package frama-c
Platform dedicated to the analysis of source code written in C
Install
Dune Dependency
Authors
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MMichele Alberti
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TThibaud Antignac
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GGergö Barany
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PPatrick Baudin
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NNicolas Bellec
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TThibaut Benjamin
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AAllan Blanchard
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LLionel Blatter
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FFrançois Bobot
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RRichard Bonichon
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VVincent Botbol
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QQuentin Bouillaguet
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DDavid Bühler
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ZZakaria Chihani
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LLoïc Correnson
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JJulien Crétin
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PPascal Cuoq
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ZZaynah Dargaye
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BBasile Desloges
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JJean-Christophe Filliâtre
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PPhilippe Herrmann
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MMaxime Jacquemin
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FFlorent Kirchner
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AAlexander Kogtenkov
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RRemi Lazarini
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TTristan Le Gall
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JJean-Christophe Léchenet
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MMatthieu Lemerre
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DDara Ly
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DDavid Maison
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CClaude Marché
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AAndré Maroneze
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TThibault Martin
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FFonenantsoa Maurica
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MMelody Méaulle
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BBenjamin Monate
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YYannick Moy
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PPierre Nigron
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AAnne Pacalet
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VValentin Perrelle
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GGuillaume Petiot
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DDario Pinto
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VVirgile Prevosto
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AArmand Puccetti
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FFélix Ridoux
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VVirgile Robles
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JJan Rochel
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MMuriel Roger
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JJulien Signoles
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NNicolas Stouls
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KKostyantyn Vorobyov
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BBoris Yakobowski
Maintainers
Sources
frama-c-29.0-Copper.tar.gz
sha256=d2fbb3b8d0ff83945872e9e6fa258e934a706360e698dae3b4d5f971addf7493
doc/src/frama-c-wp.core/LogicAssigns.ml.html
Source file LogicAssigns.ml
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(**************************************************************************) (* *) (* This file is part of WP plug-in of Frama-C. *) (* *) (* Copyright (C) 2007-2024 *) (* CEA (Commissariat a l'energie atomique et aux energies *) (* alternatives) *) (* *) (* you can redistribute it and/or modify it under the terms of the GNU *) (* Lesser General Public License as published by the Free Software *) (* Foundation, version 2.1. *) (* *) (* It is distributed in the hope that it will be useful, *) (* but WITHOUT ANY WARRANTY; without even the implied warranty of *) (* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *) (* GNU Lesser General Public License for more details. *) (* *) (* See the GNU Lesser General Public License version 2.1 *) (* for more details (enclosed in the file licenses/LGPLv2.1). *) (* *) (**************************************************************************) open Sigs module Make ( M : Sigs.Model ) ( L : Sigs.LogicSemantics with module M = M ) = struct module M = M module L = L open M module D = Heap.Set (* -------------------------------------------------------------------------- *) (* --- Domain --- *) (* -------------------------------------------------------------------------- *) let dsloc obj = function | Sloc l | Sdescr(_,l,_) -> M.domain obj l | Srange(l,obj,_,_) | Sarray(l,obj,_) -> M.domain obj l let domain (r: loc Sigs.region) = List.fold_left (fun d (obj,sloc) -> D.union d (dsloc obj sloc)) D.empty r (* -------------------------------------------------------------------------- *) (* --- Assignation --- *) (* -------------------------------------------------------------------------- *) let rec assigned_seq hs s = function | [] -> Bag.concat (M.Sigma.assigned ~pre:s.pre ~post:s.post D.empty) hs | [obj,sloc] -> let eq_sloc = M.assigned s obj sloc in let hs_sloc = Bag.list (List.map Cvalues.equation eq_sloc) in let hs_sdom = M.Sigma.assigned ~pre:s.pre ~post:s.post (dsloc obj sloc) in Bag.concat (Bag.concat hs_sloc hs_sdom) hs | (obj,sloc)::tail -> let sigma = M.Sigma.havoc s.post (dsloc obj sloc) in let s_local = { pre = sigma ; post = s.post } in let s_other = { pre = s.pre ; post = sigma } in let eq_sloc = M.assigned s_local obj sloc in let hs_sloc = Bag.list (List.map Cvalues.equation eq_sloc) in assigned_seq (Bag.concat hs_sloc hs) s_other tail let apply_assigns (s:sigma sequence) (r: M.loc Sigs.region) = Bag.elements (assigned_seq Bag.empty s r) end
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