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(*
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* Copyright (c) 2009-2013, Monoidics ltd.
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* Copyright (c) Facebook, Inc. and its affiliates.
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*
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* This source code is licensed under the MIT license found in the
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* LICENSE file in the root directory of this source tree.
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*)
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open! IStd
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module F = Format
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module Stats = struct
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type t =
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{ failure_kind: SymOp.failure_kind option
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(** what type of failure stopped the analysis (if any) *)
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; symops: int (** Number of SymOp's throughout the whole analysis of the function *)
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; mutable nodes_visited: IntSet.t (** Nodes visited *) }
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let empty = {failure_kind= None; symops= 0; nodes_visited= IntSet.empty}
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let is_visited stats node_id = IntSet.mem node_id stats.nodes_visited
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let add_visited stats node_id = stats.nodes_visited <- IntSet.add node_id stats.nodes_visited
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let nb_visited {nodes_visited} = IntSet.cardinal nodes_visited
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let update ?(add_symops = 0) ?failure_kind stats =
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let symops = stats.symops + add_symops in
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let failure_kind = match failure_kind with None -> stats.failure_kind | some -> some in
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{stats with symops; failure_kind}
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let failure_kind {failure_kind} = failure_kind
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let symops {symops} = symops
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let pp_failure_kind_opt fmt failure_kind_opt =
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match failure_kind_opt with
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| Some failure_kind ->
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SymOp.pp_failure_kind fmt failure_kind
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| None ->
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F.pp_print_string fmt "NONE"
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let failure_kind_to_string {failure_kind} = F.asprintf "%a" pp_failure_kind_opt failure_kind
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let pp fmt {failure_kind; symops} =
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F.fprintf fmt "FAILURE:%a SYMOPS:%d@\n" pp_failure_kind_opt failure_kind symops
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end
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module Status = struct
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type t =
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| Pending (** the summary has been created by the procedure has not been analyzed yet *)
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| Analyzed (** the analysis of the procedure is finished *)
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let to_string = function Pending -> "Pending" | Analyzed -> "Analyzed"
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let pp fmt status = F.pp_print_string fmt (to_string status)
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let is_analyzed = function Analyzed -> true | _ -> false
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end
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include struct
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(* ignore dead modules added by @@deriving fields *)
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[@@@warning "-60"]
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type t =
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{ payloads: Payloads.t
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; sessions: int ref
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; stats: Stats.t
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; status: Status.t
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; proc_desc: Procdesc.t
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; err_log: Errlog.t
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; mutable callee_pnames: Typ.Procname.Set.t }
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[@@deriving fields]
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end
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let poly_fields =
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PolyFields.(make Fields.map_poly ~subfields:[S (Fields.payloads, Payloads.poly_fields)])
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let get_status summary = summary.status
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let get_proc_desc summary = summary.proc_desc
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let get_attributes summary = Procdesc.get_attributes summary.proc_desc
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let get_proc_name summary = (get_attributes summary).ProcAttributes.proc_name
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let get_ret_type summary = (get_attributes summary).ProcAttributes.ret_type
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let get_formals summary = (get_attributes summary).ProcAttributes.formals
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let get_err_log summary = summary.err_log
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let get_loc summary = (get_attributes summary).ProcAttributes.loc
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let pp_errlog fmt err_log =
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F.fprintf fmt "ERRORS: @[<h>%a@]@\n%!" Errlog.pp_errors err_log ;
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F.fprintf fmt "WARNINGS: @[<h>%a@]" Errlog.pp_warnings err_log
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let pp_signature fmt summary =
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let pp_formal fmt (p, typ) = F.fprintf fmt "%a %a" (Typ.pp_full Pp.text) typ Mangled.pp p in
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F.fprintf fmt "%a %a(%a)" (Typ.pp_full Pp.text) (get_ret_type summary) Typ.Procname.pp
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(get_proc_name summary) (Pp.seq ~sep:", " pp_formal) (get_formals summary)
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let get_signature summary = F.asprintf "%a" pp_signature summary
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let pp_no_stats_specs fmt summary =
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F.fprintf fmt "%a@\n" pp_signature summary ;
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F.fprintf fmt "%a@\n" Status.pp summary.status
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let pp_text fmt summary =
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pp_no_stats_specs fmt summary ;
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F.fprintf fmt "%a@\n%a%a" pp_errlog (get_err_log summary) Stats.pp summary.stats
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(Payloads.pp Pp.text) summary.payloads
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let pp_html source fmt summary =
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F.pp_force_newline fmt () ;
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Io_infer.Html.with_color Black pp_no_stats_specs fmt summary ;
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F.fprintf fmt "<br />%a<br />@\n" Stats.pp summary.stats ;
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Errlog.pp_html source [] fmt (get_err_log summary) ;
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Io_infer.Html.pp_hline fmt () ;
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F.fprintf fmt "<LISTING>@\n" ;
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Payloads.pp (Pp.html Black) fmt summary.payloads ;
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F.fprintf fmt "</LISTING>@\n"
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module OnDisk = struct
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open PolyVariantEqual
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type cache = t Typ.Procname.Hash.t
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let cache : cache = Typ.Procname.Hash.create 128
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let clear_cache () = Typ.Procname.Hash.clear cache
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let remove_from_cache pname = Typ.Procname.Hash.remove cache pname
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(** Add the summary to the table for the given function *)
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let add (proc_name : Typ.Procname.t) (summary : t) : unit =
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Typ.Procname.Hash.replace cache proc_name summary
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let specs_filename pname =
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let pname_file = Typ.Procname.to_filename pname in
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pname_file ^ Config.specs_files_suffix
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(** Return the path to the .specs file for the given procedure in the current results directory *)
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let specs_filename_of_procname pname =
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DB.Results_dir.path_to_filename DB.Results_dir.Abs_root
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[Config.specs_dir_name; specs_filename pname]
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(** paths to the .specs file for the given procedure in the current spec libraries *)
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let specs_library_filename specs_dir pname =
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DB.filename_from_string (Filename.concat specs_dir (specs_filename pname))
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(** paths to the .specs file for the given procedure in the models folder *)
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let specs_models_filename pname =
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DB.filename_from_string (Filename.concat Config.models_dir (specs_filename pname))
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let has_model pname =
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Sys.file_exists (DB.filename_to_string (specs_models_filename pname)) = `Yes
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let summary_serializer : t Serialization.serializer =
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Serialization.create_serializer Serialization.Key.summary
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(** Load procedure summary from the given file *)
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let load_from_file specs_file = Serialization.read_from_file summary_serializer specs_file
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(** Load procedure summary for the given procedure name and update spec table *)
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let load_summary_to_spec_table =
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let rec or_load_summary_libs specs_dirs proc_name summ_opt =
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match (summ_opt, specs_dirs) with
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| Some _, _ | _, [] ->
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summ_opt
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| None, specs_dir :: specs_dirs ->
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load_from_file (specs_library_filename specs_dir proc_name)
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|> or_load_summary_libs specs_dirs proc_name
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in
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let load_summary_ziplibs zip_specs_filename =
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let zip_specs_path = Filename.concat Config.specs_dir_name zip_specs_filename in
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ZipLib.load summary_serializer zip_specs_path
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in
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let or_from f_load f_filenames proc_name summ_opt =
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match summ_opt with Some _ -> summ_opt | None -> f_load (f_filenames proc_name)
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in
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fun proc_name ->
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let summ_opt =
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load_from_file (specs_filename_of_procname proc_name)
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|> or_from load_from_file specs_models_filename proc_name
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|> or_from load_summary_ziplibs specs_filename proc_name
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|> or_load_summary_libs Config.specs_library proc_name
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in
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Option.iter ~f:(add proc_name) summ_opt ;
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summ_opt
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let get proc_name =
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match Typ.Procname.Hash.find cache proc_name with
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| summary ->
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Some summary
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| exception Caml.Not_found ->
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load_summary_to_spec_table proc_name
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(** Check if the procedure is from a library:
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It's not defined, and there is no spec file for it. *)
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let proc_is_library proc_attributes =
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if not proc_attributes.ProcAttributes.is_defined then
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match get proc_attributes.ProcAttributes.proc_name with None -> true | Some _ -> false
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else false
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(** Try to find the attributes for a defined proc.
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First look at specs (to get attributes computed by analysis)
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then look at the attributes table.
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If no attributes can be found, return None.
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*)
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let proc_resolve_attributes proc_name =
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match get proc_name with
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| Some summary ->
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Some (get_attributes summary)
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| None ->
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Attributes.load proc_name
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(** Save summary for the procedure into the spec database *)
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let store (summ : t) =
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let final_summary = {summ with status= Status.Analyzed} in
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let proc_name = get_proc_name final_summary in
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(* Make sure the summary in memory is identical to the saved one *)
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add proc_name final_summary ;
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Serialization.write_to_file summary_serializer
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(specs_filename_of_procname proc_name)
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~data:final_summary
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let reset proc_desc =
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let summary =
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{ sessions= ref 0
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; payloads= Payloads.empty
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; stats= Stats.empty
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; status= Status.Pending
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; proc_desc
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; err_log= Errlog.empty ()
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; callee_pnames= Typ.Procname.Set.empty }
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in
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Typ.Procname.Hash.replace cache (Procdesc.get_proc_name proc_desc) summary ;
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summary
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let dummy =
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let dummy_attributes =
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ProcAttributes.default (SourceFile.invalid __FILE__) Typ.Procname.empty_block
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in
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let dummy_proc_desc = Procdesc.from_proc_attributes dummy_attributes in
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reset dummy_proc_desc
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let reset_all ~filter () =
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let reset proc_name =
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let filename = specs_filename_of_procname proc_name in
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Serialization.read_from_file summary_serializer filename
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|> Option.iter ~f:(fun summary ->
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let blank_summary = reset summary.proc_desc in
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Serialization.write_to_file summary_serializer filename ~data:blank_summary )
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in
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Procedures.get_all ~filter () |> List.iter ~f:reset
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end
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module SummaryValue = struct
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type nonrec t = t option
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let label = "summary"
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end
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module SummaryServer = Memcached.Make (SummaryValue)
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