A Proposed Framework for Advanced (Multi)Linear Infrastructure in Engineering and Science (FAMLIES)

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Main Authors: Matthews, Devin A., Low, Tze Meng, Myers, Margaret E., Parikh, Devangi N., van de Geijn, Robert A.
Format: Preprint
Published: 2026
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_version_ 1866910113517797376
author Matthews, Devin A.
Low, Tze Meng
Myers, Margaret E.
Parikh, Devangi N.
van de Geijn, Robert A.
author_facet Matthews, Devin A.
Low, Tze Meng
Myers, Margaret E.
Parikh, Devangi N.
van de Geijn, Robert A.
contents We leverage highly successful prior projects sponsored by multiple NSF grants and gifts from industry: the BLAS-like Library Instantiation Software (BLIS) and the libflame efforts to lay the foundation for a new flexible framework by vertically integrating the dense linear and multi-linear (tensor) software stacks that are important to modern computing. This vertical integration will enable high-performance computations from node-level to massively-parallel, and across both CPU and GPU architectures. The effort builds on decades of experience by the research team turning fundamental research on the systematic derivation of algorithms (the NSF-sponsored FLAME project) into practical software for this domain, targeting single and multi-core (BLIS, TBLIS, and libflame), GPU-accelerated (SuperMatrix), and massively parallel (PLAPACK, Elemental, and ROTE) compute environments. This project will implement key linear algebra and tensor operations which highlight the flexibility and effectiveness of the new framework, and set the stage for further work in broadening functionality and integration into diverse scientific and machine learning software.
format Preprint
id arxiv_https___arxiv_org_abs_2604_07311
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle A Proposed Framework for Advanced (Multi)Linear Infrastructure in Engineering and Science (FAMLIES)
Matthews, Devin A.
Low, Tze Meng
Myers, Margaret E.
Parikh, Devangi N.
van de Geijn, Robert A.
Mathematical Software
We leverage highly successful prior projects sponsored by multiple NSF grants and gifts from industry: the BLAS-like Library Instantiation Software (BLIS) and the libflame efforts to lay the foundation for a new flexible framework by vertically integrating the dense linear and multi-linear (tensor) software stacks that are important to modern computing. This vertical integration will enable high-performance computations from node-level to massively-parallel, and across both CPU and GPU architectures. The effort builds on decades of experience by the research team turning fundamental research on the systematic derivation of algorithms (the NSF-sponsored FLAME project) into practical software for this domain, targeting single and multi-core (BLIS, TBLIS, and libflame), GPU-accelerated (SuperMatrix), and massively parallel (PLAPACK, Elemental, and ROTE) compute environments. This project will implement key linear algebra and tensor operations which highlight the flexibility and effectiveness of the new framework, and set the stage for further work in broadening functionality and integration into diverse scientific and machine learning software.
title A Proposed Framework for Advanced (Multi)Linear Infrastructure in Engineering and Science (FAMLIES)
topic Mathematical Software
url https://arxiv.org/abs/2604.07311