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SurfNoC: A Low Latency and Provably Non-Interfering Approach to Secure Networks-On-Chip

机译:SurfNoC:一种低延迟且可避免干扰的片上安全网络方法

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As multicore processors find increasing adoption in domains such as aerospace and medical devices where failures have the potential to be catastrophic, strong performance isolation and security become first-class design constraints. When cores are used to run separate pieces of the system, strong time and space partitioning can help provide such guarantees. However, as the number of partitions or the asymmetry in partition bandwidth allocations grows, the additional latency incurred by time multiplexing the network can significantly impact performance. In this paper, we introduce SurfNoC, an on-chip network that significantly reduces the latency incurred by temporal partitioning. By carefully scheduling the network into waves that flow across the interconnect, data from different domains carried by these waves are strictly non-interfering while avoiding the significant overheads associated with cycle-by-cycle time multiplexing. We describe the scheduling policy and router microarchitecture changes required, and evaluate the information-flow security of a synthesizable implementation through gate-level information flow analysis. When comparing our approach for varying numbers of domains and network sizes, we find that in many cases SurfNoC can reduce the latency overhead of implementing cycle-level non-interference by up to 85%.
机译:随着多核处理器在诸如航空航天和医疗设备等领域逐渐被采用,在这些领域中,故障可能造成灾难性的后果,强大的性能隔离和安全性成为一流的设计约束。当内核用于运行系统的各个部分时,强大的时间和空间分区可以帮助提供此类保证。但是,随着分区数量的增加或分区带宽分配中的不对称性的增加,网络对时间进行多路复用所引起的额外延迟可能会严重影响性能。在本文中,我们介绍了SurfNoC,这是一种片上网络,可显着减少临时分区所引起的延迟。通过仔细地将网络调度为在互连中流动的电波,这些电波携带的来自不同域的数据将严格互不干扰,同时避免了与逐周期时间复用相关的大量开销。我们描述了调度策略和所需的路由器微体系结构更改,并通过门级信息流分析评估了可综合实现的信息流安全性。在比较我们针对不同数量的域和网络规模的方法时,我们发现,在许多情况下,SurfNoC可以将实现周期级无干扰的延迟开销降低多达85%。

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