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Worst-case throughput analysis for parametric rate and parametric actor execution time scenario-aware dataflow graphs

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Samenvatting

Scenario-aware dataflow (SADF) is a prominent tool for modeling and analysis of dynamic embedded dataflow applications. In SADF the application is represented as a finite collection of synchronous dataflow (SDF) graphs, each of which represents one possible application behaviour or scenario. A finite state machine (FSM) specifies the possible orders of scenario occurrences. The SADF model renders the tightest possible performance guarantees, but is limited by its finiteness. This means that from a practical point of view, it can only handle dynamic dataflow applications that are characterized by a reasonably sized set of possible behaviours or scenarios. In this paper we remove this limitation for a class of SADF graphs by means of SADF model parametrization in terms of graph port rates and actor execution times. First, we formally define the semantics of the model relevant for throughput analysis based on (max,+) linear system theory and (max,+) automata. Second, by generalizing some of the existing results, we give the algorithms for worst-case throughput analysis of parametric rate and parametric actor execution time acyclic SADF graphs with a fully connected, possibly infinite state transition system. Third, we demonstrate our approach on a few realistic applications from digital signal processing (DSP) domain mapped onto an embedded multi-processor architecture.
Originele taal-2Engels
TitelProceedings 1st International Workshop on Synthesis of Continuous Parameters, SynCoP 2014, Grenoble, France, 6th April 2014
RedacteurenÉ. André, G. Frehse
UitgeverijOpen Publishing Association
Pagina's65-79
DOI's
StatusGepubliceerd - 2014
Evenementconference; International Workshop on Synthesis of Continuous Parameters, SynCoP 2014; 2014-04-06; 2014-04-06 -
Duur: 6 apr. 20146 apr. 2014

Publicatie series

NaamElectronic Proceedings in Theoretical Computer Science
Volume145
ISSN van geprinte versie2075-2180

Congres

Congresconference; International Workshop on Synthesis of Continuous Parameters, SynCoP 2014; 2014-04-06; 2014-04-06
Periode6/04/146/04/14
AnderInternational Workshop on Synthesis of Continuous Parameters, SynCoP 2014

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