A standard technique for solving the parameterized model checking problem is to reduce it to the classic model checking problem of finitely many finite-state systems. This work considers some of the theoretical power and limitations of this technique. We focus on concurrent systems in which processes communicate via pairwise rendezvous, as well as the special cases of disjunctive guards and token passing; specifications are expressed in indexed temporal logic without the next operator; and the underlying network topologies are generated by suitable Monadic Second Order Logic formulas and graph operations. First, we settle the exact computational complexity of the parameterized model checking problem for some of our concurrent systems, and e...
In the formal verification of software systems, model-checking is one of the most studied and applie...
Model checking is a successful method for checking properties on the state space of concurrent, reac...
Software is finding its way into an increasing range of devices (phones, medical equipment, cars...)...
A standard technique for solving the parameterized model checking problem is to reduce it to the cla...
Parameterized model checking is a formal verification technique for verifying that some specificatio...
Abstract. In this work we extend the Emerson and Kahlon’s cutoff theorems for process skeletons with...
We present regular model checking, a framework for algorithmic verification of infinite-state system...
AbstractIn general, the verification of parameterized networks is undecidable. In recent years there...
In recent years, there has been much advancement in the area of verification of infinite-state syste...
Computer systems are used in almost all aspects of our lives and our dependency on them keeps on inc...
Regular model checking is a method for verifying infinite-state systems based on coding their config...
This thesis presents a completely automatic verification framework to check safety properties of par...
AbstractOver the last years there has been an increasing research effort directed towards the automa...
Theoretical and practical aspects of the verification of infinite-state systems have attracted a lot...
We study the model-checking problem for a logic for true concurrency, whose formulae predicate about...
In the formal verification of software systems, model-checking is one of the most studied and applie...
Model checking is a successful method for checking properties on the state space of concurrent, reac...
Software is finding its way into an increasing range of devices (phones, medical equipment, cars...)...
A standard technique for solving the parameterized model checking problem is to reduce it to the cla...
Parameterized model checking is a formal verification technique for verifying that some specificatio...
Abstract. In this work we extend the Emerson and Kahlon’s cutoff theorems for process skeletons with...
We present regular model checking, a framework for algorithmic verification of infinite-state system...
AbstractIn general, the verification of parameterized networks is undecidable. In recent years there...
In recent years, there has been much advancement in the area of verification of infinite-state syste...
Computer systems are used in almost all aspects of our lives and our dependency on them keeps on inc...
Regular model checking is a method for verifying infinite-state systems based on coding their config...
This thesis presents a completely automatic verification framework to check safety properties of par...
AbstractOver the last years there has been an increasing research effort directed towards the automa...
Theoretical and practical aspects of the verification of infinite-state systems have attracted a lot...
We study the model-checking problem for a logic for true concurrency, whose formulae predicate about...
In the formal verification of software systems, model-checking is one of the most studied and applie...
Model checking is a successful method for checking properties on the state space of concurrent, reac...
Software is finding its way into an increasing range of devices (phones, medical equipment, cars...)...