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Reducing interference in memory hierarchy resources using application aware management.

机译:使用应用感知管理减少内存层次结构资源中的干扰。

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摘要

Aggressive technology scaling has resulted in an increase in number of cores being integrated on-chip. While on-chip cores are increasing at a fast rate, the memory hierarchy resources are scaling at a much slower pace. The memory resources, such as different levels of on-chip cache and the off-chip memory bandwidth, are costly and are often shared across multiple on-chip cores. This leads to multiple applications contending for access to these common resources. In the process, these applications can harmfully interfere with one another, and, this interference can result in significant degradation of both system throughput and individual application performance. Therefore, intelligently managing the shared memory resources by mitigating inter-application interference is vitally important in emerging multicore systems.;This dissertation makes three key contributions towards addressing the above problem of interference in shared memory resources. First, this dissertation considers the last-level shared cache and the off-chip memory as instances of shared memory resources, and, studies the causes and different ways in which applications interfere with one another while contending for a resource. Second, this dissertation studies the negative impact of resource contention on application and system performances. Third, this dissertation proposes novel schemes to mitigate inter-application interference and thereby improve system and application performance. These schemes aim to efficiently manage the resources in an application aware manner with the goal of mitigating the overall inter-application interference. An application aware resource management scheme considers the memory access characteristics of all the contending applications and uses this information to manage the shared resource. The resource management decisions are based on two key principles: 1) isolating applications/threads that harmfully interfere from each other by partitioning the resources between the interfering applications, and, 2) deciding the size of the resource partition that an application gets based on its memory access characteristics and requirements.;The trend of integrating increasing number of cores on a single chip is projected to continue into the future. This continued scaling is propelling the parallel computation capability of emerging multicore systems. Efficient management of shared memory hierarchy resources will become ever more important in the future if we are to ensure that applications extract the maximum possible parallelism from these multicore systems. This dissertation takes an important step towards addressing this problem by proposing novel schemes to efficiently manage multiple memory hierarchy resources. These schemes are very effective in practice, improving both system performance and individual application performance.
机译:积极的技术扩展已导致片上集成内核数量的增加。尽管片上内核的增长速度很快,但是存储器层次结构资源的扩展速度却慢得多。诸如不同级别的片上高速缓存和片外存储器带宽之类的存储器资源是昂贵的,并且通常在多个片上内核之间共享。这导致多个应用程序争夺对这些公共资源的访问。在此过程中,这些应用程序可能有害地相互干扰,并且这种干扰可能导致系统吞吐量和单个应用程序性能显着下降。因此,在新兴的多核系统中,通过减轻应用间的干扰来智能地管理共享内存资源至关重要。本论文为解决上述共享内存资源中的干扰问题做出了三个关键贡献。首先,本文将最后一级的共享缓存和片外存储器视为共享内存资源的实例,并研究了在争用资源时应用程序相互干扰的原因和不同方式。其次,本文研究了资源争用对应用程序和系统性能的负面影响。第三,本文提出了新颖的方案来减轻应用间的干扰,从而提高系统和应用的性能。这些方案旨在以应用程序感知的方式有效地管理资源,以减轻总体应用程序间干扰。应用感知资源管理方案考虑所有竞争应用程序的内存访问特征,并使用此信息来管理共享资源。资源管理决策基于两个关键原则:1)通过在干扰应用程序之间划分资源来隔离相互有害干扰的应用程序/线程,以及2)根据应用程序的资源分区确定应用程序获得的资源分区的大小内存访问特性和要求。在单个芯片上集成越来越多的内核的趋势预计将持续到未来。这种持续的扩展正在推动新兴多核系统的并行计算能力。如果我们要确保应用程序从这些多核系统中提取最大可能的并行性,那么对共享内存层次结构资源的有效管理在将来将变得越来越重要。本论文通过提出新颖的方案来有效地管理多个存储器层次结构资源,朝着解决这个问题迈出了重要的一步。这些方案在实践中非常有效,可以提高系统性能和单个应用程序性能。

著录项

  • 作者

    Muralidhara, Sai Prashanth.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Engineering Computer.;Computer Science.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 144 p.
  • 总页数 144
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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