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Efficient and Cost-Effective Hybrid Congestion Control for HPC Interconnection Networks

机译:HPC互连网络的高效,经济高效的混合拥塞控制

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Interconnection networks are key components in high-performance computing (HPC) systems, their performance having a strong influence on the overall system one. However, at high load, congestion and its negative effects (e.g., Head-of-line blocking) threaten the performance of the network, and so the one of the entire system. Congestion control (CC) is crucial to ensure an efficient utilization of the interconnection network during congestion situations. As one major trend is to reduce the effective wiring in interconnection networks to reduce cost and power consumption, the network will operate very close to its capacity. Thus, congestion control becomes essential. Existing CC techniques can be divided into two general approaches. One is to throttle traffic injection at the sources that contribute to congestion, and the other is to isolate the congested traffic in specially designated resources. However, both approaches have different, but non-overlapping weaknesses: injection throttling techniques have a slow reaction against congestion, while isolating traffic in special resources may lead the system to run out of those resources. In this paper we propose EcoCC, a new Efficient and Cost-Effective CC technique, that combines injection throttling and congested-flow isolation to minimize their respective drawbacks and maximize overall system performance. This new strategy is suitable for current commercial switch architectures, where it could be implemented without requiring significant complexity. Experimental results, using simulations under synthetic and realtrace-based traffic patterns, show that this technique improves by up to 55 percent over some of the most successful congestion control techniques.
机译:互连网络是高性能计算(HPC)系统中的关键组件,它们的性能对整个系统有很大的影响。但是,在高负载下,拥塞及其负面影响(例如,Head-of-head阻塞)会威胁网络的性能,因此会威胁到整个系统。拥塞控制(CC)对于在拥塞情况下确保互连网络的有效利用至关重要。一种主要趋势是减少互连网络中的有效布线以降低成本和功耗,因此网络将在非常接近其容量的情况下运行。因此,拥塞控制变得至关重要。现有的CC技术可以分为两种通用方法。一种是在造成拥塞的源头抑制流量注入,另一种是在专门指定的资源中隔离拥塞的流量。但是,这两种方法都有不同但不重叠的缺点:注入节流技术对拥塞的反应较慢,而隔离特殊资源中的流量可能会导致系统用尽这些资源。在本文中,我们提出了EcoCC,这是一种新型的经济高效的CC技术,该技术将注入节流和拥塞流隔离相结合,以最大程度地减少各自的弊端并最大化整体系统性能。这种新策略适用于当前的商用交换机体系结构,在这种体系结构中可以实现该策略而无需太多复杂性。实验结果表明,与某些最成功的拥塞控制技术相比,该技术在基于合成和基于真实痕迹的流量模式下的仿真结果表明,该技术最多可提高55%。

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