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Mathematical Foundations of Poisoning Attacks on Linear Regression over Cumulative Distribution Functions

Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-review

Open access

Publication Information

Output type

Research Output:
Journal Article or Conference Article in Journal
Journal article
Peer-review

Original language

English

Article number

208

Pages from-to (Number of pages)

Pages 1-25 (25 pages)

Journal (Volume, Issue Number)

Proceedings of the ACM on Management of Data (Volume 4, Issue 3)

Publication milestones

  • Published - 18/05/2026

Publication status

Published - 18/05/2026

Publication IDs

  • ORCID: /0000-0002-7212-6476/work/215022798

Abstract

Learned indexes are a class of index data structures that enable fast search by approximating the cumulative distribution function (CDF) using machine learning models (Kraska et al., SIGMOD'18). However, recent studies have shown that learned indexes are vulnerable to poisoning attacks, where injecting a small number of poison keys into the training data can significantly degrade model accuracy and reduce index performance (Kornaropoulos et al., SIGMOD'22). In this work, we provide a rigorous theoretical analysis of poisoning attacks targeting linear regression models over CDFs, one of the most basic regression models and a core component in many advanced learned indexes. Our main contributions are as follows: (i) We present a theoretical proof characterizing the optimal single-point poisoning attack and show that the existing method yields the optimal attack. (ii) We show that in multi-point attacks, the existing greedy approach is not always optimal, and we rigorously derive the key properties that an optimal attack should satisfy. (iii) We propose a method to compute an upper bound of the multi-point poisoning attack's impact and empirically demonstrate that the loss under the greedy approach is often close to this bound. Our study deepens the theoretical understanding of attack strategies against linear regression models on CDFs and provides a foundation for the theoretical evaluation of attacks and defenses on learned indexes.

Funding Details

This work was supported by the JSPS Bilateral Program (Grant Number JPJSBP120259915) and byJSPS KAKENHI (Grant Number 25KJ0754).
FundersFunding numbers
Japan Society for the Promotion of Science (JSPS)
JPJSBP120259915, 25KJ0754