src/Pure/Thy/thy_info.ML
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(*  Title:      Pure/Thy/thy_info.ML
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    Author:     Markus Wenzel, TU Muenchen
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Global theory info database, with auto-loading according to theory and
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file dependencies.
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*)
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signature THY_INFO =
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sig
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  datatype action = Update | Remove
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  val add_hook: (action -> string -> unit) -> unit
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  val get_names: unit -> string list
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  val lookup_theory: string -> theory option
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  val get_theory: string -> theory
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  val is_finished: string -> bool
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  val master_directory: string -> Path.T
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  val loaded_files: string -> Path.T list
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  val remove_thy: string -> unit
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  val kill_thy: string -> unit
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  val use_theories: {last_timing: Toplevel.transition -> Time.time option, master_dir: Path.T} ->
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    (string * Position.T) list -> unit
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  val use_thys: (string * Position.T) list -> unit
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  val use_thy: string * Position.T -> unit
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  val toplevel_begin_theory: Path.T -> Thy_Header.header -> theory
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  val register_thy: theory -> unit
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  val finish: unit -> unit
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end;
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structure Thy_Info: THY_INFO =
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struct
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(** theory loader actions and hooks **)
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datatype action = Update | Remove;
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local
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  val hooks = Synchronized.var "Thy_Info.hooks" ([]: (action -> string -> unit) list);
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in
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  fun add_hook f = Synchronized.change hooks (cons f);
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  fun perform action name =
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    List.app (fn f => (try (fn () => f action name) (); ())) (Synchronized.value hooks);
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end;
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(** thy database **)
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(* messages *)
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fun loader_msg txt [] = "Theory loader: " ^ txt
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  | loader_msg txt names = "Theory loader: " ^ txt ^ " " ^ commas_quote names;
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val show_path = space_implode " via " o map quote;
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fun cycle_msg names = loader_msg ("cyclic dependency of " ^ show_path names) [];
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(* derived graph operations *)
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fun add_deps name parents G = String_Graph.add_deps_acyclic (name, parents) G
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  handle String_Graph.CYCLES namess => error (cat_lines (map cycle_msg namess));
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fun new_entry name parents entry =
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  String_Graph.new_node (name, entry) #> add_deps name parents;
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(* thy database *)
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type deps =
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 {master: (Path.T * SHA1.digest),  (*master dependencies for thy file*)
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  imports: (string * Position.T) list};  (*source specification of imports (partially qualified)*)
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fun make_deps master imports : deps = {master = master, imports = imports};
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fun master_dir (d: deps option) = the_default Path.current (Option.map (Path.dir o #1 o #master) d);
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fun base_name s = Path.implode (Path.base (Path.explode s));
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local
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  val database =
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    Unsynchronized.ref (String_Graph.empty: (deps option * theory option) String_Graph.T);
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in
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  fun get_thys () = ! database;
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  fun change_thys f = NAMED_CRITICAL "Thy_Info" (fn () => Unsynchronized.change database f);
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end;
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(* access thy graph *)
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fun thy_graph f x = f (get_thys ()) x;
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fun get_names () = String_Graph.topological_order (get_thys ());
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(* access thy *)
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fun lookup_thy name =
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  SOME (thy_graph String_Graph.get_node name) handle String_Graph.UNDEF _ => NONE;
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val known_thy = is_some o lookup_thy;
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fun get_thy name =
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  (case lookup_thy name of
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    SOME thy => thy
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  | NONE => error (loader_msg "nothing known about theory" [name]));
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(* access deps *)
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val lookup_deps = Option.map #1 o lookup_thy;
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val get_deps = #1 o get_thy;
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val is_finished = is_none o get_deps;
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val master_directory = master_dir o get_deps;
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(* access theory *)
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fun lookup_theory name =
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  (case lookup_thy name of
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    SOME (_, SOME theory) => SOME theory
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  | _ => NONE);
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fun get_theory name =
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  (case lookup_theory name of
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    SOME theory => theory
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  | _ => error (loader_msg "undefined theory entry for" [name]));
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val get_imports = Thy_Load.imports_of o get_theory;
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fun loaded_files name = NAMED_CRITICAL "Thy_Info" (fn () =>
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  (case get_deps name of
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    NONE => []
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  | SOME {master = (thy_path, _), ...} => thy_path :: Thy_Load.loaded_files (get_theory name)));
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(** thy operations **)
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(* main loader actions *)
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fun remove_thy name = NAMED_CRITICAL "Thy_Info" (fn () =>
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  if is_finished name then error (loader_msg "attempt to change finished theory" [name])
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  else
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    let
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      val succs = thy_graph String_Graph.all_succs [name];
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      val _ = Output.urgent_message (loader_msg "removing" succs);
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      val _ = List.app (perform Remove) succs;
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      val _ = change_thys (fold String_Graph.del_node succs);
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    in () end);
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fun kill_thy name = NAMED_CRITICAL "Thy_Info" (fn () =>
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  if known_thy name then remove_thy name
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  else ());
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fun update_thy deps theory = NAMED_CRITICAL "Thy_Info" (fn () =>
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  let
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    val name = Context.theory_name theory;
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    val parents = map Context.theory_name (Theory.parents_of theory);
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    val _ = kill_thy name;
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    val _ = map get_theory parents;
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    val _ = change_thys (new_entry name parents (SOME deps, SOME theory));
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    val _ = perform Update name;
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  in () end);
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(* scheduling loader tasks *)
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datatype result =
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  Result of {theory: theory, id: serial, present: unit -> unit, commit: unit -> unit, weight: int};
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fun theory_result theory = Result {theory = theory, id = 0, present = I, commit = I, weight = 0};
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fun result_theory (Result {theory, ...}) = theory;
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fun result_present (Result {present, ...}) = present;
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fun result_commit (Result {commit, ...}) = commit;
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fun result_ord (Result {weight = i, ...}, Result {weight = j, ...}) = int_ord (j, i);
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fun join_proofs (Result {theory, id, ...}) =
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  let
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    val result1 = Exn.capture Thm.join_theory_proofs theory;
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    val results2 = Future.join_results (Goal.peek_futures id);
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  in result1 :: results2 end;
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datatype task =
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  Task of string list * (theory list -> result) |
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  Finished of theory;
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fun task_finished (Task _) = false
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  | task_finished (Finished _) = true;
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fun task_parents deps (parents: string list) = map (the o AList.lookup (op =) deps) parents;
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local
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val schedule_seq =
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  String_Graph.schedule (fn deps => fn (_, task) =>
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    (case task of
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      Task (parents, body) =>
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        let
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          val result = body (task_parents deps parents);
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          val _ = Par_Exn.release_all (join_proofs result);
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          val _ = result_present result ();
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          val _ = result_commit result ();
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        in result_theory result end
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    | Finished thy => thy)) #> ignore;
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val schedule_futures = uninterruptible (fn _ => fn tasks =>
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  let
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    val futures = tasks
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      |> String_Graph.schedule (fn deps => fn (name, task) =>
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        (case task of
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          Task (parents, body) =>
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            (singleton o Future.forks)
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              {name = "theory:" ^ name, group = NONE,
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                deps = map (Future.task_of o #2) deps, pri = 0, interrupts = true}
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              (fn () =>
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                (case filter (not o can Future.join o #2) deps of
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                  [] => body (map (result_theory o Future.join) (task_parents deps parents))
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                | bad =>
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                    error (loader_msg ("failed to load " ^ quote name ^
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                      " (unresolved " ^ commas_quote (map #1 bad) ^ ")") [])))
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        | Finished theory => Future.value (theory_result theory)));
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    val results1 = futures
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      |> maps (fn future =>
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          (case Future.join_result future of
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            Exn.Res result => join_proofs result
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          | Exn.Exn exn => [Exn.Exn exn]));
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    val results2 = futures
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      |> map_filter (Exn.get_res o Future.join_result)
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      |> sort result_ord
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      |> Par_List.map (fn result => Exn.capture (result_present result) ());
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    (* FIXME more precise commit order (!?) *)
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    val results3 = futures
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      |> map (fn future => Exn.capture (fn () => result_commit (Future.join future) ()) ());
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    (* FIXME avoid global reset_futures (!??) *)
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    val results4 = map Exn.Exn (map_filter Task_Queue.group_status (Goal.reset_futures ()));
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    val _ = Par_Exn.release_all (results1 @ results2 @ results3 @ results4);
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  in () end);
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in
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fun schedule_tasks tasks =
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  if not (Multithreading.enabled ()) then schedule_seq tasks
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  else if Multithreading.self_critical () then
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     (warning (loader_msg "no multithreading within critical section" []);
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      schedule_seq tasks)
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  else schedule_futures tasks;
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end;
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(* require_thy -- checking database entries wrt. the file-system *)
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local
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fun required_by _ [] = ""
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  | required_by s initiators = s ^ "(required by " ^ show_path (rev initiators) ^ ")";
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fun load_thy last_timing initiators update_time deps text (name, pos) keywords parents =
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  let
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    val _ = kill_thy name;
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    val _ = Output.urgent_message ("Loading theory " ^ quote name ^ required_by " " initiators);
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    val _ = Output.try_protocol_message (Markup.loading_theory name) "";
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    val {master = (thy_path, _), imports} = deps;
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    val dir = Path.dir thy_path;
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    val header = Thy_Header.make (name, pos) imports keywords;
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    val _ = Position.reports (map #2 imports ~~ map Theory.get_markup parents);
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    val id = serial ();
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    val text_pos = Position.put_id (Markup.print_int id) (Path.position thy_path);
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    val (theory, present, weight) =
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      Thy_Load.load_thy last_timing update_time dir header text_pos text
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        (if name = Context.PureN then [ML_Context.the_global_context ()] else parents);
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    fun commit () = update_thy deps theory;
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  in Result {theory = theory, id = id, present = present, commit = commit, weight = weight} end;
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fun check_deps dir name =
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  (case lookup_deps name of
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    SOME NONE => (true, NONE, Position.none, get_imports name, [])
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  | NONE =>
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      let val {master, text, theory_pos, imports, keywords} = Thy_Load.check_thy dir name
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      in (false, SOME (make_deps master imports, text), theory_pos, imports, keywords) end
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  | SOME (SOME {master, ...}) =>
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      let
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        val {master = master', text = text', theory_pos = theory_pos', imports = imports',
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          keywords = keywords'} = Thy_Load.check_thy dir name;
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        val deps' = SOME (make_deps master' imports', text');
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        val current =
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          #2 master = #2 master' andalso
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            (case lookup_theory name of
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              NONE => false
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            | SOME theory => Thy_Load.load_current theory);
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      in (current, deps', theory_pos', imports', keywords') end);
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in
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fun require_thys last_timing initiators dir strs tasks =
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      fold_map (require_thy last_timing initiators dir) strs tasks |>> forall I
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and require_thy last_timing initiators dir (str, require_pos) tasks =
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  let
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    val path = Path.expand (Path.explode str);
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    val name = Path.implode (Path.base path);
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  in
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    (case try (String_Graph.get_node tasks) name of
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      SOME task => (task_finished task, tasks)
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    | NONE =>
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        let
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          val dir' = Path.append dir (Path.dir path);
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          val _ = member (op =) initiators name andalso error (cycle_msg initiators);
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          val (current, deps, theory_pos, imports, keywords) = check_deps dir' name
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            handle ERROR msg => cat_error msg
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              (loader_msg "the error(s) above occurred while examining theory" [name] ^
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                Position.here require_pos ^ required_by "\n" initiators);
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          val parents = map (base_name o #1) imports;
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          val (parents_current, tasks') =
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            require_thys last_timing (name :: initiators)
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              (Path.append dir (master_dir (Option.map #1 deps))) imports tasks;
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          val all_current = current andalso parents_current;
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          val task =
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            if all_current then Finished (get_theory name)
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            else
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              (case deps of
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                NONE => raise Fail "Malformed deps"
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              | SOME (dep, text) =>
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                  let
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                    val update_time = serial ();
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                    val load =
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                      load_thy last_timing initiators update_time dep
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                        text (name, theory_pos) keywords;
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                  in Task (parents, load) end);
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          val tasks'' = new_entry name parents task tasks';
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        in (all_current, tasks'') end)
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  end;
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end;
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(* use_thy *)
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fun use_theories {last_timing, master_dir} imports =
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  schedule_tasks (snd (require_thys last_timing [] master_dir imports String_Graph.empty));
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val use_thys = use_theories {last_timing = K NONE, master_dir = Path.current};
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val use_thy = use_thys o single;
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(* toplevel begin theory -- without maintaining database *)
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fun toplevel_begin_theory master_dir (header: Thy_Header.header) =
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  let
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    val {name = (name, _), imports, ...} = header;
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    val _ = kill_thy name;
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    val _ = use_theories {last_timing = K NONE, master_dir = master_dir} imports;
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    val _ = Thy_Header.define_keywords header;
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    val parents = map (get_theory o base_name o fst) imports;
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  in Thy_Load.begin_theory master_dir header parents end;
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(* register theory *)
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fun register_thy theory =
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  let
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    val name = Context.theory_name theory;
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    val {master, ...} = Thy_Load.check_thy (Thy_Load.master_directory theory) name;
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    val imports = Thy_Load.imports_of theory;
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  in
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    NAMED_CRITICAL "Thy_Info" (fn () =>
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   379
     (kill_thy name;
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      Output.urgent_message ("Registering theory " ^ quote name);
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      update_thy (make_deps master imports) theory))
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  end;
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(* finish all theories *)
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fun finish () = change_thys (String_Graph.map (fn _ => fn (_, entry) => (NONE, entry)));
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end;