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/qed/idxset.ml.html
Source file idxset.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). *) (* *) (**************************************************************************) module type S = sig type elt type t val empty : t val is_empty : t -> bool val mem : elt -> t -> bool val find : elt -> t -> elt val add : elt -> t -> t val singleton : elt -> t val remove : elt -> t -> t val union : t -> t -> t val inter : t -> t -> t val diff : t -> t -> t val compare : t -> t -> int val equal : t -> t -> bool val subset : t -> t -> bool val iter : (elt -> unit) -> t -> unit val fold : (elt -> 'a -> 'a) -> t -> 'a -> 'a val for_all : (elt -> bool) -> t -> bool val exists : (elt -> bool) -> t -> bool val filter : (elt -> bool) -> t -> t val partition : (elt -> bool) -> t -> t * t val cardinal : t -> int val elements : t -> elt list val map : (elt -> elt) -> t -> t val mapf : (elt -> elt option) -> t -> t val intersect : t -> t -> bool end module type IndexedElements = sig type t val id : t -> int (* unique per t *) end module Make(E : IndexedElements) = struct type t = E.t Intmap.t type elt = E.t let empty = Intmap.empty let singleton x = Intmap.singleton (E.id x) x (* good sharing *) let add x = Intmap.add (E.id x) x (* good sharing *) let remove x = Intmap.remove (E.id x) let is_empty = Intmap.is_empty let mem x m = Intmap.mem (E.id x) m let find x m = Intmap.find (E.id x) m let cardinal = Intmap.size let compare m1 m2 = Intmap.compare (fun _ _ -> 0) m1 m2 let equal m1 m2 = Intmap.equal (fun _ _ -> true) m1 m2 let _keep _ x _ = x let _keepq _ x _ = Some x let _same _ _ _ = true (* good sharing *) let union m1 m2 = Intmap.union _keep m1 m2 (* good sharing *) let inter m1 m2 = Intmap.interq _keepq m1 m2 (* good sharing *) let diff m1 m2 = Intmap.diffq _keepq m1 m2 let subset m1 m2 = Intmap.subset _same m1 m2 let intersect m1 m2 = Intmap.intersectf _same m1 m2 (* increasing order on id *) let iter f m = Intmap.iteri (fun _i x -> f x) m (* increasing order on id *) let fold f m i = Intmap.foldi (fun _i x e -> f x e) m i (* good sharing *) let filter f m = Intmap.filter (fun _i x -> f x) m (* good sharing *) let partition f m = Intmap.partition (fun _i x -> f x) m let for_all f m = Intmap.for_all (fun _i x -> f x) m let exists f m = Intmap.exists (fun _i x -> f x) m (* increasing order on id *) let elements m = Intmap.mapl (fun _i x -> x) m (* good sharing *) let mapf f m = Intmap.mapq (fun _i x -> f x) m (* good sharing *) let map f m = Intmap.mapq (fun _i x -> Some (f x)) m end
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