Towards Verified Scalable Parallel Computing with Coq and Spark

F. Loulergue, Jolan Philippe
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Abstract

SyDPaCC (Systematic Development of programs for Parallel and Cloud Computing) is a framework for the Coq interactive theorem prover. It allows to systematically develop correct parallel programs from specifications via verified and automated program transformations. The obtained programs are scalable, i.e. able to run on numerous processors. SyDPaCC produces programs written in the multi-paradigm and functional programming language OCaml with calls to the BSML (Bulk Synchronous parallel ML) parallel programming library. In this paper we present ongoing work towards an extension of SyDPaCC to be able to produce Scala programs using Apache Spark for parallel processing.
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用Coq和Spark实现可扩展并行计算
SyDPaCC (system Development of programs for Parallel and Cloud Computing)是Coq交互定理证明器的框架。它允许系统地开发通过验证和自动化程序转换规范的正确并行程序。获得的程序是可伸缩的,即能够在多个处理器上运行。SyDPaCC生成用多范式和函数式编程语言OCaml编写的程序,并调用BSML(批量同步并行ML)并行编程库。在本文中,我们介绍了正在进行的SyDPaCC扩展工作,以便能够使用Apache Spark进行并行处理来生成Scala程序。
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