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A programmatic view of metadata, metadata services, and metadata flow in ATLAS

机译:ATLAS中元数据,元数据服务和元数据流的程序化视图

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摘要

The volume and diversity of metadata in an experiment of the size and scope of ATLAS are considerable. Even the definition of metadata may seem context-dependent: data that are primary for one purpose may be metadata for another. Trigger information and data from the Large Hadron Collider itself provide cases in point, but examples abound. Metadata about logical or physics constructs, such as data-taking periods and runs and luminosity blocks and events and algorithms, often need to be mapped to deployment and production constructs, such as datasets and jobs and files and software versions, and vice versa. Metadata at one level of granularity may have implications at another. ATLAS metadata services must integrate and federate information from inhomogeneous sources and repositories, map metadata about logical or physics constructs to deployment and production constructs, provide a means to associate metadata at one level of granularity with processing or decision-making at another, offer a coherent and integrated view to physicists, and support both human use and programmatic access. In this paper we consider ATLAS metadata, metadata services, and metadata flow principally from the illustrative perspective of how disparate metadata are made available to executing jobs and, conversely, how metadata generated by such jobs are returned. We describe how metadata are read, how metadata are cached, and how metadata generated by jobs and the tasks of which they are a part are communicated, associated with data products, and preserved. We also discuss the principles that guide decision-making about metadata storage, replication, and access.
机译:在ATLAS规模和范围的实验中,元数据的数量和多样性是相当可观的。甚至元数据的定义似乎也取决于上下文:对于一个目的主要的数据可能是对于另一个目的的元数据。大型强子对撞机本身的触发信息和数据提供了适当的案例,但示例比比皆是。有关逻辑或物理构造的元数据(例如数据获取周期和运行以及发光度块,事件和算法)通常需要映射到部署和生产构造,例如数据集,作业和文件以及软件版本,反之亦然。一个粒度级别的元数据可能会影响另一粒度级别。 ATLAS元数据服务必须集成和联合来自不均匀来源和存储库的信息,将有关逻辑或物理构造的元数据映射到部署和生产构造,提供一种将一级粒度的元数据与另一级的处理或决策相关联的方法,并提供一致的以及对物理学家的综合看法,并支持人类使用和程序访问。在本文中,我们主要从说明性的角度考虑ATLAS元数据,元数据服务和元数据流,这些角度说明如何将完全不同的元数据用于执行作业,以及相反如何返回此类作业生成的元数据。我们描述了如何读取元数据,如何缓存元数据,以及如何传达由作业生成的元数据及其作为其一部分的任务,与数据产品相关联以及如何保存。我们还将讨论指导元数据存储,复制和访问决策的原则。

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