首页> 外文会议>2010 IEEE 16th international symposium on high performance computer architecture >Improving read performance of Phase Change Memories via Write Cancellation and Write Pausing
【24h】

Improving read performance of Phase Change Memories via Write Cancellation and Write Pausing

机译:通过写取消和写暂停提高相变存储器的读取性能

获取原文

摘要

Phase Change Memory (PCM) is emerging as a promising technology to build large-scale main memory systems in a cost-effective manner. A characteristic of PCM is that it has write latency much higher than read latency. A higher write latency can typically be tolerated using buffers. However, once a write request is scheduled for service to a bank, it can still cause increased latency for later arriving read requests to the same bank. We show that for the baseline PCM system with read-priority scheduling, the write requests increase the effective read latency to 2.3x (on average), causing significant performance degradation. To reduce the read latency of PCM devices under such scenarios, we propose adaptive Write Cancellation policies. Such policies can abort the processing of a scheduled write requests if a read request arrives to the same bank within a predetermined period. We also propose Write Pausing, which exploits the iterative write algorithms used in PCM to pause at the end of each write iteration to service any pending reads. For the baseline system, the proposed technique removes 75% of the latency increase incurred by read requests and improves overall system performance by 46% (on average), while requiring negligible hardware and simple extensions to PCM controller.
机译:相变存储器(PCM)是以经济有效的方式构建大型主存储器系统的有希望的技术。 PCM的特征是它具有比读取延迟高的写入延迟。通常可以使用缓冲器容忍更高的写入等待时间。但是,一旦写入写入请求被安排到银行,它仍然可以导致稍后到达到同一银行的读取请求的增加延迟。我们表明,对于具有读取优先级调度的基线PCM系统,写请求将有效的读取延迟增加到2.3倍(平均),从而导致显着的性能下降。为了减少这种情况下PCM设备的读取延迟,我们提出了自适应写入取消策略。如果读取请求在预定时段内到达相同的存储器,则此类策略可以中止调度写请求的处理。我们还提出了写入暂停,它利用PCM中使用的迭代写入算法在每个写入迭代结束时暂停,以便为任何待处理的读取服务。对于基线系统,所提出的技术会消除通过读取请求产生的75%的延迟增加,并通过46%(平均)提高整体系统性能,同时需要可忽略不计的硬件和简单的PCM控制器扩展。

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