src/HOL/Codatatype/Tools/bnf_fp_sugar.ML
author blanchet
Wed, 12 Sep 2012 17:26:05 +0200
changeset 50351 a2e6473145e4
parent 50345 276ff43ee0b1
child 50352 538687a77075
permissions -rw-r--r--
tuning
     1 (*  Title:      HOL/Codatatype/Tools/bnf_fp_sugar.ML
     2     Author:     Jasmin Blanchette, TU Muenchen
     3     Copyright   2012
     4 
     5 Sugar for constructing LFPs and GFPs.
     6 *)
     7 
     8 signature BNF_FP_SUGAR =
     9 sig
    10   val datatyp: bool ->
    11     (mixfix list -> (string * sort) list option -> binding list -> typ list * typ list list ->
    12       BNF_Def.BNF list -> local_theory ->
    13       (term list * term list * term list * term list * thm list * thm list * thm list * thm list *
    14          thm list) * local_theory) ->
    15     bool * ((((typ * sort) list * binding) * mixfix) * ((((binding * binding) *
    16       (binding * typ) list) * (binding * term) list) * mixfix) list) list ->
    17     local_theory -> local_theory
    18   val parse_datatype_cmd: bool ->
    19     (mixfix list -> (string * sort) list option -> binding list -> typ list * typ list list ->
    20       BNF_Def.BNF list -> local_theory ->
    21       (term list * term list * term list * term list * thm list * thm list * thm list * thm list *
    22          thm list) * local_theory) ->
    23     (local_theory -> local_theory) parser
    24 end;
    25 
    26 structure BNF_FP_Sugar : BNF_FP_SUGAR =
    27 struct
    28 
    29 open BNF_Util
    30 open BNF_Wrap
    31 open BNF_Def
    32 open BNF_FP_Util
    33 open BNF_FP_Sugar_Tactics
    34 
    35 val caseN = "case";
    36 val coitersN = "coiters";
    37 val corecsN = "corecs";
    38 val disc_coitersN = "disc_coiters";
    39 val disc_corecsN = "disc_corecs";
    40 val itersN = "iters";
    41 val recsN = "recs";
    42 val sel_coitersN = "sel_coiters";
    43 val sel_corecsN = "sel_corecs";
    44 
    45 val simp_attrs = @{attributes [simp]};
    46 
    47 fun split_list11 xs =
    48   (map #1 xs, map #2 xs, map #3 xs, map #4 xs, map #5 xs, map #6 xs, map #7 xs, map #8 xs,
    49    map #9 xs, map #10 xs, map #11 xs);
    50 
    51 fun strip_map_type (Type (@{type_name fun}, [T as Type _, T'])) = strip_map_type T' |>> cons T
    52   | strip_map_type T = ([], T);
    53 
    54 fun typ_subst inst (T as Type (s, Ts)) =
    55     (case AList.lookup (op =) inst T of
    56       NONE => Type (s, map (typ_subst inst) Ts)
    57     | SOME T' => T')
    58   | typ_subst inst T = the_default T (AList.lookup (op =) inst T);
    59 
    60 fun resort_tfree S (TFree (s, _)) = TFree (s, S);
    61 
    62 val lists_bmoc = fold (fn xs => fn t => Term.list_comb (t, xs));
    63 
    64 fun mk_id T = Const (@{const_name id}, T --> T);
    65 
    66 fun mk_tupled_fun x f xs = HOLogic.tupled_lambda x (Term.list_comb (f, xs));
    67 fun mk_uncurried_fun f xs = mk_tupled_fun (HOLogic.mk_tuple xs) f xs;
    68 fun mk_uncurried2_fun f xss =
    69   mk_tupled_fun (HOLogic.mk_tuple (map HOLogic.mk_tuple xss)) f (flat xss);
    70 
    71 fun tick v f = Term.lambda v (HOLogic.mk_prod (v, f $ v));
    72 
    73 fun tack z_name (c, v) f =
    74   let val z = Free (z_name, mk_sumT (fastype_of v, fastype_of c)) in
    75     Term.lambda z (mk_sum_case (Term.lambda v v, Term.lambda c (f $ c)) $ z)
    76   end;
    77 
    78 fun cannot_merge_types () = error "Mutually recursive types must have the same type parameters";
    79 
    80 fun merge_type_arg T T' = if T = T' then T else cannot_merge_types ();
    81 
    82 fun merge_type_args (As, As') =
    83   if length As = length As' then map2 merge_type_arg As As' else cannot_merge_types ();
    84 
    85 fun type_args_constrained_of (((cAs, _), _), _) = cAs;
    86 fun type_binding_of (((_, b), _), _) = b;
    87 fun mixfix_of ((_, mx), _) = mx;
    88 fun ctr_specs_of (_, ctr_specs) = ctr_specs;
    89 
    90 fun disc_of ((((disc, _), _), _), _) = disc;
    91 fun ctr_of ((((_, ctr), _), _), _) = ctr;
    92 fun args_of (((_, args), _), _) = args;
    93 fun defaults_of ((_, ds), _) = ds;
    94 fun ctr_mixfix_of (_, mx) = mx;
    95 
    96 fun define_datatype prepare_constraint prepare_typ prepare_term lfp construct (no_dests, specs)
    97     no_defs_lthy0 =
    98   let
    99     (* TODO: sanity checks on arguments *)
   100 
   101     val _ = if not lfp andalso no_dests then error "Cannot define destructor-less codatatypes"
   102       else ();
   103 
   104     val N = length specs;
   105 
   106     fun prepare_type_arg (ty, c) =
   107       let val TFree (s, _) = prepare_typ no_defs_lthy0 ty in
   108         TFree (s, prepare_constraint no_defs_lthy0 c)
   109       end;
   110 
   111     val Ass0 = map (map prepare_type_arg o type_args_constrained_of) specs;
   112     val unsorted_Ass0 = map (map (resort_tfree HOLogic.typeS)) Ass0;
   113     val unsorted_As = Library.foldr1 merge_type_args unsorted_Ass0;
   114 
   115     val ((Bs, Cs), no_defs_lthy) =
   116       no_defs_lthy0
   117       |> fold (Variable.declare_typ o resort_tfree dummyS) unsorted_As
   118       |> mk_TFrees N
   119       ||>> mk_TFrees N;
   120 
   121     (* TODO: cleaner handling of fake contexts, without "background_theory" *)
   122     (*the "perhaps o try" below helps gracefully handles the case where the new type is defined in a
   123       locale and shadows an existing global type*)
   124     val fake_thy =
   125       Theory.copy #> fold (fn spec => perhaps (try (Sign.add_type no_defs_lthy
   126         (type_binding_of spec, length (type_args_constrained_of spec), mixfix_of spec)))) specs;
   127     val fake_lthy = Proof_Context.background_theory fake_thy no_defs_lthy;
   128 
   129     fun mk_fake_T b =
   130       Type (fst (Term.dest_Type (Proof_Context.read_type_name fake_lthy true (Binding.name_of b))),
   131         unsorted_As);
   132 
   133     val fp_bs = map type_binding_of specs;
   134     val fake_Ts = map mk_fake_T fp_bs;
   135 
   136     val mixfixes = map mixfix_of specs;
   137 
   138     val _ = (case duplicates Binding.eq_name fp_bs of [] => ()
   139       | b :: _ => error ("Duplicate type name declaration " ^ quote (Binding.name_of b)));
   140 
   141     val ctr_specss = map ctr_specs_of specs;
   142 
   143     val disc_bindingss = map (map disc_of) ctr_specss;
   144     val ctr_bindingss =
   145       map2 (fn fp_b => map (Binding.qualify false (Binding.name_of fp_b) o ctr_of))
   146         fp_bs ctr_specss;
   147     val ctr_argsss = map (map args_of) ctr_specss;
   148     val ctr_mixfixess = map (map ctr_mixfix_of) ctr_specss;
   149 
   150     val sel_bindingsss = map (map (map fst)) ctr_argsss;
   151     val fake_ctr_Tsss0 = map (map (map (prepare_typ fake_lthy o snd))) ctr_argsss;
   152     val raw_sel_defaultsss = map (map defaults_of) ctr_specss;
   153 
   154     val (As :: _) :: fake_ctr_Tsss =
   155       burrow (burrow (Syntax.check_typs fake_lthy)) (Ass0 :: fake_ctr_Tsss0);
   156 
   157     val _ = (case duplicates (op =) unsorted_As of [] => ()
   158       | A :: _ => error ("Duplicate type parameter " ^
   159           quote (Syntax.string_of_typ no_defs_lthy A)));
   160 
   161     val rhs_As' = fold (fold (fold Term.add_tfreesT)) fake_ctr_Tsss [];
   162     val _ = (case subtract (op =) (map dest_TFree As) rhs_As' of
   163         [] => ()
   164       | A' :: _ => error ("Extra type variables on rhs: " ^
   165           quote (Syntax.string_of_typ no_defs_lthy (TFree A'))));
   166 
   167     fun eq_fpT (T as Type (s, Us)) (Type (s', Us')) =
   168         s = s' andalso (Us = Us' orelse error ("Illegal occurrence of recursive type " ^
   169           quote (Syntax.string_of_typ fake_lthy T)))
   170       | eq_fpT _ _ = false;
   171 
   172     fun freeze_fp (T as Type (s, Us)) =
   173         (case find_index (eq_fpT T) fake_Ts of ~1 => Type (s, map freeze_fp Us) | j => nth Bs j)
   174       | freeze_fp T = T;
   175 
   176     val ctr_TsssBs = map (map (map freeze_fp)) fake_ctr_Tsss;
   177     val ctr_sum_prod_TsBs = map (mk_sumTN_balanced o map HOLogic.mk_tupleT) ctr_TsssBs;
   178 
   179     val fp_eqs =
   180       map dest_TFree Bs ~~ map (Term.typ_subst_atomic (As ~~ unsorted_As)) ctr_sum_prod_TsBs;
   181 
   182     val (pre_bnfs, ((unfs0, flds0, fp_iters0, fp_recs0, unf_flds, fld_unfs, fld_injects,
   183         fp_iter_thms, fp_rec_thms), lthy)) =
   184       fp_bnf construct fp_bs mixfixes (map dest_TFree unsorted_As) fp_eqs no_defs_lthy0;
   185 
   186     val add_nested_bnf_names =
   187       let
   188         fun add (Type (s, Ts)) ss =
   189             let val (needs, ss') = fold_map add Ts ss in
   190               if exists I needs then (true, insert (op =) s ss') else (false, ss')
   191             end
   192           | add T ss = (member (op =) As T, ss);
   193       in snd oo add end;
   194 
   195     val nested_bnfs =
   196       map_filter (bnf_of lthy) (fold (fold (fold add_nested_bnf_names)) ctr_TsssBs []);
   197 
   198     val timer = time (Timer.startRealTimer ());
   199 
   200     fun mk_unf_or_fld get_T Ts t =
   201       let val Type (_, Ts0) = get_T (fastype_of t) in
   202         Term.subst_atomic_types (Ts0 ~~ Ts) t
   203       end;
   204 
   205     val mk_unf = mk_unf_or_fld domain_type;
   206     val mk_fld = mk_unf_or_fld range_type;
   207 
   208     val unfs = map (mk_unf As) unfs0;
   209     val flds = map (mk_fld As) flds0;
   210 
   211     val fpTs = map (domain_type o fastype_of) unfs;
   212 
   213     val ctr_Tsss = map (map (map (Term.typ_subst_atomic (Bs ~~ fpTs)))) ctr_TsssBs;
   214     val ns = map length ctr_Tsss;
   215     val kss = map (fn n => 1 upto n) ns;
   216     val mss = map (map length) ctr_Tsss;
   217     val Css = map2 replicate ns Cs;
   218 
   219     fun mk_iter_like Ts Us t =
   220       let
   221         val (bindings, body) = strip_type (fastype_of t);
   222         val (f_Us, prebody) = split_last bindings;
   223         val Type (_, Ts0) = if lfp then prebody else body;
   224         val Us0 = distinct (op =) (map (if lfp then body_type else domain_type) f_Us);
   225       in
   226         Term.subst_atomic_types (Ts0 @ Us0 ~~ Ts @ Us) t
   227       end;
   228 
   229     val fp_iters as fp_iter1 :: _ = map (mk_iter_like As Cs) fp_iters0;
   230     val fp_recs as fp_rec1 :: _ = map (mk_iter_like As Cs) fp_recs0;
   231 
   232     val fp_iter_fun_Ts = fst (split_last (binder_types (fastype_of fp_iter1)));
   233     val fp_rec_fun_Ts = fst (split_last (binder_types (fastype_of fp_rec1)));
   234 
   235     val ((iter_only as (gss, _, _), rec_only as (hss, _, _)),
   236          (zs, cs, cpss, coiter_only as ((pgss, crgsss), _), corec_only as ((phss, cshsss), _))) =
   237       if lfp then
   238         let
   239           val y_Tsss =
   240             map3 (fn n => fn ms => map2 dest_tupleT ms o dest_sumTN_balanced n o domain_type)
   241               ns mss fp_iter_fun_Ts;
   242           val g_Tss = map2 (map2 (curry (op --->))) y_Tsss Css;
   243 
   244           val ((gss, ysss), _) =
   245             lthy
   246             |> mk_Freess "f" g_Tss
   247             ||>> mk_Freesss "x" y_Tsss;
   248           val yssss = map (map (map single)) ysss;
   249 
   250           fun dest_rec_prodT (T as Type (@{type_name prod}, Us as [_, U])) =
   251               if member (op =) Cs U then Us else [T]
   252             | dest_rec_prodT T = [T];
   253 
   254           val z_Tssss =
   255             map3 (fn n => fn ms => map2 (map dest_rec_prodT oo dest_tupleT) ms o
   256               dest_sumTN_balanced n o domain_type) ns mss fp_rec_fun_Ts;
   257           val h_Tss = map2 (map2 (fold_rev (curry (op --->)))) z_Tssss Css;
   258 
   259           val hss = map2 (map2 retype_free) h_Tss gss;
   260           val zssss_hd = map2 (map2 (map2 (retype_free o hd))) z_Tssss ysss;
   261           val (zssss_tl, _) =
   262             lthy
   263             |> mk_Freessss "y" (map (map (map tl)) z_Tssss);
   264           val zssss = map2 (map2 (map2 cons)) zssss_hd zssss_tl;
   265         in
   266           (((gss, g_Tss, yssss), (hss, h_Tss, zssss)),
   267            ([], [], [], (([], []), ([], [])), (([], []), ([], []))))
   268         end
   269       else
   270         let
   271           (*avoid "'a itself" arguments in coiterators and corecursors*)
   272           val mss' =  map (fn [0] => [1] | ms => ms) mss;
   273 
   274           val p_Tss = map2 (fn n => replicate (Int.max (0, n - 1)) o mk_predT) ns Cs;
   275 
   276           fun zip_predss_getterss qss fss = maps (op @) (qss ~~ fss);
   277 
   278           fun zip_preds_predsss_gettersss [] [qss] [fss] = zip_predss_getterss qss fss
   279             | zip_preds_predsss_gettersss (p :: ps) (qss :: qsss) (fss :: fsss) =
   280               p :: zip_predss_getterss qss fss @ zip_preds_predsss_gettersss ps qsss fsss;
   281 
   282           fun mk_types maybe_dest_sumT fun_Ts =
   283             let
   284               val f_sum_prod_Ts = map range_type fun_Ts;
   285               val f_prod_Tss = map2 dest_sumTN_balanced ns f_sum_prod_Ts;
   286               val f_Tssss =
   287                 map3 (fn C => map2 (map (map (curry (op -->) C) o maybe_dest_sumT) oo dest_tupleT))
   288                   Cs mss' f_prod_Tss;
   289               val q_Tssss =
   290                 map (map (map (fn [_] => [] | [_, C] => [mk_predT (domain_type C)]))) f_Tssss;
   291               val pf_Tss = map3 zip_preds_predsss_gettersss p_Tss q_Tssss f_Tssss;
   292             in (q_Tssss, f_sum_prod_Ts, f_Tssss, pf_Tss) end;
   293 
   294           val (r_Tssss, g_sum_prod_Ts, g_Tssss, pg_Tss) = mk_types single fp_iter_fun_Ts;
   295 
   296           val ((((Free (z, _), cs), pss), gssss), _) =
   297             lthy
   298             |> yield_singleton (mk_Frees "z") dummyT
   299             ||>> mk_Frees "a" Cs
   300             ||>> mk_Freess "p" p_Tss
   301             ||>> mk_Freessss "g" g_Tssss;
   302           val rssss = map (map (map (fn [] => []))) r_Tssss;
   303 
   304           fun dest_corec_sumT (T as Type (@{type_name sum}, Us as [_, U])) =
   305               if member (op =) Cs U then Us else [T]
   306             | dest_corec_sumT T = [T];
   307 
   308           val (s_Tssss, h_sum_prod_Ts, h_Tssss, ph_Tss) = mk_types dest_corec_sumT fp_rec_fun_Ts;
   309 
   310           val hssss_hd = map2 (map2 (map2 (fn T :: _ => fn [g] => retype_free T g))) h_Tssss gssss;
   311           val ((sssss, hssss_tl), _) =
   312             lthy
   313             |> mk_Freessss "q" s_Tssss
   314             ||>> mk_Freessss "h" (map (map (map tl)) h_Tssss);
   315           val hssss = map2 (map2 (map2 cons)) hssss_hd hssss_tl;
   316 
   317           val cpss = map2 (fn c => map (fn p => p $ c)) cs pss;
   318 
   319           fun mk_preds_getters_join [] [cf] = cf
   320             | mk_preds_getters_join [cq] [cf, cf'] =
   321               mk_If cq (mk_Inl (fastype_of cf') cf) (mk_Inr (fastype_of cf) cf');
   322 
   323           fun mk_terms qssss fssss =
   324             let
   325               val pfss = map3 zip_preds_predsss_gettersss pss qssss fssss;
   326               val cqssss = map2 (fn c => map (map (map (fn f => f $ c)))) cs qssss;
   327               val cfssss = map2 (fn c => map (map (map (fn f => f $ c)))) cs fssss;
   328               val cqfsss = map2 (map2 (map2 mk_preds_getters_join)) cqssss cfssss;
   329             in (pfss, cqfsss) end;
   330         in
   331           ((([], [], []), ([], [], [])),
   332            ([z], cs, cpss, (mk_terms rssss gssss, (g_sum_prod_Ts, pg_Tss)),
   333             (mk_terms sssss hssss, (h_sum_prod_Ts, ph_Tss))))
   334         end;
   335 
   336     fun define_ctrs_case_for_type ((((((((((((((((((fp_b, fpT), C), fld), unf), fp_iter), fp_rec),
   337           fld_unf), unf_fld), fld_inject), n), ks), ms), ctr_bindings), ctr_mixfixes), ctr_Tss),
   338         disc_bindings), sel_bindingss), raw_sel_defaultss) no_defs_lthy =
   339       let
   340         val unfT = domain_type (fastype_of fld);
   341         val ctr_prod_Ts = map HOLogic.mk_tupleT ctr_Tss;
   342         val ctr_sum_prod_T = mk_sumTN_balanced ctr_prod_Ts;
   343         val case_Ts = map (fn Ts => Ts ---> C) ctr_Tss;
   344 
   345         val ((((u, v), fs), xss), _) =
   346           no_defs_lthy
   347           |> yield_singleton (mk_Frees "u") unfT
   348           ||>> yield_singleton (mk_Frees "v") fpT
   349           ||>> mk_Frees "f" case_Ts
   350           ||>> mk_Freess "x" ctr_Tss;
   351 
   352         val ctr_rhss =
   353           map2 (fn k => fn xs => fold_rev Term.lambda xs (fld $
   354             mk_InN_balanced ctr_sum_prod_T n (HOLogic.mk_tuple xs) k)) ks xss;
   355 
   356         val case_binding = Binding.suffix_name ("_" ^ caseN) fp_b;
   357 
   358         val case_rhs =
   359           fold_rev Term.lambda (fs @ [v])
   360             (mk_sum_caseN_balanced (map2 mk_uncurried_fun fs xss) $ (unf $ v));
   361 
   362         val ((raw_case :: raw_ctrs, raw_case_def :: raw_ctr_defs), (lthy', lthy)) = no_defs_lthy
   363           |> apfst split_list o fold_map3 (fn b => fn mx => fn rhs =>
   364               Local_Theory.define ((b, mx), ((Thm.def_binding b, []), rhs)) #>> apsnd snd)
   365             (case_binding :: ctr_bindings) (NoSyn :: ctr_mixfixes) (case_rhs :: ctr_rhss)
   366           ||> `Local_Theory.restore;
   367 
   368         val phi = Proof_Context.export_morphism lthy lthy';
   369 
   370         val ctr_defs = map (Morphism.thm phi) raw_ctr_defs;
   371         val case_def = Morphism.thm phi raw_case_def;
   372 
   373         val ctrs0 = map (Morphism.term phi) raw_ctrs;
   374         val casex0 = Morphism.term phi raw_case;
   375 
   376         val ctrs = map (mk_ctr As) ctrs0;
   377 
   378         fun exhaust_tac {context = ctxt, ...} =
   379           let
   380             val fld_iff_unf_thm =
   381               let
   382                 val goal =
   383                   fold_rev Logic.all [u, v]
   384                     (mk_Trueprop_eq (HOLogic.mk_eq (v, fld $ u), HOLogic.mk_eq (unf $ v, u)));
   385               in
   386                 Skip_Proof.prove lthy [] [] goal (fn {context = ctxt, ...} =>
   387                   mk_fld_iff_unf_tac ctxt (map (SOME o certifyT lthy) [unfT, fpT])
   388                     (certify lthy fld) (certify lthy unf) fld_unf unf_fld)
   389                 |> Thm.close_derivation
   390                 |> Morphism.thm phi
   391               end;
   392 
   393             val sumEN_thm' =
   394               Local_Defs.unfold lthy @{thms all_unit_eq}
   395                 (Drule.instantiate' (map (SOME o certifyT lthy) ctr_prod_Ts) []
   396                    (mk_sumEN_balanced n))
   397               |> Morphism.thm phi;
   398           in
   399             mk_exhaust_tac ctxt n ctr_defs fld_iff_unf_thm sumEN_thm'
   400           end;
   401 
   402         val inject_tacss =
   403           map2 (fn 0 => K [] | _ => fn ctr_def => [fn {context = ctxt, ...} =>
   404               mk_inject_tac ctxt ctr_def fld_inject]) ms ctr_defs;
   405 
   406         val half_distinct_tacss =
   407           map (map (fn (def, def') => fn {context = ctxt, ...} =>
   408             mk_half_distinct_tac ctxt fld_inject [def, def'])) (mk_half_pairss ctr_defs);
   409 
   410         val case_tacs =
   411           map3 (fn k => fn m => fn ctr_def => fn {context = ctxt, ...} =>
   412             mk_case_tac ctxt n k m case_def ctr_def unf_fld) ks ms ctr_defs;
   413 
   414         val tacss = [exhaust_tac] :: inject_tacss @ half_distinct_tacss @ [case_tacs];
   415 
   416         fun define_iter_rec ((selss0, discIs, sel_thmss), no_defs_lthy) =
   417           let
   418             val fpT_to_C = fpT --> C;
   419 
   420             fun generate_iter_like (suf, fp_iter_like, (fss, f_Tss, xssss)) =
   421               let
   422                 val res_T = fold_rev (curry (op --->)) f_Tss fpT_to_C;
   423                 val binding = Binding.suffix_name ("_" ^ suf) fp_b;
   424                 val spec =
   425                   mk_Trueprop_eq (lists_bmoc fss (Free (Binding.name_of binding, res_T)),
   426                     Term.list_comb (fp_iter_like,
   427                       map2 (mk_sum_caseN_balanced oo map2 mk_uncurried2_fun) fss xssss));
   428               in (binding, spec) end;
   429 
   430             val iter_like_infos =
   431               [(iterN, fp_iter, iter_only),
   432                (recN, fp_rec, rec_only)];
   433 
   434             val (bindings, specs) = map generate_iter_like iter_like_infos |> split_list;
   435 
   436             val ((csts, defs), (lthy', lthy)) = no_defs_lthy
   437               |> apfst split_list o fold_map2 (fn b => fn spec =>
   438                 Specification.definition (SOME (b, NONE, NoSyn), ((Thm.def_binding b, []), spec))
   439                 #>> apsnd snd) bindings specs
   440               ||> `Local_Theory.restore;
   441 
   442             val phi = Proof_Context.export_morphism lthy lthy';
   443 
   444             val [iter_def, rec_def] = map (Morphism.thm phi) defs;
   445 
   446             val [iter, recx] = map (mk_iter_like As Cs o Morphism.term phi) csts;
   447           in
   448             ((ctrs, selss0, iter, recx, v, xss, ctr_defs, discIs, sel_thmss, iter_def, rec_def),
   449              lthy)
   450           end;
   451 
   452         fun define_coiter_corec ((selss0, discIs, sel_thmss), no_defs_lthy) =
   453           let
   454             val B_to_fpT = C --> fpT;
   455 
   456             fun mk_preds_getterss_join c n cps sum_prod_T cqfss =
   457               Term.lambda c (mk_IfN sum_prod_T cps
   458                 (map2 (mk_InN_balanced sum_prod_T n) (map HOLogic.mk_tuple cqfss) (1 upto n)));
   459 
   460             fun generate_coiter_like (suf, fp_iter_like, ((pfss, cqfsss), (f_sum_prod_Ts,
   461                 pf_Tss))) =
   462               let
   463                 val res_T = fold_rev (curry (op --->)) pf_Tss B_to_fpT;
   464                 val binding = Binding.suffix_name ("_" ^ suf) fp_b;
   465                 val spec =
   466                   mk_Trueprop_eq (lists_bmoc pfss (Free (Binding.name_of binding, res_T)),
   467                     Term.list_comb (fp_iter_like,
   468                       map5 mk_preds_getterss_join cs ns cpss f_sum_prod_Ts cqfsss));
   469               in (binding, spec) end;
   470 
   471             val coiter_like_infos =
   472               [(coiterN, fp_iter, coiter_only),
   473                (corecN, fp_rec, corec_only)];
   474 
   475             val (bindings, specs) = map generate_coiter_like coiter_like_infos |> split_list;
   476 
   477             val ((csts, defs), (lthy', lthy)) = no_defs_lthy
   478               |> apfst split_list o fold_map2 (fn b => fn spec =>
   479                 Specification.definition (SOME (b, NONE, NoSyn), ((Thm.def_binding b, []), spec))
   480                 #>> apsnd snd) bindings specs
   481               ||> `Local_Theory.restore;
   482 
   483             val phi = Proof_Context.export_morphism lthy lthy';
   484 
   485             val [coiter_def, corec_def] = map (Morphism.thm phi) defs;
   486 
   487             val [coiter, corec] = map (mk_iter_like As Cs o Morphism.term phi) csts;
   488           in
   489             ((ctrs, selss0, coiter, corec, v, xss, ctr_defs, discIs, sel_thmss, coiter_def,
   490               corec_def), lthy)
   491           end;
   492 
   493         fun wrap lthy =
   494           let val sel_defaultss = map (map (apsnd (prepare_term lthy))) raw_sel_defaultss in
   495             wrap_datatype tacss (((no_dests, ctrs0), casex0), (disc_bindings, (sel_bindingss,
   496               sel_defaultss))) lthy
   497           end;
   498 
   499         val define_iter_likes = if lfp then define_iter_rec else define_coiter_corec;
   500       in
   501         ((wrap, define_iter_likes), lthy')
   502       end;
   503 
   504     val pre_map_defs = map map_def_of_bnf pre_bnfs;
   505     val map_ids = map map_id_of_bnf nested_bnfs;
   506 
   507     fun mk_map Ts Us t =
   508       let val (Type (_, Ts0), Type (_, Us0)) = strip_map_type (fastype_of t) |>> List.last in
   509         Term.subst_atomic_types (Ts0 @ Us0 ~~ Ts @ Us) t
   510       end;
   511 
   512     fun build_map build_arg (Type (s, Ts)) (Type (_, Us)) =
   513       let
   514         val map0 = map_of_bnf (the (bnf_of lthy s));
   515         val mapx = mk_map Ts Us map0;
   516         val TUs = map dest_funT (fst (split_last (fst (strip_map_type (fastype_of mapx)))));
   517         val args = map build_arg TUs;
   518       in Term.list_comb (mapx, args) end;
   519 
   520     fun derive_iter_rec_thms_for_types ((ctrss, _, iters, recs, vs, xsss, ctr_defss, _, _, iter_defs,
   521         rec_defs), lthy) =
   522       let
   523         val xctrss = map2 (map2 (curry Term.list_comb)) ctrss xsss;
   524         val giters = map (lists_bmoc gss) iters;
   525         val hrecs = map (lists_bmoc hss) recs;
   526 
   527         val (iter_thmss, rec_thmss) =
   528           let
   529             fun mk_goal_iter_like fss fiter_like xctr f xs fxs =
   530               fold_rev (fold_rev Logic.all) (xs :: fss)
   531                 (mk_Trueprop_eq (fiter_like $ xctr, Term.list_comb (f, fxs)));
   532 
   533             fun build_call fiter_likes maybe_tick (T, U) =
   534               if T = U then
   535                 mk_id T
   536               else
   537                 (case find_index (curry (op =) T) fpTs of
   538                   ~1 => build_map (build_call fiter_likes maybe_tick) T U
   539                 | j => maybe_tick (nth vs j) (nth fiter_likes j));
   540 
   541             fun mk_U maybe_mk_prodT =
   542               typ_subst (map2 (fn fpT => fn C => (fpT, maybe_mk_prodT fpT C)) fpTs Cs);
   543 
   544             fun repair_calls fiter_likes maybe_cons maybe_tick maybe_mk_prodT (x as Free (_, T)) =
   545               if member (op =) fpTs T then
   546                 maybe_cons x [build_call fiter_likes (K I) (T, mk_U (K I) T) $ x]
   547               else if exists_subtype (member (op =) fpTs) T then
   548                 [build_call fiter_likes maybe_tick (T, mk_U maybe_mk_prodT T) $ x]
   549               else
   550                 [x];
   551 
   552             val gxsss = map (map (maps (repair_calls giters (K I) (K I) (K I)))) xsss;
   553             val hxsss =
   554               map (map (maps (repair_calls hrecs cons tick (curry HOLogic.mk_prodT)))) xsss;
   555 
   556             val goal_iterss = map5 (map4 o mk_goal_iter_like gss) giters xctrss gss xsss gxsss;
   557             val goal_recss = map5 (map4 o mk_goal_iter_like hss) hrecs xctrss hss xsss hxsss;
   558 
   559             val iter_tacss =
   560               map2 (map o mk_iter_like_tac pre_map_defs map_ids iter_defs) fp_iter_thms ctr_defss;
   561             val rec_tacss =
   562               map2 (map o mk_iter_like_tac pre_map_defs map_ids rec_defs) fp_rec_thms ctr_defss;
   563           in
   564             (map2 (map2 (fn goal => fn tac => Skip_Proof.prove lthy [] [] goal (tac o #context)))
   565                goal_iterss iter_tacss,
   566              map2 (map2 (fn goal => fn tac => Skip_Proof.prove lthy [] [] goal (tac o #context)))
   567                goal_recss rec_tacss)
   568           end;
   569 
   570         val notes =
   571           [(itersN, iter_thmss, simp_attrs),
   572            (recsN, rec_thmss, Code.add_default_eqn_attrib :: simp_attrs)]
   573           |> maps (fn (thmN, thmss, attrs) =>
   574             map2 (fn b => fn thms =>
   575               ((Binding.qualify true (Binding.name_of b) (Binding.name thmN), attrs),
   576                 [(thms, [])])) fp_bs thmss);
   577       in
   578         lthy |> Local_Theory.notes notes |> snd
   579       end;
   580 
   581     fun derive_coiter_corec_thms_for_types ((ctrss, selsss, coiters, corecs, vs, _, ctr_defss,
   582         discIss, sel_thmsss, coiter_defs, corec_defs), lthy) =
   583       let
   584         val z = the_single zs;
   585 
   586         val gcoiters = map (lists_bmoc pgss) coiters;
   587         val hcorecs = map (lists_bmoc phss) corecs;
   588 
   589         val (coiter_thmss, corec_thmss) =
   590           let
   591             fun mk_goal_cond pos = HOLogic.mk_Trueprop o (not pos ? HOLogic.mk_not);
   592 
   593             fun mk_goal_coiter_like pfss c cps fcoiter_like n k ctr m cfs' =
   594               fold_rev (fold_rev Logic.all) ([c] :: pfss)
   595                 (Logic.list_implies (seq_conds mk_goal_cond n k cps,
   596                    mk_Trueprop_eq (fcoiter_like $ c, Term.list_comb (ctr, take m cfs'))));
   597 
   598             fun build_call fiter_likes maybe_tack (T, U) =
   599               if T = U then
   600                 mk_id T
   601               else
   602                 (case find_index (curry (op =) U) fpTs of
   603                   ~1 => build_map (build_call fiter_likes maybe_tack) T U
   604                 | j => maybe_tack (nth cs j, nth vs j) (nth fiter_likes j));
   605 
   606             fun mk_U maybe_mk_sumT =
   607               typ_subst (map2 (fn C => fn fpT => (maybe_mk_sumT fpT C, fpT)) Cs fpTs);
   608 
   609             fun repair_calls fiter_likes maybe_mk_sumT maybe_tack cqf =
   610               let val T = fastype_of cqf in
   611                 if exists_subtype (member (op =) Cs) T then
   612                   build_call fiter_likes maybe_tack (T, mk_U maybe_mk_sumT T) $ cqf
   613                 else
   614                   cqf
   615               end;
   616 
   617             val crgsss' = map (map (map (repair_calls gcoiters (K I) (K I)))) crgsss;
   618             val cshsss' = map (map (map (repair_calls hcorecs (curry mk_sumT) (tack z)))) cshsss;
   619 
   620             val goal_coiterss =
   621               map8 (map4 oooo mk_goal_coiter_like pgss) cs cpss gcoiters ns kss ctrss mss crgsss';
   622             val goal_corecss =
   623               map8 (map4 oooo mk_goal_coiter_like phss) cs cpss hcorecs ns kss ctrss mss cshsss';
   624 
   625             val coiter_tacss =
   626               map3 (map oo mk_coiter_like_tac coiter_defs map_ids) fp_iter_thms pre_map_defs
   627                 ctr_defss;
   628             val corec_tacss =
   629               map3 (map oo mk_coiter_like_tac corec_defs map_ids) fp_rec_thms pre_map_defs
   630                 ctr_defss;
   631           in
   632             (map2 (map2 (fn goal => fn tac =>
   633                  Skip_Proof.prove lthy [] [] goal (tac o #context) |> Thm.close_derivation))
   634                goal_coiterss coiter_tacss,
   635              map2 (map2 (fn goal => fn tac =>
   636                  Skip_Proof.prove lthy [] [] goal (tac o #context)
   637                  |> Local_Defs.unfold lthy @{thms sum_case_if} |> Thm.close_derivation))
   638                goal_corecss corec_tacss)
   639           end;
   640 
   641         fun mk_disc_coiter_like_thms [_] = K []
   642           | mk_disc_coiter_like_thms thms = map2 (curry (op RS)) thms;
   643 
   644         val disc_coiter_thmss = map2 mk_disc_coiter_like_thms coiter_thmss discIss;
   645         val disc_corec_thmss = map2 mk_disc_coiter_like_thms corec_thmss discIss;
   646 
   647         fun mk_sel_coiter_like_thm coiter_like_thm sel0 sel_thm =
   648           let
   649             val (domT, ranT) = dest_funT (fastype_of sel0);
   650             val arg_cong' =
   651               Drule.instantiate' (map (SOME o certifyT lthy) [domT, ranT])
   652                 [NONE, NONE, SOME (certify lthy sel0)] arg_cong
   653               |> Thm.varifyT_global;
   654             val sel_thm' = sel_thm RSN (2, trans);
   655           in
   656             coiter_like_thm RS arg_cong' RS sel_thm'
   657           end;
   658 
   659         val sel_coiter_thmsss =
   660           map3 (map3 (map2 o mk_sel_coiter_like_thm)) coiter_thmss selsss sel_thmsss;
   661         val sel_corec_thmsss =
   662           map3 (map3 (map2 o mk_sel_coiter_like_thm)) corec_thmss selsss sel_thmsss;
   663 
   664         val notes =
   665           [(coitersN, coiter_thmss, []),
   666            (disc_coitersN, disc_coiter_thmss, []),
   667            (sel_coitersN, map flat sel_coiter_thmsss, []),
   668            (corecsN, corec_thmss, []),
   669            (disc_corecsN, disc_corec_thmss, []),
   670            (sel_corecsN, map flat sel_corec_thmsss, [])]
   671           |> maps (fn (thmN, thmss, attrs) =>
   672             map_filter (fn (_, []) => NONE | (b, thms) =>
   673               SOME ((Binding.qualify true (Binding.name_of b) (Binding.name thmN), attrs),
   674                 [(thms, [])])) (fp_bs ~~ thmss));
   675       in
   676         lthy |> Local_Theory.notes notes |> snd
   677       end;
   678 
   679     fun wrap_types_and_define_iter_likes ((wraps, define_iter_likess), lthy) =
   680       fold_map2 (curry (op o)) define_iter_likess wraps lthy |>> split_list11
   681 
   682     val lthy' = lthy
   683       |> fold_map define_ctrs_case_for_type (fp_bs ~~ fpTs ~~ Cs ~~ flds ~~ unfs ~~ fp_iters ~~
   684         fp_recs ~~ fld_unfs ~~ unf_flds ~~ fld_injects ~~ ns ~~ kss ~~ mss ~~ ctr_bindingss ~~
   685         ctr_mixfixess ~~ ctr_Tsss ~~ disc_bindingss ~~ sel_bindingsss ~~ raw_sel_defaultsss)
   686       |>> split_list |> wrap_types_and_define_iter_likes
   687       |> (if lfp then derive_iter_rec_thms_for_types else derive_coiter_corec_thms_for_types);
   688 
   689     val timer = time (timer ("Constructors, discriminators, selectors, etc., for the new " ^
   690       (if lfp then "" else "co") ^ "datatype"));
   691   in
   692     timer; lthy'
   693   end;
   694 
   695 val datatyp = define_datatype (K I) (K I) (K I);
   696 
   697 val datatype_cmd = define_datatype Typedecl.read_constraint Syntax.parse_typ Syntax.read_term;
   698 
   699 val parse_binding_colon = Parse.binding --| @{keyword ":"};
   700 val parse_opt_binding_colon = Scan.optional parse_binding_colon no_binding;
   701 
   702 val parse_ctr_arg =
   703   @{keyword "("} |-- parse_binding_colon -- Parse.typ --| @{keyword ")"} ||
   704   (Parse.typ >> pair no_binding);
   705 
   706 val parse_defaults =
   707   @{keyword "("} |-- @{keyword "defaults"} |-- Scan.repeat parse_bound_term --| @{keyword ")"};
   708 
   709 val parse_single_spec =
   710   Parse.type_args_constrained -- Parse.binding -- Parse.opt_mixfix --
   711   (@{keyword "="} |-- Parse.enum1 "|" (parse_opt_binding_colon -- Parse.binding --
   712     Scan.repeat parse_ctr_arg -- Scan.optional parse_defaults [] -- Parse.opt_mixfix));
   713 
   714 val parse_datatype = parse_wrap_options -- Parse.and_list1 parse_single_spec;
   715 
   716 fun parse_datatype_cmd lfp construct = parse_datatype >> datatype_cmd lfp construct;
   717 
   718 end;