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CERN Tape Archive: a distributed, reliable and scalable scheduling system

<!--HTML-->The CERN Tape Archive (CTA) provides a tape backend to disk systems and, in conjunction with EOS, is managing the data of the LHC experiments at CERN. Magnetic tape storage offer the lowest cost per unit volume today, followed by hard disks and flash. In addition, current tape dri...

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Autor principal: Cano, Eric
Lenguaje:eng
Publicado: 2021
Materias:
Acceso en línea:http://cds.cern.ch/record/2767121
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author Cano, Eric
author_facet Cano, Eric
author_sort Cano, Eric
collection CERN
description <!--HTML-->The CERN Tape Archive (CTA) provides a tape backend to disk systems and, in conjunction with EOS, is managing the data of the LHC experiments at CERN. Magnetic tape storage offer the lowest cost per unit volume today, followed by hard disks and flash. In addition, current tape drives deliver a solid bandwidth (typically 360MB/s per device), but at the cost of high latencies, both for mounting a tape in the drive and for positioning when accessing non-adjacent files. As a consequence, the transfer scheduler should queue transfer requests before the volume warranting a tape mount is reached. In spite of these transfer latencies, user-interactive operations should have a low latency. The scheduling system for CTA was built from the experience gained with CASTOR. Its implementation ensures reliability and predictable performance, while simplifying development and deployment. As CTA is expected to be used for a long time, lock-in to vendors or technologies was minimized. Finally quality assurance systems were put in place to validate reliability and performance while allowing fast and safe development turnaround.
id cern-2767121
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2021
record_format invenio
spelling cern-27671212022-11-02T22:25:40Zhttp://cds.cern.ch/record/2767121engCano, EricCERN Tape Archive: a distributed, reliable and scalable scheduling system25th International Conference on Computing in High Energy & Nuclear PhysicsConferences<!--HTML-->The CERN Tape Archive (CTA) provides a tape backend to disk systems and, in conjunction with EOS, is managing the data of the LHC experiments at CERN. Magnetic tape storage offer the lowest cost per unit volume today, followed by hard disks and flash. In addition, current tape drives deliver a solid bandwidth (typically 360MB/s per device), but at the cost of high latencies, both for mounting a tape in the drive and for positioning when accessing non-adjacent files. As a consequence, the transfer scheduler should queue transfer requests before the volume warranting a tape mount is reached. In spite of these transfer latencies, user-interactive operations should have a low latency. The scheduling system for CTA was built from the experience gained with CASTOR. Its implementation ensures reliability and predictable performance, while simplifying development and deployment. As CTA is expected to be used for a long time, lock-in to vendors or technologies was minimized. Finally quality assurance systems were put in place to validate reliability and performance while allowing fast and safe development turnaround.oai:cds.cern.ch:27671212021
spellingShingle Conferences
Cano, Eric
CERN Tape Archive: a distributed, reliable and scalable scheduling system
title CERN Tape Archive: a distributed, reliable and scalable scheduling system
title_full CERN Tape Archive: a distributed, reliable and scalable scheduling system
title_fullStr CERN Tape Archive: a distributed, reliable and scalable scheduling system
title_full_unstemmed CERN Tape Archive: a distributed, reliable and scalable scheduling system
title_short CERN Tape Archive: a distributed, reliable and scalable scheduling system
title_sort cern tape archive: a distributed, reliable and scalable scheduling system
topic Conferences
url http://cds.cern.ch/record/2767121
work_keys_str_mv AT canoeric cerntapearchiveadistributedreliableandscalableschedulingsystem
AT canoeric 25thinternationalconferenceoncomputinginhighenergynuclearphysics