Modular Control Plane Verification via Temporal Invariants
Timothy Alberdingk Thijm, Ryan Beckett, Aarti Gupta, David Walker
摘要
Monolithic control plane verification cannot scale to hyperscale network architectures with tens of thousands of nodes, heterogeneous network policies and thousands of network changes a day. Instead, modular verification offers improved scalability, reasoning over diverse behaviors, and robustness following policy updates. We introduce Timepiece, a new modular control plane verification system. While one class of verifiers, starting with Minesweeper, were based on analysis of stable paths, we show that such models, when deployed naïvely for modular verification, are unsound. To rectify the situation, we adopt a routing model based around a logical notion of time and develop a sound, expressive, and scalable verification engine.
Our system requires that a user specifies interfaces between module components. We develop methods for defining these interfaces using predicates inspired by temporal logic, and show how to use those interfaces to verify a range of network-wide properties such as reachability or access control. Verifying a prefix-filtering policy using a non-modular verification engine times out on an 80-node fattree network after 2 hours. However, Timepiece verifies a 2,000-node fattree in 2.37 minutes on a 96-core virtual machine. Modular verification of individual routers is embarrassingly parallel and completes in seconds, which allows verification to scale beyond non-modular engines, while still allowing the full power of SMT-based symbolic reasoning.
问问这篇 Paper
智能体会读完全文。
Lune 把这篇 Paper 索引到了每一个公式,引用它的顶会 Paper 也一样。你提问,回答直接引用原文。
引用它的顶会 Paper5
- Lightyear: Using Modularity to Scale BGP Control Plane VerificationAlan Tang, Ryan Beckett, Steven Benaloh, Karthick Jayaraman 等SIGCOMM 2023 · 被引用 33 次
- KATch: A Fast Symbolic Verifier for NetKATMark Moeller, Jules Jacobs, Olivier Savary Bélanger, David Darais 等PLDI 2024 · 被引用 9 次
- Iceberg: Automated Verification of DNS Authoritative Engines via Just-in-Time SummarizationYuxing Xiang, Rilin Huang, Naiqian Zheng, Xin JinNSDI 2026
- Fast SMT-Based Fault Tolerance Verification for Wide Area NetworksNing Kang, Peng Zhang, Hao Li, Jianyuan ZhangFM 2026
- Concord: Learning Network Configuration ContractsRyan Beckett, Francis Y. Yan, Raghunadha Reddy Pocha, Vineesh V. Raj 等EuroSys 2026
它引用的顶会 Paper9
- Tiramisu: Fast Multilayer Network VerificationAnubhavnidhi Abhashkumar, Aaron Gember-Jacobson, Aditya AkellaNSDI 2020 · 被引用 146 次
- Plankton: Scalable network configuration verification through model checkingSanthosh Prabhu, Kuan-Yen Chou, Ali Kheradmand, Brighten Godfrey 等NSDI 2020 · 被引用 130 次
- DistAI: Data-Driven Automated Invariant Learning for Distributed ProtocolsJianan Yao, Runzhou Tao, Ronghui Gu, Jason Nieh 等OSDI 2021 · 被引用 76 次
- Accuracy, Scalability, Coverage: A Practical Configuration Verifier on a Global WANFangdan Ye, Da Yu, Ennan Zhai, Hongqiang Harry Liu 等SIGCOMM 2020 · 被引用 55 次
- Abstract interpretation of distributed network control planesRyan Beckett, Aarti Gupta, Ratul Mahajan, David WalkerPOPL 2020 · 被引用 46 次
相关 Paper
- Verifying Policy-based Routing at Internet ScaleXiaozhe Shao, Lixin GaoINFOCOM 2020 · 被引用 10 次
- S2: A Distributed Configuration Verifier for Hyper-Scale NetworksDan Wang, Peng Zhang, Wenbing Sun, Wenkai Li 等SIGCOMM 2025 · 被引用 3 次
- APKeep: Realtime Verification for Real NetworksPeng Zhang, Xu Liu, Hongkun Yang, Ning Kang 等NSDI 2020 · 被引用 99 次
- Expresso: Comprehensively Reasoning About External Routes Using Symbolic SimulationDan Wang, Peng Zhang, Aaron Gember-JacobsonSIGCOMM 2024 · 被引用 7 次
- Symbolic router executionPeng Zhang, Dan Wang, Aaron Gember-JacobsonSIGCOMM 2022 · 被引用 31 次
