JOURNAL ARTICLE

Minimizing Latency for Secure Coded Computing Using Secret Sharing via Staircase Codes

Rawad BitarParimal ParagSalim El Rouayheb

Year: 2020 Journal:   IEEE Transactions on Communications Vol: 68 (8)Pages: 4609-4619   Publisher: IEEE Communications Society

Abstract

We consider the setting of a Master server, M, who possesses confidential data and wants to run intensive computations on it, as part of a machine learning algorithm for example. The Master wants to distribute these computations to untrusted workers who volunteered to help with this task. However, the data must be kept private in an information theoretic sense. Some of the workers may be stragglers, e.g., slow or busy. We are interested in reducing the delays experienced by the Master. We focus on linear computations as an essential operation in many iterative algorithms. We propose a solution based on new codes, called Staircase codes, introduced previously by two of the authors. Staircase codes allow flexibility in the number of stragglers up to a given maximum, and universally achieve the information theoretic limit on the download cost by the Master, leading to latency reduction. We find upper and lower bounds on the Master's mean waiting time. We derive the distribution of the Master's waiting time, and its mean, for systems with up to two stragglers. We show that Staircase codes always outperform existing solutions based on classical secret sharing codes. We validate our results with extensive implementation on Amazon EC2. © 2020 IEEE.

Keywords:
Computer science Secret sharing Computation Theoretical computer science Secure multi-party computation Distributed computing Algorithm Cryptography

Metrics

58
Cited By
6.31
FWCI (Field Weighted Citation Impact)
90
Refs
0.97
Citation Normalized Percentile
Is in top 1%
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Citation History

Topics

Privacy-Preserving Technologies in Data
Physical Sciences →  Computer Science →  Artificial Intelligence
Cryptography and Data Security
Physical Sciences →  Computer Science →  Artificial Intelligence
Stochastic Gradient Optimization Techniques
Physical Sciences →  Computer Science →  Artificial Intelligence
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