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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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open! Utils
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module F = Format
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module L = Logging
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(** Annotations. *)
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(** Method signature with annotations. *)
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type annotated_signature = {
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ret : Annot.Item.t * Typ.t; (** Annotated return type. *)
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params: (Mangled.t * Annot.Item.t * Typ.t) list (** Annotated parameters. *)
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}
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let param_equal (s1, ia1, t1) (s2, ia2, t2) =
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Mangled.equal s1 s2 &&
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Annot.Item.compare ia1 ia2 = 0 &&
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Typ.equal t1 t2
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let equal as1 as2 =
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let ia1, t1 = as1.ret
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and ia2, t2 = as2.ret in
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Annot.Item.compare ia1 ia2 = 0 &&
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Typ.equal t1 t2 &&
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IList.for_all2 param_equal as1.params as2.params
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let visibleForTesting = "com.google.common.annotations.VisibleForTesting"
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let suppressLint = "android.annotation.SuppressLint"
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let ia_iter f =
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let ann_iter (a, _) = f a in
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IList.iter ann_iter
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let ma_iter f ((ia, ial) : Annot.Method.t) =
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IList.iter (ia_iter f) (ia:: ial)
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let ma_has_annotation_with
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(ma: Annot.Method.t)
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(predicate: Annot.t -> bool): bool =
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let found = ref false in
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ma_iter
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(fun a -> if predicate a then found := true)
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ma;
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!found
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let ia_has_annotation_with
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(ia: Annot.Item.t)
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(predicate: Annot.t -> bool): bool =
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let found = ref false in
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ia_iter
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(fun a -> if predicate a then found := true)
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ia;
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!found
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(** Return true if [annot] ends with [ann_name] *)
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let annot_ends_with annot ann_name =
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let filter s =
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let sl = String.length s in
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let al = String.length ann_name in
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sl >= al && String.sub s (sl - al) al = ann_name in
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filter annot.Annot.class_name
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(** Check if there is an annotation in [ia] which ends with the given name *)
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let ia_ends_with ia ann_name =
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let found = ref false in
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ia_iter (fun a -> if annot_ends_with a ann_name then found := true) ia;
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!found
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let ia_contains ia ann_name =
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let found = ref false in
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ia_iter (fun a -> if ann_name = a.Annot.class_name then found := true) ia;
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!found
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let ia_get ia ann_name =
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let found = ref None in
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ia_iter (fun a -> if ann_name = a.Annot.class_name then found := Some a) ia;
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!found
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let ma_contains ma ann_names =
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let found = ref false in
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ma_iter (fun a ->
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if IList.exists (string_equal a.Annot.class_name) ann_names then found := true
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) ma;
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!found
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let pdesc_has_annot pdesc annot =
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ma_contains (Cfg.Procdesc.get_attributes pdesc).ProcAttributes.method_annotation [annot]
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let initializer_ = "Initializer"
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let inject = "Inject"
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let inject_view = "InjectView"
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let bind = "Bind"
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let bind_view = "BindView"
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let bind_array = "BindArray"
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let bind_bitmap = "BindBitmap"
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let bind_drawable = "BindDrawable"
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let bind_string = "BindString"
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let suppress_view_nullability = "SuppressViewNullability"
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let false_on_null = "FalseOnNull"
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let mutable_ = "Mutable"
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let nullable = "Nullable"
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let nonnull = "Nonnull"
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let on_bind = "OnBind"
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let camel_nonnull = "NonNull"
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let notnull = "NotNull"
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let present = "Present"
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let strict = "com.facebook.infer.annotation.Strict"
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let true_on_null = "TrueOnNull"
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let verify_annotation = "com.facebook.infer.annotation.Verify"
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let expensive = "Expensive"
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let performance_critical = "PerformanceCritical"
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let no_allocation = "NoAllocation"
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let ignore_allocations = "IgnoreAllocations"
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let suppress_warnings = "SuppressWarnings"
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let suppress_lint = "SuppressLint"
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let privacy_source = "PrivacySource"
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let privacy_sink = "PrivacySink"
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let integrity_source = "IntegritySource"
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let integrity_sink = "IntegritySink"
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let guarded_by = "GuardedBy"
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let thread_safe = "ThreadSafe"
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let not_thread_safe = "NotThreadSafe"
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(* we don't want it to just end with ThreadSafe, because this falls
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foul of the @NotThreadSafe annotation *)
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let ia_is_thread_safe ia =
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ia_ends_with ia thread_safe && not (ia_ends_with ia not_thread_safe)
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let ia_is_nullable ia =
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ia_ends_with ia nullable
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let ia_is_present ia =
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ia_ends_with ia present
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let ia_is_nonnull ia =
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IList.exists
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(ia_ends_with ia)
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[nonnull; notnull; camel_nonnull]
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let ia_is_false_on_null ia =
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ia_ends_with ia false_on_null
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let ia_is_true_on_null ia =
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ia_ends_with ia true_on_null
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let ia_is_initializer ia =
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ia_ends_with ia initializer_
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let field_injector_readwrite_list =
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[
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inject_view;
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bind;
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bind_view;
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bind_array;
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bind_bitmap;
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bind_drawable;
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bind_string;
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suppress_view_nullability;
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]
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let field_injector_readonly_list =
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inject
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::
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field_injector_readwrite_list
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(** Annotations for readonly injectors.
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The injector framework initializes the field but does not write null into it. *)
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let ia_is_field_injector_readonly ia =
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IList.exists
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(ia_ends_with ia)
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field_injector_readonly_list
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(** Annotations for read-write injectors.
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The injector framework initializes the field and can write null into it. *)
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let ia_is_field_injector_readwrite ia =
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IList.exists
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(ia_ends_with ia)
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field_injector_readwrite_list
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let ia_is_mutable ia =
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ia_ends_with ia mutable_
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let ia_get_strict ia =
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ia_get ia strict
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let ia_is_verify ia =
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ia_contains ia verify_annotation
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let ia_is_expensive ia =
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ia_ends_with ia expensive
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let ia_is_performance_critical ia =
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ia_ends_with ia performance_critical
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let ia_is_no_allocation ia =
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ia_ends_with ia no_allocation
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let ia_is_ignore_allocations ia =
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ia_ends_with ia ignore_allocations
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let ia_is_suppress_warnings ia =
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ia_ends_with ia suppress_warnings
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let ia_is_privacy_source ia =
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ia_ends_with ia privacy_source
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let ia_is_privacy_sink ia =
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ia_ends_with ia privacy_sink
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let ia_is_integrity_source ia =
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ia_ends_with ia integrity_source
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let ia_is_integrity_sink ia =
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ia_ends_with ia integrity_sink
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let ia_is_guarded_by ia =
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ia_ends_with ia guarded_by
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type annotation =
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| Nullable
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| Present
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let ia_is ann ia = match ann with
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| Nullable -> ia_is_nullable ia
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| Present -> ia_is_present ia
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(** Get a method signature with annotations from a proc_attributes. *)
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let get_annotated_signature proc_attributes : annotated_signature =
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let method_annotation = proc_attributes.ProcAttributes.method_annotation in
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let formals = proc_attributes.ProcAttributes.formals in
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let ret_type = proc_attributes.ProcAttributes.ret_type in
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let (ia, ial0) = method_annotation in
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let natl =
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let rec extract ial parl = match ial, parl with
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| ia :: ial', (name, typ) :: parl' ->
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(name, ia, typ) :: extract ial' parl'
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| [], (name, typ) :: parl' ->
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(name, Annot.Item.empty, typ) :: extract [] parl'
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| [], [] ->
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[]
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| _ :: _, [] ->
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assert false in
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IList.rev (extract (IList.rev ial0) (IList.rev formals)) in
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let annotated_signature = { ret = (ia, ret_type); params = natl } in
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annotated_signature
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(** Check if the annotated signature is for a wrapper of an anonymous inner class method.
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These wrappers have the same name as the original method, every type is Object, and the parameters
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are called x0, x1, x2. *)
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let annotated_signature_is_anonymous_inner_class_wrapper ann_sig proc_name =
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let check_ret (ia, t) =
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Annot.Item.is_empty ia && PatternMatch.type_is_object t in
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let x_param_found = ref false in
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let name_is_x_number name =
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let name_str = Mangled.to_string name in
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let len = String.length name_str in
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len >= 2 &&
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String.sub name_str 0 1 = "x" &&
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let s = String.sub name_str 1 (len - 1) in
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let is_int =
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try
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ignore (int_of_string s);
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x_param_found := true;
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true
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with Failure _ -> false in
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is_int in
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let check_param (name, ia, t) =
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if Mangled.to_string name = "this" then true
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else
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name_is_x_number name &&
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Annot.Item.is_empty ia &&
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PatternMatch.type_is_object t in
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Procname.java_is_anonymous_inner_class proc_name
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&& check_ret ann_sig.ret
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&& IList.for_all check_param ann_sig.params
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&& !x_param_found
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(** Check if the given parameter has a Nullable annotation in the given signature *)
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let param_is_nullable pvar ann_sig =
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IList.exists
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(fun (param, annot, _) ->
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Mangled.equal param (Pvar.get_name pvar) && ia_is_nullable annot)
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ann_sig.params
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(** Pretty print a method signature with annotations. *)
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let pp_annotated_signature proc_name fmt annotated_signature =
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let pp_ia fmt ia = if ia <> [] then F.fprintf fmt "%a " Annot.Item.pp ia in
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let pp_annotated_param fmt (p, ia, t) =
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F.fprintf fmt " %a%a %a" pp_ia ia (Typ.pp_full pe_text) t Mangled.pp p in
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let ia, ret_type = annotated_signature.ret in
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F.fprintf fmt "%a%a %s (%a )"
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pp_ia ia
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(Typ.pp_full pe_text) ret_type
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(Procname.to_simplified_string proc_name)
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(pp_comma_seq pp_annotated_param) annotated_signature.params
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let mk_ann_str s = { Annot.class_name = s; parameters = [] }
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let mk_ann = function
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| Nullable -> mk_ann_str nullable
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| Present -> mk_ann_str present
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let mk_ia ann ia =
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if ia_is ann ia then ia
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else (mk_ann ann, true) :: ia
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let mark_ia ann ia x =
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if x then mk_ia ann ia else ia
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let mk_ia_strict ia =
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if ia_get_strict ia <> None then ia
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else (mk_ann_str strict, true) :: ia
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let mark_ia_strict ia x =
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if x then mk_ia_strict ia else ia
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(** Mark the annotated signature with the given annotation map. *)
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let annotated_signature_mark proc_name ann asig (b, bs) =
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let ia, t = asig.ret in
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let ret' = mark_ia ann ia b, t in
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let mark_param (s, ia, t) x =
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let ia' = if x then mk_ia ann ia else ia in
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(s, ia', t) in
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let params' =
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let fail () =
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L.stdout
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"INTERNAL ERROR: annotation for procedure %s has wrong number of arguments@."
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(Procname.to_unique_id proc_name);
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L.stdout " ANNOTATED SIGNATURE: %a@." (pp_annotated_signature proc_name) asig;
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assert false in
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let rec combine l1 l2 = match l1, l2 with
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| (p, ia, t):: l1', l2' when Mangled.to_string p = "this" ->
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(p, ia, t) :: combine l1' l2'
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| (s, ia, t):: l1', x:: l2' ->
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mark_param (s, ia, t) x :: combine l1' l2'
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| [], _:: _ -> fail ()
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| _:: _, [] -> fail ()
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| [], [] -> [] in
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combine asig.params bs in
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{ ret = ret'; params = params'}
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(** Mark the return of the annotated signature with the given annotation. *)
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let annotated_signature_mark_return ann asig =
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let ia, t = asig.ret in
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let ret' = mark_ia ann ia true, t in
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{ asig with ret = ret'}
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(** Mark the return of the annotated signature @Strict. *)
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let annotated_signature_mark_return_strict asig =
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let ia, t = asig.ret in
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let ret' = mark_ia_strict ia true, t in
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{ asig with ret = ret'}
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(** Mark the return of the method_annotation with the given annotation. *)
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let method_annotation_mark_return ann method_annotation =
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let ia_ret, params = method_annotation in
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let ia_ret' = mark_ia ann ia_ret true in
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ia_ret', params
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