~~NOTOC~~ ====== Keyword: Smartcards ====== If you have published anything not in the list, please add the bibliography entry to the list. Instructions can be found in the [[https://gitlab.fi.muni.cz/labak/wiki-publications|GitLab repository]] Note down also the information on rejections and authorship percentages. We keep track of our lab efforts and author shares are useful for dissertation proposal/dissertation/habilitation/... There is a [[:internal:crocs:submissions|dedicated page where to write them]]. ==== 2023==== * **Enabling Efficient Threshold Signature Computation via Java Card API**\\ [[:publications:authors:antonin-dufka|Antonin Dufka]] and [[:publications:authors:petr-svenda|Petr Svenda]],\\ //Proceedings of the 18th International Conference on Availability, Reliability and Security//, Association for Computing Machinery, 2023, 11-20.\\ Keywords: [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:smpc|smpc]], [[:publications:keywords:cryptocurrencies|cryptocurrencies]], [[:publications:keywords:javacard|javacard]], {{:publications:pdf:2023-ares-dufka.pdf|pre-print PDF}}, [[http://dx.doi.org/10.1145/3600160.3600180|DOI website]], ++ BibTeX |@InProceedings{2023-ares-dufka, title = {Enabling Efficient Threshold Signature Computation via Java Card API}, author = {Antonin Dufka and Petr Svenda}, booktitle = {Proceedings of the 18th International Conference on Availability, Reliability and Security}, pages = {11-20}, publisher = {Association for Computing Machinery}, year = {2023}, isbn = {9798400707728}, doi = {10.1145/3600160.3600180}, keywords = {smartcards, SMPC, cryptocurrencies, javacard}, } ++ * **The adoption rate of JavaCard features by certified products and open-source projects **\\ [[:publications:authors:lukas-zaoral|Lukas Zaoral]], [[:publications:authors:antonin-dufka|Antonin Dufka]] and [[:publications:authors:petr-svenda|Petr Svenda]],\\ //Proceedings of the 22nd Smart Card Research and Advanced Application Conference, Lecture Notes in Computer Science, vol 14530//, Springer, 2023, 169--189.\\ Keywords: [[:publications:keywords:cryptographic-hardware|cryptographic hardware]], [[:publications:keywords:javacard|javacard]], [[:publications:keywords:common-criteria|common criteria]], [[:publications:keywords:fips140|fips140]], [[:publications:keywords:smartcards|smartcards]], [[http://dx.doi.org/10.1007/978-3-031-54409-5_9|DOI website]], ++ BibTeX |@InProceedings{2023-cardis-javacard, title = {The adoption rate of JavaCard features by certified products and open-source projects }, author = {Lukas Zaoral and Antonin Dufka and Petr Svenda}, booktitle = {Proceedings of the 22nd Smart Card Research and Advanced Application Conference, Lecture Notes in Computer Science, vol 14530}, pages = {169--189}, publisher = {Springer}, year = {2023}, isbn = {978-3-031-54409-5}, doi = {10.1007/978-3-031-54409-5_9}, keywords = {Cryptographic Hardware, javacard, common criteria, fips140, smartcards}, language = {eng}, } ++ ==== 2022==== * **JCAlgTest: Robust identification metadata for certified smartcards**\\ [[:publications:authors:petr-svenda|Petr Svenda]], [[:publications:authors:rudolf-kvasnovsky|Rudolf Kvasnovsky]], [[:publications:authors:imrich-nagy|Imrich Nagy]] and [[:publications:authors:antonin-dufka|Antonin Dufka]],\\ //19th International Conference on Security and Cryptography//, INSTICC, 2022, 597--604.\\ Keywords: [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:javacard|javacard]], [[http://dx.doi.org/10.5220/0000163500003283|DOI website]], ++ BibTeX |@InProceedings{2022-jcalgtest-svenda, title = {JCAlgTest: Robust identification metadata for certified smartcards}, author = {Petr Svenda and Rudolf Kvasnovsky and Imrich Nagy and Antonin Dufka}, booktitle = {19th International Conference on Security and Cryptography}, pages = {597--604}, publisher = {INSTICC}, address = {Lisabon}, location = {Lisabon}, year = {2022}, isbn = {978-989-758-590-6}, doi = {10.5220/0000163500003283}, keywords = {smartcards, javacard}, language = {eng}, } ++ * **SHINE: Resilience via Practical Interoperability of Multi-party Schnorr Signature Schemes**\\ [[:publications:authors:antonin-dufka|Antonin Dufka]], [[:publications:authors:vladimir-sedlacek|Vladimir Sedlacek]] and [[:publications:authors:petr-svenda|Petr Svenda]],\\ //Proceedings of the 19th International Conference on Security and Cryptography//, SCITEPRESS, 2022, 305-316.\\ Keywords: [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:smpc|smpc]], [[:publications:keywords:cryptocurrencies|cryptocurrencies]], {{:publications:pdf:2022-secrypt-shine.pdf|pre-print PDF}}, [[http://dx.doi.org/10.5220/0011145600003283|DOI website]], ++ BibTeX |@InProceedings{2022-secrypt-shine, title = {SHINE: Resilience via Practical Interoperability of Multi-party Schnorr Signature Schemes}, author = {Antonin Dufka and Vladimir Sedlacek and Petr Svenda}, booktitle = {Proceedings of the 19th International Conference on Security and Cryptography}, pages = {305-316}, publisher = {SCITEPRESS}, year = {2022}, isbn = {978-989-758-590-6}, issn = {2184-7711}, doi = {10.5220/0011145600003283}, keywords = {smartcards, SMPC, cryptocurrencies}, } ++ ==== 2020==== * **Fooling primality tests on smartcards**\\ [[:publications:authors:vladimir-sedlacek|Vladimir Sedlacek]], [[:publications:authors:jan-jancar|Jan Jancar]] and [[:publications:authors:petr-svenda|Petr Svenda]],\\ //25th European Symposium on Research in Computer Security (ESORICS) 2020//, Springer, 2020.\\ Keywords: [[:publications:keywords:ecc|ecc]], [[:publications:keywords:primality|primality]], [[:publications:keywords:pseudoprimes|pseudoprimes]], [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:cryptoimplementations|cryptoimplementations]], {{:publications:pdf:2020-esorics-foolingprimes.pdf|pre-print PDF}}, [[http://dx.doi.org/10.1007/978-3-030-59013-0\_11|DOI website]], ++ BibTeX |@InProceedings{2020-esorics-foolingprimes, title = {Fooling primality tests on smartcards}, author = {Vladimir Sedlacek and Jan Jancar and Petr Svenda}, booktitle = {25th European Symposium on Research in Computer Security (ESORICS) 2020}, publisher = {Springer}, year = {2020}, doi = {10.1007/978-3-030-59013-0\_11}, keywords = {ECC, primality, pseudoprimes, smartcards, cryptoimplementations}, } ++ * **JCMathLib: Wrapper Cryptographic Library for Transparent and Certifiable JavaCard Applets**\\ [[:publications:authors:vasilios-mavroudis|Vasilios Mavroudis]] and [[:publications:authors:petr-svenda|Petr Svenda]],\\ IEEE, 2020, 64--71.\\ Keywords: [[:publications:keywords:ecc|ecc]], [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:opentools|opentools]], [[:publications:keywords:smpc|smpc]], [[http://dx.doi.org/10.1109/EuroSPW51379.2020.00022|DOI website]], ++ BibTeX |@Article{2020-jcmathlib-cybercert, title = {JCMathLib: Wrapper Cryptographic Library for Transparent and Certifiable JavaCard Applets}, author = {Vasilios Mavroudis and Petr Svenda}, volume = {61}, number = {2}, pages = {64--71}, publisher = {IEEE}, year = {2020}, doi = {10.1109/EuroSPW51379.2020.00022}, keywords = {ECC, smartcards, opentools, smpc}, conference = {First International Workshop on Lightweight and Incremental Cybersecurity Certification}, } ++ * **Minerva: The curse of ECDSA nonces; Systematic analysis of lattice attacks on noisy leakage of bit-length of ECDSA nonces**\\ [[:publications:authors:jan-jancar|Jan Jancar]], [[:publications:authors:vladimir-sedlacek|Vladimir Sedlacek]], [[:publications:authors:petr-svenda|Petr Svenda]] and [[:publications:authors:marek-sys|Marek Sys]],\\ //Conference on Cryptographic Hardware and Embedded Systems (CHES) 2020//, Ruhr-University of Bochum, Transactions on Cryptographic Hardware and Embedded Systems, 2020.\\ Keywords: [[:publications:keywords:ecc|ecc]], [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:libraries|libraries]], [[:publications:keywords:leakage|leakage]], [[:publications:keywords:side-channel|side-channel]], [[:publications:keywords:cryptoimplementations|cryptoimplementations]], [[http://dx.doi.org/10.13154/tches.v2020.i4.281-308|DOI website]], ++ BibTeX |@InProceedings{2020-tches-minerva, title = {Minerva: The curse of ECDSA nonces; Systematic analysis of lattice attacks on noisy leakage of bit-length of ECDSA nonces}, author = {Jan Jancar and Vladimir Sedlacek and Petr Svenda and Marek Sys}, booktitle = {Conference on Cryptographic Hardware and Embedded Systems (CHES) 2020}, publisher = {Ruhr-University of Bochum, Transactions on Cryptographic Hardware and Embedded Systems}, year = {2020}, issn = {2569-2925}, doi = {10.13154/tches.v2020.i4.281-308}, keywords = {ECC, smartcards, libraries, leakage, side-channel, cryptoimplementations}, } ++ ==== 2019==== * **I Want to Break Square-free: The 4p−1 Factorization Method and Its RSA Backdoor Viability**\\ [[:publications:authors:vladimir-sedlacek|Vladimir Sedlacek]], [[:publications:authors:dusan-klinec|Dusan Klinec]], [[:publications:authors:marek-sys|Marek Sys]], [[:publications:authors:petr-svenda|Petr Svenda]] and [[:publications:authors:vashek-matyas|Vashek Matyas]],\\ //Proceedings of the 16th International Joint Conference on e-Business and Telecommunications (ICETE 2019) - Volume 2: SECRYPT//, SciTePress, 2019, 25-36.\\ Keywords: [[:publications:keywords:ecc|ecc]], [[:publications:keywords:factorization|factorization]], [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:cryptoimplementations|cryptoimplementations]], {{:publications:pdf:2019-secrypt-sedlacek.pdf|pre-print PDF}}, [[http://dx.doi.org/10.5220/0007786600250036|DOI website]], ++ BibTeX |@Conference{2019-secrypt-sedlacek, title = {I Want to Break Square-free: The 4p−1 Factorization Method and Its RSA Backdoor Viability}, author = {Vladimir Sedlacek and Dusan Klinec and Marek Sys and Petr Svenda and Vashek Matyas}, booktitle = {Proceedings of the 16th International Joint Conference on e-Business and Telecommunications (ICETE 2019) - Volume 2: SECRYPT}, pages = {25-36}, organization = {INSTICC}, publisher = {SciTePress}, year = {2019}, isbn = {978-989-758-378-0}, doi = {10.5220/0007786600250036}, keywords = {ECC, factorization, smartcards, cryptoimplementations}, } ++ ==== 2017==== * **A Touch of Evil: High-Assurance Cryptographic Hardware from Untrusted Components**\\ [[:publications:authors:vasilios-mavroudis|Vasilios Mavroudis]], [[:publications:authors:andrea-cerulli|Andrea Cerulli]], [[:publications:authors:petr-svenda|Petr Svenda]], [[:publications:authors:dan-cvrcek|Dan Cvrcek]], [[:publications:authors:dusan-klinec|Dusan Klinec]] and [[:publications:authors:george-danezis|George Danezis]],\\ //24th ACM Conference on Computer and Communications Security (CCS'2017)//, ACM, 2017, 1583--1600.\\ Keywords: [[:publications:keywords:smartcards|smartcards]], [[:publications:keywords:smpc|smpc]], ++ BibTeX |@InProceedings{2017-ccs-mavroudis, title = {A Touch of Evil: High-Assurance Cryptographic Hardware from Untrusted Components}, author = {Vasilios Mavroudis and Andrea Cerulli and Petr Svenda and Dan Cvrcek and Dusan Klinec and George Danezis}, booktitle = {24th ACM Conference on Computer and Communications Security (CCS'2017)}, pages = {1583--1600}, publisher = {ACM}, year = {2017}, isbn = {978-1-4503-4946-8/17/10}, keywords = {smartcards, SMPC}, } ++