Analysing Snapshot Isolation

Author:

Cerone Andrea1ORCID,Gotsman Alexey2

Affiliation:

1. Imperial College London, UK

2. IMDEA Software Institute, Spain

Abstract

Snapshot isolation (SI) is a widely used consistency model for transaction processing, implemented by most major databases and some of transactional memory systems. Unfortunately, its classical definition is given in a low-level operational way, by an idealised concurrency-control algorithm, and this complicates reasoning about the behaviour of applications running under SI. We give an alternative specification to SI that characterises it in terms of transactional dependency graphs of Adya et al., generalising serialisation graphs. Unlike previous work, our characterisation does not require adding additional information to dependency graphs about start and commit points of transactions. We then exploit our specification to obtain two kinds of static analyses. The first one checks when a set of transactions running under SI can be chopped into smaller pieces without introducing new behaviours, to improve performance. The other analysis checks whether a set of transactions running under a weakening of SI behaves the same as when running under SI.

Funder

EU project ADVENT

EPSRC Programme Grant REMS: Rigorous Engineering for Mainstream Systems

Publisher

Association for Computing Machinery (ACM)

Subject

Artificial Intelligence,Hardware and Architecture,Information Systems,Control and Systems Engineering,Software

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1. Allocating Isolation Levels to Transactions in a Multiversion Setting;ACM SIGMOD Record;2024-05-14

2. When View- and Conflict-Robustness Coincide for Multiversion Concurrency Control;Proceedings of the ACM on Management of Data;2024-05-10

3. An Integrated Healthcare Service System Based on Blockchain Technologies;IEEE Transactions on Computational Social Systems;2024

4. Allocating Isolation Levels to Transactions in a Multiversion Setting;Proceedings of the 42nd ACM SIGMOD-SIGACT-SIGAI Symposium on Principles of Database Systems;2023-06-18

5. Dynamic Partial Order Reduction for Checking Correctness against Transaction Isolation Levels;Proceedings of the ACM on Programming Languages;2023-06-06

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