Title :
Improved approximate reachability using auxiliary state variables
Author :
Govindaraju, Shankar G. ; Dill, David L. ; Bergmann, Jules P.
Author_Institution :
Comput. Syst. Lab., Stanford Univ., CA, USA
Abstract :
Approximate reachability techniques trade off accuracy for the capacity to deal with bigger designs. Cho et al (1996) proposed partitioning the set of state bits into mutually disjoint subsets and doing symbolic forward reachability on the individual subsets to obtain an overapproximation of the reachable state set. Recently (Govindaraju et al, 1998) this was improved upon by dividing the set of state bits into various subsets that could possibly overlap, and doing symbolic reachability over the overlapping subsets. In this paper, we further improve on this scheme by augmenting the set of state variables with auxiliary state variables. These auxiliary state variables are added to capture some important internal conditions in the combinational logic. Approximate symbolic forward reachability on overlapping subsets of this augmented set of state variables yields much tighter approximations than earlier methods
Keywords :
reachability analysis; symbol manipulation; approximate reachability; auxiliary state variables; combinational logic; hardware design; symbolic forward reachability; Boolean functions; Data structures; Formal verification; Forward contracts; Government; Hardware; Laboratories; Logic; Permission; State-space methods;
Conference_Titel :
Design Automation Conference, 1999. Proceedings. 36th
Conference_Location :
New Orleans, LA
Print_ISBN :
1-58113-092-9
DOI :
10.1109/DAC.1999.781332