Title :
Formal verification of distributed dynamic thermal management
Author :
Muhammad Ismail;Osman Hasan;Thomas Ebi;Muhammad Shafique;Jörg Henkel
Author_Institution :
School of Electrical Engineering and Computer Science, National University of Sciences and Technology, Islamabad, Pakistan
Abstract :
Simulation is the state-of-the-art analysis technique for distributed thermal management schemes. Due to the numerous parameters involved and the distributed nature of these schemes, such non-exhaustive verification may fail to catch functional bugs in the algorithm or may report misleading performance characteristics. To overcome these limitations, we propose a methodology to perform formal verification of distributed dynamic thermal management for many-core systems. The proposed methodology is based on the SPIN model checker and the Lamport timestamps algorithm. Our methodology allows specification and verification of both functional and timing properties in a distributed many-core system. In order to illustrate the applicability and benefits of our methodology, we perform a case study on a state-of-the-art agent-based distributed thermal management scheme.
Keywords :
"Timing","Model checking","System recovery","Computational modeling","Thermal management","Analytical models","Automata"
Conference_Titel :
Computer-Aided Design (ICCAD), 2013 IEEE/ACM International Conference on
Electronic_ISBN :
1558-2434
DOI :
10.1109/ICCAD.2013.6691126