PROARTIS

Author:

Cazorla Francisco J.1,Quiñones Eduardo2,Vardanega Tullio3,Cucu Liliana4,Triquet Benoit5,Bernat Guillem6,Berger Emery7,Abella Jaume2,Wartel Franck5,Houston Michael6,Santinelli Luca4,Kosmidis Leonidas2,Lo Code4,Maxim Dorin4

Affiliation:

1. Barcelona Supercomputing Center and Spanish National Research Council (IIIA-CSIC)

2. Barcelona Supercomputing Center

3. University of Padua

4. Institut National de Recherche en Informatique et en Automatique (INRIA)

5. Airbus France

6. Rapita Systems

7. Barcelona Supercomputing Center and University of Massachusetts Amherst

Abstract

Static timing analysis is the state-of-the-art practice of ascertaining the timing behavior of current-generation real-time embedded systems. The adoption of more complex hardware to respond to the increasing demand for computing power in next-generation systems exacerbates some of the limitations of static timing analysis. In particular, the effort of acquiring (1) detailed information on the hardware to develop an accurate model of its execution latency as well as (2) knowledge of the timing behavior of the program in the presence of varying hardware conditions, such as those dependent on the history of previously executed instructions. We call these problems the timing analysis walls. In this vision-statement article, we present probabilistic timing analysis , a novel approach to the analysis of the timing behavior of next-generation real-time embedded systems. We show how probabilistic timing analysis attacks the timing analysis walls; we then illustrate the mathematical foundations on which this method is based and the challenges we face in the effort of efficiently implementing it. We also present experimental evidence that shows how probabilistic timing analysis reduces the extent of knowledge about the execution platform required to produce probabilistically accurate WCET estimations.

Funder

Ministerio de Ciencia e Innovación

Seventh Framework Programme

Generalitat de Catalunya

Division of Computing and Communication Foundations

Publisher

Association for Computing Machinery (ACM)

Subject

Hardware and Architecture,Software

Reference31 articles.

1. Avoiding Timing Anomalies Using Code Transformations

2. DieHard

3. Probabilistic WCET analysis, an approach using copulas;Bernat G.;J. Embed. Comput.,2006

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2. IRQ Coloring and the Subtle Art of Mitigating Interrupt-Generated Interference;2023 IEEE 29th International Conference on Embedded and Real-Time Computing Systems and Applications (RTCSA);2023-08-30

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