2012Unpublished venueRequires access

Modularization of Legacy Features by Relocation and Reconceptualization: How Much is Enough?

Andrzej Olszak, Bo Nørregaard Jôrgensen

Open publisher page 2 citations

Abstract

As programs become larger and start evolving, they often need to be split into modules, in order to facilitate independent evolution of end-user features and consolidate reusable core abstractions. Achieving this for legacy object-oriented software is, however, problematic due to scattering and tangling of feature implementations. While relocation of classes among packages can be used to significantly reduce these phenomena, achieving complete separation of features requires reconceptualization of existing classes. In this paper, we investigate the tradeoffs between relocation and reconceptualization of classes during a migration of the NDV is neuroscience application to the Net Beans Module System. We do this by comparing the manually modularized version of NDV is with three automatically optimized designs that exhibit various degrees of relocation and reconceptualization. The obtained findings shed new light on the actual degree and impact of relocation and reconceptualization during modularization of legacy features.

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What this paper is about

As programs become larger and start evolving, they often need to be split into modules, in order to facilitate independent evolution of end-user features and consolidate reusable core abstractions. Achieving this for legacy object-oriented software is, however, problematic due to scattering and tangling of feature implementations. While relocation of classes among packages can be used to significantly reduce these phenomena, achieving complete separation of features requires reconceptualization of existing classes. In this paper, we investigate the tradeoffs between relocation and reconceptualization of classes during a migration of the NDV is neuroscience application to the Net Beans Module System. We do this by comparing the manually modularized version of NDV is with three automatically optimized designs that exhibit various degrees of relocation and reconceptualization. The obtained findings shed new light on the actual degree and impact of relocation and reconceptualization during modularization of legacy features.

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OpenAlex reports 2 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

As programs become larger and start evolving, they often need to be split into modules, in order to facilitate independent evolution of end-user features and consolidate reusable core abstractions. Achieving this for legacy object-oriented software is, however, problematic due to scattering and tangling of feature implementations. While relocation of classes among packages can be used to significantly reduce these phenomena, achieving complete separation of features requires reconceptualization of existing classes. In this paper, we investigate the tradeoffs between relocation and reconceptualization of classes during a migration of the NDV is neuroscience application to the Net Beans Module System. We do this by comparing the manually modularized version of NDV is with three automatically optimized designs that exhibit various degrees of relocation and reconceptualization. The obtained findings shed new light on the actual degree and impact of relocation and reconceptualization during modularization of legacy features.

Key concepts: Relocation, Modular programming, Legacy system, Computer science, Software engineering, Programming language, Software

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