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Epoch profiles: microarchitecture-based application analysis and optimization

机译:Epoch配置文件:基于微体系结构的应用程序分析和优化

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摘要

The performance of data-intensive applications, when running on modern multi- and many-core processors, is largely determined by their memory access behavior. Its most important contributors are the frequency and latency of off-chip accesses and the extent to which long-latency memory accesses can be overlapped with useful computation or with each other.In this paper we present two methods to better understand application and microarchitectural interactions. An epoch profile is an intuitive way to understand the relationships between three important characteristics: the on-chip cache size, the size of the reorder window of an out-of-order processor, and the frequency of processor stalls caused by long-latency, off-chip requests (epochs). By relating these three quantities one can more easily understand an application’s memory reference behavior and thus significantly reduce the design space. While epoch profiles help to provide insight into the behavior of a single application, developing an understanding of a number of applications in the presence of area and core count constraints presents additional challenges. Epoch-based microarchitectural analysis is presented as a better way to understand the trade-offs for memory-bound applications in the presence of these physical constraints.Through epoch profiling and optimization, one can significantly reduce the multidimensional design space for hardware/software optimization through the use of high-level model-driven techniques.
机译:在现代的多核和多核处理器上运行时,数据密集型应用程序的性能在很大程度上取决于其内存访问行为。它最重要的因素是片外访问的频率和等待时间,以及长时延内存访问可以与有用的计算或彼此重叠的程度。在本文中,我们提出了两种方法来更好地理解应用程序和微体系结构的交互。时代档案是了解三个重要特征之间关系的直观方法:片上高速缓存大小,乱序处理器的重排序窗口大小以及长时间等待导致的处理器停顿频率,片外请求(时期)。通过将这三个量联系起来,可以更轻松地了解应用程序的内存引用行为,从而显着减少设计空间。纪元配置文件有助于提供对单个应用程序行为的洞察力,而在存在区域和核心数量约束的情况下发展对多个应用程序的了解则带来了其他挑战。基于时代的微体系结构分析是一种在存在这些物理约束的情况下理解内存绑定应用程序折衷的更好方法。通过时代剖析和优化,可以显着减少用于硬件/软件优化的多维设计空间,方法是:使用高级模型驱动技术。

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