English

Security analysis of a self-embedding fragile image watermark scheme

Cryptography and Security 2019-06-03 v2 Multimedia

Abstract

Recently, a self-embedding fragile watermark scheme based on reference-bits interleaving and adaptive selection of embedding mode was proposed. Reference bits are derived from the scrambled MSB bits of a cover image, and then are combined with authentication bits to form the watermark bits for LSB embedding. We find this algorithm has a feature of block independence of embedding watermark such that it is vulnerable to a collage attack. In addition, because the generation of authentication bits via hash function operations is not related to secret keys, we analyze this algorithm by a multiple stego-image attack. We find that the cost of obtaining all the permutation relations of lb2l\cdot b^2 watermark bits of each block (i.e., equivalent permutation keys) is about (lb2)!(l\cdot b^2)! for the embedding mode (m,l)(m, l), where mm MSB layers of a cover image are used for generating reference bits and ll LSB layers for embedding watermark, and b×bb\times b is the size of image block. The simulation results and the statistical results demonstrate our analysis is effective.

Keywords

Cite

@article{arxiv.1812.11735,
  title  = {Security analysis of a self-embedding fragile image watermark scheme},
  author = {Xinhui Gong and Feng Yu and Xiaohong Zhao and Shihong Wang},
  journal= {arXiv preprint arXiv:1812.11735},
  year   = {2019}
}

Comments

6 pages, 4 figures

R2 v1 2026-06-23T06:59:37.659Z