| author | wenzelm | 
| Wed, 21 Feb 2024 11:43:30 +0100 | |
| changeset 79681 | df1059ea8846 | 
| parent 75624 | 22d1c5f2b9f4 | 
| child 80634 | a90ab1ea6458 | 
| permissions | -rw-r--r-- | 
| 55061 | 1 | (* Title: HOL/Tools/BNF/bnf_comp.ML | 
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changeset | 2 | Author: Dmitriy Traytel, TU Muenchen | 
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changeset | 3 | Author: Jasmin Blanchette, TU Muenchen | 
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changeset | 4 | Copyright 2012 | 
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changeset | 5 | |
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changeset | 6 | Composition of bounded natural functors. | 
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changeset | 7 | *) | 
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changeset | 8 | |
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changeset | 9 | signature BNF_COMP = | 
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changeset | 10 | sig | 
| 59994 | 11 | val typedef_threshold: int Config.T | 
| 63800 | 12 | val with_typedef_threshold: int -> (Proof.context -> Proof.context) -> Proof.context -> | 
| 13 | Proof.context | |
| 14 | val with_typedef_threshold_yield: int -> (Proof.context -> 'a * Proof.context) -> Proof.context -> | |
| 15 | 'a * Proof.context | |
| 59710 | 16 | |
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changeset | 17 | val ID_bnf: BNF_Def.bnf | 
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changeset | 18 | val DEADID_bnf: BNF_Def.bnf | 
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changeset | 19 | |
| 55706 | 20 | type comp_cache | 
| 65436 | 21 | type unfold_set = | 
| 22 |     {map_unfolds: thm list,
 | |
| 23 | set_unfoldss: thm list list, | |
| 71261 | 24 | rel_unfolds: thm list, | 
| 25 | pred_unfolds: thm list} | |
| 55706 | 26 | |
| 27 | val empty_comp_cache: comp_cache | |
| 49502 | 28 | val empty_unfolds: unfold_set | 
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changeset | 29 | |
| 53222 | 30 | exception BAD_DEAD of typ * typ | 
| 31 | ||
| 62621 | 32 | val bnf_of_typ: bool -> BNF_Def.inline_policy -> (binding -> binding) -> | 
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changeset | 33 | ((string * sort) list list -> (string * sort) list) -> (string * sort) list -> | 
| 55904 | 34 | (string * sort) list -> typ -> (comp_cache * unfold_set) * local_theory -> | 
| 35 | (BNF_Def.bnf * (typ list * typ list)) * ((comp_cache * unfold_set) * local_theory) | |
| 49014 | 36 | val default_comp_sort: (string * sort) list list -> (string * sort) list | 
| 59725 | 37 | val clean_compose_bnf: BNF_Def.inline_policy -> (binding -> binding) -> binding -> BNF_Def.bnf -> | 
| 38 | BNF_Def.bnf list -> unfold_set * local_theory -> BNF_Def.bnf * (unfold_set * local_theory) | |
| 39 | val kill_bnf: (binding -> binding) -> int -> BNF_Def.bnf -> | |
| 40 | (comp_cache * unfold_set) * local_theory -> | |
| 41 | BNF_Def.bnf * ((comp_cache * unfold_set) * local_theory) | |
| 42 | val lift_bnf: (binding -> binding) -> int -> BNF_Def.bnf -> | |
| 43 | (comp_cache * unfold_set) * local_theory -> | |
| 44 | BNF_Def.bnf * ((comp_cache * unfold_set) * local_theory) | |
| 45 | val permute_bnf: (binding -> binding) -> int list -> int list -> BNF_Def.bnf -> | |
| 46 | (comp_cache * unfold_set) * local_theory -> | |
| 47 | BNF_Def.bnf * ((comp_cache * unfold_set) * local_theory) | |
| 48 | val permute_and_kill_bnf: (binding -> binding) -> int -> int list -> int list -> BNF_Def.bnf -> | |
| 49 | (comp_cache * unfold_set) * local_theory -> | |
| 50 | BNF_Def.bnf * ((comp_cache * unfold_set) * local_theory) | |
| 51 | val lift_and_permute_bnf: (binding -> binding) -> int -> int list -> int list -> BNF_Def.bnf -> | |
| 52 | (comp_cache * unfold_set) * local_theory -> | |
| 53 | BNF_Def.bnf * ((comp_cache * unfold_set) * local_theory) | |
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changeset | 54 | val normalize_bnfs: (int -> binding -> binding) -> ''a list list -> ''a list -> | 
| 55904 | 55 |     (''a list list -> ''a list) -> BNF_Def.bnf list -> (comp_cache * unfold_set) * local_theory ->
 | 
| 56 | (int list list * ''a list) * (BNF_Def.bnf list * ((comp_cache * unfold_set) * local_theory)) | |
| 59725 | 57 | val compose_bnf: BNF_Def.inline_policy -> (int -> binding -> binding) -> | 
| 58 | ((string * sort) list list -> (string * sort) list) -> BNF_Def.bnf -> BNF_Def.bnf list -> | |
| 59 | typ list -> typ list list -> typ list list -> (comp_cache * unfold_set) * local_theory -> | |
| 60 | (BNF_Def.bnf * (typ list * typ list)) * ((comp_cache * unfold_set) * local_theory) | |
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changeset | 61 | type absT_info = | 
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changeset | 62 |     {absT: typ,
 | 
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changeset | 63 | repT: typ, | 
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changeset | 64 | abs: term, | 
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changeset | 65 | rep: term, | 
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changeset | 66 | abs_inject: thm, | 
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changeset | 67 | abs_inverse: thm, | 
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changeset | 68 | type_definition: thm} | 
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changeset | 69 | |
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changeset | 70 | val morph_absT_info: morphism -> absT_info -> absT_info | 
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changeset | 71 | val mk_absT: theory -> typ -> typ -> typ -> typ | 
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changeset | 72 | val mk_repT: typ -> typ -> typ -> typ | 
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changeset | 73 | val mk_abs: typ -> term -> term | 
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changeset | 74 | val mk_rep: typ -> term -> term | 
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changeset | 75 | val seal_bnf: (binding -> binding) -> unfold_set -> binding -> bool -> typ list -> typ list -> | 
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changeset | 76 | BNF_Def.bnf -> local_theory -> (BNF_Def.bnf * (typ list * absT_info)) * local_theory | 
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changeset | 77 | end; | 
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changeset | 78 | |
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changeset | 79 | structure BNF_Comp : BNF_COMP = | 
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changeset | 80 | struct | 
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changeset | 81 | |
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changeset | 82 | open BNF_Def | 
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changeset | 83 | open BNF_Util | 
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changeset | 84 | open BNF_Tactics | 
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changeset | 85 | open BNF_Comp_Tactics | 
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changeset | 86 | |
| 69593 | 87 | val typedef_threshold = Attrib.setup_config_int \<^binding>\<open>bnf_typedef_threshold\<close> (K 6); | 
| 59710 | 88 | |
| 63800 | 89 | fun with_typedef_threshold threshold f lthy = | 
| 90 | lthy | |
| 91 | |> Config.put typedef_threshold threshold | |
| 92 | |> f | |
| 93 | |> Config.put typedef_threshold (Config.get lthy typedef_threshold); | |
| 94 | ||
| 95 | fun with_typedef_threshold_yield threshold f lthy = | |
| 96 | lthy | |
| 97 | |> Config.put typedef_threshold threshold | |
| 98 | |> f | |
| 99 | ||> Config.put typedef_threshold (Config.get lthy typedef_threshold); | |
| 100 | ||
| 69593 | 101 | val ID_bnf = the (bnf_of \<^context> "BNF_Composition.ID"); | 
| 102 | val DEADID_bnf = the (bnf_of \<^context> "BNF_Composition.DEADID"); | |
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changeset | 103 | |
| 55706 | 104 | type comp_cache = (bnf * (typ list * typ list)) Typtab.table; | 
| 105 | ||
| 55904 | 106 | fun key_of_types s Ts = Type (s, Ts); | 
| 107 | fun key_of_typess s = key_of_types s o map (key_of_types ""); | |
| 108 | fun typ_of_int n = Type (string_of_int n, []); | |
| 109 | fun typ_of_bnf bnf = | |
| 110 | key_of_typess "" [[T_of_bnf bnf], lives_of_bnf bnf, sort Term_Ord.typ_ord (deads_of_bnf bnf)]; | |
| 111 | ||
| 112 | fun key_of_kill n bnf = key_of_types "k" [typ_of_int n, typ_of_bnf bnf]; | |
| 113 | fun key_of_lift n bnf = key_of_types "l" [typ_of_int n, typ_of_bnf bnf]; | |
| 114 | fun key_of_permute src dest bnf = | |
| 115 | key_of_types "p" (map typ_of_int src @ map typ_of_int dest @ [typ_of_bnf bnf]); | |
| 116 | fun key_of_compose oDs Dss Ass outer inners = | |
| 117 | key_of_types "c" (map (key_of_typess "") [[oDs], Dss, Ass, [map typ_of_bnf (outer :: inners)]]); | |
| 118 | ||
| 119 | fun cache_comp_simple key cache (bnf, (unfold_set, lthy)) = | |
| 120 | (bnf, ((Typtab.update (key, (bnf, ([], []))) cache, unfold_set), lthy)); | |
| 121 | ||
| 122 | fun cache_comp key (bnf_Ds_As, ((cache, unfold_set), lthy)) = | |
| 123 | (bnf_Ds_As, ((Typtab.update (key, bnf_Ds_As) cache, unfold_set), lthy)); | |
| 124 | ||
| 49502 | 125 | type unfold_set = {
 | 
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changeset | 126 | map_unfolds: thm list, | 
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changeset | 127 | set_unfoldss: thm list list, | 
| 71261 | 128 | rel_unfolds: thm list, | 
| 129 | pred_unfolds: thm list | |
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changeset | 130 | }; | 
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changeset | 131 | |
| 55706 | 132 | val empty_comp_cache = Typtab.empty; | 
| 71261 | 133 | val empty_unfolds = {map_unfolds = [], set_unfoldss = [], rel_unfolds = [], pred_unfolds = []};
 | 
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changeset | 134 | |
| 49503 | 135 | fun add_to_thms thms new = thms |> not (Thm.is_reflexive new) ? insert Thm.eq_thm new; | 
| 136 | fun adds_to_thms thms news = insert (eq_set Thm.eq_thm) (no_reflexive news) thms; | |
| 137 | ||
| 71261 | 138 | fun add_to_unfolds map sets rel pred | 
| 139 |   {map_unfolds, set_unfoldss, rel_unfolds, pred_unfolds} =
 | |
| 49503 | 140 |   {map_unfolds = add_to_thms map_unfolds map,
 | 
| 141 | set_unfoldss = adds_to_thms set_unfoldss sets, | |
| 71261 | 142 | rel_unfolds = add_to_thms rel_unfolds rel, | 
| 143 | pred_unfolds = add_to_thms pred_unfolds pred}; | |
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changeset | 144 | |
| 49503 | 145 | fun add_bnf_to_unfolds bnf = | 
| 71261 | 146 | add_to_unfolds (map_def_of_bnf bnf) (set_defs_of_bnf bnf) (rel_def_of_bnf bnf) (pred_def_of_bnf bnf); | 
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changeset | 147 | |
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changeset | 148 | val bdTN = "bdT"; | 
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changeset | 149 | |
| 49425 | 150 | fun mk_killN n = "_kill" ^ string_of_int n; | 
| 151 | fun mk_liftN n = "_lift" ^ string_of_int n; | |
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changeset | 152 | fun mk_permuteN src dest = | 
| 49425 | 153 | "_permute_" ^ implode (map string_of_int src) ^ "_" ^ implode (map string_of_int dest); | 
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changeset | 154 | |
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changeset | 155 | |
| 58181 | 156 | val id_bnf_def = @{thm id_bnf_def};
 | 
| 74575 | 157 | val expand_id_bnf_def = | 
| 158 | Envir.expand_term_defs dest_Const | |
| 159 | [Thm.prop_of id_bnf_def |> Logic.dest_equals |> apfst dest_Const]; | |
| 55937 | 160 | |
| 69593 | 161 | fun is_sum_prod_natLeq (Const (\<^const_name>\<open>csum\<close>, _) $ t $ u) = forall is_sum_prod_natLeq [t, u] | 
| 162 | | is_sum_prod_natLeq (Const (\<^const_name>\<open>cprod\<close>, _) $ t $ u) = forall is_sum_prod_natLeq [t, u] | |
| 163 | | is_sum_prod_natLeq t = t aconv \<^term>\<open>natLeq\<close>; | |
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changeset | 164 | |
| 49502 | 165 | fun clean_compose_bnf const_policy qualify b outer inners (unfold_set, lthy) = | 
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changeset | 166 | let | 
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changeset | 167 | val olive = live_of_bnf outer; | 
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changeset | 168 | val onwits = nwits_of_bnf outer; | 
| 60207 | 169 | val odeads = deads_of_bnf outer; | 
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changeset | 170 | val inner = hd inners; | 
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changeset | 171 | val ilive = live_of_bnf inner; | 
| 60207 | 172 | val ideadss = map deads_of_bnf inners; | 
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changeset | 173 | val inwitss = map nwits_of_bnf inners; | 
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changeset | 174 | |
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changeset | 175 | (* TODO: check olive = length inners > 0, | 
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changeset | 176 | forall inner from inners. ilive = live, | 
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changeset | 177 | forall inner from inners. idead = dead *) | 
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changeset | 178 | |
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changeset | 179 | val (oDs, lthy1) = apfst (map TFree) | 
| 60207 | 180 | (Variable.invent_types (map Type.sort_of_atyp odeads) lthy); | 
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changeset | 181 | val (Dss, lthy2) = apfst (map (map TFree)) | 
| 60207 | 182 | (fold_map Variable.invent_types (map (map Type.sort_of_atyp) ideadss) lthy1); | 
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changeset | 183 | val (Ass, lthy3) = apfst (replicate ilive o map TFree) | 
| 69593 | 184 | (Variable.invent_types (replicate ilive \<^sort>\<open>type\<close>) lthy2); | 
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changeset | 185 | val As = if ilive > 0 then hd Ass else []; | 
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changeset | 186 | val Ass_repl = replicate olive As; | 
| 55906 | 187 | val (Bs, names_lthy) = apfst (map TFree) | 
| 69593 | 188 | (Variable.invent_types (replicate ilive \<^sort>\<open>type\<close>) lthy3); | 
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changeset | 189 | val Bss_repl = replicate olive Bs; | 
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changeset | 190 | |
| 62324 | 191 | val (((((fs', Qs'), Ps'), Asets), xs), _) = names_lthy | 
| 52923 | 192 | |> apfst snd o mk_Frees' "f" (map2 (curry op -->) As Bs) | 
| 49463 | 193 | ||>> apfst snd o mk_Frees' "Q" (map2 mk_pred2T As Bs) | 
| 62324 | 194 | ||>> apfst snd o mk_Frees' "P" (map mk_pred1T As) | 
| 49456 | 195 | ||>> mk_Frees "A" (map HOLogic.mk_setT As) | 
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changeset | 196 | ||>> mk_Frees "x" As; | 
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changeset | 197 | |
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changeset | 198 |     val CAs = @{map 3} mk_T_of_bnf Dss Ass_repl inners;
 | 
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changeset | 199 | val CCA = mk_T_of_bnf oDs CAs outer; | 
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changeset | 200 |     val CBs = @{map 3} mk_T_of_bnf Dss Bss_repl inners;
 | 
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changeset | 201 | val outer_sets = mk_sets_of_bnf (replicate olive oDs) (replicate olive CAs) outer; | 
| 61760 | 202 | val inner_setss = | 
| 203 |       @{map 3} mk_sets_of_bnf (map (replicate ilive) Dss) (replicate olive Ass) inners;
 | |
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changeset | 204 |     val inner_bds = @{map 3} mk_bd_of_bnf Dss Ass_repl inners;
 | 
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changeset | 205 | val outer_bd = mk_bd_of_bnf oDs CAs outer; | 
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changeset | 206 | |
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changeset | 207 | (*%f1 ... fn. outer.map (inner_1.map f1 ... fn) ... (inner_m.map f1 ... fn)*) | 
| 49303 | 208 | val mapx = fold_rev Term.abs fs' | 
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changeset | 209 | (Term.list_comb (mk_map_of_bnf oDs CAs CBs outer, | 
| 49463 | 210 | map2 (fn Ds => (fn f => Term.list_comb (f, map Bound (ilive - 1 downto 0))) o | 
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changeset | 211 | mk_map_of_bnf Ds As Bs) Dss inners)); | 
| 49507 | 212 | (*%Q1 ... Qn. outer.rel (inner_1.rel Q1 ... Qn) ... (inner_m.rel Q1 ... Qn)*) | 
| 213 | val rel = fold_rev Term.abs Qs' | |
| 214 | (Term.list_comb (mk_rel_of_bnf oDs CAs CBs outer, | |
| 49463 | 215 | map2 (fn Ds => (fn f => Term.list_comb (f, map Bound (ilive - 1 downto 0))) o | 
| 49507 | 216 | mk_rel_of_bnf Ds As Bs) Dss inners)); | 
| 62324 | 217 | (*%P1 ... Pn. outer.pred (inner_1.pred P1 ... Pn) ... (inner_m.pred P1 ... Pn)*) | 
| 218 | val pred = fold_rev Term.abs Ps' | |
| 219 | (Term.list_comb (mk_pred_of_bnf oDs CAs outer, | |
| 220 | map2 (fn Ds => (fn f => Term.list_comb (f, map Bound (ilive - 1 downto 0))) o | |
| 221 | mk_pred_of_bnf Ds As) Dss inners)); | |
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changeset | 222 | |
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changeset | 223 |     (*Union o collect {outer.set_1 ... outer.set_m} o outer.map inner_1.set_i ... inner_m.set_i*)
 | 
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changeset | 224 |     (*Union o collect {image inner_1.set_i o outer.set_1 ... image inner_m.set_i o outer.set_m}*)
 | 
| 49303 | 225 | fun mk_set i = | 
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changeset | 226 | let | 
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changeset | 227 | val (setTs, T) = `(replicate olive o HOLogic.mk_setT) (nth As i); | 
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changeset | 228 | val outer_set = mk_collect | 
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changeset | 229 | (mk_sets_of_bnf (replicate olive oDs) (replicate olive setTs) outer) | 
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changeset | 230 | (mk_T_of_bnf oDs setTs outer --> HOLogic.mk_setT T); | 
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changeset | 231 | val inner_sets = map (fn sets => nth sets i) inner_setss; | 
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changeset | 232 | val outer_map = mk_map_of_bnf oDs CAs setTs outer; | 
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changeset | 233 | val map_inner_sets = Term.list_comb (outer_map, inner_sets); | 
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changeset | 234 | val collect_image = mk_collect | 
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changeset | 235 | (map2 (fn f => fn set => HOLogic.mk_comp (mk_image f, set)) inner_sets outer_sets) | 
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changeset | 236 | (CCA --> HOLogic.mk_setT T); | 
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changeset | 237 | in | 
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changeset | 238 | (Library.foldl1 HOLogic.mk_comp [mk_Union T, outer_set, map_inner_sets], | 
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changeset | 239 | HOLogic.mk_comp (mk_Union T, collect_image)) | 
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changeset | 240 | end; | 
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changeset | 241 | |
| 49303 | 242 | val (sets, sets_alt) = map_split mk_set (0 upto ilive - 1); | 
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changeset | 243 | |
| 55906 | 244 | fun mk_simplified_set set = | 
| 245 | let | |
| 246 | val setT = fastype_of set; | |
| 69593 | 247 | val var_set' = Const (\<^const_name>\<open>id_bnf\<close>, setT --> setT) $ Var ((Name.uu, 0), setT); | 
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changeset | 248 | val goal = mk_Trueprop_eq (var_set', set); | 
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changeset | 249 |         fun tac {context = ctxt, prems = _} =
 | 
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changeset | 250 | mk_simplified_set_tac ctxt (collect_set_map_of_bnf outer); | 
| 55906 | 251 | val set'_eq_set = | 
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changeset | 252 | Goal.prove (*no sorry*) names_lthy [] [] goal tac | 
| 70494 | 253 | |> Thm.close_derivation \<^here>; | 
| 55906 | 254 | val set' = fst (HOLogic.dest_eq (HOLogic.dest_Trueprop (Thm.prop_of set'_eq_set))); | 
| 255 | in | |
| 256 | (set', set'_eq_set) | |
| 257 | end; | |
| 258 | ||
| 259 | val (sets', set'_eq_sets) = | |
| 260 | map_split mk_simplified_set sets | |
| 261 | ||> Proof_Context.export names_lthy lthy; | |
| 262 | ||
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changeset | 263 | (*(inner_1.bd +c ... +c inner_m.bd) *c outer.bd*) | 
| 54421 | 264 | val bd = mk_cprod (Library.foldr1 (uncurry mk_csum) inner_bds) outer_bd; | 
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changeset | 265 | |
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changeset | 266 | val (bd', bd_ordIso_natLeq_thm_opt) = | 
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changeset | 267 | if is_sum_prod_natLeq bd then | 
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changeset | 268 | let | 
| 69593 | 269 | val bd' = \<^term>\<open>natLeq\<close>; | 
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changeset | 270 | val bd_bd' = HOLogic.mk_prod (bd, bd'); | 
| 69593 | 271 | val ordIso = Const (\<^const_name>\<open>ordIso\<close>, HOLogic.mk_setT (fastype_of bd_bd')); | 
| 57567 | 272 | val goal = mk_Trueprop_mem (bd_bd', ordIso); | 
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changeset | 273 | in | 
| 60757 | 274 | (bd', SOME (Goal.prove_sorry lthy [] [] goal (bd_ordIso_natLeq_tac o #context) | 
| 70494 | 275 | |> Thm.close_derivation \<^here>)) | 
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changeset | 276 | end | 
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changeset | 277 | else | 
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changeset | 278 | (bd, NONE); | 
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changeset | 279 | |
| 60728 | 280 | fun map_id0_tac ctxt = | 
| 281 | mk_comp_map_id0_tac ctxt (map_id0_of_bnf outer) (map_cong0_of_bnf outer) | |
| 53270 | 282 | (map map_id0_of_bnf inners); | 
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changeset | 283 | |
| 60728 | 284 | fun map_comp0_tac ctxt = | 
| 285 | mk_comp_map_comp0_tac ctxt (map_comp0_of_bnf outer) (map_cong0_of_bnf outer) | |
| 53287 | 286 | (map map_comp0_of_bnf inners); | 
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changeset | 287 | |
| 55906 | 288 | fun mk_single_set_map0_tac i ctxt = | 
| 289 | mk_comp_set_map0_tac ctxt (nth set'_eq_sets i) (map_comp0_of_bnf outer) | |
| 290 | (map_cong0_of_bnf outer) (collect_set_map_of_bnf outer) | |
| 53289 | 291 | (map ((fn thms => nth thms i) o set_map0_of_bnf) inners); | 
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changeset | 292 | |
| 53289 | 293 | val set_map0_tacs = map mk_single_set_map0_tac (0 upto ilive - 1); | 
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changeset | 294 | |
| 60728 | 295 | fun bd_card_order_tac ctxt = | 
| 296 | mk_comp_bd_card_order_tac ctxt (map bd_card_order_of_bnf inners) (bd_card_order_of_bnf outer); | |
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changeset | 297 | |
| 60728 | 298 | fun bd_cinfinite_tac ctxt = | 
| 299 | mk_comp_bd_cinfinite_tac ctxt (bd_cinfinite_of_bnf inner) (bd_cinfinite_of_bnf outer); | |
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changeset | 300 | |
| 75624 | 301 | fun bd_regularCard_tac ctxt = | 
| 302 | mk_comp_bd_regularCard_tac ctxt (map bd_regularCard_of_bnf inners) (bd_regularCard_of_bnf outer) | |
| 303 | (map bd_Cinfinite_of_bnf inners) (bd_Cinfinite_of_bnf outer); | |
| 304 | ||
| 49303 | 305 | val set_alt_thms = | 
| 52059 | 306 | if Config.get lthy quick_and_dirty then | 
| 49456 | 307 | [] | 
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changeset | 308 | else | 
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changeset | 309 | map (fn goal => | 
| 51551 | 310 | Goal.prove_sorry lthy [] [] goal | 
| 49714 | 311 |             (fn {context = ctxt, prems = _} =>
 | 
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changeset | 312 | mk_comp_set_alt_tac ctxt (collect_set_map_of_bnf outer)) | 
| 70494 | 313 | |> Thm.close_derivation \<^here>) | 
| 63824 | 314 | (map2 (curry mk_Trueprop_eq) sets sets_alt); | 
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changeset | 315 | |
| 55906 | 316 | fun map_cong0_tac ctxt = | 
| 317 | mk_comp_map_cong0_tac ctxt set'_eq_sets set_alt_thms (map_cong0_of_bnf outer) | |
| 318 | (map map_cong0_of_bnf inners); | |
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changeset | 319 | |
| 49303 | 320 | val set_bd_tacs = | 
| 52059 | 321 | if Config.get lthy quick_and_dirty then | 
| 49669 | 322 | replicate ilive (K all_tac) | 
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changeset | 323 | else | 
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changeset | 324 | let | 
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changeset | 325 | val outer_set_bds = set_bd_of_bnf outer; | 
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changeset | 326 | val inner_set_bdss = map set_bd_of_bnf inners; | 
| 75624 | 327 | val inner_bd_Cinfinites = map bd_Cinfinite_of_bnf inners; | 
| 328 | val inner_bd_regularCards = map bd_regularCard_of_bnf inners; | |
| 49303 | 329 | fun single_set_bd_thm i j = | 
| 75624 | 330 |             @{thm comp_single_set_bd_strict} OF [nth inner_bd_Cinfinites j, nth inner_bd_regularCards j,
 | 
| 331 | bd_Cinfinite_of_bnf outer, bd_regularCard_of_bnf outer, nth (nth inner_set_bdss j) i, | |
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changeset | 332 | nth outer_set_bds j] | 
| 75624 | 333 |           fun single_bd_Cinfinite i = @{thm Cinfinite_cprod2} OF [
 | 
| 334 |             @{thm Cinfinite_Cnotzero} OF [bd_Cinfinite_of_bnf outer],
 | |
| 335 | nth inner_bd_Cinfinites i | |
| 336 | ] | |
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changeset | 337 | val single_set_bd_thmss = | 
| 49303 | 338 | map ((fn f => map f (0 upto olive - 1)) o single_set_bd_thm) (0 upto ilive - 1); | 
| 75624 | 339 | val Gbd_Fbd_Cinfinites = map single_bd_Cinfinite (0 upto length inners - 1) | 
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changeset | 340 | in | 
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changeset | 341 |           @{map 3} (fn set'_eq_set => fn set_alt => fn single_set_bds => fn ctxt =>
 | 
| 75624 | 342 | mk_comp_set_bd_tac ctxt set'_eq_set bd_ordIso_natLeq_thm_opt set_alt single_set_bds | 
| 343 | Gbd_Fbd_Cinfinites) | |
| 55906 | 344 | set'_eq_sets set_alt_thms single_set_bd_thmss | 
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changeset | 345 | end; | 
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changeset | 346 | |
| 49303 | 347 | val in_alt_thm = | 
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changeset | 348 | let | 
| 49303 | 349 | val inx = mk_in Asets sets CCA; | 
| 350 | val in_alt = mk_in (map2 (mk_in Asets) inner_setss CAs) outer_sets CCA; | |
| 351 | val goal = fold_rev Logic.all Asets (mk_Trueprop_eq (inx, in_alt)); | |
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changeset | 352 | in | 
| 51551 | 353 | Goal.prove_sorry lthy [] [] goal | 
| 49714 | 354 |           (fn {context = ctxt, prems = _} => mk_comp_in_alt_tac ctxt set_alt_thms)
 | 
| 70494 | 355 | |> Thm.close_derivation \<^here> | 
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changeset | 356 | end; | 
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changeset | 357 | |
| 60728 | 358 | fun le_rel_OO_tac ctxt = mk_le_rel_OO_tac ctxt (le_rel_OO_of_bnf outer) (rel_mono_of_bnf outer) | 
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changeset | 359 | (map le_rel_OO_of_bnf inners); | 
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changeset | 360 | |
| 55906 | 361 | fun rel_OO_Grp_tac ctxt = | 
| 49456 | 362 | let | 
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changeset | 363 | val outer_rel_Grp = rel_Grp_of_bnf outer RS sym; | 
| 49463 | 364 | val thm = | 
| 62324 | 365 |           trans OF [in_alt_thm RS @{thm OO_Grp_cong},
 | 
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changeset | 366 |              trans OF [@{thm arg_cong2[of _ _ _ _ relcompp]} OF
 | 
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changeset | 367 |                [trans OF [outer_rel_Grp RS @{thm arg_cong[of _ _ conversep]},
 | 
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changeset | 368 | rel_conversep_of_bnf outer RS sym], outer_rel_Grp], | 
| 61242 | 369 | trans OF [rel_OO_of_bnf outer RS sym, rel_cong0_of_bnf outer OF | 
| 62324 | 370 | (map (fn bnf => rel_OO_Grp_of_bnf bnf RS sym) inners)]]] RS sym; | 
| 49456 | 371 | in | 
| 60728 | 372 | unfold_thms_tac ctxt set'_eq_sets THEN rtac ctxt thm 1 | 
| 49463 | 373 | end; | 
| 49456 | 374 | |
| 62324 | 375 | fun pred_set_tac ctxt = | 
| 376 | let | |
| 377 |         val pred_alt = unfold_thms ctxt @{thms Ball_Collect}
 | |
| 378 | (trans OF [pred_cong0_of_bnf outer OF map pred_set_of_bnf inners, pred_set_of_bnf outer]); | |
| 379 |         val in_alt = in_alt_thm RS @{thm Collect_inj} RS sym;
 | |
| 380 | in | |
| 381 |         unfold_thms_tac ctxt (@{thm Ball_Collect} :: set'_eq_sets) THEN
 | |
| 382 | HEADGOAL (rtac ctxt (trans OF [pred_alt, in_alt])) | |
| 383 | end | |
| 384 | ||
| 53289 | 385 | val tacs = zip_axioms map_id0_tac map_comp0_tac map_cong0_tac set_map0_tacs bd_card_order_tac | 
| 75624 | 386 | bd_cinfinite_tac bd_regularCard_tac set_bd_tacs le_rel_OO_tac rel_OO_Grp_tac pred_set_tac; | 
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changeset | 387 | |
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changeset | 388 | val outer_wits = mk_wits_of_bnf (replicate onwits oDs) (replicate onwits CAs) outer; | 
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changeset | 389 | |
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changeset | 390 | val inner_witss = map (map (fn (I, wit) => Term.list_comb (wit, map (nth xs) I))) | 
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changeset | 391 |       (@{map 3} (fn Ds => fn n => mk_wits_of_bnf (replicate n Ds) (replicate n As))
 | 
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changeset | 392 | Dss inwitss inners); | 
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changeset | 393 | |
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changeset | 394 | val inner_witsss = map (map (nth inner_witss) o fst) outer_wits; | 
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changeset | 395 | |
| 49303 | 396 | val wits = (inner_witsss, (map (single o snd) outer_wits)) | 
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changeset | 397 | |-> map2 (fold (map_product (fn iwit => fn owit => owit $ iwit))) | 
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changeset | 398 | |> flat | 
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changeset | 399 | |> map (`(fn t => Term.add_frees t [])) | 
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changeset | 400 | |> minimize_wits | 
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changeset | 401 | |> map (fn (frees, t) => fold absfree frees t); | 
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changeset | 402 | |
| 55197 | 403 | fun wit_tac ctxt = | 
| 55906 | 404 | mk_comp_wit_tac ctxt set'_eq_sets (wit_thms_of_bnf outer) (collect_set_map_of_bnf outer) | 
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changeset | 405 | (maps wit_thms_of_bnf inners); | 
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changeset | 406 | |
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changeset | 407 | val (bnf', lthy') = | 
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changeset | 408 | bnf_def const_policy (K Dont_Note) true qualify tacs wit_tac (SOME (oDs @ flat Dss)) | 
| 62324 | 409 | Binding.empty Binding.empty Binding.empty [] | 
| 410 | (((((((b, CCA), mapx), sets'), bd'), wits), SOME rel), SOME pred) lthy; | |
| 55906 | 411 | |
| 412 | val phi = | |
| 58181 | 413 | Morphism.thm_morphism "BNF" (unfold_thms lthy' [id_bnf_def]) | 
| 414 | $> Morphism.term_morphism "BNF" expand_id_bnf_def; | |
| 55906 | 415 | |
| 416 | val bnf'' = morph_bnf phi bnf'; | |
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changeset | 417 | in | 
| 55906 | 418 | (bnf'', (add_bnf_to_unfolds bnf'' unfold_set, lthy')) | 
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changeset | 419 | end; | 
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changeset | 420 | |
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changeset | 421 | (* Killing live variables *) | 
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changeset | 422 | |
| 55904 | 423 | fun raw_kill_bnf qualify n bnf (accum as (unfold_set, lthy)) = | 
| 424 | if n = 0 then (bnf, accum) else | |
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changeset | 425 | let | 
| 49425 | 426 | val b = Binding.suffix_name (mk_killN n) (name_of_bnf bnf); | 
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changeset | 427 | val live = live_of_bnf bnf; | 
| 60207 | 428 | val deads = deads_of_bnf bnf; | 
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changeset | 429 | val nwits = nwits_of_bnf bnf; | 
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changeset | 430 | |
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changeset | 431 | (* TODO: check 0 < n <= live *) | 
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changeset | 432 | |
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changeset | 433 | val (Ds, lthy1) = apfst (map TFree) | 
| 60207 | 434 | (Variable.invent_types (map Type.sort_of_atyp deads) lthy); | 
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changeset | 435 | val ((killedAs, As), lthy2) = apfst (`(take n) o map TFree) | 
| 69593 | 436 | (Variable.invent_types (replicate live \<^sort>\<open>type\<close>) lthy1); | 
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changeset | 437 | val (Bs, _(*lthy3*)) = apfst (append killedAs o map TFree) | 
| 69593 | 438 | (Variable.invent_types (replicate (live - n) \<^sort>\<open>type\<close>) lthy2); | 
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changeset | 439 | |
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changeset | 440 | val ((Asets, lives), _(*names_lthy*)) = lthy | 
| 49456 | 441 | |> mk_Frees "A" (map HOLogic.mk_setT (drop n As)) | 
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changeset | 442 | ||>> mk_Frees "x" (drop n As); | 
| 69593 | 443 | val xs = map (fn T => Const (\<^const_name>\<open>undefined\<close>, T)) killedAs @ lives; | 
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changeset | 444 | |
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changeset | 445 | val T = mk_T_of_bnf Ds As bnf; | 
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changeset | 446 | |
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changeset | 447 | (*bnf.map id ... id*) | 
| 49303 | 448 | val mapx = Term.list_comb (mk_map_of_bnf Ds As Bs bnf, map HOLogic.id_const killedAs); | 
| 49507 | 449 | (*bnf.rel (op =) ... (op =)*) | 
| 450 | val rel = Term.list_comb (mk_rel_of_bnf Ds As Bs bnf, map HOLogic.eq_const killedAs); | |
| 62324 | 451 | (*bnf.pred (%_. True) ... (%_ True)*) | 
| 452 | val pred = Term.list_comb (mk_pred_of_bnf Ds As bnf, | |
| 69593 | 453 | map (fn T => Term.absdummy T \<^term>\<open>True\<close>) killedAs); | 
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changeset | 454 | |
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changeset | 455 | val bnf_sets = mk_sets_of_bnf (replicate live Ds) (replicate live As) bnf; | 
| 49303 | 456 | val sets = drop n bnf_sets; | 
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changeset | 457 | |
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changeset | 458 | val bd = mk_bd_of_bnf Ds As bnf; | 
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changeset | 459 | |
| 60728 | 460 | fun map_id0_tac ctxt = rtac ctxt (map_id0_of_bnf bnf) 1; | 
| 55197 | 461 | fun map_comp0_tac ctxt = | 
| 55067 | 462 | unfold_thms_tac ctxt ((map_comp0_of_bnf bnf RS sym) :: | 
| 60728 | 463 |         @{thms comp_assoc id_comp comp_id}) THEN rtac ctxt refl 1;
 | 
| 55197 | 464 | fun map_cong0_tac ctxt = | 
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changeset | 465 | mk_kill_map_cong0_tac ctxt n (live - n) (map_cong0_of_bnf bnf); | 
| 60728 | 466 | val set_map0_tacs = map (fn thm => fn ctxt => rtac ctxt thm 1) (drop n (set_map0_of_bnf bnf)); | 
| 467 | fun bd_card_order_tac ctxt = rtac ctxt (bd_card_order_of_bnf bnf) 1; | |
| 468 | fun bd_cinfinite_tac ctxt = rtac ctxt (bd_cinfinite_of_bnf bnf) 1; | |
| 75624 | 469 | fun bd_regularCard_tac ctxt = rtac ctxt (bd_regularCard_of_bnf bnf) 1; | 
| 60728 | 470 | val set_bd_tacs = map (fn thm => fn ctxt => rtac ctxt thm 1) (drop n (set_bd_of_bnf bnf)); | 
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changeset | 471 | |
| 49303 | 472 | val in_alt_thm = | 
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changeset | 473 | let | 
| 49303 | 474 | val inx = mk_in Asets sets T; | 
| 475 | val in_alt = mk_in (map HOLogic.mk_UNIV killedAs @ Asets) bnf_sets T; | |
| 476 | val goal = fold_rev Logic.all Asets (mk_Trueprop_eq (inx, in_alt)); | |
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changeset | 477 | in | 
| 60728 | 478 |         Goal.prove_sorry lthy [] [] goal (fn {context = ctxt, prems = _} =>
 | 
| 70494 | 479 | kill_in_alt_tac ctxt) |> Thm.close_derivation \<^here> | 
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changeset | 480 | end; | 
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changeset | 481 | |
| 55197 | 482 | fun le_rel_OO_tac ctxt = | 
| 60728 | 483 |       EVERY' [rtac ctxt @{thm ord_le_eq_trans}, rtac ctxt (le_rel_OO_of_bnf bnf)] 1 THEN
 | 
| 484 |       unfold_thms_tac ctxt @{thms eq_OO} THEN rtac ctxt refl 1;
 | |
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changeset | 485 | |
| 60728 | 486 | fun rel_OO_Grp_tac ctxt = | 
| 49456 | 487 | let | 
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changeset | 488 | val rel_Grp = rel_Grp_of_bnf bnf RS sym | 
| 49463 | 489 | val thm = | 
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changeset | 490 |           (trans OF [in_alt_thm RS @{thm OO_Grp_cong},
 | 
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changeset | 491 |             trans OF [@{thm arg_cong2[of _ _ _ _ relcompp]} OF
 | 
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changeset | 492 |               [trans OF [rel_Grp RS @{thm arg_cong[of _ _ conversep]},
 | 
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changeset | 493 | rel_conversep_of_bnf bnf RS sym], rel_Grp], | 
| 61242 | 494 | trans OF [rel_OO_of_bnf bnf RS sym, rel_cong0_of_bnf bnf OF | 
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changeset | 495 |                 (replicate n @{thm trans[OF Grp_UNIV_id[OF refl] eq_alt[symmetric]]} @
 | 
| 52660 | 496 |                  replicate (live - n) @{thm Grp_fst_snd})]]] RS sym);
 | 
| 49456 | 497 | in | 
| 60728 | 498 | rtac ctxt thm 1 | 
| 49456 | 499 | end; | 
| 500 | ||
| 62324 | 501 | fun pred_set_tac ctxt = mk_simple_pred_set_tac ctxt (pred_set_of_bnf bnf) in_alt_thm; | 
| 502 | ||
| 53289 | 503 | val tacs = zip_axioms map_id0_tac map_comp0_tac map_cong0_tac set_map0_tacs bd_card_order_tac | 
| 75624 | 504 | bd_cinfinite_tac bd_regularCard_tac set_bd_tacs le_rel_OO_tac rel_OO_Grp_tac pred_set_tac; | 
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changeset | 505 | |
| 49303 | 506 | val bnf_wits = mk_wits_of_bnf (replicate nwits Ds) (replicate nwits As) bnf; | 
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changeset | 507 | |
| 49303 | 508 | val wits = map (fn t => fold absfree (Term.add_frees t []) t) | 
| 509 | (map (fn (I, wit) => Term.list_comb (wit, map (nth xs) I)) bnf_wits); | |
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changeset | 510 | |
| 60752 | 511 | fun wit_tac ctxt = mk_simple_wit_tac ctxt (wit_thms_of_bnf bnf); | 
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changeset | 512 | |
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changeset | 513 | val (bnf', lthy') = | 
| 58297 | 514 | bnf_def Smart_Inline (K Dont_Note) true qualify tacs wit_tac (SOME (Ds @ killedAs)) | 
| 62324 | 515 | Binding.empty Binding.empty Binding.empty [] | 
| 516 | (((((((b, T), mapx), sets), bd), wits), SOME rel), SOME pred) lthy; | |
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changeset | 517 | in | 
| 49503 | 518 | (bnf', (add_bnf_to_unfolds bnf' unfold_set, lthy')) | 
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changeset | 519 | end; | 
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changeset | 520 | |
| 55904 | 521 | fun kill_bnf qualify n bnf (accum as ((cache, unfold_set), lthy)) = | 
| 522 | let val key = key_of_kill n bnf in | |
| 523 | (case Typtab.lookup cache key of | |
| 524 | SOME (bnf, _) => (bnf, accum) | |
| 525 | | NONE => cache_comp_simple key cache (raw_kill_bnf qualify n bnf (unfold_set, lthy))) | |
| 526 | end; | |
| 527 | ||
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changeset | 528 | (* Adding dummy live variables *) | 
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changeset | 529 | |
| 55904 | 530 | fun raw_lift_bnf qualify n bnf (accum as (unfold_set, lthy)) = | 
| 531 | if n = 0 then (bnf, accum) else | |
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changeset | 532 | let | 
| 49425 | 533 | val b = Binding.suffix_name (mk_liftN n) (name_of_bnf bnf); | 
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changeset | 534 | val live = live_of_bnf bnf; | 
| 60207 | 535 | val deads = deads_of_bnf bnf; | 
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changeset | 536 | val nwits = nwits_of_bnf bnf; | 
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changeset | 537 | |
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changeset | 538 | (* TODO: check 0 < n *) | 
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changeset | 539 | |
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changeset | 540 | val (Ds, lthy1) = apfst (map TFree) | 
| 60207 | 541 | (Variable.invent_types (map Type.sort_of_atyp deads) lthy); | 
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changeset | 542 | val ((newAs, As), lthy2) = apfst (chop n o map TFree) | 
| 69593 | 543 | (Variable.invent_types (replicate (n + live) \<^sort>\<open>type\<close>) lthy1); | 
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changeset | 544 | val ((newBs, Bs), _(*lthy3*)) = apfst (chop n o map TFree) | 
| 69593 | 545 | (Variable.invent_types (replicate (n + live) \<^sort>\<open>type\<close>) lthy2); | 
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changeset | 546 | |
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changeset | 547 | val (Asets, _(*names_lthy*)) = lthy | 
| 49456 | 548 | |> mk_Frees "A" (map HOLogic.mk_setT (newAs @ As)); | 
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changeset | 549 | |
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changeset | 550 | val T = mk_T_of_bnf Ds As bnf; | 
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changeset | 551 | |
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changeset | 552 | (*%f1 ... fn. bnf.map*) | 
| 49303 | 553 | val mapx = | 
| 52923 | 554 | fold_rev Term.absdummy (map2 (curry op -->) newAs newBs) (mk_map_of_bnf Ds As Bs bnf); | 
| 49507 | 555 | (*%Q1 ... Qn. bnf.rel*) | 
| 556 | val rel = fold_rev Term.absdummy (map2 mk_pred2T newAs newBs) (mk_rel_of_bnf Ds As Bs bnf); | |
| 62324 | 557 | (*%P1 ... Pn. bnf.pred*) | 
| 558 | val pred = fold_rev Term.absdummy (map mk_pred1T newAs) (mk_pred_of_bnf Ds As bnf); | |
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changeset | 559 | |
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changeset | 560 | val bnf_sets = mk_sets_of_bnf (replicate live Ds) (replicate live As) bnf; | 
| 49303 | 561 | val sets = map (fn A => absdummy T (HOLogic.mk_set A [])) newAs @ bnf_sets; | 
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changeset | 562 | |
| 49303 | 563 | val bd = mk_bd_of_bnf Ds As bnf; | 
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changeset | 564 | |
| 60728 | 565 | fun map_id0_tac ctxt = rtac ctxt (map_id0_of_bnf bnf) 1; | 
| 55197 | 566 | fun map_comp0_tac ctxt = | 
| 55067 | 567 | unfold_thms_tac ctxt ((map_comp0_of_bnf bnf RS sym) :: | 
| 60728 | 568 |         @{thms comp_assoc id_comp comp_id}) THEN rtac ctxt refl 1;
 | 
| 55197 | 569 | fun map_cong0_tac ctxt = | 
| 60728 | 570 | rtac ctxt (map_cong0_of_bnf bnf) 1 THEN REPEAT_DETERM_N live (Goal.assume_rule_tac ctxt 1); | 
| 53289 | 571 | val set_map0_tacs = | 
| 52059 | 572 | if Config.get lthy quick_and_dirty then | 
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changeset | 573 | replicate (n + live) (K all_tac) | 
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changeset | 574 | else | 
| 60728 | 575 | replicate n empty_natural_tac @ | 
| 576 | map (fn thm => fn ctxt => rtac ctxt thm 1) (set_map0_of_bnf bnf); | |
| 577 | fun bd_card_order_tac ctxt = rtac ctxt (bd_card_order_of_bnf bnf) 1; | |
| 578 | fun bd_cinfinite_tac ctxt = rtac ctxt (bd_cinfinite_of_bnf bnf) 1; | |
| 75624 | 579 | fun bd_regularCard_tac ctxt = rtac ctxt (bd_regularCard_of_bnf bnf) 1; | 
| 49303 | 580 | val set_bd_tacs = | 
| 52059 | 581 | if Config.get lthy quick_and_dirty then | 
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changeset | 582 | replicate (n + live) (K all_tac) | 
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changeset | 583 | else | 
| 75624 | 584 | replicate n (fn ctxt => mk_lift_set_bd_tac ctxt (bd_Cinfinite_of_bnf bnf)) @ | 
| 60728 | 585 | (map (fn thm => fn ctxt => rtac ctxt thm 1) (set_bd_of_bnf bnf)); | 
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changeset | 586 | |
| 49303 | 587 | val in_alt_thm = | 
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changeset | 588 | let | 
| 49303 | 589 | val inx = mk_in Asets sets T; | 
| 590 | val in_alt = mk_in (drop n Asets) bnf_sets T; | |
| 591 | val goal = fold_rev Logic.all Asets (mk_Trueprop_eq (inx, in_alt)); | |
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changeset | 592 | in | 
| 60728 | 593 |         Goal.prove_sorry lthy [] [] goal (fn {context = ctxt, prems = _} => lift_in_alt_tac ctxt)
 | 
| 70494 | 594 | |> Thm.close_derivation \<^here> | 
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changeset | 595 | end; | 
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changeset | 596 | |
| 60728 | 597 | fun le_rel_OO_tac ctxt = rtac ctxt (le_rel_OO_of_bnf bnf) 1; | 
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changeset | 598 | |
| 60728 | 599 | fun rel_OO_Grp_tac ctxt = mk_simple_rel_OO_Grp_tac ctxt (rel_OO_Grp_of_bnf bnf) in_alt_thm; | 
| 49456 | 600 | |
| 62324 | 601 | fun pred_set_tac ctxt = mk_simple_pred_set_tac ctxt (pred_set_of_bnf bnf) in_alt_thm; | 
| 602 | ||
| 53289 | 603 | val tacs = zip_axioms map_id0_tac map_comp0_tac map_cong0_tac set_map0_tacs bd_card_order_tac | 
| 75624 | 604 | bd_cinfinite_tac bd_regularCard_tac set_bd_tacs le_rel_OO_tac rel_OO_Grp_tac pred_set_tac; | 
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changeset | 605 | |
| 49303 | 606 | val wits = map snd (mk_wits_of_bnf (replicate nwits Ds) (replicate nwits As) bnf); | 
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changeset | 607 | |
| 60752 | 608 | fun wit_tac ctxt = mk_simple_wit_tac ctxt (wit_thms_of_bnf bnf); | 
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changeset | 609 | |
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changeset | 610 | val (bnf', lthy') = | 
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changeset | 611 | bnf_def Smart_Inline (K Dont_Note) true qualify tacs wit_tac (SOME Ds) Binding.empty | 
| 62324 | 612 | Binding.empty Binding.empty [] | 
| 613 | (((((((b, T), mapx), sets), bd), wits), SOME rel), SOME pred) lthy; | |
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changeset | 614 | in | 
| 49503 | 615 | (bnf', (add_bnf_to_unfolds bnf' unfold_set, lthy')) | 
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changeset | 616 | end; | 
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changeset | 617 | |
| 55904 | 618 | fun lift_bnf qualify n bnf (accum as ((cache, unfold_set), lthy)) = | 
| 619 | let val key = key_of_lift n bnf in | |
| 620 | (case Typtab.lookup cache key of | |
| 621 | SOME (bnf, _) => (bnf, accum) | |
| 622 | | NONE => cache_comp_simple key cache (raw_lift_bnf qualify n bnf (unfold_set, lthy))) | |
| 623 | end; | |
| 624 | ||
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changeset | 625 | (* Changing the order of live variables *) | 
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changeset | 626 | |
| 55904 | 627 | fun raw_permute_bnf qualify src dest bnf (accum as (unfold_set, lthy)) = | 
| 628 | if src = dest then (bnf, accum) else | |
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changeset | 629 | let | 
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changeset | 630 | val b = Binding.suffix_name (mk_permuteN src dest) (name_of_bnf bnf) |> Binding.reset_pos; | 
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changeset | 631 | val live = live_of_bnf bnf; | 
| 60207 | 632 | val deads = deads_of_bnf bnf; | 
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changeset | 633 | val nwits = nwits_of_bnf bnf; | 
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changeset | 634 | |
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changeset | 635 | fun permute xs = permute_like_unique (op =) src dest xs; | 
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changeset | 636 | fun unpermute xs = permute_like_unique (op =) dest src xs; | 
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changeset | 637 | |
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changeset | 638 | val (Ds, lthy1) = apfst (map TFree) | 
| 60207 | 639 | (Variable.invent_types (map Type.sort_of_atyp deads) lthy); | 
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changeset | 640 | val (As, lthy2) = apfst (map TFree) | 
| 69593 | 641 | (Variable.invent_types (replicate live \<^sort>\<open>type\<close>) lthy1); | 
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changeset | 642 | val (Bs, _(*lthy3*)) = apfst (map TFree) | 
| 69593 | 643 | (Variable.invent_types (replicate live \<^sort>\<open>type\<close>) lthy2); | 
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changeset | 644 | |
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changeset | 645 | val (Asets, _(*names_lthy*)) = lthy | 
| 49456 | 646 | |> mk_Frees "A" (map HOLogic.mk_setT (permute As)); | 
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changeset | 647 | |
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changeset | 648 | val T = mk_T_of_bnf Ds As bnf; | 
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changeset | 649 | |
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changeset | 650 | (*%f(1) ... f(n). bnf.map f\<sigma>(1) ... f\<sigma>(n)*) | 
| 49303 | 651 | val mapx = fold_rev Term.absdummy (permute (map2 (curry op -->) As Bs)) | 
| 53038 | 652 | (Term.list_comb (mk_map_of_bnf Ds As Bs bnf, unpermute (map Bound (live - 1 downto 0)))); | 
| 49507 | 653 | (*%Q(1) ... Q(n). bnf.rel Q\<sigma>(1) ... Q\<sigma>(n)*) | 
| 654 | val rel = fold_rev Term.absdummy (permute (map2 mk_pred2T As Bs)) | |
| 53038 | 655 | (Term.list_comb (mk_rel_of_bnf Ds As Bs bnf, unpermute (map Bound (live - 1 downto 0)))); | 
| 62324 | 656 | (*%P(1) ... P(n). bnf.pred P\<sigma>(1) ... P\<sigma>(n)*) | 
| 657 | val pred = fold_rev Term.absdummy (permute (map mk_pred1T As)) | |
| 658 | (Term.list_comb (mk_pred_of_bnf Ds As bnf, unpermute (map Bound (live - 1 downto 0)))); | |
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changeset | 659 | |
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changeset | 660 | val bnf_sets = mk_sets_of_bnf (replicate live Ds) (replicate live As) bnf; | 
| 49303 | 661 | val sets = permute bnf_sets; | 
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changeset | 662 | |
| 49303 | 663 | val bd = mk_bd_of_bnf Ds As bnf; | 
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changeset | 664 | |
| 60728 | 665 | fun map_id0_tac ctxt = rtac ctxt (map_id0_of_bnf bnf) 1; | 
| 666 | fun map_comp0_tac ctxt = rtac ctxt (map_comp0_of_bnf bnf) 1; | |
| 55197 | 667 | fun map_cong0_tac ctxt = | 
| 60728 | 668 | rtac ctxt (map_cong0_of_bnf bnf) 1 THEN REPEAT_DETERM_N live (Goal.assume_rule_tac ctxt 1); | 
| 669 | val set_map0_tacs = permute (map (fn thm => fn ctxt => rtac ctxt thm 1) (set_map0_of_bnf bnf)); | |
| 670 | fun bd_card_order_tac ctxt = rtac ctxt (bd_card_order_of_bnf bnf) 1; | |
| 671 | fun bd_cinfinite_tac ctxt = rtac ctxt (bd_cinfinite_of_bnf bnf) 1; | |
| 75624 | 672 | fun bd_regularCard_tac ctxt = rtac ctxt (bd_regularCard_of_bnf bnf) 1; | 
| 60728 | 673 | val set_bd_tacs = permute (map (fn thm => fn ctxt => rtac ctxt thm 1) (set_bd_of_bnf bnf)); | 
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changeset | 674 | |
| 49303 | 675 | val in_alt_thm = | 
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changeset | 676 | let | 
| 49303 | 677 | val inx = mk_in Asets sets T; | 
| 53038 | 678 | val in_alt = mk_in (unpermute Asets) bnf_sets T; | 
| 49303 | 679 | val goal = fold_rev Logic.all Asets (mk_Trueprop_eq (inx, in_alt)); | 
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changeset | 680 | in | 
| 60728 | 681 |         Goal.prove_sorry lthy [] [] goal (fn {context = ctxt, prems = _} =>
 | 
| 682 | mk_permute_in_alt_tac ctxt src dest) | |
| 70494 | 683 | |> Thm.close_derivation \<^here> | 
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changeset | 684 | end; | 
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changeset | 685 | |
| 60728 | 686 | fun le_rel_OO_tac ctxt = rtac ctxt (le_rel_OO_of_bnf bnf) 1; | 
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changeset | 687 | |
| 60728 | 688 | fun rel_OO_Grp_tac ctxt = mk_simple_rel_OO_Grp_tac ctxt (rel_OO_Grp_of_bnf bnf) in_alt_thm; | 
| 49456 | 689 | |
| 62324 | 690 | fun pred_set_tac ctxt = mk_simple_pred_set_tac ctxt (pred_set_of_bnf bnf) in_alt_thm; | 
| 691 | ||
| 53289 | 692 | val tacs = zip_axioms map_id0_tac map_comp0_tac map_cong0_tac set_map0_tacs bd_card_order_tac | 
| 75624 | 693 | bd_cinfinite_tac bd_regularCard_tac set_bd_tacs le_rel_OO_tac rel_OO_Grp_tac pred_set_tac; | 
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changeset | 694 | |
| 49303 | 695 | val wits = map snd (mk_wits_of_bnf (replicate nwits Ds) (replicate nwits As) bnf); | 
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changeset | 696 | |
| 60752 | 697 | fun wit_tac ctxt = mk_simple_wit_tac ctxt (wit_thms_of_bnf bnf); | 
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changeset | 698 | |
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changeset | 699 | val (bnf', lthy') = | 
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changeset | 700 | bnf_def Smart_Inline (K Dont_Note) true qualify tacs wit_tac (SOME Ds) Binding.empty | 
| 62324 | 701 | Binding.empty Binding.empty [] | 
| 702 | (((((((b, T), mapx), sets), bd), wits), SOME rel), SOME pred) lthy; | |
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changeset | 703 | in | 
| 49503 | 704 | (bnf', (add_bnf_to_unfolds bnf' unfold_set, lthy')) | 
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changeset | 705 | end; | 
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changeset | 706 | |
| 55904 | 707 | fun permute_bnf qualify src dest bnf (accum as ((cache, unfold_set), lthy)) = | 
| 708 | let val key = key_of_permute src dest bnf in | |
| 709 | (case Typtab.lookup cache key of | |
| 710 | SOME (bnf, _) => (bnf, accum) | |
| 711 | | NONE => cache_comp_simple key cache (raw_permute_bnf qualify src dest bnf (unfold_set, lthy))) | |
| 712 | end; | |
| 713 | ||
| 49014 | 714 | (* Composition pipeline *) | 
| 715 | ||
| 59725 | 716 | fun permute_and_kill_bnf qualify n src dest bnf = | 
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changeset | 717 | permute_bnf qualify src dest bnf | 
| 49304 | 718 | #> uncurry (kill_bnf qualify n); | 
| 49014 | 719 | |
| 59725 | 720 | fun lift_and_permute_bnf qualify n src dest bnf = | 
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changeset | 721 | lift_bnf qualify n bnf | 
| 49014 | 722 | #> uncurry (permute_bnf qualify src dest); | 
| 723 | ||
| 58332 | 724 | fun normalize_bnfs qualify Ass Ds flatten_tyargs bnfs accum = | 
| 49014 | 725 | let | 
| 726 | val before_kill_src = map (fn As => 0 upto (length As - 1)) Ass; | |
| 52985 | 727 | val kill_poss = map (find_indices op = Ds) Ass; | 
| 728 | val live_poss = map2 (subtract op =) kill_poss before_kill_src; | |
| 49014 | 729 | val before_kill_dest = map2 append kill_poss live_poss; | 
| 730 | val kill_ns = map length kill_poss; | |
| 55904 | 731 | val (inners', accum') = | 
| 59725 | 732 |       @{fold_map 5} (permute_and_kill_bnf o qualify)
 | 
| 733 | (if length bnfs = 1 then [0] else 1 upto length bnfs) | |
| 55904 | 734 | kill_ns before_kill_src before_kill_dest bnfs accum; | 
| 49014 | 735 | |
| 736 | val Ass' = map2 (map o nth) Ass live_poss; | |
| 58332 | 737 | val As = flatten_tyargs Ass'; | 
| 49014 | 738 | val after_lift_dest = replicate (length Ass') (0 upto (length As - 1)); | 
| 739 | val old_poss = map (map (fn x => find_index (fn y => x = y) As)) Ass'; | |
| 52985 | 740 | val new_poss = map2 (subtract op =) old_poss after_lift_dest; | 
| 49014 | 741 | val after_lift_src = map2 append new_poss old_poss; | 
| 742 | val lift_ns = map (fn xs => length As - length xs) Ass'; | |
| 743 | in | |
| 59725 | 744 |     ((kill_poss, As), @{fold_map 5} (lift_and_permute_bnf o qualify)
 | 
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changeset | 745 | (if length bnfs = 1 then [0] else 1 upto length bnfs) | 
| 55904 | 746 | lift_ns after_lift_src after_lift_dest inners' accum') | 
| 49014 | 747 | end; | 
| 748 | ||
| 749 | fun default_comp_sort Ass = | |
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changeset | 750 | Library.sort (Term_Ord.typ_ord o apply2 TFree) (fold (fold (insert (op =))) Ass []); | 
| 49014 | 751 | |
| 58332 | 752 | fun raw_compose_bnf const_policy qualify flatten_tyargs outer inners oDs Dss tfreess accum = | 
| 49014 | 753 | let | 
| 49425 | 754 | val b = name_of_bnf outer; | 
| 49014 | 755 | |
| 49121 | 756 | val Ass = map (map Term.dest_TFree) tfreess; | 
| 49014 | 757 | val Ds = fold (fold Term.add_tfreesT) (oDs :: Dss) []; | 
| 758 | ||
| 55904 | 759 | val ((kill_poss, As), (inners', ((cache', unfold_set'), lthy'))) = | 
| 58332 | 760 | normalize_bnfs qualify Ass Ds flatten_tyargs inners accum; | 
| 49014 | 761 | |
| 61760 | 762 | val Ds = | 
| 763 |       oDs @ flat (@{map 3} (uncurry append oo curry swap oo map o nth) tfreess kill_poss Dss);
 | |
| 49014 | 764 | val As = map TFree As; | 
| 765 | in | |
| 49425 | 766 | apfst (rpair (Ds, As)) | 
| 55904 | 767 | (apsnd (apfst (pair cache')) | 
| 768 | (clean_compose_bnf const_policy (qualify 0) b outer inners' (unfold_set', lthy'))) | |
| 769 | end; | |
| 770 | ||
| 58332 | 771 | fun compose_bnf const_policy qualify flatten_tyargs outer inners oDs Dss tfreess | 
| 772 | (accum as ((cache, _), _)) = | |
| 55904 | 773 | let val key = key_of_compose oDs Dss tfreess outer inners in | 
| 774 | (case Typtab.lookup cache key of | |
| 775 | SOME bnf_Ds_As => (bnf_Ds_As, accum) | |
| 776 | | NONE => | |
| 58332 | 777 | cache_comp key | 
| 778 | (raw_compose_bnf const_policy qualify flatten_tyargs outer inners oDs Dss tfreess accum)) | |
| 49014 | 779 | end; | 
| 780 | ||
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changeset | 781 | (* Hide the type of the bound (optimization) and unfold the definitions (nicer to the user) *) | 
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changeset | 782 | |
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changeset | 783 | type absT_info = | 
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changeset | 784 |   {absT: typ,
 | 
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changeset | 785 | repT: typ, | 
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changeset | 786 | abs: term, | 
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changeset | 787 | rep: term, | 
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changeset | 788 | abs_inject: thm, | 
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changeset | 789 | abs_inverse: thm, | 
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changeset | 790 | type_definition: thm}; | 
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changeset | 791 | |
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changeset | 792 | fun morph_absT_info phi | 
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changeset | 793 |   {absT, repT, abs, rep, abs_inject, abs_inverse, type_definition} =
 | 
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changeset | 794 |   {absT = Morphism.typ phi absT,
 | 
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changeset | 795 | repT = Morphism.typ phi repT, | 
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changeset | 796 | abs = Morphism.term phi abs, | 
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changeset | 797 | rep = Morphism.term phi rep, | 
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changeset | 798 | abs_inject = Morphism.thm phi abs_inject, | 
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changeset | 799 | abs_inverse = Morphism.thm phi abs_inverse, | 
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changeset | 800 | type_definition = Morphism.thm phi type_definition}; | 
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changeset | 801 | |
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changeset | 802 | fun mk_absT thy repT absT repU = | 
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changeset | 803 | let | 
| 56634 | 804 | val rho = Vartab.fold (cons o apsnd snd) (Sign.typ_match thy (repT, repU) Vartab.empty) []; | 
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changeset | 805 | in Term.typ_subst_TVars rho absT end | 
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changeset | 806 |   handle Type.TYPE_MATCH => raise Term.TYPE ("mk_absT", [repT, absT, repU], []);
 | 
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changeset | 807 | |
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changeset | 808 | fun mk_repT absT repT absU = | 
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changeset | 809 | if absT = repT then absU | 
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changeset | 810 | else | 
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changeset | 811 | (case (absT, absU) of | 
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changeset | 812 | (Type (C, Ts), Type (C', Us)) => | 
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changeset | 813 | if C = C' then Term.typ_subst_atomic (Ts ~~ Us) repT | 
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changeset | 814 |         else raise Term.TYPE ("mk_repT", [absT, repT, absU], [])
 | 
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changeset | 815 |     | _ => raise Term.TYPE ("mk_repT", [absT, repT, absU], []));
 | 
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changeset | 816 | |
| 69593 | 817 | fun mk_abs_or_rep _ absU (Const (\<^const_name>\<open>id_bnf\<close>, _)) = | 
| 818 | Const (\<^const_name>\<open>id_bnf\<close>, absU --> absU) | |
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changeset | 819 | | mk_abs_or_rep getT (Type (_, Us)) abs = | 
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changeset | 820 | let val Ts = snd (dest_Type (getT (fastype_of abs))) | 
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changeset | 821 | in Term.subst_atomic_types (Ts ~~ Us) abs end; | 
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changeset | 822 | |
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changeset | 823 | val mk_abs = mk_abs_or_rep range_type; | 
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changeset | 824 | val mk_rep = mk_abs_or_rep domain_type; | 
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changeset | 825 | |
| 63802 | 826 | fun maybe_typedef force_out_of_line (b, As, mx) set opt_morphs tac lthy = | 
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changeset | 827 | let | 
| 63802 | 828 | val threshold = Config.get lthy typedef_threshold; | 
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changeset | 829 | val repT = HOLogic.dest_setT (fastype_of set); | 
| 59710 | 830 | val out_of_line = force_out_of_line orelse | 
| 59994 | 831 | (threshold >= 0 andalso Term.size_of_typ repT >= threshold); | 
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changeset | 832 | in | 
| 58332 | 833 | if out_of_line then | 
| 63802 | 834 | typedef (b, As, mx) set opt_morphs tac lthy | 
| 835 |       |>> (fn (T_name, ({Rep_name, Abs_name, ...},
 | |
| 58332 | 836 |           {type_definition, Abs_inverse, Abs_inject, Abs_cases, ...}) : Typedef.info) =>
 | 
| 837 | (Type (T_name, map TFree As), | |
| 838 | (Rep_name, Abs_name, type_definition, Abs_inverse, Abs_inject, Abs_cases))) | |
| 839 | else | |
| 63802 | 840 | ((repT, | 
| 69593 | 841 | (\<^const_name>\<open>id_bnf\<close>, \<^const_name>\<open>id_bnf\<close>, | 
| 58181 | 842 |          @{thm type_definition_id_bnf_UNIV},
 | 
| 843 |          @{thm type_definition.Abs_inverse[OF type_definition_id_bnf_UNIV]},
 | |
| 844 |          @{thm type_definition.Abs_inject[OF type_definition_id_bnf_UNIV]},
 | |
| 63802 | 845 |          @{thm type_definition.Abs_cases[OF type_definition_id_bnf_UNIV]})), lthy)
 | 
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changeset | 846 | end; | 
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changeset | 847 | |
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changeset | 848 | fun seal_bnf qualify (unfold_set : unfold_set) b force_out_of_line Ds all_Ds bnf lthy = | 
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changeset | 849 | let | 
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changeset | 850 | val live = live_of_bnf bnf; | 
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changeset | 851 | val nwits = nwits_of_bnf bnf; | 
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changeset | 852 | |
| 58332 | 853 | val ((As, As'), lthy1) = apfst (`(map TFree)) | 
| 69593 | 854 | (Variable.invent_types (replicate live \<^sort>\<open>type\<close>) (fold Variable.declare_typ all_Ds lthy)); | 
| 855 | val (Bs, _) = apfst (map TFree) (Variable.invent_types (replicate live \<^sort>\<open>type\<close>) lthy1); | |
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changeset | 856 | |
| 62324 | 857 | val ((((fs, fs'), (Rs, Rs')), (Ps, Ps')), _(*names_lthy*)) = lthy | 
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changeset | 858 | |> mk_Frees' "f" (map2 (curry op -->) As Bs) | 
| 62324 | 859 | ||>> mk_Frees' "R" (map2 mk_pred2T As Bs) | 
| 860 | ||>> mk_Frees' "P" (map mk_pred1T As); | |
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changeset | 861 | |
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changeset | 862 | val repTA = mk_T_of_bnf Ds As bnf; | 
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changeset | 863 | val T_bind = qualify b; | 
| 63836 | 864 | val repTA_tfrees = Term.add_tfreesT repTA []; | 
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changeset | 865 | val all_TA_params_in_order = fold_rev Term.add_tfreesT all_Ds As'; | 
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changeset | 866 | val TA_params = | 
| 63802 | 867 | (if force_out_of_line then all_TA_params_in_order | 
| 63836 | 868 | else inter (op =) repTA_tfrees all_TA_params_in_order); | 
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changeset | 869 | val ((TA, (Rep_name, Abs_name, type_definition, Abs_inverse, Abs_inject, _)), lthy) = | 
| 63802 | 870 | maybe_typedef force_out_of_line (T_bind, TA_params, NoSyn) (HOLogic.mk_UNIV repTA) NONE | 
| 60728 | 871 | (fn ctxt => EVERY' [rtac ctxt exI, rtac ctxt UNIV_I] 1) lthy; | 
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changeset | 872 | |
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changeset | 873 | val repTB = mk_T_of_bnf Ds Bs bnf; | 
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changeset | 874 | val TB = Term.typ_subst_atomic (As ~~ Bs) TA; | 
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changeset | 875 | val RepA = Const (Rep_name, TA --> repTA); | 
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changeset | 876 | val RepB = Const (Rep_name, TB --> repTB); | 
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changeset | 877 | val AbsA = Const (Abs_name, repTA --> TA); | 
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changeset | 878 | val AbsB = Const (Abs_name, repTB --> TB); | 
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changeset | 879 |     val Abs_inject' = Abs_inject OF @{thms UNIV_I UNIV_I};
 | 
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changeset | 880 |     val Abs_inverse' = Abs_inverse OF @{thms UNIV_I};
 | 
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changeset | 881 | |
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changeset | 882 |     val absT_info = {absT = TA, repT = repTA, abs = AbsA, rep = RepA, abs_inject = Abs_inject',
 | 
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changeset | 883 | abs_inverse = Abs_inverse', type_definition = type_definition}; | 
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changeset | 884 | |
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changeset | 885 | val bnf_map = fold_rev Term.absfree fs' (HOLogic.mk_comp (HOLogic.mk_comp (AbsB, | 
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changeset | 886 | Term.list_comb (mk_map_of_bnf Ds As Bs bnf, fs)), RepA)); | 
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changeset | 887 | val bnf_sets = map ((fn t => HOLogic.mk_comp (t, RepA))) | 
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changeset | 888 | (mk_sets_of_bnf (replicate live Ds) (replicate live As) bnf); | 
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changeset | 889 | val bnf_bd = mk_bd_of_bnf Ds As bnf; | 
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changeset | 890 | val bnf_rel = fold_rev Term.absfree Rs' (mk_vimage2p RepA RepB $ | 
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changeset | 891 | (Term.list_comb (mk_rel_of_bnf Ds As Bs bnf, Rs))); | 
| 62324 | 892 | val bnf_pred = fold_rev Term.absfree Ps' (HOLogic.mk_comp | 
| 893 | (Term.list_comb (mk_pred_of_bnf Ds As bnf, Ps), RepA)); | |
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changeset | 894 | |
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changeset | 895 | (*bd may depend only on dead type variables*) | 
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changeset | 896 | val bd_repT = fst (dest_relT (fastype_of bnf_bd)); | 
| 53264 | 897 |     val bdT_bind = qualify (Binding.suffix_name ("_" ^ bdTN) b);
 | 
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changeset | 898 | val params = Term.add_tfreesT bd_repT []; | 
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changeset | 899 | val all_deads = map TFree (fold_rev Term.add_tfreesT all_Ds []); | 
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changeset | 900 | |
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changeset | 901 | val ((bdT, (_, Abs_bd_name, _, _, Abs_bdT_inject, Abs_bdT_cases)), lthy) = | 
| 63802 | 902 | maybe_typedef false (bdT_bind, params, NoSyn) (HOLogic.mk_UNIV bd_repT) NONE | 
| 903 | (fn ctxt => EVERY' [rtac ctxt exI, rtac ctxt UNIV_I] 1) lthy; | |
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changeset | 904 | |
| 75624 | 905 | val (bnf_bd', bd_ordIso, bd_card_order, bd_cinfinite, bd_regularCard) = | 
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changeset | 906 |       if bdT = bd_repT then (bnf_bd, bd_Card_order_of_bnf bnf RS @{thm ordIso_refl},
 | 
| 75624 | 907 | bd_card_order_of_bnf bnf, bd_cinfinite_of_bnf bnf, bd_regularCard_of_bnf bnf) | 
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changeset | 908 | else | 
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changeset | 909 | let | 
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changeset | 910 | val bnf_bd' = mk_dir_image bnf_bd (Const (Abs_bd_name, bd_repT --> bdT)); | 
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changeset | 911 | |
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changeset | 912 | val Abs_bdT_inj = mk_Abs_inj_thm Abs_bdT_inject; | 
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changeset | 913 | val Abs_bdT_bij = mk_Abs_bij_thm lthy Abs_bdT_inj Abs_bdT_cases; | 
| 57567 | 914 | |
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changeset | 915 |           val bd_ordIso = @{thm dir_image} OF [Abs_bdT_inj, bd_Card_order_of_bnf bnf];
 | 
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changeset | 916 | val bd_card_order = | 
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changeset | 917 |             @{thm card_order_dir_image} OF [Abs_bdT_bij, bd_card_order_of_bnf bnf];
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changeset | 918 | val bd_cinfinite = | 
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changeset | 919 |             (@{thm Cinfinite_cong} OF [bd_ordIso, bd_Cinfinite_of_bnf bnf]) RS conjunct1;
 | 
| 75624 | 920 |           val bd_regularCard = @{thm regularCard_ordIso} OF [bd_ordIso, bd_Cinfinite_of_bnf bnf,
 | 
| 921 | bd_regularCard_of_bnf bnf]; | |
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changeset | 922 | in | 
| 75624 | 923 | (bnf_bd', bd_ordIso, bd_card_order, bd_cinfinite, bd_regularCard) | 
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changeset | 924 | end; | 
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changeset | 925 | |
| 60728 | 926 | fun map_id0_tac ctxt = | 
| 927 |       rtac ctxt (@{thm type_copy_map_id0} OF [type_definition, map_id0_of_bnf bnf]) 1;
 | |
| 928 | fun map_comp0_tac ctxt = | |
| 929 |       rtac ctxt (@{thm type_copy_map_comp0} OF [type_definition, map_comp0_of_bnf bnf]) 1;
 | |
| 930 | fun map_cong0_tac ctxt = | |
| 931 |       EVERY' (rtac ctxt @{thm type_copy_map_cong0} :: rtac ctxt (map_cong0_of_bnf bnf) ::
 | |
| 932 | map (fn i => EVERY' [select_prem_tac ctxt live (dtac ctxt meta_spec) i, etac ctxt meta_mp, | |
| 933 | etac ctxt (o_apply RS equalityD2 RS set_mp)]) (1 upto live)) 1; | |
| 934 | fun set_map0_tac thm ctxt = | |
| 935 |       rtac ctxt (@{thm type_copy_set_map0} OF [type_definition, thm]) 1;
 | |
| 75624 | 936 |     val set_bd_tacs = map (fn thm => fn ctxt => rtac ctxt (@{thm ordLess_ordIso_trans} OF
 | 
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changeset | 937 |         [thm, bd_ordIso] RS @{thm type_copy_set_bd}) 1) (set_bd_of_bnf bnf);
 | 
| 60728 | 938 | fun le_rel_OO_tac ctxt = | 
| 939 |       rtac ctxt (le_rel_OO_of_bnf bnf RS @{thm vimage2p_relcompp_mono}) 1;
 | |
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changeset | 940 | fun rel_OO_Grp_tac ctxt = | 
| 60728 | 941 |       (rtac ctxt (rel_OO_Grp_of_bnf bnf RS @{thm vimage2p_cong} RS trans) THEN'
 | 
| 63802 | 942 | (if force_out_of_line then subst_tac ctxt NONE else SELECT_GOAL o unfold_thms_tac ctxt) | 
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changeset | 943 |          [type_definition RS @{thm vimage2p_relcompp_converse}] THEN'
 | 
| 58332 | 944 | SELECT_GOAL (unfold_thms_tac ctxt [o_apply, | 
| 945 |          type_definition RS @{thm type_copy_vimage2p_Grp_Rep},
 | |
| 946 |          type_definition RS @{thm vimage2p_relcompp_converse}]) THEN'
 | |
| 60728 | 947 | rtac ctxt refl) 1; | 
| 62324 | 948 | fun pred_set_tac ctxt = | 
| 949 | HEADGOAL (EVERY' | |
| 67091 | 950 |         [rtac ctxt (pred_set_of_bnf bnf RS @{thm arg_cong[of _ _ "\<lambda>f. f \<circ> _"]} RS trans),
 | 
| 62324 | 951 |         SELECT_GOAL (unfold_thms_tac ctxt (@{thms Ball_comp_iff conj_comp_iff})), rtac ctxt refl]);
 | 
| 49456 | 952 | |
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changeset | 953 | val tacs = zip_axioms map_id0_tac map_comp0_tac map_cong0_tac | 
| 60728 | 954 | (map set_map0_tac (set_map0_of_bnf bnf)) | 
| 955 | (fn ctxt => rtac ctxt bd_card_order 1) (fn ctxt => rtac ctxt bd_cinfinite 1) | |
| 75624 | 956 | (fn ctxt => rtac ctxt bd_regularCard 1) set_bd_tacs le_rel_OO_tac rel_OO_Grp_tac pred_set_tac; | 
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changeset | 957 | |
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changeset | 958 | val bnf_wits = map (fn (I, t) => | 
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changeset | 959 | fold Term.absdummy (map (nth As) I) | 
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changeset | 960 | (AbsA $ Term.list_comb (t, map Bound (0 upto length I - 1)))) | 
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changeset | 961 | (mk_wits_of_bnf (replicate nwits Ds) (replicate nwits As) bnf); | 
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changeset | 962 | |
| 60752 | 963 | fun wit_tac ctxt = | 
| 964 |       ALLGOALS (dtac ctxt (type_definition RS @{thm type_copy_wit})) THEN
 | |
| 965 | mk_simple_wit_tac ctxt (wit_thms_of_bnf bnf); | |
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changeset | 966 | |
| 53264 | 967 | val (bnf', lthy') = | 
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changeset | 968 | bnf_def Hardly_Inline (user_policy Dont_Note) true qualify tacs wit_tac (SOME all_deads) | 
| 62324 | 969 | Binding.empty Binding.empty Binding.empty [] | 
| 970 | (((((((b, TA), bnf_map), bnf_sets), bnf_bd'), bnf_wits), SOME bnf_rel), SOME bnf_pred) lthy; | |
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changeset | 971 | |
| 58181 | 972 |     val unfolds = @{thm id_bnf_apply} ::
 | 
| 71261 | 973 | (#map_unfolds unfold_set @ flat (#set_unfoldss unfold_set) @ | 
| 974 | #rel_unfolds unfold_set @ #pred_unfolds unfold_set); | |
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changeset | 975 | |
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changeset | 976 | val bnf'' = bnf' |> morph_bnf_defs (Morphism.thm_morphism "BNF" (unfold_thms lthy' unfolds)); | 
| 57567 | 977 | |
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changeset | 978 | val map_def = map_def_of_bnf bnf''; | 
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changeset | 979 | val set_defs = set_defs_of_bnf bnf''; | 
| 56018 | 980 | val rel_def = rel_def_of_bnf bnf''; | 
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changeset | 981 | |
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changeset | 982 | val bnf_b = qualify b; | 
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changeset | 983 | val def_qualify = | 
| 59859 | 984 | Thm.def_binding o Binding.concealed o Binding.qualify false (Binding.name_of bnf_b); | 
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changeset | 985 | fun mk_prefix_binding pre = Binding.prefix_name (pre ^ "_") bnf_b; | 
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changeset | 986 | val map_b = def_qualify (mk_prefix_binding mapN); | 
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changeset | 987 | val rel_b = def_qualify (mk_prefix_binding relN); | 
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changeset | 988 | val set_bs = if live = 1 then [def_qualify (mk_prefix_binding setN)] | 
| 59725 | 989 | else map (def_qualify o mk_prefix_binding o mk_setN) (1 upto live); | 
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changeset | 990 | |
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changeset | 991 | val notes = (map_b, map_def) :: (rel_b, rel_def) :: (set_bs ~~ set_defs) | 
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changeset | 992 | |> map (fn (b, def) => ((b, []), [([def], [])])) | 
| 57632 | 993 | |
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changeset | 994 | val (noted, lthy'') = lthy' | 
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changeset | 995 | |> Local_Theory.notes notes | 
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changeset | 996 | ||> (if repTA = TA then I else register_bnf_raw (fst (dest_Type TA)) bnf'') | 
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changeset | 997 | in | 
| 57632 | 998 | ((morph_bnf (substitute_noted_thm noted) bnf'', (all_deads, absT_info)), lthy'') | 
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changeset | 999 | end; | 
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changeset | 1000 | |
| 53222 | 1001 | exception BAD_DEAD of typ * typ; | 
| 1002 | ||
| 62621 | 1003 | fun bnf_of_typ _ _ _ _ _ Ds0 (T as TFree T') accum = | 
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changeset | 1004 | (if member (op =) Ds0 T' then (DEADID_bnf, ([T], [])) else (ID_bnf, ([], [T])), accum) | 
| 62621 | 1005 | | bnf_of_typ _ _ _ _ _ _ (TVar _) _ = error "Unexpected schematic variable" | 
| 1006 | | bnf_of_typ optim const_policy qualify' flatten_tyargs Xs Ds0 (T as Type (C, Ts)) | |
| 58332 | 1007 | (accum as (_, lthy)) = | 
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changeset | 1008 | let | 
| 53222 | 1009 | fun check_bad_dead ((_, (deads, _)), _) = | 
| 1010 | let val Ds = fold Term.add_tfreesT deads [] in | |
| 1011 | (case Library.inter (op =) Ds Xs of [] => () | |
| 55705 | 1012 | | X :: _ => raise BAD_DEAD (TFree X, T)) | 
| 53222 | 1013 | end; | 
| 1014 | ||
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changeset | 1015 | val tfrees = subtract (op =) Ds0 (Term.add_tfreesT T []); | 
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changeset | 1016 | val bnf_opt = if null tfrees then NONE else bnf_of lthy C; | 
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changeset | 1017 | in | 
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changeset | 1018 | (case bnf_opt of | 
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changeset | 1019 | NONE => ((DEADID_bnf, ([T], [])), accum) | 
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changeset | 1020 | | SOME bnf => | 
| 62621 | 1021 | if optim andalso forall (can Term.dest_TFree) Ts andalso length Ts = length tfrees then | 
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changeset | 1022 | let | 
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changeset | 1023 | val T' = T_of_bnf bnf; | 
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changeset | 1024 | val deads = deads_of_bnf bnf; | 
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changeset | 1025 | val lives = lives_of_bnf bnf; | 
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changeset | 1026 | val tvars' = Term.add_tvarsT T' []; | 
| 55904 | 1027 | val Ds_As = | 
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changeset | 1028 | apply2 (map (Term.typ_subst_TVars (map fst tvars' ~~ map TFree tfrees))) | 
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changeset | 1029 | (deads, lives); | 
| 55904 | 1030 | in ((bnf, Ds_As), accum) end | 
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changeset | 1031 | else | 
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changeset | 1032 | let | 
| 49425 | 1033 | val name = Long_Name.base_name C; | 
| 1034 | fun qualify i = | |
| 1035 | let val namei = name ^ nonzero_string_of_int i; | |
| 1036 | in qualify' o Binding.qualify true namei end; | |
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changeset | 1037 | val odead = dead_of_bnf bnf; | 
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changeset | 1038 | val olive = live_of_bnf bnf; | 
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changeset | 1039 | val Ds = map (fn i => TFree (string_of_int i, [])) (1 upto odead); | 
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changeset | 1040 | val Us = snd (Term.dest_Type (mk_T_of_bnf Ds (replicate olive dummyT) bnf)); | 
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changeset | 1041 | val oDs_pos = map (fn x => find_index (fn y => x = y) Us) Ds | 
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changeset | 1042 | |> filter (fn x => x >= 0); | 
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changeset | 1043 | val oDs = map (nth Ts) oDs_pos; | 
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changeset | 1044 | val Ts' = map (nth Ts) (subtract (op =) oDs_pos (0 upto length Ts - 1)); | 
| 55904 | 1045 | val ((inners, (Dss, Ass)), (accum', lthy')) = | 
| 62621 | 1046 |               apfst (apsnd split_list o split_list) (@{fold_map 2}
 | 
| 1047 | (fn i => bnf_of_typ optim Smart_Inline (qualify i) flatten_tyargs Xs Ds0) | |
| 59725 | 1048 | (if length Ts' = 1 then [0] else 1 upto length Ts') Ts' accum); | 
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changeset | 1049 | in | 
| 58332 | 1050 | compose_bnf const_policy qualify flatten_tyargs bnf inners oDs Dss Ass (accum', lthy') | 
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changeset | 1051 | end) | 
| 53222 | 1052 | |> tap check_bad_dead | 
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changeset | 1053 | end; | 
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changeset | 1054 | |
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changeset | 1055 | end; |