An Iterative Multi-Application Mapping Algorithm for Heterogeneous MPSoCs

Open Access
Authors
Publication date 2013
Book title ESTIMedia 2013
Book subtitle the 11th IEEE Symposium on Embedded Systems for Real-Time Multimedia
ISBN
  • 9781479912858
ISBN (electronic)
  • 9781479912841
Event 11th IEEE Symposium on Embedded Systems for Real-Time Multimedia (ESTIMedia '13), Montreal, Canada
Pages (from-to) 115-124
Publisher Piscataway, NJ: IEEE
Organisations
  • Faculty of Science (FNWI) - Informatics Institute (IVI)
Abstract
Task mapping plays a crucial role in achieving high performance and energy savings in heterogeneous multiprocessor platforms. The problem of optimally mapping tasks onto a set of given heterogeneous processors for maximal throughput/minimal overall energy consumption has been known, in general, to be NP-complete. This problem is exacerbated when mapping multiple applications onto the target platform. To address this problem, this paper proposes an iterative multi-application mapping algorithm that operates at run time. Based on statically derived optimal (or near optimal) mappings for each separate application, this algorithm will quickly find a near optimal mapping under the objectives of high performance and low energy consumption for the simultaneously running applications on heterogeneous platforms. We have evaluated our algorithm using a heterogeneous MPSoC system with three real applications. Experimental results reveal the effectiveness of our proposed algorithm by comparing derived solutions to the ones obtained from other well-known algorithms.
Document type Conference contribution
Language English
Published at https://doi.org/10.1109/ESTIMedia.2013.6704510
Published at https://staff.fnwi.uva.nl/a.d.pimentel/artemis/rmm_estimedia.pdf
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