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Ian Stark
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- affiliation: University of Edinburgh, Scotland, UK
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2020 – today
- 2024
- [c33]Vadim Zaliva, Kayvan Memarian, Ricardo Almeida, Jessica Clarke, Brooks Davis, Alexander Richardson, David Chisnall, Brian Campbell, Ian Stark, Robert N. M. Watson, Peter Sewell:
Formal Mechanised Semantics of CHERI C: Capabilities, Undefined Behaviour, and Provenance. ASPLOS (1) 2024: 181-196 - [c32]Irina Dudina, Ian Stark:
Static Analysis for Transitioning to CHERI C/C++. SOAP@PLDI 2024: 52-59 - 2022
- [c31]Thomas Bauereiss, Brian Campbell, Thomas Sewell, Alasdair Armstrong, Lawrence Esswood, Ian Stark, Graeme Barnes, Robert N. M. Watson, Peter Sewell:
Verified Security for the Morello Capability-enhanced Prototype Arm Architecture. ESOP 2022: 174-203 - 2021
- [c30]Ian Stark:
Neuro-Positionality in User-Centered Design: : The Case of Student Disability Services. SIGDOC 2021: 382-383 - 2020
- [j8]Martin Kristien, Tom Spink, Brian Campbell, Susmit Sarkar, Ian Stark, Björn Franke, Igor Böhm, Nigel P. Topham:
Fast and Correct Load-Link/Store-Conditional Instruction Handling in DBT Systems. IEEE Trans. Comput. Aided Des. Integr. Circuits Syst. 39(11): 3544-3554 (2020) - [c29]Thomas Wright, Ian Stark:
Property-Directed Verified Monitoring of Signal Temporal Logic. RV 2020: 339-358 - [c28]Thomas Wright, Ian Stark:
Modelling Patterns of Gene Regulation in the bond-calculus. SASB 2020: 117-138 - [c27]Kyndylan Nienhuis, Alexandre Joannou, Thomas Bauereiss, Anthony C. J. Fox, Michael Roe, Brian Campbell, Matthew Naylor, Robert M. Norton, Simon W. Moore, Peter G. Neumann, Ian Stark, Robert N. M. Watson, Peter Sewell:
Rigorous engineering for hardware security: Formal modelling and proof in the CHERI design and implementation process. SP 2020: 1003-1020 - [i3]Thomas Wright, Ian Stark:
Technical Report: Property-Directed Verified Monitoring of Signal Temporal Logic. CoRR abs/2008.06589 (2020)
2010 – 2019
- 2019
- [j7]Alasdair Armstrong, Thomas Bauereiss, Brian Campbell, Alastair Reid, Kathryn E. Gray, Robert M. Norton, Prashanth Mundkur, Mark Wassell, Jon French, Christopher Pulte, Shaked Flur, Ian Stark, Neel Krishnaswami, Peter Sewell:
ISA semantics for ARMv8-a, RISC-v, and CHERI-MIPS. Proc. ACM Program. Lang. 3(POPL): 71:1-71:31 (2019) - 2018
- [j6]Martin Hofmann, David Aspinall, Brian Campbell, Ian Stark, Perdita Stevens:
Foreword. Theor. Comput. Sci. 741: 1-2 (2018) - [c26]Craig McLaughlin, James McKinna, Ian Stark:
Triangulating context lemmas. CPP 2018: 102-114 - [i2]Thomas Wright, Ian Stark:
The Bond-Calculus: A Process Algebra for Complex Biological Interaction Dynamics. CoRR abs/1804.07603 (2018) - 2017
- [i1]Chris J. Banks, Ian Stark:
A More Sensitive Context. CoRR abs/1702.03288 (2017) - 2016
- [j5]Brian Campbell, Ian Stark:
Randomised testing of a microprocessor model using SMT-solver state generation. Sci. Comput. Program. 118: 60-76 (2016) - [c25]Brian Campbell, Ian Stark:
Extracting behaviour from an executable instruction set model. FMCAD 2016: 33-40 - 2015
- [c24]Chris J. Banks, Daniel D. Seaton, Ian Stark:
Analysis of a Post-translational Oscillator Using Process Algebra and Spatio-Temporal Logic. CMSB 2015: 222-238 - 2014
- [j4]Chris J. Banks, Ian Stark:
A logic of behaviour in context. Inf. Comput. 236: 3-18 (2014) - [c23]Brian Campbell, Ian Stark:
Randomised Testing of a Microprocessor Model Using SMT-Solver State Generation. FMICS 2014: 185-199 - 2013
- [c22]Roberto M. Amadio, Nicholas Ayache, François Bobot, Jaap Boender, Brian Campbell, Ilias Garnier, Antoine Madet, James McKinna, Dominic P. Mulligan, Mauro Piccolo, Randy Pollack, Yann Régis-Gianas, Claudio Sacerdoti Coen, Ian Stark, Paolo Tranquilli:
Certified Complexity (CerCo). FOPARA 2013: 1-18 - 2012
- [c21]Chris J. Banks, Allan Clark, Anastasis Georgoulas, Stephen Gilmore, Jane Hillston, Dimitrios Milios, Ian Stark:
Stochastic Modelling of the Kai-based Circadian Clock. PASM/PDMC 2012: 43-60 - 2011
- [c20]R. Armadio, Andrea Asperti, Nicholas Ayache, Brian Campbell, Dominic P. Mulligan, Randy Pollack, Yann Régis-Gianas, Claudio Sacerdoti Coen, Ian Stark:
Certified Complexity. FET 2011: 175-177
2000 – 2009
- 2008
- [j3]Ian Stark:
Free-algebra models for the pi -calculus. Theor. Comput. Sci. 390(2-3): 248-270 (2008) - [c19]Marek Kwiatkowski, Ian Stark:
The Continuous pi-Calculus: A Process Algebra for Biochemical Modelling. CMSB 2008: 103-122 - 2007
- [c18]David Aspinall, Patrick Maier, Ian Stark:
Safety Guarantees from Explicit Resource Management. FMCO 2007: 52-71 - [c17]David Aspinall, Patrick Maier, Ian Stark:
Monitoring External Resources in Java MIDP. REM@ESORICS 2007: 17-30 - 2006
- [c16]Gilles Barthe, Lennart Beringer, Pierre Crégut, Benjamin Grégoire, Martin Hofmann, Peter Müller, Erik Poll, Germán Puebla, Ian Stark, Eric Vétillard:
MOBIUS: Mobility, Ubiquity, Security. TGC 2006: 10-29 - 2005
- [c15]Ian Stark:
Free-Algebra Models for the pi-Calculus. FoSSaCS 2005: 155-169 - [c14]Alex Blewitt, Alan Bundy, Ian Stark:
Automatic verification of design patterns in Java. ASE 2005: 224-232 - [c13]Donald Sannella, Martin Hofmann, David Aspinall, Stephen Gilmore, Ian Stark, Lennart Beringer, Hans-Wolfgang Loidl, Kenneth MacKenzie, Alberto Momigliano, Olha Shkaravska:
Mobile Resource Guarantees (project evaluation paper). Trends in Functional Programming 2005: 211-226 - [c12]Sam Lindley, Ian Stark:
Reducibility and TT-Lifting for Computation Types. TLCA 2005: 262-277 - 2004
- [c11]David Aspinall, Stephen Gilmore, Martin Hofmann, Donald Sannella, Ian Stark:
Mobile Resource Guarantees for Smart Devices. CASSIS 2004: 1-26 - [c10]Ulrich Schöpp, Ian Stark:
A Dependent Type Theory with Names and Binding. CSL 2004: 235-249 - [c9]Samson Abramsky, Dan R. Ghica, Andrzej S. Murawski, C.-H. Luke Ong, Ian David Bede Stark:
Nominal Games and Full Abstraction for the Nu-Calculus. LICS 2004: 150-159 - 2003
- [c8]Lennart Beringer, Kenneth MacKenzie, Ian Stark:
Grail: a functional form for imperative mobile code. FGC 2003: 3-23 - 2001
- [c7]Alex Blewitt, Alan Bundy, Ian Stark:
Automatic Verification of Java Design Patterns. ASE 2001: 324-327 - [c6]Tom Chothia, Ian Stark:
Encoding Distributed Areas and Local Communication into the pi-Calculus. EXPRESS 2001: 101-119 - 2000
- [c5]Tom Chothia, Ian Stark:
A Distributed Pi-Calculus with Local Areas of Communication. HLCL 2000: 1-16
1990 – 1999
- 1998
- [j2]Ian Stark:
Names, Equations, Relations: Practical Ways to Reason About New. Fundam. Informaticae 33(4): 369-396 (1998) - 1997
- [c4]Gian Luca Cattani, Ian Stark, Glynn Winskel:
Presheaf Models for the pi-Calculus. Category Theory and Computer Science 1997: 106-126 - [c3]Ian Stark:
Names, Equations, Relations: Practical Ways to Reason about new. TLCA 1997: 336-353 - 1996
- [j1]Ian Stark:
Categorical Models for Local Names. LISP Symb. Comput. 9(1): 77-107 (1996) - [c2]Ian Stark:
A Fully Abstract Domain Model for the pi-Calculus. LICS 1996: 36-42 - 1994
- [b1]Ian David Bede Stark:
Names and higher-order functions. University of Cambridge, UK, 1994 - 1993
- [c1]Andrew M. Pitts, Ian David Bede Stark:
Observable Properties of Higher Order Functions that Dynamically Create Local Names, or What's new? MFCS 1993: 122-141
Coauthor Index
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last updated on 2024-08-10 01:23 CEST by the dblp team
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