COMORP:用于数学数据库成本模型开发的快速原型

IF 1.7 3区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING Journal of Computer Languages Pub Date : 2022-12-01 DOI:10.1016/j.cola.2022.101173
Abdelkader Ouared , Moussa Amrani , Pierre-Yves Schobbens
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引用次数: 1

摘要

数据库技术的发展趋势促使研究人员重新设计和调整过去的数学数据库成本模型,并考虑到这种发展所带来的额外方面。因此,今天许多科学家通过重新思考硬件、工作负载和应用程序的每一次变化的查询处理和优化,提出了数据库成本模型。这需要高水平的领域专业知识。然而,通过上下文感知来帮助用户建立数据库成本模型是困难的,也是越来越困难的挑战。需要一种新的范式来改变成本模型开发方法,在高抽象水平上进行设计,以缩小核心数据库和概念建模社区之间的差距,从而缩短其漫长的开发周期。此外,我们需要支持成本模型的增量复杂设计,并跟踪数据库技术的发展,这些技术快速而持续地变化以适应新的需求。我们研究了模型驱动工程范式,这些范式能够实现数据库成本模型、建模/分析的快速原型设计,并优化其集成组件的可重用性。本文提出了一个框架,旨在将成本模型开发为一个可扩展和定制的内核,该内核提供与数据库系统最敏感层相关的度量,并通过基本原语的组合来帮助成本模型的组成过程。我们实施我们的框架,以帮助设计师/研究人员创建一个成功的成本模型,产品与他们的清单半自动关联。实验评估表明,通过使用我们的框架,我们可以将用于CM构建的时间减少60%,同时能够推荐高达90%的有用组件。
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COMORP: Rapid prototyping for mathematical database cost models development

The database technology evolution trends had pushed the researchers to redesign and adapt the past mathematical database cost models with the consideration of additional aspects due to the emergence of this evolution. As a result, many scientists today propose database cost models by rethinking query processing and optimization with every change in hardware, workload, and applications. This requires a high level of domain expertise. However, assisting users to build database cost models by context-aware is difficult and an increasingly harder challenge. A new paradigm is needed to change cost model development methodology by designing it at a high level of abstraction to mitigate the gap between core database and conceptual modeling communities in order to shorten its long development cycle. Moreover, we need to support incrementally complex design of cost models and follow the evolution of database technologies that change rapidly and continuously to fit the new requirements. We investigate Model-Driven Engineering paradigms that enable database cost models, fast prototyping of modeling/analysis and optimize reusability of its integration components. This article presents a framework that aims to develop cost models as an extensible and customized kernel that provides metrics related to the most sensitive layers of database systems and assists the cost model composition process by combinations of fundamental primitives. We implement our framework to help designers/researchers create a successful cost model product semi-automatically correlate with their manifests. Experimental evaluations show that by using our framework, we can reduce the time spent by 60% on CM building, while being able to recommend useful components with up to 90%.

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来源期刊
Journal of Computer Languages
Journal of Computer Languages Computer Science-Computer Networks and Communications
CiteScore
5.00
自引率
13.60%
发文量
36
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