完整SDN

Debnil Sur, Ben Pfaff, L. Ryzhyk, M. Budiu
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引用次数: 2

摘要

构建软件定义网络系统的传统方法需要分别开发管理平面、控制平面和数据平面。手工编写的代码将管理平面的配置连接到控制平面,控制平面将数据平面的配置生成为分散在代码库中的小程序片段。随着这种系统的发展和增长,可伸缩性和正确性变得越来越具有挑战性。相比之下,在我们的Nerpa方法中,所有三个平面都以统一的方式编程。在Nerpa中,事务数据库存储管理平面状态。控制平面是用一种专门的查询语言实现的,该语言以增量的方式自动执行,提高了可伸缩性。最后,在P4中对数据平面进行编程。为了提高正确性,这三个部分一起进行类型检查,工具生成用于在平面之间移动数据的代码。我们已经发布了一个使用开源许可的原型实现。我们相信全栈SDN可以构建更加健壮和可维护的网络系统。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Full-stack SDN
The conventional approach for building software-defined network systems requires separately developing the management, control, and data planes. Manually written code connects the management plane's configuration to the control plane, and the control plane generates the data planes' configurations as small program fragments that scatter across the codebase. Scalability and correctness become increasingly challenging as such a system develops and grows. In contrast, in our approach, called Nerpa, all three planes are programmed in a unified way. In Nerpa a transactional database stores management plane state. The control plane is implemented in a specialized query language which automatically executes in an incremental fashion, improving scalability. Finally, the data plane is programmed in P4. To aid correctness, all three parts are type-checked together, and tools generate code for data movement between planes. We have published a prototype implementation using an open-source license. We believe that full-stack SDN can build more robust and maintainable networked systems.
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