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(*
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* Copyright (c) 2013 - Facebook.
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* All rights reserved.
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*)
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(** Module for utility functions for the whole frontend. Includes functions for printing, *)
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(** for transformations of ast nodes and general utility functions such as functions on lists *)
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open Utils
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open Clang_ast_t
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module L = Logging
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module F = Format
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module Printing =
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struct
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let log_out fmt =
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let pp = if !CFrontend_config.debug_mode then Format.fprintf else Format.ifprintf in
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pp Format.std_formatter fmt
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let log_err fmt =
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let pp = if !CFrontend_config.debug_mode then Format.fprintf else Format.ifprintf in
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pp Format.err_formatter fmt
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let log_stats fmt =
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let pp =
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if !CFrontend_config.stats_mode || !CFrontend_config.debug_mode
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then Format.fprintf else Format.ifprintf in
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pp Format.std_formatter fmt
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let print_tenv tenv =
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Sil.tenv_iter (fun typname typ ->
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match typname with
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| Sil.TN_csu (Sil.Class, _) | Sil.TN_csu (Sil.Protocol, _) ->
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(match typ with (Sil.Tstruct (fields, static_fields, _, cls, super_classes, methods, iann)) ->
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(print_endline (
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(Sil.typename_to_string typname)^"\n"^
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"---> superclass and protocols "^(list_to_string (fun (csu, x) ->
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let nsu = Sil.TN_csu (csu, x) in
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"\t"^(Sil.typename_to_string nsu)^"\n") super_classes)^
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"---> methods "^(list_to_string (fun x ->"\t"^(Procname.to_string x)^"\n") methods)^" "^
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"\t---> static fields "^(list_to_string (fun (fieldname, typ, _) ->
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"\t "^(Ident.fieldname_to_string fieldname)^" "^
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(Sil.typ_to_string typ)^"\n") static_fields)^
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"\t---> fields "^(list_to_string (fun (fieldname, typ, _) ->
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"\t "^(Ident.fieldname_to_string fieldname)^" "^
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(Sil.typ_to_string typ)^"\n") fields
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)
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)
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)
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| _ -> ())
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| _ -> ()
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) tenv
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let print_tenv_struct_unions tenv =
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Sil.tenv_iter (fun typname typ ->
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match typname with
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| Sil.TN_csu (Sil.Struct, _) | Sil.TN_csu (Sil.Union, _) ->
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(match typ with
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| (Sil.Tstruct (fields, static_fields, _, cls, super_classes, methods, iann)) ->
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(print_endline (
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(Sil.typename_to_string typname)^"\n"^
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"\t---> fields "^(list_to_string (fun (fieldname, typ, _) ->
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match typ with
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| Sil.Tvar tname -> "tvar"^(Sil.typename_to_string tname)
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| Sil.Tstruct (_, _, _, _, _, _, _) | _ ->
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"\t struct "^(Ident.fieldname_to_string fieldname)^" "^
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(Sil.typ_to_string typ)^"\n") fields
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)
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)
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)
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| _ -> ())
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| Sil.TN_typedef typname ->
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print_endline ((Mangled.to_string typname)^"-->"^(Sil.typ_to_string typ))
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| _ -> ()
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) tenv
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let print_procedures cfg =
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let procs = Cfg.get_all_procs cfg in
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print_endline
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(list_to_string (fun pdesc ->
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let pname = Cfg.Procdesc.get_proc_name pdesc in
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"name> "^
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(Procname.to_string pname) ^
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" defined? " ^ (string_of_bool (Cfg.Procdesc.is_defined pdesc)) ^ "\n")
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procs)
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let print_failure_info pointer =
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L.err "AST Element> %s IN FILE> %s @.@." pointer !CFrontend_config.json
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let print_nodes nodes =
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list_iter (fun node -> print_endline (Cfg.Node.get_description Utils.pe_text node)) nodes
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let instrs_to_string instrs =
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let pp fmt () = Format.fprintf fmt "%a" (Sil.pp_instr_list Utils.pe_text) instrs in
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pp_to_string pp ()
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end
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module Ast_utils =
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struct
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let string_of_decl decl =
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let name = Clang_ast_proj.get_decl_kind_string decl in
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let info = Clang_ast_proj.get_decl_tuple decl in
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"<\"" ^ name ^ "\"> '" ^ info.Clang_ast_t.di_pointer ^ "'"
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let string_of_unary_operator_kind = function
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| `PostInc -> "PostInc"
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| `PostDec -> "PostDec"
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| `PreInc -> "PreInc"
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| `PreDec -> "PreDec"
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| `AddrOf -> "AddrOf"
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| `Deref -> "Deref"
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| `Plus -> "Plus"
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| `Minus -> "Minus"
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| `Not -> "Not"
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| `LNot -> "LNot"
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| `Real -> "Real"
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| `Imag -> "Imag"
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| `Extension -> "Extension"
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let string_of_stmt stmt =
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let name = Clang_ast_proj.get_stmt_kind_string stmt in
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let info, _ = Clang_ast_proj.get_stmt_tuple stmt in
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"<\"" ^ name ^ "\"> '" ^ info.Clang_ast_t.si_pointer ^ "'"
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let get_stmts_from_stmt stmt =
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match stmt with
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| OpaqueValueExpr(_, lstmt, _, opaque_value_expr_info) ->
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(match opaque_value_expr_info.Clang_ast_t.ovei_source_expr with
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| Some stmt -> lstmt@[stmt]
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| _ -> lstmt)
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(* given that this has not been translated, looking up for variables *)
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(* inside leads to inconsistencies *)
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| ObjCAtCatchStmt (stmt_info, stmt_list, obj_c_message_expr_kind) ->
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[]
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| _ -> snd (Clang_ast_proj.get_stmt_tuple stmt)
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let namespace_to_string namespace =
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match namespace with
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| None -> ""
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| Some ns when ns ="" -> ""
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| Some ns -> ns^"::"
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let property_name property_impl_decl_info =
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let no_property_name = "WARNING_NO_PROPERTY_NAME" in
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match property_impl_decl_info.Clang_ast_t.opidi_property_decl with
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| Some decl_ref ->
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(match decl_ref.Clang_ast_t.dr_name with
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| Some n -> n.Clang_ast_t.ni_name
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| _ -> no_property_name)
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| None -> no_property_name
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let property_attribute_compare att1 att2 =
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match att1, att2 with
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`Readonly, `Readonly -> 0
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| `Readonly, _ -> -1
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| _, `Readonly -> 1
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| `Assign, `Assign -> 0
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| `Assign, _ -> -1
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| _, `Assign -> 1
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| `Readwrite, `Readwrite -> 0
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| `Readwrite, _ -> -1
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| _, `Readwrite -> 1
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| `Retain, `Retain -> 0
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| `Retain, _ -> -1
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| _, `Retain -> 1
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| `Copy, `Copy -> 0
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| `Copy, _ -> -1
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| _, `Copy -> 1
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| `Nonatomic, `Nonatomic -> 0
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| `Nonatomic, _ -> -1
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| _, `Nonatomic -> 1
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| `Atomic, `Atomic -> 0
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| `Atomic, _ -> 1
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| _, `Atomic -> 1
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| `Weak, `Weak -> 0
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| `Weak, _ -> -1
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| _, `Weak -> 1
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| `Strong, `Strong -> 0
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| `Strong, _ -> -1
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| _, `Strong -> 1
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| `Unsafe_unretained, `Unsafe_unretained -> 0
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| `Unsafe_unretained, _ -> -1
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| _, `Unsafe_unretained -> 1
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| `Getter _, `Getter _ -> 0
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| `Getter _, _ -> -1
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| _, `Getter _ -> 1
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| `Setter _, `Setter _ -> 0
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let property_attribute_eq att1 att2 =
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property_attribute_compare att1 att2 = 0
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let get_memory_management_attributes () =
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[`Assign; `Retain; `Copy; `Weak; `Strong; `Unsafe_unretained]
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let is_retain attribute_opt =
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match attribute_opt with
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| Some attribute ->
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attribute = `Retain || attribute = `Strong
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| _ -> false
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let is_copy attribute_opt =
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match attribute_opt with
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| Some attribute ->
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attribute = `Copy
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| _ -> false
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let name_opt_of_name_info_opt name_info_opt =
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match name_info_opt with
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| Some name_info -> Some name_info.Clang_ast_t.ni_name
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| None -> None
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let rec getter_attribute_opt attributes =
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match attributes with
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| [] -> None
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| attr:: rest ->
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match attr with
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| `Getter getter -> name_opt_of_name_info_opt getter.Clang_ast_t.dr_name
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| _ -> (getter_attribute_opt rest)
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let rec setter_attribute_opt attributes =
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match attributes with
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| [] -> None
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| attr:: rest ->
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match attr with
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| `Setter setter -> name_opt_of_name_info_opt setter.Clang_ast_t.dr_name
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| _ -> (setter_attribute_opt rest)
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(*TODO: take the attributes into account too. To be done after we get the attribute's arguments. *)
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let is_type_nonnull qt attributes =
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Utils.string_is_prefix CFrontend_config.nonnull_attribute qt.Clang_ast_t.qt_raw
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let pointer_counter = ref 0
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let get_fresh_pointer () =
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pointer_counter := !pointer_counter + 1;
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CFrontend_config.pointer_prefix^(string_of_int (!pointer_counter))
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let get_invalid_pointer () =
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CFrontend_config.pointer_prefix^("INVALID")
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let type_from_unary_expr_or_type_trait_expr_info info =
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match info.uttei_qual_type with
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| Some qt -> Some qt
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| None -> None
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end
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(* Global counter for anonymous block*)
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let block_counter = ref 0
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(* Returns a fresh index for a new anonymous block *)
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let get_fresh_block_index () =
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block_counter := !block_counter +1;
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!block_counter
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module General_utils =
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struct
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let rec swap_elements_list l =
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match l with
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| el1:: el2:: rest ->
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el2:: el1:: (swap_elements_list rest)
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| [] -> []
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| _ -> assert false
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let rec string_from_list l =
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match l with
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| [] -> ""
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| [item] -> item
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| item:: l' -> item^" "^(string_from_list l')
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let get_fun_body fdecl_info = fdecl_info.Clang_ast_t.fdi_body
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let rec append_no_duplicates eq list1 list2 =
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match list2 with
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| el:: rest2 ->
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if (list_mem eq el list1) then
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(append_no_duplicates eq list1 rest2)
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else (append_no_duplicates eq list1 rest2)@[el]
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| [] -> list1
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let append_no_duplicates_csu list1 list2 =
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append_no_duplicates Sil.csu_name_equal list1 list2
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let append_no_duplicates_methods list1 list2 =
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append_no_duplicates Procname.equal list1 list2
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let append_no_duplicated_vars list1 list2 =
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let eq (m1, t1) (m2, t2) = (Mangled.equal m1 m2) && (Sil.typ_equal t1 t2) in
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append_no_duplicates eq list1 list2
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let append_no_duplicated_pvars list1 list2 =
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let eq (e1, t1) (e2, t2) = (Sil.exp_equal e1 e2) && (Sil.typ_equal t1 t2) in
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append_no_duplicates eq list1 list2
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let append_no_duplicates_fields list1 list2 =
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let field_eq (n1, t1, a1) (n2, t2, a2) =
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match Ident.fieldname_equal n1 n2, Sil.typ_equal t1 t2, Sil.item_annotation_compare a1 a2 with
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| true, true, _ -> true
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| _, _, _ -> false in
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append_no_duplicates field_eq list1 list2
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let sort_fields fields =
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let compare (name1, _, _) (name2, _, _) =
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Ident.fieldname_compare name1 name2 in
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list_sort compare fields
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let rec collect_list_tuples l (a, a1, b, c, d) =
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match l with
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| [] -> (a, a1, b, c, d)
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| (a', a1', b', c', d'):: l' -> collect_list_tuples l' (a@a', a1@a1', b@b', c@c', d@d')
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let is_static_var var_decl_info =
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match var_decl_info.Clang_ast_t.vdi_storage_class with
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| Some sc -> sc = CFrontend_config.static
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| _ -> false
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let block_procname_with_index defining_proc i =
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Config.anonymous_block_prefix^(Procname.to_string defining_proc)^Config.anonymous_block_num_sep^(string_of_int i)
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(* Makes a fresh name for a block defined inside the defining procedure.*)
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(* It updates the global block_counter *)
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let mk_fresh_block_procname defining_proc =
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let name = block_procname_with_index defining_proc (get_fresh_block_index ()) in
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Procname.mangled_objc_block name
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(* Returns the next fresh name for a block defined inside the defining procedure *)
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(* It does not update the global block_counter *)
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let get_next_block_pvar defining_proc =
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let name = block_procname_with_index defining_proc (!block_counter +1) in
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Sil.mk_pvar (Mangled.from_string (CFrontend_config.temp_var^"_"^name)) defining_proc
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(* Reset block counter *)
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let reset_block_counter () =
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block_counter := 0
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let mk_function_decl_info_from_block block_decl_info =
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{
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Clang_ast_t.fdi_storage_class = None;
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Clang_ast_t.fdi_is_inline = true; (* This value should not matter as we don't use it*)
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Clang_ast_t.fdi_is_virtual = false; (* This value should not matter as we don't use it*)
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Clang_ast_t.fdi_is_module_private = true; (* This value should not matter as we don't use it*)
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Clang_ast_t.fdi_is_pure = false; (* This value should not matter as we don't use it*)
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Clang_ast_t.fdi_is_delete_as_written = false; (* This value should not matter as we don't use it*)
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Clang_ast_t.fdi_decls_in_prototype_scope =[];
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Clang_ast_t.fdi_parameters = block_decl_info.Clang_ast_t.bdi_parameters;
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Clang_ast_t.fdi_cxx_ctor_initializers = [];
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Clang_ast_t.fdi_body = block_decl_info.Clang_ast_t.bdi_body;
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}
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let rec zip xs ys =
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match xs, ys with
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| [], _
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| _, [] -> []
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| x :: xs, y :: ys -> (x, y) :: zip xs ys
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let list_range i j =
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let rec aux n acc =
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if n < i then acc else aux (n -1) (n :: acc)
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in aux j [] ;;
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let replicate n el = list_map (fun i -> el) (list_range 0 (n -1))
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end
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