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Cryptology ePrint Archive

Formalizing and Strengthening the Security Proof of NTOR Verifiable Anomaly and Similarity Detection Using Matrix Profile in Private Time-series Adaptor Signature Schemes with Deniable Presignatures Adaptively-Secure Flexible and Identity-Based Broadcast Encryption from Decomposed LWE MERIDIAN: A Toroid-Inspired Permutation Block Cipher for Constrained Environments PPML Is More Vulnerable to Cryptanalytic Extraction Attacks Toward Practical Fair Data Exchange: Eliminating In-Circuit Public-Key Operations Fault Injection Attacks Against zkSTARKs Scale, Round, Break: Simple Leakage Attacks on Secret Sharing Schemes Private Delegation of (Non-)Membership Proof Updates in Cryptographic Accumulators Beyond Binary: crosscorrelation of Cubic, Quartic and Quintic Character Sequences ZEE200: Zero Knowledge for Everything and Everyone @ 200 KHz A Post-Quantum Accountable Sanitizable Signature Scheme Based on Unbalanced Oil and Vinegar Better Usability: Leakage-Resistant AEADs from Single-length Blockciphers TieredOMap: Skewness-Aware Oblivious Map From Rerandtopia to Interceptopia, the Anamorphic Encryption Saga Rises Non-Adaptive Programmable PRFs and Applications to Stacked Garbling Practical Post-Quantum Secure Publicly Verifiable Secret Sharing and Applications Mosaic: Practical Malicious Security for Garbled Circuits on Bitcoin Efficient Bootstrapping of Matrices in FHE Decomposing Multiplication: A Vertical Packing Approach for Faster TFHE Formal Verification, Integration and Physical Evaluation of Prime-Field Masking on Silicon New Techniques for Communication-Efficient Secure Comparison Protocols Pairing-Based Verifiable Shuffles with Logarithmic-Size Proofs Verifying Provenance of Digital Media: Security Analysis of C2PA and its Implementation EQuADiSE: Efficient Quantum-safe Adaptive Distributed Symmetric-key Encryption Oriole: Adaptively Secure Partially Non-Interactive Threshold Signatures from Lattices Secure and Updatable Single Password Authentication Batch-Puncturing Circuit CP-ABE (and More) from Lattices Panther: Robust Hybrid KEM Combiners via Structural Splicing
VERDICT: A Cryptographically Verifiable Framework for Sec...
Bilel Zaghdoudi, Sorbonne University · 2026-06-25 · via Cryptology ePrint Archive

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Paper 2026/1315

VERDICT: A Cryptographically Verifiable Framework for Secure Data Lineage in Decentralized DAGs

Maria Potop Butucaru, Sorbonne University

Abstract

Ensuring the integrity and traceability of data transformations in distributed systems presents significant challenges, particularly in environments where data privacy and decentralization are paramount. This paper introduces a novel secure lineage verification system based on Directed Acyclic Graphs (DAGs) and homomorphic hash functions, VERDICT. Our approach represents data artifacts and their transformations as two interconnected DAGs: a Data DAG tracking data dependencies and an Event DAG capturing causality between transformation events. We propose a level-based DAG compression technique that decomposes these graphs based on distance from genesis nodes, enabling efficient verification through skip DAG structures. The system incorporates bucket indexing and Merkle tree verification to provide cryptographic guarantees of data and event existence. We present formal algorithms for DAG construction, level-based hashing, skip DAG traversal, and verification processes. Security analysis demonstrates the system’s resistance to tampering and modification attacks while maintaining privacy. Replay attacks are prevented through an application-layer challenge-response mechanism. Our approach has significant applications in federated learning environments and decentralized architectures, where it can serve as a notary component for tracing events without compromising data confidentiality. Theoretical analysis shows that our method achieves verification in 𝑂(log𝑛) time in the number of DAG levels, independent of the number of nodes per level, making it suitable for large-scale distributed systems.

BibTeX

@misc{cryptoeprint:2026/1315,
      author = {Bilel Zaghdoudi and Maria Potop Butucaru},
      title = {{VERDICT}: A Cryptographically Verifiable Framework for Secure Data Lineage in Decentralized {DAGs}},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/1315},
      year = {2026},
      url = {https://eprint.iacr.org/2026/1315}
}