通过时间抽象实现数据库程序的自动高质量再造

Y. Cohen, Y. Feldman
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引用次数: 4

摘要

关系数据库模型目前是使用旧模型(如索引顺序模型、层次模型或网络模型)的遗留软件转换的首选目标。关系模型通过更强的表达能力和优化查询(使用索引和其他方法)来弥补其较低的效率。然而,为了利用这些特性,需要进行复杂的分析,因为单独转换每个数据库访问操作不会使用目标数据库更强大的表达能力,也不会使其能够执行有用的优化。通过分析围绕数据库访问操作的主机程序的行为,可以发现过滤、连接和聚合操作等模式。然后可以从宿主程序中删除这些操作,并在目标数据库查询语言中重新实现它们。本文描述了一个自动系统,称为MIDAS(数据库应用系统迁移器),它以这种方式执行遗留数据库程序的高质量再造。结果发现,MIDAS的结果在可读性、大小、速度和网络数据流量方面优于单纯的一对一翻译。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automatic high-quality reengineering of database programs by temporal abstraction
The relational database model is currently the target of choice for the conversion of legacy software that uses older models (such as indexed-sequential, hierarchical or network models). The relational model makes up for its lower efficiency by a greater expressive power and by optimization of queries, using indexes and other means. However, sophisticated analysis is required in order to take advantage of these features, since converting each database access operation separately does not use the greater expressive power of the target database and does not enable it to perform useful optimizations. By analyzing the behavior of the host program around the database access operations, it is possible to discover patterns such as filtering, joins and aggregative operations. It is then possible to remove those operations from the host program and re-implement them in the target database query language. This paper describes an automatic system, called MIDAS (MIgrator of Database Application Systems), that performs high-quality reengineering of legacy database programs in this way. The results of MIDAS were found to be superior to those of the naive one-to-one translation in terms of readability, size, speed and network data traffic.
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