商业服务器应用程序中的时间流

T. Wenisch, M. Ferdman, A. Ailamaki, B. Falsafi, Andreas Moshovos
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引用次数: 47

摘要

商业服务器应用程序在现代多处理器系统上仍然是内存绑定的,因为它们占用大量数据、频繁共享、复杂的非跨步访问模式和长链的依赖缺失。为了在这些具有挑战性的访问模式下提高内存系统的性能,研究人员提出了利用时间流(内存访问的循环序列)的预取器。虽然先前的研究表明,这些方案的性能有了实质性的改善,但它们未能解释为什么会出现时间流;也就是说,它们将商业应用程序视为黑盒,而不识别导致重复缺失序列的特定行为。在本文中,我们对单芯片和多芯片多处理器的缺失痕迹进行了信息论分析,以识别web服务,在线事务处理和决策支持工作负载中重复出现的时间流。然后,使用嵌入在应用程序二进制文件和Solaris内核中的函数名,我们确定产生时态流的代码模块和行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Temporal streams in commercial server applications
Commercial server applications remain memory bound on modern multiprocessor systems because of their large data footprints, frequent sharing, complex non-strided access patterns, and long chains of dependant misses. To improve memory system performance despite these challenging access patterns, researchers have proposed prefetchers that exploit temporal streams-recurring sequences of memory accesses. Although prior studies show substantial performance improvement from such schemes, they fail to explain why temporal streams arise; that is, they treat commercial applications as a black box and do not identify the specific behaviors that lead to recurring miss sequences. In this paper, we perform an information-theoretic analysis of miss traces from single-chip and multi-chip multiprocessors to identify recurring temporal streams in web serving, online transaction processing, and decision support workloads. Then, using function names embedded in the application binaries and Solaris kernel, we identify the code modules and behaviors that give rise to temporal streams.
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