
Information Security and Privacy
Description
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This three-volume set in LNCS constitutes the refereed proceedings of the 30th Australasian Conference on Information Security and Privacy, ACISP 2025, held in Wollongong, NSW, Australia, during July 14-16, 2025.
The 54 full papers, 6 short papers and 1 invited paper included in this book were carefully reviewed and
selected from 181 submissions. They were organized in topical sections as follows: symmetric-key cryptography and cryptanalysis; public-key encryption; digital signatures and zero knowledge; cryptographic protocols and blockchain; post-quantum cryptography; homomorphic encryption and applications; cryptographic foundations and number theory; privacy enhancing technologies; AI security and privacy; system security.
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Content
.- Symmetric-Key Cryptography and Cryptanalysis .
.- Forgery Attacks on SipHash.
.- Cryptanalysis of Fruit-F: Exploiting Key-Derivation Weaknesses and Initial ization Vulnerabilities.
.- Exploring Key-Recovery-Friendly Differential Distinguishers for SM4 and Their Performance in Differential Attacks.
.- Inner Product Masked Integral Distinguishers and Integral Sets over Large Finite Fields Applications to MiMC, CIMINION and Chaghri.
.- Improved Differential Meet-In-The-Middle Cryptanalysis on SIMON and Piccolo.
.- Strengthening Key Scheduling of AES-256 with Minimal Software Modifications.
.- Public-Key Encryption .
.- Ideal Transformations for Public Key Encryption.
.- Indifferentiability Separations in Ideal Public Key Encryption: Explicit vs Implicit Rejection.
.- Digital Signatures and Zero Knowledge .
.- Compressed Sigma Protocols: New Model and Aggregation Techniques.
.- Glitter: A Fully Adaptive and Tightly Secure Threshold Signature.
.- Faster VOLEitH Signatures from All-but-One Vector Commitment and Half Tree.
.- Three-Round (Robust) Threshold ECDSA from Threshold CL Encryption.
.- Lattice Attack with EHNP: Key Recovery from Two ECDSA Signatures and Breaking the Information-Theoretic Limit.
.- Cryptographic Protocols and Blockchain .
.- FlexiADKG: A Flexible Asynchronous Distributed Key Generation Protocol with Constant Round Complexity.
.- TEAKEX: TESLA-Authenticated Group Key Exchange.
.- SoK: A Deep Dive into Anti-Money Laundering Techniques for Blockchain Cryptocurrencies.
.- Advanced Temporal Graph Embedding For Detecting Fraudulent Transactions on Complex Blockchain Transactional Networks.
.- Walnut: A Generic Framework with Enhanced Scalability for BFT Protocols.
.- PPSCCC: Privacy-Preserving Scalable Cross-Chain Communication Among Multiple Blockchains Based on Parent-Child Blockchain.
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