![]() In 34th Euromicro Conference on Real-Time Systems (ECRTS 2022).Ams Cherish 202 - fasropen 250 x 250 jpeg 27kB Ams cherish model set imgchili 18Chan AMS Cherish. Using Markov’s Inequality with Power-Of-k Function for Probabilistic WCET Estimation. Sergi Vilardell, Isabel Serra, Enrico Mezzetti, Jaume Abella, Francisco J. Lastly, we propose a method to deal with sampling uncertainty for Markov’s inequality that consistently improves EVT estimates on synthetic and real data obtained from a railway application. Yet, it produces pessimistic estimates that we shave substantially by proposing the use of a power-of-k function instead of the default identity function used by Markov’s inequality. In this work, we show that Markov’s inequality can be used to obtain provable trustworthy probabilistic bounds to the tail of a distribution without incurring any model-intrinsic uncertainty. In its application, EVT carries two sources of uncertainty: the first one that is intrinsic to the EVT model and relates to determining the subset of the sample that belongs to the (upper) tail, and hence, is actually used by EVT for prediction and the second one that is induced by the sampling process and hence is inherent to all sample-based methods. Many works build on Extreme Value Theory (EVT) that is fed with a sample of the collected data (execution times). pWCET estimation) has received significant attention during last years as a way to deal with the increased complexity of the processors used in real-time systems. 5:1-5:25, Schloss Dagstuhl - Leibniz-Zentrum für Informatik (2023) Copy BibTex To Clipboard = ĭeriving WCET estimates for software programs with probabilistic means (a.k.a. Leibniz International Proceedings in Informatics (LIPIcs), Volume 262, pp. ![]() In 35th Euromicro Conference on Real-Time Systems (ECRTS 2023). Quasi Isolation QoS Setups to Control MPSoC Contention in Integrated Software Architectures. Sergio Garcia-Esteban, Alejandro Serrano-Cases, Jaume Abella, Enrico Mezzetti, and Francisco J. Our results show that the selected isolation setup results in performance variations of the partitions run in the computing cores that are below 6 percentage points, even under scenarios with extremely high traffic coming from the programmable logic. To that end, out of the millions of setups offered by the different QoS mechanisms, we identify specific QoS configurations that isolate the traffic of time-critical software partitions executing in the core cluster from that generated by contender partitions in the programmable logic. We introduce the concept of Quasi Isolation QoS (QIQoS) setups and instantiate it in the Xilinx Zynq UltraScale+. ![]() In this work, we contend that the increasing hardware support for Quality of Service (QoS) guarantees in modern MPSoCs can be leveraged via specific setups to provide strong, albeit not full, isolation among different software partitions. Timing isolation among the different software partitions or applications thereof in an integrated architecture is key to simplifying software integration and its timing validation by ensuring the performance of each partition has no or very limited impact on others despite they share MPSoC’s hardware resources. The use of integrated architectures, such as integrated modular avionics (IMA) in avionics, IMA-SP in space, and AUTOSAR in automotive, running on Multi-Processor System-on-Chip (MPSoC) is on the rise. ![]()
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