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Correct Hardware Design and Verification Methods

IFIP WG10.5 Advanced Research Working Conference, CHARME '95, Frankfurt, Germany, October 1995. Proceedings

Paperback Engels 1995 1995e druk 9783540603856
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Samenvatting

This book constitutes the refereed proceedings of the IFIP WG10.5 Advanced Research Working Conference on Correct Hardware Design Methodologies, CHARME '95, held in Frankfurt, Germany, in October 1995.
The 20 revised full papers presented were carefully selected by the program committee and address all current aspects of research and advanced applications in the field of formal verification of hardware. Among the topics covered are model checking, theorem proving, formally verified synthesis, process algebras, finite state systems, verification environments, language containment, and VHDL.

Specificaties

ISBN13:9783540603856
Taal:Engels
Bindwijze:paperback
Aantal pagina's:346
Uitgever:Springer Berlin Heidelberg
Druk:1995

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Inhoudsopgave

What if model checking must be truly symbolic.- Automatic verification of the SCI cache coherence protocol.- Describing and verifying synchronous circuits with the Boyer-Moore theorem prover.- Problems encountered in the machine-assisted proof of hardware.- Formally embedding existing high level synthesis algorithms.- Formal design of a class of computers — its high stage: abstract microprogramming.- Symbolic analysis and verification of CPA descriptions.- A foundation for formal reuse of hardware.- State enumeration with abstract descriptions of state machines.- Transforming Boolean relations by symbolic encoding.- Design error diagnosis in sequential circuits.- Timing analysis of asynchronous circuits using timed automata.- Improved probabilistic verification by hash compaction.- Formal support for the ELLA hardware description language.- Verifying hardware components with JACK.- Language containment of non-deterministic ?-automata.- A partial-order approach to the verification of concurrent systems: Checking liveness properties.- Semantics of a verification-oriented subset of VHDL.- Reasoning about VHDL using operational and observational semantics.- A symbolic relation for a subset of VHDL'87 descriptions and its application to symbolic model checking.

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        Correct Hardware Design and Verification Methods