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Ordonnancement hybride statique-dynamique en algèbre linéaire creuse pour de grands clusters de machines NUMA et multi-cœurs. (Static-Dynamic Hybrid Scheduling in sparse linear algebra for large clusters of NUMA and multi-cores architectures).. University of Bordeaux, France, (2009)Programming Heterogeneous Architectures Using Hierarchical Tasks., , , , , , и . Euro-Par Workshops, том 13835 из Lecture Notes in Computer Science, стр. 97-108. Springer, (2022)Leveraging Task-Based Polar Decomposition Using PARSEC on Massively Parallel Systems., , , и . CLUSTER, стр. 1-12. IEEE, (2019)High performance matrix inversion based on LU factorization for multicore architectures., , , и . MTAGS@SC, стр. 33-42. ACM, (2011)An Open-Source Tool-Chain for Performance Analysis., , , и . Parallel Tools Workshop, стр. 37-48. Springer, (2011)Improving Mapping for Sparse Direct Solvers - A Trade-Off Between Data Locality and Load Balancing., , , , , , и . Euro-Par, том 12247 из Lecture Notes in Computer Science, стр. 167-182. Springer, (2020)Flexible Development of Dense Linear Algebra Algorithms on Massively Parallel Architectures with DPLASMA., , , , , , , , , и 3 other автор(ы). IPDPS Workshops, стр. 1432-1441. IEEE, (2011)Programming the LU Factorization for a Multicore System with Accelerators., , , и . VECPAR, том 7851 из Lecture Notes in Computer Science, стр. 28-35. Springer, (2012)Achieving numerical accuracy and high performance using recursive tile LU factorization with partial pivoting., , , и . Concurr. Comput. Pract. Exp., 26 (7): 1408-1431 (2014)Divide and Conquer Symmetric Tridiagonal Eigensolver for Multicore Architectures., , , и . IPDPS, стр. 51-60. IEEE Computer Society, (2015)