通过延长编程时间来解放程序员

M. Afshari, Earl T. Barr, Z. Su
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引用次数: 10

摘要

编程是用编程语言表达和提炼思想的过程。理想情况下,我们希望我们的编程语言能够灵活地适应我们的自然思维过程。语言创新,如过程抽象、面向对象和面向方面,有助于提高编程的敏捷性。然而,它们仍然缺乏重要的功能,程序员可以利用这些功能来快速试验设计和实现选择。我们提出延期编程,这是一种更贴近程序员思维过程的新范式。延期编程语言(PPL)支持三个基本原则:1)延期关注点:延迟关注点的能力,关注并完成当前关注点;2)混合计算:将程序员作为计算的组成部分的能力;3)可执行的细化:执行任何中间程序细化的能力。在PPL中工作,程序员可以运行和试验不完整的程序,并逐步迭代地完善缺失的部分,同时尽早发现设计和实现错误。我们描述了延期编程范例,我们使用延期c#设计和实现的范例,我们对c#的扩展,并通过几个用例展示了它的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Liberating the programmer with prorogued programming
Programming is the process of expressing and refining ideas in a programming language. Ideally, we want our programming language to flexibly fit our natural thought process. Language innovations, such as procedural abstraction, object and aspect orientation, have helped increase programming agility. However, they still lack important features that a programmer could exploit to quickly experiment with design and implementation choices. We propose prorogued programming, a new paradigm more closely aligned with a programmer's thought process. A prorogued programming language (PPL) supports three basic principles: 1) proroguing concerns: the ability to defer a concern, to focus on and finish the current concern; 2) hybrid computation: the ability to involve the programmer as an integral part of computation; and 3) executable refinement: the ability to execute any intermediate program refinements. Working in a PPL, the programmer can run and experiment with an incomplete program, and gradually and iteratively reify the missing parts while catching design and implementation mistakes early. We describe the prorogued programming paradigm, our design and realization of the paradigm using Prorogued C#, our extension to C#, and demonstrate its utility through a few use cases.
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