src/Pure/ML/ml_context.ML
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(*  Title:      Pure/ML/ml_context.ML
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    Author:     Makarius
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ML context and antiquotations.
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*)
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signature BASIC_ML_CONTEXT =
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sig
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  val bind_thm: string * thm -> unit
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  val bind_thms: string * thm list -> unit
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end
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signature ML_CONTEXT =
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sig
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  include BASIC_ML_CONTEXT
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  val the_generic_context: unit -> Context.generic
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  val the_global_context: unit -> theory
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  val the_local_context: unit -> Proof.context
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  val thm: xstring -> thm
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  val thms: xstring -> thm list
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  val exec: (unit -> unit) -> Context.generic -> Context.generic
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  val get_stored_thms: unit -> thm list
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  val get_stored_thm: unit -> thm
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  val ml_store_thms: string * thm list -> unit
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  val ml_store_thm: string * thm -> unit
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  type antiq = Proof.context -> string * string
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  val add_antiq: binding -> antiq context_parser -> theory -> theory
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  val check_antiq: Proof.context -> xstring * Position.T -> string
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  val trace_raw: Config.raw
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  val trace: bool Config.T
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  val eval_antiquotes: ML_Lex.token Antiquote.antiquote list * Position.T ->
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    Context.generic option -> (ML_Lex.token list * ML_Lex.token list) * Context.generic option
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  val eval: bool -> Position.T -> ML_Lex.token Antiquote.antiquote list -> unit
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  val eval_source: bool -> Symbol_Pos.source -> unit
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  val eval_in: Proof.context option -> bool -> Position.T ->
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    ML_Lex.token Antiquote.antiquote list -> unit
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  val eval_source_in: Proof.context option -> bool -> Symbol_Pos.source -> unit
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  val expression: Position.T -> string -> string -> ML_Lex.token Antiquote.antiquote list ->
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    Context.generic -> Context.generic
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end
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structure ML_Context: ML_CONTEXT =
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struct
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(** implicit ML context **)
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val the_generic_context = Context.the_thread_data;
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val the_global_context = Context.theory_of o the_generic_context;
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val the_local_context = Context.proof_of o the_generic_context;
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fun thm name = Proof_Context.get_thm (the_local_context ()) name;
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fun thms name = Proof_Context.get_thms (the_local_context ()) name;
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fun exec (e: unit -> unit) context =
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  (case Context.setmp_thread_data (SOME context) (fn () => (e (); Context.thread_data ())) () of
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    SOME context' => context'
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  | NONE => error "Missing context after execution");
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(* theorem bindings *)
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structure Stored_Thms = Theory_Data
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(
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  type T = thm list;
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  val empty = [];
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  fun extend _ = [];
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  fun merge _ = [];
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);
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fun get_stored_thms () = Stored_Thms.get (the_global_context ());
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val get_stored_thm = hd o get_stored_thms;
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fun ml_store get (name, ths) =
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  let
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    val ths' = Context.>>> (Context.map_theory_result
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      (Global_Theory.store_thms (Binding.name name, ths)));
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    val _ = Theory.setup (Stored_Thms.put ths');
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    val _ =
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      if name = "" then ()
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      else if not (ML_Syntax.is_identifier name) then
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        error ("Cannot bind theorem(s) " ^ quote name ^ " as ML value")
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      else
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        ML_Compiler.eval true Position.none
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          (ML_Lex.tokenize ("val " ^ name ^ " = " ^ get ^ " ();"));
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    val _ = Theory.setup (Stored_Thms.put []);
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  in () end;
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val ml_store_thms = ml_store "ML_Context.get_stored_thms";
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fun ml_store_thm (name, th) = ml_store "ML_Context.get_stored_thm" (name, [th]);
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fun bind_thm (name, thm) = ml_store_thm (name, Drule.export_without_context thm);
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fun bind_thms (name, thms) = ml_store_thms (name, map Drule.export_without_context thms);
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(** ML antiquotations **)
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(* antiquotation commands *)
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type antiq = Proof.context -> string * string;
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structure Antiq_Parsers = Theory_Data
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(
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  type T = antiq context_parser Name_Space.table;
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  val empty : T = Name_Space.empty_table Markup.ML_antiquotationN;
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  val extend = I;
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  fun merge data : T = Name_Space.merge_tables data;
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);
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val get_antiqs = Antiq_Parsers.get o Proof_Context.theory_of;
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fun add_antiq name scan thy = thy
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  |> Antiq_Parsers.map (Name_Space.define (Context.Theory thy) true (name, scan) #> snd);
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fun check_antiq ctxt = #1 o Name_Space.check (Context.Proof ctxt) (get_antiqs ctxt);
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fun antiquotation src ctxt =
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  let val (src', scan) = Args.check_src ctxt (get_antiqs ctxt) src
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  in Args.syntax scan src' ctxt end;
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(* parsing and evaluation *)
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local
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val antiq =
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  Parse.!!! (Parse.position Parse.xname -- Args.parse --| Scan.ahead Parse.eof)
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  >> uncurry Args.src;
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val begin_env0 = ML_Lex.tokenize "structure Isabelle =\nstruct\n";
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fun begin_env visible =
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  ML_Lex.tokenize
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    ("structure Isabelle =\nstruct\n\
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     \val ML_context = Context_Position.set_visible " ^ Bool.toString visible ^
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     " (ML_Context.the_local_context ());\n");
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val end_env = ML_Lex.tokenize "end;";
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val reset_env = ML_Lex.tokenize "structure Isabelle = struct end";
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in
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fun eval_antiquotes (ants, pos) opt_context =
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  let
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    val visible =
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      (case opt_context of
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        SOME (Context.Proof ctxt) => Context_Position.is_visible ctxt
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      | _ => true);
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    val opt_ctxt = Option.map (Context.Proof o Context.proof_of) opt_context;
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    val ((ml_env, ml_body), opt_ctxt') =
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      if forall Antiquote.is_text ants
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      then ((begin_env0, map (fn Antiquote.Text tok => tok) ants), opt_ctxt)
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      else
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        let
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          val lex = #1 (Keyword.get_lexicons ());
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          fun no_decl _ = ([], []);
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          fun expand (Antiquote.Text tok) ctxt = (K ([], [tok]), ctxt)
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            | expand (Antiquote.Antiq (ss, {range, ...})) ctxt =
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                let
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                  val (decl, ctxt') = antiquotation (Token.read_antiq lex antiq (ss, #1 range)) ctxt;
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                  val decl' = decl #> pairself (ML_Lex.tokenize #> map (ML_Lex.set_range range));
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                in (decl', ctxt') end;
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          val ctxt =
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            (case opt_ctxt of
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              NONE => error ("No context -- cannot expand ML antiquotations" ^ Position.here pos)
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            | SOME ctxt => Context.proof_of ctxt);
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          val (decls, ctxt') = fold_map expand ants ctxt;
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          val (ml_env, ml_body) =
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            decls |> map (fn decl => decl ctxt') |> split_list |> pairself flat;
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        in ((begin_env visible @ ml_env, ml_body), SOME (Context.Proof ctxt')) end;
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  in ((ml_env @ end_env, ml_body), opt_ctxt') end;
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val trace_raw = Config.declare "ML_trace" (fn _ => Config.Bool false);
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val trace = Config.bool trace_raw;
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fun eval verbose pos ants =
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  let
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    (*prepare source text*)
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    val ((env, body), env_ctxt) = eval_antiquotes (ants, pos) (Context.thread_data ());
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    val _ =
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      (case Option.map Context.proof_of env_ctxt of
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        SOME ctxt =>
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          if Config.get ctxt trace then
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            Context_Position.if_visible ctxt
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              tracing (cat_lines [ML_Lex.flatten env, ML_Lex.flatten body])
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          else ()
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      | NONE => ());
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    (*prepare static ML environment*)
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    val _ =
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      Context.setmp_thread_data
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        (Option.map (Context.mapping I (Context_Position.set_visible false)) env_ctxt)
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        (fn () => (ML_Compiler.eval false Position.none env; Context.thread_data ())) ()
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      |> (fn NONE => () | SOME context' => Context.>> (ML_Env.inherit context'));
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    val _ = ML_Compiler.eval verbose pos body;
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    val _ = ML_Compiler.eval false Position.none reset_env;
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  in () end;
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end;
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(* derived versions *)
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fun eval_source verbose source =
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  eval verbose (#pos source) (ML_Lex.read_source source);
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fun eval_in ctxt verbose pos ants =
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  Context.setmp_thread_data (Option.map Context.Proof ctxt) (fn () => eval verbose pos ants) ();
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fun eval_source_in ctxt verbose source =
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  Context.setmp_thread_data (Option.map Context.Proof ctxt) (fn () => eval_source verbose source) ();
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fun expression pos bind body ants =
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  exec (fn () => eval false pos
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    (ML_Lex.read Position.none ("Context.set_thread_data (SOME (let " ^ bind ^ " = ") @ ants @
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      ML_Lex.read Position.none (" in " ^ body ^ " end (ML_Context.the_generic_context ())));")));
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end;
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structure Basic_ML_Context: BASIC_ML_CONTEXT = ML_Context;
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open Basic_ML_Context;