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PhaseNoC: Versatile Network Traffic Isolation Through TDM-Scheduled Virtual Channels

机译:PhaseNoC:通过TDM调度的虚拟通道进行的多种网络流量隔离

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As multi/many-core architectures evolve, the demands on the network-on-chip (NoC) are amplified. In addition to high performance and physical scalability, the NoC is increasingly required to also provide specialized functionality, such as network virtualization, flow isolation, and quality-of-service. Although traditional architectures supporting virtual channels (VCs) offer the resources for flow partitioning and isolation, an adversarial workload can still interfere and degrade the performance of other workloads that are active in a different set of VCs. In this paper, we present PhaseNoC, a truly noninterfering VC-based architecture that adopts time-division multiplexing at the VC level. Distinct flows, or application domains, mapped to disjoint sets of VCs are isolated, both inside the router's pipeline and at the network level. Any latency overhead is minimized by appropriate scheduling of flows in separate phases of operation, irrespective of the chosen topology. When strict isolation is not required, the proposed architecture can employ opportunistic bandwidth stealing. This novel mechanism works synergistically with the baseline PhaseNoC techniques to improve the overall latency/throughput characteristics of the NoC, while still preserving performance isolation. Experimental results corroborate that—with lower cost than state-of-the-art NoC architectures, and with minimum latency overhead—PhaseNoC removes any flow interference and allows for efficient network traffic isolation.
机译:随着多核/多核架构的发展,对片上网络(NoC)的需求也随之增加。除了高性能和物理可伸缩性之外,NoC也越来越需要提供专门的功能,例如网络虚拟化,流隔离和服务质量。尽管支持虚拟通道(VC)的传统体系结构提供了用于流分区和隔离的资源,但对抗性工作负载仍然会干扰并降低在一组不同VC中活动的其他工作负载的性能。在本文中,我们介绍了PhaseNoC,这是一种真正的基于VC的无干扰架构,在VC级别采用时分复用。映射到不相交的VC集的不同流或应用程序域在路由器的管道内部和网络级别都是隔离的。通过在不同的操作阶段中适当地调度流,可以将任何等待时间的开销降到最低,而与所选择的拓扑结构无关。当不需要严格隔离时,建议的体系结构可以采用机会带宽窃取。这种新颖的机制与基线PhaseNoC技术协同工作,以改善NoC的总体延迟/吞吐量特性,同时仍保持性能隔离。实验结果证实了:PhaseNoC具有比最新的NoC架构更低的成本,并且延迟延迟最小,可以消除任何流干扰并实现有效的网络流量隔离。

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