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Description
The gap between the size of microelectronic design/validation task and our ability to design these in a reasonable time is steadly increasing. We need tools and techniques to bridge this gap. Formal models and methods hold this promise by their focus on scalability, efficiency and design optimization. In additional, we need methodological innovations to bring formal techniques into practice. Exploiting the structure of the systems to decompose the problems into smaller ones, discovering the hierarchy and proper decomposition, abstraction, refinement, and other behavioral and structural properties of system are important for successful use of formal methods.
Formal Methods and Models for System Design is organized as a series of articles written by industrial and academic experts who apply formal methods in hardware and software design, develop methodologies and tools, or develop theoretical formalisms. The emphasis of the book is on (i) formal frameworks for complex system modeling, such as system-on-chip, embedded software, component based systems, (ii) formal verification techniques, especially abstraction and refinement based methodologies, (iii) behavioral type theory for system integration, (iv) optimization techniques for executable system level models for efficient simulation, and execution, and (v)formal models for post-production configurability.
Formal Methods and Models for System Design will provide readers with a sample of some of the recent developments in formal methods in system design. It can also be used as a graduate level text for a seminar based course.
Preface.
I: Methods and Models for System Level Design. 1. Modular Hierarchies of Models for Embedded Systems; M. Broy. 2. Actor-oriented Models for Codesign; E.A. Lee, S. Neuendorffer. 3. Structural Component Composition for System-level Models; F. Doucet, et al. 4. Truly Heterogeneous Modeling with SystemC; H.D. Patel, S.K. Shukla. 5. MoDe: A Method for System-level Architecture Evaluation; J. Romberg, et al.
II: Models and Methods for System Evaluation. 6. A Verification Methodology for Concurrent Software with Synchronous Communication; C. Sprenger, K. Worytkiewicz. 7. High-level Verification of Control Intensive Systems; E. Clarke, et al. 8. How to Compute the Refinement Relation for Parameterized Systems; F. Bellegarde, et al.
III: Type Theoretic Models and Methods for System Design. 9. Algebraic Theory for Behavioral Type Inference; J.-P. Talpin, P. Le Guernic. 10. Behavioral Type Inference for Compositional System design; J.-P. Talpin, et al.
IV: Optimizing System Models. 11. Optimizations for Faster Execution of Esterel Programs; D. Potop-Butucaru, R. de Simone. 12. Optimizing System Models for Simulation Efficiency; S.A. Sharad, S.K. Shukla. 13. Capturing Formal Specification into Abstract Models; D. Berner, et al.
V: Post Production Formal Methods. 14. Engineering Changes in Field Modifiable Architectures; S. Komatsu, et al.