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E-raamat: Provable Security: 12th International Conference, ProvSec 2018, Jeju, South Korea, October 25-28, 2018, Proceedings

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This book constitutes the refereed proceedings of the 12th International Conference on Provable Security, ProvSec 2018, held in Jeju, South Korea, in October 2018.  The 21 full and 4 short papers presented were carefully reviewed and selected from 48 submissions. The papers are grouped in topical sections on foundation. Public key encryption, digital signature, symmetric key cryptography, and applications.
On the Leakage of Corrupted Garbled Circuits.- Location-Proof System
Based on Secure Multi-Party Computations.- Verifiable Homomorphic Secret
Sharing.- Single Private-Key Generator Security Implies Multiple Private-Key
Generators Security.- Secure Outsourcing of Cryptographic Circuits
Manufacturing.- On the Hardness of Learning Parity with Noise over Rings.- A
CCA-Secure Collusion-Resistant Identity-Based Proxy Re-Encryption Scheme.-
Multivariate Encryption Schemes Based on the Constrained MQ Problem.-
Token-Based Multi-Input Functional Encryption.- On the CCA2 Security of
McEliece in the Standard Model.- Efficient Attribute-Based Encryption with
BlackBox Traceability.- A Code-Based Linkable Ring Signature Scheme.- Towards
Static Assumption Based Cryptosystem in Pairing Setting: Further Applications
of DejaQ and Dual-Form Signature.- Digital Signatures from the Middle-Product
LWE.- Generic Double-Authentication Preventing Signatures and a Post-Quantum
Instantiation.- A Simpler Construction of Identity-Based Ring Signatures from
Lattices.- A Generic Construction of Sequential Aggregate MACs from Any
MACs.- Length-Preserving Encryption Based on Single-key Tweakable Block
Cipher.- Modeling Privacy in WiFi Fingerprinting Indoor Localization.-
Security Notions for Cloud Storage and Deduplication.- Forward Secrecy for
SPAKE2.- User-Mediated Authentication Protocols and Unforgeability for Key
Collision.- BAdASS: Preserving Privacy in Behavioural Advertising with
Applied Secret Sharing.- Signcryption with Quantum Random Oracles.- Formal
Treatment of Verifiable Privacy-Preserving Data-Aggregation Protocols.