DocumentCode :
244696
Title :
Performance analysis of an online atmospheric-chemistry global model with Paraver: Identification of scaling limitations
Author :
Markomanolis, G.S. ; Jorba, O. ; Baldasano, J.M.
Author_Institution :
Earth Sci. Dept., Barcelona Supercomput. Center-Centro Nac. de Supercomputacion (BSC - CNS), Barcelona, Spain
fYear :
2014
fDate :
21-25 July 2014
Firstpage :
738
Lastpage :
745
Abstract :
The performance analysis of a parallel application can be a difficult task. Specially in the case that this application is an operational atmospheric-chemistry model there can be multiple performance bottlenecks caused from different fields. Although the exascale era is coming, the applications are not ready to take advantage of all the new technologies and programming models. It is needed to improve our model in order to simulate higher resolutions and scale more efficient. In this article we describe the approaches that we follow for the performance analysis of an atmospheric-chemistry global model called NMMB/BSC chemical transport model and the identification of various bottlenecks by using the Paraver tool. We present the differences between some model configurations depending on the usage of extra modules and we study eight different topics that limit the scalability of the model. These topics include categories that there is no need for code modification such as mapping, processor affinity and more in depth analysis with hardware counters and load imbalance issues. The final results show the directions that we should follow in order to improve our model.
Keywords :
chemistry computing; parallel processing; resource allocation; NMMB-BSC chemical transport model; Paraver tool; atmospheric-chemistry global model; hardware counters; load imbalance; model configurations; model scalability; parallel application; scaling limitation identification; Aerosols; Analytical models; Atmospheric modeling; Chemistry; Computational modeling; Hardware; Radiation detectors; Atmospheric Models; Performance Analysis; Scaling;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
High Performance Computing & Simulation (HPCS), 2014 International Conference on
Conference_Location :
Bologna
Print_ISBN :
978-1-4799-5312-7
Type :
conf
DOI :
10.1109/HPCSim.2014.6903763
Filename :
6903763
Link To Document :
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