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基于细粒度伪划分的多核私有Cache容量共享机制
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A Capacity Sharing Mechanism Based on Fine-grained Pseudo-partitioning between Private Caches for Chip Multiprocessors
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    针对多核私有Cache结构面临的容量失效问题,提出了一种基于细粒度伪划分的核间容量共享机制.通过在细粒度层次为每个Cache Bank设置加权饱和计数器阵列来统计和预测各线程的访存需求差异情况,控制各个处理器核在每个Cache Set上的私有域与共享域划分比例,并以此指导各处理器核上的牺牲块替换、溢出与接收决策,利用智能的核间容量借用机制来均衡处理器间访存需求差异,缓解多核私有Cache结构面临的容量失效问题.在体系结构级全系统模拟器上的实验结果表明,该机制能够有效改善多核私有Cache结构的容量失效问题,降低多线程应用程序的平均存储访问延迟.

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    A cache capacity sharing mechanism based on fine-grained pseudo-partitioning (CSFP) was proposed, which was aimed at the capacity miss problem confronted with the private caches in Chip Multiprocessors (CMP). Each cache bank was equipped with a weighted saturation counter array, designed to collect and predict the memory demand diversity experienced by different threads at a fine granularity. The private region and shared region on each cache set were adjusted adaptively, and the partition decision was used to not only guide the replacement of the victim block, but also control the co-operation of spilling and receiving dynamically. An intelligent capacity sharing mechanism was adopted to correct the memory imbalance between different cores, which mitigated the capacity misses in CMP private cache effectively. Experimental results based on a cycle-accurate architecture simulator show that the CSFP mechanism can reduce the capacity misses of private caches in CMP significantly, so the average memory access latency of different programs can be reduced to some extent.

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黄安文, 张承义, 宋 超, 郭 维, 李 鹏, 张民选.基于细粒度伪划分的多核私有Cache容量共享机制[J].湖南大学学报:自然科学版,2013,40(Z1):30~36

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