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Coverage Directed Test Generation for Functional Verification Using Bayesian Networks
- In Proceedings of the 40th Design Automation Conference
, 2003
"... Functional verification is widely acknowledged as the bottleneck in the hardware design cycle. This paper addresses one of the main challenges of simulation based verification (or dynamic verification), by providing a new approach for Coverage Directed Test Generation (CDG). This approach is based ..."
Abstract
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Cited by 19 (2 self)
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Functional verification is widely acknowledged as the bottleneck in the hardware design cycle. This paper addresses one of the main challenges of simulation based verification (or dynamic verification), by providing a new approach for Coverage Directed Test Generation (CDG). This approach is based on Bayesian networks and computer learning techniques. It provides an efficient way for closing a feedback loop from the coverage domain back to a generator that produces new stimuli to the tested design. In this paper, we show how to apply Bayesian networks to the CDG problem. Applying Bayesian networks to the CDG framework has been tested in several experiments, exhibiting encouraging results and indicating that the suggested approach can be used to achieve CDG goals.
Generating Random Solutions for Constraint Satisfaction Problems
- IN 18TH NAT’L CONF. ARTIFICIAL INTELLIGENCE (AAAI02
, 2002
"... The paper presents a method for generating solutions of a constraint satisfaction problem (CSP) uniformly at random. The main ..."
Abstract
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Cited by 11 (2 self)
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The paper presents a method for generating solutions of a constraint satisfaction problem (CSP) uniformly at random. The main

