Title :
Reducing Verification Complexity of a Multicore Coherence Protocol Using Assume/Guarantee
Author :
Chen, Xiaofang ; Yang, Yu ; Gopalakrishnan, Ganesh ; Chou, Ching-Tsun
Author_Institution :
Sch. of Comput., Utah Univ.
Abstract :
We illustrate how to employ metacircular assume/guarantee reasoning to reduce the verification complexity of finite instances of protocols for safety, using nothing more than an explicit state model checker. The formal underpinnings of our method are based on establishing a simulation relation between the given protocol M, and several overapproximations thereof, Mtilde1,..., Mtilde k. Each Mtildei simulates M, and represents one "view" of it. The Mtildeis depend on each other both to define the abstractions as well as to justify them. We show that in case of our hierarchical coherence protocol, its designer could easily construct each of the Mtildei in a counterexample guided manner. This approach is practical, considerably reduces the verification complexity, and has been successfully applied to a complex hierarchical multicore cache coherence protocol which could not be verified through traditional model checking
Keywords :
computational complexity; formal verification; memory protocols; explicit state model checking; hierarchical multicore cache coherence protocol; metacircular assume/guarantee reasoning; safety protocols; verification complexity reduction; Coherence; Computer bugs; Contracts; Explosions; Multicore processing; Protocols; Safety; State-space methods;
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.2006.28