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Computer-Aided Verification - 2nd Internatonal Conference, CAV '90, New Brunswick, NJ, USA, June 18-21, 1990. Proceedings... Computer-Aided Verification - 2nd Internatonal Conference, CAV '90, New Brunswick, NJ, USA, June 18-21, 1990. Proceedings (Paperback, 1991 ed.)
Edmund M. Clarke, Robert P. Kurshan
R1,618 Discovery Miles 16 180 Ships in 10 - 15 working days

This volume contains the proceedings of the second workshop on Computer Aided Verification, held at DIMACS, Rutgers University, June 18-21, 1990. Itfeatures theoretical results that lead to new or more powerful verification methods. Among these are advances in the use of binary decision diagrams, dense time, reductions based upon partial order representations and proof-checking in controller verification. The motivation for holding a workshop on computer aided verification was to bring together work on effective algorithms or methodologies for formal verification - as distinguished, say, from attributes of logics or formal languages. The considerable interest generated by the first workshop, held in Grenoble, June 1989 (see LNCS 407), prompted this second meeting. The general focus of this volume is on the problem of making formal verification feasible for various models of computation. Specific emphasis is on models associated with distributed programs, protocols, and digital circuits. The general test of algorithm feasibility is to embed it into a verification tool, and exercise that tool on realistic examples: the workshop included sessionsfor the demonstration of new verification tools.

Model Checking (Hardcover, second edition): Edmund M. Clarke Jr, Orna Grumberg, Daniel Kroening, Doron Peled, Helmut Veith Model Checking (Hardcover, second edition)
Edmund M. Clarke Jr, Orna Grumberg, Daniel Kroening, Doron Peled, Helmut Veith
R2,092 R1,848 Discovery Miles 18 480 Save R244 (12%) Ships in 9 - 15 working days

An expanded and updated edition of a comprehensive presentation of the theory and practice of model checking, a technology that automates the analysis of complex systems. Model checking is a verification technology that provides an algorithmic means of determining whether an abstract model-representing, for example, a hardware or software design-satisfies a formal specification expressed as a temporal logic formula. If the specification is not satisfied, the method identifies a counterexample execution that shows the source of the problem. Today, many major hardware and software companies use model checking in practice, for verification of VLSI circuits, communication protocols, software device drivers, real-time embedded systems, and security algorithms. This book offers a comprehensive presentation of the theory and practice of model checking, covering the foundations of the key algorithms in depth. The field of model checking has grown dramatically since the publication of the first edition in 1999, and this second edition reflects the advances in the field. Reorganized, expanded, and updated, the new edition retains the focus on the foundations of temporal logic model while offering new chapters that cover topics that did not exist in 1999: propositional satisfiability, SAT-based model checking, counterexample-guided abstraction refinement, and software model checking. The book serves as an introduction to the field suitable for classroom use and as an essential guide for researchers.

Handbook of Model Checking (Hardcover, 1st ed. 2018): Edmund M. Clarke, Thomas A. Henzinger, Helmut Veith, Roderick Bloem Handbook of Model Checking (Hardcover, 1st ed. 2018)
Edmund M. Clarke, Thomas A. Henzinger, Helmut Veith, Roderick Bloem
R3,465 Discovery Miles 34 650 Ships in 12 - 17 working days

Model checking is a computer-assisted method for the analysis of dynamical systems that can be modeled by state-transition systems. Drawing from research traditions in mathematical logic, programming languages, hardware design, and theoretical computer science, model checking is now widely used for the verification of hardware and software in industry. The editors and authors of this handbook are among the world's leading researchers in this domain, and the 32 contributed chapters present a thorough view of the origin, theory, and application of model checking. In particular, the editors classify the advances in this domain and the chapters of the handbook in terms of two recurrent themes that have driven much of the research agenda: the algorithmic challenge, that is, designing model-checking algorithms that scale to real-life problems; and the modeling challenge, that is, extending the formalism beyond Kripke structures and temporal logic. The book will be valuable for researchers and graduate students engaged with the development of formal methods and verification tools.

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