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(*
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* Copyright (c) 2009 - 2013 Monoidics ltd.
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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! IStd
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(** node of the control flow graph *)
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module Node : sig
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(** type of nodes *)
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type t [@@deriving compare]
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(** node id *)
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type id = private int [@@deriving compare]
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val equal_id : id -> id -> bool
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(** kind of cfg node *)
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type nodekind =
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| Start_node of Typ.Procname.t
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| Exit_node of Typ.Procname.t
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| Stmt_node of string
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| Join_node
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| Prune_node of bool * Sil.if_kind * string (** (true/false branch, if_kind, comment) *)
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| Skip_node of string
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[@@deriving compare]
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val equal_nodekind : nodekind -> nodekind -> bool
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val exn_handler_kind : nodekind
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(** kind of Stmt_node for an exception handler. *)
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val exn_sink_kind : nodekind
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(** kind of Stmt_node for an exceptions sink. *)
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val throw_kind : nodekind
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(** kind of Stmt_node for a throw instruction. *)
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val add_locals_ret_declaration : t -> ProcAttributes.t -> ProcAttributes.var_data list -> unit
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(** Add declarations for local variables and return variable to the node *)
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val append_instrs : t -> Sil.instr list -> unit
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(** Append the instructions to the list of instructions to execute *)
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val d_instrs : sub_instrs:bool -> Sil.instr option -> t -> unit
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(** Dump extended instructions for the node *)
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val dummy : Typ.Procname.t option -> t
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(** Create a dummy node *)
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val equal : t -> t -> bool
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(** Check if two nodes are equal *)
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val get_description : Pp.env -> t -> string
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(** Return a description of the node *)
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val get_distance_to_exit : t -> int option
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(** Get the distance to the exit node, if it has been computed *)
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val get_exn : t -> t list
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(** Get the exception nodes from the current node *)
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val get_id : t -> id
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(** Get the unique id of the node *)
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val get_instrs : t -> Sil.instr list
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(** Get the instructions to be executed *)
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val get_kind : t -> nodekind
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(** Get the kind of the current node *)
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val get_last_loc : t -> Location.t
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(** Get the source location of the last instruction in the node *)
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val get_loc : t -> Location.t
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(** Get the source location of the node *)
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val get_preds : t -> t list
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(** Get the predecessor nodes of the current node *)
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val get_proc_name : t -> Typ.Procname.t
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(** Get the name of the procedure the node belongs to *)
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val get_succs : t -> t list
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(** Get the successor nodes of the current node *)
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val hash : t -> int
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(** Hash function for nodes *)
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val pp : Format.formatter -> t -> unit
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(** Pretty print the node *)
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val pp_id : Format.formatter -> id -> unit
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(** Pretty print a node id *)
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val pp_instrs : Pp.env -> sub_instrs:bool -> Sil.instr option -> Format.formatter -> t -> unit
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(** Print extended instructions for the node,
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highlighting the given subinstruction if present *)
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val replace_instrs : t -> Sil.instr list -> unit
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(** Replace the instructions to be executed. *)
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end
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(** Map with node id keys. *)
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module IdMap : Caml.Map.S with type key = Node.id
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(** Hash table with nodes as keys. *)
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module NodeHash : Caml.Hashtbl.S with type key = Node.t
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(** Map over nodes. *)
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module NodeMap : Caml.Map.S with type key = Node.t
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(** Set of nodes. *)
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module NodeSet : Caml.Set.S with type elt = Node.t
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(** procedure descriptions *)
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(** proc description *)
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type t [@@deriving compare]
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val append_locals : t -> ProcAttributes.var_data list -> unit
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(** append a list of new local variables to the existing list of local variables *)
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val compute_distance_to_exit_node : t -> unit
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(** Compute the distance of each node to the exit node, if not computed already *)
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val create_node : t -> Location.t -> Node.nodekind -> Sil.instr list -> Node.t
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(** Create a new cfg node with the given location, kind, list of instructions,
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and add it to the procdesc. *)
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val did_preanalysis : t -> bool
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(** true if we ran the preanalysis on the CFG associated with [t] *)
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val fold_instrs : ('a -> Node.t -> Sil.instr -> 'a) -> 'a -> t -> 'a
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(** fold over all nodes and their instructions *)
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val fold_nodes : ('a -> Node.t -> 'a) -> 'a -> t -> 'a
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(** fold over all nodes *)
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val from_proc_attributes : called_from_cfg:bool -> ProcAttributes.t -> t
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(** Only call from Cfg. *)
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val get_access : t -> PredSymb.access
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(** Return the visibility attribute *)
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val get_attributes : t -> ProcAttributes.t
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(** Get the attributes of the procedure. *)
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val get_captured : t -> (Mangled.t * Typ.t) list
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(** Return name and type of block's captured variables *)
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val get_exit_node : t -> Node.t
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val get_formals : t -> (Mangled.t * Typ.t) list
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(** Return name and type of formal parameters *)
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val get_loc : t -> Location.t
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(** Return loc information for the procedure *)
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val get_locals : t -> ProcAttributes.var_data list
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(** Return name and type and attributes of local variables *)
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val get_nodes : t -> Node.t list
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val get_proc_name : t -> Typ.Procname.t
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val get_ret_type : t -> Typ.t
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(** Return the return type of the procedure and type string *)
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val get_ret_var : t -> Pvar.t
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val get_start_node : t -> Node.t
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val is_defined : t -> bool
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(** Return [true] iff the procedure is defined, and not just declared *)
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val is_java_synchronized : t -> bool
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(** Return [true] if the procedure signature has the Java synchronized keyword *)
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val iter_instrs : (Node.t -> Sil.instr -> unit) -> t -> unit
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(** iterate over all nodes and their instructions *)
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val iter_nodes : (Node.t -> unit) -> t -> unit
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(** iterate over all the nodes of a procedure *)
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val iter_slope_range : (Node.t -> unit) -> Node.t -> Node.t -> unit
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(** iterate between two nodes or until we reach a branching structure *)
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val node_set_succs_exn : t -> Node.t -> Node.t list -> Node.t list -> unit
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(** Set the successor nodes and exception nodes, and build predecessor links *)
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val set_exit_node : t -> Node.t -> unit
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(** Set the exit node of the procedure *)
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val set_start_node : t -> Node.t -> unit
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val signal_did_preanalysis : t -> unit
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(** indicate that we have performed preanalysis on the CFG assoociated with [t] *)
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val is_loop_head : t -> Node.t -> bool
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val pp_signature : Format.formatter -> t -> unit
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val pp_local : Format.formatter -> ProcAttributes.var_data -> unit
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val is_specialized : t -> bool
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(* true if pvar is a captred variable of a cpp lambda or obcj block *)
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val is_captured_var : t -> Pvar.t -> bool
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val has_modify_in_block_attr : t -> Pvar.t -> bool
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