package frama-c
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Platform dedicated to the analysis of source code written in C
Install
dune-project
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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SSylvain Chiron
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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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BBenjamin Jorge
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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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KKilyan Le Gallic
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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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CCécile Ruet-Cros
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JJulien Signoles
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FFabien Siron
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NNicolas Stouls
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HHugo Thievenaz
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KKostyantyn Vorobyov
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BBoris Yakobowski
Maintainers
Sources
frama-c-32.0-beta-Germanium.tar.gz
sha256=868d57ef8007fe6c0836cd151d8c294003af34aa678285eff9547662cad36aa3
doc/src/frama-c-e-acsl.core/main.ml.html
Source file main.ml
1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167(**************************************************************************) (* *) (* SPDX-License-Identifier LGPL-2.1 *) (* Copyright (C) *) (* CEA (Commissariat à l'énergie atomique et aux énergies alternatives) *) (* *) (**************************************************************************) module Resulting_projects = State_builder.Hashtbl (Datatype.String.Hashtbl) (Project.Datatype) (struct let name = "E-ACSL resulting projects" let size = 7 let dependencies = Ast.self :: Options.parameter_states end) let generate_code = Resulting_projects.memo (fun name -> Options.feedback "beginning translation."; Temporal.enable (Options.Temporal_validity.get ()); Options.setup (); (* slightly more efficient to copy the project before computing the AST if it is not yet computed *) let rtl_prj_name = Options.Project_name.get () ^ " RTL" in let rtl_prj = Project.create_by_copy ~last:false rtl_prj_name in (* force AST computation before copying the project it belongs to *) Ast.compute (); let copied_prj = Project.create_by_copy ~last:true name in Project.on copied_prj (fun () -> (* preparation of the AST does not concern the E-ACSL RTL: do it first *) Prepare_ast.prepare (); Memory_tracking.SpecialPointers.initialize (); Rtl.link rtl_prj; (* the E-ACSL type system ensures the soundness of the generated arithmetic operations. Therefore, deactivate the corresponding options in order to prevent RTE to generate spurious alarms. *) let signed = Kernel.SignedOverflow.get () in let unsigned = Kernel.UnsignedOverflow.get () in (* we do know that setting these flags does not modify the program's semantics: using their unsafe variants is thus safe and preserve all emitted property statuses. *) Kernel.SignedOverflow.unsafe_set false; Kernel.UnsignedOverflow.unsafe_set false; let finally () = Kernel.SignedOverflow.unsafe_set signed; Kernel.UnsignedOverflow.unsafe_set unsigned in Fun.protect ~finally (fun () -> Gmp_types.init (); Analyses.preprocess (); Injector.inject ()) ; (* remove the RTE's results computed from E-ACSL: they are partial and associated with the wrong kernel function (the one of the old project). *) (* [TODO] what if RTE was already computed? To be fixed when redoing the RTE management system *) let selection = State_selection.union (Rte.get_state_selection_with_dependencies ()) (State_selection.with_dependencies Options.Run.self) in Project.clear ~selection ~project:copied_prj (); Resulting_projects.mark_as_computed ()) (); if not (Options.debug_atleast 1) then Project.remove ~project:rtl_prj (); Options.feedback "translation done in project \"%s\"." (Options.Project_name.get ()); copied_prj) let generate_code = Dynamic.register ~plugin:"E_ACSL" "generate_code" (Datatype.func Datatype.string Project.ty) generate_code (* The Frama-C standard library contains specific built-in variables prefixed by "__fc_" and declared as extern: they prevent the generated code to be linked. Some are used to represent internal states of the specifications and should not be printed. Others are used as targets of standard library macros like stdout or errno and in that case the original macro should be printed instead. Moreover, the builtins for VLA allocation and deallocation are specific to Frama-C. This printer reprint the original builtins (or nothing for the deallocation). TODO: could be done by the Frama-C default printer at some points, but since the transformation is very specific to E-ACSL it should probably be configurable. *) let change_printer = (* not projectified on purpose: this printer change is common to each project. *) let first = ref true in fun () -> if !first then begin first := false; let module Printer_class(X: Printer.PrinterClass) = struct class printer = object inherit X.printer as super method !varinfo fmt vi = if Functions.Libc.is_vla_alloc_name vi.Cil_types.vname then (* Replace VLA allocation with calls to [__builtin_alloca] *) Format.fprintf fmt "%s" Functions.Libc.actual_alloca else let replacement = Ast_attributes.find_fc_stdlib_extern_replacement vi.vattr in match replacement with | Some replacement -> (* The varinfo is replacing a libc macro, print the replaced name. *) Format.pp_print_string fmt replacement | None -> (* Otherwise use the original printer *) super#varinfo fmt vi method !instr fmt i = match i with | Call(_, fct, _, _) when Functions.Libc.is_vla_free fct -> (* Nothing to print: VLA deallocation is done automatically when leaving the scope *) Format.fprintf fmt "/* "; super#instr fmt i; Format.fprintf fmt " */" | _ -> super#instr fmt i method !global fmt g = let is_vla_builtin vi = Functions.Libc.is_vla_alloc_name vi.Cil_types.vname || Functions.Libc.is_vla_free_name vi.Cil_types.vname in let is_fc_internal (vi : Cil_types.varinfo) = vi.vstorage == Cil_types.Extern && Ast_attributes.(contains fc_stdlib_internal vi.vattr) in match g with | GFunDecl (_, vi, _) when is_vla_builtin vi -> (* Nothing to print: the VLA builtins don't have an original libc version. *) () | GFunDecl (_, vi, _) | GVarDecl (vi, _) when is_fc_internal vi -> (* Do not print definitions internal to Frama-C's libc. *) () | _ -> super#global fmt g end end in Printer.update_printer (module Printer_class: Printer.PrinterExtension) end let main () = if Options.Run.get () then begin change_printer (); ignore (generate_code (Options.Project_name.get ())); end let () = Boot.Main.extend main
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