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Segmented Tag Cache: A Novel Cache Organization for Reducing Dynamic Read Energy

机译:分段标签缓存:用于减少动态读取能量的新型缓存组织

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A set-associative cache organization is widely used to achieve a high hit-rate in modern caches, leading to a considerable enhancement in the system performance. In a conventional set-associative cache, tag and data arrays are simultaneously accessed to achieve fast access, but doing so causes a large amount of energy consumption. Previous attempts, such as way prediction and sequential tag access for energy reduction, are still associated with substantial energy consumption due to the tag access. This paper presents a new cache organization termed Segmented Tag Cache (STC), which reduces the amount of energy consumed during the tag access. The proposed organization initially implements a new tag organization that supports partial tag access. More specifically, the tag array is segmented into two parts, and partial tag access only reads low-order part of the tag. A cache access scheme suitable for the proposed tag organization then are developed. Under the scheme, the delay of the tag organization is hidden by the data access delay, avoiding an increase in the overall cache access time to be maintained. Simulation results show that the STC reduces the energy-delay product by approximately 58 percent compared to the conventional cache organizations with a negligible performance penalty.
机译:集关联缓存组织被广泛用于在现代高速缓存中实现高击中率,从而导致系统性能相当大的增强。在传统的集合关联高速缓存中,同时访问标签和数据阵列以实现快速访问,但这样做会导致大量的能量消耗。以前的尝试,例如方式预测和顺序标签访问能量减少,仍然与由于标签访问引起的大量能耗相关联。本文介绍了一个新的缓存组织被称为分段标签高速缓存(STC),这减少了标签访问期间消耗的能量量。该组织最初实现了一个支持部分标记访问权限的新标记组织。更具体地,标签阵列被分成两部分,并且部分标签访问仅读取标签的低位成部分。然后开发了适用于所提出的标签组织的缓存访问方案。在该方案下,标签组织的延迟由数据访问延迟隐藏,避免了要维护的整体缓存访问时间的增加。仿真结果表明,与传统的缓存组织相比,STC与具有可忽略的绩效罚款相比将能量延迟产品减少约58%。

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