In this article, we present the work-in-progress of the EU FP7 PHARAON project, started in September 2011. The first objective of the project is the development of new techniques and tools capable to assist the designer in the development of parallel embedded systems, from executable specifications to target-specific implementation and debugging on a multicore platform. This tool chain will offer and implement several parallelization strategies, reflecting the functional and non-functional constraints of the system, and driving the designer into incremental parallelization and adaptation steps. The second objective of the project is to develop monitoring and control techniques in the middleware of the system capable to automatically adapt platform services to application requirements and therefore reduce power consumption transparently.
EU FP7-288307 Pharaon Project: Parallel and Heterogeneous Architecture for Real-Time Applications / Hector, Posadas; Eugenio, Villar; Florian, Broekaert; Michel, Bourdelles; Albert, Cohen; Antoniu, Pop; Nhat Minh, Le; Adrien, Guatto; Lazarescu, MIHAI TEODOR; Lavagno, Luciano; Andrei, Terechko; Miguel, Glassee; Daniel, Calvo; Edouardo de las, Heras. - ELETTRONICO. - (2013), pp. 371-378. (Intervento presentato al convegno 2013 Euromicro Conference on Digital System Design tenutosi a Los Alamitos, CA, USA nel 4-6 settembre 2013) [10.1109/DSD.2013.47].
EU FP7-288307 Pharaon Project: Parallel and Heterogeneous Architecture for Real-Time Applications
LAZARESCU, MIHAI TEODOR;LAVAGNO, Luciano;
2013
Abstract
In this article, we present the work-in-progress of the EU FP7 PHARAON project, started in September 2011. The first objective of the project is the development of new techniques and tools capable to assist the designer in the development of parallel embedded systems, from executable specifications to target-specific implementation and debugging on a multicore platform. This tool chain will offer and implement several parallelization strategies, reflecting the functional and non-functional constraints of the system, and driving the designer into incremental parallelization and adaptation steps. The second objective of the project is to develop monitoring and control techniques in the middleware of the system capable to automatically adapt platform services to application requirements and therefore reduce power consumption transparently.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2527498