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Designing a New Infrastructure for ATLAS Online Web Services

机译:为阿特拉斯在线Web服务设计新的基础架构

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Within the ATLAS detector, the Trigger and Data Acquisition system is responsible for the online processing of data streamed from the detector during collisions at the Large Hadron Collider (LHC) at CERN. The online farm is composed of ~4000 servers processing the data read out from ~100 million detector channels through multiple trigger levels. The capability to monitor the ongoing data taking and all the involved applications is essential to debug and intervene promptly to ensure efficient data taking. The base of the current web service architecture was designed a few years ago, at the beginning of the ATLAS operation (Run 1). It was intended to serve primarily static content from a Network-attached Storage, and privileging strict security, using separate web servers for internal (ATLAS Technical and Control Network - ATCN) and external (CERN General Purpose Network and public internet) access. During these years, it has become necessary to add to the static content an increasing number of dynamic web-based User Interfaces, as they provided new functionalities and replaced legacy desktop UIs. These are typically served by applications on VMs inside ATCN and made accessible externally via chained reverse HTTP proxies. As the trend towards Web UIs continues, the current design has shown its limits, and its increasing complexity became an issue for maintenance and growth. It is, therefore, necessary to review the overall web services architecture for ATLAS, taking into account the current and future needs of the upcoming LHC Run 3. In this paper, we present our investigation and roadmap to re-design the web services system to better operate and monitor the ATLAS detector, while maintaining the security of critical services, such as Detector Control System, and maintaining the separation of remote monitoring and on-site control according to ATLAS policies.
机译:在地图集检测器中,触发器和数据采集系统负责在CERN的大型HADRON COLLIDER(LHC)的碰撞期间从检测器流动的在线处理。在线服务器场由〜4000服务器组成,处理通过多个触发电平从〜1亿探测器通道读出的数据。监视正在进行的数据的功能以及所有涉及的应用程序对于调试和干预迅速地进行调试以确保有效的数据。目前Web服务架构的基础是几年前设计的,在地图集操作的开始时(Run 1)。它旨在通过网络附加的存储和特权,使用单独的Web服务器来服务于内部(ATLAS技术和控制网络 - ATCN)和外部(CERN通用网络和公共Internet)访问权限的特权静态内容。在此期间,有必要添加到静态内容越来越多的基于Web的用户界面,因为它们提供了新功能和替换了遗留桌面UI。这些通常由ATCN内部VM的应用程序提供服务,并通过链式的反向HTTP代理外部进行可访问。随着Web UI的趋势继续,目前的设计表明了它的限制,其越来越复杂性成为维护和增长的问题。因此,需要考虑到即将到来的LHC RUN的当前和未来需求的情况下审查Atlas的整体Web服务架构。在本文中,我们展示了我们的调查和路线图来重新设计Web服务系统更好地操作和监控地图集检测器,同时保持关键服务的安全性,例如检测器控制系统,并根据ATLAS策略维护远程监控和现场控制的分离。

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