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» System Description: LEO - A Higher-Order Theorem Prover
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KBSE
2005
IEEE
13 years 10 months ago
Prufrock: a framework for constructing polytypic theorem provers
Current formal software engineering methodologies provide a vast array of languages for specifying correctness properties, as well as a wide assortment automated tools that aid in...
Justin Ward, Garrin Kimmell, Perry Alexander
TC
2010
13 years 3 months ago
Formal Reliability Analysis Using Theorem Proving
—Reliability analysis has become a tool of fundamental importance to virtually all electrical and computer engineers because of the extensive usage of hardware systems in safety ...
Osman Hasan, Sofiène Tahar, Naeem Abbasi
ICECCS
2007
IEEE
120views Hardware» more  ICECCS 2007»
13 years 9 months ago
Verifying the CICS File Control API with Z/Eves: An Experiment in the Verified Software Repository
Parts of the CICS transaction processing system were modelled formally in the 1980s in a collaborative project between IBM Hursley Park and Oxford University Computing Laboratory....
Leo Freitas, Konstantinos Mokos, Jim Woodcock
CADE
2007
Springer
14 years 5 months ago
System Description: E-KRHyper
The E-KRHyper system is a model generator and theorem prover for first-order logic with equality. It implements the new E-hyper tableau calculus, which integrates a superposition-b...
Björn Pelzer, Christoph Wernhard
TPHOL
2009
IEEE
13 years 11 months ago
The HOL-Omega Logic
A new logic is posited for the widely used HOL theorem prover, as an extension of the existing higher order logic of the HOL4 system. The logic is extended to three levels, adding ...
Peter V. Homeier