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Cryptology ePrint Archive

Interleaving Stability for Mutual Correlated Agreement and Curve Decodability Cryptanalysis of Definite and Indefinite Lattice Isomorphism Problems With Applications to HAWK and DEFI 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 Privacy Coins Under Viewing Key Compromise Adaptively-Secure Flexible and Identity-Based Broadcast Encryption from Decomposed LWE 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 Secure and Updatable Single Password Authentication Batch-Puncturing Circuit CP-ABE (and More) from Lattices Panther: Robust Hybrid KEM Combiners via Structural Splicing
MERIDIAN: A Toroid-Inspired Permutation Block Cipher for ...
Basker Palaniswamy, University College Cork · 2026-05-01 · via Cryptology ePrint Archive

Paper 2026/856

MERIDIAN: A Toroid-Inspired Permutation Block Cipher for Constrained Environments

Paolo Palmieri, University College Cork

Ashok Kumar Das, Korea University

Ruei-Hau Hsu, National Sun Yat-sen University

Abstract

We introduce MERIDIAN, a 128-bit block cipher designed for resource-constrained environments as a lightweight alternative to AES-128. MERIDIAN retains the AES-128 interface, including a 128-bit block, 128-bit key, and 4×4 byte state, while reusing the standard AES S-box. This enables compatibility with existing AES-128 modes such as ECB, CBC, CFB, OFB, CTR, XTS, CMAC, CCM, and GCM, and allows implementations to reuse established S-box ROMs and GF(28) inverse circuits. The cipher is based on three round operations: Directional Substitution (DS), Meridian Diffusion (MD), and Admittance Mixing (AM), followed by a round constant. Its state is represented over the discrete torus Z4 × Z4. The MD layer combines two orthogonal byte permutations, meridian and parallel, with column mixing to obtain full byte diffusion within three rounds without requiring MDS multiplication. MERIDIAN uses twelve rounds and avoids an expanded key schedule. We present MILP-verified differential and linear bounds, including exact active-S-box counts up to eleven rounds and a sub-additive bound for twelve rounds. We also provide AES-aligned cryptanalysis covering differential, linear, integral, biclique, slide, related-key, invariant-subspace, fault, meet-in-the-middle, and algebraic attacks. A reproducible fifteen-experiment benchmark suite compares MERIDIAN directly with AES-128, including key agility, cold-start latency, energy, masking cost, memory, throughput, and hardware complexity. Empirical results show that MERIDIAN reaches strict avalanche behavior in three rounds, matches AES-128 in entropy and NIST SP 800-22 fitness, reduces unrolled gate count, lowers RAM usage, and improves constrained-device efficiency. MERIDIAN is proposed as a research prototype for further public cryptanalysis.

Note: Dear Editor, This version has the Orchid ID updated for authors and Hash.

BibTeX

@misc{cryptoeprint:2026/856,
      author = {Basker Palaniswamy and Paolo Palmieri and Ashok Kumar Das and Ruei-Hau Hsu},
      title = {{MERIDIAN}: A Toroid-Inspired Permutation Block Cipher for Constrained Environments},
      howpublished = {Cryptology {ePrint} Archive, Paper 2026/856},
      year = {2026},
      url = {https://eprint.iacr.org/2026/856}
}