改进令牌一致性可扩展性的开关封装技术

B. Cuesta, A. Robles, J. Duato
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引用次数: 3

摘要

传统的缓存一致性协议要么提供低延迟缓存丢失(窥探协议),要么提供带宽效率(目录协议)。为了同时捕捉传统协议的最佳属性,最近提出了令牌一致性。该协议可以通过瞬态请求快速解决缓存丢失问题。然而,由于瞬态请求是无序的消息,它们有时可能无法解决缓存丢失,这主要是由于协议竞争的发生。因此,当临时请求无法完成缓存丢失时,令牌一致性使用饥饿预防机制来确保它们的完成。虽然已经提出了几种预防饥饿机制的实施方案,但它们都是基于广播的。这一事实对Token Coherence的可伸缩性造成了很大的损害。为了解决这个问题,我们采用了一种基于交换机的封装技术,减轻了广播消息的危害,提高了协议的可扩展性。
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Switch-Based Packing Technique for Improving Token Coherence Scalability
Traditional cache coherence protocols either provide low latency cache misses (snooping protocols) or bandwidth efficiency (directory protocols). To simultaneously capture the best attributes of traditional protocols, Token Coherence has been recently proposed. This protocol can quickly resolve cache misses by transient requests. However, since transient requests are unordered messages, they may sometimes fail in solving cache misses mainly due to the occurrence of protocol races. Thus, when the completion of cache misses is not possible by transient requests, Token Coherence uses a starvation prevention mechanism to ensure their completion. Although several implementation options of starvation prevention mechanisms have been proposed, all of them are broadcast-based. This fact represents a large detriment to the Token Coherence scalability. To tackle this problem, in this work we apply a switch-based packing technique that alleviates the harm of broadcast messages and improves the protocol scalability.
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