Leveraging Applications of Formal Methods, Verification, and by Tiziana Margaria, Bernhard Steffen

By Tiziana Margaria, Bernhard Steffen

The 2 quantity set LNCS 6415 and LNCS 6416 constitutes the refereed court cases of the 4th overseas Symposium on Leveraging purposes of Formal equipment, ISoLA 2010, held in Heraklion, Crete, Greece, in October 2010. The a hundred revised complete papers awarded have been rigorously revised and chosen from a number of submissions and speak about concerns with regards to the adoption and use of rigorous instruments and strategies for the specification, research, verification, certification, development, try out, and upkeep of platforms. The forty six papers of the 1st quantity are geared up in topical sections on new demanding situations within the improvement of serious embedded structures, formal languages and strategies for designing and verifying complicated embedded platforms, worst-case traversal time (WCTT), instruments in clinical workflow composition, rising providers and applied sciences for a converging telecommunications / internet global in clever environments of the net of items, net technology, version transformation and research for commercial scale validation, and studying recommendations for software program verification and validation. the second one quantity offers fifty four papers addressing the subsequent subject matters: EternalS: challenge and roadmap, formal equipment in model-driven improvement for service-oriented and cloud computing, quantitative verification in perform, attach: prestige and plans, certification of software-driven scientific units, modeling and formalizing commercial software program for verification, validation and certification, and source and timing research.

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Yet, there is no fully integrated tool which covers the complete development process. Such a process should start with requirements specification in a formal way, proceed with the behavioral system design phase, and finally result in an automatically deployed and configured product. After relating the concept presented in this paper to commercial off-the-shelf products, we proceed to comment on projects from academia. Of course, there are tools for each of the mentioned phases. IBM’s Rational DOORS, and Reqtify from Geensys are widely used requirement specification and management tools.

We augment static analysis with dynamic methods for early validation. Our tool contains a simulation engine [13] which enables step-wise execution of the system according to its formal semantics using (i) manually set input data, (ii) values obtained in random testing, (iii) data fed back by an environment model, or (iv) simulation based on traces of previous runs on the target platform. The formal semantics not only facilitate bug hunting at model level, but also allow for early performance analysis, automatic computation of allocations of distributable software components to the hardware platform given in the TA, and automatic scheduling.

The resource requirements of each distributable software component have to be evaluated for subsequent distribution and scheduling decisions. Automated performance estimation calculates the worst-case execution time and memory consumption of each component. Using the SciSim [17] framework, the generated code is instrumented and analyzed to compute its resource usage for every processing node the component might be executed on. System Distribution. Based on this resource estimation, an optimal placement of distributable software components to run on computing nodes modeled in the Hardware Architecture is computed (cf.

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