Risultati finali
This deliverable relies on the output of Tasks 4.3, 4.4 & 4.5, and provides complementary functionality of the risk assessment framework delivered in D4.2. More specifically, it handles the unacceptable calculated risks by inferring (using backward-chaining techniques) the optimal mitigation actions (i.e., properties that have to be reactively attested) that have to be applied.
Runtime Risk Assessment, Resilience and Mitigation PlanningThis deliverable relies on the output of Tasks 4.3, 4.4 & 4.5, and provides complementary functionality of the risk assessment framework delivered in D4.4.
Update of Deliverable D2.2. Additionally, the deliverable includes the final recommendation on which algorithms should be implemented by a future TPM and the full specification of these algorithms.
Second Report on Security Models for the TPMFinal version of the report describing and outlining security models for the TPM.
Project quality planThe project quality plan (the project handbook) constitutes a set of project templates, explanations on the project management process, review process, quality checks, meeting organisation, which is communicated to all partners.
Second Report on the Security of the TPMReport outlining security proofs for the integrated TPM functionality.
Security Risks in QR DeploymentsDocumentation of the security problems and risks that classical protocols, to be employed in the three envisioned use cases, might face in the presence of quantum adversaries.
First Report on the Security of the TPMInitial report outlining security arguments for the integrated TPM functionality.
Report on implementationsFinal report on QR TSS, SW based QR TPM, VM based QR TPM and HW based QR TPM.
FutureTPM Reference ArchitectureThis deliverable will provide the specification of the FutureTPM reference architecture, the functional components and interfaces between them. It will provide an analysis and point of reference for the FutureTPM in relation to the three specific use cases, including an analysis of relevant classical protocols and the use cases themselves in terms of FutureTPM functionality.
Final Demonstrators Implementation ReportDocumentation of the implementation of the final release of the demonstrators’ prototypes (Tasks 6.3, 6.4 & 6.5). The deliverable will contain a public report on the evaluation and a confidential annex on the setup of the demonstrator, and a confidential demonstrator.
Final Report on the Design and Security of the QR TPMThe final report describing fully our security models for core, extended and full TPM interfaces in various scenarios, as well as our quantum-resistant TPM design, and its provable security. The report will also include a holistic security analysis of the current TPM design, and consolidate contributions from WP2 and WP3 into a single deliverable.
First Report on New QR Cryptographic PrimitivesThis deliverable reports on the work done by all tasks, including the surveys, the newly developed algorithms, and the full specification of the candidate algorithms (TPM and TSS) that are to be implemented and evaluated by WP5.
Demonstrators Implementation Report – First ReleaseDocumentation of the implementation of the first release of the demonstrators’ prototypes (Tasks 6.3, 6.4 & 6.5). This deliverable will also provide a rigorous evaluation of the results gathered from the execution of the first demonstrator’s phase. The deliverable will contain a public report on the evaluation and a confidential annex on the setup of the demonstrator, and a confidential demonstrator.
First Report on Security Models for the TPMInitial report describing and outlining security models for various implementations of TPM.
Risk Assessment PlanThe risk assessment plan shows how potential risks are assessed and mitigated in order to avoid any negative influence on the [ACRONYM] project objectives. The interrelated risk assessment plan – risk identification, handling and monitoring – will be established.
FutureTPM Use Cases and System RequirementsThis deliverable will define the three use cases the FutureTPM will address. It will provide a detailed view of FutureTPM’s reference scenarios and describe a number of use cases within the reference scenarios. It will then derive the technical requirements for the FutureTPM project, including an analysis of how present-day TPM functionality can be implemented using QR cryptography.
Threat Modelling & Risk Assessment MethodologyThis deliverable provides the normative specification of a meta-model which will be used by security analysts in order to capture the cartography of a QR TPM supported environment and the non-normative specification of a multi-step RA methodology that has to be applied prior to the risk quantification. It also provides the approach for integrating multiple levels of risk analysis and dependencies such as safety.
Validation Results, Performance Evaluation and Adoption GuidelinesThe deliverable will document the evaluation results gathered from the execution of the demonstrators; the project/framework impact assessment; and the methodology and adoption guidelines. It will also include a critical appraisal of the QR algorithms developed and tested and how they can be generalized to secure hardware solutions other than TPM environments. Any information with regards to the technical details of the TPM implementation (e.g., benchmarking) will be added as a confidential appendix.
Second Report on New QR Cryptographic PrimitivesUpdate of D2.1.
The external IT communication infrastructure constitutes a guideline for communication of the FutureTPM project to external target groups including conferences, marketing measures and communication channels. Furthermore this deliverable constitutes the launch of the internal communication infrastructure including the establishment of mailing lists or a subversion server, and the FutureTPM website.
First version of SW based QR TSS and QR TPM.
Pubblicazioni
Autori:
Nikolaos Koutroumpouchos, Christoforos Ntantogian, Christos Xenakis
Pubblicato in:
Sensors, Numero 21/2, 2021, Pagina/e 520, ISSN 1424-8220
Editore:
Multidisciplinary Digital Publishing Institute (MDPI)
DOI:
10.3390/s21020520
Autori:
Linzhi Jiang, Liqun Chen, Thanassis Giannetsos, Bo Luo, Kaitai Liang, Jinguang Han
Pubblicato in:
IEEE Internet of Things Journal, Numero 6/6, 2019, Pagina/e 10177-10190, ISSN 2327-4662
Editore:
Institute of Electrical and Electronics Engineers Inc.
DOI:
10.1109/jiot.2019.2936532
Autori:
Paulo Martins, Leonel Sousa
Pubblicato in:
IEEE Access, Numero 8, 2020, Pagina/e 59533-59549, ISSN 2169-3536
Editore:
Institute of Electrical and Electronics Engineers Inc.
DOI:
10.1109/ACCESS.2020.2983020
Autori:
Cheng, H.; Großschädl, J.; Tian, J.; Roenne, P.; Ryan. P.
Pubblicato in:
Numero 10, 2020
Editore:
Springer
DOI:
10.5281/zenodo.4263826
Autori:
Markiewicz, R.; Sgandurra, D.
Pubblicato in:
Numero 7, 2020
Editore:
ACM
DOI:
10.5281/zenodo.4146827
Autori:
Li, R.; Wang, Q.; Liu, F.; Wang, Q.; Galindo, D.
Pubblicato in:
Numero 1, 2020
Editore:
ISC 2020
DOI:
10.5281/zenodo.4556922
Autori:
Liqun Chen, Nada El Kassem, Anja Lehmann, Vadim Lyubashevsky
Pubblicato in:
Proceedings of the 1st ACM Workshop on Workshop on Cyber-Security Arms Race - CYSARM'19, 2019, Pagina/e 23-34, ISBN 9781450368407
Editore:
ACM Press
DOI:
10.1145/3338511.3357349
Autori:
Poettering, B.; Rösler, P.
Pubblicato in:
Numero 1, 2020
Editore:
IACR / Ruhr University Bochum
DOI:
10.5281/zenodo.4277168
Autori:
Albrecht, Martin R.; Hanser, Christian; Höller, Andrea; Pöppelmann, Thomas; Virdia, Fernando; Wallner, Andreas
Pubblicato in:
IACR Transactions on Cryptographic Hardware and Embedded Systems (TCHES), Volume 2019, Numero 1, Numero Numero 1, 2018
Editore:
Zenodo
DOI:
10.5281/zenodo.1486566
Autori:
Jorden Whitefield, Liqun Chen, Ralf Sasse, Steve Schneider, Helen Treharne, Stephan Wesemeyer
Pubblicato in:
2019 IEEE European Symposium on Security and Privacy (EuroS&P), 2019, Pagina/e 127-141, ISBN 978-1-7281-1148-3
Editore:
IEEE
DOI:
10.1109/eurosp.2019.00019
Autori:
Vadim Lyubashevsky, Gregor Seiler
Pubblicato in:
Conference on Cryptographic Hardware and Embedded Systems 2019 , 2019
Editore:
Cryptology ePrint archive
DOI:
10.13154/tches.v2019.i3.180-201
Autori:
Jean-Claude Bajard, Julien Eynard, Paulo Martins, Leonel Sousa, Vincent Zucca
Pubblicato in:
Cryptology ePrint Archive: Report 2019/500; ESORICS 2019, 2019
Editore:
Cryptology ePrint Archive: Report 2019/500
Autori:
Georgios Fotiadis (SnT, University of Luxembourg), Chloe Martindale (Technische Universiteit Eindhoven)
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Latincrypt 2019, 2019
Editore:
Cryptology ePrint Archive
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Proceedings of the 22nd Pan-Hellenic Conference on Informatics - PCI '18, 2018, Pagina/e 58-63, ISBN 9781-450366106
Editore:
ACM Press
DOI:
10.1145/3291533.3291573
Autori:
Nikos Koutroumpouchos, Christoforos Ntantogian, Sofia-Anna Menesidou, Kaitai Liang, Panagiotis Gouvas, Christos Xenakis, Thanassis Giannetsos
Pubblicato in:
2019 IEEE Conference on Network Softwarization (NetSoft), 2019, Pagina/e 84-92, ISBN 978-1-5386-9376-6
Editore:
IEEE
DOI:
10.1109/netsoft.2019.8806658
Autori:
Martins, Paulo; Marrez, Jérémy; Bajard, Jean-Claude; Sousa, Leonel
Pubblicato in:
2019 IEEE 26th Symposium on Computer Arithmetic (ARITH), Numero 14, 2019
Editore:
IEEE
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Autori:
Bajard, J.; Eynard, J.; Martins, P.; Sousa, L.; Zucca, V.
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Numero 13, 2019
Editore:
ESORICS
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Autori:
Jo Van Bulck, David Oswald, Eduard Marin, Abdulla Aldoseri, Flavio D. Garcia, Frank Piessens
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Editore:
ACM
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10.1145/3319535.3363206
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info:eu-repo/grantAgreement/EC/H2020/779391, Numero 14, 2019
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IACR
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Thanassis Giannetsos, Ioannis Krontiris
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Proceedings of the 14th International Conference on Availability, Reliability and Security - ARES '19, 2019, Pagina/e 1-8, ISBN 9781-450371643
Editore:
ACM Press
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10.1145/3339252.3340523
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Cheng, H.; Großschädl, J.; Rønne, P.; Ryan, P.
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info:eu-repo/grantAgreement/EC/H2020/779391, Numero 8, 2019
Editore:
CSRC
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José Bacelar Almeida, Cécile Baritel-Ruet, Manuel Barbosa, Gilles Barthe, François Dupressoir, Benjamin Grégoire, Vincent Laporte, Tiago Oliveira, Alley Stoughton, Pierre-Yves Strub
Pubblicato in:
Proceedings of the 2019 ACM SIGSAC Conference on Computer and Communications Security, 2019, Pagina/e 1607-1622, ISBN 9781-450367479
Editore:
ACM
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10.1145/3319535.3363211
Autori:
Genç, Z.; Lenzini, G.; Sgandurra, D.
Pubblicato in:
Numero 9, 2019
Editore:
ACM
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Autori:
Koutroumpouchos Nikolaos; Lavdanis Georgios; Eleni, Veroni; Ntantogian Christoforos; Xenakis Christos
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Numero 13, 2019
Editore:
ACM
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Armour, M.; Poettering, B.
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Numero 2, 2019
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Springer
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Armour, M.; Poettering, B.
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Numero 8, 2019
Editore:
IACR
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10.13154/tosc.v2019.i3.152-168
Autori:
Kit Murdock, David Oswald, Flavio D. Garcia, Jo Van Bulck, Daniel Gruss, Frank Piessens
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2020 IEEE Symposium on Security and Privacy (SP), 2020, Pagina/e 1466-1482, ISBN 978-1-7281-3497-0
Editore:
IEEE
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10.1109/sp40000.2020.00057
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Pöppelmann, T.
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Numero 6, 2020
Editore:
Embedded World Conference 2020
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10.5281/zenodo.3952200
Autori:
Jamroga, W.; Roenne, P.; Ryan, P.; Stark, P.
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Springer
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10.5281/zenodo.3952218
Autori:
Cheng, H.; Dinu, D.; Großschädl, P.; Rønne, P.; Ryan, P.
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Springer
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10.5281/zenodo.3952246
Autori:
Beunardeau, M.; Orche, F.; Maimuţ, D.; Naccache, D.; Rønne, P.; Ryan, P.
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Springer
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Fiolhais, L.; Martins, P.; Sousa, L.
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2020
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SECRYPT
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Hao Cheng, Johann Groszschaedl, Peter Roenne, Peter Ryan
Pubblicato in:
2020
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CARDIS
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10.5281/zenodo.3980419
Autori:
Larsen, B.; Bergsson, D.; Giannetsos, T.
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Numero 1, 2020
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IEEE
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Jeroen Pijnenburg, Bertram Poettering
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ACM
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Cheng, Z.; Chen, L.
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Springer
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Pijnenburg, J.; Poettering, B.
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Springer
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Fritz Alder, Jo Van Bulck, David Oswald, Frank Piessens
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Annual Computer Security Applications Conference, 2020, Pagina/e 415-427, ISBN 9781450388580
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ACSAC 2020
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IEEE
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Rajiv Ranjan Singh, José Moreira, Tom Chothia, Mark D. Ryan
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Cecilia Boschini, Jan Camenisch, Gregory Neven
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Applied Cryptography and Network Security, Numero 10892, 2018, Pagina/e 163-182, ISBN 978-3-319-93386-3
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Springer International Publishing
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Zhaohui Cheng, Liqun Chen
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Springer International Publishing
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Rafael del Pino, Vadim Lyubashevsky, Gregor Seiler
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Springer International Publishing
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Jonathan Bootle, Vadim Lyubashevsky, Gregor Seiler
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Ziya Alper Genç, Gabriele Lenzini, Daniele Sgandurra
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Springer International Publishing
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10.1007/978-3-030-22038-9_11
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Constantinos Pouyioukka, Thanassis Giannetsos, Weizhi Meng
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Trust Management XIII - 13th IFIP WG 11.11 International Conference, IFIPTM 2019, Copenhagen, Denmark, July 17-19, 2019, Proceedings, Numero 563, 2019, Pagina/e 147-161, ISBN 978-3-030-33715-5
Editore:
Springer International Publishing
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Ntantogian Christoforos; Poulios Georgios; Karopoulos Georgios; Xenakis Christos
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IET Information Security , Numero 3, 2019
Editore:
IET Digital Library
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Alagic, Gorjan; Gagliardoni, Tommaso; Majenz, Christian
Pubblicato in:
arXiv.org, Numero 1, 2018
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arXiv.org
Autori:
Ntantogian Christoforos; Veroni Eleni; Karopoulos Georgios; Xenakis Christos
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Computers & Electrical Engineering Volume 77 , Numero 6, 2019
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Elsevier
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ScienceDirect
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Zhuang Xu, Owen Pemberton, Sujoy Sinha Roy, David Oswald
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Future Generation Computer Systems, Numero 99, 2019, Pagina/e 425-458, ISSN 0167-739X
Editore:
Elsevier BV
DOI:
10.1016/j.future.2019.04.036
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