Dynamically scoped functions as the essence of AOP

Author:

Costanza Pascal1

Affiliation:

1. University of Bonn, Bonn, Germany

Abstract

The aspect-oriented programming community devotes lots of energy into the provision of complex static language constructs to reason about eventual dynamic properties of a program. Only the focus on a strongly dynamically-natured language construct reveals a very simple mechanism behind the notions of AOP. This paper shows that dynamically scoped functions, together with a simple additive to access previous function definitions, form the essence of aspect-oriented programming. We present a complete executable one page implementation of this idea.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design,Software

Reference24 articles.

1. ANSI/INCITS X3.226-1994. American National Standard for Information Systems - Programming Language - Common Lisp 1994. See {18} for an on-line version of this document. ANSI/INCITS X3.226-1994. American National Standard for Information Systems - Programming Language - Common Lisp 1994. See {18} for an on-line version of this document.

2. Runtime aspect weaving through metaprogramming

3. T. Bradshaw. Maintaining dynamic state 2001. http://www.tfeb.org/lisp/hax.html#DYNAMICSTATE T. Bradshaw. Maintaining dynamic state 2001. http://www.tfeb.org/lisp/hax.html#DYNAMICSTATE

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