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1
Execution Framework of the GEMOC Studio (Tool Demo)
In: Proceedings of the 2016 ACM SIGPLAN International Conference on Software Language Engineering ; https://hal.inria.fr/hal-01355391 ; Proceedings of the 2016 ACM SIGPLAN International Conference on Software Language Engineering, Oct 2016, Amsterdam, Netherlands. pp.8 (2016)
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2
Logically timed specifications in the AADL : a synchronous model of computation and communication (recommendations to the SAE committee on AADL)
In: https://hal.inria.fr/hal-00970244 ; [Technical Report] RT-0446, INRIA. 2014, pp.27 (2014)
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3
A Component-Based Approach for Specifying DSML's Concrete Syntax
In: 2nd Workshop on Graphical Modeling Language Development (GMLD 2013) ; https://hal.inria.fr/hal-00829173 ; 2nd Workshop on Graphical Modeling Language Development (GMLD 2013), Jul 2013, Montpellier, France. pp.3-11, ⟨10.1145/2489820.2489822⟩ (2013)
Abstract: International audience ; Model-Driven Engineering (MDE) encourages the use of graphical modeling tools, which facilitate the development process from modeling to coding. Such tools can be designed using the MDE approach into meta-modeling environments called metaCASE tools. It turned out that current metaCASE tools still require, in most cases, manual programming to build full tool support for the modeling language, especially for users' native methodologies and representational elements and propose limited possibilities in terms of reusability. In this context, we propose MID, a set of meta-models supporting the easy speci cation of modeling editors by means of reusable components and explain how representational meta-modeling is carried out with it.
Keyword: [INFO.INFO-MO]Computer Science [cs]/Modeling and Simulation; [INFO.INFO-PL]Computer Science [cs]/Programming Languages [cs.PL]; [INFO.INFO-SE]Computer Science [cs]/Software Engineering [cs.SE]; ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.13: Reusable Software; ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.2: Design Tools and Techniques; ACM: D.: Software/D.2: SOFTWARE ENGINEERING/D.2.6: Programming Environments
URL: https://hal.inria.fr/hal-00829173/document
https://hal.inria.fr/hal-00829173/file/GMLD.pdf
https://hal.inria.fr/hal-00829173
https://doi.org/10.1145/2489820.2489822
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4
Developing efficient parsers in Prolog: the CLF manual (v1.0)
In: https://hal.inria.fr/inria-00120518 ; [Technical Report] RT-0328, INRIA. 2006, pp.18 (2006)
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