Time composability is a guiding principle to the development and certification process of realtime embedded systems. Considerable efforts have been devoted to studying the role of hardware architectures – and their modern accelerating features – in enabling the hierarchical composition of the timing behaviour of software programs considered in isolation. Much less attention has been devoted to the effect of real-time Operating Systems (OS) on time composability at the application level. In fact, the very presence of the OS contributes to the variability of the execution time of the application directly and indirectly; by way of its own response time jitter and by its effect on the state retained by the processor hardware. We consider zero disturbance and steady behaviour as those characteristic properties that an operating system should exhibit, so as to be time-composable with the user applications. We assess those properties on the redesign of an ARINC compliant partitioned operating system, for use in avionics applications, and present some experimental results from a preliminary implementation of our approach within the scope of the EU FP7 PROARTIS project.

A Time-composable Operating System

BALDOVIN, ANDREA;MEZZETTI, ENRICO;VARDANEGA, TULLIO
2012

Abstract

Time composability is a guiding principle to the development and certification process of realtime embedded systems. Considerable efforts have been devoted to studying the role of hardware architectures – and their modern accelerating features – in enabling the hierarchical composition of the timing behaviour of software programs considered in isolation. Much less attention has been devoted to the effect of real-time Operating Systems (OS) on time composability at the application level. In fact, the very presence of the OS contributes to the variability of the execution time of the application directly and indirectly; by way of its own response time jitter and by its effect on the state retained by the processor hardware. We consider zero disturbance and steady behaviour as those characteristic properties that an operating system should exhibit, so as to be time-composable with the user applications. We assess those properties on the redesign of an ARINC compliant partitioned operating system, for use in avionics applications, and present some experimental results from a preliminary implementation of our approach within the scope of the EU FP7 PROARTIS project.
2012
Proceedings of the 12th International Workshop on Worst-Case Execution Time Analysis (WCET 2012)
9783939897415
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11577/2521982
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