DocumentCode
932593
Title
Efficient Design for Testability Solution Based on Unsatisfiability for Register-Transfer Level Circuits
Author
Lingappan, Loganathan ; Jha, Niraj K.
Author_Institution
Princeton Univ., Princeton
Volume
26
Issue
7
fYear
2007
fDate
7/1/2007 12:00:00 AM
Firstpage
1339
Lastpage
1345
Abstract
In this paper, we present a novel and accurate method for identifying design for testability (DFT) solutions for register-transfer level (RTL) circuits. Test generation proceeds by abstracting the circuit components using input/output propagation rules so that any justification/propagation event can be captured as a Boolean implication. Consequently, the RTL test generation problem is reduced to a satisfiability (SAT) instance. If a given SAT instance is not satisfiable, then we identify Boolean implications (also known as the unsatisfiable segment) that are responsible for unsatisfiability. We show that adding DFT elements is equivalent to modifying these clauses such that the unsatisfiable segment becomes satisfiable. The proposed DFT technique is both fast and accurate as it is applicable to RTL and mixed gate-level/RTL circuits and uses exact unsatisfiability conditions to identify the DFT solutions.
Keywords
design for testability; logic design; shift registers; Boolean implication; design for testability; input/output propagation rules; justification/propagation event; register-transfer level circuits; satisfiability instance; test generation problem; unsatisfiable segment; Automatic test pattern generation; Automatic testing; Circuit faults; Circuit testing; Design for testability; Flip-flops; Performance evaluation; Sequential analysis; Sequential circuits; System testing; Design for testability; register-transfer level; satisfiability; test generation;
fLanguage
English
Journal_Title
Computer-Aided Design of Integrated Circuits and Systems, IEEE Transactions on
Publisher
ieee
ISSN
0278-0070
Type
jour
DOI
10.1109/TCAD.2006.888268
Filename
4237238
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