From post

Performance portability study for massively parallel computational fluid dynamics application on scalable heterogeneous architectures.

, , , и . J. Parallel Distributed Comput., (2019)

Please choose a person to relate this publication to

To differ between persons with the same name, the academic degree and the title of an important publication will be displayed.

 

Другие публикации лиц с тем же именем

Performance portability study for massively parallel computational fluid dynamics application on scalable heterogeneous architectures., , , и . J. Parallel Distributed Comput., (2019)DRAGON: breaking GPU memory capacity limits with direct NVM access., , , , и . SC, стр. 32:1-32:13. IEEE / ACM, (2018)OpenMPC: extended OpenMP for efficient programming and tuning on GPUs., и . Int. J. Comput. Sci. Eng., 8 (1): 4-20 (2013)OpenACC Profiling Support for Clang and LLVM using Clacc and TAU., , , , , , и . HUST/ProTools@SC, стр. 38-48. IEEE, (2020)An OpenACC-based unified programming model for multi-accelerator systems., , и . PPoPP, стр. 257-258. ACM, (2015)Leveraging Compiler-Based Translation to Evaluate a Diversity of Exascale Platforms., , , , и . P3HPC@SC, стр. 14-25. IEEE, (2022)Evaluating Performance Portability of OpenACC., , , и . LCPC, том 8967 из Lecture Notes in Computer Science, стр. 51-66. Springer, (2014)Implementing the OpenACC Data Model., , , , , , и . IPDPS Workshops, стр. 662-672. IEEE Computer Society, (2017)Adaptive tuning in a dynamically changing resource environment., и . IPDPS, стр. 1-5. IEEE, (2008)Toward Evaluating High-Level Synthesis Portability and Performance between Intel and Xilinx FPGAs., , , , , , , , , и 1 other автор(ы). IWOCL, стр. 7:1-7:9. ACM, (2021)