Lock-free synchronization for dynamic embedded real-time systems

Author:

Cho Hyeonjoong1,Ravindran Binoy2,Jensen E. Douglas3

Affiliation:

1. Korea University, South Korea

2. Virginia Polytechnic Institute and State University, Blacksburg, VA

3. The MITRE Corporation, Bedford, MA

Abstract

We consider lock-free synchronization for dynamic embedded real-time systems that are subject to resource overloads and arbitrary activity arrivals. We model activity arrival behaviors using the unimodal arbitrary arrival model (or UAM). UAM embodies a stronger “adversary” than most traditional arrival models. We derive an upper bound on lock-free retries under the UAM with utility accrual scheduling—the first such result. We establish the tradeoffs between lock-free and lock-based sharing under UAM. These include conditions under which activities' accrued timeliness utility is greater under lock-free than lock-based, and the consequent lower and upper bound on the total accrued utility that is possible with lock-free and lock-based sharing. We confirm our analytical results with a POSIX RTOS implementation.

Funder

MITRE Corporation

Office of Naval Research

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture,Software

Reference26 articles.

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3. Carpentar J. Funk S. Holman P. Srinivasan A. Anderson J. and Baruah S. 2004. A categorization of real-time multiprocessor scheduling problems and algorithms. In Handbook of Scheduling: Algorithms Models and Performance Analysis J. Y. Leung Ed. Chapman and Hall/CRC Boca Raton FL 30--1--30--19. Carpentar J. Funk S. Holman P. Srinivasan A. Anderson J. and Baruah S. 2004. A categorization of real-time multiprocessor scheduling problems and algorithms. In Handbook of Scheduling: Algorithms Models and Performance Analysis J. Y. Leung Ed. Chapman and Hall/CRC Boca Raton FL 30--1--30--19.

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