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P-SOCRATES: A parallel software framework for time-critical many-core systems.

, , , , , , , , , , and . Microprocessors and Microsystems - Embedded Hardware Design, 39 (8): 1190-1203 (2015)

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Worst-case communication delay analysis for many-cores using a Limited Migrative Model., , and . RTCSA, page 1-10. IEEE Computer Society, (2014)Real-time semi-partitioned scheduling of fork-join tasks using work-stealing., , , and . EURASIP J. Emb. Sys., (2017)Non-Schedulability Conditions for Off-line Scheduling of Real-Time Systems Subject to Precedence and Strict Periodicity Constraints., and . ETFA, IEEE, (2006)Semi-Partitioned Scheduling of Fork-Join Tasks Using Work-Stealing., , , and . EUC, page 25-34. IEEE Computer Society, (2015)The P-SOCRATES Timing Analysis Methodology for Parallel Real-Time Applications Deployed on Many-Core Platforms., , and . WCET, volume 57 of OASIcs, page 10:1-10:9. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2017)The Variability of Application Execution Times on a Multi-Core Platform., , and . WCET, volume 55 of OASIcs, page 6:1-6:11. Schloss Dagstuhl - Leibniz-Zentrum für Informatik, (2016)Controller Area Network (CAN): Response time analysis with offsets., , , and . WFCS, page 43-52. IEEE, (2012)Challenges and new trends in probabilistic timing analysis., , , and . DATE, page 810-815. IEEE, (2012)Worst-case memory traffic analysis for many-cores using a limited migrative model., , and . RTCSA, page 42-51. IEEE Computer Society, (2013)Extending Rate Monotonic Analysis with Exact Cost of Preemptions for Hard Real-Time Systems., and . ECRTS, page 280-290. IEEE Computer Society, (2007)