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Precision, recall, and sensitivity of monitoring partially synchronous distributed programs.

, , , , and . Distributed Comput., 34 (5): 319-348 (2021)

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Precision, Recall, and Sensitivity of Monitoring Partially Synchronous Distributed Systems., , , , and . RV, volume 10012 of Lecture Notes in Computer Science, page 420-435. Springer, (2016)Achieving Causality with Physical Clocks., , and . CoRR, (2021)Technical Report: Benefits of Stabilization versus Rollback in Self-Stabilizing Graph-Based Applications on Eventually Consistent Key-Value Stores., and . CoRR, (2020)Technical Report: Optimistic Execution in Key-Value Store., , , and . CoRR, (2018)Benefits of Stabilization versus Rollback in Eventually Consistent Key-Value Stores., and . CoRR, (2019)Analyzing the Effect of Consistency Violation Faults in Self-Stabilizing Programs., and . CoRR, (2021)Achieving Causality with Physical Clocks., , and . ICDCN, page 97-106. ACM, (2022)Benefit of Self-Stabilizing Protocols in Eventually Consistent Key-Value Stores: A Case Study., , and . CoRR, (2018)Analysis of Bounds on Hybrid Vector Clocks., , , and . IEEE Trans. Parallel Distributed Syst., 29 (9): 1947-1960 (2018)Benefits of Stabilization versus Rollback in Self-Stabilizing Graph-Based Applications on Eventually Consistent Key-Value Stores., and . SRDS, page 11-20. IEEE, (2020)