• DocumentCode
    3731598
  • Title

    Quantifying the Exact Sub-optimality of Non-preemptive Scheduling

  • Author

    Robert I. Davis;Abhilash Thekkilakattil;Oliver Gettings;Radu Dobrin;Sasikumar Punnekkat

  • Author_Institution
    Real-Time Syst. Res. Group, Univ. of York, Paris, France
  • fYear
    2015
  • Firstpage
    96
  • Lastpage
    106
  • Abstract
    Fixed priority scheduling is used in many real-time systems, however, both preemptive and non-preemptive variants (FP-P and FP-NP) are known to be sub-optimal when compared to an optimal uniprocessor scheduling algorithm such as preemptive Earliest Deadline First (EDF-P). In this paper, we investigate the sub-optimality of fixed priority non-preemptive scheduling. Specifically, we derive the exact processor speed-up factor required to guarantee the feasibility under FP-NP (i.e. schedulablability assuming an optimal priority assignment) of any task set that is feasible under EDF-P. As a consequence of this work, we also derive a lower bound on the sub-optimality of non-preemptive EDF (EDF-NP), which since it matches a recently published upper bound gives the exact sub-optimality for EDF-NP. It is known that neither preemptive, nor non-preemptive fixed priority scheduling dominates the other, i.e., there are task sets that are feasible on a processor of unit speed under FP-P that are not feasible under FP-NP and vice-versa. Hence comparing these two algorithms, there are non-trivial speedup factors in both directions. We derive the exact speed-up factor required to guarantee the FP-NP feasibility of any FP-P feasible task set. Further, we derive upper and lower bounds on the speed-up factor required to guarantee FP-P feasibility of any FP-NP feasible task set. Empirical evidence suggests that the lower bound may be tight, and hence equate to the exact speed-up factor in this case.
  • Keywords
    "Scheduling algorithms","Real-time systems","Scheduling","Schedules","Measurement","Upper bound"
  • Publisher
    ieee
  • Conference_Titel
    Real-Time Systems Symposium, 2015 IEEE
  • ISSN
    1052-8725
  • Print_ISBN
    978-1-4673-9507-6
  • Type

    conf

  • DOI
    10.1109/RTSS.2015.17
  • Filename
    7383568