src/Pure/Isar/proof_display.ML
author aspinall
Sat Feb 17 17:19:59 2007 +0100 (2007-02-17)
changeset 22335 6c4204df6863
parent 22095 07875394618e
child 22872 d7189dc8939c
permissions -rw-r--r--
pretty_full_theory: expose in signature.
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(*  Title:      Pure/Isar/proof_display.ML
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    ID:         $Id$
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    Author:     Makarius
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Printing of theorems, goals, results etc.
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*)
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signature BASIC_PROOF_DISPLAY =
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sig
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  val print_theorems: theory -> unit
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  val print_theory: theory -> unit
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end
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signature PROOF_DISPLAY =
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sig
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  include BASIC_PROOF_DISPLAY
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  val pprint_context: Proof.context -> pprint_args -> unit
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  val pprint_typ: theory -> typ -> pprint_args -> unit
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  val pprint_term: theory -> term -> pprint_args -> unit
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  val pprint_ctyp: ctyp -> pprint_args -> unit
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  val pprint_cterm: cterm -> pprint_args -> unit
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  val pprint_thm: thm -> pprint_args -> unit
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  val print_theorems_diff: theory -> theory -> unit
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  val print_full_theory: bool -> theory -> unit
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  val pretty_full_theory: bool -> theory -> Pretty.T
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  val string_of_rule: Proof.context -> string -> thm -> string
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  val print_results: bool -> Proof.context ->
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    ((string * string) * (string * thm list) list) -> unit
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  val present_results: Proof.context ->
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    ((string * string) * (string * thm list) list) -> unit
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  val pretty_consts: Proof.context -> (string * typ -> bool) -> (string * typ) list -> Pretty.T
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end
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structure ProofDisplay: PROOF_DISPLAY =
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struct
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(* toplevel pretty printing *)
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fun pprint_context ctxt = Pretty.pprint
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 (if ! ProofContext.debug then
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    Pretty.quote (Pretty.big_list "proof context:" (ProofContext.pretty_context ctxt))
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  else Pretty.str "<context>");
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fun pprint pretty thy = Pretty.pprint o Pretty.quote o pretty (ProofContext.init thy);
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val pprint_typ = pprint ProofContext.pretty_typ;
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val pprint_term = pprint ProofContext.pretty_term;
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fun pprint_ctyp cT = pprint_typ (Thm.theory_of_ctyp cT) (Thm.typ_of cT);
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fun pprint_cterm ct = pprint_term (Thm.theory_of_cterm ct) (Thm.term_of ct);
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val pprint_thm = Pretty.pprint o ProofContext.pretty_thm_legacy true;
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(* theorems and theory *)
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fun pretty_theorems_diff prev_thms thy =
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  let
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    val ctxt = ProofContext.init thy;
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    val (space, thms) = PureThy.theorems_of thy;
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    val diff_thmss = Symtab.fold (fn fact =>
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      if not (Symtab.member Thm.eq_thms prev_thms fact) then cons fact else I) thms [];
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    val thmss = diff_thmss |> map (apfst (NameSpace.extern space)) |> Library.sort_wrt #1;
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  in Pretty.big_list "theorems:" (map (ProofContext.pretty_fact ctxt) thmss) end;
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fun print_theorems_diff prev_thy thy =
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  Pretty.writeln (pretty_theorems_diff (#2 (PureThy.theorems_of prev_thy)) thy);
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fun pretty_theorems thy = pretty_theorems_diff Symtab.empty thy;
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val print_theorems = Pretty.writeln o pretty_theorems;
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fun print_full_theory verbose thy =
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  Pretty.writeln (Pretty.chunks (Display.pretty_full_theory verbose thy @ [pretty_theorems thy]));
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val print_theory = print_full_theory false;
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fun pretty_full_theory verbose thy =
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    Pretty.chunks (Display.pretty_full_theory verbose thy @ [pretty_theorems thy]);
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(* refinement rule *)
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fun pretty_rule ctxt s thm =
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  Pretty.block [Pretty.str (s ^ " attempt to solve goal by exported rule:"),
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    Pretty.fbrk, ProofContext.pretty_thm ctxt thm];
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val string_of_rule = Pretty.string_of ooo pretty_rule;
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(* results *)
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local
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fun pretty_facts ctxt =
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  flat o (separate [Pretty.fbrk, Pretty.str "and "]) o
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    map (single o ProofContext.pretty_fact ctxt);
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fun pretty_results ctxt ((kind, ""), facts) =
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      Pretty.block (Pretty.str kind :: Pretty.brk 1 :: pretty_facts ctxt facts)
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  | pretty_results ctxt ((kind, name), [fact]) = Pretty.blk (1,
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      [Pretty.str (kind ^ " " ^ name ^ ":"), Pretty.fbrk, ProofContext.pretty_fact ctxt fact])
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  | pretty_results ctxt ((kind, name), facts) = Pretty.blk (1,
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      [Pretty.str (kind ^ " " ^ name ^ ":"), Pretty.fbrk,
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        Pretty.blk (1, Pretty.str "(" :: pretty_facts ctxt facts @ [Pretty.str ")"])]);
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fun name_results "" res = res
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  | name_results name res =
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      let
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        val n = length (maps snd res);
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        fun name_res (a, ths) i =
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          let
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            val m = length ths;
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            val j = i + m;
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          in
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            if a <> "" then ((a, ths), j)
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            else if m = n then ((name, ths), j)
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            else if m = 1 then
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              ((PureThy.string_of_thmref (NameSelection (name, [Single i])), ths), j)
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            else ((PureThy.string_of_thmref (NameSelection (name, [FromTo (i, j - 1)])), ths), j)
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          end;
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      in fst (fold_map name_res res 1) end;
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in
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fun print_results true = Pretty.writeln oo pretty_results
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  | print_results false = K (K ());
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fun present_results ctxt ((kind, name), res) =
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  if kind = "" orelse kind = Thm.internalK then ()
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  else (print_results true ctxt ((kind, name), res);
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    ML_Context.setmp (SOME (Context.Proof ctxt))
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      (Present.results kind) (name_results name res));
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end;
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(* consts *)
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local
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fun pretty_var ctxt (x, T) =
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  Pretty.block [Pretty.str x, Pretty.str " ::", Pretty.brk 1,
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    Pretty.quote (ProofContext.pretty_typ ctxt T)];
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fun pretty_vars ctxt kind vs = Pretty.big_list kind (map (pretty_var ctxt) vs);
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in
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fun pretty_consts ctxt pred cs =
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  (case filter pred (#1 (ProofContext.inferred_fixes ctxt)) of
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    [] => pretty_vars ctxt "constants" cs
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  | ps => Pretty.chunks [pretty_vars ctxt "parameters" ps, pretty_vars ctxt "constants" cs]);
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end;
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end;
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structure BasicProofDisplay: BASIC_PROOF_DISPLAY = ProofDisplay;
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open BasicProofDisplay;