具有异构意识的并行查询执行:在行驶更快的同时获得更好的里程!

Tobias Mühlbauer, Wolf Rödiger, Robert Seilbeck, A. Kemper, Thomas Neumann
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引用次数: 22

摘要

物理和热的限制阻碍了晶体管密度不断增加所带来的相应的性能提升。虽然多核扩展在一段时间内帮助缓解了暗硅的问题,但未来的处理器将需要变得更加异构。为此,单指令集架构(ISA)异构处理器是一种特别有趣的解决方案,它将具有相同ISA但性能和功耗特性不对称的多个内核结合在一起。然而,这些处理器并不是数据库系统的免费午餐。对于操作系统或编译器来说,将作业映射到最适合的核心是出了名的困难。为了获得最佳性能和能源效率,需要向数据库系统暴露异构性。在本文中,我们对异构单isa多核架构上的并行核心数据库操作符和TPC-H查询处理进行了深入研究。利用这些见解,我们为我们的高性能主存数据库系统HyPer设计了一种具有异构意识的作业到核心映射方法,并表明与静态和操作系统控制的映射相比,它确实可以在行驶更快的同时获得更好的里程。我们的方法将TPC-H功率运行的能量延迟积提高了31%,对于特定的TPC-H查询,能量延迟积提高了60%以上。
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Heterogeneity-conscious parallel query execution: getting a better mileage while driving faster!
Physical and thermal restrictions hinder commensurate performance gains from the ever increasing transistor density. While multi-core scaling helped alleviate dimmed or dark silicon for some time, future processors will need to become more heterogeneous. To this end, single instruction set architecture (ISA) heterogeneous processors are a particularly interesting solution that combines multiple cores with the same ISA but asymmetric performance and power characteristics. These processors, however, are no free lunch for database systems. Mapping jobs to the core that fits best is notoriously hard for the operating system or a compiler. To achieve optimal performance and energy efficiency, heterogeneity needs to be exposed to the database system. In this paper, we provide a thorough study of parallelized core database operators and TPC-H query processing on a heterogeneous single-ISA multi-core architecture. Using these insights we design a heterogeneity-conscious job-to-core mapping approach for our high-performance main memory database system HyPer and show that it is indeed possible to get a better mileage while driving faster compared to static and operating-system-controlled mappings. Our approach improves the energy delay product of a TPC-H power run by 31% and up to over 60% for specific TPC-H queries.
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