• DocumentCode
    3683845
  • Title

    Parametrized dataflow scenarios

  • Author

    Mladen Skelin;Marc Geilen;Francky Catthoor;Sverre Hendseth

  • Author_Institution
    Norwegian University of Science and Technology
  • fYear
    2015
  • Firstpage
    95
  • Lastpage
    104
  • Abstract
    The FSM-based scenario-aware data ow (FSM-SADF) model of computation has been introduced to facilitate the analysis of dynamic streaming applications. FSM-SADF interprets application´s execution as an execution of a sequence of static modes of operation called scenarios. Each scenario is modeled using a synchronous data ow (SDF) graph (SDFG), while a finite-state machine (FSM) is used to encode scenario occurrence patterns. However, FSM-SADF can precisely capture only those dynamic applications whose behaviors can be abstracted into a reasonably sized set of scenarios (coarse-grained dynamism). Nevertheless, in many cases, the application may exhibit thousands or even millions of behaviours (fine-grained dynamism). In this work, we generalize the concept of FSM-SADF to one that is able to model dynamic applications exhibiting fine-grained dynamism. We achieve this by applying parametrization to the FSM-SADF´s base model, i.e. SDF, and defining scenarios over parametrized SDFGs. We refer to the extension as parametrized FSM-SADF (PFSM-SADF). Thereafter, we present a novel and a fully parametric analysis technique that allows us to derive tight worst-case performance (throughput and latency) guarantees for PFSM-SADF specifications. We evaluate our approach on a realistic case-study from the multimedia domain.
  • Keywords
    "Delays","Data models","Analytical models","Schedules","Computational modeling","Throughput","Algebra"
  • Publisher
    ieee
  • Conference_Titel
    Embedded Software (EMSOFT), 2015 International Conference on
  • Type

    conf

  • DOI
    10.1109/EMSOFT.2015.7318264
  • Filename
    7318264