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(*
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* Copyright (c) 2013 - present Facebook, Inc.
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* All rights reserved.
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*
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* This source code is licensed under the BSD style license found in the
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* LICENSE file in the root directory of this source tree. An additional grant
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* of patent rights can be found in the PATENTS file in the same directory.
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*)
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(** Methods for creating a procdesc from a method or function declaration *)
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(** and for resolving a method call and finding the right callee *)
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open Utils
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open CFrontend_utils
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open CContext
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module L = Logging
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(** When the methoc call is MCStatic, means that it is a class method. *)
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(** When it is MCVirtual, it means that it is an instance method and that *)
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(** the method to be called will be determined at runtime. If it is MCNoVirtual *)
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(** it means that it is an instance method but that the method to be called will *)
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(** be determined at compile time *)
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type method_call_type =
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| MCVirtual
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| MCNoVirtual
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| MCStatic
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let mk_procname_from_function name type_name =
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let type_name_crc = CRC.crc16 type_name in
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Procname.mangled_c_fun name type_name_crc
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let mk_procname_from_method class_name method_name =
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Procname.mangled_c_method class_name method_name None
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let rec resolve_method_class tenv class_name method_name =
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let type_name = Sil.TN_csu (Sil.Class, class_name) in
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match Sil.tenv_lookup tenv type_name with
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| Some (Sil.Tstruct (_, _, Sil.Class, cls, super_classes, methods, iann)) ->
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Some type_name
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| _ -> None
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let resolve_method tenv class_name method_name =
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let class_name_mangled = Mangled.from_string class_name in
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match resolve_method_class tenv class_name_mangled method_name with
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| Some (Sil.TN_csu (Sil.Class, class_name)) ->
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let class_method_name = mk_procname_from_method (Mangled.to_string class_name) method_name in
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(try let ms = CMethod_signature.find class_method_name in
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Some ms
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with Not_found -> None)
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| _ -> None
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let get_superclass_curr_class context =
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let retrive_super cname super_opt =
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let iname = Sil.TN_csu (Sil.Class, Mangled.from_string cname) in
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Printing.log_out "Checking for superclass = '%s'\n\n%!" (Sil.typename_to_string iname);
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match Sil.tenv_lookup (CContext.get_tenv context) iname with
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| Some Sil.Tstruct(_, _, _, _, (_, super_name):: _, _, _) ->
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Mangled.to_string super_name
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| _ ->
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Printing.log_err "NOT FOUND superclass = '%s'\n\n%!" (Sil.typename_to_string iname);
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(match super_opt with
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| Some super -> super
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| _ -> assert false) in
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match CContext.get_curr_class context with
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| CContext.ContextCls (cname, super_opt, _) ->
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retrive_super cname super_opt
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| CContext.ContextCategory (_, cls) ->
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retrive_super cls None
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| CContext.ContextNoCls
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| CContext.ContextProtocol _ -> assert false
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let get_class_selector_instance context obj_c_message_expr_info act_params =
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let selector = obj_c_message_expr_info.Clang_ast_t.omei_selector in
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match obj_c_message_expr_info.Clang_ast_t.omei_receiver_kind with
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| `Class qt -> (CTypes.get_type qt, selector, MCStatic)
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| `Instance ->
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(match act_params with
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| (instance_obj, Sil.Tptr(t, _)):: _
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| (instance_obj, t):: _ ->
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(CTypes.classname_of_type t, selector, MCVirtual)
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| _ -> assert false)
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| `SuperInstance ->
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let superclass = get_superclass_curr_class context in
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(superclass, selector, MCNoVirtual)
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| `SuperClass ->
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let superclass = get_superclass_curr_class context in
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(superclass, selector, MCStatic)
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let get_formal_parameters tenv ms =
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let rec defined_parameters pl =
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match pl with
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| [] -> []
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| (name, raw_type, _):: pl' ->
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let qt =
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if (name = CFrontend_config.self && CMethod_signature.ms_is_instance ms) then
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(Ast_expressions.create_pointer_type raw_type)
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else Ast_expressions.create_qual_type raw_type in
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let typ = CTypes_decl.qual_type_to_sil_type tenv qt in
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(name, typ):: defined_parameters pl' in
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defined_parameters (CMethod_signature.ms_get_args ms)
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(* Returns a list of captured variables. *)
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(* In order to get the right mangled name we search among *)
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(* the local variables of the defining function and it's formals.*)
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let captured_vars_from_block_info context cvl =
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let formal2captured (s, t) =
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(Mangled.from_string s, t, false) in
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let find lv n =
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try
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list_find (fun (n', _, _) -> Mangled.to_string n' = n) lv
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with Not_found -> Printing.log_err "Trying to find variable %s@." n; assert false in
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let rec f cvl' =
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match cvl' with
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| [] -> []
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| cv:: cvl'' ->
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(match cv.Clang_ast_t.bcv_variable with
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| Some dr ->
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(match dr.Clang_ast_t.dr_name, dr.Clang_ast_t.dr_qual_type with
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| Some name_info, _ ->
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let n = name_info.Clang_ast_t.ni_name in
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if n = CFrontend_config.self && not context.is_instance then []
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else
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(let procdesc_formals = Cfg.Procdesc.get_formals context.procdesc in
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(Printing.log_err "formals are %s@." (Utils.list_to_string (fun (x, _) -> x) procdesc_formals));
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let formals = list_map formal2captured procdesc_formals in
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[find (context.local_vars @ formals) n])
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| _ -> assert false)
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| None -> []) :: f cvl'' in
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list_flatten (f cvl)
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let get_return_type tenv ms =
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let qt = CMethod_signature.ms_get_ret_type ms in
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CTypes_decl.qual_type_to_sil_type tenv
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(Ast_expressions.create_qual_type (CTypes.get_function_return_type qt))
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let sil_func_attributes_of_attributes attrs =
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let rec do_translation acc al = match al with
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| [] -> list_rev acc
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| Clang_ast_t.SentinelAttr attribute_info:: tl ->
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let (sentinel, null_pos) = match attribute_info.Clang_ast_t.ai_parameters with
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| a:: b::[] -> (int_of_string a, int_of_string b)
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| _ -> assert false
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in
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do_translation (Sil.FA_sentinel(sentinel, null_pos):: acc) tl
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| _:: tl -> do_translation acc tl in
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do_translation [] attrs
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let should_create_procdesc cfg procname defined generated =
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match Cfg.Procdesc.find_from_name cfg procname with
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| Some prevoius_procdesc ->
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let is_defined_previous = Cfg.Procdesc.is_defined prevoius_procdesc in
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let is_generated_previous =
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(Cfg.Procdesc.get_attributes prevoius_procdesc).Sil.is_generated in
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if defined &&
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((not is_defined_previous) || (generated && is_generated_previous)) then
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(Cfg.Procdesc.remove cfg (Cfg.Procdesc.get_proc_name prevoius_procdesc) true;
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true)
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else false
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| None -> true
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(** Creates a procedure description. *)
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let create_local_procdesc cfg tenv ms fbody captured is_objc_inst_method =
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let defined = not ((list_length fbody) == 0) in
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let procname = CMethod_signature.ms_get_name ms in
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let pname = Procname.to_string procname in
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let attributes = sil_func_attributes_of_attributes (CMethod_signature.ms_get_attributes ms) in
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let is_generated = CMethod_signature.ms_is_generated ms in
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let create_new_procdesc () =
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let formals = get_formal_parameters tenv ms in
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let captured_str = list_map (fun (s, t, _) -> (Mangled.to_string s, t)) captured in
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(* Captured variables for blocks are treated as parameters *)
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let formals = captured_str @formals in
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let source_range = CMethod_signature.ms_get_loc ms in
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Printing.log_out "\nCreating a new procdesc for function: '%s'\n@." pname;
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let loc_start = CLocation.get_sil_location_from_range source_range true in
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let loc_exit = CLocation.get_sil_location_from_range source_range false in
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let ret_type = get_return_type tenv ms in
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let captured' = list_map (fun (s, t, _) -> (s, t)) captured in
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let procdesc =
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(* This part below is a boilerplate and the following list of *)
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(* instructions should be moved in the Cfg.Procdesc module *)
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let open Cfg.Procdesc in
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let proc_attributes =
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{
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Sil.access = Sil.Default;
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Sil.exceptions = [];
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Sil.is_abstract = false;
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Sil.is_bridge_method = false;
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Sil.is_objc_instance_method = is_objc_inst_method;
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Sil.is_synthetic_method = false;
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Sil.language = Sil.C_CPP;
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Sil.func_attributes = attributes;
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Sil.method_annotation = Sil.method_annotation_empty;
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Sil.is_generated = is_generated;
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} in
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create {
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cfg = cfg;
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name = procname;
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is_defined = defined;
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ret_type = ret_type;
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formals = formals;
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locals = [];
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captured = captured';
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loc = loc_start;
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proc_attributes = proc_attributes;
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} in
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if defined then
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(if !Config.arc_mode then
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Cfg.Procdesc.set_flag procdesc Mleak_buckets.objc_arc_flag "true";
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let start_kind = Cfg.Node.Start_node procdesc in
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let start_node = Cfg.Node.create cfg loc_start start_kind [] procdesc [] in
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let exit_kind = Cfg.Node.Exit_node procdesc in
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let exit_node = Cfg.Node.create cfg loc_exit exit_kind [] procdesc [] in
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Cfg.Procdesc.set_start_node procdesc start_node;
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Cfg.Procdesc.set_exit_node procdesc exit_node) in
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let generated = CMethod_signature.ms_is_generated ms in
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if should_create_procdesc cfg procname defined generated then
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(create_new_procdesc (); true)
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else false
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(** Create a procdesc for objc methods whose signature cannot be found. *)
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let create_external_procdesc cfg procname is_objc_inst_method type_opt =
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match Cfg.Procdesc.find_from_name cfg procname with
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| Some _ -> ()
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| None ->
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let ret_type, formals =
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(match type_opt with
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| Some (ret_type, arg_types) ->
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ret_type, list_map (fun typ -> ("x", typ)) arg_types
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| None -> Sil.Tvoid, []) in
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let loc = Sil.loc_none in
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let _ =
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let open Cfg.Procdesc in
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let proc_attributes =
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{
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Sil.access = Sil.Default;
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Sil.exceptions = [];
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Sil.is_abstract = false;
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Sil.is_bridge_method = false;
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Sil.is_objc_instance_method = is_objc_inst_method;
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Sil.is_synthetic_method = false;
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Sil.language = Sil.C_CPP;
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Sil.func_attributes = [];
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Sil.method_annotation = Sil.method_annotation_empty;
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Sil.is_generated = false;
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} in
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create {
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cfg = cfg;
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name = procname;
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is_defined = false;
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ret_type = ret_type;
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formals = formals;
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locals = [];
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captured = [];
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loc = loc;
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proc_attributes = proc_attributes;
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} in
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()
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let instance_to_method_call_type instance =
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if instance then MCVirtual
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else MCStatic
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