Darius Suciu

dblp:163/2618 · also Darius Andrei Suciu · DBLP profile ↗
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7ranked-venue papers
5as first author
4since 2021 · last 2026
0000-0002-5227-1254ORCID · corroborated

Domains — the database's venue-derived domains; a paper can count in several

Security and privacy · 7 · 5 first-author · 4 since 2021
YearPublicationVenuePosition
2026 Overseer: Enforcing fine-grained memory access control across execution environments
Darius Suciu, Sandeep Kiran Pinjala, Radu Sion
AsiaCCS1
2026 Helltrap: Transforming physical machines into UEFI rootkit traps
Darius Suciu, Jake Christensen, Radu Sion
EuroS&P1
2023 Wink: Deniable Secure Messaging
Anrin Chakraborti, Darius Suciu, Radu Sion
USENIX Security Symposium2
2022 AppBastion: Protection from Untrusted Apps and OSes on ARM
Darius Suciu, Radu Sion, Michael Ferdman
ESORICS (2)1
2020 Horizontal Privilege Escalation in Trusted Applications
Darius Suciu, Stephen E. McLaughlin, Radu Sion
USENIX Security Symposium1
2016 POSTER: KXRay: Introspecting the Kernel for Rootkit Timing Footprints
abstract
Kernel rootkits often hide associated malicious processes by altering reported task struct information to upper layers and applications such as ps and top. Virtualized settings offer a unique opportunity to mitigate this behavior using dynamic virtual machine introspection (VMI). For known kernels, VMI can be deployed to search for kernel objects and identify them by using unique data structure "signatures".
Chen Chen 0057, Darius Suciu, Radu Sion
CCS2
2016 POSTER: DroidShield: Protecting User Applications from Normal World Access
abstract
Smartphones are becoming the main data sharing and storage devices in both our personal and professional lives, as companies now allow employees to share the same device for both purposes, provided the company's confidential information can be protected. However, as history has shown, systems relying on security policies or rules to protect user data are not airtight. Any flaw in the constructed rules or in the code of privileged applications can lead to complete compromise. In addition, we can not rely only on TrustZone[6] world separation to isolate confidential data from unauthorized access, because in addition to severe limitations in terms of both communication and memory space, there is a very low limit on the number of applications that can be installed in the secure world before we can start questioning its security, especially when considering code originating from multiple sources. Thus, the solutions currently available for TrustZone devices are not perfect and the data confidentiality can not be guaranteed. We propose an alternative approach, which involves providing the majority of secure world application advantages to a set of normal world applications, with almost none of the drawbacks by relying only on the TrustZone world separation and the TZ-RKP[2] kernel protection scheme.
Darius Suciu, Radu Sion
CCS1