ADSL:一种基于约束的分布式自我管理嵌入式领域特定语言

Mohan Baruwal Chhetri, H. Luong, Anton V. Uzunov, Quoc Bao Vo, R. Kowalczyk, S. Nepal, Isuru Rajapakse
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引用次数: 3

摘要

弹性是在复杂的敌对环境中运行的网络防御系统的重要属性。在之前的工作中,我们开发了AWaRE方法,通过分布式、面向代理、基于约束的自我管理来实现网络弹性。AWaRE的一个关键需求和特性是约束问题的程序化定义,以及它们以支持运行时自表示和自组织的方式映射到合适的协调体系结构。这可以通过领域特定语言(DSL)来实现;然而,现有的dsl(例如用于自动部署和自适应的dsl)不适合此目的。在本文中,我们提出了一种富有表现力的java嵌入式DSL,名为ADSL,它支持系统组件、组件间关系和约束、约束问题分解、管理代理体系结构和子问题到代理映射的设计时规范,以及这些规范在运行时的使用,以按照models@run.time范式实现自我管理。我们在企业场景上下文中对ADSL进行了初步验证,证明了该语言的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ADSL: An Embedded Domain-Specific Language for Constraint-Based Distributed Self-Management
Resilience is an important property of cyber defence systems operating in complex, adversarial environments. In previous work, we have developed the AWaRE approach for enabling cyber resilience via distributed, agent-oriented, constraint-based self-management. A key requirement and feature of AWaRE is the programmatic definition of constraint problems and their mapping to suitable coordination architectures in a way that supports run-time self-representation and self-organization. This can be satisfied via a domain-specific language (DSL); however, existing DSLs, e.g. for automated deployment and self-adaptivity, are not suitable for this purpose. In this paper, we present an expressive, Java-embedded DSL named ADSL that enables the design-time specification of system components, inter-component relationships and constraints, constraint problem decompositions, managing agent architectures, and sub-problem to agent mappings – and the run-time use of these specifications to achieve self-management in accordance with the models@run.time paradigm. Our initial validation of ADSL in the context of an enterprise scenario demonstrates the suitability of the language.
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