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General hardware multicasting for fine-grained message-passing architectures., , , , , , , , and . PDP, page 126-133. IEEE, (2021)Report From the CoalFace: Lessons Learnt Building A General-Purpose Always-On Provenance System., , , and . TAPP, USENIX Association, (2014)Towards Secure User-space Provenance Capture., , , , and . TaPP, USENIX Association, (2016)Applying Provenance in APT Monitoring and Analysis: Practical Challenges for Scalable, Efficient and Trustworthy Distributed Provenance., , , , , , , , , and . TaPP, USENIX Association, (2017)OPUS: A Lightweight System for Observational Provenance in User Space., , , and . TaPP, USENIX Association, (2013)Non-repudiable disk I/O in untrusted kernels., , , , and . APSys, page 24:1-24:6. ACM, (2017)Structural Analysis of Whole-System Provenance Graphs., , , , , and . IPAW, volume 11017 of Lecture Notes in Computer Science, page 241-244. Springer, (2018)Termination detection for fine-grained message-passing architectures., , , , , , , , and . ASAP, page 17-24. IEEE, (2020)