src/Tools/Code/code_runtime.ML
author haftmann
Sun May 29 14:43:17 2016 +0200 (2016-05-29)
changeset 63174 57c0d60e491c
parent 63164 72aaf69328fc
child 63184 dd6cd88cebd9
permissions -rw-r--r--
do not export abstract constructors in code_reflect
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(*  Title:      Tools/Code/code_runtime.ML
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    Author:     Florian Haftmann, TU Muenchen
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Runtime services building on code generation into implementation language SML.
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*)
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signature CODE_RUNTIME =
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sig
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  val target: string
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  val value: Proof.context ->
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    (Proof.context -> unit -> 'a) * ((unit -> 'a) -> Proof.context -> Proof.context) * string ->
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    string * string -> 'a
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  type 'a cookie = (Proof.context -> unit -> 'a) * ((unit -> 'a) -> Proof.context -> Proof.context) * string
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  val dynamic_value: 'a cookie -> Proof.context -> string option
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    -> ((term -> term) -> 'a -> 'a) -> term -> string list -> 'a option
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  val dynamic_value_strict: 'a cookie -> Proof.context -> string option
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    -> ((term -> term) -> 'a -> 'a) -> term -> string list -> 'a
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  val dynamic_value_exn: 'a cookie -> Proof.context -> string option
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    -> ((term -> term) -> 'a -> 'a) -> term -> string list -> 'a Exn.result
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  val static_value: 'a cookie -> { ctxt: Proof.context, target: string option,
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    lift_postproc: (term -> term) -> 'a -> 'a, consts: string list }
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    -> Proof.context -> term -> 'a option
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  val static_value_strict: 'a cookie -> { ctxt: Proof.context, target: string option,
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    lift_postproc: (term -> term) -> 'a -> 'a, consts: string list }
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    -> Proof.context -> term -> 'a
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  val static_value_exn: 'a cookie -> { ctxt: Proof.context, target: string option,
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    lift_postproc: (term -> term) -> 'a -> 'a, consts: string list }
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    -> Proof.context -> term -> 'a Exn.result
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  val dynamic_holds_conv: Proof.context -> conv
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  val static_holds_conv: { ctxt: Proof.context, consts: string list } -> Proof.context -> conv
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  val fully_static_value: (Proof.context -> term -> 'a) cookie
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    -> { ctxt: Proof.context, lift_postproc: (term -> term) -> 'a -> 'a,
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           consts: (string * typ) list, T: typ }
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    -> Proof.context -> term -> 'a option (*EXPERIMENTAL!*)
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  val fully_static_value_strict: (Proof.context -> term -> 'a) cookie
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    -> { ctxt: Proof.context, lift_postproc: (term -> term) -> 'a -> 'a,
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           consts: (string * typ) list, T: typ }
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    -> Proof.context -> term -> 'a (*EXPERIMENTAL!*)
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  val fully_static_value_exn: (Proof.context -> term -> 'a) cookie
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    -> { ctxt: Proof.context, lift_postproc: (term -> term) -> 'a -> 'a,
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           consts: (string * typ) list, T: typ }
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    -> Proof.context -> term -> 'a Exn.result (*EXPERIMENTAL!*)
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  val code_reflect: (string * string list option) list -> string list -> string
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    -> string option -> theory -> theory
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  datatype truth = Holds
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  val put_truth: (unit -> truth) -> Proof.context -> Proof.context
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  val trace: bool Config.T
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  val polyml_as_definition: (binding * typ) list -> Path.T list -> theory -> theory
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end;
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structure Code_Runtime : CODE_RUNTIME =
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struct
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open Basic_Code_Symbol;
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(** computation **)
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(* technical prerequisites *)
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val this = "Code_Runtime";
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val s_truth = Long_Name.append this "truth";
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val s_Holds = Long_Name.append this "Holds";
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val target = "Eval";
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val structure_generated = "Generated_Code";
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datatype truth = Holds;
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val _ = Theory.setup
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  (Code_Target.add_derived_target (target, [(Code_ML.target_SML, I)])
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  #> Code_Target.set_printings (Type_Constructor (@{type_name prop},
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    [(target, SOME (0, (K o K o K) (Code_Printer.str s_truth)))]))
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  #> Code_Target.set_printings (Constant (@{const_name Code_Generator.holds},
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    [(target, SOME (Code_Printer.plain_const_syntax s_Holds))]))
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  #> Code_Target.add_reserved target this
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  #> fold (Code_Target.add_reserved target) ["oo", "ooo", "oooo", "upto", "downto", "orf", "andf"]);
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       (*avoid further pervasive infix names*)
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val trace = Attrib.setup_config_bool @{binding "code_runtime_trace"} (K false);
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fun compile_ML verbose code context =
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 (if Config.get_generic context trace then tracing code else ();
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  Code_Preproc.timed "compiling ML" Context.proof_of
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    (ML_Context.exec (fn () => ML_Compiler0.ML ML_Env.context
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    {line = 0, file = "generated code", verbose = verbose,
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       debug = false} code)) context);
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fun value ctxt (get, put, put_ml) (prelude, value) =
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  let
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    val code =
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      prelude ^ "\nval _ = Context.put_generic_context (SOME (Context.map_proof (" ^
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      put_ml ^ " (fn () => " ^ value ^ ")) (Context.the_generic_context ())))";
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    val ctxt' = ctxt
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      |> put (fn () => error ("Bad computation for " ^ quote put_ml))
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      |> Context.proof_map (compile_ML false code);
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    val computator = get ctxt';
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  in Code_Preproc.timed_exec "running ML" computator ctxt' end;
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(* computation as evaluation into ML language values *)
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type 'a cookie = (Proof.context -> unit -> 'a) * ((unit -> 'a) -> Proof.context -> Proof.context) * string;
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fun reject_vars ctxt t =
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  ((Sign.no_frees ctxt o Sign.no_vars ctxt o map_types (K dummyT)) t; t);
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fun build_computation_text ctxt some_target program consts =
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  Code_Target.computation_text ctxt (the_default target some_target) program consts false
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  #>> (fn ml_modules => space_implode "\n\n" (map snd ml_modules));
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fun run_computation_text cookie ctxt comp vs_t args =
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  let
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    val (program_code, value_name) = comp vs_t;
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    val value_code = space_implode " "
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      (value_name :: "()" :: map (enclose "(" ")") args);
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  in Exn.interruptible_capture (value ctxt cookie) (program_code, value_code) end;
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fun partiality_as_none e = SOME (Exn.release e)
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  handle General.Match => NONE
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    | General.Bind => NONE
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    | General.Fail _ => NONE;
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fun dynamic_value_exn cookie ctxt some_target postproc t args =
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  let
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    val _ = reject_vars ctxt t;
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    val _ = if Config.get ctxt trace
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      then tracing ("Evaluation of term " ^ quote (Syntax.string_of_term ctxt t))
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      else ()
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    fun comp program _ vs_ty_t deps =
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      run_computation_text cookie ctxt (build_computation_text ctxt some_target program deps) vs_ty_t args;
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  in Code_Thingol.dynamic_value ctxt (Exn.map_res o postproc) comp t end;
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fun dynamic_value_strict cookie ctxt some_target postproc t args =
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  Exn.release (dynamic_value_exn cookie ctxt some_target postproc t args);
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fun dynamic_value cookie ctxt some_target postproc t args =
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  partiality_as_none (dynamic_value_exn cookie ctxt some_target postproc t args);
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fun static_value_exn cookie { ctxt, target, lift_postproc, consts } =
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  let
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    fun computation' { program, deps } =
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      let
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        val computation'' = run_computation_text cookie ctxt
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          (build_computation_text ctxt target program (map Constant deps));
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      in fn _ => fn _ => fn vs_ty_t => fn _ => computation'' vs_ty_t [] end;
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    val computation = Code_Thingol.static_value { ctxt = ctxt,
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      lift_postproc = Exn.map_res o lift_postproc, consts = consts }
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      computation';
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  in fn ctxt' => computation ctxt' o reject_vars ctxt' end;
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fun static_value_strict cookie = Exn.release ooo static_value_exn cookie;
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fun static_value cookie = partiality_as_none ooo static_value_exn cookie;
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(* evaluation for truth or nothing *)
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structure Truth_Result = Proof_Data
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(
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  type T = unit -> truth;
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  val empty: T = fn () => raise Fail "Truth_Result";
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  fun init _ = empty;
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);
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val put_truth = Truth_Result.put;
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val truth_cookie = (Truth_Result.get, put_truth, Long_Name.append this "put_truth");
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local
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val reject_vars = fn ctxt => tap (reject_vars ctxt o Thm.term_of);
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fun check_holds ctxt evaluator vs_t ct =
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  let
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    val t = Thm.term_of ct;
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    val _ = if fastype_of t <> propT
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      then error ("Not a proposition: " ^ Syntax.string_of_term ctxt t)
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      else ();
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    val iff = Thm.cterm_of ctxt (Term.Const (@{const_name Pure.eq}, propT --> propT --> propT));
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    val result = case partiality_as_none (run_computation_text truth_cookie ctxt evaluator vs_t [])
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     of SOME Holds => true
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      | _ => false;
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  in
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    Thm.mk_binop iff ct (if result then @{cprop "PROP Code_Generator.holds"} else ct)
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  end;
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val (_, raw_check_holds_oracle) = Context.>>> (Context.map_theory_result
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  (Thm.add_oracle (@{binding holds_by_evaluation},
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  fn (ctxt, evaluator, vs_t, ct) => check_holds ctxt evaluator vs_t ct)));
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fun check_holds_oracle ctxt evaluator vs_ty_t ct =
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  raw_check_holds_oracle (ctxt, evaluator, vs_ty_t, ct);
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in
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fun dynamic_holds_conv ctxt = Code_Thingol.dynamic_conv ctxt
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  (fn program => fn vs_t => fn deps =>
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    check_holds_oracle ctxt (build_computation_text ctxt NONE program deps) vs_t)
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      o reject_vars ctxt;
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fun static_holds_conv (ctxt_consts as { ctxt, ... }) =
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  Code_Thingol.static_conv_thingol ctxt_consts (fn { program, deps } => fn ctxt' => fn vs_t =>
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    K (check_holds_oracle ctxt' (build_computation_text ctxt NONE program (map Constant deps)) vs_t o reject_vars ctxt'));
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end; (*local*)
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(** fully static evaluation -- still with limited coverage! **)
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fun evaluation_code ctxt module_name program tycos consts =
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  let
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    val thy = Proof_Context.theory_of ctxt;
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    val (ml_modules, target_names) =
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      Code_Target.produce_code_for ctxt
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        target NONE module_name [] program false (map Constant consts @ map Type_Constructor tycos);
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    val ml_code = space_implode "\n\n" (map snd ml_modules);
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    val (consts', tycos') = chop (length consts) target_names;
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    val consts_map = map2 (fn const =>
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      fn NONE =>
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          error ("Constant " ^ (quote o Code.string_of_const thy) const ^
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            "\nhas a user-defined serialization")
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       | SOME const' => (const, const')) consts consts'
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    val tycos_map = map2 (fn tyco =>
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      fn NONE =>
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          error ("Type " ^ quote (Proof_Context.markup_type ctxt tyco) ^
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            "\nhas a user-defined serialization")
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        | SOME tyco' => (tyco, tyco')) tycos tycos';
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  in (ml_code, (tycos_map, consts_map)) end;
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fun typ_signatures_for T =
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  let
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    val (Ts, T') = strip_type T;
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  in map_range (fn n => (drop n Ts ---> T', take n Ts)) (length Ts + 1) end;
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fun typ_signatures cTs =
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  let
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    fun add (c, T) =
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      fold (fn (T, Ts) => Typtab.map_default (T, []) (cons (c, Ts)))
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        (typ_signatures_for T);
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  in
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    Typtab.empty
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    |> fold add cTs
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    |> Typtab.lookup_list
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  end;
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fun print_of_term_funs { typ_sign_for, ml_name_for_const, ml_name_for_typ } Ts =
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  let
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    val var_names = map_range (fn n => "t" ^ string_of_int (n + 1));
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    fun print_lhs c xs = "Const (" ^ quote c ^ ", _)"
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      |> fold (fn x => fn s => s ^ " $ " ^ x) xs
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      |> enclose "(" ")"
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      |> prefix "ctxt ";
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    fun print_rhs c Ts xs = ml_name_for_const c
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      |> fold2 (fn T => fn x => fn s =>
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         s ^ (" (" ^ ml_name_for_typ T ^ " ctxt " ^ x ^ ")")) Ts xs
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    fun print_eq (c, Ts) =
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      let
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        val xs = var_names (length Ts);
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      in print_lhs c xs ^ " = " ^ print_rhs c Ts xs end;
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    val err_eq =
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      "ctxt t = error (" ^ quote "Bad term: " ^ " ^ Syntax.string_of_term ctxt t)";
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    fun print_eqs T =
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      let
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        val typ_signs = typ_sign_for T;
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        val name = ml_name_for_typ T;
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      in
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        (map print_eq typ_signs @ [err_eq])
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        |> map (prefix (name ^ " "))
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        |> space_implode "\n  | "
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      end;
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  in
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    map print_eqs Ts
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    |> space_implode "\nand "
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    |> prefix "fun "
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    |> pair (map ml_name_for_typ Ts)
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  end;
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fun print_of_term ctxt ml_name_for_const T cTs =
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  let
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    val typ_sign_for = typ_signatures cTs;
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    fun add_typ T Ts =
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      if member (op =) Ts T
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      then Ts
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      else Ts
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        |> cons T
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        |> fold (fold add_typ o snd) (typ_sign_for T);
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    val Ts = add_typ T [];
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    fun tycos_of (Type (tyco, Ts)) = maps tycos_of Ts @ [tyco]
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      | tycos_of _ = [];
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    val ml_name_of = Name.desymbolize NONE o Long_Name.base_name;
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    val ml_names = map (suffix "_of_term" o space_implode "_" o map ml_name_of o tycos_of) Ts
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      |> Name.variant_list [];
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    val ml_name_for_typ = the o AList.lookup (op =) (Ts ~~ ml_names);
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  in
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    print_of_term_funs { typ_sign_for = typ_sign_for,
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      ml_name_for_const = ml_name_for_const,
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      ml_name_for_typ = ml_name_for_typ } Ts
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  end;
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fun compile_computation cookie ctxt cs_code cTs T { program, deps } =
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  let
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    val (context_code, (_, const_map)) =
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      evaluation_code ctxt structure_generated program [] cs_code;
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    val ml_name_for_const = the o AList.lookup (op =) const_map;
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    val (ml_names, of_term_code) = print_of_term ctxt ml_name_for_const T cTs
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    val of_term = value ctxt cookie (context_code ^ "\n" ^ of_term_code, List.last ml_names);
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  in
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    Code_Preproc.timed_value "computing" 
haftmann@63164
   307
      (fn ctxt' => fn t => fn _ => fn _ => Exn.interruptible_capture (of_term ctxt') t)
haftmann@63164
   308
  end;
haftmann@58558
   309
haftmann@63160
   310
fun fully_static_value_exn cookie { ctxt, lift_postproc, consts, T } =
haftmann@58558
   311
  let
haftmann@58558
   312
    val thy = Proof_Context.theory_of ctxt;
haftmann@58558
   313
    val cs_code = map (Axclass.unoverload_const thy) consts;
haftmann@58558
   314
    val cTs = map2 (fn (_, T) => fn c => (c, T)) consts cs_code;
haftmann@63160
   315
    val computation = Code_Thingol.static_value { ctxt = ctxt,
wenzelm@61077
   316
      lift_postproc = Exn.map_res o lift_postproc, consts = cs_code }
haftmann@63160
   317
      (compile_computation cookie ctxt cs_code cTs T);
haftmann@58558
   318
  in fn ctxt' =>
haftmann@63160
   319
    computation ctxt' o reject_vars ctxt' o Syntax.check_term ctxt' o Type.constraint T
haftmann@58558
   320
  end;
haftmann@58558
   321
haftmann@63160
   322
fun fully_static_value_strict cookie = Exn.release ooo fully_static_value_exn cookie;
haftmann@58643
   323
haftmann@63160
   324
fun fully_static_value cookie = partiality_as_none ooo fully_static_value_exn cookie;
haftmann@58643
   325
haftmann@58558
   326
haftmann@58558
   327
(** code antiquotation **)
haftmann@28054
   328
haftmann@28054
   329
local
haftmann@28054
   330
haftmann@38930
   331
structure Code_Antiq_Data = Proof_Data
haftmann@28054
   332
(
haftmann@38930
   333
  type T = (string list * string list) * (bool
haftmann@40421
   334
    * (string * (string * string) list) lazy);
wenzelm@59150
   335
  val empty: T = (([], []), (true, (Lazy.value ("", []))));
wenzelm@59150
   336
  fun init _ = empty;
haftmann@28054
   337
);
haftmann@28054
   338
haftmann@38930
   339
val is_first_occ = fst o snd o Code_Antiq_Data.get;
haftmann@28054
   340
haftmann@30962
   341
fun register_code new_tycos new_consts ctxt =
haftmann@28054
   342
  let
haftmann@38930
   343
    val ((tycos, consts), _) = Code_Antiq_Data.get ctxt;
haftmann@30962
   344
    val tycos' = fold (insert (op =)) new_tycos tycos;
haftmann@30962
   345
    val consts' = fold (insert (op =)) new_consts consts;
haftmann@63159
   346
    val program = Code_Thingol.consts_program ctxt consts';
haftmann@38930
   347
    val acc_code = Lazy.lazy (fn () =>
haftmann@58557
   348
      evaluation_code ctxt structure_generated program tycos' consts'
haftmann@40422
   349
      |> apsnd snd);
haftmann@38930
   350
  in Code_Antiq_Data.put ((tycos', consts'), (false, acc_code)) ctxt end;
haftmann@30962
   351
haftmann@30962
   352
fun register_const const = register_code [] [const];
haftmann@28054
   353
haftmann@40421
   354
fun print_code is_first const ctxt =
haftmann@30962
   355
  let
haftmann@38930
   356
    val (_, (_, acc_code)) = Code_Antiq_Data.get ctxt;
haftmann@40421
   357
    val (ml_code, consts_map) = Lazy.force acc_code;
haftmann@40422
   358
    val ml_code = if is_first then ml_code else "";
wenzelm@59127
   359
    val body = ML_Context.struct_name ctxt ^ "." ^ the (AList.lookup (op =) consts_map const);
wenzelm@41376
   360
  in (ml_code, body) end;
haftmann@28054
   361
haftmann@28054
   362
in
haftmann@28054
   363
wenzelm@56069
   364
fun ml_code_antiq raw_const ctxt =
haftmann@28054
   365
  let
wenzelm@53169
   366
    val thy = Proof_Context.theory_of ctxt;
wenzelm@53169
   367
    val const = Code.check_const thy raw_const;
wenzelm@53169
   368
    val is_first = is_first_occ ctxt;
wenzelm@56069
   369
  in (print_code is_first const, register_const const ctxt) end;
haftmann@30962
   370
haftmann@28054
   371
end; (*local*)
haftmann@28054
   372
haftmann@28054
   373
haftmann@58558
   374
(** reflection support **)
haftmann@36470
   375
haftmann@40421
   376
fun check_datatype thy tyco some_consts =
haftmann@36470
   377
  let
haftmann@63174
   378
    val declared_constrs = (map fst o snd o fst o Code.get_type thy) tyco;
haftmann@63174
   379
    val constrs = case some_consts
haftmann@63174
   380
     of SOME [] => []
haftmann@63174
   381
      | SOME consts =>
haftmann@40421
   382
          let
haftmann@63174
   383
            val missing_constrs = subtract (op =) consts declared_constrs;
haftmann@40421
   384
            val _ = if null missing_constrs then []
wenzelm@45430
   385
              else error ("Missing constructor(s) " ^ commas_quote missing_constrs
haftmann@40421
   386
                ^ " for datatype " ^ quote tyco);
haftmann@63174
   387
            val false_constrs = subtract (op =) declared_constrs consts;
haftmann@40421
   388
            val _ = if null false_constrs then []
wenzelm@45430
   389
              else error ("Non-constructor(s) " ^ commas_quote false_constrs
haftmann@40421
   390
                ^ " for datatype " ^ quote tyco)
haftmann@63174
   391
          in consts end
haftmann@63174
   392
      | NONE => declared_constrs;
haftmann@40421
   393
  in (tyco, constrs) end;
haftmann@36470
   394
haftmann@36470
   395
fun add_eval_tyco (tyco, tyco') thy =
haftmann@36470
   396
  let
haftmann@36470
   397
    val k = Sign.arity_number thy tyco;
haftmann@40421
   398
    fun pr pr' _ [] = tyco'
haftmann@40421
   399
      | pr pr' _ [ty] =
haftmann@36470
   400
          Code_Printer.concat [pr' Code_Printer.BR ty, tyco']
haftmann@40421
   401
      | pr pr' _ tys =
haftmann@36470
   402
          Code_Printer.concat [Code_Printer.enum "," "(" ")" (map (pr' Code_Printer.BR) tys), tyco']
haftmann@36470
   403
  in
haftmann@36470
   404
    thy
haftmann@55150
   405
    |> Code_Target.set_printings (Type_Constructor (tyco, [(target, SOME (k, pr))]))
haftmann@36470
   406
  end;
haftmann@36470
   407
haftmann@36514
   408
fun add_eval_constr (const, const') thy =
haftmann@36514
   409
  let
haftmann@36514
   410
    val k = Code.args_number thy const;
haftmann@36514
   411
    fun pr pr' fxy ts = Code_Printer.brackify fxy
haftmann@38922
   412
      (const' :: the_list (Code_Printer.tuplify pr' Code_Printer.BR (map fst ts)));
haftmann@36514
   413
  in
haftmann@36514
   414
    thy
haftmann@55150
   415
    |> Code_Target.set_printings (Constant (const,
haftmann@52435
   416
      [(target, SOME (Code_Printer.simple_const_syntax (k, pr)))]))
haftmann@36514
   417
  end;
haftmann@36514
   418
haftmann@55150
   419
fun add_eval_const (const, const') = Code_Target.set_printings (Constant
haftmann@52435
   420
  (const, [(target, SOME (Code_Printer.simple_const_syntax (0, (K o K o K) const')))]));
haftmann@36470
   421
haftmann@39912
   422
fun process_reflection (code, (tyco_map, (constr_map, const_map))) module_name NONE thy =
haftmann@38935
   423
      thy
haftmann@38935
   424
      |> Code_Target.add_reserved target module_name
haftmann@63163
   425
      |> Context.theory_map (compile_ML true code)
haftmann@38935
   426
      |> fold (add_eval_tyco o apsnd Code_Printer.str) tyco_map
haftmann@38935
   427
      |> fold (add_eval_constr o apsnd Code_Printer.str) constr_map
haftmann@38935
   428
      |> fold (add_eval_const o apsnd Code_Printer.str) const_map
haftmann@39912
   429
  | process_reflection (code, _) _ (SOME file_name) thy =
haftmann@36470
   430
      let
wenzelm@37950
   431
        val preamble =
wenzelm@46737
   432
          "(* Generated from " ^
wenzelm@56208
   433
            Path.implode (Resources.thy_path (Path.basic (Context.theory_name thy))) ^
wenzelm@46737
   434
          "; DO NOT EDIT! *)";
haftmann@39912
   435
        val _ = File.write (Path.explode file_name) (preamble ^ "\n\n" ^ code);
haftmann@36470
   436
      in
haftmann@36470
   437
        thy
haftmann@36470
   438
      end;
haftmann@36470
   439
haftmann@36470
   440
fun gen_code_reflect prep_type prep_const raw_datatypes raw_functions module_name some_file thy  =
haftmann@36470
   441
  let
haftmann@55757
   442
    val ctxt = Proof_Context.init_global thy;
haftmann@36470
   443
    val datatypes = map (fn (raw_tyco, raw_cos) =>
haftmann@55757
   444
      (prep_type ctxt raw_tyco, (Option.map o map) (prep_const thy) raw_cos)) raw_datatypes;
haftmann@40421
   445
    val (tycos, constrs) = map_split (uncurry (check_datatype thy)) datatypes
haftmann@40421
   446
      |> apsnd flat;
haftmann@36470
   447
    val functions = map (prep_const thy) raw_functions;
haftmann@58557
   448
    val consts = constrs @ functions;
haftmann@63159
   449
    val program = Code_Thingol.consts_program ctxt consts;
haftmann@58557
   450
    val result = evaluation_code ctxt module_name program tycos consts
haftmann@36514
   451
      |> (apsnd o apsnd) (chop (length constrs));
haftmann@36470
   452
  in
haftmann@36470
   453
    thy
haftmann@39485
   454
    |> process_reflection result module_name some_file
haftmann@36470
   455
  end;
haftmann@36470
   456
haftmann@39422
   457
val code_reflect = gen_code_reflect Code_Target.cert_tyco (K I);
haftmann@36470
   458
val code_reflect_cmd = gen_code_reflect Code_Target.read_tyco Code.read_const;
haftmann@36470
   459
haftmann@36470
   460
haftmann@28054
   461
(** Isar setup **)
haftmann@28054
   462
wenzelm@56069
   463
val _ =
wenzelm@56205
   464
  Theory.setup (ML_Antiquotation.declaration @{binding code} Args.term (fn _ => ml_code_antiq));
haftmann@28054
   465
haftmann@36470
   466
local
haftmann@36470
   467
wenzelm@36960
   468
val parse_datatype =
haftmann@63174
   469
  Parse.name -- Scan.optional (@{keyword "="} |--
haftmann@40711
   470
    (((Parse.sym_ident || Parse.string) >> (fn "_" => NONE | _ => Scan.fail ()))
haftmann@63174
   471
    || ((Parse.term ::: (Scan.repeat (@{keyword "|"} |-- Parse.term))) >> SOME))) (SOME []);
haftmann@36470
   472
haftmann@36470
   473
in
haftmann@36470
   474
haftmann@36470
   475
val _ =
wenzelm@59936
   476
  Outer_Syntax.command @{command_keyword code_reflect}
wenzelm@46961
   477
    "enrich runtime environment with generated code"
haftmann@63174
   478
    (Parse.name -- Scan.optional (@{keyword "datatypes"} |-- Parse.!!! (parse_datatype
wenzelm@46949
   479
      ::: Scan.repeat (@{keyword "and"} |-- parse_datatype))) []
haftmann@52434
   480
    -- Scan.optional (@{keyword "functions"} |-- Parse.!!!  (Scan.repeat1 Parse.name)) []
haftmann@52434
   481
    -- Scan.option (@{keyword "file"} |-- Parse.!!! Parse.name)
wenzelm@46961
   482
    >> (fn (((module_name, raw_datatypes), raw_functions), some_file) => Toplevel.theory
wenzelm@46961
   483
      (code_reflect_cmd raw_datatypes raw_functions module_name some_file)));
haftmann@36470
   484
haftmann@36470
   485
end; (*local*)
haftmann@36470
   486
haftmann@39816
   487
haftmann@39816
   488
(** using external SML files as substitute for proper definitions -- only for polyml!  **)
haftmann@39816
   489
haftmann@39816
   490
local
haftmann@39816
   491
wenzelm@39820
   492
structure Loaded_Values = Theory_Data
wenzelm@39820
   493
(
haftmann@39816
   494
  type T = string list
haftmann@39816
   495
  val empty = []
wenzelm@41472
   496
  val extend = I
wenzelm@39820
   497
  fun merge data : T = Library.merge (op =) data
haftmann@39816
   498
);
haftmann@39816
   499
haftmann@39816
   500
fun notify_val (string, value) = 
haftmann@39816
   501
  let
wenzelm@62495
   502
    val _ = #enterVal ML_Env.name_space (string, value);
wenzelm@53171
   503
    val _ = Theory.setup (Loaded_Values.map (insert (op =) string));
haftmann@39816
   504
  in () end;
haftmann@39816
   505
haftmann@39816
   506
fun abort _ = error "Only value bindings allowed.";
haftmann@39816
   507
wenzelm@62494
   508
val notifying_context : ML_Compiler0.context =
wenzelm@62354
   509
 {name_space =
wenzelm@62495
   510
   {lookupVal    = #lookupVal ML_Env.name_space,
wenzelm@62495
   511
    lookupType   = #lookupType ML_Env.name_space,
wenzelm@62495
   512
    lookupFix    = #lookupFix ML_Env.name_space,
wenzelm@62495
   513
    lookupStruct = #lookupStruct ML_Env.name_space,
wenzelm@62495
   514
    lookupSig    = #lookupSig ML_Env.name_space,
wenzelm@62495
   515
    lookupFunct  = #lookupFunct ML_Env.name_space,
haftmann@39816
   516
    enterVal     = notify_val,
haftmann@39816
   517
    enterType    = abort,
haftmann@39816
   518
    enterFix     = abort,
haftmann@39816
   519
    enterStruct  = abort,
haftmann@39816
   520
    enterSig     = abort,
haftmann@39816
   521
    enterFunct   = abort,
wenzelm@62495
   522
    allVal       = #allVal ML_Env.name_space,
wenzelm@62495
   523
    allType      = #allType ML_Env.name_space,
wenzelm@62495
   524
    allFix       = #allFix ML_Env.name_space,
wenzelm@62495
   525
    allStruct    = #allStruct ML_Env.name_space,
wenzelm@62495
   526
    allSig       = #allSig ML_Env.name_space,
wenzelm@62495
   527
    allFunct     = #allFunct ML_Env.name_space},
wenzelm@62716
   528
  print_depth = NONE,
wenzelm@62495
   529
  here = #here ML_Env.context,
wenzelm@62495
   530
  print = #print ML_Env.context,
wenzelm@62495
   531
  error = #error ML_Env.context};
haftmann@39816
   532
haftmann@39816
   533
in
haftmann@39816
   534
haftmann@39816
   535
fun use_file filepath thy =
haftmann@39816
   536
  let
haftmann@39816
   537
    val thy' = Loaded_Values.put [] thy;
wenzelm@62889
   538
    val _ = Context.put_generic_context ((SOME o Context.Theory) thy');
wenzelm@60956
   539
    val _ =
wenzelm@62902
   540
      ML_Compiler0.ML notifying_context
wenzelm@60956
   541
        {line = 0, file = Path.implode filepath, verbose = false, debug = false}
wenzelm@60956
   542
        (File.read filepath);
wenzelm@62876
   543
    val thy'' = Context.the_global_context ();
haftmann@39912
   544
    val names = Loaded_Values.get thy'';
haftmann@40320
   545
  in (names, thy'') end;
haftmann@39816
   546
haftmann@39816
   547
end;
haftmann@39816
   548
haftmann@39816
   549
fun add_definiendum (ml_name, (b, T)) thy =
haftmann@39816
   550
  thy
haftmann@39816
   551
  |> Code_Target.add_reserved target ml_name
wenzelm@63064
   552
  |> Specification.axiomatization [(b, SOME T, NoSyn)] [] []
haftmann@39816
   553
  |-> (fn ([Const (const, _)], _) =>
haftmann@55150
   554
    Code_Target.set_printings (Constant (const,
haftmann@52435
   555
      [(target, SOME (Code_Printer.simple_const_syntax (0, (K o K o K o Code_Printer.str) ml_name)))]))
haftmann@55757
   556
  #> tap (fn thy => Code_Target.produce_code (Proof_Context.init_global thy) false [const] target NONE structure_generated []));
haftmann@39816
   557
haftmann@39816
   558
fun process_file filepath (definienda, thy) =
haftmann@39816
   559
  let
haftmann@39816
   560
    val (ml_names, thy') = use_file filepath thy;
haftmann@39816
   561
    val superfluous = subtract (fn ((name1, _), name2) => name1 = name2) definienda ml_names;
haftmann@39816
   562
    val _ = if null superfluous then ()
haftmann@39816
   563
      else error ("Value binding(s) " ^ commas_quote superfluous
wenzelm@41944
   564
        ^ " found in external file " ^ Path.print filepath
haftmann@39816
   565
        ^ " not present among the given contants binding(s).");
haftmann@39816
   566
    val these_definienda = AList.make (the o AList.lookup (op =) definienda) ml_names;
haftmann@39816
   567
    val thy'' = fold add_definiendum these_definienda thy';
haftmann@39816
   568
    val definienda' = fold (AList.delete (op =)) ml_names definienda;
haftmann@39816
   569
  in (definienda', thy'') end;
haftmann@39816
   570
haftmann@39816
   571
fun polyml_as_definition bTs filepaths thy =
haftmann@39816
   572
  let
haftmann@39816
   573
    val definienda = map (fn bT => ((Binding.name_of o fst) bT, bT)) bTs;
haftmann@39816
   574
    val (remaining, thy') = fold process_file filepaths (definienda, thy);
haftmann@39816
   575
    val _ = if null remaining then ()
haftmann@39816
   576
      else error ("Constant binding(s) " ^ commas_quote (map fst remaining)
haftmann@39816
   577
        ^ " not present in external file(s).");
haftmann@39816
   578
  in thy' end;
haftmann@39816
   579
haftmann@28054
   580
end; (*struct*)