...
首页> 外文期刊>International Journal of Pattern Recognition and Artificial Intelligence >ENPASSANT: AN ENVIRONMENT FOR EVALUATING MASSIVELY PARALLEL ARRAY ARCHITECTURES FOR SPATIALLY MAPPED APPLICATIONS
【24h】

ENPASSANT: AN ENVIRONMENT FOR EVALUATING MASSIVELY PARALLEL ARRAY ARCHITECTURES FOR SPATIALLY MAPPED APPLICATIONS

机译:附件:用于评估空间映射应用程序的大规模并行阵列体系结构的环境

获取原文
获取原文并翻译 | 示例
           

摘要

Although massively parallel arrays for spatially mapped applications have been proposed since the 1950s and built since the 1960s, there have been very few systematic empirical studies that cover more than a small fraction of the design space. The problems have included the lack of a test suite of non-trivial application codes; inadequate language support; the difficulties of balancing evaluation performance with flexibility; and balancing test suite portability with accuracy of evaluation. We describe an environment that addresses these problems. A realistic workload including a series of applications currently being used as building blocks in vision research has been constructed. Both flexibility in architectural parameter selection and simulation efficiency are maintained with a novel new technique that combines virtual machine emulation with trace-driven simulation. The trade-off between fairness to diverse target architectures and programmability of the test suite is addressed through the use of operator and application libraries for a small set of critical functions. We also present examples of the type of results we are obtaining, including the effects of changing ALU designs and datapath widths, finding critical points in register set and cache sizes, the benefits of various types of router networks, and the performance cost of processor virtualization.
机译:尽管自1950年代以来就提出了用于空间映射应用程序的大规模并行阵列,并自1960年代以来就建立了这种阵列,但很少有系统的经验研究涵盖设计空间的一小部分。问题包括缺乏一套非平凡的应用代码测试套件;语言支持不足;在评估绩效与灵活性之间取得平衡的困难;兼顾测试套件的可移植性和评估的准确性。我们描述了解决这些问题的环境。已经构建了一个实际的工作负载,其中包括当前被用作视觉研究构建模块的一系列应用程序。通过将虚拟机仿真与跟踪驱动的仿真相结合的新技术,可以保持架构参数选择的灵活性和仿真效率。通过使用操作员和应用程序库中的一小部分关键功能,可以解决各种目标体系结构的公平性与测试套件的可编程性之间的折衷问题。我们还提供了所获得结果类型的示例,包括更改ALU设计和数据路径宽度的影响,在寄存器集和缓存大小中找到关键点,各种路由器网络的优势以及处理器虚拟化的性能成本。

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