Scheduling Algorithms for Multiprogramming in a Hard-Real-Time Environment
C. L. Liu, J. W. Layland
Abstract
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C. L. Liu, J. W. Layland
Abstract
Open-access reader
The problem of multiprogram scheduling on a single processor is studied from the viewpoint of the characteristics peculiar to the program functions that need guaranteed service. It is shown that an optimum fixed priority scheduler possesses an upper bound to processor utilization which may be as low as 70 percent for large task sets. It is also shown that full processor utilization can be achieved by dynamically assigning priorities on the basis of their current deadlines. A combination of these two scheduling techniques is also discussed.
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The problem of multiprogram scheduling on a single processor is studied from the viewpoint of the characteristics peculiar to the program functions that need guaranteed service. It is shown that an optimum fixed priority scheduler possesses an upper bound to processor utilization which may be as low as 70 percent for large task sets. It is also shown that full processor utilization can be achieved by dynamically assigning priorities on the basis of their current deadlines. A combination of these two scheduling techniques is also discussed.
Key concepts: Computer multitasking, Computer science, Scheduling (production processes), Fixed-priority pre-emptive scheduling, Earliest deadline first scheduling, Parallel computing, Fair-share scheduling, Distributed computing