Title :
Post-reboot Equivalence and Compositional Verification of Hardware
Author :
Khasidashvili, Zurab ; Skaba, Marcelo ; Kaiss, Daher ; Hanna, Ziyad
Author_Institution :
Intel, Haifa
Abstract :
We introduce a finer concept of a hardware machine, where the set of post-reboot operation states is explicitly a part of the FSM definition. We formalize an ad-hoc flow of combinational equivalence verification of hardware, the way it was performed over the years in the industry. We define a concept of post-reboot bisimulation, which better suits the hardware machines, and show that a right form of combinational equivalence is in fact a form of post-reboot bisimulation. Further, we show that alignability equivalence is a form of post-reboot bisimulation, too, and the latter is a refinement of alignability in the context of compositional hardware verification. We find that post-reboot bisimulation has important advantages over alignability also in the wider context of formal hardware verification, where equivalence verification is combined with formal property verification and with validation of a reboot sequence. As a result, we propose a more comprehensive, compositional, and fully-formal framework for hardware verification. Our results are extendible to other forms of labeled transition systems and adaptable to other forms of bisimulation used to model and verify complex hardware and software systems
Keywords :
bisimulation equivalence; finite state machines; formal verification; alignability equivalence; combinational equivalence verification; compositional hardware verification; finite state machine; formal hardware verification; formal property verification; hardware machine; labeled transition systems; post-reboot bisimulation; post-reboot equivalence; reboot sequence validation; Automata; Boolean functions; Delay; Hardware; Refining; Software systems; Steady-state;
Conference_Titel :
Formal Methods in Computer Aided Design, 2006. FMCAD '06
Conference_Location :
San Jose, CA
Print_ISBN :
0-7695-2707-8
DOI :
10.1109/FMCAD.2006.25