src/Pure/Isar/code.ML
author haftmann
Sun, 22 Feb 2009 18:00:05 +0100
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subalgebra: drop arities if desired
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(*  Title:      Pure/Isar/code.ML
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    Author:     Florian Haftmann, TU Muenchen
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Abstract executable content of theory.  Management of data dependent on
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executable content.  Cache assumes non-concurrent processing of a single theory.
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*)
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signature CODE =
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sig
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  val add_eqn: thm -> theory -> theory
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  val add_nonlinear_eqn: thm -> theory -> theory
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  val add_default_eqn: thm -> theory -> theory
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  val add_default_eqn_attribute: attribute
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  val add_default_eqn_attrib: Attrib.src
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  val del_eqn: thm -> theory -> theory
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  val del_eqns: string -> theory -> theory
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  val add_eqnl: string * (thm * bool) list lazy -> theory -> theory
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  val map_pre: (simpset -> simpset) -> theory -> theory
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  val map_post: (simpset -> simpset) -> theory -> theory
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  val add_inline: thm -> theory -> theory
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  val add_functrans: string * (theory -> (thm * bool) list -> (thm * bool) list option) -> theory -> theory
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  val del_functrans: string -> theory -> theory
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  val add_datatype: (string * typ) list -> theory -> theory
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  val add_datatype_cmd: string list -> theory -> theory
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  val type_interpretation:
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    (string * ((string * sort) list * (string * typ list) list)
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      -> theory -> theory) -> theory -> theory
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  val add_case: thm -> theory -> theory
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  val add_undefined: string -> theory -> theory
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  val purge_data: theory -> theory
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  val coregular_algebra: theory -> Sorts.algebra
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  val operational_algebra: theory -> (sort -> sort) * Sorts.algebra
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  val these_eqns: theory -> string -> (thm * bool) list
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  val these_raw_eqns: theory -> string -> (thm * bool) list
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  val get_datatype: theory -> string -> ((string * sort) list * (string * typ list) list)
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  val get_datatype_of_constr: theory -> string -> string option
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  val get_case_scheme: theory -> string -> (int * (int * string list)) option
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  val is_undefined: theory -> string -> bool
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  val default_typscheme: theory -> string -> (string * sort) list * typ
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  val preprocess_conv: theory -> cterm -> thm
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  val preprocess_term: theory -> term -> term
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  val postprocess_conv: theory -> cterm -> thm
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  val postprocess_term: theory -> term -> term
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  val add_attribute: string * (Args.T list -> attribute * Args.T list) -> theory -> theory
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  val print_codesetup: theory -> unit
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end;
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signature CODE_DATA_ARGS =
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sig
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  type T
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  val empty: T
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  val purge: theory -> string list -> T -> T
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end;
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signature CODE_DATA =
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sig
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  type T
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  val get: theory -> T
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  val change: theory -> (T -> T) -> T
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  val change_yield: theory -> (T -> 'a * T) -> 'a * T
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end;
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signature PRIVATE_CODE =
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  include CODE
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  val declare_data: Object.T -> (theory -> string list -> Object.T -> Object.T)
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    -> serial
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  val get_data: serial * ('a -> Object.T) * (Object.T -> 'a)
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    -> theory -> 'a
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  val change_data: serial * ('a -> Object.T) * (Object.T -> 'a)
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    -> theory -> ('a -> 'a) -> 'a
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  val change_yield_data: serial * ('a -> Object.T) * (Object.T -> 'a)
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    -> theory -> ('a -> 'b * 'a) -> 'b * 'a
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end;
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structure Code : PRIVATE_CODE =
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struct
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(** code attributes **)
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structure CodeAttr = TheoryDataFun (
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  type T = (string * (Args.T list -> attribute * Args.T list)) list;
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  val empty = [];
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  val copy = I;
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  val extend = I;
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  fun merge _ = AList.merge (op = : string * string -> bool) (K true);
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);
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fun add_attribute (attr as (name, _)) =
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  let
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    fun add_parser ("", parser) attrs = attrs |> rev |> AList.update (op =) ("", parser) |> rev
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      | add_parser (name, parser) attrs = (name, Args.$$$ name |-- parser) :: attrs;
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  in CodeAttr.map (fn attrs => if not (name = "") andalso AList.defined (op =) attrs name
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    then error ("Code attribute " ^ name ^ " already declared") else add_parser attr attrs)
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  end;
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val _ =
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  let
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    val code_attr = Attrib.syntax (Scan.peek (fn context =>
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      List.foldr op || Scan.fail (map snd (CodeAttr.get (Context.theory_of context)))));
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  in
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    Context.>> (Context.map_theory
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      (Attrib.add_attributes
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        [("code", code_attr, "declare theorems for code generation")]))
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  end;
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(** logical and syntactical specification of executable code **)
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(* code equations *)
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type eqns = bool * (thm * bool) list lazy;
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  (*default flag, theorems with linear flag (perhaps lazy)*)
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fun pretty_lthms ctxt r = case Lazy.peek r
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 of SOME thms => map (ProofContext.pretty_thm ctxt o fst) (Exn.release thms)
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  | NONE => [Pretty.str "[...]"];
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fun certificate thy f r =
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  case Lazy.peek r
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   of SOME thms => (Lazy.value o f thy) (Exn.release thms)
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    | NONE => let
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        val thy_ref = Theory.check_thy thy;
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      in Lazy.lazy (fn () => (f (Theory.deref thy_ref) o Lazy.force) r) end;
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fun add_drop_redundant thy (thm, linear) thms =
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  let
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    val args_of = snd o strip_comb o fst o Logic.dest_equals o Thm.plain_prop_of;
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    val args = args_of thm;
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    val incr_idx = Logic.incr_indexes ([], Thm.maxidx_of thm + 1);
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    fun matches_args args' = length args <= length args' andalso
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      Pattern.matchess thy (args, (map incr_idx o curry Library.take (length args)) args');
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    fun drop (thm', linear') = if (linear orelse not linear')
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      andalso matches_args (args_of thm') then 
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        (warning ("Code generator: dropping redundant code equation\n" ^ Display.string_of_thm thm'); true)
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      else false;
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  in (thm, linear) :: filter_out drop thms end;
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fun add_thm thy _ thm (false, thms) = (false, Lazy.map_force (add_drop_redundant thy thm) thms)
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  | add_thm thy true thm (true, thms) = (true, Lazy.map_force (fn thms => thms @ [thm]) thms)
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  | add_thm thy false thm (true, thms) = (false, Lazy.value [thm]);
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fun add_lthms lthms _ = (false, lthms);
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fun del_thm thm = (apsnd o Lazy.map_force) (remove (eq_fst Thm.eq_thm_prop) (thm, true));
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(* specification data *)
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datatype spec = Spec of {
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  concluded_history: bool,
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  eqns: ((bool * eqns) * (serial * eqns) list) Symtab.table
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    (*with explicit history*),
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  dtyps: ((serial * ((string * sort) list * (string * typ list) list)) list) Symtab.table
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    (*with explicit history*),
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  cases: (int * string list) Symtab.table * unit Symtab.table
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};
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fun mk_spec ((concluded_history, eqns), (dtyps, cases)) =
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  Spec { concluded_history = concluded_history, eqns = eqns, dtyps = dtyps, cases = cases };
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fun map_spec f (Spec { concluded_history = concluded_history, eqns = eqns,
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  dtyps = dtyps, cases = cases }) =
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  mk_spec (f ((concluded_history, eqns), (dtyps, cases)));
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fun merge_spec (Spec { concluded_history = _, eqns = eqns1, dtyps = dtyps1, cases = (cases1, undefs1) },
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  Spec { concluded_history = _, eqns = eqns2, dtyps = dtyps2, cases = (cases2, undefs2) }) =
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  let
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    fun merge_eqns ((_, history1), (_, history2)) =
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      let
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        val raw_history = AList.merge (op =) (K true) (history1, history2)
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        val filtered_history = filter_out (fst o snd) raw_history
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        val history = if null filtered_history
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          then raw_history else filtered_history;
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      in ((false, (snd o hd) history), history) end;
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    val eqns = Symtab.join (K merge_eqns) (eqns1, eqns2);
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    val dtyps = Symtab.join (K (AList.merge (op =) (K true))) (dtyps1, dtyps2);
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    val cases = (Symtab.merge (K true) (cases1, cases2),
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      Symtab.merge (K true) (undefs1, undefs2));
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  in mk_spec ((false, eqns), (dtyps, cases)) end;
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(* pre- and postprocessor *)
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datatype thmproc = Thmproc of {
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  pre: simpset,
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  post: simpset,
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  functrans: (string * (serial * (theory -> (thm * bool) list -> (thm * bool) list option))) list
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};
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fun mk_thmproc ((pre, post), functrans) =
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  Thmproc { pre = pre, post = post, functrans = functrans };
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fun map_thmproc f (Thmproc { pre, post, functrans }) =
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  mk_thmproc (f ((pre, post), functrans));
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fun merge_thmproc (Thmproc { pre = pre1, post = post1, functrans = functrans1 },
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  Thmproc { pre = pre2, post = post2, functrans = functrans2 }) =
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    let
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      val pre = Simplifier.merge_ss (pre1, pre2);
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      val post = Simplifier.merge_ss (post1, post2);
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      val functrans = AList.merge (op =) (eq_fst (op =)) (functrans1, functrans2);
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    in mk_thmproc ((pre, post), functrans) end;
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datatype exec = Exec of {
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  thmproc: thmproc,
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  spec: spec
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};
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(* code setup data *)
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fun mk_exec (thmproc, spec) =
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  Exec { thmproc = thmproc, spec = spec };
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fun map_exec f (Exec { thmproc = thmproc, spec = spec }) =
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  mk_exec (f (thmproc, spec));
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fun merge_exec (Exec { thmproc = thmproc1, spec = spec1 },
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  Exec { thmproc = thmproc2, spec = spec2 }) =
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  let
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    val thmproc = merge_thmproc (thmproc1, thmproc2);
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    val spec = merge_spec (spec1, spec2);
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  in mk_exec (thmproc, spec) end;
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val empty_exec = mk_exec (mk_thmproc ((Simplifier.empty_ss, Simplifier.empty_ss), []),
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  mk_spec ((false, Symtab.empty), (Symtab.empty, (Symtab.empty, Symtab.empty))));
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fun the_thmproc (Exec { thmproc = Thmproc x, ...}) = x;
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fun the_spec (Exec { spec = Spec x, ...}) = x;
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val the_eqns = #eqns o the_spec;
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val the_dtyps = #dtyps o the_spec;
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val the_cases = #cases o the_spec;
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val map_thmproc = map_exec o apfst o map_thmproc;
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val map_concluded_history = map_exec o apsnd o map_spec o apfst o apfst;
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val map_eqns = map_exec o apsnd o map_spec o apfst o apsnd;
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val map_dtyps = map_exec o apsnd o map_spec o apsnd o apfst;
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val map_cases = map_exec o apsnd o map_spec o apsnd o apsnd;
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(* data slots dependent on executable content *)
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(*private copy avoids potential conflict of table exceptions*)
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structure Datatab = TableFun(type key = int val ord = int_ord);
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local
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type kind = {
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  empty: Object.T,
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  purge: theory -> string list -> Object.T -> Object.T
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};
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val kinds = ref (Datatab.empty: kind Datatab.table);
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val kind_keys = ref ([]: serial list);
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fun invoke f k = case Datatab.lookup (! kinds) k
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 of SOME kind => f kind
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  | NONE => sys_error "Invalid code data identifier";
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in
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fun declare_data empty purge =
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  let
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    val k = serial ();
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    val kind = {empty = empty, purge = purge};
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    val _ = change kinds (Datatab.update (k, kind));
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    val _ = change kind_keys (cons k);
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  in k end;
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fun invoke_init k = invoke (fn kind => #empty kind) k;
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fun invoke_purge_all thy cs =
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  fold (fn k => Datatab.map_entry k
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    (invoke (fn kind => #purge kind thy cs) k)) (! kind_keys);
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end; (*local*)
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(** theory store **)
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local
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type data = Object.T Datatab.table;
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val empty_data = Datatab.empty : data;
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structure CodeData = TheoryDataFun
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(
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  type T = exec * data ref;
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  val empty = (empty_exec, ref empty_data);
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  fun copy (exec, data) = (exec, ref (! data));
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  val extend = copy;
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  fun merge pp ((exec1, data1), (exec2, data2)) =
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    (merge_exec (exec1, exec2), ref empty_data);
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);
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fun thy_data f thy = f ((snd o CodeData.get) thy);
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fun get_ensure_init kind data_ref =
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  case Datatab.lookup (! data_ref) kind
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   of SOME x => x
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    | NONE => let val y = invoke_init kind
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        in (change data_ref (Datatab.update (kind, y)); y) end;
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in
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(* access to executable content *)
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val the_exec = fst o CodeData.get;
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fun complete_class_params thy cs =
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  fold (fn c => case AxClass.inst_of_param thy c
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   of NONE => insert (op =) c
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    | SOME (c', _) => insert (op =) c' #> insert (op =) c) cs [];
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fun map_exec_purge touched f thy =
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  CodeData.map (fn (exec, data) => (f exec, ref (case touched
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   of SOME cs => invoke_purge_all thy (complete_class_params thy cs) (! data)
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    | NONE => empty_data))) thy;
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val purge_data = (CodeData.map o apsnd) (K (ref empty_data));
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(* tackling equation history *)
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fun get_eqns thy c =
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  Symtab.lookup ((the_eqns o the_exec) thy) c
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  |> Option.map (Lazy.force o snd o snd o fst)
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  |> these;
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fun continue_history thy = if (#concluded_history o the_spec o the_exec) thy
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  then thy
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    |> (CodeData.map o apfst o map_concluded_history) (K false)
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    |> SOME
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  else NONE;
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fun conclude_history thy = if (#concluded_history o the_spec o the_exec) thy
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  then NONE
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  else thy
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    |> (CodeData.map o apfst)
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        ((map_eqns o Symtab.map) (fn ((changed, current), history) =>
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          ((false, current),
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            if changed then (serial (), current) :: history else history))
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        #> map_concluded_history (K true))
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    |> SOME;
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val _ = Context.>> (Context.map_theory (CodeData.init
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  #> Theory.at_begin continue_history
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  #> Theory.at_end conclude_history));
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(* access to data dependent on abstract executable content *)
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fun get_data (kind, _, dest) = thy_data (get_ensure_init kind #> dest);
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fun change_data (kind, mk, dest) =
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  let
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    fun chnge data_ref f =
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      let
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        val data = get_ensure_init kind data_ref;
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        val data' = f (dest data);
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      in (change data_ref (Datatab.update (kind, mk data')); data') end;
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  in thy_data chnge end;
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   361
fun change_yield_data (kind, mk, dest) =
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  let
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    fun chnge data_ref f =
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      let
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   365
        val data = get_ensure_init kind data_ref;
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        val (x, data') = f (dest data);
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      in (x, (change data_ref (Datatab.update (kind, mk data')); data')) end;
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  in thy_data chnge end;
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end; (*local*)
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(* print executable content *)
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fun print_codesetup thy =
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  let
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    val ctxt = ProofContext.init thy;
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    val exec = the_exec thy;
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    fun pretty_eqn (s, (_, lthms)) =
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      (Pretty.block o Pretty.fbreaks) (
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        Pretty.str s :: pretty_lthms ctxt lthms
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      );
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   383
    fun pretty_dtyp (s, []) =
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   384
          Pretty.str s
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   385
      | pretty_dtyp (s, cos) =
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          (Pretty.block o Pretty.breaks) (
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            Pretty.str s
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            :: Pretty.str "="
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            :: separate (Pretty.str "|") (map (fn (c, []) => Pretty.str (Code_Unit.string_of_const thy c)
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                 | (c, tys) =>
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                     (Pretty.block o Pretty.breaks)
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                        (Pretty.str (Code_Unit.string_of_const thy c)
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   393
                          :: Pretty.str "of"
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                          :: map (Pretty.quote o Syntax.pretty_typ_global thy) tys)) cos)
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          );
27557
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
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    val pre = (#pre o the_thmproc) exec;
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   397
    val post = (#post o the_thmproc) exec;
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   398
    val functrans = (map fst o #functrans o the_thmproc) exec;
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8437fb395294 clarified function transformator interface
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   399
    val eqns = the_eqns exec
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
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   400
      |> Symtab.dest
28054
2b84d34c5d02 restructured and split code serializer module
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   401
      |> (map o apfst) (Code_Unit.string_of_const thy)
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   402
      |> (map o apsnd) (snd o fst)
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   403
      |> sort (string_ord o pairself fst);
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haftmann
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   404
    val dtyps = the_dtyps exec
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   405
      |> Symtab.dest
28695
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haftmann
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diff changeset
   406
      |> map (fn (dtco, (_, (vs, cos)) :: _) =>
26947
133905a0c493 moved global pretty/string_of functions from Sign to Syntax;
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   407
          (Syntax.string_of_typ_global thy (Type (dtco, map TFree vs)), cos))
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      |> sort (string_ord o pairself fst)
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   409
  in
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haftmann
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   410
    (Pretty.writeln o Pretty.chunks) [
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   411
      Pretty.block (
30023
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   412
        Pretty.str "code equations:"
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   413
        :: Pretty.fbrk
28368
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   414
        :: (Pretty.fbreaks o map pretty_eqn) eqns
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   415
      ),
27557
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   416
      Pretty.block [
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   417
        Pretty.str "preprocessing simpset:",
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   418
        Pretty.fbrk,
29302
eb782d1dc07c normalized some ML type/val aliases;
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parents: 28971
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   419
        Simplifier.pretty_ss pre
27557
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diff changeset
   420
      ],
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
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diff changeset
   421
      Pretty.block [
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
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   422
        Pretty.str "postprocessing simpset:",
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   423
        Pretty.fbrk,
29302
eb782d1dc07c normalized some ML type/val aliases;
wenzelm
parents: 28971
diff changeset
   424
        Simplifier.pretty_ss post
27557
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diff changeset
   425
      ],
24219
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   426
      Pretty.block (
27609
b23c9ad0fe7d tuned code theorem bookkeeping
haftmann
parents: 27582
diff changeset
   427
        Pretty.str "function transformers:"
24219
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haftmann
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   428
        :: Pretty.fbrk
27557
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
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diff changeset
   429
        :: (Pretty.fbreaks o map Pretty.str) functrans
25968
66cfe1d00be0 print postprocessor equations
haftmann
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diff changeset
   430
      ),
66cfe1d00be0 print postprocessor equations
haftmann
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diff changeset
   431
      Pretty.block (
24219
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haftmann
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diff changeset
   432
        Pretty.str "datatypes:"
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haftmann
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diff changeset
   433
        :: Pretty.fbrk
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haftmann
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   434
        :: (Pretty.fbreaks o map pretty_dtyp) dtyps
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   435
      )
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   436
    ]
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   437
  end;
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   438
e558fe311376 new structure for code generator modules
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diff changeset
   439
e558fe311376 new structure for code generator modules
haftmann
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diff changeset
   440
(** theorem transformation and certification **)
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haftmann
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diff changeset
   441
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   442
fun common_typ_eqns thy [] = []
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   443
  | common_typ_eqns thy [thm] = [thm]
9fc3befd8191 clarified codegen interfaces
haftmann
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diff changeset
   444
  | common_typ_eqns thy (thms as thm :: _) = (*FIXME is too general*)
24219
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   445
      let
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haftmann
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   446
        fun incr_thm thm max =
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haftmann
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   447
          let
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haftmann
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   448
            val thm' = incr_indexes max thm;
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haftmann
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   449
            val max' = Thm.maxidx_of thm' + 1;
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haftmann
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   450
          in (thm', max') end;
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haftmann
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diff changeset
   451
        val (thms', maxidx) = fold_map incr_thm thms 0;
28423
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diff changeset
   452
        val ty1 :: tys = map (snd o Code_Unit.const_typ_eqn) thms';
24219
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haftmann
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diff changeset
   453
        fun unify ty env = Sign.typ_unify thy (ty1, ty) env
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haftmann
parents:
diff changeset
   454
          handle Type.TUNIFY =>
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
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diff changeset
   455
            error ("Type unificaton failed, while unifying code equations\n"
24219
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haftmann
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   456
            ^ (cat_lines o map Display.string_of_thm) thms
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haftmann
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diff changeset
   457
            ^ "\nwith types\n"
28054
2b84d34c5d02 restructured and split code serializer module
haftmann
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diff changeset
   458
            ^ (cat_lines o map (Code_Unit.string_of_typ thy)) (ty1 :: tys));
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   459
        val (env, _) = fold unify tys (Vartab.empty, maxidx)
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haftmann
parents:
diff changeset
   460
        val instT = Vartab.fold (fn (x_i, (sort, ty)) =>
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haftmann
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diff changeset
   461
          cons (Thm.ctyp_of thy (TVar (x_i, sort)), Thm.ctyp_of thy ty)) env [];
e558fe311376 new structure for code generator modules
haftmann
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   462
      in map (Thm.instantiate (instT, [])) thms' end;
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haftmann
parents:
diff changeset
   463
28423
9fc3befd8191 clarified codegen interfaces
haftmann
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diff changeset
   464
fun check_linear (eqn as (thm, linear)) =
9fc3befd8191 clarified codegen interfaces
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diff changeset
   465
  if linear then eqn else Code_Unit.bad_thm
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   466
    ("Duplicate variables on left hand side of code equation:\n"
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   467
      ^ Display.string_of_thm thm);
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   468
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   469
fun mk_eqn thy linear =
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   470
  Code_Unit.error_thm ((if linear then check_linear else I) o Code_Unit.mk_eqn thy);
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   471
fun mk_syntactic_eqn thy = Code_Unit.warning_thm (Code_Unit.mk_eqn thy);
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   472
fun mk_default_eqn thy = Code_Unit.try_thm (check_linear o Code_Unit.mk_eqn thy);
24219
e558fe311376 new structure for code generator modules
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   473
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haftmann
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   474
e558fe311376 new structure for code generator modules
haftmann
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   475
(** operational sort algebra and class discipline **)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   476
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   477
local
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haftmann
parents:
diff changeset
   478
28423
9fc3befd8191 clarified codegen interfaces
haftmann
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diff changeset
   479
fun arity_constraints thy algebra (class, tyco) =
24219
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haftmann
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   480
  let
28423
9fc3befd8191 clarified codegen interfaces
haftmann
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diff changeset
   481
    val base_constraints = Sorts.mg_domain algebra tyco [class];
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   482
    val classparam_constraints = Sorts.complete_sort algebra [class]
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   483
      |> maps (map fst o these o try (#params o AxClass.get_info thy))
25597
34860182b250 moved instance parameter management from class.ML to axclass.ML
haftmann
parents: 25501
diff changeset
   484
      |> map_filter (fn c => try (AxClass.param_of_inst thy) (c, tyco))
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   485
      |> maps (map fst o get_eqns thy)
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   486
      |> map (map (snd o dest_TVar) o Sign.const_typargs thy o Code_Unit.const_typ_eqn);
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   487
    val inter_sorts = map2 (curry (Sorts.inter_sort algebra));
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   488
  in fold inter_sorts classparam_constraints base_constraints end;
24219
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haftmann
parents:
diff changeset
   489
e558fe311376 new structure for code generator modules
haftmann
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diff changeset
   490
fun retrieve_algebra thy operational =
26947
133905a0c493 moved global pretty/string_of functions from Sign to Syntax;
wenzelm
parents: 26928
diff changeset
   491
  Sorts.subalgebra (Syntax.pp_global thy) operational
30060
672012330c4e subalgebra: drop arities if desired
haftmann
parents: 30023
diff changeset
   492
    (SOME o arity_constraints thy (Sign.classes_of thy))
24219
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haftmann
parents:
diff changeset
   493
    (Sign.classes_of thy);
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haftmann
parents:
diff changeset
   494
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   495
in
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haftmann
parents:
diff changeset
   496
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   497
fun coregular_algebra thy = retrieve_algebra thy (K true) |> snd;
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haftmann
parents:
diff changeset
   498
fun operational_algebra thy =
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haftmann
parents:
diff changeset
   499
  let
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haftmann
parents:
diff changeset
   500
    fun add_iff_operational class =
24928
3419943838f5 renamed AxClass.get_definition to AxClass.get_info (again);
wenzelm
parents: 24848
diff changeset
   501
      can (AxClass.get_info thy) class ? cons class;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   502
    val operational_classes = fold add_iff_operational (Sign.all_classes thy) []
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   503
  in retrieve_algebra thy (member (op =) operational_classes) end;
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haftmann
parents:
diff changeset
   504
28143
e5c6c4aac52c different bookkeeping for code equations
haftmann
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diff changeset
   505
end; (*local*)
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   506
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   507
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   508
(** interfaces and attributes **)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   509
24624
b8383b1bbae3 distinction between regular and default code theorems
haftmann
parents: 24585
diff changeset
   510
fun delete_force msg key xs =
b8383b1bbae3 distinction between regular and default code theorems
haftmann
parents: 24585
diff changeset
   511
  if AList.defined (op =) xs key then AList.delete (op =) key xs
b8383b1bbae3 distinction between regular and default code theorems
haftmann
parents: 24585
diff changeset
   512
  else error ("No such " ^ msg ^ ": " ^ quote key);
b8383b1bbae3 distinction between regular and default code theorems
haftmann
parents: 24585
diff changeset
   513
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   514
fun get_datatype thy tyco =
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   515
  case these (Symtab.lookup ((the_dtyps o the_exec) thy) tyco)
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   516
   of (_, spec) :: _ => spec
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   517
    | [] => Sign.arity_number thy tyco
24848
5dbbd33c3236 replaced literal 'a by Name.aT;
wenzelm
parents: 24844
diff changeset
   518
        |> Name.invents Name.context Name.aT
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   519
        |> map (rpair [])
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   520
        |> rpair [];
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   521
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   522
fun get_datatype_of_constr thy c =
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   523
  case (snd o strip_type o Sign.the_const_type thy) c
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   524
   of Type (tyco, _) => if member (op =) ((map fst o snd o get_datatype thy) tyco) c
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   525
       then SOME tyco else NONE
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   526
    | _ => NONE;
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   527
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   528
fun recheck_eqn thy = Code_Unit.error_thm
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   529
  (Code_Unit.assert_linear (is_some o get_datatype_of_constr thy) o apfst (Code_Unit.assert_eqn thy));
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   530
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   531
fun recheck_eqns_const thy c eqns =
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   532
  let
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   533
    fun cert (eqn as (thm, _)) = if c = Code_Unit.const_eqn thm
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   534
      then eqn else error ("Wrong head of code equation,\nexpected constant "
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   535
        ^ Code_Unit.string_of_const thy c ^ "\n" ^ Display.string_of_thm thm)
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   536
  in map (cert o recheck_eqn thy) eqns end;
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   537
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   538
fun change_eqns delete c f = (map_exec_purge (SOME [c]) o map_eqns
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   539
  o (if delete then Symtab.map_entry c else Symtab.map_default (c, ((false, (true, Lazy.value [])), [])))
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   540
    o apfst) (fn (_, eqns) => (true, f eqns));
24844
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   541
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   542
fun gen_add_eqn linear default thm thy =
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   543
  case (if default then mk_default_eqn thy else SOME o mk_eqn thy linear) thm
28368
8437fb395294 clarified function transformator interface
haftmann
parents: 28359
diff changeset
   544
   of SOME (thm, _) =>
28143
e5c6c4aac52c different bookkeeping for code equations
haftmann
parents: 28054
diff changeset
   545
        let
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   546
          val c = Code_Unit.const_eqn thm;
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   547
          val _ = if not default andalso (is_some o AxClass.class_of_param thy) c
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   548
            then error ("Rejected polymorphic code equation for overloaded constant:\n"
28143
e5c6c4aac52c different bookkeeping for code equations
haftmann
parents: 28054
diff changeset
   549
              ^ Display.string_of_thm thm)
e5c6c4aac52c different bookkeeping for code equations
haftmann
parents: 28054
diff changeset
   550
            else ();
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   551
          val _ = if not default andalso (is_some o get_datatype_of_constr thy) c
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   552
            then error ("Rejected code equation for datatype constructor:\n"
28368
8437fb395294 clarified function transformator interface
haftmann
parents: 28359
diff changeset
   553
              ^ Display.string_of_thm thm)
28143
e5c6c4aac52c different bookkeeping for code equations
haftmann
parents: 28054
diff changeset
   554
            else ();
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   555
        in change_eqns false c (add_thm thy default (thm, linear)) thy end
24624
b8383b1bbae3 distinction between regular and default code theorems
haftmann
parents: 24585
diff changeset
   556
    | NONE => thy;
b8383b1bbae3 distinction between regular and default code theorems
haftmann
parents: 24585
diff changeset
   557
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   558
val add_eqn = gen_add_eqn true false;
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   559
val add_default_eqn = gen_add_eqn true true;
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   560
val add_nonlinear_eqn = gen_add_eqn false false;
26021
25d06476727e explicit del_funcs
haftmann
parents: 25968
diff changeset
   561
28368
8437fb395294 clarified function transformator interface
haftmann
parents: 28359
diff changeset
   562
fun add_eqnl (c, lthms) thy =
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   563
  let
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   564
    val lthms' = certificate thy (fn thy => recheck_eqns_const thy c) lthms;
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   565
  in change_eqns false c (add_lthms lthms') thy end;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   566
28703
aef727ef30e5 cleanup code default attribute
haftmann
parents: 28695
diff changeset
   567
val add_default_eqn_attribute = Thm.declaration_attribute
aef727ef30e5 cleanup code default attribute
haftmann
parents: 28695
diff changeset
   568
  (fn thm => Context.mapping (add_default_eqn thm) I);
aef727ef30e5 cleanup code default attribute
haftmann
parents: 28695
diff changeset
   569
val add_default_eqn_attrib = Attrib.internal (K add_default_eqn_attribute);
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   570
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   571
fun del_eqn thm thy = case mk_syntactic_eqn thy thm
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   572
 of SOME (thm, _) => change_eqns true (Code_Unit.const_eqn thm) (del_thm thm) thy
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   573
  | NONE => thy;
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   574
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   575
fun del_eqns c = change_eqns true c (K (false, Lazy.value []));
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   576
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   577
fun get_case_scheme thy c = case Symtab.lookup ((fst o the_cases o the_exec) thy) c
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   578
 of SOME (base_case_scheme as (_, case_pats)) =>
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   579
      if forall (is_some o get_datatype_of_constr thy) case_pats
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   580
      then SOME (1 + Int.max (1, length case_pats), base_case_scheme)
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   581
      else NONE
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   582
  | NONE => NONE;
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   583
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   584
val is_undefined = Symtab.defined o snd o the_cases o the_exec;
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   585
25485
33840a854e63 tuned interfaces of class module
haftmann
parents: 25462
diff changeset
   586
structure TypeInterpretation = InterpretationFun(type T = string * serial val eq = eq_snd (op =) : T * T -> bool);
25462
dad0291cb76a rudimentary instantiation target
haftmann
parents: 25312
diff changeset
   587
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   588
fun add_datatype raw_cs thy =
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   589
  let
25597
34860182b250 moved instance parameter management from class.ML to axclass.ML
haftmann
parents: 25501
diff changeset
   590
    val cs = map (fn c_ty as (_, ty) => (AxClass.unoverload_const thy c_ty, ty)) raw_cs;
28054
2b84d34c5d02 restructured and split code serializer module
haftmann
parents: 27983
diff changeset
   591
    val (tyco, vs_cos) = Code_Unit.constrset_of_consts thy cs;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   592
  in
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   593
    thy
28703
aef727ef30e5 cleanup code default attribute
haftmann
parents: 28695
diff changeset
   594
    |> map_exec_purge NONE
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   595
        ((map_dtyps o Symtab.map_default (tyco, [])) (cons (serial (), vs_cos))
28368
8437fb395294 clarified function transformator interface
haftmann
parents: 28359
diff changeset
   596
        #> map_eqns (fold (Symtab.delete_safe o fst) cs))
25485
33840a854e63 tuned interfaces of class module
haftmann
parents: 25462
diff changeset
   597
    |> TypeInterpretation.data (tyco, serial ())
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   598
  end;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   599
25485
33840a854e63 tuned interfaces of class module
haftmann
parents: 25462
diff changeset
   600
fun type_interpretation f =  TypeInterpretation.interpretation
33840a854e63 tuned interfaces of class module
haftmann
parents: 25462
diff changeset
   601
  (fn (tyco, _) => fn thy => f (tyco, get_datatype thy tyco) thy);
33840a854e63 tuned interfaces of class module
haftmann
parents: 25462
diff changeset
   602
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   603
fun add_datatype_cmd raw_cs thy =
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   604
  let
28054
2b84d34c5d02 restructured and split code serializer module
haftmann
parents: 27983
diff changeset
   605
    val cs = map (Code_Unit.read_bare_const thy) raw_cs;
24423
ae9cd0e92423 overloaded definitions accompanied by explicit constants
haftmann
parents: 24283
diff changeset
   606
  in add_datatype cs thy end;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   607
24844
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   608
fun add_case thm thy =
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   609
  let
28054
2b84d34c5d02 restructured and split code serializer module
haftmann
parents: 27983
diff changeset
   610
    val entry as (c, _) = Code_Unit.case_cert thm;
24844
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   611
  in
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   612
    (map_exec_purge (SOME [c]) o map_cases o apfst) (Symtab.update entry) thy
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   613
  end;
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   614
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   615
fun add_undefined c thy =
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   616
  (map_exec_purge (SOME [c]) o map_cases o apsnd) (Symtab.update (c, ())) thy;
98c006a30218 certificates for code generator case expressions
haftmann
parents: 24837
diff changeset
   617
27557
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   618
val map_pre = map_exec_purge NONE o map_thmproc o apfst o apfst;
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   619
val map_post = map_exec_purge NONE o map_thmproc o apfst o apsnd;
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   620
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   621
val add_inline = map_pre o MetaSimplifier.add_simp;
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   622
val del_inline = map_pre o MetaSimplifier.del_simp;
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   623
val add_post = map_post o MetaSimplifier.add_simp;
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   624
val del_post = map_post o MetaSimplifier.del_simp;
27557
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   625
  
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   626
fun add_functrans (name, f) =
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   627
  (map_exec_purge NONE o map_thmproc o apsnd)
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   628
    (AList.update (op =) (name, (serial (), f)));
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   629
27557
151731493264 simpsets as pre/postprocessors; generic preprocessor now named function transformators
haftmann
parents: 26970
diff changeset
   630
fun del_functrans name =
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   631
  (map_exec_purge NONE o map_thmproc o apsnd)
27609
b23c9ad0fe7d tuned code theorem bookkeeping
haftmann
parents: 27582
diff changeset
   632
    (delete_force "function transformer" name);
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   633
26463
9283b4185fdf Context.>> : operate on Context.generic;
wenzelm
parents: 26435
diff changeset
   634
val _ = Context.>> (Context.map_theory
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   635
  (let
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   636
    fun mk_attribute f = Thm.declaration_attribute (fn thm => Context.mapping (f thm) I);
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   637
    fun add_simple_attribute (name, f) =
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   638
      add_attribute (name, Scan.succeed (mk_attribute f));
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   639
    fun add_del_attribute (name, (add, del)) =
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   640
      add_attribute (name, Args.del |-- Scan.succeed (mk_attribute del)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   641
        || Scan.succeed (mk_attribute add))
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   642
  in
25462
dad0291cb76a rudimentary instantiation target
haftmann
parents: 25312
diff changeset
   643
    TypeInterpretation.init
28562
4e74209f113e `code func` now just `code`
haftmann
parents: 28525
diff changeset
   644
    #> add_del_attribute ("", (add_eqn, del_eqn))
28368
8437fb395294 clarified function transformator interface
haftmann
parents: 28359
diff changeset
   645
    #> add_simple_attribute ("nbe", add_nonlinear_eqn)
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   646
    #> add_del_attribute ("inline", (add_inline, del_inline))
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   647
    #> add_del_attribute ("post", (add_post, del_post))
26463
9283b4185fdf Context.>> : operate on Context.generic;
wenzelm
parents: 26435
diff changeset
   648
  end));
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   649
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   650
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   651
(** post- and preprocessing **)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   652
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   653
local
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   654
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   655
fun apply_functrans thy c _ [] = []
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   656
  | apply_functrans thy c [] eqns = eqns
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   657
  | apply_functrans thy c functrans eqns = eqns
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   658
      |> perhaps (perhaps_loop (perhaps_apply functrans))
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   659
      |> (map o apfst) (AxClass.unoverload thy)
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   660
      |> recheck_eqns_const thy c
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   661
      |> (map o apfst) (AxClass.overload thy);
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   662
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   663
fun rhs_conv conv thm = Thm.transitive thm ((conv o Thm.rhs_of) thm);
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   664
24837
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   665
fun term_of_conv thy f =
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   666
  Thm.cterm_of thy
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   667
  #> f
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   668
  #> Thm.prop_of
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   669
  #> Logic.dest_equals
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   670
  #> snd;
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   671
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   672
fun preprocess thy functrans c eqns =
27582
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   673
  let
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   674
    val pre = (Simplifier.theory_context thy o #pre o the_thmproc o the_exec) thy;
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   675
  in
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   676
    eqns
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   677
    |> (map o apfst) (AxClass.overload thy)
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   678
    |> apply_functrans thy c functrans
28368
8437fb395294 clarified function transformator interface
haftmann
parents: 28359
diff changeset
   679
    |> (map o apfst) (Code_Unit.rewrite_eqn pre)
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   680
    |> (map o apfst) (AxClass.unoverload thy)
28708
a1a436f09ec6 explicit check for pattern discipline before code translation
haftmann
parents: 28703
diff changeset
   681
    |> map (recheck_eqn thy)
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   682
    |> burrow_fst (common_typ_eqns thy)
27582
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   683
  end;
26970
bc28e7bcb765 explicit type schemes for functions
haftmann
parents: 26947
diff changeset
   684
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   685
in
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   686
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   687
fun preprocess_conv thy ct =
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   688
  let
27582
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   689
    val pre = (Simplifier.theory_context thy o #pre o the_thmproc o the_exec) thy;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   690
  in
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   691
    ct
27582
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   692
    |> Simplifier.rewrite pre
25597
34860182b250 moved instance parameter management from class.ML to axclass.ML
haftmann
parents: 25501
diff changeset
   693
    |> rhs_conv (AxClass.unoverload_conv thy)
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   694
  end;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   695
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   696
fun preprocess_term thy = term_of_conv thy (preprocess_conv thy);
24837
cacc5744be75 clarified terminology
haftmann
parents: 24731
diff changeset
   697
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   698
fun postprocess_conv thy ct =
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   699
  let
27582
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   700
    val post = (Simplifier.theory_context thy o #post o the_thmproc o the_exec) thy;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   701
  in
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   702
    ct
25597
34860182b250 moved instance parameter management from class.ML to axclass.ML
haftmann
parents: 25501
diff changeset
   703
    |> AxClass.overload_conv thy
27582
367aff8d7ffd dropped junk
haftmann
parents: 27557
diff changeset
   704
    |> rhs_conv (Simplifier.rewrite post)
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   705
  end;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   706
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   707
fun postprocess_term thy = term_of_conv thy (postprocess_conv thy);
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   708
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   709
fun these_raw_eqns thy c =
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   710
  get_eqns thy c
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   711
  |> (map o apfst) (Thm.transfer thy)
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   712
  |> burrow_fst (common_typ_eqns thy);
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   713
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   714
fun these_eqns thy c =
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   715
  let
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   716
    val functrans = (map (fn (_, (_, f)) => f thy) o #functrans
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   717
      o the_thmproc o the_exec) thy;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   718
  in
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   719
    get_eqns thy c
28695
f7a06d7284c8 explicit history for equations; tuned
haftmann
parents: 28673
diff changeset
   720
    |> (map o apfst) (Thm.transfer thy)
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   721
    |> preprocess thy functrans c
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   722
  end;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   723
28525
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   724
fun default_typscheme thy c =
42297ae4df47 clarified preprocessor policies
haftmann
parents: 28423
diff changeset
   725
  let
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   726
    fun the_const_typscheme c = (curry (Code_Unit.typscheme thy) c o snd o dest_Const
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   727
      o TermSubst.zero_var_indexes o curry Const "" o Sign.the_const_type thy) c;
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   728
    fun strip_sorts (vs, ty) = (map (fn (v, _) => (v, [])) vs, ty);
28423
9fc3befd8191 clarified codegen interfaces
haftmann
parents: 28403
diff changeset
   729
  in case AxClass.class_of_param thy c
30023
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   730
   of SOME class => ([(Name.aT, [class])], snd (the_const_typscheme c))
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   731
    | NONE => if is_some (get_datatype_of_constr thy c)
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   732
        then strip_sorts (the_const_typscheme c)
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   733
        else case get_eqns thy c
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   734
         of (thm, _) :: _ => snd (Code_Unit.head_eqn thy (Drule.zero_var_indexes thm))
55954f726043 permissive check for pattern discipline in case schemes
haftmann
parents: 29970
diff changeset
   735
          | [] => strip_sorts (the_const_typscheme c) end;
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   736
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   737
end; (*local*)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   738
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   739
end; (*struct*)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   740
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   741
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   742
(** type-safe interfaces for data depedent on executable content **)
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   743
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   744
functor CodeDataFun(Data: CODE_DATA_ARGS): CODE_DATA =
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   745
struct
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   746
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   747
type T = Data.T;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   748
exception Data of T;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   749
fun dest (Data x) = x
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   750
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   751
val kind = Code.declare_data (Data Data.empty)
27609
b23c9ad0fe7d tuned code theorem bookkeeping
haftmann
parents: 27582
diff changeset
   752
  (fn thy => fn cs => fn Data x => Data (Data.purge thy cs x));
24219
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   753
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   754
val data_op = (kind, Data, dest);
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   755
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   756
val get = Code.get_data data_op;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   757
val change = Code.change_data data_op;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   758
fun change_yield thy = Code.change_yield_data data_op thy;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   759
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   760
end;
e558fe311376 new structure for code generator modules
haftmann
parents:
diff changeset
   761
28143
e5c6c4aac52c different bookkeeping for code equations
haftmann
parents: 28054
diff changeset
   762
structure Code : CODE = struct open Code; end;