Difference between revisions of "AFSecurity Seminar"

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== Privacy transformations of personal data ==
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== ''Confidential Computing'' ==
  
 
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| '''TIME:'''&nbsp; 22 April 2022, 14:00h<br />'''PLACE:'''&nbsp;  Auditorium Smalltalk, IFI/UiO, Ole Johan Dahls hus, Gaustadalleen 23b, Oslo. [https://kart.finn.no/?lng=10.71782&lat=59.94342&zoom=17&mapType=normap&markers=10.71782,59.94342,r,Gaustadall%C3%A9en+23B See map].<br />
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| '''TIME:'''&nbsp; Friday 1 December 2023, 14:00h<br />'''PLACE:'''&nbsp;  Auditorium Smalltalk, 1st floor, IFI, UiO, Ole Johan Dahls hus, Gaustadalleen 23b, Oslo. [https://kart.finn.no/?lng=10.71782&lat=59.94342&zoom=17&mapType=normap&markers=10.71782,59.94342,r,Gaustadall%C3%A9en+23B See map].<br />
Enkel servering.<br />
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All interested are welcome. Coffee and snaks served.<br />
 
<br />'''AGENDA:'''<br />
 
<br />'''AGENDA:'''<br />
14:00h Welcome at IFI and AF''Security''<br />14:15 Invited talk<br />
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14:00h Welcome to AFSecurity at UiO <br />
* TITLE: ''Privacy transformations of personal data''<br /> &nbsp;
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14:15h Invited talk<br />
* SPEAKER: Christophe Rosenberger, ENSICAEN, France
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* TITLE: ''Confidential Computing'' &nbsp;
| <center>[[File:Photo-Christophe-Rosenberger.jpg|140px|link=http://www.ecole.ensicaen.fr/~rosenber/]]</center>
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* SPEAKER: Ijlal Loutfi, Canonical 
| <center>[[File:Logo-ENSICAEN.png|200px|link=https://www.ensicaen.fr/]]</center>
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| <center>[[File:photo-Ijlal-Loutfi.png|90px|link=https://www.linkedin.com/in/ijlal-loutfi-785125234/]]</center>
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| <center>[[File:logo-Canonical.png|320px|link=https://canonical.com/]]</center>
 
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* ABSTRACT:<br />Privacy protection is now a key issue when designing any digital system. We present in this talk non invertible transformation for the protection of personal data. These transformations have been initially proposed for biometric data. They allow the comparison of transformed data without any access to the data content. Some real applications will be presented such as transparent authentication or distant exam monitoring.<br /><br />
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* ABSTRACT:<br />Protecting data in-use has long been a challenging open problem in computer science. While being computed on in cleartext in system memory, your data stored in RAM is exposed to the millions lines of code that make up the underlying platform’s privileged system software. By design, a malicious firmware, or compromised operating system can easily leak your data, or compromise its integrity.<br /><br />Confidential computing is a privacy-enhancing system security primitive which addresses this challenge head-on, by running your security-sensitive processes in isolated execution environments whose security guarantees can be remotely attested. Its recent generations, such as Intel SGX, Intel TDX and AMD SEV SNP, make use of newer CPU hardware and architectural extensions, such as the AES-128 hardware encryption engine which encrypts RAM memory pages in real-time. Hardware with these capabilities is already available in the market, and public cloud providers have been one of its early adopters.<br /><br />In this presentation, we first visit the history of confidential computing, then study the technical system primitives which allow us to implement both isolation and attestation. We also explore the different silicon implementations of confidential computing, where they are deployed today, and for which uses cases.
15:00h Diskusjon.
 
  
'''BIO:''' &nbsp; [http://www.ecole.ensicaen.fr/~rosenber/ Christophe Rosenberger] obtained his PhD in Information Technology from the [https://www.univ-rennes1.fr/ University of Rennes 1] in 1999. His PhD thesis work was undertaken at [http://www.enssat.fr/ ENSSAT] in Lannion between 1996 and 1999 in the field of hyperspectral image segmentation. He joined the ENSI de Bourges school of engineering in Bourges (known as [http://www.insa-centrevaldeloire.fr/fr/ INSA Centre Val de Loire]) as assistant professor in 2000. In 2007, he joined the [https://www.ensicaen.fr/ ENSICAEN] school of engineering in Caen as full professor. He is actually director of the [https://www.greyc.fr/ GREYC research lab]  composed of 160 members. He belongs to the [https://www.greyc.fr/en/equipes/safe-2/ SAFE] (Security, Architecture, Forensics, biomEtrics) research group in the GREYC research lab. His current work focuses in the domain of computer security, in particular research activities in biometrics (keystroke dynamics, soft biometrics, evaluation of biometric systems, fingerprint quality assessment...). He has authored or co-authored over 200 publications among 16 book chapters, 41 international journals and 2 international patents.
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<br />15:00h Discussion<br />
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'''BIO:''' &nbsp; Dr. Ijlal Loutfi is the product lead for Ubuntu Security at Canonical. She has a PhD in cyber security from the University of Oslo, where she worked on Trusted Execution Environments and Identity Management.
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| [[File:AFSecurity-small.png|250px]]
 
| [[File:AFSecurity-small.png|250px]]
| AF''Security'' is organised by UiO [https://www.mn.uio.no/ifi/english/research/groups/sec/ Digital Security]
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| AF''Security'' is organised by UiO [https://www.mn.uio.no/ifi/forskning/grupper/sec/ Digital Security].
| [[File:Sec-light-360.png|250px|link=https://www.mn.uio.no/ifi/english/research/groups/sec/]]
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| [[File:logo-uio-english-2022.png|250px|link=https://www.mn.uio.no/]]
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| [[File:Sec-light-360.png|150px|link=https://www.mn.uio.no/ifi/english/research/groups/sec/]]
 
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Latest revision as of 15:30, 14 November 2023

Confidential Computing

TIME:  Friday 1 December 2023, 14:00h
PLACE:  Auditorium Smalltalk, 1st floor, IFI, UiO, Ole Johan Dahls hus, Gaustadalleen 23b, Oslo. See map.

All interested are welcome. Coffee and snaks served.

AGENDA:
14:00h Welcome to AFSecurity at UiO
14:15h Invited talk

  • TITLE: Confidential Computing  
  • SPEAKER: Ijlal Loutfi, Canonical
Photo-Ijlal-Loutfi.png
Logo-Canonical.png
  • ABSTRACT:
    Protecting data in-use has long been a challenging open problem in computer science. While being computed on in cleartext in system memory, your data stored in RAM is exposed to the millions lines of code that make up the underlying platform’s privileged system software. By design, a malicious firmware, or compromised operating system can easily leak your data, or compromise its integrity.

    Confidential computing is a privacy-enhancing system security primitive which addresses this challenge head-on, by running your security-sensitive processes in isolated execution environments whose security guarantees can be remotely attested. Its recent generations, such as Intel SGX, Intel TDX and AMD SEV SNP, make use of newer CPU hardware and architectural extensions, such as the AES-128 hardware encryption engine which encrypts RAM memory pages in real-time. Hardware with these capabilities is already available in the market, and public cloud providers have been one of its early adopters.

    In this presentation, we first visit the history of confidential computing, then study the technical system primitives which allow us to implement both isolation and attestation. We also explore the different silicon implementations of confidential computing, where they are deployed today, and for which uses cases.


15:00h Discussion

BIO:   Dr. Ijlal Loutfi is the product lead for Ubuntu Security at Canonical. She has a PhD in cyber security from the University of Oslo, where she worked on Trusted Execution Environments and Identity Management.




AFSecurity-small.png AFSecurity is organised by UiO Digital Security. Logo-uio-english-2022.png Sec-light-360.png