的不同替代实现方式,并演示了如果内存请求具有适当的权限,该单元如何不影响网络延迟。我们还专注于DPU的动态更新以支持其在动态环境中的使用,并关注于身份验证技术的使用以提高安全性。

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