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Introducing: The Libflame Library for Dense Matrix Computations

Field G. Zee, Ernie Chan, Robert A. Geijn, Enrique S. Quintana, Gregorio Quintana‐Ortí

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Abstract

Researchers from the Formal Linear Algebra Method Environment (Flame) project have developed new methodologies for analyzing, designing, and implementing linear algebra libraries. These solutions, which have culminated in the libflame library, seem to solve many of the programmability problems that have arisen with the advent of multicore and many-core architectures.

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What this paper is about

Researchers from the Formal Linear Algebra Method Environment (Flame) project have developed new methodologies for analyzing, designing, and implementing linear algebra libraries. These solutions, which have culminated in the libflame library, seem to solve many of the programmability problems that have arisen with the advent of multicore and many-core architectures.

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OpenAlex reports 13 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Researchers from the Formal Linear Algebra Method Environment (Flame) project have developed new methodologies for analyzing, designing, and implementing linear algebra libraries. These solutions, which have culminated in the libflame library, seem to solve many of the programmability problems that have arisen with the advent of multicore and many-core architectures.

Key concepts: Linear algebra, Computer science, Matrix algebra, Numerical linear algebra, Computation, Multi-core processor, Computational science, Core (optical fiber)

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