Hamza Omar

Orcid: 0000-0003-3021-0503

According to our database1, Hamza Omar authored at least 13 papers between 2017 and 2023.

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Bibliography

2023
ASM: An Adaptive Secure Multicore for Co-located Mutually Distrusting Processes.
ACM Trans. Archit. Code Optim., September, 2023

Hardware Root-of-Trust implementations in Trusted Execution Environments.
IACR Cryptol. ePrint Arch., 2023

2021
PRISM: Strong Hardware Isolation-based Soft-Error Resilient Multicore Architecture with High Performance and Availability at Low Hardware Overheads.
ACM Trans. Archit. Code Optim., 2021

2020
Connecting the Dots: Privacy Leakage via Write-Access Patterns to the Main Memory.
IEEE Trans. Dependable Secur. Comput., 2020

OPTIMUS: A Security-Centric Dynamic Hardware Partitioning Scheme for Processors that Prevent Microarchitecture State Attacks.
IEEE Trans. Computers, 2020

IRONHIDE: A Secure Multicore that Efficiently Mitigates Microarchitecture State Attacks for Interactive Applications.
Proceedings of the IEEE International Symposium on High Performance Computer Architecture, 2020

2019
IRONHIDE: A Secure Multicore Architecture that Leverages Hardware Isolation Against Microarchitecture State Attacks.
CoRR, 2019

2018
Declarative Resilience: A Holistic Soft-Error Resilient Multicore Architecture that Trades off Program Accuracy for Efficiency.
ACM Trans. Embed. Comput. Syst., 2018

Multicore Resource Isolation for Deterministic, Resilient and Secure Concurrent Execution of Safety-Critical Applications.
IEEE Comput. Archit. Lett., 2018

Breaking the Oblivious-RAM Bandwidth Wall.
Proceedings of the 36th IEEE International Conference on Computer Design, 2018

2017
Exploiting the Tradeoff between Program Accuracy and Soft-error Resiliency Overhead for Machine Learning Workloads.
CoRR, 2017

Leveraging Hardware Isolation for Process Level Access Control & Authentication.
Proceedings of the 22nd ACM on Symposium on Access Control Models and Technologies, 2017

GraphTuner: An Input Dependence Aware Loop Perforation Scheme for Efficient Execution of Approximated Graph Algorithms.
Proceedings of the 2017 IEEE International Conference on Computer Design, 2017


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