SWIFT: Using Task-Based Parallelism, Fully Asynchronous Communication, and Graph Partition-Based Domain Decomposition for Strong Scaling on more than 100, 000 Cores

Matthieu Schaller, Pedro Gonnet, Aidan B. G. Chalk, Peter W. Draper. SWIFT: Using Task-Based Parallelism, Fully Asynchronous Communication, and Graph Partition-Based Domain Decomposition for Strong Scaling on more than 100, 000 Cores. In Torsten Hoefler, David Keyes, Timothy Robinson, editors, Proceedings of the Platform for Advanced Scientific Computing Conference, PASC 2016, Lausanne, Switzerland, June 8-10, 2016. pages 2, ACM, 2016. [doi]

@inproceedings{SchallerGCD16,
  title = {SWIFT: Using Task-Based Parallelism, Fully Asynchronous Communication, and Graph Partition-Based Domain Decomposition for Strong Scaling on more than 100, 000 Cores},
  author = {Matthieu Schaller and Pedro Gonnet and Aidan B. G. Chalk and Peter W. Draper},
  year = {2016},
  url = {http://dl.acm.org/citation.cfm?id=2929916},
  researchr = {https://researchr.org/publication/SchallerGCD16},
  cites = {0},
  citedby = {0},
  pages = {2},
  booktitle = {Proceedings of the Platform for Advanced Scientific Computing Conference, PASC 2016, Lausanne, Switzerland, June 8-10, 2016},
  editor = {Torsten Hoefler and David Keyes and Timothy Robinson},
  publisher = {ACM},
  isbn = {978-1-4503-4126-4},
}