DocumentCode
1768178
Title
Template-based circuit understanding
Author
Gascon, Adria ; Subramanyan, Pramod ; Dutertre, Bruno ; Tiwari, Anish ; Jovanovic, Dejan ; Malik, S.
Author_Institution
SRI Int., USA
fYear
2014
fDate
21-24 Oct. 2014
Firstpage
83
Lastpage
90
Abstract
When verifying or reverse-engineering digital circuits, one often wants to identify and understand small components in a larger system. A possible approach is to show that the sub-circuit under investigation is functionally equivalent to a reference implementation. In many cases, this task is difficult as one may not have full information about the mapping between input and output of the two circuits, or because the equivalence depends on settings of control inputs. We propose a template-based approach that automates this process. It extracts a functional description for a low-level combinational circuit by showing it to be equivalent to a reference implementation, while synthesizing an appropriate mapping of input and output signals and setting of control signals. The method relies on solving an exists/forall problem using an SMT solver, and on a pruning technique based on signature computation.
Keywords
combinational circuits; digital circuits; hardware description languages; reverse engineering; SMT solver; circuit understanding; control inputs; pruning technique; reverse-engineering; signature computation; template-based approach; Boolean functions; Combinational circuits; Context; Hardware design languages; Integrated circuits; Libraries; Wires;
fLanguage
English
Publisher
ieee
Conference_Titel
Formal Methods in Computer-Aided Design (FMCAD), 2014
Conference_Location
Lausanne
Type
conf
DOI
10.1109/FMCAD.2014.6987599
Filename
6987599
Link To Document