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Performance prediction upon toolchain migration in model-based software

机译:基于模型软件的工具密码迁移的性能预测

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摘要

Changing the development environment can have severe impacts on the system behavior such as the execution-time performance. Since it can be costly to migrate a software application, engineers would like to predict the performance parameters of the application under the new environment with as little effort as possible.In this work, we concentrate on model-driven development and provide a methodology to estimate the execution-time performance of application models under different toolchains. Our approach has low cost compared to the migration effort of an entire application. As part of the approach, we provide methods for characterizing model-driven applications, an algorithm for generating application-specific microbenchmarks, and results on using different methods for estimating the performance. In the work, we focus on SCADE as the development toolchain and use a Cruise Control and a Water Level application as case studies to confirm the technical feasibility and viability of our technique.
机译:更改开发环境可能会对系统行为(如执行时性能)产生严重影响。由于迁移软件应用程序的成本可能很高,因此工程师希望在新环境下尽可能少地预测应用程序的性能参数。在这项工作中,我们专注于模型驱动的开发并提供一种估算方法不同工具链下应用程序模型的执行时性能。与整个应用程序的迁移工作相比,我们的方法成本较低。作为方法的一部分,我们提供了表征模型驱动的应用程序的方法,生成特定于应用程序的微基准的算法,以及使用不同方法评估性能的结果。在工作中,我们专注于SCADE作为开发工具链,并使用定速巡航控制系统和水位应用程序作为案例研究,以确认我们技术的技术可行性和可行性。

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