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Failure-Aware Task Scheduling of Synchronous Data Flow Graphs Under Real-Time Constraints
- Lee, Chanhee;
- Kim, Sungchan;
- Oh, Hyunok;
- Ha, Soonhoi
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5SCOPUS
7초록
As more processors are integrated into Multiprocessor System-on-Chips (MPSoCs) via relentless technology scaling, the mean-time-to-failure (MTTF) is reduced to the extent that unexpected processor failures are considered during design time. A popular approach to tolerate processor failures is to migrate tasks on the faulty processor to live processors. This approach, however, is not suitable for real-time digital signal processing (DSP) applications since it may not guarantee real-time constraints. In this paper, we propose the re-scheduling of the entire application to minimize throughput degradation under a latency constraint, given that the application is specified by a Synchronous Data Flow (SDF) graph. We obtain sub-optimal re-scheduling results using a genetic algorithm for each scenario of processor failures at compile-time. If a failure is detected at run-time, the live processors obtain the saved schedule, perform task transfer, and execute the remaining tasks of the current iteration. We compare preemptive and non-preemptive migration policies and propose a hybrid policy to obtain better performance. We demonstrate the viability of the proposed technique through experiments with real-life DSP applications as well as randomly generated graphs under timing constraints and random fault scenarios.
키워드
- 제목
- Failure-Aware Task Scheduling of Synchronous Data Flow Graphs Under Real-Time Constraints
- 저자
- Lee, Chanhee; Kim, Sungchan; Oh, Hyunok; Ha, Soonhoi
- 발행일
- 2013-11
- 유형
- Article
- 권
- 73
- 호
- 2
- 페이지
- 201 ~ 212