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Oleksii Oleksenko
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2020 – today
- 2023
- [j2]Oleksii Oleksenko, Christof Fetzer, Boris Köpf, Mark Silberstein:
Revizor: Testing Black-Box CPUs Against Speculation Contracts. IEEE Micro 43(4): 37-44 (2023) - [c12]Oleksii Oleksenko, Marco Guarnieri, Boris Köpf, Mark Silberstein:
Hide and Seek with Spectres: Efficient discovery of speculative information leaks with random testing. SP 2023: 1737-1752 - [c11]Jana Hofmann, Emanuele Vannacci, Cédric Fournet, Boris Köpf, Oleksii Oleksenko:
Speculation at Fault: Modeling and Testing Microarchitectural Leakage of CPU Exceptions. USENIX Security Symposium 2023: 7143-7160 - [i7]Oleksii Oleksenko, Marco Guarnieri, Boris Köpf, Mark Silberstein:
Hide and Seek with Spectres: Efficient discovery of speculative information leaks with random testing. CoRR abs/2301.07642 (2023) - 2022
- [c10]Oleksii Oleksenko, Christof Fetzer, Boris Köpf, Mark Silberstein:
Revizor: testing black-box CPUs against speculation contracts. ASPLOS 2022: 226-239 - 2021
- [b1]Oleksii Oleksenko:
Maintaining Security in the Era of Microarchitectural Attacks. Dresden University of Technology, Germany, 2021 - [i6]Bohdan Trach, Rasha Faqeh, Oleksii Oleksenko, Wojciech Ozga, Pramod Bhatotia, Christof Fetzer:
T-Lease: A Trusted Lease Primitive for Distributed Systems. CoRR abs/2101.06485 (2021) - [i5]Oleksii Oleksenko, Christof Fetzer, Boris Köpf, Mark Silberstein:
Revizor: Fuzzing for Leaks in Black-box CPUs. CoRR abs/2105.06872 (2021) - 2020
- [c9]Bohdan Trach, Rasha Faqeh, Oleksii Oleksenko, Wojciech Ozga, Pramod Bhatotia, Christof Fetzer:
T-Lease: a trusted lease primitive for distributed systems. SoCC 2020: 387-400 - [c8]Oleksii Oleksenko, Bohdan Trach, Mark Silberstein, Christof Fetzer:
SpecFuzz: Bringing Spectre-type vulnerabilities to the surface. USENIX Security Symposium 2020: 1481-1498
2010 – 2019
- 2019
- [c7]Bohdan Trach, Oleksii Oleksenko, Franz Gregor, Pramod Bhatotia, Christof Fetzer:
Clemmys: towards secure remote execution in FaaS. SYSTOR 2019: 44-54 - [i4]Oleksii Oleksenko, Bohdan Trach, Mark Silberstein, Christof Fetzer:
SpecFuzz: Bringing Spectre-type vulnerabilities to the surface. CoRR abs/1905.10311 (2019) - 2018
- [j1]Oleksii Oleksenko, Dmitrii Kuvaiskii, Pramod Bhatotia, Pascal Felber, Christof Fetzer:
Intel MPX Explained: A Cross-layer Analysis of the Intel MPX System Stack. Proc. ACM Meas. Anal. Comput. Syst. 2(2): 28:1-28:30 (2018) - [c6]Oleksii Oleksenko, Dmitrii Kuvaiskii, Pramod Bhatotia, Pascal Felber, Christof Fetzer:
Intel MPX Explained: A Cross-layer Analysis of the Intel MPX System Stack. SIGMETRICS (Abstracts) 2018: 111-112 - [c5]Oleksii Oleksenko, Bohdan Trach, Robert Krahn, Mark Silberstein, Christof Fetzer:
Varys: Protecting SGX Enclaves from Practical Side-Channel Attacks. USENIX ATC 2018: 227-240 - [i3]Oleksii Oleksenko, Bohdan Trach, Tobias Reiher, Mark Silberstein, Christof Fetzer:
You Shall Not Bypass: Employing data dependencies to prevent Bounds Check Bypass. CoRR abs/1805.08506 (2018) - 2017
- [c4]Oleksii Oleksenko, Dmitrii Kuvaiskii, Pramod Bhatotia, Christof Fetzer:
Fex: A Software Systems Evaluator. DSN 2017: 543-550 - [c3]Dmitrii Kuvaiskii, Oleksii Oleksenko, Sergei Arnautov, Bohdan Trach, Pramod Bhatotia, Pascal Felber, Christof Fetzer:
SGXBOUNDS: Memory Safety for Shielded Execution. EuroSys 2017: 205-221 - [i2]Oleksii Oleksenko, Dmitrii Kuvaiskii, Pramod Bhatotia, Pascal Felber, Christof Fetzer:
Intel MPX Explained: An Empirical Study of Intel MPX and Software-based Bounds Checking Approaches. CoRR abs/1702.00719 (2017) - 2016
- [c2]Dmitrii Kuvaiskii, Oleksii Oleksenko, Pramod Bhatotia, Pascal Felber, Christof Fetzer:
ELZAR: Triple Modular Redundancy Using Intel AVX (Practical Experience Report). DSN 2016: 646-653 - [i1]Dmitrii Kuvaiskii, Oleksii Oleksenko, Pramod Bhatotia, Pascal Felber, Christof Fetzer:
Elzar: Triple Modular Redundancy using Intel Advanced Vector Extensions (technical report). CoRR abs/1604.00500 (2016) - 2015
- [c1]Till Kolditz, Dirk Habich, Patrick Damme, Wolfgang Lehner, Dmitrii Kuvaiskii, Oleksii Oleksenko, Christof Fetzer:
Resiliency-aware Data Compression for In-memory Database Systems. DATA 2015: 326-331
Coauthor Index
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