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N degrees of separation: multi-dimensional separation of concerns

机译:n分的分离程度:关注的多维分离

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Done well, separation of concerns can provide many software engineering benefits, including reduced complexity, improved reusability, and simpler evolution. The choice of boundaries for separate concerns depends on both requirements on the system and on the kind(s) of decomposition and composition a given formalism supports. The predominant methodologies and formalisms available, however, support only orthogonal separations of concerns, along single dimensions of composition and decomposition. These characteristics lead to a number of well-known and difficult problems. The paper describes a new paradigm for modeling and implementing software artifacts, one that permits separation of overlapping concerns along multiple dimensions of composition and decomposition. This approach addresses numerous problems throughout the software lifecycle in achieving well-engineered, evolvable, flexible software artifacts and traceability across artifacts.
机译:完成良好,关注的分离可以提供许多软件工程益处,包括减少复杂性,改善可重用性和更简单的演变。单独关注的边界选择取决于对系统的要求和对分解的种类和组合物的种类,给定的形式主义支持。然而,沿着组合物和分解的单一尺寸,仅适用的方法和形式的可用形式和形式主义仅支持正交分离。这些特征导致了许多众所周知和难题的问题。本文描述了一种用于建模和实施软件工件的新范式,允许沿着组合物和分解的多个维度分离重叠的关注。这种方法在整个软件生命周期中解决了许多问题,在实现精心设计的,可进化,灵活的软件伪影和跨伪影的可追溯性方面。

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