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Brijesh Dongol
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Publications
- 2024
- [c52]Stefan Bodenmüller, John Derrick, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
A Fully Verified Persistency Library. VMCAI (2) 2024: 26-47 - 2022
- [j23]Eleni Bila, John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
Modularising Verification Of Durable Opacity. Log. Methods Comput. Sci. 18(3) (2022) - 2021
- [j20]John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
Verifying correctness of persistent concurrent data structures: a sound and complete method. Formal Aspects Comput. 33(4-5): 547-573 (2021) - [c39]John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
Brief Announcement: On Strong Observational Refinement and Forward Simulation. DISC 2021: 55:1-55:4 - [i20]John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
On Strong Observational Refinement and Forward Simulation. CoRR abs/2107.14509 (2021) - 2020
- [c37]Eleni Bila, Simon Doherty, Brijesh Dongol, John Derrick, Gerhard Schellhorn, Heike Wehrheim:
Defining and Verifying Durable Opacity: Correctness for Persistent Software Transactional Memory. FORTE 2020: 39-58 - [i15]Eleni Bila, Simon Doherty, Brijesh Dongol, John Derrick, Gerhard Schellhorn, Heike Wehrheim:
Defining and Verifying Durable Opacity: Correctness for Persistent Software Transactional Memory. CoRR abs/2004.08200 (2020) - [i14]Eleni Bila, John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
Modularising Verification Of Durable Opacity. CoRR abs/2011.15013 (2020) - 2019
- [c35]John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Heike Wehrheim:
Verifying Correctness of Persistent Concurrent Data Structures. FM 2019: 179-195 - [c31]Simon Doherty, Brijesh Dongol, Heike Wehrheim, John Derrick:
Verifying C11 programs operationally. PPoPP 2019: 355-365 - 2018
- [j17]John Derrick, Simon Doherty, Brijesh Dongol, Gerhard Schellhorn, Oleg Travkin, Heike Wehrheim:
Mechanized proofs of opacity: a comparison of two techniques. Formal Aspects Comput. 30(5): 597-625 (2018) - [c30]Simon Doherty, Brijesh Dongol, Heike Wehrheim, John Derrick:
Making Linearizability Compositional for Partially Ordered Executions. IFM 2018: 110-129 - [c28]Simon Doherty, Brijesh Dongol, Heike Wehrheim, John Derrick:
Brief Announcement: Generalising Concurrent Correctness to Weak Memory. DISC 2018: 45:1-45:3 - [e1]John Derrick, Brijesh Dongol, Steve Reeves:
Proceedings 18th Refinement Workshop, Refine@FM 2018, Oxford, UK, 18th July 2018. EPTCS 282, 2018 [contents] - [i12]Simon Doherty, John Derrick, Brijesh Dongol, Heike Wehrheim:
Causal Linearizability: Compositionality for Partially Ordered Executions. CoRR abs/1802.01866 (2018) - [i11]Simon Doherty, Brijesh Dongol, Heike Wehrheim, John Derrick:
Verifying C11 Programs Operationally. CoRR abs/1811.09143 (2018) - 2017
- [p1]John Derrick, Graeme Smith, Lindsay Groves, Brijesh Dongol:
A Proof Method for Linearizability on TSO Architectures. Provably Correct Systems 2017: 61-91 - 2016
- [c22]Simon Doherty, Brijesh Dongol, John Derrick, Gerhard Schellhorn, Heike Wehrheim:
Proving Opacity of a Pessimistic STM. OPODIS 2016: 35:1-35:17 - 2015
- [j12]Brijesh Dongol, John Derrick:
Verifying Linearisability: A Comparative Survey. ACM Comput. Surv. 48(2): 19:1-19:43 (2015) - [j11]Brijesh Dongol, John Derrick:
Interval-based data refinement: A uniform approach to true concurrency in discrete and real-time systems. Sci. Comput. Program. 111: 214-247 (2015) - [c21]Brijesh Dongol, John Derrick, Lindsay Groves, Graeme Smith:
Defining Correctness Conditions for Concurrent Objects in Multicore Architectures. ECOOP 2015: 470-494 - [c20]John Derrick, Brijesh Dongol, Gerhard Schellhorn, Oleg Travkin, Heike Wehrheim:
Verifying Opacity of a Transactional Mutex Lock. FM 2015: 161-177 - 2014
- [j9]Brijesh Dongol, Ian J. Hayes, John Derrick:
Deriving real-time action systems with multiple time bands using algebraic reasoning. Sci. Comput. Program. 85: 137-165 (2014) - [c17]Graeme Smith, John Derrick, Brijesh Dongol:
Admit Your Weakness: Verifying Correctness on TSO Architectures. FACS 2014: 364-383 - [c16]John Derrick, Brijesh Dongol, Gerhard Schellhorn, Bogdan Tofan, Oleg Travkin, Heike Wehrheim:
Quiescent Consistency: Defining and Verifying Relaxed Linearizability. FM 2014: 200-214 - [c15]John Derrick, Graeme Smith, Lindsay Groves, Brijesh Dongol:
Using Coarse-Grained Abstractions to Verify Linearizability on TSO Architectures. Haifa Verification Conference 2014: 1-16 - [c14]Brijesh Dongol, John Derrick, Graeme Smith:
Reasoning Algebraically About Refinement on TSO Architectures. ICTAC 2014: 151-168 - [c13]John Derrick, Graeme Smith, Brijesh Dongol:
Verifying Linearizability on TSO Architectures. IFM 2014: 341-356 - [i4]Brijesh Dongol, John Derrick:
Verifying linearizability: A comparative survey. CoRR abs/1410.6268 (2014) - 2013
- [j7]Brijesh Dongol, John Derrick:
Simplifying proofs of linearisability using layers of abstraction. Electron. Commun. Eur. Assoc. Softw. Sci. Technol. 66 (2013) - [c12]Brijesh Dongol, Oleg Travkin, John Derrick, Heike Wehrheim:
A High-Level Semantics for Program Execution under Total Store Order Memory. ICTAC 2013: 177-194 - [c11]Brijesh Dongol, John Derrick:
Data refinement for true concurrency. Refine@IFM 2013: 15-35 - [i3]Brijesh Dongol, John Derrick:
Simplifying proofs of linearisability using layers of abstraction. CoRR abs/1307.6958 (2013) - 2012
- [j5]Brijesh Dongol, John Derrick, Ian J. Hayes:
Fractional Permissions and Non-Deterministic Evaluators in Interval Temporal Logic. Electron. Commun. Eur. Assoc. Softw. Sci. Technol. 53 (2012) - [i2]Brijesh Dongol, John Derrick:
Proving linearisability via coarse-grained abstraction. CoRR abs/1212.5116 (2012)
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