Correct Hardware Design And Verification Methods


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Correct Hardware Design and Verification Methods


Correct Hardware Design and Verification Methods

Author:

language: en

Publisher:

Release Date: 1995


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Correct Hardware Design and Verification Methods


Correct Hardware Design and Verification Methods

Author: George J. Milne

language: en

Publisher: Springer Science & Business Media

Release Date: 1993-05-12


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These proceedings contain the papers presented at the Advanced Research Working Conference on Correct Hardware Design Methodologies, held in Arles, France, in May 1993, and organized by the ESPRIT Working Group 6018 CHARME-2and the Universit de Provence, Marseille, in cooperation with IFIP Working Group 10.2. Formal verification is emerging as a plausible alternative to exhaustive simulation for establishing correct digital hardware designs. The validation of functional and timing behavior is a major bottleneck in current VLSI design systems, slowing the arrival of products in the marketplace with its associated increase in cost. From being a predominantly academic area of study until a few years ago, formal design and verification techniques are now beginning to migrate into industrial use. As we are now witnessing an increase in activity in this area in both academia and industry, the aim of this working conference was to bring together researchers and users from both communities.

Correct Hardware Design and Verification Methods


Correct Hardware Design and Verification Methods

Author: Daniel Geist

language: en

Publisher: Springer Science & Business Media

Release Date: 2003-10-10


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This book constitutes the refereed proceedings of the 12th IFIP WG 10.5 Advanced Research Working Conference on Correct Hardware Design and Verification Methods, CHARME 2003, held in L'Aquila, Italy in October 2003. The 24 revised full papers and 8 short papers presented were carefully reviewed and selected from 65 submissions. The papers are organized in topical sections on software verification, automata based methods, processor verification, specification methods, theorem proving, bounded model checking, and model checking and applications.