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Exploiting Early Tag Access for Reducing L1 Data Cache Energy in Embedded Processors

机译:利用早期标签访问来减少嵌入式处理器中的L1数据缓存能量

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In this paper, we propose a new cache design technique, referred to as early tag access (ETA) cache, to improve the energy efficiency of data caches in embedded processors. The proposed technique performs ETAs to determine the destination ways of memory instructions before the actual cache accesses. It, thus, enables only the destination way to be accessed if a hit occurs during the ETA. The proposed ETA cache can be configured under two operation modes to exploit the tradeoffs between energy efficiency and performance. It is shown that our technique is very effective in reducing the number of ways accessed during cache accesses. This enables significant energy reduction with negligible performance overheads. Simulation results demonstrate that the proposed ETA cache achieves over 52.8% energy reduction on average in the L1 data cache and translation lookaside buffer. Compared with the existing cache design techniques, the ETA cache is more effective in energy reduction while maintaining better performance.
机译:在本文中,我们提出了一种新的缓存设计技术,称为早期标签访问(ETA)缓存,以提高嵌入式处理器中数据缓存的能效。所提出的技术执行ETA,以在实际缓存访问之前确定存储指令的目的地方式。因此,如果在ETA期间发生匹配,则仅允许访问目标方式。可以在两种操作模式下配置建议的ETA缓存,以利用能效和性能之间的权衡。结果表明,我们的技术在减少缓存访问期间访问方法的数量方面非常有效。这样可以显着降低能耗,而性能开销却可以忽略不计。仿真结果表明,所提出的ETA缓存在L1数据缓存和转换后备缓冲器中平均可减少52.8%的能耗。与现有的缓存设计技术相比,ETA缓存在节能方面更有效,同时保持了更好的性能。

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