Endre Bangerter

dblp:09/1224 · DBLP profile ↗
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7ranked-venue papers
2as first author
0since 2021 · last 2012
—ORCID · none

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 6 · 2 first-authorHuman-computer interaction and ubiquitous computing · 1Theory of computation · 1 · 1 first-author

Expertise — from the expertise taxonomy: the topics of the expert's papers under the CCF categories. A weight counts papers with recency: 1 for a paper about the topic, 0.3 when the topic is its context, halved every five years.

Network and information security
3 papers
Cryptographic protocols and secure computation · 35% Hardware security and side channels · 30% Cryptographic primitives and cryptanalysis · 20%
Software engineering, system software, and programming languages
2 papers
Program verification · 54% Operating systems · 46%

Topics — the 8 heaviest of 9, each with the papers that count most for it

TopicWeightPapersLastEvidence papers
Cryptographic protocols and secure computation › proof systems
zero-knowledge proofs
0.112012
Full proof cryptography: verifiable compilation of efficient zero-knowledge protocols · CCS 2012
Hardware security and side channels › microarchitectural attacks
cache attacks
0.112011
Cache Games - Bringing Access-Based Cache Attacks on AES to Practice · IEEE Symposium on Security and Privacy 2011
Network security
covert channel
0.112011
Cache Games - Bringing Access-Based Cache Attacks on AES to Practice · IEEE Symposium on Security and Privacy 2011
Hardware security and side channels
microarchitectural side channel
0.112011
Cache Games - Bringing Access-Based Cache Attacks on AES to Practice · IEEE Symposium on Security and Privacy 2011
Cryptographic primitives and cryptanalysis
cryptographic assumptions
0.112008
Sufficient Conditions for Intractability over Black-Box Groups: Generic Lower Bounds for Generalized DL and DH Problems · ASIACRYPT 2008
Cryptographic primitives and cryptanalysis › cryptographic foundations › cryptographic models
generic group model
0.112008
Sufficient Conditions for Intractability over Black-Box Groups: Generic Lower Bounds for Generalized DL and DH Problems · ASIACRYPT 2008
Program verification
formal proof
0.012012
Full proof cryptography: verifiable compilation of efficient zero-knowledge protocols · CCS 2012
Operating systems › resource management › process management › CPU scheduling
scheduler design
0.012011
Cache Games - Bringing Access-Based Cache Attacks on AES to Practice · IEEE Symposium on Security and Privacy 2011

Methods — techniques the papers use, named apart from their topics

verified compilation · 0.3certicrypt · 0.3reverse engineering · 0.2dynamic program analysis · 0.2
YearPublicationVenuePosition
2012 Full proof cryptography: verifiable compilation of efficient zero-knowledge protocols
abstract
Developers building cryptography into security-sensitive applications face a daunting task. Not only must they understand the security guarantees delivered by the constructions they choose, they must also implement and combine them correctly and efficiently. Cryptographic compilers free developers from this task by turning high-level specifications of security goals into efficient implementations. Yet, trusting such tools is hard as they rely on complex mathematical machinery and claim security properties that are subtle and difficult to verify. In this paper we present ZKCrypt, an optimizing cryptographic compiler achieving an unprecedented level of assurance without sacrificing practicality for a comprehensive class of cryptographic protocols, known as Zero-Knowledge Proofs of Knowledge. The pipeline of ZKCrypt integrates purpose-built verified compilers and verifying compilers producing formal proofs in the CertiCrypt framework. By combining the guarantees delivered by each stage, ZKCrypt provides assurance that the output implementation securely realizes the abstract proof goal given as input. We report on the main characteristics of ZKCrypt, highlight new definitions and concepts at its foundations, and illustrate its applicability through a representative example of an anonymous credential system
José Bacelar Almeida, Manuel Barbosa, Endre Bangerter, Gilles Barthe, Stephan Krenn, Santiago Zanella-Béguelin
CCS3
2011 Cache Games - Bringing Access-Based Cache Attacks on AES to Practice
abstract
Side channel attacks on cryptographic systems exploit information gained from physical implementations rather than theoretical weaknesses of a scheme. In recent years, major achievements were made for the class of so called access-driven cache attacks. Such attacks exploit the leakage of the memory locations accessed by a victim process. In this paper we consider the AES block cipher and present an attack which is capable of recovering the full secret key in almost real time for AES-128, requiring only a very limited number of observed encryptions. Unlike previous attacks, we do not require any information about the plaintext (such as its distribution, etc.). Moreover, for the first time, we also show how the plaintext can be recovered without having access to the cipher text at all. It is the first working attack on AES implementations using compressed tables. There, no efficient techniques to identify the beginning of AES rounds is known, which is the fundamental assumption underlying previous attacks. We have a fully working implementation of our attack which is able to recover AES keys after observing as little as 100 encryptions. It works against the OpenS SL 0.9.8n implementation of AES on Linux systems. Our spy process does not require any special privileges beyond those of a standard Linux user. A contribution of probably independent interest is a denial of service attack on the task scheduler of current Linux systems (CFS), which allows one to observe (on average) every single memory access of a victim process.
David Gullasch, Endre Bangerter, Stephan Krenn
IEEE Symposium on Security and Privacy2
2010 A Certifying Compiler for Zero-Knowledge Proofs of Knowledge Based on Sigma-Protocols
José Bacelar Almeida, Endre Bangerter, Manuel Barbosa, Stephan Krenn, Ahmad-Reza Sadeghi, Thomas Schneider 0003
ESORICS2
2010 Efficiency Limitations for Σ-Protocols for Group Homomorphisms
Endre Bangerter, Jan Camenisch, Stephan Krenn
TCC1
2008 Sufficient Conditions for Intractability over Black-Box Groups: Generic Lower Bounds for Generalized DL and DH Problems
Andy Rupp, Gregor Leander, Endre Bangerter, Alexander W. Dent, Ahmad-Reza Sadeghi
ASIACRYPT3
2008 A Demonstrative Ad Hoc Attestation System
Endre Bangerter, Maksim Djackov, Ahmad-Reza Sadeghi
ISC1
1999 Animating Wrinkles on Clothes
abstract
This paper describes a method to simulate realistic wrinkles on clothes without fine mesh and large computational overheads. Cloth has very little in-plane deformations, as most of the deformations come from buckling. This can be looked at as area conservation property of cloth. The area conservation formulation of the method modulates the user defined wrinkle pattern, based on deformation of individual triangle. The methodology facilitates use of small in-plane deformation stiffnesses and a coarse mesh for the numerical simulation, this makes cloth simulation fast and robust. Moreover, the ability to design wrinkles (even on generalized deformable models) makes this method versatile for synthetic image generation. The method inspired from cloth wrinkling problem, being geometric in nature, can be extended to other wrinkling phenomena.
Sunil Hadap, Endre Bangerter, Pascal Volino, Nadia Magnenat-Thalmann
IEEE Visualization2