Ef .cient synthesis of out-of-core algorithms using a nonlinear optimization solver

S. Krishnan, S. Krishnamoorthy, G. Baumgartner, Chi‐Chung Lam, Jagannathan Ramanujam, Ponnuswamy Sadayappan, V. Choppella · 2004

Summary form only given. We address the problem of efficient out-of-core code generation for a special class of imperfectly nested loops encoding tensor contractions. These loops operate on arrays too large to fit in physical memory. The problem involves determining optimal tiling and placement of disk I/O statements. This entails a search in an explosively large parameter space. We formulate the problem as a nonlinear optimization problem and use a discrete constraint solver to generate optimized out-of-core code. Measurements on sequential and parallel versions of the generated code demonstrate the effectiveness of the proposed approach.

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