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Titlebook: Computer Security – ESORICS 2016; 21st European Sympos Ioannis Askoxylakis,Sotiris Ioannidis,Catherine Me Conference proceedings 2016 Sprin

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Membrane: A Posteriori Detection of Malicious Code Loading by Memory Paging Analysisect the code loading itself, we focus on the changes it causes on the memory paging of the Windows operating system. As our method focuses on the anomalies caused by code loading, we are able to detect a wide range of code loading techniques. Our results indicate that we can detect code loading malw
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Mobile Application Impersonation Detection Using Dynamic User Interface Extractionerfaces from mobile apps and analyzes the extracted screenshots to detect impersonation. As the detection is based on the visual appearance of the application, as seen by the user, our approach is robust towards the attack implementation technique and resilient to simple detection avoidance methods
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Privately Outsourcing Exponentiation to a Single Server: Cryptanalysis and Optimal Constructionsn efficient protocol for securely outsourcing multi-exponentiations proposed at ESORICS 2014. We show that this scheme does not achieve the claimed security guarantees and we present practical polynomial-time attacks on the delegation protocol which allow the untrusted helper to recover part (or the
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Attribute-Based Signatures for Supporting Anonymous Certificationing blocks of anonymous certification schemes, we identify ABS limitations to fulfill AC properties, and we propose a new system model along with a concrete mathematical construction based on standard assumptions and the random oracle model. Our solution has several advantages. First, it provides a
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https://doi.org/10.1007/978-3-030-37097-8by employing attribute-based encryption technique, our protocol also realizes the fine-grained access control on the stored data. To be compatible with our RSA-based approach, we also present a deterministic and memory-efficient ‘keyword to prime’ hash function, which may be of independent interest.
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Andreas Bernhardt,Konstantin Korotovse a single untrusted computational resource and to limit the computational cost of the limited device to a constant number of (generic) group operations. In particular, we show that our constructions are actually optimal in terms of operations in the underlying group.
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