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Low power TLB structure by using dynamic searching algorithm

机译:利用动态搜索算法的低功耗TLB结构

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We present a translation loukaside buffer (TLB) system with low power consumption for embedded processors. The proposed TLB is constructed as multifile banks, with small bank buffers, called as a filter-bank buffer, located above its associated bank. Lither the filter-bank buffer or the main bankTLB is selectively accessed on the basis of two bits in the filter-bank butter. First, one block tillering TLB is proposed to support low cost and simple mechanism. Second, two-blocks filtering TLB is proposed to obtain lower power consumption and higher performance than the one block filtering TLB. Dynamic power savings are achieved by reducing the number of entries accessed at a lime, by using filtering and bank mechanism. The performance overhead ol the proposed TLB turns out to be negligible compared with other hierarchical structures. That is, the two cycle overhead of the proposed TLB is only about 4%~2%, as compared with the 15% overhead of a filter (micro)-TLB and the 22% overhead of a banked-filter Tl B. We show that the average hit ratios of the filter buffers and the main banks of the proposed TLB are about 90% and 10% respectively. Therefore, significant power savings can be achieved with just a small performance degradation. The power consumption can be reduced by about 89% compared with a fully associative TLB, 69% with respect to a lilter-TLB, and 37% relative to a banked-filter TLB.
机译:我们为嵌入式处理器提供了一种低功耗的转换卢卡赛德缓冲区(TLB)系统。提议的TLB被构造为多文件存储区,在其相关存储区上方具有小的存储区缓冲区(称为过滤器存储区缓冲区)。过滤器库缓冲区或主库TLB会基于过滤器库黄油中的两位进行选择性访问。首先,提出了一种分块TLB,以支持低成本和简单的机制。其次,提出了两块滤波TLB以获得比一个块滤波TLB更低的功耗和更高的性能。通过使用过滤和存储库机制,通过减少一次访问的条目数来实现动态节能。与其他层次结构相比,建议的TLB的性能开销可以忽略不计。也就是说,所提出的TLB的两个周期开销仅为大约4%〜2%,而过滤器(micro)-TLB的开销为15%,而组过滤器TLB的开销为22%。提出的TLB的过滤缓冲区和主要存储区的平均命中率分别约为90%和10%。因此,仅需很小的性能下降就可以节省大量功率。与完全关联的TLB相比,功耗可以降低约89%,对于升液式TLB可以降低69%,而相对于滤波器组TLB则可以降低37%。

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