Download Formal Methods for Industrial Critical Systems: 20th by Manuel Núñez, Matthias Güdemann PDF

By Manuel Núñez, Matthias Güdemann

This ebook constitutes the complaints of the twentieth overseas Workshop on Formal tools for commercial severe platforms, FMICS 2015, Oslo, Norway, in June 2015.

The 12 papers provided during this quantity have been rigorously reviewed and chosen from 20 submissions. they're prepared in topical sections: purposes; protocols; specification and research; verification.

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Extra resources for Formal Methods for Industrial Critical Systems: 20th International Workshop, FMICS 2015 Oslo, Norway, June 22-23, 2015 Proceedings

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Simplified simulation of parallel execution for function set_entry of Fig. 1 Step 0 simply generates input values for the arguments being passed to set_entry function. When the execution reaches the end of the function, we assume it goes to Step 0 and can start again with new arguments. Error cases are treated in the same way. Parallelism is simulated by an infinite loop (lines 47–59) that, at each iteration, randomly selects a thread and makes it execute one step. Values of input and local variables of different threads are kept in arrays (fn, idx, new, c_n, old) that associate to each thread number the value of the corresponding variable for this thread.

We aimed to know what can be done for concurrent programs with Frama-C provided that they are correctly and fully synchronized. Currently, ensuring that the programming discipline is respected is not done by a dedicated tool, a future work would be to automate this verification. 2 Lessons Learned, Benefits and Limitations of the Approach This case study confirms that an obvious benefit of deductive verification based on automatic theorem provers, combined when necessary with interactive proof, is its cost efficiency.

5674, pp. 212–227. Springer, Heidelberg (2009) 14. : From total store order to sequential consistency: A practical reduction theorem. C. ) ITP 2010. LNCS, vol. 6172, pp. 403–418. Springer, Heidelberg (2010) 15. : A semantics for concurrent separation logic. , Yoshida, N. ) CONCUR 2004. LNCS, vol. 3170, pp. 16–34. Springer, Heidelberg (2004) 16. : Pervasive verification of an OS microkernel. K. ) VSTTE 2010. LNCS, vol. 6217, pp. 71–85. Springer, Heidelberg (2010) 17. : Compositional verification of a baby virtual memory manager.

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