Mechanized semantics and verified compilation for a dataflow synchronous language with reset

Author:

Bourke Timothy1,Brun Lélio2,Pouzet Marc3

Affiliation:

1. Inria, France / ENS, France / PSL University, France

2. ENS, France / PSL University, France / Inria, France

3. Sorbonne University, France / ENS, France / PSL University, France / Inria, France

Abstract

Specifications based on block diagrams and state machines are used to design control software, especially in the certified development of safety-critical applications. Tools like SCADE Suite and Simulink/Stateflow are equipped with compilers that translate such specifications into executable code. They provide programming languages for composing functions over streams as typified by Dataflow Synchronous Languages like Lustre. Recent work builds on CompCert to specify and verify a compiler for the core of Lustre in the Coq Interactive Theorem Prover. It formally links the stream-based semantics of the source language to the sequential memory manipulations of generated assembly code. We extend this work to treat a primitive for resetting subsystems. Our contributions include new semantic rules that are suitable for mechanized reasoning, a novel intermediate language for generating optimized code, and proofs of correctness for the associated compilation passes.

Publisher

Association for Computing Machinery (ACM)

Subject

Safety, Risk, Reliability and Quality,Software

Reference55 articles.

1. ClawZ: Cost-Effective Formal Verification for Control Systems

2. Symbolic analysis for improving simulation coverage of Simulink/Stateflow models

3. ClawZ: control laws in Z

4. Cédric Auger Jean-Louis Colaço Gregoire Hamon and Marc Pouzet. 2014. A Formalization and Proof of a Modular Lustre Code Generator. (2014). In preparation. Cédric Auger Jean-Louis Colaço Gregoire Hamon and Marc Pouzet. 2014. A Formalization and Proof of a Modular Lustre Code Generator. (2014). In preparation.

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