...
首页> 外文期刊>Computers, IEEE Transactions on >Prefetch-Aware Memory Controllers
【24h】

Prefetch-Aware Memory Controllers

机译:预取感知存储器控制器

获取原文
获取原文并翻译 | 示例

摘要

Existing DRAM controllers employ rigid, nonadaptive scheduling and buffer management policies when servicing prefetch requests. Some controllers treat prefetches the same as demand requests, and others always prioritize demands over prefetches. However, none of these rigid policies result in the best performance because they do not take into account the usefulness of prefetches. If prefetches are useless, treating prefetches and demands equally can lead to significant performance loss and extra bandwidth consumption. In contrast, if prefetches are useful, prioritizing demands over prefetches can hurt performance by reducing DRAM throughput and delaying the service of useful requests. This paper proposes a new low hardware cost memory controller, called as Prefetch-Aware DRAM Controller (PADC), that aims to maximize the benefit of useful prefetches and minimize the harm caused by useless prefetches. The key idea is to 1) adaptively prioritize between demands and prefetches, and 2) drop useless prefetches to free up memory system resources, based on prefetch accuracy. Our evaluation shows that PADC significantly outperforms previous memory controllers with rigid prefetch handling policies. Across a wide range of multiprogrammed SPEC CPU 2000/2006 workloads, it improves system performance by 8.2 and 9.9 percent on four and eight-core systems while reducing DRAM bandwidth consumption by 10.7 and 9.4 percent, respectively.
机译:现有的DRAM控制器在处理预取请求时采用严格的非自适应调度和缓冲区管理策略。一些控制器将预取与需求请求相同,而其他控制器则始终将需求置于预取之上。但是,这些严格的策略都不会导致最佳性能,因为它们没有考虑预取的有用性。如果预取无用,则对预取和需求进行同等处理会导致明显的性能损失和额外的带宽消耗。相反,如果预取是有用的,则通过降低DRAM吞吐量和延迟有用请求的服务,将需求的优先级高于预取会损害性能。本文提出了一种新的硬件成本低廉的存储控制器,称为预取预知DRAM控制器(PADC),旨在最大程度地发挥有用的预取的优势,并最大程度地减少无用的预取所造成的危害。关键思想是1)根据预取精度,在需求和预取之间自适应地确定优先级,以及2)丢弃无用的预取以释放内存系统资源。我们的评估表明,通过严格的预取处理策略,PADC明显优于以前的内存控制器。在各种多程序SPEC CPU 2000/2006工作负载中,它在四核和八核系统上将系统性能提高了8.2%和9.9%,同时将DRAM带宽消耗分别降低了10.7%和9.4%。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号