“多元异构建筑”本科教学的经验与实践

E. Frachtenberg
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引用次数: 1

摘要

在高性能计算和一般的应用计算中,异构计算作为一种重要的硬件和软件范例正在成长。然而,对于本科课程来说,这是一个相对较新的话题,而且缺乏关于合适的教学大纲和课程计划的指导。异构硬件创新和采用的快速步伐加剧了教授这一主题的教育挑战,这可能会使当前教科书的部分内容过时。为了帮助其他教育工作者面对这些挑战,并促进关于异构计算教学的标准化方法的讨论,本文提供了一个关于该主题的一学期课程的案例研究。它描述了Reed学院(一所小型文理学院)计算机科学专业引入多样化异构硬件和软件环境的目标、结构、挑战和经验教训。本文还包括对未来采用、改编和扩展本课程的建议和想法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experience and Practice Teaching an Undergraduate Course on Diverse Heterogeneous Architectures
Heterogeneous computing is growing as an important hardware and software paradigm, both in high-performance computing and in application computing in general. Nevertheless, the topic is a relative newcomer to undergraduate curricula, and there is a dearth of guidance on suitable syllabi and lesson plans. The educational challenge of teaching this topic is exacerbated by the rapid pace of heterogeneous-hardware innovation and adoption, which can render parts of current textbooks obsolete.To help other educators facing these challenges, and to promote a conversation about a standardized approach toward teaching heterogeneous computing, this paper presents a case study for one semester-long class on the topic. It describes the goals, structure, challenges, and lessons learned from the introduction of a diverse heterogeneous hardware and software environment to computer science majors at Reed College, a small liberal-arts school. This paper also includes suggestions and ideas for future adoption, adaptation, and expansion of this class.
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