Lotus@Runtime: A Tool for Runtime Monitoring and Verification of Self-Adaptive Systems
Davi Monteiro Barbosa, Romulo Gadelha de Moura Lima, Paulo Henrique M. Maia, Evilásio Costa
Abstract
Davi Monteiro Barbosa, Romulo Gadelha de Moura Lima, Paulo Henrique M. Maia, Evilásio Costa
Abstract
This paper presents Lotus@Runtime, an extensible tool that uses models@runtime to monitor and verify self-adaptive systems. The tool monitors the execution traces generated by a self-adaptive system and annotates the probabilities of occurrence of each system action on their respective transition on the system model, which is created at design time in the tool as a Labelled Transition System (LTS). Then, runtime checks of a set of reachability properties are performed against the updated probabilistic model. If a property is violated, the self-adaptive system can be informed by a notification mechanism provided by Lotus@Runtime. The applicability of the proposed tool has been demonstrated by two service-based self-adaptive systems taken and adapted from the literature.
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This paper presents Lotus@Runtime, an extensible tool that uses models@runtime to monitor and verify self-adaptive systems. The tool monitors the execution traces generated by a self-adaptive system and annotates the probabilities of occurrence of each system action on their respective transition on the system model, which is created at design time in the tool as a Labelled Transition System (LTS). Then, runtime checks of a set of reachability properties are performed against the updated probabilistic model. If a property is violated, the self-adaptive system can be informed by a notification mechanism provided by Lotus@Runtime. The applicability of the proposed tool has been demonstrated by two service-based self-adaptive systems taken and adapted from the literature.
Key concepts: Computer science, Reachability, Runtime verification, Probabilistic logic, Distributed computing, Extensibility, Runtime system, Adaptive system