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Revisiting Virtual L1 Caches A Practical Design Using Dynamic Synonym Remapping

机译:重新审视虚拟L1使用动态同义词重新映射缓存实用的设计

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Virtual caches have potentially lower access latency and energy consumption than physical caches because they do not consult the TLB prior to cache access. However, they have not been popular in commercial designs. The crux of the problem is the possibility of synonyms. This paper makes several empirical observations about the temporal characteristics of synonyms, especially in caches of sizes that are typical of L1 caches. By leveraging these observations, the paper proposes a practical design of an L1 virtual cache that (1) dynamically decides a unique virtual page number for all the synonymous virtual pages that map to the same physical page and (2) uses this unique page number to place and look up data in the virtual caches. Accesses to this unique page number proceed without any intervention. Accesses to other synonymous pages are dynamically detected, and remapped to the corresponding unique virtual page number to correctly access data in the cache. Such remapping operations are rare, due to the temporal properties of synonyms, allowing a Virtual Cache with Dynamic Synonym Remapping (VC-DSR) to achieve most of the benefits of virtual caches but without software involvement. Experimental results based on real world applications show that VC-DSR can achieve about 92% of the dynamic energy savings for TLB lookups, and 99.4% of the latency benefits of ideal (but impractical) virtual caches for the configurations considered.
机译:虚拟缓存具有比物理高速缓存更低的访问延迟和能量消耗,因为它们在缓存访问之前没有参考TLB。但是,他们在商业设计中尚未受欢迎。问题的症结是同义词的可能性。本文对同义词的时间特征进行了几个实证观察,尤其是在典型的L1缓存的尺寸中的高速缓存。通过利用这些观察,本文提出了L1虚拟高速缓存的实际设计,(1)动态地决定映射到相同物理页面的所有同义虚拟页面的唯一虚拟页码和(2)使用此唯一页码放置并查找虚拟缓存中的数据。访问此唯一页码没有任何干预。访问其他同义页面是动态检测的,并将其重新映射到相应的唯一虚拟页码以正确访问缓存中的数据。由于同义词的时间属性,这种重新映射操作是罕见的,允许具有动态同义词重新引起的虚拟缓存(VC-DSR)来实现虚拟高速缓存的大多数好处,但没有软件参与。基于现实世界应用的实验结果表明,VC-DSR可以达到TLB查找的动态节能的约92%,以及所考虑的配置的理想(但不切实际)虚拟高速缓存的延迟效益的99.4%。

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