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Secure Multi-Path Routing with All-or-Nothing Transform for Network-on-Chip Architectures

About

Ensuring Network-on-Chip (NoC) security is crucial to design trustworthy NoC-based System-on-Chip (SoC) architectures. While there are various threats that exploit on-chip communication vulnerabilities, eavesdropping attacks via malicious nodes are among the most common and stealthy. Although encryption can secure packets for confidentiality, it may introduce unacceptable overhead for resource-constrained SoCs. In this paper, we propose a lightweight confidentiality-preserving framework that utilizes a quasi-group based All-Or-Nothing Transform (AONT) combined with secure multi-path routing in NoC-based SoCs. By applying AONT to each packet and distributing its transformed blocks across multiple non-overlapping routes, we ensure that no intermediate router can reconstruct the original data without all blocks. Extensive experimental evaluation demonstrates that our method effectively mitigates eavesdropping attacks by malicious routers with negligible area and performance overhead. Our results also reveal that AONT-based multi-path routing can provide 7.3x reduction in overhead compared to traditional encryption for securing against eavesdropping attacks.

Hansika Weerasena, Matthew Randall, Prabhat Mishra• 2026

Related benchmarks

TaskDatasetResultRank
Communication Delay EvaluationSPLASH-2 OCEAN workload 8x8 NoC
Average Delay35.1
6
Eavesdropping Security EvaluationNoC synthetic permutations 4x4 mesh
Eavesdropping Probability0.00e+0
4
Eavesdropping Security Evaluation8 x 8 NoC mesh (synthetic permutations)
Eavesdropping Probability0.00e+0
4
Communication Delay EvaluationSPLASH-2 FFT workload 8x8 NoC
Average Delay36.5
3
Communication Delay EvaluationSPLASH-2 RADIX workload 8x8 NoC
Avg Delay34.2
3
Communication Delay EvaluationSPLASH-2 FMM workload 8x8 NoC
Avg Delay35.5
3
Communication Delay EvaluationSPLASH-2 LU workload 8x8 NoC
Avg Delay37
3
Communication Delay EvaluationSPLASH-2 BARNES workload 8x8 NoC
Avg Delay36.2
3
Communication Delay EvaluationPARSEC black workload 8x8 NoC
Avg Delay36.6
3
Network-on-Chip Delay EstimationSPLASH-2 FFT + 1
Average Delay40.2
3
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