Given the inherent reliance of distributed systems on concurrent programming, coupled with increased hardware concurrency and diversity, ensuring their reliability, safety, and security without compromising performance has become exceedingly challenging. This necessitates scalable verification methods that can accurately capture the behavior of concurrent and distributed systems while providing robust guarantees of compliance with specific requirements. The Scalable Verification and Validation of Concurrent and Distributed Systems (ScaVeri) track is dedicated to presenting and discussing advancements in formal methods tailored to these systems. Emphasizing scalable techniques and models that have been validated through real-world case studies, the track covers subtopics such as generating correct parallel code, compositional verification with assume-guarantee contracts, enhanced analysis for large-scale systems, and combinations of various analysis techniques, collectively aiming to improve the assurance of diverse and complex distributed computing environments.

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Scalable Verification and Validation of Concurrent and Distributed Systems (ScaVeri) (Track Summary)

  • Marieke Huisman,
  • Stephan Merz,
  • Cristina Seceleanu

摘要

Given the inherent reliance of distributed systems on concurrent programming, coupled with increased hardware concurrency and diversity, ensuring their reliability, safety, and security without compromising performance has become exceedingly challenging. This necessitates scalable verification methods that can accurately capture the behavior of concurrent and distributed systems while providing robust guarantees of compliance with specific requirements. The Scalable Verification and Validation of Concurrent and Distributed Systems (ScaVeri) track is dedicated to presenting and discussing advancements in formal methods tailored to these systems. Emphasizing scalable techniques and models that have been validated through real-world case studies, the track covers subtopics such as generating correct parallel code, compositional verification with assume-guarantee contracts, enhanced analysis for large-scale systems, and combinations of various analysis techniques, collectively aiming to improve the assurance of diverse and complex distributed computing environments.