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Architecture and Evaluation of a Third-Generation RHiNET Switch for High-Performance Parallel Computing

机译:高性能并行计算的第三代RHiNET交换机的体系结构和评估

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RHiNET-3/SW is the third-generation switch used in the RHiNET-3 system. It provides both low-latency processing and flexible connection due to its use of a credit-based flow-control mechanism, topology-free routing, and deadlock-free routing. The aggregate throughput of RHiNET-3/SW is 80 Gbps, and the latency is 140 ns. RHiNET-3/SW also provides a hop-by-hop retransmission mechanism. Simulation demonstrated that the effective throughput at a node in a 64-node torus RHiNET-3 system is equivalent to the effective throughput of a 64-bit 33-MHz PCI bus and that the performance of RHiNET-3/SW almost equals or exceeds the best performance of RHiNET-2/SW, the second-generation switch. Although credit-based flow control requires 26% more gates than rate-based flow control to manage the virtual channels (VCs), it requires less VC memory than rate-based flow control. Moreover, its use in a network system reduces latency and increases the maximum throughput compared to rate-based flow control.
机译:RHiNET-3 / SW是RHiNET-3系统中使用的第三代交换机。由于使用了基于信用的流控制机制,无拓扑路由和无死锁路由,因此它提供了低延迟处理和灵活的连接。 RHiNET-3 / SW的总吞吐量为80 Gbps,延迟为140 ns。 RHiNET-3 / SW还提供了逐跳重传机制。仿真表明,在64节点环形RHiNET-3系统中,一个节点上的有效吞吐量等于64位33-MHz PCI总线的有效吞吐量,并且RHiNET-3 / SW的性能几乎等于或超过第二代交换机RHiNET-2 / SW的最佳性能。尽管基于信用的流量控制比基于速率的流量控制要多26%的门来管理虚拟通道(VC),但与基于速率的流量控制相比,它需要的VC内存更少。此外,与基于速率的流控制相比,它在网络系统中的使用减少了等待时间并增加了最大吞吐量。

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