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Federated Heterogeneous Compute and Storage Infrastructure for the PUNCH4NFDI Consortium

Authors :
Drabent Alexander
Freyermuth Oliver
Giffels Manuel
Hoeft Matthias
Künsemöller Jörn
Roland Benoit
Schwarz Dominik
Wissing Christoph
Source :
EPJ Web of Conferences, Vol 295, p 07020 (2024)
Publication Year :
2024
Publisher :
EDP Sciences, 2024.

Abstract

PUNCH4NFDI, funded by the Germany Research Foundation initially for five years, is a diverse consortium of particle, astro-, astroparticle, hadron and nuclear physics embedded in the National Research Data Infrastructure initiative. In order to provide seamless and federated access to the huge variety of compute and storage systems provided by the participating communities covering their very diverse needs, the Compute4PUNCH and Storage4PUNCH concepts have been developed. Both concepts comprise state-of-the-art technologies such as a token-based AAI for standardized access to compute and storage resources. The community supplied heterogeneous HPC, HTC and Cloud compute resources are dynamically and transparently integrated into one federated HTCondorbased overlay batch system using the COBalD/TARDIS resource meta-scheduler. Traditional login nodes and a JupyterHub provide entry points into the entire landscape of available compute resources, while container technologies and the CERN Virtual Machine File System (CVMFS) ensure a scalable provisioning of community-specific software environments. In Storage4PUNCH, community supplied storage systems mainly based on dCache or XRootD technology are being federated in a common infrastructure employing methods that are well established in the wider HEP community. Furthermore existing technologies for caching as well as metadata handling are being evaluated with the aim for a deeper integration. The combined Compute4PUNCH and Storage4PUNCH environment will allow a large variety of researchers to carry out resource-demanding analysis tasks. In this contribution we will present the Compute4PUNCH and Storage4PUNCH concepts, the current status of the developments as well as first experiences with scientific applications being executed on the available prototypes.

Subjects

Subjects :
Physics
QC1-999

Details

Language :
English
ISSN :
2100014X and 72062045
Volume :
295
Database :
Directory of Open Access Journals
Journal :
EPJ Web of Conferences
Publication Type :
Academic Journal
Accession number :
edsdoj.618cbe72062045d2b99771bd179ee96c
Document Type :
article
Full Text :
https://doi.org/10.1051/epjconf/202429507020