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20192021
most citedSecurity, Performance and Energy Trade-offs of Hardware-assisted Memory Protection Mechanisms

33 citations · 37 across the 5 of their papers we have counts for

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Showing 2019 · cs.DCShow all

5 papers · 2 filters

cs.DC2019★ 2 cited

LEGaTO: Low-Energy, Secure, and Resilient Toolset for Heterogeneous Computing

B. Salami, K. Parasyris, A. Cristal +42

The LEGaTO project leverages task-based programming models to provide a software ecosystem for Made in-Europe heterogeneous hardware composed of CPUs, GPUs, FPGAs and dataflow engi…

cs.DC2019

ABEONA: an Architecture for Energy-Aware Task Migrations from the Edge to the Cloud

Isabelly Rocha, Gabriel Vinha, Andrey Brito +3

This paper presents our preliminary results with ABEONA, an edge-to-cloud architecture that allows migrating tasks from low-energy, resource-constrained devices on the edge up to t…

cs.DC2019

Differential Approximation and Sprinting for Multi-Priority Big Data Engines

Robert Birke, Isabelly Rocha, Juan Perez +3

Today's big data clusters based on the MapReduce paradigm are capable of executing analysis jobs with multiple priorities, providing differential latency guarantees. Traces from pr…

cs.DC2019

HEATS: Heterogeneity- and Energy-Aware Task-based Scheduling

Isabelly Rocha, Christian Göttel, Pascal Felber +3

Cloud providers usually offer diverse types of hardware for their users. Customers exploit this option to deploy cloud instances featuring GPUs, FPGAs, architectures other than x86…

cs.DC2019★ 33 cited

Security, Performance and Energy Trade-offs of Hardware-assisted Memory Protection Mechanisms

Christian Göttel, Rafael Pires, Isabelly Rocha +4

The deployment of large-scale distributed systems, e.g., publish-subscribe platforms, that operate over sensitive data using the infrastructure of public cloud providers, is nowada…