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Virtual Circuit Tree Multicasting

机译:虚拟电路树多播

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Current state-of-the-art on-chip networks provide efficiency, high throughput, and low latency for one-to-one (unicast) traffic. The presence of one-to-many (multicast) or one-to-all (broadcast) traffic can significantly degrade the performance of these designs, since they rely on multiple unicasts to provide one-to-many communication. This results in a burst of packets from a single source and is a very inefficient way of performing multicast and broadcast communication. This inefficiency is compounded by the proliferation of architectures and coherence protocols that require multicast and broadcast communication. In this paper, we characterize a wide array of on-chip communication scenarios that benefit from hardware multicast support. We propose Virtual Circuit Tree Multicasting (VCTM) and present a detailed multicast router design that improves network performance by up to 90% while reducing network activity (hence power) by up to 53%.Our VCTM router is flexible enough to improve interconnectperformance for a broad spectrum of multicasting scenarios,and achieves these benefits with straightforward and inexpensive extensions to a state-of-the-art packet-switched router.
机译:当前最新的片上网络为一对一(单播)流量提供了效率,高吞吐量和低延迟。一对多(多播)或一对多(广播)流量的存在会大大降低这些设计的性能,因为它们依赖多个单播来提供一对多通信。这导致来自单个源的数据包突发,并且是执行多播和广播通信的非常低效的方式。这种效率低下的情况是,需要多播和广播通信的体系结构和一致性协议的激增加剧了这种情况。在本文中,我们描述了受益于硬件多播支持的各种片上通信场景。我们提出了虚拟电路树多播(VCTM)并提出了详细的多播路由器设计,该设计可将网络性能提高90%,同时将网络活动(因此功耗)降低53%。我们的VCTM路由器足够灵活,可以提高互连性能广泛的多播场景,并通过对最先进的分组交换路由器进行直接且廉价的扩展来实现这些优势。

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