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PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem

PROOF, the Parallel ROOT Facility, is a ROOT-based framework which enables interactive parallelism for event-based tasks on a cluster of computing nodes. Although PROOF can be used simply from within a ROOT session with no additional requirements, deploying and configuring a PROOF cluster used to be...

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Autores principales: Berzano, Dario, Blomer, Jakob, Buncic, Predrag, Charalampidis, Ioannis, Ganis, Gerardo, Lestaris, Georgios, Meusel, René
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/513/3/032007
http://cds.cern.ch/record/1662696
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author Berzano, Dario
Blomer, Jakob
Buncic, Predrag
Charalampidis, Ioannis
Ganis, Gerardo
Lestaris, Georgios
Meusel, René
author_facet Berzano, Dario
Blomer, Jakob
Buncic, Predrag
Charalampidis, Ioannis
Ganis, Gerardo
Lestaris, Georgios
Meusel, René
author_sort Berzano, Dario
collection CERN
description PROOF, the Parallel ROOT Facility, is a ROOT-based framework which enables interactive parallelism for event-based tasks on a cluster of computing nodes. Although PROOF can be used simply from within a ROOT session with no additional requirements, deploying and configuring a PROOF cluster used to be not as straightforward. Recently great efforts have been spent to make the provisioning of generic PROOF analysis facilities with zero configuration, with the added advantages of positively affecting both stability and scalability, making the deployment operations feasible even for the end user. Since a growing amount of large-scale computing resources are nowadays made available by Cloud providers in a virtualized form, we have developed the Virtual PROOF-based Analysis Facility: a cluster appliance combining the solid CernVM ecosystem and PoD (PROOF on Demand), ready to be deployed on the Cloud and leveraging some peculiar Cloud features such as elasticity. We will show how this approach is effective both for sysadmins, who will have little or no configuration to do to run it on their Clouds, and for the end users, who are ultimately in full control of their PROOF cluster and can even easily restart it by themselves in the unfortunate event of a major failure. We will also show how elasticity leads to a more optimal and uniform usage of Cloud resources.
id cern-1662696
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling cern-16626962023-03-15T19:13:02Zdoi:10.1088/1742-6596/513/3/032007http://cds.cern.ch/record/1662696engBerzano, DarioBlomer, JakobBuncic, PredragCharalampidis, IoannisGanis, GerardoLestaris, GeorgiosMeusel, RenéPROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystemComputing and ComputersPROOF, the Parallel ROOT Facility, is a ROOT-based framework which enables interactive parallelism for event-based tasks on a cluster of computing nodes. Although PROOF can be used simply from within a ROOT session with no additional requirements, deploying and configuring a PROOF cluster used to be not as straightforward. Recently great efforts have been spent to make the provisioning of generic PROOF analysis facilities with zero configuration, with the added advantages of positively affecting both stability and scalability, making the deployment operations feasible even for the end user. Since a growing amount of large-scale computing resources are nowadays made available by Cloud providers in a virtualized form, we have developed the Virtual PROOF-based Analysis Facility: a cluster appliance combining the solid CernVM ecosystem and PoD (PROOF on Demand), ready to be deployed on the Cloud and leveraging some peculiar Cloud features such as elasticity. We will show how this approach is effective both for sysadmins, who will have little or no configuration to do to run it on their Clouds, and for the end users, who are ultimately in full control of their PROOF cluster and can even easily restart it by themselves in the unfortunate event of a major failure. We will also show how elasticity leads to a more optimal and uniform usage of Cloud resources.PROOF, the Parallel ROOT Facility, is a ROOT-based framework which enables interactive parallelism for event-based tasks on a cluster of computing nodes. Although PROOF can be used simply from within a ROOT session with no additional requirements, deploying and configuring a PROOF cluster used to be not as straightforward. Recently great efforts have been spent to make the provisioning of generic PROOF analysis facilities with zero configuration, with the added advantages of positively affecting both stability and scalability, making the deployment operations feasible even for the end user. Since a growing amount of large-scale computing resources are nowadays made available by Cloud providers in a virtualized form, we have developed the Virtual PROOF-based Analysis Facility: a cluster appliance combining the solid CernVM ecosystem and PoD (PROOF on Demand), ready to be deployed on the Cloud and leveraging some peculiar Cloud features such as elasticity. We will show how this approach is effective both for sysadmins, who will have little or no configuration to do to run it on their Clouds, and for the end users, who are ultimately in full control of their PROOF cluster and can even easily restart it by themselves in the unfortunate event of a major failure. We will also show how elasticity leads to a more optimal and uniform usage of Cloud resources.PROOF, the Parallel ROOT Facility, is a ROOT-based framework which enables interactive parallelism for event-based tasks on a cluster of computing nodes. Although PROOF can be used simply from within a ROOT session with no additional requirements, deploying and configuring a PROOF cluster used to be not as straightforward. Recently great efforts have been spent to make the provisioning of generic PROOF analysis facilities with zero configuration, with the added advantages of positively affecting both stability and scalability, making the deployment operations feasible even for the end user. Since a growing amount of large-scale computing resources are nowadays made available by Cloud providers in a virtualized form, we have developed the Virtual PROOF-based Analysis Facility: a cluster appliance combining the solid CernVM ecosystem and PoD (PROOF on Demand), ready to be deployed on the Cloud and leveraging some peculiar Cloud features such as elasticity. We will show how this approach is effective both for sysadmins, who will have little or no configuration to do to run it on their Clouds, and for the end users, who are ultimately in full control of their PROOF cluster and can even easily restart it by themselves in the unfortunate event of a major failure. We will also show how elasticity leads to a more optimal and uniform usage of Cloud resources.arXiv:1402.4623oai:cds.cern.ch:16626962014-02-19
spellingShingle Computing and Computers
Berzano, Dario
Blomer, Jakob
Buncic, Predrag
Charalampidis, Ioannis
Ganis, Gerardo
Lestaris, Georgios
Meusel, René
PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem
title PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem
title_full PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem
title_fullStr PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem
title_full_unstemmed PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem
title_short PROOF as a Service on the Cloud: a Virtual Analysis Facility based on the CernVM ecosystem
title_sort proof as a service on the cloud: a virtual analysis facility based on the cernvm ecosystem
topic Computing and Computers
url https://dx.doi.org/10.1088/1742-6596/513/3/032007
http://cds.cern.ch/record/1662696
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