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Model-Driven One-Sided Factorizations on Multicore Accelerated Systems., , , , , и . Supercomput. Front. Innov., 1 (1): 85-115 (2014)Weighted dynamic scheduling with many parallelism grains for offloading of numerical workloads to multiple varied accelerators., , , , , и . ScalA@SC, стр. 5:1-5:8. ACM, (2015)Power-aware computing: Measurement, control, and performance analysis for Intel Xeon Phi., , , , , и . HPEC, стр. 1-7. IEEE, (2017)SLATE: design of a modern distributed and accelerated linear algebra library., , , , и . SC, стр. 26:1-26:18. ACM, (2019)Least squares solvers for distributed-memory machines with GPU accelerators., , , , и . ICS, стр. 117-126. ACM, (2019)Portable and Efficient Dense Linear Algebra in the Beginning of the Exascale Era., , , , , , , , и . P3HPC@SC, стр. 36-46. IEEE, (2022)Unified Development for Mixed Multi-GPU and Multi-coprocessor Environments Using a Lightweight Runtime Environment., , , , , , и . IPDPS, стр. 491-500. IEEE Computer Society, (2014)Flexible Linear Algebra Development and Scheduling with Cholesky Factorization., , , , , и . HPCC/CSS/ICESS, стр. 861-864. IEEE, (2015)VGrADS: enabling e-Science workflows on grids and clouds with fault tolerance., , , , , , , , , и 2 other автор(ы). SC, ACM, (2009)Dynamic task scheduling for linear algebra algorithms on distributed-memory multicore systems., , и . SC, ACM, (2009)