Grammar-Based Multi-Frontal Solver for One Dimensional Isogeometric Analysis with Multiple Right-Hand-Sides
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Conference PaperKAUST Department
Earth Science and Engineering ProgramNumerical Porous Media SRI Center (NumPor)
Physical Science and Engineering (PSE) Division
Date
2013-06-01Online Publication Date
2013-06-01Print Publication Date
2013Permanent link to this record
http://hdl.handle.net/10754/552434
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This paper introduces a grammar-based model for developing a multi-thread multi-frontal parallel direct solver for one- dimensional isogeometric finite element method. The model includes the integration of B-splines for construction of the element local matrices and the multi-frontal solver algorithm. The integration and the solver algorithm are partitioned into basic indivisible tasks, namely the grammar productions, that can be executed squentially. The partial order of execution of the basic tasks is analyzed to provide the scheduling for the execution of the concurrent integration and multi-frontal solver algo- rithm. This graph grammar analysis allows for optimal concurrent execution of all tasks. The model has been implemented and tested on NVIDIA CUDA GPU, delivering logarithmic execution time for linear, quadratic, cubic and higher order B-splines. Thus, the CUDA implementation delivers the optimal performance predicted by our graph grammar analysis. We utilize the solver for multiple right hand sides related to the solution of non-stationary or inverse problems.Citation
Grammar-Based Multi-Frontal Solver for One Dimensional Isogeometric Analysis with Multiple Right-Hand-Sides 2013, 18:1574 Procedia Computer SciencePublisher
Elsevier BVJournal
Procedia Computer ScienceConference/Event name
13th Annual International Conference on Computational Science, ICCS 2013Additional Links
http://linkinghub.elsevier.com/retrieve/pii/S1877050913004687ae974a485f413a2113503eed53cd6c53
10.1016/j.procs.2013.05.325