src/Pure/PIDE/document.ML
author wenzelm
Sun Aug 15 20:13:07 2010 +0200 (2010-08-15 ago)
changeset 38421 6cfc6fce7bfb
parent 38419 f9dc924e54f8
child 38448 62d16c415019
permissions -rw-r--r--
document commands: maintain transition as future (wrt. potentially slow Outer_Syntax.prepare_command), refrain from second Toplevel.put_id;
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(*  Title:      Pure/PIDE/document.ML
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    Author:     Makarius
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Document as collection of named nodes, each consisting of an editable
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list of commands, associated with asynchronous execution process.
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*)
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signature DOCUMENT =
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sig
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  type id = int
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  type version_id = id
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  type command_id = id
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  type exec_id = id
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  val no_id: id
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  val new_id: unit -> id
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  val parse_id: string -> id
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  val print_id: id -> string
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  type edit = string * ((command_id * command_id option) list) option
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  type state
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  val init_state: state
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  val define_command: command_id -> string -> state -> state
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  val edit: version_id -> version_id -> edit list -> state -> (command_id * exec_id) list * state
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  val execute: version_id -> state -> state
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end;
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structure Document: DOCUMENT =
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struct
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(* unique identifiers *)
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type id = int;
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type version_id = id;
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type command_id = id;
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type exec_id = id;
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val no_id = 0;
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local
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  val id_count = Synchronized.var "id" 0;
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in
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  fun new_id () =
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    Synchronized.change_result id_count
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      (fn i =>
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        let val i' = i + 1
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        in (i', i') end);
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end;
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val parse_id = Markup.parse_int;
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val print_id = Markup.print_int;
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fun err_dup kind id = error ("Duplicate " ^ kind ^ ": " ^ print_id id);
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fun err_undef kind id = error ("Undefined " ^ kind ^ ": " ^ print_id id);
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(** document structure **)
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abstype entry = Entry of {next: command_id option, exec: exec_id option}
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  and node = Node of entry Inttab.table  (*unique entries indexed by command_id, start with no_id*)
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  and version = Version of node Graph.T  (*development graph wrt. static imports*)
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with
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(* command entries *)
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fun make_entry next exec = Entry {next = next, exec = exec};
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fun the_entry (Node entries) (id: command_id) =
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  (case Inttab.lookup entries id of
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    NONE => err_undef "command entry" id
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  | SOME (Entry entry) => entry);
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fun put_entry (id: command_id, entry: entry) (Node entries) =
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  Node (Inttab.update (id, entry) entries);
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fun put_entry_exec (id: command_id) exec node =
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  let val {next, ...} = the_entry node id
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  in put_entry (id, make_entry next exec) node end;
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fun reset_entry_exec id = put_entry_exec id NONE;
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fun set_entry_exec (id, exec_id) = put_entry_exec id (SOME exec_id);
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(* iterate entries *)
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fun fold_entries id0 f (node as Node entries) =
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  let
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    fun apply NONE x = x
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      | apply (SOME id) x =
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          let val entry = the_entry node id
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          in apply (#next entry) (f (id, entry) x) end;
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  in if Inttab.defined entries id0 then apply (SOME id0) else I end;
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fun first_entry P node =
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  let
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    fun first _ NONE = NONE
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      | first prev (SOME id) =
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          let val entry = the_entry node id
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          in if P (id, entry) then SOME (prev, id, entry) else first (SOME id) (#next entry) end;
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  in first NONE (SOME no_id) end;
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(* modify entries *)
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fun insert_after (id: command_id) (id2: command_id) node =
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  let val {next, exec} = the_entry node id in
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    node
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    |> put_entry (id, make_entry (SOME id2) exec)
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    |> put_entry (id2, make_entry next NONE)
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  end;
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fun delete_after (id: command_id) node =
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  let val {next, exec} = the_entry node id in
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    (case next of
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      NONE => error ("No next entry to delete: " ^ print_id id)
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    | SOME id2 =>
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        node |>
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          (case #next (the_entry node id2) of
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            NONE => put_entry (id, make_entry NONE exec)
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          | SOME id3 => put_entry (id, make_entry (SOME id3) exec) #> reset_entry_exec id3))
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  end;
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(* node edits *)
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type edit =
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  string *  (*node name*)
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  ((command_id * command_id option) list) option;  (*NONE: remove, SOME: insert/remove commands*)
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val empty_node = Node (Inttab.make [(no_id, make_entry NONE (SOME no_id))]);
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fun edit_node (id, SOME id2) = insert_after id id2
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  | edit_node (id, NONE) = delete_after id;
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(* version operations *)
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fun nodes_of (Version nodes) = nodes;
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val node_names_of = Graph.keys o nodes_of;
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fun edit_nodes (name, SOME edits) (Version nodes) =
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      Version (nodes
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        |> Graph.default_node (name, empty_node)
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        |> Graph.map_node name (fold edit_node edits))
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  | edit_nodes (name, NONE) (Version nodes) = Version (Graph.del_node name nodes);
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val empty_version = Version Graph.empty;
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fun the_node version name =
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  Graph.get_node (nodes_of version) name handle Graph.UNDEF _ => empty_node;
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fun put_node name node (Version nodes) =
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  Version (Graph.map_node name (K node) nodes);  (* FIXME Graph.UNDEF !? *)
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end;
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(** global state -- document structure and execution process **)
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abstype state = State of
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 {versions: version Inttab.table,                     (*version_id -> document content*)
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  commands: Toplevel.transition future Inttab.table,  (*command_id -> transition (future parsing)*)
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  execs: Toplevel.state option lazy Inttab.table,     (*exec_id -> execution process*)
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  execution: unit future list}                        (*global execution process*)
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with
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fun make_state (versions, commands, execs, execution) =
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  State {versions = versions, commands = commands, execs = execs, execution = execution};
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fun map_state f (State {versions, commands, execs, execution}) =
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  make_state (f (versions, commands, execs, execution));
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val init_state =
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  make_state (Inttab.make [(no_id, empty_version)],
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    Inttab.make [(no_id, Future.value Toplevel.empty)],
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    Inttab.make [(no_id, Lazy.value (SOME Toplevel.toplevel))],
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    []);
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(* document versions *)
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fun define_version (id: version_id) version =
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  map_state (fn (versions, commands, execs, execution) =>
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    let val versions' = Inttab.update_new (id, version) versions
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      handle Inttab.DUP dup => err_dup "document version" dup
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    in (versions', commands, execs, execution) end);
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fun the_version (State {versions, ...}) (id: version_id) =
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  (case Inttab.lookup versions id of
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    NONE => err_undef "document version" id
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  | SOME version => version);
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(* commands *)
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fun define_command (id: command_id) text =
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  map_state (fn (versions, commands, execs, execution) =>
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    let
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      val id_string = print_id id;
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      val tr = Future.fork_pri 2 (fn () =>
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        Position.setmp_thread_data (Position.id_only id_string)
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          (fn () => Outer_Syntax.prepare_command (Position.id id_string) text) ());
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      val commands' =
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        Inttab.update_new (id, tr) commands
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          handle Inttab.DUP dup => err_dup "command" dup;
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    in (versions, commands', execs, execution) end);
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fun the_command (State {commands, ...}) (id: command_id) =
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  (case Inttab.lookup commands id of
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    NONE => err_undef "command" id
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  | SOME tr => tr);
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fun join_commands (State {commands, ...}) =
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  Inttab.fold (fn (_, tr) => fn () => ignore (Future.join_result tr)) commands ();
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(* command executions *)
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fun define_exec (id: exec_id) exec =
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  map_state (fn (versions, commands, execs, execution) =>
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    let val execs' = Inttab.update_new (id, exec) execs
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      handle Inttab.DUP dup => err_dup "command execution" dup
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    in (versions, commands, execs', execution) end);
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fun the_exec (State {execs, ...}) (id: exec_id) =
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  (case Inttab.lookup execs id of
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    NONE => err_undef "command execution" id
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  | SOME exec => exec);
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end;
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(** editing **)
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(* edit *)
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local
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fun is_changed node' (id, {next = _, exec}) =
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  (case try (the_entry node') id of
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    NONE => true
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  | SOME {next = _, exec = exec'} => exec' <> exec);
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fun new_exec name (id: command_id) (exec_id, updates, state) =
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  let
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    val exec = the_exec state exec_id;
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    val exec_id' = new_id ();
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    val tr = the_command state id;
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    val exec' =
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      Lazy.lazy (fn () =>
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        (case Lazy.force exec of
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          NONE => NONE
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        | SOME st =>
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            let val exec_tr = Toplevel.put_id (print_id exec_id') (Future.join tr)
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            in Toplevel.run_command name exec_tr st end));
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    val state' = define_exec exec_id' exec' state;
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  in (exec_id', (id, exec_id') :: updates, state') end;
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in
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fun edit (old_id: version_id) (new_id: version_id) edits state =
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  let
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    val old_version = the_version state old_id;
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    val new_version = fold edit_nodes edits old_version;
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    fun update_node name (rev_updates, version, st) =
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      let val node = the_node version name in
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        (case first_entry (is_changed (the_node old_version name)) node of
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          NONE => (rev_updates, version, st)
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        | SOME (prev, id, _) =>
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            let
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              val prev_exec = the (#exec (the_entry node (the prev)));
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              val (_, rev_upds, st') =
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                fold_entries id (new_exec name o #1) node (prev_exec, [], st);
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              val node' = fold set_entry_exec rev_upds node;
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            in (rev_upds @ rev_updates, put_node name node' version, st') end)
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      end;
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    (* FIXME proper node deps *)
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    val (rev_updates, new_version', state') =
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      fold update_node (node_names_of new_version) ([], new_version, state);
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    val state'' = define_version new_id new_version' state';
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    val _ = join_commands state'';  (* FIXME async!? *)
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  in (rev rev_updates, state'') end;
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end;
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(* execute *)
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fun execute version_id state =
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  state |> map_state (fn (versions, commands, execs, execution) =>
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    let
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      val version = the_version state version_id;
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      fun force_exec NONE = ()
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        | force_exec (SOME exec_id) = ignore (Lazy.force (the_exec state exec_id));
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      val _ = List.app Future.cancel execution;
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      fun await_cancellation () = uninterruptible (fn _ => Future.join_results) execution;
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      val execution' = (* FIXME proper node deps *)
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        node_names_of version |> map (fn name =>
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          Future.fork_pri 1 (fn () =>
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            (await_cancellation ();
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              fold_entries no_id (fn (_, {exec, ...}) => fn () => force_exec exec)
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                (the_node version name) ())));
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    in (versions, commands, execs, execution') end);
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end;
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