scaling non-regular shared-memory codes by reusing custom loop schedules

Clicks: 13
ID: 239012
2003
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Abstract
In this paper we explore the idea of customizing and reusing loop schedules to improve the scalability of non-regular numerical codes in shared-memory architectures with non-uniform memory access latency. The main objective is to implicitly setup affinity links between threads and data, by devising loop schedules that achieve balanced work distribution within irregular data spaces and reusing them as much as possible along the execution of the program for better memory access locality. This transformation provides a great deal of flexibility in optimizing locality, without compromising the simplicity of the shared-memory programming paradigm. In particular, the programmer does not need to explicitly distribute data between processors. The paper presents practical examples from real applications and experiments showing the efficiency of the approach.
Reference Key
nikolopoulos2003scientificscaling Use this key to autocite in the manuscript while using SciMatic Manuscript Manager or Thesis Manager
Authors ;Dimitrios S. Nikolopoulos;Ernest Artiaga;Eduard Ayguadé;Jesús Labarta
Journal environmental pollution
Year 2003
DOI
10.1155/2003/379739
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