Separated High-Bandwidth and Low-Latency Communication in the Cluster Interconnect Clint

H. Eberle, N. Gura
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引用次数: 13

Abstract

An interconnect for a high-performance cluster has to be optimized in respect to both high throughput and low latency. To avoid the tradeoff between throughput and latency, the cluster interconnect Clint1 has a segregated architecture that provides two physically separate transmission channels: A bulk channel optimized for high-bandwidth traffic and a quick channel optimized for low-latency traffic. Different scheduling strategies are applied. The bulk channel uses a scheduler that globally allocates time slots on the transmission paths before packets are sent off. This way collisions as well as blockages are avoided. In contrast, the quick channel takes a best-effort approach by sending packets whenever they are available thereby risking collisions and retransmissions. Simulation results clearly show the performance advantages of the segregated architecture. The carefully scheduled bulk channel can be loaded nearly to its full capacity without exhibiting head-of-line blocking that limits many networks while the quick channel provides low-latency communication even in the presence of high-bandwidth traffic.
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集群互联客户端中分离的高带宽低时延通信
高性能集群的互连必须在高吞吐量和低延迟方面进行优化。为了避免吞吐量和延迟之间的权衡,集群互连Clint1具有一个隔离的体系结构,它提供了两个物理上独立的传输通道:针对高带宽流量优化的大容量通道和针对低延迟流量优化的快速通道。应用了不同的调度策略。批量通道使用调度器,该调度器在发送数据包之前在传输路径上全局分配时隙。这样可以避免碰撞和阻塞。相比之下,快速通道采用尽力而为的方法,在可用时发送数据包,从而冒着冲突和重传的风险。仿真结果清楚地显示了隔离架构的性能优势。精心安排的批量通道几乎可以加载到其全部容量,而不会出现限制许多网络的头部阻塞,而快速通道即使在存在高带宽流量的情况下也可以提供低延迟通信。
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