| author | nipkow | 
| Thu, 18 Apr 2019 16:34:04 +0200 | |
| changeset 70184 | a7aba6db79a1 | 
| parent 69593 | 3dda49e08b9d | 
| child 70494 | 41108e3e9ca5 | 
| permissions | -rw-r--r-- | 
| 55061 | 1 | (* Title: HOL/Tools/BNF/bnf_gfp.ML | 
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changeset | 2 | Author: Dmitriy Traytel, TU Muenchen | 
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changeset | 3 | Author: Andrei Popescu, TU Muenchen | 
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changeset | 4 | Author: Jasmin Blanchette, TU Muenchen | 
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changeset | 5 | Copyright 2012 | 
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changeset | 6 | |
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changeset | 7 | Codatatype construction. | 
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changeset | 8 | *) | 
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changeset | 9 | |
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changeset | 10 | signature BNF_GFP = | 
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changeset | 11 | sig | 
| 62324 | 12 | val construct_gfp: mixfix list -> binding list -> binding list -> binding list -> | 
| 13 | binding list list -> binding list -> (string * sort) list -> typ list * typ list list -> | |
| 14 | BNF_Def.bnf list -> BNF_Comp.absT_info list -> local_theory -> | |
| 15 | BNF_FP_Util.fp_result * local_theory | |
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changeset | 16 | end; | 
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changeset | 17 | |
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changeset | 18 | structure BNF_GFP : BNF_GFP = | 
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changeset | 19 | struct | 
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changeset | 20 | |
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changeset | 21 | open BNF_Def | 
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changeset | 22 | open BNF_Util | 
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changeset | 23 | open BNF_Tactics | 
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changeset | 24 | open BNF_Comp | 
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changeset | 25 | open BNF_FP_Util | 
| 49636 | 26 | open BNF_FP_Def_Sugar | 
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changeset | 27 | open BNF_GFP_Util | 
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changeset | 28 | open BNF_GFP_Tactics | 
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changeset | 29 | |
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changeset | 30 | datatype wit_tree = Wit_Leaf of int | Wit_Node of (int * int * int list) * wit_tree list; | 
| 49104 | 31 | |
| 32 | fun mk_tree_args (I, T) (I', Ts) = (sort_distinct int_ord (I @ I'), T :: Ts); | |
| 33 | ||
| 34 | fun finish Iss m seen i (nwit, I) = | |
| 35 | let | |
| 36 | val treess = map (fn j => | |
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changeset | 37 | if j < m orelse member (op =) seen j then [([j], Wit_Leaf j)] | 
| 49104 | 38 | else | 
| 39 | map_index (finish Iss m (insert (op =) j seen) j) (nth Iss (j - m)) | |
| 40 | |> flat | |
| 41 | |> minimize_wits) | |
| 42 | I; | |
| 43 | in | |
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changeset | 44 | map (fn (I, t) => (I, Wit_Node ((i - m, nwit, filter (fn i => i < m) I), t))) | 
| 49104 | 45 | (fold_rev (map_product mk_tree_args) treess [([], [])]) | 
| 46 | |> minimize_wits | |
| 47 | end; | |
| 48 | ||
| 49501 | 49 | fun tree_to_ctor_wit vars _ _ (Wit_Leaf j) = ([j], nth vars j) | 
| 50 | | tree_to_ctor_wit vars ctors witss (Wit_Node ((i, nwit, I), subtrees)) = | |
| 51 | (I, nth ctors i $ (Term.list_comb (snd (nth (nth witss i) nwit), | |
| 52 | map (snd o tree_to_ctor_wit vars ctors witss) subtrees))); | |
| 49104 | 53 | |
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changeset | 54 | fun tree_to_coind_wits _ (Wit_Leaf _) = [] | 
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changeset | 55 | | tree_to_coind_wits lwitss (Wit_Node ((i, nwit, I), subtrees)) = | 
| 49104 | 56 | ((i, I), nth (nth lwitss i) nwit) :: maps (tree_to_coind_wits lwitss) subtrees; | 
| 57 | ||
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changeset | 58 | (*all BNFs have the same lives*) | 
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changeset | 59 | fun construct_gfp mixfixes map_bs rel_bs pred_bs set_bss0 bs resBs (resDs, Dss) bnfs absT_infos | 
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changeset | 60 | lthy = | 
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changeset | 61 | let | 
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changeset | 62 | val time = time lthy; | 
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changeset | 63 | val timer = time (Timer.startRealTimer ()); | 
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changeset | 64 | |
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changeset | 65 | val live = live_of_bnf (hd bnfs); | 
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changeset | 66 | val n = length bnfs; (*active*) | 
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changeset | 67 | val ks = 1 upto n; | 
| 52956 | 68 | val m = live - n; (*passive, if 0 don't generate a new BNF*) | 
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changeset | 69 | val ls = 1 upto m; | 
| 53566 | 70 | |
| 62093 | 71 | val internals = Config.get lthy bnf_internals; | 
| 52956 | 72 | val b_names = map Binding.name_of bs; | 
| 53566 | 73 | val b_name = mk_common_name b_names; | 
| 74 | val b = Binding.name b_name; | |
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changeset | 75 | |
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changeset | 76 | fun mk_internal_of_b name = | 
| 59859 | 77 | Binding.prefix_name (name ^ "_") #> Binding.prefix true b_name #> Binding.concealed; | 
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changeset | 78 | fun mk_internal_b name = mk_internal_of_b name b; | 
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changeset | 79 | fun mk_internal_bs name = map (mk_internal_of_b name) bs; | 
| 53566 | 80 | val external_bs = map2 (Binding.prefix false) b_names bs | 
| 62093 | 81 | |> not internals ? map Binding.concealed; | 
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changeset | 82 | |
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changeset | 83 | val deads = fold (union (op =)) Dss resDs; | 
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changeset | 84 | val names_lthy = fold Variable.declare_typ deads lthy; | 
| 52956 | 85 | val passives = map fst (subtract (op = o apsnd TFree) deads resBs); | 
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changeset | 86 | |
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changeset | 87 | (* tvars *) | 
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changeset | 88 | val ((((((passiveAs, activeAs), passiveBs), activeBs), passiveCs), activeCs), idxT) = names_lthy | 
| 52956 | 89 | |> variant_tfrees passives | 
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changeset | 90 | ||>> mk_TFrees n | 
| 52956 | 91 | ||>> variant_tfrees passives | 
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changeset | 92 | ||>> mk_TFrees n | 
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changeset | 93 | ||>> mk_TFrees m | 
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changeset | 94 | ||>> mk_TFrees n | 
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changeset | 95 | ||> fst o mk_TFrees 1 | 
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changeset | 96 | ||> the_single; | 
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changeset | 97 | |
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changeset | 98 | val allAs = passiveAs @ activeAs; | 
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changeset | 99 | val allBs' = passiveBs @ activeBs; | 
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changeset | 100 | val Ass = replicate n allAs; | 
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changeset | 101 | val allBs = passiveAs @ activeBs; | 
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changeset | 102 | val Bss = replicate n allBs; | 
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changeset | 103 | val allCs = passiveAs @ activeCs; | 
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changeset | 104 | val allCs' = passiveBs @ activeCs; | 
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changeset | 105 | val Css' = replicate n allCs'; | 
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changeset | 106 | |
| 51866 | 107 | (* types *) | 
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changeset | 108 | val dead_poss = | 
| 52956 | 109 | map (fn x => if member (op =) deads (TFree x) then SOME (TFree x) else NONE) resBs; | 
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changeset | 110 | fun mk_param NONE passive = (hd passive, tl passive) | 
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changeset | 111 | | mk_param (SOME a) passive = (a, passive); | 
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changeset | 112 | val mk_params = fold_map mk_param dead_poss #> fst; | 
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changeset | 113 | |
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changeset | 114 | fun mk_FTs Ts = map2 (fn Ds => mk_T_of_bnf Ds Ts) Dss bnfs; | 
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changeset | 115 | val (params, params') = `(map Term.dest_TFree) (mk_params passiveAs); | 
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changeset | 116 | val FTsAs = mk_FTs allAs; | 
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changeset | 117 | val FTsBs = mk_FTs allBs; | 
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changeset | 118 | val FTsCs = mk_FTs allCs; | 
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changeset | 119 | val ATs = map HOLogic.mk_setT passiveAs; | 
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changeset | 120 | val BTs = map HOLogic.mk_setT activeAs; | 
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changeset | 121 | val B'Ts = map HOLogic.mk_setT activeBs; | 
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changeset | 122 | val B''Ts = map HOLogic.mk_setT activeCs; | 
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changeset | 123 | val sTs = map2 (fn T => fn U => T --> U) activeAs FTsAs; | 
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changeset | 124 | val s'Ts = map2 (fn T => fn U => T --> U) activeBs FTsBs; | 
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changeset | 125 | val s''Ts = map2 (fn T => fn U => T --> U) activeCs FTsCs; | 
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changeset | 126 | val fTs = map2 (fn T => fn U => T --> U) activeAs activeBs; | 
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changeset | 127 | val self_fTs = map (fn T => T --> T) activeAs; | 
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changeset | 128 | val gTs = map2 (fn T => fn U => T --> U) activeBs activeCs; | 
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changeset | 129 | val all_gTs = map2 (fn T => fn U => T --> U) allBs allCs'; | 
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changeset | 130 | val RTs = map2 (fn T => fn U => HOLogic.mk_prodT (T, U)) activeAs activeBs; | 
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changeset | 131 | val sRTs = map2 (fn T => fn U => HOLogic.mk_prodT (T, U)) activeAs activeAs; | 
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changeset | 132 | val R'Ts = map2 (fn T => fn U => HOLogic.mk_prodT (T, U)) activeBs activeCs; | 
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changeset | 133 | val setsRTs = map HOLogic.mk_setT sRTs; | 
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changeset | 134 | val setRTs = map HOLogic.mk_setT RTs; | 
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changeset | 135 | val all_sbisT = HOLogic.mk_tupleT setsRTs; | 
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changeset | 136 | val setR'Ts = map HOLogic.mk_setT R'Ts; | 
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changeset | 137 | val FRTs = mk_FTs (passiveAs @ RTs); | 
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changeset | 138 | |
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changeset | 139 | (* terms *) | 
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changeset | 140 |     val mapsAsAs = @{map 4} mk_map_of_bnf Dss Ass Ass bnfs;
 | 
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changeset | 141 |     val mapsAsBs = @{map 4} mk_map_of_bnf Dss Ass Bss bnfs;
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changeset | 142 |     val mapsBsCs' = @{map 4} mk_map_of_bnf Dss Bss Css' bnfs;
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changeset | 143 |     val mapsAsCs' = @{map 4} mk_map_of_bnf Dss Ass Css' bnfs;
 | 
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changeset | 144 |     val map_fsts = @{map 4} mk_map_of_bnf Dss (replicate n (passiveAs @ RTs)) Ass bnfs;
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changeset | 145 |     val map_snds = @{map 4} mk_map_of_bnf Dss (replicate n (passiveAs @ RTs)) Bss bnfs;
 | 
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changeset | 146 |     fun mk_setss Ts = @{map 3} mk_sets_of_bnf (map (replicate live) Dss)
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changeset | 147 | (map (replicate live) (replicate n Ts)) bnfs; | 
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changeset | 148 | val setssAs = mk_setss allAs; | 
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changeset | 149 | val setssAs' = transpose setssAs; | 
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changeset | 150 | val bis_setss = mk_setss (passiveAs @ RTs); | 
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changeset | 151 |     val relsAsBs = @{map 4} mk_rel_of_bnf Dss Ass Bss bnfs;
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changeset | 152 |     val bds = @{map 3} mk_bd_of_bnf Dss Ass bnfs;
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changeset | 153 | val sum_bd = Library.foldr1 (uncurry mk_csum) bds; | 
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changeset | 154 | val sum_bdT = fst (dest_relT (fastype_of sum_bd)); | 
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changeset | 155 | val (sum_bdT_params, sum_bdT_params') = `(map TFree) (Term.add_tfreesT sum_bdT []); | 
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changeset | 156 | |
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changeset | 157 | val ((((((((((zs, zs'), Bs), ss), fs), self_fs), all_gs), xFs), yFs), yFs_copy), _) = | 
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changeset | 158 | lthy | 
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changeset | 159 | |> mk_Frees' "b" activeAs | 
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changeset | 160 | ||>> mk_Frees "B" BTs | 
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changeset | 161 | ||>> mk_Frees "s" sTs | 
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changeset | 162 | ||>> mk_Frees "f" fTs | 
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changeset | 163 | ||>> mk_Frees "f" self_fTs | 
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changeset | 164 | ||>> mk_Frees "g" all_gTs | 
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changeset | 165 | ||>> mk_Frees "x" FTsAs | 
| 51925 | 166 | ||>> mk_Frees "y" FTsBs | 
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changeset | 167 | ||>> mk_Frees "y" FTsBs; | 
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changeset | 168 | |
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changeset | 169 | val passive_UNIVs = map HOLogic.mk_UNIV passiveAs; | 
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changeset | 170 | val passive_eqs = map HOLogic.eq_const passiveAs; | 
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changeset | 171 | val active_UNIVs = map HOLogic.mk_UNIV activeAs; | 
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changeset | 172 | val passive_ids = map HOLogic.id_const passiveAs; | 
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changeset | 173 | val active_ids = map HOLogic.id_const activeAs; | 
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changeset | 174 | val fsts = map fst_const RTs; | 
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changeset | 175 | val snds = map snd_const RTs; | 
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changeset | 176 | |
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changeset | 177 | (* thms *) | 
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changeset | 178 | val bd_card_orders = map bd_card_order_of_bnf bnfs; | 
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changeset | 179 | val bd_card_order = hd bd_card_orders | 
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changeset | 180 | val bd_Card_orders = map bd_Card_order_of_bnf bnfs; | 
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changeset | 181 | val bd_Card_order = hd bd_Card_orders; | 
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changeset | 182 | val bd_Cinfinites = map bd_Cinfinite_of_bnf bnfs; | 
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changeset | 183 | val bd_Cinfinite = hd bd_Cinfinites; | 
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changeset | 184 | val in_monos = map in_mono_of_bnf bnfs; | 
| 53287 | 185 | val map_comp0s = map map_comp0_of_bnf bnfs; | 
| 186 | val sym_map_comps = map mk_sym map_comp0s; | |
| 53288 | 187 | val map_comps = map map_comp_of_bnf bnfs; | 
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changeset | 188 | val map_cong0s = map map_cong0_of_bnf bnfs; | 
| 53270 | 189 | val map_id0s = map map_id0_of_bnf bnfs; | 
| 53285 | 190 | val map_ids = map map_id_of_bnf bnfs; | 
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changeset | 191 | val set_bdss = map set_bd_of_bnf bnfs; | 
| 53290 | 192 | val set_mapss = map set_map_of_bnf bnfs; | 
| 61242 | 193 | val rel_congs = map rel_cong0_of_bnf bnfs; | 
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changeset | 194 | val rel_converseps = map rel_conversep_of_bnf bnfs; | 
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changeset | 195 | val rel_Grps = map rel_Grp_of_bnf bnfs; | 
| 57726 | 196 | val le_rel_OOs = map le_rel_OO_of_bnf bnfs; | 
| 56017 | 197 | val in_rels = map in_rel_of_bnf bnfs; | 
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changeset | 198 | |
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changeset | 199 | val timer = time (timer "Extracted terms & thms"); | 
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changeset | 200 | |
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changeset | 201 | (* derived thms *) | 
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changeset | 202 | |
| 52956 | 203 | (*map g1 ... gm g(m+1) ... g(m+n) (map id ... id f(m+1) ... f(m+n) x) = | 
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changeset | 204 | map g1 ... gm (g(m+1) o f(m+1)) ... (g(m+n) o f(m+n)) x*) | 
| 53287 | 205 | fun mk_map_comp_id x mapAsBs mapBsCs mapAsCs map_comp0 = | 
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changeset | 206 | let | 
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changeset | 207 | val lhs = Term.list_comb (mapBsCs, all_gs) $ | 
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changeset | 208 | (Term.list_comb (mapAsBs, passive_ids @ fs) $ x); | 
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changeset | 209 | val rhs = | 
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changeset | 210 | Term.list_comb (mapAsCs, take m all_gs @ map HOLogic.mk_comp (drop m all_gs ~~ fs)) $ x; | 
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changeset | 211 | val goal = mk_Trueprop_eq (lhs, rhs); | 
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changeset | 212 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 213 | in | 
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changeset | 214 | Goal.prove_sorry lthy vars [] goal | 
| 55756 | 215 |           (fn {context = ctxt, prems = _} => mk_map_comp_id_tac ctxt map_comp0)
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changeset | 216 | |> Thm.close_derivation | 
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changeset | 217 | end; | 
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changeset | 218 | |
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changeset | 219 |     val map_comp_id_thms = @{map 5} mk_map_comp_id xFs mapsAsBs mapsBsCs' mapsAsCs' map_comps;
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changeset | 220 | |
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changeset | 221 | (*forall a : set(m+1) x. f(m+1) a = a; ...; forall a : set(m+n) x. f(m+n) a = a ==> | 
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changeset | 222 | map id ... id f(m+1) ... f(m+n) x = x*) | 
| 53285 | 223 | fun mk_map_cong0L x mapAsAs sets map_cong0 map_id = | 
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changeset | 224 | let | 
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changeset | 225 | fun mk_prem set f z z' = | 
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changeset | 226 | HOLogic.mk_Trueprop | 
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changeset | 227 | (mk_Ball (set $ x) (Term.absfree z' (HOLogic.mk_eq (f $ z, z)))); | 
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changeset | 228 |         val prems = @{map 4} mk_prem (drop m sets) self_fs zs zs';
 | 
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changeset | 229 | val goal = mk_Trueprop_eq (Term.list_comb (mapAsAs, passive_ids @ self_fs) $ x, x); | 
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changeset | 230 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 231 | in | 
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changeset | 232 | Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, goal)) | 
| 60728 | 233 |           (fn {context = ctxt, prems = _} => mk_map_cong0L_tac ctxt m map_cong0 map_id)
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changeset | 234 | |> Thm.close_derivation | 
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changeset | 235 | end; | 
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changeset | 236 | |
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changeset | 237 |     val map_cong0L_thms = @{map 5} mk_map_cong0L xFs mapsAsAs setssAs map_cong0s map_ids;
 | 
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changeset | 238 | val in_mono'_thms = map (fn thm => | 
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changeset | 239 |       (thm OF (replicate m subset_refl)) RS @{thm set_mp}) in_monos;
 | 
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changeset | 240 | |
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changeset | 241 | val map_arg_cong_thms = | 
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changeset | 242 | let | 
| 51925 | 243 | val prems = map2 (curry mk_Trueprop_eq) yFs yFs_copy; | 
| 244 | val maps = map (fn mapx => Term.list_comb (mapx, all_gs)) mapsBsCs'; | |
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changeset | 245 | val concls = | 
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changeset | 246 |           @{map 3} (fn x => fn y => fn mapx => mk_Trueprop_eq (mapx $ x, mapx $ y))
 | 
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changeset | 247 | yFs yFs_copy maps; | 
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changeset | 248 | val goals = map2 (fn prem => fn concl => Logic.mk_implies (prem, concl)) prems concls; | 
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changeset | 249 | in | 
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changeset | 250 | map (fn goal => | 
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changeset | 251 | Variable.add_free_names lthy goal [] | 
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changeset | 252 |           |> (fn vars => Goal.prove_sorry lthy vars [] goal (fn {context = ctxt, prems = _} =>
 | 
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changeset | 253 | (hyp_subst_tac ctxt THEN' rtac ctxt refl) 1)) | 
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changeset | 254 | |> Thm.close_derivation) | 
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changeset | 255 | goals | 
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changeset | 256 | end; | 
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changeset | 257 | |
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changeset | 258 | val timer = time (timer "Derived simple theorems"); | 
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changeset | 259 | |
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changeset | 260 | (* coalgebra *) | 
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changeset | 261 | |
| 53566 | 262 | val coalg_bind = mk_internal_b (coN ^ algN) ; | 
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changeset | 263 | val coalg_def_bind = (Thm.def_binding coalg_bind, []); | 
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changeset | 264 | |
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changeset | 265 | (*forall i = 1 ... n: (\<forall>x \<in> Bi. si \<in> Fi_in UNIV .. UNIV B1 ... Bn)*) | 
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changeset | 266 | val coalg_spec = | 
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changeset | 267 | let | 
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changeset | 268 |         val ins = @{map 3} mk_in (replicate n (passive_UNIVs @ Bs)) setssAs FTsAs;
 | 
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changeset | 269 | fun mk_coalg_conjunct B s X z z' = | 
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changeset | 270 | mk_Ball B (Term.absfree z' (HOLogic.mk_mem (s $ z, X))); | 
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changeset | 271 | |
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changeset | 272 |         val rhs = Library.foldr1 HOLogic.mk_conj (@{map 5} mk_coalg_conjunct Bs ss ins zs zs')
 | 
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changeset | 273 | in | 
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changeset | 274 | fold_rev (Term.absfree o Term.dest_Free) (Bs @ ss) rhs | 
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changeset | 275 | end; | 
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changeset | 276 | |
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changeset | 277 | val ((coalg_free, (_, coalg_def_free)), (lthy, lthy_old)) = | 
| 49311 | 278 | lthy | 
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changeset | 279 | |> Local_Theory.open_target |> snd | 
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changeset | 280 | |> Local_Theory.define ((coalg_bind, NoSyn), (coalg_def_bind, coalg_spec)) | 
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changeset | 281 | ||> `Local_Theory.close_target; | 
| 49311 | 282 | |
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changeset | 283 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 284 | val coalg = fst (Term.dest_Const (Morphism.term phi coalg_free)); | 
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changeset | 285 | val coalg_def = mk_unabs_def (2 * n) (HOLogic.mk_obj_eq (Morphism.thm phi coalg_def_free)); | 
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changeset | 286 | |
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changeset | 287 | fun mk_coalg Bs ss = | 
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changeset | 288 | let | 
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changeset | 289 | val args = Bs @ ss; | 
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changeset | 290 | val Ts = map fastype_of args; | 
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changeset | 291 | val coalgT = Library.foldr (op -->) (Ts, HOLogic.boolT); | 
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changeset | 292 | in | 
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changeset | 293 | Term.list_comb (Const (coalg, coalgT), args) | 
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changeset | 294 | end; | 
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changeset | 295 | |
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changeset | 296 | val((((((zs, zs'), Bs), B's), ss), s's), _) = | 
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changeset | 297 | lthy | 
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changeset | 298 | |> mk_Frees' "b" activeAs | 
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changeset | 299 | ||>> mk_Frees "B" BTs | 
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changeset | 300 | ||>> mk_Frees "B'" B'Ts | 
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changeset | 301 | ||>> mk_Frees "s" sTs | 
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changeset | 302 | ||>> mk_Frees "s'" s'Ts; | 
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changeset | 303 | |
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changeset | 304 | val coalg_prem = HOLogic.mk_Trueprop (mk_coalg Bs ss); | 
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changeset | 305 | |
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changeset | 306 | val coalg_in_thms = map (fn i => | 
| 52904 | 307 | coalg_def RS iffD1 RS mk_conjunctN n i RS bspec) ks | 
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changeset | 308 | |
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changeset | 309 | val coalg_set_thmss = | 
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changeset | 310 | let | 
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changeset | 311 | val coalg_prem = HOLogic.mk_Trueprop (mk_coalg Bs ss); | 
| 57567 | 312 | fun mk_prem x B = mk_Trueprop_mem (x, B); | 
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changeset | 313 | fun mk_concl s x B set = HOLogic.mk_Trueprop (mk_leq (set $ (s $ x)) B); | 
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changeset | 314 | val prems = map2 mk_prem zs Bs; | 
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changeset | 315 |         val conclss = @{map 3} (fn s => fn x => fn sets => map2 (mk_concl s x) Bs (drop m sets))
 | 
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changeset | 316 | ss zs setssAs; | 
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changeset | 317 | val goalss = map2 (fn prem => fn concls => map (fn concl => | 
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changeset | 318 | Logic.list_implies (coalg_prem :: [prem], concl)) concls) prems conclss; | 
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changeset | 319 | in | 
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changeset | 320 | map (fn goals => map (fn goal => | 
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changeset | 321 | Variable.add_free_names lthy goal [] | 
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changeset | 322 |           |> (fn vars => Goal.prove_sorry lthy vars [] goal (fn {context = ctxt, prems = _} =>
 | 
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changeset | 323 | mk_coalg_set_tac ctxt coalg_def)) | 
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changeset | 324 | |> Thm.close_derivation) | 
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changeset | 325 | goals) goalss | 
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changeset | 326 | end; | 
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changeset | 327 | |
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changeset | 328 | fun mk_tcoalg BTs = mk_coalg (map HOLogic.mk_UNIV BTs); | 
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changeset | 329 | |
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changeset | 330 | val tcoalg_thm = | 
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changeset | 331 | let | 
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changeset | 332 | val goal = HOLogic.mk_Trueprop (mk_tcoalg activeAs ss); | 
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changeset | 333 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 334 | in | 
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changeset | 335 | Goal.prove_sorry lthy vars [] goal | 
| 60728 | 336 |           (fn {context = ctxt, prems = _} => (rtac ctxt (coalg_def RS iffD2) 1 THEN CONJ_WRAP
 | 
| 337 | (K (EVERY' [rtac ctxt ballI, rtac ctxt CollectI, | |
| 338 |               CONJ_WRAP' (K (EVERY' [rtac ctxt @{thm subset_UNIV}])) allAs] 1)) ss))
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changeset | 339 | |> Thm.close_derivation | 
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changeset | 340 | end; | 
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changeset | 341 | |
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changeset | 342 | val timer = time (timer "Coalgebra definition & thms"); | 
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changeset | 343 | |
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changeset | 344 | (* morphism *) | 
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changeset | 345 | |
| 53566 | 346 | val mor_bind = mk_internal_b morN; | 
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changeset | 347 | val mor_def_bind = (Thm.def_binding mor_bind, []); | 
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changeset | 348 | |
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changeset | 349 | (*fbetw) forall i = 1 ... n: (\<forall>x \<in> Bi. fi x \<in> B'i)*) | 
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changeset | 350 | (*mor) forall i = 1 ... n: (\<forall>x \<in> Bi. | 
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changeset | 351 | Fi_map id ... id f1 ... fn (si x) = si' (fi x)*) | 
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changeset | 352 | val mor_spec = | 
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changeset | 353 | let | 
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changeset | 354 | fun mk_fbetw f B1 B2 z z' = | 
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changeset | 355 | mk_Ball B1 (Term.absfree z' (HOLogic.mk_mem (f $ z, B2))); | 
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changeset | 356 | fun mk_mor B mapAsBs f s s' z z' = | 
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changeset | 357 | mk_Ball B (Term.absfree z' (HOLogic.mk_eq | 
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changeset | 358 | (Term.list_comb (mapAsBs, passive_ids @ fs @ [s $ z]), s' $ (f $ z)))); | 
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changeset | 359 | val rhs = HOLogic.mk_conj | 
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changeset | 360 |           (Library.foldr1 HOLogic.mk_conj (@{map 5} mk_fbetw fs Bs B's zs zs'),
 | 
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changeset | 361 |            Library.foldr1 HOLogic.mk_conj (@{map 7} mk_mor Bs mapsAsBs fs ss s's zs zs'))
 | 
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changeset | 362 | in | 
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changeset | 363 | fold_rev (Term.absfree o Term.dest_Free) (Bs @ ss @ B's @ s's @ fs) rhs | 
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changeset | 364 | end; | 
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changeset | 365 | |
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changeset | 366 | val ((mor_free, (_, mor_def_free)), (lthy, lthy_old)) = | 
| 49311 | 367 | lthy | 
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changeset | 368 | |> Local_Theory.open_target |> snd | 
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changeset | 369 | |> Local_Theory.define ((mor_bind, NoSyn), (mor_def_bind, mor_spec)) | 
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changeset | 370 | ||> `Local_Theory.close_target; | 
| 49311 | 371 | |
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changeset | 372 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 373 | val mor = fst (Term.dest_Const (Morphism.term phi mor_free)); | 
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changeset | 374 | val mor_def = mk_unabs_def (5 * n) (HOLogic.mk_obj_eq (Morphism.thm phi mor_def_free)); | 
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changeset | 375 | |
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changeset | 376 | fun mk_mor Bs1 ss1 Bs2 ss2 fs = | 
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changeset | 377 | let | 
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changeset | 378 | val args = Bs1 @ ss1 @ Bs2 @ ss2 @ fs; | 
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changeset | 379 | val Ts = map fastype_of (Bs1 @ ss1 @ Bs2 @ ss2 @ fs); | 
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changeset | 380 | val morT = Library.foldr (op -->) (Ts, HOLogic.boolT); | 
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changeset | 381 | in | 
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changeset | 382 | Term.list_comb (Const (mor, morT), args) | 
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changeset | 383 | end; | 
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changeset | 384 | |
| 63314 | 385 | val ((((((((((((((zs, z's), Bs), Bs_copy), B's), B''s), ss), s's), s''s), fs), fs_copy), gs), | 
| 386 | RFs), Rs), _) = | |
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changeset | 387 | lthy | 
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changeset | 388 | |> mk_Frees "b" activeAs | 
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changeset | 389 | ||>> mk_Frees "b" activeBs | 
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changeset | 390 | ||>> mk_Frees "B" BTs | 
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changeset | 391 | ||>> mk_Frees "B" BTs | 
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changeset | 392 | ||>> mk_Frees "B'" B'Ts | 
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changeset | 393 | ||>> mk_Frees "B''" B''Ts | 
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changeset | 394 | ||>> mk_Frees "s" sTs | 
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changeset | 395 | ||>> mk_Frees "s'" s'Ts | 
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changeset | 396 | ||>> mk_Frees "s''" s''Ts | 
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changeset | 397 | ||>> mk_Frees "f" fTs | 
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changeset | 398 | ||>> mk_Frees "f" fTs | 
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changeset | 399 | ||>> mk_Frees "g" gTs | 
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changeset | 400 | ||>> mk_Frees "x" FRTs | 
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changeset | 401 | ||>> mk_Frees "R" setRTs; | 
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changeset | 402 | |
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changeset | 403 | val mor_prem = HOLogic.mk_Trueprop (mk_mor Bs ss B's s's fs); | 
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changeset | 404 | |
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changeset | 405 | val (mor_image_thms, morE_thms) = | 
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changeset | 406 | let | 
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changeset | 407 | val prem = HOLogic.mk_Trueprop (mk_mor Bs ss B's s's fs); | 
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changeset | 408 | fun mk_image_goal f B1 B2 = | 
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changeset | 409 | Logic.mk_implies (prem, HOLogic.mk_Trueprop (mk_leq (mk_image f $ B1) B2)); | 
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changeset | 410 |         val image_goals = @{map 3} mk_image_goal fs Bs B's;
 | 
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changeset | 411 | fun mk_elim_goal B mapAsBs f s s' x = | 
| 57567 | 412 | Logic.list_implies ([prem, mk_Trueprop_mem (x, B)], | 
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changeset | 413 | mk_Trueprop_eq (Term.list_comb (mapAsBs, passive_ids @ fs @ [s $ x]), s' $ (f $ x))); | 
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changeset | 414 |         val elim_goals = @{map 6} mk_elim_goal Bs mapsAsBs fs ss s's zs;
 | 
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changeset | 415 | fun prove goal = | 
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changeset | 416 | Variable.add_free_names lthy goal [] | 
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changeset | 417 |           |> (fn vars => Goal.prove_sorry lthy vars [] goal (fn {context = ctxt, prems = _} =>
 | 
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changeset | 418 | mk_mor_elim_tac ctxt mor_def)) | 
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changeset | 419 | |> Thm.close_derivation; | 
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changeset | 420 | in | 
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changeset | 421 | (map prove image_goals, map prove elim_goals) | 
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changeset | 422 | end; | 
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changeset | 423 | |
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changeset | 424 |     val mor_image'_thms = map (fn thm => @{thm set_mp} OF [thm, imageI]) mor_image_thms;
 | 
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changeset | 425 | |
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changeset | 426 | val mor_incl_thm = | 
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changeset | 427 | let | 
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changeset | 428 | val prems = map2 (HOLogic.mk_Trueprop oo mk_leq) Bs Bs_copy; | 
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changeset | 429 | val concl = HOLogic.mk_Trueprop (mk_mor Bs ss Bs_copy ss active_ids); | 
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changeset | 430 | val vars = fold (Variable.add_free_names lthy) (concl :: prems) []; | 
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changeset | 431 | in | 
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changeset | 432 | Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, concl)) | 
| 60728 | 433 |           (fn {context = ctxt, prems = _} => mk_mor_incl_tac ctxt mor_def map_ids)
 | 
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changeset | 434 | |> Thm.close_derivation | 
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changeset | 435 | end; | 
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changeset | 436 | |
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changeset | 437 | val mor_id_thm = mor_incl_thm OF (replicate n subset_refl); | 
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changeset | 438 | |
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changeset | 439 | val mor_comp_thm = | 
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changeset | 440 | let | 
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changeset | 441 | val prems = | 
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changeset | 442 | [HOLogic.mk_Trueprop (mk_mor Bs ss B's s's fs), | 
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changeset | 443 | HOLogic.mk_Trueprop (mk_mor B's s's B''s s''s gs)]; | 
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changeset | 444 | val concl = | 
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changeset | 445 | HOLogic.mk_Trueprop (mk_mor Bs ss B''s s''s (map2 (curry HOLogic.mk_comp) gs fs)); | 
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changeset | 446 | val vars = fold (Variable.add_free_names lthy) (concl :: prems) []; | 
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changeset | 447 | in | 
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changeset | 448 | Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, concl)) | 
| 61271 | 449 |           (fn {context = ctxt, prems = _} =>
 | 
| 450 | mk_mor_comp_tac ctxt mor_def mor_image'_thms morE_thms map_comp_id_thms) | |
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changeset | 451 | |> Thm.close_derivation | 
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changeset | 452 | end; | 
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changeset | 453 | |
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changeset | 454 | val mor_cong_thm = | 
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changeset | 455 | let | 
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changeset | 456 | val prems = map HOLogic.mk_Trueprop | 
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changeset | 457 | (map2 (curry HOLogic.mk_eq) fs_copy fs @ [mk_mor Bs ss B's s's fs]) | 
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changeset | 458 | val concl = HOLogic.mk_Trueprop (mk_mor Bs ss B's s's fs_copy); | 
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changeset | 459 | val vars = fold (Variable.add_free_names lthy) (concl :: prems) []; | 
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changeset | 460 | in | 
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changeset | 461 | Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, concl)) | 
| 61271 | 462 |           (fn {context = ctxt, prems = _} => (hyp_subst_tac ctxt THEN' assume_tac ctxt) 1)
 | 
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changeset | 463 | |> Thm.close_derivation | 
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changeset | 464 | end; | 
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changeset | 465 | |
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changeset | 466 | val mor_UNIV_thm = | 
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changeset | 467 | let | 
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changeset | 468 | fun mk_conjunct mapAsBs f s s' = HOLogic.mk_eq | 
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changeset | 469 | (HOLogic.mk_comp (Term.list_comb (mapAsBs, passive_ids @ fs), s), | 
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changeset | 470 | HOLogic.mk_comp (s', f)); | 
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changeset | 471 | val lhs = mk_mor active_UNIVs ss (map HOLogic.mk_UNIV activeBs) s's fs; | 
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changeset | 472 |         val rhs = Library.foldr1 HOLogic.mk_conj (@{map 4} mk_conjunct mapsAsBs fs ss s's);
 | 
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changeset | 473 | val vars = fold (Variable.add_free_names lthy) [lhs, rhs] []; | 
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changeset | 474 | in | 
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changeset | 475 | Goal.prove_sorry lthy vars [] (mk_Trueprop_eq (lhs, rhs)) | 
| 60728 | 476 |           (fn {context = ctxt, prems = _} => mk_mor_UNIV_tac ctxt morE_thms mor_def)
 | 
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changeset | 477 | |> Thm.close_derivation | 
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changeset | 478 | end; | 
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changeset | 479 | |
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changeset | 480 | val mor_str_thm = | 
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changeset | 481 | let | 
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changeset | 482 | val maps = map2 (fn Ds => fn bnf => Term.list_comb | 
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changeset | 483 | (mk_map_of_bnf Ds allAs (passiveAs @ FTsAs) bnf, passive_ids @ ss)) Dss bnfs; | 
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changeset | 484 | val goal = HOLogic.mk_Trueprop (mk_mor active_UNIVs ss (map HOLogic.mk_UNIV FTsAs) maps ss); | 
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changeset | 485 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 486 | in | 
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changeset | 487 | Goal.prove_sorry lthy vars [] goal | 
| 60728 | 488 |           (fn {context = ctxt, prems = _} => mk_mor_str_tac ctxt ks mor_UNIV_thm)
 | 
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changeset | 489 | |> Thm.close_derivation | 
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changeset | 490 | end; | 
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changeset | 491 | |
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changeset | 492 | val timer = time (timer "Morphism definition & thms"); | 
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changeset | 493 | |
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changeset | 494 | (* bisimulation *) | 
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changeset | 495 | |
| 53566 | 496 | val bis_bind = mk_internal_b bisN; | 
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changeset | 497 | val bis_def_bind = (Thm.def_binding bis_bind, []); | 
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changeset | 498 | |
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changeset | 499 | fun mk_bis_le_conjunct R B1 B2 = mk_leq R (mk_Times (B1, B2)); | 
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changeset | 500 |     val bis_le = Library.foldr1 HOLogic.mk_conj (@{map 3} mk_bis_le_conjunct Rs Bs B's)
 | 
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changeset | 501 | |
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changeset | 502 | val bis_spec = | 
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changeset | 503 | let | 
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changeset | 504 | val fst_args = passive_ids @ fsts; | 
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changeset | 505 | val snd_args = passive_ids @ snds; | 
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changeset | 506 | fun mk_bis R s s' b1 b2 RF map1 map2 sets = | 
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changeset | 507 | list_all_free [b1, b2] (HOLogic.mk_imp | 
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changeset | 508 | (HOLogic.mk_mem (HOLogic.mk_prod (b1, b2), R), | 
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changeset | 509 | mk_Bex (mk_in (passive_UNIVs @ Rs) sets (snd (dest_Free RF))) | 
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changeset | 510 | (Term.absfree (dest_Free RF) (HOLogic.mk_conj | 
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changeset | 511 | (HOLogic.mk_eq (Term.list_comb (map1, fst_args) $ RF, s $ b1), | 
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changeset | 512 | HOLogic.mk_eq (Term.list_comb (map2, snd_args) $ RF, s' $ b2)))))); | 
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changeset | 513 | |
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changeset | 514 | val rhs = HOLogic.mk_conj | 
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changeset | 515 | (bis_le, Library.foldr1 HOLogic.mk_conj | 
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changeset | 516 |             (@{map 9} mk_bis Rs ss s's zs z's RFs map_fsts map_snds bis_setss))
 | 
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changeset | 517 | in | 
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changeset | 518 | fold_rev (Term.absfree o Term.dest_Free) (Bs @ ss @ B's @ s's @ Rs) rhs | 
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changeset | 519 | end; | 
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changeset | 520 | |
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changeset | 521 | val ((bis_free, (_, bis_def_free)), (lthy, lthy_old)) = | 
| 49311 | 522 | lthy | 
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changeset | 523 | |> Local_Theory.open_target |> snd | 
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changeset | 524 | |> Local_Theory.define ((bis_bind, NoSyn), (bis_def_bind, bis_spec)) | 
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changeset | 525 | ||> `Local_Theory.close_target; | 
| 49311 | 526 | |
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changeset | 527 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 528 | val bis = fst (Term.dest_Const (Morphism.term phi bis_free)); | 
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changeset | 529 | val bis_def = mk_unabs_def (5 * n) (HOLogic.mk_obj_eq (Morphism.thm phi bis_def_free)); | 
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changeset | 530 | |
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changeset | 531 | fun mk_bis Bs1 ss1 Bs2 ss2 Rs = | 
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changeset | 532 | let | 
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changeset | 533 | val args = Bs1 @ ss1 @ Bs2 @ ss2 @ Rs; | 
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changeset | 534 | val Ts = map fastype_of args; | 
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changeset | 535 | val bisT = Library.foldr (op -->) (Ts, HOLogic.boolT); | 
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changeset | 536 | in | 
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changeset | 537 | Term.list_comb (Const (bis, bisT), args) | 
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changeset | 538 | end; | 
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changeset | 539 | |
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changeset | 540 | val (((((((((((((((((zs, z's), Bs), B's), B''s), ss), s's), s''s), fs), (Rtuple, Rtuple')), Rs), | 
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changeset | 541 | Rs_copy), R's), sRs), (idx, idx')), Idx), Ris), _) = | 
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changeset | 542 | lthy | 
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changeset | 543 | |> mk_Frees "b" activeAs | 
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changeset | 544 | ||>> mk_Frees "b" activeBs | 
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changeset | 545 | ||>> mk_Frees "B" BTs | 
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changeset | 546 | ||>> mk_Frees "B'" B'Ts | 
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changeset | 547 | ||>> mk_Frees "B''" B''Ts | 
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changeset | 548 | ||>> mk_Frees "s" sTs | 
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changeset | 549 | ||>> mk_Frees "s'" s'Ts | 
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changeset | 550 | ||>> mk_Frees "s''" s''Ts | 
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changeset | 551 | ||>> mk_Frees "f" fTs | 
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changeset | 552 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "Rtuple") all_sbisT | 
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changeset | 553 | ||>> mk_Frees "R" setRTs | 
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changeset | 554 | ||>> mk_Frees "R" setRTs | 
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changeset | 555 | ||>> mk_Frees "R'" setR'Ts | 
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changeset | 556 | ||>> mk_Frees "R" setsRTs | 
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changeset | 557 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "i") idxT | 
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changeset | 558 | ||>> yield_singleton (mk_Frees "I") (HOLogic.mk_setT idxT) | 
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changeset | 559 | ||>> mk_Frees "Ri" (map (fn T => idxT --> T) setRTs); | 
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changeset | 560 | |
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changeset | 561 | val bis_cong_thm = | 
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changeset | 562 | let | 
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changeset | 563 | val prems = map HOLogic.mk_Trueprop | 
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changeset | 564 | (mk_bis Bs ss B's s's Rs :: map2 (curry HOLogic.mk_eq) Rs_copy Rs) | 
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changeset | 565 | val concl = HOLogic.mk_Trueprop (mk_bis Bs ss B's s's Rs_copy); | 
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changeset | 566 | val vars = fold (Variable.add_free_names lthy) (concl :: prems) []; | 
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changeset | 567 | in | 
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changeset | 568 | Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, concl)) | 
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changeset | 569 |           (fn {context = ctxt, prems = _} => (hyp_subst_tac ctxt THEN' assume_tac ctxt) 1)
 | 
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changeset | 570 | |> Thm.close_derivation | 
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changeset | 571 | end; | 
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changeset | 572 | |
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changeset | 573 | val bis_rel_thm = | 
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changeset | 574 | let | 
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changeset | 575 | fun mk_conjunct R s s' b1 b2 rel = | 
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changeset | 576 | list_all_free [b1, b2] (HOLogic.mk_imp | 
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changeset | 577 | (HOLogic.mk_mem (HOLogic.mk_prod (b1, b2), R), | 
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changeset | 578 | Term.list_comb (rel, passive_eqs @ map mk_in_rel Rs) $ (s $ b1) $ (s' $ b2))); | 
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changeset | 579 | |
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changeset | 580 | val rhs = HOLogic.mk_conj | 
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changeset | 581 | (bis_le, Library.foldr1 HOLogic.mk_conj | 
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changeset | 582 |             (@{map 6} mk_conjunct Rs ss s's zs z's relsAsBs))
 | 
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changeset | 583 | val goal = mk_Trueprop_eq (mk_bis Bs ss B's s's Rs, rhs); | 
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changeset | 584 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 585 | in | 
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changeset | 586 | Goal.prove_sorry lthy vars [] goal | 
| 60728 | 587 |           (fn {context = ctxt, prems = _} => mk_bis_rel_tac ctxt m bis_def in_rels map_comps
 | 
| 588 | map_cong0s set_mapss) | |
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changeset | 589 | |> Thm.close_derivation | 
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changeset | 590 | end; | 
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changeset | 591 | |
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changeset | 592 | val bis_converse_thm = | 
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changeset | 593 | let | 
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changeset | 594 | val goal = Logic.mk_implies (HOLogic.mk_Trueprop (mk_bis Bs ss B's s's Rs), | 
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changeset | 595 | HOLogic.mk_Trueprop (mk_bis B's s's Bs ss (map mk_converse Rs))); | 
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changeset | 596 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 597 | in | 
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changeset | 598 | Goal.prove_sorry lthy vars [] goal | 
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changeset | 599 |           (fn {context = ctxt, prems = _} => mk_bis_converse_tac ctxt m bis_rel_thm rel_congs
 | 
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changeset | 600 | rel_converseps) | 
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changeset | 601 | |> Thm.close_derivation | 
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changeset | 602 | end; | 
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changeset | 603 | |
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changeset | 604 | val bis_O_thm = | 
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changeset | 605 | let | 
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changeset | 606 | val prems = | 
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changeset | 607 | [HOLogic.mk_Trueprop (mk_bis Bs ss B's s's Rs), | 
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changeset | 608 | HOLogic.mk_Trueprop (mk_bis B's s's B''s s''s R's)]; | 
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changeset | 609 | val concl = | 
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changeset | 610 | HOLogic.mk_Trueprop (mk_bis Bs ss B''s s''s (map2 (curry mk_rel_comp) Rs R's)); | 
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changeset | 611 | val vars = fold (Variable.add_free_names lthy) (concl :: prems) []; | 
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changeset | 612 | in | 
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changeset | 613 | Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, concl)) | 
| 61271 | 614 |           (fn {context = ctxt, prems = _} => mk_bis_O_tac ctxt m bis_rel_thm rel_congs le_rel_OOs)
 | 
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changeset | 615 | |> Thm.close_derivation | 
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changeset | 616 | end; | 
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changeset | 617 | |
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changeset | 618 | val bis_Gr_thm = | 
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changeset | 619 | let | 
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changeset | 620 | val concl = HOLogic.mk_Trueprop (mk_bis Bs ss B's s's (map2 mk_Gr Bs fs)); | 
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changeset | 621 | val vars = fold (Variable.add_free_names lthy) ([coalg_prem, mor_prem, concl]) []; | 
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changeset | 622 | in | 
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changeset | 623 | Goal.prove_sorry lthy vars [] (Logic.list_implies ([coalg_prem, mor_prem], concl)) | 
| 55197 | 624 |           (fn {context = ctxt, prems = _} => mk_bis_Gr_tac ctxt bis_rel_thm rel_Grps mor_image_thms
 | 
| 625 | morE_thms coalg_in_thms) | |
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changeset | 626 | |> Thm.close_derivation | 
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changeset | 627 | end; | 
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changeset | 628 | |
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changeset | 629 | val bis_image2_thm = bis_cong_thm OF | 
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changeset | 630 | ((bis_O_thm OF [bis_Gr_thm RS bis_converse_thm, bis_Gr_thm]) :: | 
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changeset | 631 |       replicate n @{thm image2_Gr});
 | 
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changeset | 632 | |
| 51447 | 633 | val bis_Id_on_thm = bis_cong_thm OF ((mor_id_thm RSN (2, bis_Gr_thm)) :: | 
| 634 |       replicate n @{thm Id_on_Gr});
 | |
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changeset | 635 | |
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changeset | 636 | val bis_Union_thm = | 
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changeset | 637 | let | 
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changeset | 638 | val prem = | 
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changeset | 639 | HOLogic.mk_Trueprop (mk_Ball Idx | 
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changeset | 640 | (Term.absfree idx' (mk_bis Bs ss B's s's (map (fn R => R $ idx) Ris)))); | 
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changeset | 641 | val concl = | 
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changeset | 642 | HOLogic.mk_Trueprop (mk_bis Bs ss B's s's (map (mk_UNION Idx) Ris)); | 
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changeset | 643 | val vars = fold (Variable.add_free_names lthy) [prem, concl] []; | 
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changeset | 644 | in | 
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changeset | 645 | Goal.prove_sorry lthy vars [] (Logic.mk_implies (prem, concl)) | 
| 55197 | 646 |           (fn {context = ctxt, prems = _} => mk_bis_Union_tac ctxt bis_def in_mono'_thms)
 | 
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changeset | 647 | |> Thm.close_derivation | 
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changeset | 648 | end; | 
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changeset | 649 | |
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changeset | 650 | (* self-bisimulation *) | 
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changeset | 651 | |
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changeset | 652 | fun mk_sbis Bs ss Rs = mk_bis Bs ss Bs ss Rs; | 
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changeset | 653 | |
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changeset | 654 | (* largest self-bisimulation *) | 
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changeset | 655 | |
| 53566 | 656 | val lsbis_binds = mk_internal_bs lsbisN; | 
| 657 | fun lsbis_bind i = nth lsbis_binds (i - 1); | |
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changeset | 658 | val lsbis_def_bind = rpair [] o Thm.def_binding o lsbis_bind; | 
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changeset | 659 | |
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changeset | 660 | val all_sbis = HOLogic.mk_Collect (fst Rtuple', snd Rtuple', list_exists_free sRs | 
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changeset | 661 | (HOLogic.mk_conj (HOLogic.mk_eq (Rtuple, HOLogic.mk_tuple sRs), mk_sbis Bs ss sRs))); | 
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changeset | 662 | |
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changeset | 663 | fun lsbis_spec i = | 
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changeset | 664 | fold_rev (Term.absfree o Term.dest_Free) (Bs @ ss) | 
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changeset | 665 | (mk_UNION all_sbis (Term.absfree Rtuple' (mk_nthN n Rtuple i))); | 
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changeset | 666 | |
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changeset | 667 | val ((lsbis_frees, (_, lsbis_def_frees)), (lthy, lthy_old)) = | 
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changeset | 668 | lthy | 
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changeset | 669 | |> Local_Theory.open_target |> snd | 
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changeset | 670 | |> fold_map (fn i => Local_Theory.define | 
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changeset | 671 | ((lsbis_bind i, NoSyn), (lsbis_def_bind i, lsbis_spec i))) ks | 
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changeset | 672 | |>> apsnd split_list o split_list | 
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changeset | 673 | ||> `Local_Theory.close_target; | 
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changeset | 674 | |
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changeset | 675 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 676 | |
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changeset | 677 | val lsbis_defs = map (fn def => | 
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changeset | 678 | mk_unabs_def (2 * n) (HOLogic.mk_obj_eq (Morphism.thm phi def))) lsbis_def_frees; | 
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changeset | 679 | val lsbiss = map (fst o Term.dest_Const o Morphism.term phi) lsbis_frees; | 
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changeset | 680 | |
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changeset | 681 | fun mk_lsbis Bs ss i = | 
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changeset | 682 | let | 
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changeset | 683 | val args = Bs @ ss; | 
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changeset | 684 | val Ts = map fastype_of args; | 
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changeset | 685 | val RT = mk_relT (`I (HOLogic.dest_setT (fastype_of (nth Bs (i - 1))))); | 
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changeset | 686 | val lsbisT = Library.foldr (op -->) (Ts, RT); | 
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changeset | 687 | in | 
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changeset | 688 | Term.list_comb (Const (nth lsbiss (i - 1), lsbisT), args) | 
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changeset | 689 | end; | 
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changeset | 690 | |
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changeset | 691 | val (((((zs, zs'), Bs), ss), sRs), _) = | 
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changeset | 692 | lthy | 
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changeset | 693 | |> mk_Frees' "b" activeAs | 
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changeset | 694 | ||>> mk_Frees "B" BTs | 
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changeset | 695 | ||>> mk_Frees "s" sTs | 
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changeset | 696 | ||>> mk_Frees "R" setsRTs; | 
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changeset | 697 | |
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changeset | 698 | val sbis_prem = HOLogic.mk_Trueprop (mk_sbis Bs ss sRs); | 
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changeset | 699 | val coalg_prem = HOLogic.mk_Trueprop (mk_coalg Bs ss); | 
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changeset | 700 | |
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changeset | 701 | val sbis_lsbis_thm = | 
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changeset | 702 | let | 
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changeset | 703 | val goal = HOLogic.mk_Trueprop (mk_sbis Bs ss (map (mk_lsbis Bs ss) ks)); | 
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changeset | 704 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 705 | in | 
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changeset | 706 | Goal.prove_sorry lthy vars [] goal | 
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changeset | 707 |           (fn {context = ctxt, prems = _} =>
 | 
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changeset | 708 | mk_sbis_lsbis_tac ctxt lsbis_defs bis_Union_thm bis_cong_thm) | 
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changeset | 709 | |> Thm.close_derivation | 
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changeset | 710 | end; | 
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changeset | 711 | |
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changeset | 712 | val lsbis_incl_thms = map (fn i => sbis_lsbis_thm RS | 
| 52904 | 713 | (bis_def RS iffD1 RS conjunct1 RS mk_conjunctN n i)) ks; | 
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changeset | 714 | val lsbisE_thms = map (fn i => (mk_specN 2 (sbis_lsbis_thm RS | 
| 52904 | 715 | (bis_def RS iffD1 RS conjunct2 RS mk_conjunctN n i))) RS mp) ks; | 
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changeset | 716 | |
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changeset | 717 | val incl_lsbis_thms = | 
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changeset | 718 | let | 
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changeset | 719 | fun mk_concl i R = HOLogic.mk_Trueprop (mk_leq R (mk_lsbis Bs ss i)); | 
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changeset | 720 | val goals = map2 (fn i => fn R => Logic.mk_implies (sbis_prem, mk_concl i R)) ks sRs; | 
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changeset | 721 | in | 
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changeset | 722 |         @{map 3} (fn goal => fn i => fn def =>
 | 
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changeset | 723 | Variable.add_free_names lthy goal [] | 
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changeset | 724 |           |> (fn vars => Goal.prove_sorry lthy vars [] goal (fn {context = ctxt, prems = _} =>
 | 
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changeset | 725 | mk_incl_lsbis_tac ctxt n i def)) | 
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changeset | 726 | |> Thm.close_derivation) | 
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changeset | 727 | goals ks lsbis_defs | 
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changeset | 728 | end; | 
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changeset | 729 | |
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changeset | 730 | val equiv_lsbis_thms = | 
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changeset | 731 | let | 
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changeset | 732 | fun mk_concl i B = HOLogic.mk_Trueprop (mk_equiv B (mk_lsbis Bs ss i)); | 
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changeset | 733 | val goals = map2 (fn i => fn B => Logic.mk_implies (coalg_prem, mk_concl i B)) ks Bs; | 
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changeset | 734 | in | 
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changeset | 735 |         @{map 3} (fn goal => fn l_incl => fn incl_l =>
 | 
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changeset | 736 | Variable.add_free_names lthy goal [] | 
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changeset | 737 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 60728 | 738 |             (fn {context = ctxt, prems = _} => mk_equiv_lsbis_tac ctxt sbis_lsbis_thm l_incl incl_l
 | 
| 739 | bis_Id_on_thm bis_converse_thm bis_O_thm) | |
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changeset | 740 | |> Thm.close_derivation)) | 
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changeset | 741 | goals lsbis_incl_thms incl_lsbis_thms | 
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changeset | 742 | end; | 
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changeset | 743 | |
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changeset | 744 | val timer = time (timer "Bisimulations"); | 
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changeset | 745 | |
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changeset | 746 | (* bounds *) | 
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changeset | 747 | |
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changeset | 748 | val (lthy, sbd, sbdT, | 
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changeset | 749 | sbd_card_order, sbd_Cinfinite, sbd_Card_order, set_sbdss) = | 
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changeset | 750 | if n = 1 | 
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changeset | 751 | then (lthy, sum_bd, sum_bdT, bd_card_order, bd_Cinfinite, bd_Card_order, set_bdss) | 
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changeset | 752 | else | 
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changeset | 753 | let | 
| 53566 | 754 | val sbdT_bind = mk_internal_b sum_bdTN; | 
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changeset | 755 | |
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changeset | 756 | val ((sbdT_name, (sbdT_glob_info, sbdT_loc_info)), lthy) = | 
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changeset | 757 | typedef (sbdT_bind, sum_bdT_params', NoSyn) | 
| 60728 | 758 | (HOLogic.mk_UNIV sum_bdT) NONE (fn ctxt => | 
| 759 | EVERY' [rtac ctxt exI, rtac ctxt UNIV_I] 1) lthy; | |
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changeset | 760 | |
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changeset | 761 | val sbdT = Type (sbdT_name, sum_bdT_params); | 
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changeset | 762 | val Abs_sbdT = Const (#Abs_name sbdT_glob_info, sum_bdT --> sbdT); | 
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changeset | 763 | |
| 53566 | 764 | val sbd_bind = mk_internal_b sum_bdN; | 
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changeset | 765 | val sbd_def_bind = (Thm.def_binding sbd_bind, []); | 
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changeset | 766 | |
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changeset | 767 | val sbd_spec = mk_dir_image sum_bd Abs_sbdT; | 
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changeset | 768 | |
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changeset | 769 | val ((sbd_free, (_, sbd_def_free)), (lthy, lthy_old)) = | 
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changeset | 770 | lthy | 
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changeset | 771 | |> Local_Theory.open_target |> snd | 
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changeset | 772 | |> Local_Theory.define ((sbd_bind, NoSyn), (sbd_def_bind, sbd_spec)) | 
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changeset | 773 | ||> `Local_Theory.close_target; | 
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changeset | 774 | |
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changeset | 775 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 776 | |
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changeset | 777 | val sbd_def = HOLogic.mk_obj_eq (Morphism.thm phi sbd_def_free); | 
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changeset | 778 | val sbd = Const (fst (Term.dest_Const (Morphism.term phi sbd_free)), mk_relT (`I sbdT)); | 
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changeset | 779 | |
| 49228 | 780 | val Abs_sbdT_inj = mk_Abs_inj_thm (#Abs_inject sbdT_loc_info); | 
| 781 | val Abs_sbdT_bij = mk_Abs_bij_thm lthy Abs_sbdT_inj (#Abs_cases sbdT_loc_info); | |
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changeset | 782 | |
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changeset | 783 | val sum_Cinfinite = mk_sum_Cinfinite bd_Cinfinites; | 
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changeset | 784 | val sum_Card_order = sum_Cinfinite RS conjunct2; | 
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changeset | 785 | val sum_card_order = mk_sum_card_order bd_card_orders; | 
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changeset | 786 | |
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changeset | 787 |           val sbd_ordIso = @{thm ssubst_Pair_rhs} OF
 | 
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changeset | 788 |             [@{thm dir_image} OF [Abs_sbdT_inj, sum_Card_order], sbd_def];
 | 
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changeset | 789 |           val sbd_card_order = @{thm iffD2[OF arg_cong[of _ _ card_order]]} OF
 | 
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changeset | 790 |             [sbd_def, @{thm card_order_dir_image} OF [Abs_sbdT_bij, sum_card_order]];
 | 
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changeset | 791 |           val sbd_Cinfinite = @{thm Cinfinite_cong} OF [sbd_ordIso, sum_Cinfinite];
 | 
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changeset | 792 | val sbd_Card_order = sbd_Cinfinite RS conjunct2; | 
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changeset | 793 | |
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changeset | 794 | fun mk_set_sbd i bd_Card_order bds = | 
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changeset | 795 |             map (fn thm => @{thm ordLeq_ordIso_trans} OF
 | 
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changeset | 796 | [bd_Card_order RS mk_ordLeq_csum n i thm, sbd_ordIso]) bds; | 
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changeset | 797 |           val set_sbdss = @{map 3} mk_set_sbd ks bd_Card_orders set_bdss;
 | 
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changeset | 798 | in | 
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changeset | 799 | (lthy, sbd, sbdT, sbd_card_order, sbd_Cinfinite, sbd_Card_order, set_sbdss) | 
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changeset | 800 | end; | 
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changeset | 801 | |
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changeset | 802 | val sbdTs = replicate n sbdT; | 
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changeset | 803 | val sum_sbdT = mk_sumTN sbdTs; | 
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changeset | 804 | val sum_sbd_listT = HOLogic.listT sum_sbdT; | 
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changeset | 805 | val sum_sbd_list_setT = HOLogic.mk_setT sum_sbd_listT; | 
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changeset | 806 | val bdTs = passiveAs @ replicate n sbdT; | 
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changeset | 807 |     val to_sbd_maps = @{map 4} mk_map_of_bnf Dss Ass (replicate n bdTs) bnfs;
 | 
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changeset | 808 | val bdFTs = mk_FTs bdTs; | 
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changeset | 809 | val sbdFT = mk_sumTN bdFTs; | 
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changeset | 810 | val treeT = HOLogic.mk_prodT (sum_sbd_list_setT, sum_sbd_listT --> sbdFT); | 
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changeset | 811 | val treeQT = HOLogic.mk_setT treeT; | 
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changeset | 812 | val treeTs = passiveAs @ replicate n treeT; | 
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changeset | 813 | val treeQTs = passiveAs @ replicate n treeQT; | 
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changeset | 814 | val treeFTs = mk_FTs treeTs; | 
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changeset | 815 |     val tree_maps = @{map 4} mk_map_of_bnf Dss (replicate n bdTs) (replicate n treeTs) bnfs;
 | 
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changeset | 816 |     val final_maps = @{map 4} mk_map_of_bnf Dss (replicate n treeTs) (replicate n treeQTs) bnfs;
 | 
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changeset | 817 | val isNode_setss = mk_setss (passiveAs @ replicate n sbdT); | 
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changeset | 818 | |
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changeset | 819 | val root = HOLogic.mk_set sum_sbd_listT [HOLogic.mk_list sum_sbdT []]; | 
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changeset | 820 | val Zero = HOLogic.mk_tuple (map (fn U => absdummy U root) activeAs); | 
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changeset | 821 | val Lev_recT = fastype_of Zero; | 
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changeset | 822 | |
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changeset | 823 |     val Nil = HOLogic.mk_tuple (@{map 3} (fn i => fn z => fn z'=>
 | 
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changeset | 824 | Term.absfree z' (mk_InN activeAs z i)) ks zs zs'); | 
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changeset | 825 | val rv_recT = fastype_of Nil; | 
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changeset | 826 | |
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changeset | 827 | val (((((((((((((((zs, zs'), zs_copy), ss), (nat, nat')), | 
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changeset | 828 | (sumx, sumx')), (kks, kks')), (kl, kl')), (kl_copy, kl'_copy)), (Kl, Kl')), (lab, lab')), | 
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changeset | 829 | (Kl_lab, Kl_lab')), xs), (Lev_rec, Lev_rec')), (rv_rec, rv_rec')), _) = | 
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changeset | 830 | lthy | 
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changeset | 831 | |> mk_Frees' "b" activeAs | 
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changeset | 832 | ||>> mk_Frees "b" activeAs | 
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changeset | 833 | ||>> mk_Frees "s" sTs | 
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changeset | 834 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "n") HOLogic.natT | 
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changeset | 835 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "sumx") sum_sbdT | 
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changeset | 836 | ||>> mk_Frees' "k" sbdTs | 
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changeset | 837 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "kl") sum_sbd_listT | 
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changeset | 838 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "kl") sum_sbd_listT | 
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changeset | 839 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "Kl") sum_sbd_list_setT | 
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changeset | 840 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "lab") (sum_sbd_listT --> sbdFT) | 
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changeset | 841 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "Kl_lab") treeT | 
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changeset | 842 | ||>> mk_Frees "x" bdFTs | 
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changeset | 843 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "rec") Lev_recT | 
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changeset | 844 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "rec") rv_recT; | 
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changeset | 845 | |
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changeset | 846 | val (k, k') = (hd kks, hd kks') | 
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changeset | 847 | |
| 
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changeset | 848 | val timer = time (timer "Bounds"); | 
| 
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changeset | 849 | |
| 
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changeset | 850 | (* tree coalgebra *) | 
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changeset | 851 | |
| 53566 | 852 | val isNode_binds = mk_internal_bs isNodeN; | 
| 853 | fun isNode_bind i = nth isNode_binds (i - 1); | |
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changeset | 854 | val isNode_def_bind = rpair [] o Thm.def_binding o isNode_bind; | 
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changeset | 855 | |
| 
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changeset | 856 | val isNodeT = | 
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changeset | 857 | Library.foldr (op -->) (map fastype_of [Kl, lab, kl], HOLogic.boolT); | 
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changeset | 858 | |
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changeset | 859 |     val Succs = @{map 3} (fn i => fn k => fn k' =>
 | 
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changeset | 860 | HOLogic.mk_Collect (fst k', snd k', HOLogic.mk_mem (mk_InN sbdTs k i, mk_Succ Kl kl))) | 
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changeset | 861 | ks kks kks'; | 
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changeset | 862 | |
| 
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changeset | 863 | fun isNode_spec sets x i = | 
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changeset | 864 | let | 
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changeset | 865 | val active_sets = drop m (map (fn set => set $ x) sets); | 
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changeset | 866 | val rhs = list_exists_free [x] | 
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changeset | 867 | (Library.foldr1 HOLogic.mk_conj (HOLogic.mk_eq (lab $ kl, mk_InN bdFTs x i) :: | 
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changeset | 868 | map2 (curry HOLogic.mk_eq) active_sets Succs)); | 
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changeset | 869 | in | 
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changeset | 870 | fold_rev (Term.absfree o Term.dest_Free) [Kl, lab, kl] rhs | 
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changeset | 871 | end; | 
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changeset | 872 | |
| 
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changeset | 873 | val ((isNode_frees, (_, isNode_def_frees)), (lthy, lthy_old)) = | 
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changeset | 874 | lthy | 
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changeset | 875 | |> Local_Theory.open_target |> snd | 
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changeset | 876 |       |> @{fold_map 3} (fn i => fn x => fn sets => Local_Theory.define
 | 
| 55204 
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changeset | 877 | ((isNode_bind i, NoSyn), (isNode_def_bind i, isNode_spec sets x i))) | 
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changeset | 878 | ks xs isNode_setss | 
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changeset | 879 | |>> apsnd split_list o split_list | 
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changeset | 880 | ||> `Local_Theory.close_target; | 
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changeset | 881 | |
| 
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changeset | 882 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 883 | |
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changeset | 884 | val isNode_defs = map (fn def => | 
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changeset | 885 | mk_unabs_def 3 (HOLogic.mk_obj_eq (Morphism.thm phi def))) isNode_def_frees; | 
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changeset | 886 | val isNodes = map (fst o Term.dest_Const o Morphism.term phi) isNode_frees; | 
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changeset | 887 | |
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changeset | 888 | fun mk_isNode kl i = | 
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changeset | 889 | Term.list_comb (Const (nth isNodes (i - 1), isNodeT), [Kl, lab, kl]); | 
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changeset | 890 | |
| 
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changeset | 891 | val isTree = | 
| 
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changeset | 892 | let | 
| 
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changeset | 893 | val empty = HOLogic.mk_mem (HOLogic.mk_list sum_sbdT [], Kl); | 
| 
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changeset | 894 | |
| 
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added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 895 | val tree = mk_Ball Kl (Term.absfree kl' | 
| 58634 
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 wenzelm parents: 
58585diff
changeset | 896 |           (Library.foldr1 HOLogic.mk_conj (@{map 4} (fn Succ => fn i => fn k => fn k' =>
 | 
| 55581 
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changeset | 897 | mk_Ball Succ (Term.absfree k' (mk_isNode | 
| 
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changeset | 898 | (mk_append (kl, HOLogic.mk_list sum_sbdT [mk_InN sbdTs k i])) i))) | 
| 
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changeset | 899 | Succs ks kks kks'))); | 
| 48975 
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added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 900 | in | 
| 55577 
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55541diff
changeset | 901 | HOLogic.mk_conj (empty, tree) | 
| 48975 
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changeset | 902 | end; | 
| 
7f79f94a432c
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changeset | 903 | |
| 53566 | 904 | val carT_binds = mk_internal_bs carTN; | 
| 905 | fun carT_bind i = nth carT_binds (i - 1); | |
| 48975 
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changeset | 906 | val carT_def_bind = rpair [] o Thm.def_binding o carT_bind; | 
| 
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added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 907 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 908 | fun carT_spec i = | 
| 55541 
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changeset | 909 | HOLogic.mk_Collect (fst Kl_lab', snd Kl_lab', list_exists_free [Kl, lab] | 
| 
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changeset | 910 | (HOLogic.mk_conj (HOLogic.mk_eq (Kl_lab, HOLogic.mk_prod (Kl, lab)), | 
| 
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changeset | 911 | HOLogic.mk_conj (isTree, mk_isNode (HOLogic.mk_list sum_sbdT []) i)))); | 
| 48975 
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changeset | 912 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 913 | val ((carT_frees, (_, carT_def_frees)), (lthy, lthy_old)) = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 914 | lthy | 
| 61101 
7b915ca69af1
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changeset | 915 | |> Local_Theory.open_target |> snd | 
| 55204 
345ee77213b5
use Local_Theory.define instead of Specification.definition for internal constants
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55197diff
changeset | 916 | |> fold_map (fn i => | 
| 
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changeset | 917 | Local_Theory.define ((carT_bind i, NoSyn), (carT_def_bind i, carT_spec i))) ks | 
| 48975 
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changeset | 918 | |>> apsnd split_list o split_list | 
| 61101 
7b915ca69af1
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changeset | 919 | ||> `Local_Theory.close_target; | 
| 48975 
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changeset | 920 | |
| 
7f79f94a432c
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changeset | 921 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 922 | |
| 67710 
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added HOLogic.mk_obj_eq convenience and eliminated some clones;
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changeset | 923 | val carT_defs = map (fn def => HOLogic.mk_obj_eq (Morphism.thm phi def)) carT_def_frees; | 
| 48975 
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changeset | 924 | val carTs = map (fst o Term.dest_Const o Morphism.term phi) carT_frees; | 
| 
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changeset | 925 | |
| 55541 
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changeset | 926 | fun mk_carT i = Const (nth carTs (i - 1), HOLogic.mk_setT treeT); | 
| 48975 
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changeset | 927 | |
| 53566 | 928 | val strT_binds = mk_internal_bs strTN; | 
| 929 | fun strT_bind i = nth strT_binds (i - 1); | |
| 48975 
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changeset | 930 | val strT_def_bind = rpair [] o Thm.def_binding o strT_bind; | 
| 
7f79f94a432c
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changeset | 931 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 932 | fun strT_spec mapFT FT i = | 
| 
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changeset | 933 | let | 
| 
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changeset | 934 | fun mk_f i k k' = | 
| 
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changeset | 935 | let val in_k = mk_InN sbdTs k i; | 
| 
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changeset | 936 | in Term.absfree k' (HOLogic.mk_prod (mk_Shift Kl in_k, mk_shift lab in_k)) end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 937 | |
| 58634 
9f10d82e8188
added parameterized ML antiquotations @{map N}, @{fold N}, @{fold_map N}, @{split_list N};
 wenzelm parents: 
58585diff
changeset | 938 |         val f = Term.list_comb (mapFT, passive_ids @ @{map 3} mk_f ks kks kks');
 | 
| 48975 
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changeset | 939 | val (fTs1, fTs2) = apsnd tl (chop (i - 1) (map (fn T => T --> FT) bdFTs)); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 940 | val fs = map mk_undefined fTs1 @ (f :: map mk_undefined fTs2); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 941 | in | 
| 61424 
c3658c18b7bc
prod_case as canonical name for product type eliminator
 haftmann parents: 
61334diff
changeset | 942 | HOLogic.mk_case_prod (Term.absfree Kl' (Term.absfree lab' | 
| 55414 
eab03e9cee8a
renamed '{prod,sum,bool,unit}_case' to 'case_...'
 blanchet parents: 
55413diff
changeset | 943 | (mk_case_sumN fs $ (lab $ HOLogic.mk_list sum_sbdT [])))) | 
| 48975 
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changeset | 944 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 945 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 946 | val ((strT_frees, (_, strT_def_frees)), (lthy, lthy_old)) = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 947 | lthy | 
| 61101 
7b915ca69af1
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 traytel parents: 
60801diff
changeset | 948 | |> Local_Theory.open_target |> snd | 
| 58634 
9f10d82e8188
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 wenzelm parents: 
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changeset | 949 |       |> @{fold_map 3} (fn i => fn mapFT => fn FT => Local_Theory.define
 | 
| 55204 
345ee77213b5
use Local_Theory.define instead of Specification.definition for internal constants
 traytel parents: 
55197diff
changeset | 950 | ((strT_bind i, NoSyn), (strT_def_bind i, strT_spec mapFT FT i))) | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 951 | ks tree_maps treeFTs | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 952 | |>> apsnd split_list o split_list | 
| 61101 
7b915ca69af1
use open/close_target rather than Local_Theory.restore to get polymorphic definitions;
 traytel parents: 
60801diff
changeset | 953 | ||> `Local_Theory.close_target; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 954 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 955 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 956 | |
| 55204 
345ee77213b5
use Local_Theory.define instead of Specification.definition for internal constants
 traytel parents: 
55197diff
changeset | 957 | val strT_defs = map (fn def => | 
| 67710 
cc2db3239932
added HOLogic.mk_obj_eq convenience and eliminated some clones;
 wenzelm parents: 
67405diff
changeset | 958 |         trans OF [HOLogic.mk_obj_eq (Morphism.thm phi def) RS fun_cong, @{thm prod.case}])
 | 
| 55204 
345ee77213b5
use Local_Theory.define instead of Specification.definition for internal constants
 traytel parents: 
55197diff
changeset | 959 | strT_def_frees; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 960 | val strTs = map (fst o Term.dest_Const o Morphism.term phi) strT_frees; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 961 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 962 | fun mk_strT FT i = Const (nth strTs (i - 1), treeT --> FT); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 963 | |
| 55541 
fd9ea8ae28f6
syntactic simplifications of internal (co)datatype constructions
 traytel parents: 
55538diff
changeset | 964 | val carTAs = map mk_carT ks; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 965 | val strTAs = map2 mk_strT treeFTs ks; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 966 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 967 | val coalgT_thm = | 
| 55541 
fd9ea8ae28f6
syntactic simplifications of internal (co)datatype constructions
 traytel parents: 
55538diff
changeset | 968 | Goal.prove_sorry lthy [] [] (HOLogic.mk_Trueprop (mk_coalg carTAs strTAs)) | 
| 55197 | 969 |         (fn {context = ctxt, prems = _} => mk_coalgT_tac ctxt m
 | 
| 970 | (coalg_def :: isNode_defs @ carT_defs) strT_defs set_mapss) | |
| 49109 
0e5b859e1c91
no more aliases for Local_Theory.note; use Thm.close_derivation in internal theorems;
 traytel parents: 
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changeset | 971 | |> Thm.close_derivation; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 972 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 973 | val timer = time (timer "Tree coalgebra"); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 974 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 975 | fun mk_to_sbd s x i i' = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 976 | mk_toCard (nth (nth setssAs (i - 1)) (m + i' - 1) $ (s $ x)) sbd; | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 977 | fun mk_from_sbd s x i i' = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 978 | mk_fromCard (nth (nth setssAs (i - 1)) (m + i' - 1) $ (s $ x)) sbd; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 979 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 980 | fun mk_to_sbd_thmss thm = map (map (fn set_sbd => | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 981 | thm OF [set_sbd, sbd_Card_order]) o drop m) set_sbdss; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 982 | |
| 
7f79f94a432c
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changeset | 983 |     val to_sbd_inj_thmss = mk_to_sbd_thmss @{thm toCard_inj};
 | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 984 |     val from_to_sbd_thmss = mk_to_sbd_thmss @{thm fromCard_toCard};
 | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 985 | |
| 53566 | 986 | val Lev_bind = mk_internal_b LevN; | 
| 48975 
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changeset | 987 | val Lev_def_bind = rpair [] (Thm.def_binding Lev_bind); | 
| 
7f79f94a432c
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changeset | 988 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 989 | val Lev_spec = | 
| 
7f79f94a432c
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changeset | 990 | let | 
| 
7f79f94a432c
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changeset | 991 | fun mk_Suc i s setsAs a a' = | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 992 | let | 
| 
7f79f94a432c
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changeset | 993 | val sets = drop m setsAs; | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 994 | fun mk_set i' set b = | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 995 | let | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 996 | val Cons = HOLogic.mk_eq (kl_copy, | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 997 | mk_Cons (mk_InN sbdTs (mk_to_sbd s a i i' $ b) i') kl) | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 998 | val b_set = HOLogic.mk_mem (b, set $ (s $ a)); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 999 | val kl_rec = HOLogic.mk_mem (kl, mk_nthN n Lev_rec i' $ b); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1000 | in | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 1001 | HOLogic.mk_Collect (fst kl'_copy, snd kl'_copy, list_exists_free [b, kl] | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 1002 | (HOLogic.mk_conj (Cons, HOLogic.mk_conj (b_set, kl_rec)))) | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 1003 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1004 | in | 
| 58634 
9f10d82e8188
added parameterized ML antiquotations @{map N}, @{fold N}, @{fold_map N}, @{split_list N};
 wenzelm parents: 
58585diff
changeset | 1005 |             Term.absfree a' (Library.foldl1 mk_union (@{map 3} mk_set ks sets zs_copy))
 | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1006 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1007 | |
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 1008 | val Suc = Term.absdummy HOLogic.natT (Term.absfree Lev_rec' | 
| 58634 
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changeset | 1009 |           (HOLogic.mk_tuple (@{map 5} mk_Suc ks ss setssAs zs zs')));
 | 
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changeset | 1010 | |
| 55415 | 1011 | val rhs = mk_rec_nat Zero Suc; | 
| 48975 
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changeset | 1012 | in | 
| 55204 
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changeset | 1013 | fold_rev (Term.absfree o Term.dest_Free) ss rhs | 
| 48975 
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changeset | 1014 | end; | 
| 
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changeset | 1015 | |
| 
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changeset | 1016 | val ((Lev_free, (_, Lev_def_free)), (lthy, lthy_old)) = | 
| 
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changeset | 1017 | lthy | 
| 61101 
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changeset | 1018 | |> Local_Theory.open_target |> snd | 
| 55204 
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changeset | 1019 | |> Local_Theory.define ((Lev_bind, NoSyn), (Lev_def_bind, Lev_spec)) | 
| 61101 
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changeset | 1020 | ||> `Local_Theory.close_target; | 
| 48975 
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changeset | 1021 | |
| 
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changeset | 1022 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 
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changeset | 1023 | |
| 67710 
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changeset | 1024 | val Lev_def = mk_unabs_def n (HOLogic.mk_obj_eq (Morphism.thm phi Lev_def_free)); | 
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changeset | 1025 | val Lev = fst (Term.dest_Const (Morphism.term phi Lev_free)); | 
| 
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changeset | 1026 | |
| 
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changeset | 1027 | fun mk_Lev ss nat i = | 
| 
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changeset | 1028 | let | 
| 
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changeset | 1029 | val Ts = map fastype_of ss; | 
| 
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changeset | 1030 | val LevT = Library.foldr (op -->) (Ts, HOLogic.natT --> | 
| 
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changeset | 1031 | HOLogic.mk_tupleT (map (fn U => domain_type U --> sum_sbd_list_setT) Ts)); | 
| 
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changeset | 1032 | in | 
| 
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changeset | 1033 | mk_nthN n (Term.list_comb (Const (Lev, LevT), ss) $ nat) i | 
| 
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changeset | 1034 | end; | 
| 
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changeset | 1035 | |
| 55416 | 1036 |     val Lev_0s = flat (mk_rec_simps n @{thm rec_nat_0_imp} [Lev_def]);
 | 
| 1037 |     val Lev_Sucs = flat (mk_rec_simps n @{thm rec_nat_Suc_imp} [Lev_def]);
 | |
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changeset | 1038 | |
| 53566 | 1039 | val rv_bind = mk_internal_b rvN; | 
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changeset | 1040 | val rv_def_bind = rpair [] (Thm.def_binding rv_bind); | 
| 
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changeset | 1041 | |
| 
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changeset | 1042 | val rv_spec = | 
| 
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changeset | 1043 | let | 
| 
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changeset | 1044 | fun mk_Cons i s b b' = | 
| 
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changeset | 1045 | let | 
| 
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changeset | 1046 | fun mk_case i' = | 
| 
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changeset | 1047 | Term.absfree k' (mk_nthN n rv_rec i' $ (mk_from_sbd s b i i' $ k)); | 
| 
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changeset | 1048 | in | 
| 55414 
eab03e9cee8a
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changeset | 1049 | Term.absfree b' (mk_case_sumN (map mk_case ks) $ sumx) | 
| 48975 
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changeset | 1050 | end; | 
| 
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changeset | 1051 | |
| 
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changeset | 1052 | val Cons = Term.absfree sumx' (Term.absdummy sum_sbd_listT (Term.absfree rv_rec' | 
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changeset | 1053 |           (HOLogic.mk_tuple (@{map 4} mk_Cons ks ss zs zs'))));
 | 
| 48975 
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changeset | 1054 | |
| 55413 
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changeset | 1055 | val rhs = mk_rec_list Nil Cons; | 
| 48975 
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changeset | 1056 | in | 
| 55204 
345ee77213b5
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changeset | 1057 | fold_rev (Term.absfree o Term.dest_Free) ss rhs | 
| 48975 
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changeset | 1058 | end; | 
| 
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changeset | 1059 | |
| 
7f79f94a432c
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changeset | 1060 | val ((rv_free, (_, rv_def_free)), (lthy, lthy_old)) = | 
| 
7f79f94a432c
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changeset | 1061 | lthy | 
| 61101 
7b915ca69af1
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changeset | 1062 | |> Local_Theory.open_target |> snd | 
| 55204 
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changeset | 1063 | |> Local_Theory.define ((rv_bind, NoSyn), (rv_def_bind, rv_spec)) | 
| 61101 
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changeset | 1064 | ||> `Local_Theory.close_target; | 
| 48975 
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changeset | 1065 | |
| 
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changeset | 1066 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 
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changeset | 1067 | |
| 67710 
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changeset | 1068 | val rv_def = mk_unabs_def n (HOLogic.mk_obj_eq (Morphism.thm phi rv_def_free)); | 
| 48975 
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changeset | 1069 | val rv = fst (Term.dest_Const (Morphism.term phi rv_free)); | 
| 
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changeset | 1070 | |
| 
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changeset | 1071 | fun mk_rv ss kl i = | 
| 
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changeset | 1072 | let | 
| 
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changeset | 1073 | val Ts = map fastype_of ss; | 
| 
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changeset | 1074 | val As = map domain_type Ts; | 
| 
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changeset | 1075 | val rvT = Library.foldr (op -->) (Ts, fastype_of kl --> | 
| 
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changeset | 1076 | HOLogic.mk_tupleT (map (fn U => U --> mk_sumTN As) As)); | 
| 
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added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 1077 | in | 
| 
7f79f94a432c
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changeset | 1078 | mk_nthN n (Term.list_comb (Const (rv, rvT), ss) $ kl) i | 
| 
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added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 1079 | end; | 
| 
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changeset | 1080 | |
| 55413 
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changeset | 1081 |     val rv_Nils = flat (mk_rec_simps n @{thm rec_list_Nil_imp} [rv_def]);
 | 
| 
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changeset | 1082 |     val rv_Conss = flat (mk_rec_simps n @{thm rec_list_Cons_imp} [rv_def]);
 | 
| 48975 
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changeset | 1083 | |
| 53566 | 1084 | val beh_binds = mk_internal_bs behN; | 
| 1085 | fun beh_bind i = nth beh_binds (i - 1); | |
| 48975 
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changeset | 1086 | val beh_def_bind = rpair [] o Thm.def_binding o beh_bind; | 
| 
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changeset | 1087 | |
| 
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changeset | 1088 | fun beh_spec i z = | 
| 
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changeset | 1089 | let | 
| 
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changeset | 1090 | fun mk_case i to_sbd_map s k k' = | 
| 
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changeset | 1091 | Term.absfree k' (mk_InN bdFTs | 
| 
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changeset | 1092 | (Term.list_comb (to_sbd_map, passive_ids @ map (mk_to_sbd s k i) ks) $ (s $ k)) i); | 
| 
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changeset | 1093 | |
| 55577 
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changeset | 1094 | val Lab = Term.absfree kl' | 
| 58634 
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changeset | 1095 |           (mk_case_sumN (@{map 5} mk_case ks to_sbd_maps ss zs zs') $ (mk_rv ss kl i $ z));
 | 
| 48975 
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changeset | 1096 | |
| 
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changeset | 1097 | val rhs = HOLogic.mk_prod (mk_UNION (HOLogic.mk_UNIV HOLogic.natT) | 
| 
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changeset | 1098 | (Term.absfree nat' (mk_Lev ss nat i $ z)), Lab); | 
| 
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 blanchet parents: diff
changeset | 1099 | in | 
| 55204 
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changeset | 1100 | fold_rev (Term.absfree o Term.dest_Free) (ss @ [z]) rhs | 
| 48975 
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changeset | 1101 | end; | 
| 
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changeset | 1102 | |
| 
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changeset | 1103 | val ((beh_frees, (_, beh_def_frees)), (lthy, lthy_old)) = | 
| 
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changeset | 1104 | lthy | 
| 61101 
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60801diff
changeset | 1105 | |> Local_Theory.open_target |> snd | 
| 58634 
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 wenzelm parents: 
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changeset | 1106 |       |> @{fold_map 2} (fn i => fn z =>
 | 
| 55204 
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 traytel parents: 
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changeset | 1107 | Local_Theory.define ((beh_bind i, NoSyn), (beh_def_bind i, beh_spec i z))) ks zs | 
| 48975 
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changeset | 1108 | |>> apsnd split_list o split_list | 
| 61101 
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 traytel parents: 
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changeset | 1109 | ||> `Local_Theory.close_target; | 
| 48975 
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changeset | 1110 | |
| 
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changeset | 1111 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 
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 blanchet parents: diff
changeset | 1112 | |
| 55204 
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 traytel parents: 
55197diff
changeset | 1113 | val beh_defs = map (fn def => | 
| 67710 
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 wenzelm parents: 
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changeset | 1114 | mk_unabs_def (n + 1) (HOLogic.mk_obj_eq (Morphism.thm phi def))) beh_def_frees; | 
| 48975 
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changeset | 1115 | val behs = map (fst o Term.dest_Const o Morphism.term phi) beh_frees; | 
| 
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changeset | 1116 | |
| 
7f79f94a432c
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changeset | 1117 | fun mk_beh ss i = | 
| 
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changeset | 1118 | let | 
| 
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changeset | 1119 | val Ts = map fastype_of ss; | 
| 
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changeset | 1120 | val behT = Library.foldr (op -->) (Ts, nth activeAs (i - 1) --> treeT); | 
| 
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changeset | 1121 | in | 
| 
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changeset | 1122 | Term.list_comb (Const (nth behs (i - 1), behT), ss) | 
| 
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changeset | 1123 | end; | 
| 
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changeset | 1124 | |
| 61334 
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changeset | 1125 | val ((((((zs, zs_copy), zs_copy2), ss), (nat, nat')), (kl, kl')), _) = | 
| 61272 
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changeset | 1126 | lthy | 
| 
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changeset | 1127 | |> mk_Frees "b" activeAs | 
| 
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changeset | 1128 | ||>> mk_Frees "b" activeAs | 
| 
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changeset | 1129 | ||>> mk_Frees "b" activeAs | 
| 
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changeset | 1130 | ||>> mk_Frees "s" sTs | 
| 67405 
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changeset | 1131 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "n") HOLogic.natT | 
| 
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changeset | 1132 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "kl") sum_sbd_listT; | 
| 61272 
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changeset | 1133 | |
| 48975 
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changeset | 1134 | val (length_Lev_thms, length_Lev'_thms) = | 
| 
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changeset | 1135 | let | 
| 
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changeset | 1136 | fun mk_conjunct i z = HOLogic.mk_imp (HOLogic.mk_mem (kl, mk_Lev ss nat i $ z), | 
| 
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 blanchet parents: diff
changeset | 1137 | HOLogic.mk_eq (mk_size kl, nat)); | 
| 
7f79f94a432c
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changeset | 1138 | val goal = list_all_free (kl :: zs) | 
| 
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changeset | 1139 | (Library.foldr1 HOLogic.mk_conj (map2 mk_conjunct ks zs)); | 
| 61334 
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changeset | 1140 | val vars = Variable.add_free_names lthy goal []; | 
| 48975 
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changeset | 1141 | |
| 59621 
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Thm.cterm_of and Thm.ctyp_of operate on local context;
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changeset | 1142 | val cts = map (SOME o Thm.cterm_of lthy) [Term.absfree nat' goal, nat]; | 
| 48975 
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changeset | 1143 | |
| 56272 
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changeset | 1144 | val length_Lev = | 
| 61334 
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changeset | 1145 | Goal.prove_sorry lthy vars [] (HOLogic.mk_Trueprop goal) | 
| 61271 | 1146 |             (fn {context = ctxt, prems = _} => mk_length_Lev_tac ctxt cts Lev_0s Lev_Sucs)
 | 
| 61334 
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changeset | 1147 | |> Thm.close_derivation; | 
| 48975 
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changeset | 1148 | |
| 
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changeset | 1149 | val length_Lev' = mk_specN (n + 1) length_Lev; | 
| 
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changeset | 1150 | val length_Levs = map (fn i => length_Lev' RS mk_conjunctN n i RS mp) ks; | 
| 
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changeset | 1151 | |
| 56272 
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changeset | 1152 | fun mk_goal i z = Logic.mk_implies | 
| 57567 | 1153 | (mk_Trueprop_mem (kl, mk_Lev ss nat i $ z), | 
| 1154 | mk_Trueprop_mem (kl, mk_Lev ss (mk_size kl) i $ z)); | |
| 48975 
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changeset | 1155 | val goals = map2 mk_goal ks zs; | 
| 
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changeset | 1156 | |
| 61334 
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changeset | 1157 | val length_Levs' = | 
| 
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changeset | 1158 | map2 (fn goal => fn length_Lev => | 
| 
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changeset | 1159 | Variable.add_free_names lthy goal [] | 
| 
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changeset | 1160 |             |> (fn vars => Goal.prove_sorry lthy vars [] goal (fn {context = ctxt, prems = _} =>
 | 
| 
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changeset | 1161 | mk_length_Lev'_tac ctxt length_Lev)) | 
| 
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changeset | 1162 | |> Thm.close_derivation) | 
| 
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changeset | 1163 | goals length_Levs; | 
| 48975 
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changeset | 1164 | in | 
| 
7f79f94a432c
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changeset | 1165 | (length_Levs, length_Levs') | 
| 
7f79f94a432c
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changeset | 1166 | end; | 
| 
7f79f94a432c
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changeset | 1167 | |
| 
7f79f94a432c
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changeset | 1168 | val rv_last_thmss = | 
| 
7f79f94a432c
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changeset | 1169 | let | 
| 
7f79f94a432c
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changeset | 1170 | fun mk_conjunct i z i' z_copy = list_exists_free [z_copy] | 
| 
7f79f94a432c
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changeset | 1171 | (HOLogic.mk_eq | 
| 
7f79f94a432c
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 blanchet parents: diff
changeset | 1172 | (mk_rv ss (mk_append (kl, HOLogic.mk_list sum_sbdT [mk_InN sbdTs k i'])) i $ z, | 
| 
7f79f94a432c
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changeset | 1173 | mk_InN activeAs z_copy i')); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1174 | val goal = list_all_free (k :: zs) | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1175 | (Library.foldr1 HOLogic.mk_conj (map2 (fn i => fn z => | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1176 | Library.foldr1 HOLogic.mk_conj | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 1177 | (map2 (mk_conjunct i z) ks zs_copy)) ks zs)); | 
| 61334 
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61272diff
changeset | 1178 | val vars = Variable.add_free_names lthy goal []; | 
| 48975 
7f79f94a432c
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 blanchet parents: diff
changeset | 1179 | |
| 59621 
291934bac95e
Thm.cterm_of and Thm.ctyp_of operate on local context;
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changeset | 1180 | val cTs = [SOME (Thm.ctyp_of lthy sum_sbdT)]; | 
| 
291934bac95e
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 wenzelm parents: 
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changeset | 1181 | val cts = map (SOME o Thm.cterm_of lthy) [Term.absfree kl' goal, kl]; | 
| 48975 
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 blanchet parents: diff
changeset | 1182 | |
| 56272 
159c07ceb18c
prove theorems with fixed variables (export afterwards)
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56179diff
changeset | 1183 | val rv_last = | 
| 61334 
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61272diff
changeset | 1184 | Goal.prove_sorry lthy vars [] (HOLogic.mk_Trueprop goal) | 
| 60728 | 1185 |             (fn {context = ctxt, prems = _} => mk_rv_last_tac ctxt cTs cts rv_Nils rv_Conss)
 | 
| 61334 
8d40ddaa427f
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61272diff
changeset | 1186 | |> Thm.close_derivation; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1187 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1188 | val rv_last' = mk_specN (n + 1) rv_last; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1189 | in | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1190 | map (fn i => map (fn i' => rv_last' RS mk_conjunctN n i RS mk_conjunctN n i') ks) ks | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1191 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1192 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1193 | val set_Lev_thmsss = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1194 | let | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1195 | fun mk_conjunct i z = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1196 | let | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1197 | fun mk_conjunct' i' sets s z' = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1198 | let | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1199 | fun mk_conjunct'' i'' set z'' = HOLogic.mk_imp | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1200 | (HOLogic.mk_mem (z'', set $ (s $ z')), | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1201 | HOLogic.mk_mem (mk_append (kl, | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1202 | HOLogic.mk_list sum_sbdT [mk_InN sbdTs (mk_to_sbd s z' i' i'' $ z'') i'']), | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1203 | mk_Lev ss (HOLogic.mk_Suc nat) i $ z)); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1204 | in | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1205 | HOLogic.mk_imp (HOLogic.mk_eq (mk_rv ss kl i $ z, mk_InN activeAs z' i'), | 
| 58634 
9f10d82e8188
added parameterized ML antiquotations @{map N}, @{fold N}, @{fold_map N}, @{split_list N};
 wenzelm parents: 
58585diff
changeset | 1206 | (Library.foldr1 HOLogic.mk_conj | 
| 
9f10d82e8188
added parameterized ML antiquotations @{map N}, @{fold N}, @{fold_map N}, @{split_list N};
 wenzelm parents: 
58585diff
changeset | 1207 |                     (@{map 3} mk_conjunct'' ks (drop m sets) zs_copy2)))
 | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1208 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1209 | in | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1210 | HOLogic.mk_imp (HOLogic.mk_mem (kl, mk_Lev ss nat i $ z), | 
| 58634 
9f10d82e8188
added parameterized ML antiquotations @{map N}, @{fold N}, @{fold_map N}, @{split_list N};
 wenzelm parents: 
58585diff
changeset | 1211 |               Library.foldr1 HOLogic.mk_conj (@{map 4} mk_conjunct' ks setssAs ss zs_copy))
 | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1212 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1213 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1214 | val goal = list_all_free (kl :: zs @ zs_copy @ zs_copy2) | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1215 | (Library.foldr1 HOLogic.mk_conj (map2 mk_conjunct ks zs)); | 
| 61334 
8d40ddaa427f
collect the names from goals in favor of fragile exports
 traytel parents: 
61272diff
changeset | 1216 | val vars = Variable.add_free_names lthy goal []; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1217 | |
| 59621 
291934bac95e
Thm.cterm_of and Thm.ctyp_of operate on local context;
 wenzelm parents: 
59580diff
changeset | 1218 | val cts = map (SOME o Thm.cterm_of lthy) [Term.absfree nat' goal, nat]; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1219 | |
| 56272 
159c07ceb18c
prove theorems with fixed variables (export afterwards)
 traytel parents: 
56179diff
changeset | 1220 | val set_Lev = | 
| 61334 
8d40ddaa427f
collect the names from goals in favor of fragile exports
 traytel parents: 
61272diff
changeset | 1221 | Goal.prove_sorry lthy vars [] (HOLogic.mk_Trueprop goal) | 
| 61271 | 1222 |             (fn {context = ctxt, prems = _} =>
 | 
| 1223 | mk_set_Lev_tac ctxt cts Lev_0s Lev_Sucs rv_Nils rv_Conss from_to_sbd_thmss) | |
| 61334 
8d40ddaa427f
collect the names from goals in favor of fragile exports
 traytel parents: 
61272diff
changeset | 1224 | |> Thm.close_derivation; | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1225 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1226 | val set_Lev' = mk_specN (3 * n + 1) set_Lev; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1227 | in | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1228 | map (fn i => map (fn i' => map (fn i'' => set_Lev' RS | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1229 | mk_conjunctN n i RS mp RS | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1230 | mk_conjunctN n i' RS mp RS | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1231 | mk_conjunctN n i'' RS mp) ks) ks) ks | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1232 | end; | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1233 | |
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1234 | val set_image_Lev_thmsss = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1235 | let | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1236 | fun mk_conjunct i z = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1237 | let | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1238 | fun mk_conjunct' i' sets = | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1239 | let | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1240 | fun mk_conjunct'' i'' set s z'' = HOLogic.mk_imp | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1241 | (HOLogic.mk_eq (mk_rv ss kl i $ z, mk_InN activeAs z'' i''), | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1242 | HOLogic.mk_mem (k, mk_image (mk_to_sbd s z'' i'' i') $ (set $ (s $ z'')))); | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1243 | in | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1244 | HOLogic.mk_imp (HOLogic.mk_mem | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1245 | (mk_append (kl, HOLogic.mk_list sum_sbdT [mk_InN sbdTs k i']), | 
| 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1246 | mk_Lev ss (HOLogic.mk_Suc nat) i $ z), | 
| 58634 
9f10d82e8188
added parameterized ML antiquotations @{map N}, @{fold N}, @{fold_map N}, @{split_list N};
 wenzelm parents: 
58585diff
changeset | 1247 |                   (Library.foldr1 HOLogic.mk_conj (@{map 4} mk_conjunct'' ks sets ss zs_copy)))
 | 
| 48975 
7f79f94a432c
added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
 blanchet parents: diff
changeset | 1248 | end; | 
| 
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changeset | 1249 | in | 
| 
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changeset | 1250 | HOLogic.mk_imp (HOLogic.mk_mem (kl, mk_Lev ss nat i $ z), | 
| 
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changeset | 1251 | Library.foldr1 HOLogic.mk_conj (map2 mk_conjunct' ks (drop m setssAs'))) | 
| 
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changeset | 1252 | end; | 
| 
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changeset | 1253 | |
| 
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changeset | 1254 | val goal = list_all_free (kl :: k :: zs @ zs_copy) | 
| 
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changeset | 1255 | (Library.foldr1 HOLogic.mk_conj (map2 mk_conjunct ks zs)); | 
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changeset | 1256 | val vars = Variable.add_free_names lthy goal []; | 
| 48975 
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changeset | 1257 | |
| 59621 
291934bac95e
Thm.cterm_of and Thm.ctyp_of operate on local context;
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changeset | 1258 | val cts = map (SOME o Thm.cterm_of lthy) [Term.absfree nat' goal, nat]; | 
| 48975 
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changeset | 1259 | |
| 56272 
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changeset | 1260 | val set_image_Lev = | 
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changeset | 1261 | Goal.prove_sorry lthy vars [] (HOLogic.mk_Trueprop goal) | 
| 61271 | 1262 |             (fn {context = ctxt, prems = _} =>
 | 
| 1263 | mk_set_image_Lev_tac ctxt cts Lev_0s Lev_Sucs rv_Nils rv_Conss | |
| 1264 | from_to_sbd_thmss to_sbd_inj_thmss) | |
| 61334 
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changeset | 1265 | |> Thm.close_derivation; | 
| 48975 
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changeset | 1266 | |
| 
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changeset | 1267 | val set_image_Lev' = mk_specN (2 * n + 2) set_image_Lev; | 
| 
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changeset | 1268 | in | 
| 
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changeset | 1269 | map (fn i => map (fn i' => map (fn i'' => set_image_Lev' RS | 
| 
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changeset | 1270 | mk_conjunctN n i RS mp RS | 
| 
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changeset | 1271 | mk_conjunctN n i'' RS mp RS | 
| 
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changeset | 1272 | mk_conjunctN n i' RS mp) ks) ks) ks | 
| 
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changeset | 1273 | end; | 
| 
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changeset | 1274 | |
| 
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changeset | 1275 | val mor_beh_thm = | 
| 61334 
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changeset | 1276 | let | 
| 
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changeset | 1277 | val goal = HOLogic.mk_Trueprop (mk_mor active_UNIVs ss carTAs strTAs (map (mk_beh ss) ks)); | 
| 
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changeset | 1278 | val vars = Variable.add_free_names lthy goal []; | 
| 
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changeset | 1279 | in | 
| 
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changeset | 1280 | Goal.prove_sorry lthy vars [] goal | 
| 
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changeset | 1281 |           (fn {context = ctxt, prems = _} => mk_mor_beh_tac ctxt m mor_def mor_cong_thm
 | 
| 
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changeset | 1282 | beh_defs carT_defs strT_defs isNode_defs | 
| 
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changeset | 1283 | to_sbd_inj_thmss from_to_sbd_thmss Lev_0s Lev_Sucs rv_Nils rv_Conss | 
| 
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changeset | 1284 | length_Lev_thms length_Lev'_thms rv_last_thmss set_Lev_thmsss | 
| 
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changeset | 1285 | set_image_Lev_thmsss set_mapss map_comp_id_thms map_cong0s) | 
| 
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changeset | 1286 | |> Thm.close_derivation | 
| 
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changeset | 1287 | end; | 
| 48975 
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changeset | 1288 | |
| 
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added new (co)datatype package + theories of ordinals and cardinals (with Dmitriy and Andrei)
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changeset | 1289 | val timer = time (timer "Behavioral morphism"); | 
| 
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changeset | 1290 | |
| 55541 
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changeset | 1291 | val lsbisAs = map (mk_lsbis carTAs strTAs) ks; | 
| 
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changeset | 1292 | |
| 
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changeset | 1293 | fun mk_str_final i = | 
| 48975 
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changeset | 1294 | mk_univ (HOLogic.mk_comp (Term.list_comb (nth final_maps (i - 1), | 
| 55541 
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changeset | 1295 | passive_ids @ map mk_proj lsbisAs), nth strTAs (i - 1))); | 
| 
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changeset | 1296 | |
| 
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changeset | 1297 | val car_finals = map2 mk_quotient carTAs lsbisAs; | 
| 
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changeset | 1298 | val str_finals = map mk_str_final ks; | 
| 48975 
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changeset | 1299 | |
| 
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changeset | 1300 | val coalgT_set_thmss = map (map (fn thm => coalgT_thm RS thm)) coalg_set_thmss; | 
| 
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changeset | 1301 | val equiv_LSBIS_thms = map (fn thm => coalgT_thm RS thm) equiv_lsbis_thms; | 
| 
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changeset | 1302 | |
| 
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changeset | 1303 | val congruent_str_final_thms = | 
| 
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changeset | 1304 | let | 
| 
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changeset | 1305 | fun mk_goal R final_map strT = | 
| 55541 
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changeset | 1306 | HOLogic.mk_Trueprop (mk_congruent R (HOLogic.mk_comp | 
| 
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changeset | 1307 | (Term.list_comb (final_map, passive_ids @ map mk_proj lsbisAs), strT))); | 
| 
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changeset | 1308 | |
| 58634 
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changeset | 1309 |         val goals = @{map 3} mk_goal lsbisAs final_maps strTAs;
 | 
| 48975 
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changeset | 1310 | in | 
| 58634 
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changeset | 1311 |         @{map 4} (fn goal => fn lsbisE => fn map_comp_id => fn map_cong0 =>
 | 
| 51551 | 1312 | Goal.prove_sorry lthy [] [] goal | 
| 60728 | 1313 |             (fn {context = ctxt, prems = _} => mk_congruent_str_final_tac ctxt m lsbisE map_comp_id
 | 
| 1314 | map_cong0 equiv_LSBIS_thms) | |
| 49109 
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changeset | 1315 | |> Thm.close_derivation) | 
| 51761 
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changeset | 1316 | goals lsbisE_thms map_comp_id_thms map_cong0s | 
| 48975 
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changeset | 1317 | end; | 
| 
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changeset | 1318 | |
| 55541 
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changeset | 1319 | val coalg_final_thm = Goal.prove_sorry lthy [] [] | 
| 
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changeset | 1320 | (HOLogic.mk_Trueprop (mk_coalg car_finals str_finals)) | 
| 60728 | 1321 |       (fn {context = ctxt, prems = _} => mk_coalg_final_tac ctxt m coalg_def
 | 
| 1322 | congruent_str_final_thms equiv_LSBIS_thms set_mapss coalgT_set_thmss) | |
| 49109 
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changeset | 1323 | |> Thm.close_derivation; | 
| 48975 
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changeset | 1324 | |
| 55541 
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changeset | 1325 | val mor_T_final_thm = Goal.prove_sorry lthy [] [] | 
| 
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changeset | 1326 | (HOLogic.mk_Trueprop (mk_mor carTAs strTAs car_finals str_finals (map mk_proj lsbisAs))) | 
| 60728 | 1327 |       (fn {context = ctxt, prems = _} => mk_mor_T_final_tac ctxt mor_def congruent_str_final_thms
 | 
| 1328 | equiv_LSBIS_thms) | |
| 49109 
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changeset | 1329 | |> Thm.close_derivation; | 
| 48975 
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changeset | 1330 | |
| 
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changeset | 1331 | val mor_final_thm = mor_comp_thm OF [mor_beh_thm, mor_T_final_thm]; | 
| 55541 
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changeset | 1332 | val in_car_final_thms = map (fn thm => thm OF [mor_final_thm, UNIV_I]) mor_image'_thms; | 
| 48975 
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changeset | 1333 | |
| 
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changeset | 1334 | val timer = time (timer "Final coalgebra"); | 
| 
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changeset | 1335 | |
| 
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changeset | 1336 | val ((T_names, (T_glob_infos, T_loc_infos)), lthy) = | 
| 
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changeset | 1337 | lthy | 
| 58634 
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changeset | 1338 |       |> @{fold_map 4} (fn b => fn mx => fn car_final => fn in_car_final =>
 | 
| 60728 | 1339 | typedef (b, params, mx) car_final NONE | 
| 1340 | (fn ctxt => EVERY' [rtac ctxt exI, rtac ctxt in_car_final] 1)) | |
| 1341 | bs mixfixes car_finals in_car_final_thms | |
| 48975 
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changeset | 1342 | |>> apsnd split_list o split_list; | 
| 
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changeset | 1343 | |
| 
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changeset | 1344 | val Ts = map (fn name => Type (name, params')) T_names; | 
| 
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changeset | 1345 | fun mk_Ts passive = map (Term.typ_subst_atomic (passiveAs ~~ passive)) Ts; | 
| 
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changeset | 1346 | val Ts' = mk_Ts passiveBs; | 
| 
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changeset | 1347 | val Rep_Ts = map2 (fn info => fn T => Const (#Rep_name info, T --> treeQT)) T_glob_infos Ts; | 
| 
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changeset | 1348 | val Abs_Ts = map2 (fn info => fn T => Const (#Abs_name info, treeQT --> T)) T_glob_infos Ts; | 
| 
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changeset | 1349 | |
| 
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changeset | 1350 | val Reps = map #Rep T_loc_infos; | 
| 
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changeset | 1351 | val Rep_injects = map #Rep_inject T_loc_infos; | 
| 
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changeset | 1352 | val Abs_inverses = map #Abs_inverse T_loc_infos; | 
| 
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changeset | 1353 | |
| 
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changeset | 1354 | val timer = time (timer "THE TYPEDEFs & Rep/Abs thms"); | 
| 
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changeset | 1355 | |
| 
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changeset | 1356 | val UNIVs = map HOLogic.mk_UNIV Ts; | 
| 
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changeset | 1357 | val FTs = mk_FTs (passiveAs @ Ts); | 
| 
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changeset | 1358 | val FTs_setss = mk_setss (passiveAs @ Ts); | 
| 
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changeset | 1359 | val map_FTs = map2 (fn Ds => mk_map_of_bnf Ds treeQTs (passiveAs @ Ts)) Dss bnfs; | 
| 49504 
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changeset | 1360 | val unfold_fTs = map2 (curry op -->) activeAs Ts; | 
| 48975 
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changeset | 1361 | |
| 56113 | 1362 | val emptys = map (fn T => HOLogic.mk_set T []) passiveAs; | 
| 1363 | val Zeros = map (fn empty => | |
| 1364 | HOLogic.mk_tuple (map (fn U => absdummy U empty) Ts)) emptys; | |
| 1365 | val hrecTs = map fastype_of Zeros; | |
| 1366 | ||
| 61272 
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changeset | 1367 | val (((zs, ss), (Jzs, Jzs')), _) = | 
| 
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changeset | 1368 | lthy | 
| 
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changeset | 1369 | |> mk_Frees "b" activeAs | 
| 
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changeset | 1370 | ||>> mk_Frees "s" sTs | 
| 
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changeset | 1371 | ||>> mk_Frees' "z" Ts; | 
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changeset | 1372 | |
| 54492 | 1373 | fun dtor_bind i = nth external_bs (i - 1) |> Binding.prefix_name (dtorN ^ "_"); | 
| 59859 | 1374 | val dtor_def_bind = rpair [] o Binding.concealed o Thm.def_binding o dtor_bind; | 
| 49501 | 1375 | |
| 55204 
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changeset | 1376 | fun dtor_spec rep str map_FT Jz Jz' = | 
| 
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changeset | 1377 | Term.absfree Jz' | 
| 
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changeset | 1378 | (Term.list_comb (map_FT, map HOLogic.id_const passiveAs @ Abs_Ts) $ (str $ (rep $ Jz))); | 
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changeset | 1379 | |
| 49501 | 1380 | val ((dtor_frees, (_, dtor_def_frees)), (lthy, lthy_old)) = | 
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changeset | 1381 | lthy | 
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changeset | 1382 | |> Local_Theory.open_target |> snd | 
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changeset | 1383 |       |> @{fold_map 6} (fn i => fn rep => fn str => fn mapx => fn Jz => fn Jz' =>
 | 
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changeset | 1384 | Local_Theory.define ((dtor_bind i, NoSyn), | 
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changeset | 1385 | (dtor_def_bind i, dtor_spec rep str mapx Jz Jz'))) | 
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changeset | 1386 | ks Rep_Ts str_finals map_FTs Jzs Jzs' | 
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changeset | 1387 | |>> apsnd split_list o split_list | 
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changeset | 1388 | ||> `Local_Theory.close_target; | 
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changeset | 1389 | |
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changeset | 1390 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 49501 | 1391 | fun mk_dtors passive = | 
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changeset | 1392 | map (Term.subst_atomic_types (map (Morphism.typ phi) params' ~~ (mk_params passive)) o | 
| 49501 | 1393 | Morphism.term phi) dtor_frees; | 
| 1394 | val dtors = mk_dtors passiveAs; | |
| 1395 | val dtor's = mk_dtors passiveBs; | |
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changeset | 1396 | val dtor_defs = | 
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changeset | 1397 | map (fn def => HOLogic.mk_obj_eq (Morphism.thm phi def) RS fun_cong) dtor_def_frees; | 
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changeset | 1398 | |
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changeset | 1399 | val coalg_final_set_thmss = map (map (fn thm => coalg_final_thm RS thm)) coalg_set_thmss; | 
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changeset | 1400 | val (mor_Rep_thm, mor_Abs_thm) = | 
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changeset | 1401 | let | 
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changeset | 1402 | val mor_Rep = | 
| 51551 | 1403 | Goal.prove_sorry lthy [] [] | 
| 49501 | 1404 | (HOLogic.mk_Trueprop (mk_mor UNIVs dtors car_finals str_finals Rep_Ts)) | 
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changeset | 1405 |             (fn {context = ctxt, prems = _} => mk_mor_Rep_tac ctxt (mor_def :: dtor_defs) Reps
 | 
| 55197 | 1406 | Abs_inverses coalg_final_set_thmss map_comp_id_thms map_cong0L_thms) | 
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changeset | 1407 | |> Thm.close_derivation; | 
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changeset | 1408 | |
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changeset | 1409 | val mor_Abs = | 
| 51551 | 1410 | Goal.prove_sorry lthy [] [] | 
| 49501 | 1411 | (HOLogic.mk_Trueprop (mk_mor car_finals str_finals UNIVs dtors Abs_Ts)) | 
| 55197 | 1412 |             (fn {context = ctxt, prems = _} => mk_mor_Abs_tac ctxt (mor_def :: dtor_defs)
 | 
| 1413 | Abs_inverses) | |
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changeset | 1414 | |> Thm.close_derivation; | 
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changeset | 1415 | in | 
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changeset | 1416 | (mor_Rep, mor_Abs) | 
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changeset | 1417 | end; | 
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changeset | 1418 | |
| 49501 | 1419 | val timer = time (timer "dtor definitions & thms"); | 
| 1420 | ||
| 54492 | 1421 | fun unfold_bind i = nth external_bs (i - 1) |> Binding.prefix_name (dtor_unfoldN ^ "_"); | 
| 59859 | 1422 | val unfold_def_bind = rpair [] o Binding.concealed o Thm.def_binding o unfold_bind; | 
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changeset | 1423 | |
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changeset | 1424 | fun unfold_spec abs f z = fold_rev (Term.absfree o Term.dest_Free) (ss @ [z]) (abs $ (f $ z)); | 
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changeset | 1425 | |
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changeset | 1426 | val ((unfold_frees, (_, unfold_def_frees)), (lthy, lthy_old)) = | 
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changeset | 1427 | lthy | 
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changeset | 1428 | |> Local_Theory.open_target |> snd | 
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changeset | 1429 |       |> @{fold_map 4} (fn i => fn abs => fn f => fn z =>
 | 
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changeset | 1430 | Local_Theory.define ((unfold_bind i, NoSyn), (unfold_def_bind i, unfold_spec abs f z))) | 
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changeset | 1431 | ks Abs_Ts (map (fn i => HOLogic.mk_comp | 
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changeset | 1432 | (mk_proj (nth lsbisAs (i - 1)), mk_beh ss i)) ks) zs | 
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changeset | 1433 | |>> apsnd split_list o split_list | 
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changeset | 1434 | ||> `Local_Theory.close_target; | 
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changeset | 1435 | |
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changeset | 1436 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
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changeset | 1437 | val unfolds = map (Morphism.term phi) unfold_frees; | 
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changeset | 1438 | val unfold_names = map (fst o dest_Const) unfolds; | 
| 52731 | 1439 | fun mk_unfolds passives actives = | 
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changeset | 1440 |       @{map 3} (fn name => fn T => fn active =>
 | 
| 52731 | 1441 | Const (name, Library.foldr (op -->) | 
| 52923 | 1442 | (map2 (curry op -->) actives (mk_FTs (passives @ actives)), active --> T))) | 
| 52731 | 1443 | unfold_names (mk_Ts passives) actives; | 
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changeset | 1444 | fun mk_unfold Ts ss i = Term.list_comb (Const (nth unfold_names (i - 1), Library.foldr (op -->) | 
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changeset | 1445 | (map fastype_of ss, domain_type (fastype_of (nth ss (i - 1))) --> nth Ts (i - 1))), ss); | 
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changeset | 1446 | val unfold_defs = map (fn def => | 
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changeset | 1447 | mk_unabs_def (n + 1) (HOLogic.mk_obj_eq (Morphism.thm phi def))) unfold_def_frees; | 
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changeset | 1448 | |
| 63314 | 1449 | val (((ss, TRs), unfold_fs), _) = | 
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changeset | 1450 | lthy | 
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changeset | 1451 | |> mk_Frees "s" sTs | 
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changeset | 1452 | ||>> mk_Frees "r" (map (mk_relT o `I) Ts) | 
| 63314 | 1453 | ||>> mk_Frees "f" unfold_fTs; | 
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changeset | 1454 | |
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changeset | 1455 | val mor_unfold_thm = | 
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changeset | 1456 | let | 
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changeset | 1457 | val Abs_inverses' = map2 (curry op RS) in_car_final_thms Abs_inverses; | 
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changeset | 1458 | val morEs' = map (fn thm => (thm OF [mor_final_thm, UNIV_I]) RS sym) morE_thms; | 
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changeset | 1459 | val goal = HOLogic.mk_Trueprop (mk_mor active_UNIVs ss UNIVs dtors (map (mk_unfold Ts ss) ks)); | 
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changeset | 1460 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 1461 | in | 
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changeset | 1462 | Goal.prove_sorry lthy vars [] goal | 
| 60728 | 1463 |           (fn {context = ctxt, prems = _} => mk_mor_unfold_tac ctxt m mor_UNIV_thm dtor_defs
 | 
| 1464 | unfold_defs Abs_inverses' morEs' map_comp_id_thms map_cong0s) | |
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changeset | 1465 | |> Thm.close_derivation | 
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changeset | 1466 | end; | 
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changeset | 1467 | val dtor_unfold_thms = map (fn thm => (thm OF [mor_unfold_thm, UNIV_I]) RS sym) morE_thms; | 
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changeset | 1468 | |
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changeset | 1469 | val (raw_coind_thms, raw_coind_thm) = | 
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changeset | 1470 | let | 
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changeset | 1471 | val prem = HOLogic.mk_Trueprop (mk_sbis UNIVs dtors TRs); | 
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changeset | 1472 | val concl = HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | 
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changeset | 1473 | (map2 (fn R => fn T => mk_leq R (Id_const T)) TRs Ts)); | 
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changeset | 1474 | val vars = fold (Variable.add_free_names lthy) [prem, concl] []; | 
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changeset | 1475 | in | 
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changeset | 1476 | `split_conj_thm (Goal.prove_sorry lthy vars [] (Logic.mk_implies (prem, concl)) | 
| 60728 | 1477 |           (fn {context = ctxt, prems = _} => mk_raw_coind_tac ctxt bis_def bis_cong_thm bis_O_thm
 | 
| 1478 | bis_converse_thm bis_Gr_thm tcoalg_thm coalgT_thm mor_T_final_thm sbis_lsbis_thm | |
| 1479 | lsbis_incl_thms incl_lsbis_thms equiv_LSBIS_thms mor_Rep_thm Rep_injects) | |
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changeset | 1480 | |> Thm.close_derivation) | 
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changeset | 1481 | end; | 
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changeset | 1482 | |
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changeset | 1483 | val (unfold_unique_mor_thms, unfold_unique_mor_thm) = | 
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changeset | 1484 | let | 
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changeset | 1485 | val prem = HOLogic.mk_Trueprop (mk_mor active_UNIVs ss UNIVs dtors unfold_fs); | 
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changeset | 1486 | fun mk_fun_eq f i = HOLogic.mk_eq (f, mk_unfold Ts ss i); | 
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changeset | 1487 | val unique = HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | 
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changeset | 1488 | (map2 mk_fun_eq unfold_fs ks)); | 
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changeset | 1489 | val vars = fold (Variable.add_free_names lthy) [prem, unique] []; | 
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changeset | 1490 | |
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changeset | 1491 | val bis_thm = tcoalg_thm RSN (2, tcoalg_thm RS bis_image2_thm); | 
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changeset | 1492 | val mor_thm = mor_comp_thm OF [mor_final_thm, mor_Abs_thm]; | 
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changeset | 1493 | |
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changeset | 1494 | val unique_mor = Goal.prove_sorry lthy vars [] (Logic.mk_implies (prem, unique)) | 
| 60728 | 1495 |           (fn {context = ctxt, prems = _} => mk_unfold_unique_mor_tac ctxt raw_coind_thms
 | 
| 1496 | bis_thm mor_thm unfold_defs) | |
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changeset | 1497 | |> Thm.close_derivation; | 
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changeset | 1498 | in | 
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changeset | 1499 | `split_conj_thm unique_mor | 
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changeset | 1500 | end; | 
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changeset | 1501 | |
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changeset | 1502 | val (dtor_unfold_unique_thms, dtor_unfold_unique_thm) = `split_conj_thm (split_conj_prems n | 
| 52904 | 1503 | (mor_UNIV_thm RS iffD2 RS unfold_unique_mor_thm)); | 
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changeset | 1504 | |
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changeset | 1505 | val unfold_dtor_thms = map (fn thm => mor_id_thm RS thm RS sym) unfold_unique_mor_thms; | 
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changeset | 1506 | |
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changeset | 1507 | val unfold_o_dtor_thms = | 
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changeset | 1508 | let | 
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changeset | 1509 | val mor = mor_comp_thm OF [mor_str_thm, mor_unfold_thm]; | 
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changeset | 1510 | in | 
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changeset | 1511 | map2 (fn unique => fn unfold_ctor => | 
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changeset | 1512 | trans OF [mor RS unique, unfold_ctor]) unfold_unique_mor_thms unfold_dtor_thms | 
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changeset | 1513 | end; | 
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changeset | 1514 | |
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changeset | 1515 | val timer = time (timer "unfold definitions & thms"); | 
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changeset | 1516 | |
| 49501 | 1517 | val map_dtors = map2 (fn Ds => fn bnf => | 
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changeset | 1518 | Term.list_comb (mk_map_of_bnf Ds (passiveAs @ Ts) (passiveAs @ FTs) bnf, | 
| 49501 | 1519 | map HOLogic.id_const passiveAs @ dtors)) Dss bnfs; | 
| 1520 | ||
| 54492 | 1521 | fun ctor_bind i = nth external_bs (i - 1) |> Binding.prefix_name (ctorN ^ "_"); | 
| 59859 | 1522 | val ctor_def_bind = rpair [] o Binding.concealed o Thm.def_binding o ctor_bind; | 
| 49501 | 1523 | |
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changeset | 1524 | fun ctor_spec i = mk_unfold Ts map_dtors i; | 
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changeset | 1525 | |
| 49501 | 1526 | val ((ctor_frees, (_, ctor_def_frees)), (lthy, lthy_old)) = | 
| 49311 | 1527 | lthy | 
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changeset | 1528 | |> Local_Theory.open_target |> snd | 
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changeset | 1529 | |> fold_map (fn i => | 
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changeset | 1530 | Local_Theory.define ((ctor_bind i, NoSyn), (ctor_def_bind i, ctor_spec i))) ks | 
| 49311 | 1531 | |>> apsnd split_list o split_list | 
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changeset | 1532 | ||> `Local_Theory.close_target; | 
| 49311 | 1533 | |
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changeset | 1534 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 49501 | 1535 | fun mk_ctors params = | 
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changeset | 1536 | map (Term.subst_atomic_types (map (Morphism.typ phi) params' ~~ params) o Morphism.term phi) | 
| 49501 | 1537 | ctor_frees; | 
| 1538 | val ctors = mk_ctors params'; | |
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changeset | 1539 | val ctor_defs = map (fn def => HOLogic.mk_obj_eq (Morphism.thm phi def)) ctor_def_frees; | 
| 49501 | 1540 | |
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changeset | 1541 | val ctor_o_dtor_thms = map2 (Local_Defs.fold lthy o single) ctor_defs unfold_o_dtor_thms; | 
| 49501 | 1542 | |
| 1543 | val dtor_o_ctor_thms = | |
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changeset | 1544 | let | 
| 49501 | 1545 | fun mk_goal dtor ctor FT = | 
| 1546 | mk_Trueprop_eq (HOLogic.mk_comp (dtor, ctor), HOLogic.id_const FT); | |
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changeset | 1547 |         val goals = @{map 3} mk_goal dtors ctors FTs;
 | 
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changeset | 1548 | in | 
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changeset | 1549 |         @{map 5} (fn goal => fn ctor_def => fn unfold => fn map_comp_id => fn map_cong0L =>
 | 
| 51551 | 1550 | Goal.prove_sorry lthy [] [] goal | 
| 55197 | 1551 |             (fn {context = ctxt, prems = _} => mk_dtor_o_ctor_tac ctxt ctor_def unfold map_comp_id
 | 
| 1552 | map_cong0L unfold_o_dtor_thms) | |
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changeset | 1553 | |> Thm.close_derivation) | 
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changeset | 1554 | goals ctor_defs dtor_unfold_thms map_comp_id_thms map_cong0L_thms | 
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changeset | 1555 | end; | 
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changeset | 1556 | |
| 49501 | 1557 |     val dtor_ctor_thms = map (fn thm => thm RS @{thm pointfree_idE}) dtor_o_ctor_thms;
 | 
| 1558 |     val ctor_dtor_thms = map (fn thm => thm RS @{thm pointfree_idE}) ctor_o_dtor_thms;
 | |
| 1559 | ||
| 1560 | val bij_dtor_thms = | |
| 1561 |       map2 (fn thm1 => fn thm2 => @{thm o_bij} OF [thm1, thm2]) ctor_o_dtor_thms dtor_o_ctor_thms;
 | |
| 1562 |     val inj_dtor_thms = map (fn thm => thm RS @{thm bij_is_inj}) bij_dtor_thms;
 | |
| 1563 |     val surj_dtor_thms = map (fn thm => thm RS @{thm bij_is_surj}) bij_dtor_thms;
 | |
| 1564 |     val dtor_nchotomy_thms = map (fn thm => thm RS @{thm surjD}) surj_dtor_thms;
 | |
| 1565 |     val dtor_inject_thms = map (fn thm => thm RS @{thm inj_eq}) inj_dtor_thms;
 | |
| 1566 | val dtor_exhaust_thms = map (fn thm => thm RS exE) dtor_nchotomy_thms; | |
| 1567 | ||
| 1568 | val bij_ctor_thms = | |
| 1569 |       map2 (fn thm1 => fn thm2 => @{thm o_bij} OF [thm1, thm2]) dtor_o_ctor_thms ctor_o_dtor_thms;
 | |
| 1570 |     val inj_ctor_thms = map (fn thm => thm RS @{thm bij_is_inj}) bij_ctor_thms;
 | |
| 1571 |     val surj_ctor_thms = map (fn thm => thm RS @{thm bij_is_surj}) bij_ctor_thms;
 | |
| 1572 |     val ctor_nchotomy_thms = map (fn thm => thm RS @{thm surjD}) surj_ctor_thms;
 | |
| 1573 |     val ctor_inject_thms = map (fn thm => thm RS @{thm inj_eq}) inj_ctor_thms;
 | |
| 1574 | val ctor_exhaust_thms = map (fn thm => thm RS exE) ctor_nchotomy_thms; | |
| 1575 | ||
| 1576 | val timer = time (timer "ctor definitions & thms"); | |
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changeset | 1577 | |
| 63314 | 1578 | val (((((Jzs, Jzs_copy), Jzs1), Jzs2), phis), _) = | 
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changeset | 1579 | lthy | 
| 63314 | 1580 | |> mk_Frees "z" Ts | 
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changeset | 1581 | ||>> mk_Frees "z'" Ts | 
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changeset | 1582 | ||>> mk_Frees "z1" Ts | 
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changeset | 1583 | ||>> mk_Frees "z2" Ts | 
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changeset | 1584 | ||>> mk_Frees "P" (map2 mk_pred2T Ts Ts); | 
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changeset | 1585 | |
| 55644 | 1586 | val (coinduct_params, dtor_coinduct_thm) = | 
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changeset | 1587 | let | 
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changeset | 1588 | val rels = map (Term.subst_atomic_types ((activeAs ~~ Ts) @ (activeBs ~~ Ts))) relsAsBs; | 
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changeset | 1589 | |
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changeset | 1590 | fun mk_concl phi z1 z2 = HOLogic.mk_imp (phi $ z1 $ z2, HOLogic.mk_eq (z1, z2)); | 
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changeset | 1591 | val concl = HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | 
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changeset | 1592 |           (@{map 3} mk_concl phis Jzs1 Jzs2));
 | 
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changeset | 1593 | |
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changeset | 1594 | fun mk_rel_prem phi dtor rel Jz Jz_copy = | 
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changeset | 1595 | let | 
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changeset | 1596 | val concl = Term.list_comb (rel, passive_eqs @ phis) $ | 
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changeset | 1597 | (dtor $ Jz) $ (dtor $ Jz_copy); | 
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changeset | 1598 | in | 
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changeset | 1599 | HOLogic.mk_Trueprop | 
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changeset | 1600 | (list_all_free [Jz, Jz_copy] (HOLogic.mk_imp (phi $ Jz $ Jz_copy, concl))) | 
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changeset | 1601 | end; | 
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changeset | 1602 | |
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changeset | 1603 |         val rel_prems = @{map 5} mk_rel_prem phis dtors rels Jzs Jzs_copy;
 | 
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changeset | 1604 | val dtor_coinduct_goal = Logic.list_implies (rel_prems, concl); | 
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changeset | 1605 | |
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changeset | 1606 | val dtor_coinduct = | 
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changeset | 1607 | Variable.add_free_names lthy dtor_coinduct_goal [] | 
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changeset | 1608 | |> (fn vars => Goal.prove_sorry lthy vars [] dtor_coinduct_goal | 
| 60728 | 1609 |             (fn {context = ctxt, prems = _} => mk_dtor_coinduct_tac ctxt m raw_coind_thm bis_rel_thm
 | 
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changeset | 1610 | rel_congs)) | 
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changeset | 1611 | |> Thm.close_derivation; | 
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changeset | 1612 | in | 
| 55644 | 1613 | (rev (Term.add_tfrees dtor_coinduct_goal []), dtor_coinduct) | 
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changeset | 1614 | end; | 
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changeset | 1615 | |
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changeset | 1616 | val timer = time (timer "coinduction"); | 
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changeset | 1617 | |
| 53270 | 1618 | fun mk_dtor_map_DEADID_thm dtor_inject map_id0 = | 
| 1619 | trans OF [iffD2 OF [dtor_inject, id_apply], map_id0 RS sym]; | |
| 51925 | 1620 | |
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changeset | 1621 | fun mk_dtor_map_unique_DEADID_thm () = | 
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changeset | 1622 | let | 
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changeset | 1623 | val (funs, algs) = | 
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changeset | 1624 | HOLogic.conjuncts (HOLogic.dest_Trueprop (Thm.concl_of dtor_unfold_unique_thm)) | 
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changeset | 1625 | |> map_split HOLogic.dest_eq | 
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changeset | 1626 | ||> snd o strip_comb o hd | 
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changeset | 1627 |           |> @{apply 2} (map (fst o dest_Var));
 | 
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changeset | 1628 | fun mk_fun_insts T ix = Thm.cterm_of lthy (Var (ix, T --> T)); | 
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changeset | 1629 | val theta = | 
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changeset | 1630 |           (funs ~~ @{map 2} mk_fun_insts Ts funs) @ (algs ~~ map (Thm.cterm_of lthy) dtors);
 | 
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changeset | 1631 | val dtor_unfold_dtors = (dtor_unfold_unique_thm OF | 
| 67399 | 1632 |           map (fn thm => mk_trans (thm RS @{thm arg_cong2[of _ _ _ _ "(\<circ>)", OF _ refl]})
 | 
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changeset | 1633 |             @{thm trans[OF id_o o_id[symmetric]]}) map_id0s)
 | 
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changeset | 1634 | |> split_conj_thm |> map mk_sym; | 
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changeset | 1635 | in | 
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changeset | 1636 | infer_instantiate lthy theta dtor_unfold_unique_thm | 
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changeset | 1637 | |> Morphism.thm (Local_Theory.target_morphism lthy) | 
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changeset | 1638 | |> unfold_thms lthy dtor_unfold_dtors | 
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changeset | 1639 | |> (fn thm => thm OF replicate n sym) | 
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changeset | 1640 | end; | 
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changeset | 1641 | (* | 
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changeset | 1642 | thm trans[OF x.dtor_unfold_unique x.dtor_unfold_unique[symmetric, | 
| 67399 | 1643 | OF trans[OF arg_cong2[of _ _ _ _ "(o)", OF pre_x.map_id0 refl] trans[OF id_o o_id[symmetric]]]], | 
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changeset | 1644 | OF sym] | 
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changeset | 1645 | *) | 
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changeset | 1646 | |
| 51925 | 1647 | fun mk_dtor_Jrel_DEADID_thm dtor_inject bnf = | 
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changeset | 1648 |       trans OF [rel_eq_of_bnf bnf RS @{thm predicate2_eqD}, dtor_inject] RS sym;
 | 
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changeset | 1649 | |
| 51925 | 1650 | val JphiTs = map2 mk_pred2T passiveAs passiveBs; | 
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changeset | 1651 | val Jpsi1Ts = map2 mk_pred2T passiveAs passiveCs; | 
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changeset | 1652 | val Jpsi2Ts = map2 mk_pred2T passiveCs passiveBs; | 
| 51925 | 1653 | val prodTsTs' = map2 (curry HOLogic.mk_prodT) Ts Ts'; | 
| 1654 | val fstsTsTs' = map fst_const prodTsTs'; | |
| 1655 | val sndsTsTs' = map snd_const prodTsTs'; | |
| 52731 | 1656 | val activephiTs = map2 mk_pred2T activeAs activeBs; | 
| 51925 | 1657 | val activeJphiTs = map2 mk_pred2T Ts Ts'; | 
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changeset | 1658 | |
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changeset | 1659 | val rels = map2 (fn Ds => mk_rel_of_bnf Ds (passiveAs @ Ts) (passiveBs @ Ts')) Dss bnfs; | 
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changeset | 1660 | |
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changeset | 1661 | val ((((Jzs, Jz's), Jphis), activeJphis), _) = | 
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changeset | 1662 | lthy | 
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changeset | 1663 | |> mk_Frees "z" Ts | 
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changeset | 1664 | ||>> mk_Frees "y" Ts' | 
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changeset | 1665 | ||>> mk_Frees "R" JphiTs | 
| 51925 | 1666 | ||>> mk_Frees "JR" activeJphiTs; | 
| 1667 | ||
| 57567 | 1668 | fun mk_Jrel_DEADID_coinduct_thm () = | 
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changeset | 1669 | mk_xtor_rel_co_induct_thm Greatest_FP rels activeJphis (map HOLogic.eq_const Ts) Jphis | 
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changeset | 1670 |         Jzs Jz's dtors dtor's (fn {context = ctxt, prems} =>
 | 
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changeset | 1671 |           (unfold_thms_tac ctxt @{thms le_fun_def le_bool_def all_simps(1,2)[symmetric]} THEN
 | 
| 60728 | 1672 | REPEAT_DETERM (rtac ctxt allI 1) THEN rtac ctxt (dtor_coinduct_thm OF prems) 1)) lthy; | 
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changeset | 1673 | |
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changeset | 1674 | (*register new codatatypes as BNFs*) | 
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changeset | 1675 | val (timer, Jbnfs, (dtor_Jmap_o_thms, dtor_Jmap_thms), dtor_Jmap_unique_thm, dtor_Jset_thmss', | 
| 57700 | 1676 | dtor_Jrel_thms, Jrel_coinduct_thm, Jbnf_notes, dtor_Jset_induct_thms, lthy) = | 
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changeset | 1677 | if m = 0 then | 
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changeset | 1678 | (timer, replicate n DEADID_bnf, | 
| 64413 | 1679 | map_split (`(mk_pointfree2 lthy)) (map2 mk_dtor_map_DEADID_thm dtor_inject_thms map_ids), | 
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changeset | 1680 | mk_dtor_map_unique_DEADID_thm (), | 
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changeset | 1681 | replicate n [], | 
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changeset | 1682 | map2 mk_dtor_Jrel_DEADID_thm dtor_inject_thms bnfs, | 
| 57700 | 1683 | mk_Jrel_DEADID_coinduct_thm (), [], [], lthy) | 
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changeset | 1684 | else let | 
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changeset | 1685 | val fTs = map2 (curry op -->) passiveAs passiveBs; | 
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changeset | 1686 | val gTs = map2 (curry op -->) passiveBs passiveCs; | 
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changeset | 1687 | val uTs = map2 (curry op -->) Ts Ts'; | 
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changeset | 1688 | val (((((nat, nat'), (Jzs, Jzs')), (hrecs, hrecs')), (fs, fs')), _) = | 
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changeset | 1689 | lthy | 
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changeset | 1690 | |> yield_singleton (apfst (op ~~) oo mk_Frees' "n") HOLogic.natT | 
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changeset | 1691 | ||>> mk_Frees' "z" Ts | 
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changeset | 1692 | ||>> mk_Frees' "rec" hrecTs | 
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changeset | 1693 | ||>> mk_Frees' "f" fTs; | 
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changeset | 1694 | |
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changeset | 1695 | val map_FTFT's = map2 (fn Ds => | 
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changeset | 1696 | mk_map_of_bnf Ds (passiveAs @ Ts) (passiveBs @ Ts')) Dss bnfs; | 
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changeset | 1697 | |
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changeset | 1698 | fun mk_maps ATs BTs Ts mk_T = | 
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changeset | 1699 | map2 (fn Ds => mk_map_of_bnf Ds (ATs @ Ts) (BTs @ map mk_T Ts)) Dss bnfs; | 
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changeset | 1700 | fun mk_Fmap mk_const fs Ts Fmap = Term.list_comb (Fmap, fs @ map mk_const Ts); | 
| 49501 | 1701 | fun mk_map mk_const mk_T Ts fs Ts' dtors mk_maps = | 
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changeset | 1702 | mk_unfold Ts' (map2 (fn dtor => fn Fmap => | 
| 49501 | 1703 | HOLogic.mk_comp (mk_Fmap mk_const fs Ts Fmap, dtor)) dtors (mk_maps Ts mk_T)); | 
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changeset | 1704 | val mk_map_id = mk_map HOLogic.id_const I; | 
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changeset | 1705 | val mk_mapsAB = mk_maps passiveAs passiveBs; | 
| 49501 | 1706 | val fs_maps = map (mk_map_id Ts fs Ts' dtors mk_mapsAB) ks; | 
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changeset | 1707 | |
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changeset | 1708 | val set_bss = | 
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changeset | 1709 | map (flat o map2 (fn B => fn b => | 
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changeset | 1710 | if member (op =) resDs (TFree B) then [] else [b]) resBs) set_bss0; | 
| 57567 | 1711 | |
| 56113 | 1712 | fun col_bind j = mk_internal_b (colN ^ (if m = 1 then "" else string_of_int j)); | 
| 1713 | val col_def_bind = rpair [] o Thm.def_binding o col_bind; | |
| 57567 | 1714 | |
| 56113 | 1715 | fun col_spec j Zero hrec hrec' = | 
| 1716 | let | |
| 56179 | 1717 | fun mk_Suc dtor sets z z' = | 
| 56113 | 1718 | let | 
| 56179 | 1719 | val (set, sets) = apfst (fn xs => nth xs (j - 1)) (chop m sets); | 
| 56113 | 1720 | fun mk_UN set k = mk_UNION (set $ (dtor $ z)) (mk_nthN n hrec k); | 
| 1721 | in | |
| 1722 | Term.absfree z' | |
| 1723 | (mk_union (set $ (dtor $ z), Library.foldl1 mk_union (map2 mk_UN sets ks))) | |
| 1724 | end; | |
| 57567 | 1725 | |
| 56113 | 1726 | val Suc = Term.absdummy HOLogic.natT (Term.absfree hrec' | 
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changeset | 1727 |               (HOLogic.mk_tuple (@{map 4} mk_Suc dtors FTs_setss Jzs Jzs')));
 | 
| 56113 | 1728 | in | 
| 1729 | mk_rec_nat Zero Suc | |
| 1730 | end; | |
| 57567 | 1731 | |
| 56113 | 1732 | val ((col_frees, (_, col_def_frees)), (lthy, lthy_old)) = | 
| 1733 | lthy | |
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changeset | 1734 | |> Local_Theory.open_target |> snd | 
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changeset | 1735 |           |> @{fold_map 4} (fn j => fn Zero => fn hrec => fn hrec' => Local_Theory.define
 | 
| 56113 | 1736 | ((col_bind j, NoSyn), (col_def_bind j, col_spec j Zero hrec hrec'))) | 
| 1737 | ls Zeros hrecs hrecs' | |
| 1738 | |>> apsnd split_list o split_list | |
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changeset | 1739 | ||> `Local_Theory.close_target; | 
| 57567 | 1740 | |
| 56113 | 1741 | val phi = Proof_Context.export_morphism lthy_old lthy; | 
| 57567 | 1742 | |
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changeset | 1743 | val col_defs = map (fn def => HOLogic.mk_obj_eq (Morphism.thm phi def)) col_def_frees; | 
| 56113 | 1744 | val cols = map (fst o Term.dest_Const o Morphism.term phi) col_frees; | 
| 57567 | 1745 | |
| 56113 | 1746 | fun mk_col Ts nat i j T = | 
| 1747 | let | |
| 1748 | val hrecT = HOLogic.mk_tupleT (map (fn U => U --> HOLogic.mk_setT T) Ts) | |
| 1749 | val colT = HOLogic.natT --> hrecT; | |
| 1750 | in | |
| 1751 | mk_nthN n (Term.list_comb (Const (nth cols (j - 1), colT), [nat])) i | |
| 1752 | end; | |
| 57567 | 1753 | |
| 56113 | 1754 |         val col_0ss = mk_rec_simps n @{thm rec_nat_0_imp} col_defs;
 | 
| 1755 |         val col_Sucss = mk_rec_simps n @{thm rec_nat_Suc_imp} col_defs;
 | |
| 1756 | val col_0ss' = transpose col_0ss; | |
| 1757 | val col_Sucss' = transpose col_Sucss; | |
| 57567 | 1758 | |
| 56179 | 1759 | fun mk_set Ts i j T = | 
| 56113 | 1760 | Abs (Name.uu, nth Ts (i - 1), mk_UNION (HOLogic.mk_UNIV HOLogic.natT) | 
| 1761 | (Term.absfree nat' (mk_col Ts nat i j T $ Bound 1))); | |
| 1762 | ||
| 56179 | 1763 | val setss = map (fn i => map2 (mk_set Ts i) ls passiveAs) ks; | 
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changeset | 1764 | |
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changeset | 1765 | val (Jbnf_consts, lthy) = | 
| 62324 | 1766 |           @{fold_map 8} (fn b => fn map_b => fn rel_b => fn pred_b => fn set_bs => fn mapx =>
 | 
| 1767 | fn sets => fn T => fn lthy => | |
| 56179 | 1768 | define_bnf_consts Hardly_Inline (user_policy Note_Some lthy) false (SOME deads) | 
| 62324 | 1769 | map_b rel_b pred_b set_bs | 
| 1770 | (((((((b, T), fold_rev Term.absfree fs' mapx), sets), sbd), | |
| 69593 | 1771 | [Const (\<^const_name>\<open>undefined\<close>, T)]), NONE), NONE) lthy) | 
| 62324 | 1772 | bs map_bs rel_bs pred_bs set_bss fs_maps setss Ts lthy; | 
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changeset | 1773 | |
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changeset | 1774 |         val (_, Jconsts, Jconst_defs, mk_Jconsts) = @{split_list 4} Jbnf_consts;
 | 
| 62324 | 1775 |         val (_, Jsetss, Jbds_Ds, _, _, _) = @{split_list 6} Jconsts;
 | 
| 1776 | val (Jmap_defs, Jset_defss, Jbd_defs, _, Jrel_defs, Jpred_defs) = | |
| 1777 |           @{split_list 6} Jconst_defs;
 | |
| 1778 | val (mk_Jmaps_Ds, mk_Jt_Ds, _, mk_Jrels_Ds, mk_Jpreds_Ds, _, _) = | |
| 1779 |           @{split_list 7} mk_Jconsts;
 | |
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changeset | 1780 | |
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changeset | 1781 | val Jrel_unabs_defs = map (fn def => mk_unabs_def m (HOLogic.mk_obj_eq def)) Jrel_defs; | 
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changeset | 1782 | val Jpred_unabs_defs = map (fn def => mk_unabs_def m (HOLogic.mk_obj_eq def)) Jpred_defs; | 
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changeset | 1783 | val Jset_defs = flat Jset_defss; | 
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changeset | 1784 | |
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changeset | 1785 | fun mk_Jmaps As Bs = map (fn mk => mk deads As Bs) mk_Jmaps_Ds; | 
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changeset | 1786 | fun mk_Jsetss As = map2 (fn mk => fn Jsets => map (mk deads As) Jsets) mk_Jt_Ds Jsetss; | 
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changeset | 1787 | val Jbds = map2 (fn mk => mk deads passiveAs) mk_Jt_Ds Jbds_Ds; | 
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changeset | 1788 | fun mk_Jrels As Bs = map (fn mk => mk deads As Bs) mk_Jrels_Ds; | 
| 62324 | 1789 | fun mk_Jpreds As = map (fn mk => mk deads As) mk_Jpreds_Ds; | 
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changeset | 1790 | |
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changeset | 1791 | val Jmaps = mk_Jmaps passiveAs passiveBs; | 
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changeset | 1792 | val (Jsetss_by_range, Jsetss_by_bnf) = `transpose (mk_Jsetss passiveAs); | 
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changeset | 1793 | |
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changeset | 1794 | val timer = time (timer "bnf constants for the new datatypes"); | 
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changeset | 1795 | |
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changeset | 1796 | val ((((((((((((((((((((ys, ys'), (nat, nat')), (Jzs, Jzs')), Jz's), Jzs_copy), Jz's_copy), | 
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changeset | 1797 | dtor_set_induct_phiss), Jphis), Jpsi1s), Jpsi2s), activeJphis), fs), fs_copy), gs), us), | 
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changeset | 1798 | (Jys, Jys')), (Jys_copy, Jys'_copy)), (ys_copy, ys'_copy)), Kss), names_lthy) = | 
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changeset | 1799 | lthy | 
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changeset | 1800 | |> mk_Frees' "y" passiveAs | 
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changeset | 1801 | ||>> yield_singleton (apfst (op ~~) oo mk_Frees' "n") HOLogic.natT | 
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changeset | 1802 | ||>> mk_Frees' "z" Ts | 
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changeset | 1803 | ||>> mk_Frees "y" Ts' | 
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changeset | 1804 | ||>> mk_Frees "z'" Ts | 
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changeset | 1805 | ||>> mk_Frees "y'" Ts' | 
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changeset | 1806 | ||>> mk_Freess "P" (map (fn A => map (mk_pred2T A) Ts) passiveAs) | 
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changeset | 1807 | ||>> mk_Frees "R" JphiTs | 
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changeset | 1808 | ||>> mk_Frees "R" Jpsi1Ts | 
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changeset | 1809 | ||>> mk_Frees "Q" Jpsi2Ts | 
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changeset | 1810 | ||>> mk_Frees "JR" activeJphiTs | 
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changeset | 1811 | ||>> mk_Frees "f" fTs | 
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changeset | 1812 | ||>> mk_Frees "f" fTs | 
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changeset | 1813 | ||>> mk_Frees "g" gTs | 
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changeset | 1814 | ||>> mk_Frees "u" uTs | 
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changeset | 1815 | ||>> mk_Frees' "b" Ts' | 
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changeset | 1816 | ||>> mk_Frees' "b" Ts' | 
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changeset | 1817 | ||>> mk_Frees' "y" passiveAs | 
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changeset | 1818 | ||>> mk_Freess "K" (map (fn AT => map (fn T => T --> AT) Ts) ATs); | 
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changeset | 1819 | |
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changeset | 1820 | val fs_Jmaps = map (fn m => Term.list_comb (m, fs)) Jmaps; | 
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changeset | 1821 | val fs_copy_Jmaps = map (fn m => Term.list_comb (m, fs_copy)) Jmaps; | 
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changeset | 1822 | val gs_Jmaps = map (fn m => Term.list_comb (m, gs)) (mk_Jmaps passiveBs passiveCs); | 
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changeset | 1823 | val fgs_Jmaps = map (fn m => Term.list_comb (m, map2 (curry HOLogic.mk_comp) gs fs)) | 
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changeset | 1824 | (mk_Jmaps passiveAs passiveCs); | 
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changeset | 1825 | |
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changeset | 1826 | val (dtor_Jmap_thms, Jmap_thms) = | 
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changeset | 1827 | let | 
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changeset | 1828 | fun mk_goal fs_Jmap map dtor dtor' = mk_Trueprop_eq (HOLogic.mk_comp (dtor', fs_Jmap), | 
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changeset | 1829 | HOLogic.mk_comp (Term.list_comb (map, fs @ fs_Jmaps), dtor)); | 
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changeset | 1830 |             val goals = @{map 4} mk_goal fs_Jmaps map_FTFT's dtors dtor's;
 | 
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changeset | 1831 | val maps = | 
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changeset | 1832 |               @{map 5} (fn goal => fn unfold => fn map_comp => fn map_cong0 => fn map_arg_cong =>
 | 
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changeset | 1833 | Variable.add_free_names lthy goal [] | 
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changeset | 1834 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
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changeset | 1835 |                   (fn {context = ctxt, prems = _} => unfold_thms_tac ctxt Jmap_defs THEN
 | 
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changeset | 1836 | mk_map_tac ctxt m n map_arg_cong unfold map_comp map_cong0)) | 
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changeset | 1837 | |> Thm.close_derivation) | 
| 55602 | 1838 | goals dtor_unfold_thms map_comps map_cong0s map_arg_cong_thms; | 
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changeset | 1839 | in | 
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changeset | 1840 |             map_split (fn thm => (thm RS @{thm comp_eq_dest}, thm)) maps
 | 
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changeset | 1841 | end; | 
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changeset | 1842 | |
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changeset | 1843 | val (dtor_Jmap_unique_thms, dtor_Jmap_unique_thm) = | 
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changeset | 1844 | let | 
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changeset | 1845 | fun mk_prem u map dtor dtor' = | 
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changeset | 1846 | mk_Trueprop_eq (HOLogic.mk_comp (dtor', u), | 
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changeset | 1847 | HOLogic.mk_comp (Term.list_comb (map, fs @ us), dtor)); | 
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changeset | 1848 |             val prems = @{map 4} mk_prem us map_FTFT's dtors dtor's;
 | 
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changeset | 1849 | val goal = | 
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changeset | 1850 | HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | 
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changeset | 1851 | (map2 (curry HOLogic.mk_eq) us fs_Jmaps)); | 
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changeset | 1852 | val vars = fold (Variable.add_free_names lthy) (goal :: prems) []; | 
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changeset | 1853 | in | 
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changeset | 1854 | `split_conj_thm (Goal.prove_sorry lthy vars [] (Logic.list_implies (prems, goal)) | 
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changeset | 1855 |               (fn {context = ctxt, prems = _} => unfold_thms_tac ctxt Jmap_defs THEN
 | 
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changeset | 1856 | mk_dtor_map_unique_tac ctxt dtor_unfold_unique_thm sym_map_comps) | 
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changeset | 1857 | |> Thm.close_derivation) | 
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changeset | 1858 | end; | 
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changeset | 1859 | |
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changeset | 1860 | val Jmap_comp0_thms = | 
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changeset | 1861 | let | 
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changeset | 1862 | val goal = HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | 
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changeset | 1863 |               (@{map 3} (fn fmap => fn gmap => fn fgmap =>
 | 
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changeset | 1864 | HOLogic.mk_eq (HOLogic.mk_comp (gmap, fmap), fgmap)) | 
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changeset | 1865 | fs_Jmaps gs_Jmaps fgs_Jmaps)) | 
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changeset | 1866 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 1867 | in | 
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changeset | 1868 | split_conj_thm (Goal.prove_sorry lthy vars [] goal | 
| 60728 | 1869 |               (fn {context = ctxt, prems = _} =>
 | 
| 1870 | mk_map_comp0_tac ctxt Jmap_thms map_comp0s dtor_Jmap_unique_thm) | |
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changeset | 1871 | |> Thm.close_derivation) | 
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changeset | 1872 | end; | 
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changeset | 1873 | |
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changeset | 1874 | val timer = time (timer "map functions for the new codatatypes"); | 
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changeset | 1875 | |
| 56179 | 1876 | val Jset_minimal_thms = | 
| 1877 | let | |
| 1878 | fun mk_passive_prem set dtor x K = | |
| 1879 | Logic.all x (HOLogic.mk_Trueprop (mk_leq (set $ (dtor $ x)) (K $ x))); | |
| 57567 | 1880 | |
| 56179 | 1881 | fun mk_active_prem dtor x1 K1 set x2 K2 = | 
| 1882 | fold_rev Logic.all [x1, x2] | |
| 57567 | 1883 | (Logic.mk_implies (mk_Trueprop_mem (x2, set $ (dtor $ x1)), | 
| 56179 | 1884 | HOLogic.mk_Trueprop (mk_leq (K2 $ x2) (K1 $ x1)))); | 
| 57567 | 1885 | |
| 56179 | 1886 | val premss = map2 (fn j => fn Ks => | 
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changeset | 1887 |               @{map 4} mk_passive_prem (map (fn xs => nth xs (j - 1)) FTs_setss) dtors Jzs Ks @
 | 
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changeset | 1888 |                 flat (@{map 4} (fn sets => fn s => fn x1 => fn K1 =>
 | 
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changeset | 1889 |                   @{map 3} (mk_active_prem s x1 K1) (drop m sets) Jzs_copy Ks) FTs_setss dtors Jzs Ks))
 | 
| 56179 | 1890 | ls Kss; | 
| 57567 | 1891 | |
| 56179 | 1892 | val col_minimal_thms = | 
| 1893 | let | |
| 1894 | fun mk_conjunct j T i K x = mk_leq (mk_col Ts nat i j T $ x) (K $ x); | |
| 1895 | fun mk_concl j T Ks = list_all_free Jzs | |
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changeset | 1896 |                   (Library.foldr1 HOLogic.mk_conj (@{map 3} (mk_conjunct j T) ks Ks Jzs));
 | 
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changeset | 1897 |                 val concls = @{map 3} mk_concl ls passiveAs Kss;
 | 
| 57567 | 1898 | |
| 56179 | 1899 | val goals = map2 (fn prems => fn concl => | 
| 1900 | Logic.list_implies (prems, HOLogic.mk_Trueprop concl)) premss concls | |
| 57567 | 1901 | |
| 56179 | 1902 | val ctss = | 
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changeset | 1903 | map (fn phi => map (SOME o Thm.cterm_of lthy) [Term.absfree nat' phi, nat]) concls; | 
| 56179 | 1904 | in | 
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changeset | 1905 |                 @{map 4} (fn goal => fn cts => fn col_0s => fn col_Sucs =>
 | 
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changeset | 1906 | Variable.add_free_names lthy goal [] | 
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changeset | 1907 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
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changeset | 1908 |                     (fn {context = ctxt, prems = _} => mk_col_minimal_tac ctxt m cts col_0s
 | 
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changeset | 1909 | col_Sucs)) | 
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changeset | 1910 | |> Thm.close_derivation) | 
| 56179 | 1911 | goals ctss col_0ss' col_Sucss' | 
| 1912 | end; | |
| 57567 | 1913 | |
| 56179 | 1914 | fun mk_conjunct set K x = mk_leq (set $ x) (K $ x); | 
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changeset | 1915 |             fun mk_concl sets Ks = Library.foldr1 HOLogic.mk_conj (@{map 3} mk_conjunct sets Ks Jzs);
 | 
| 56179 | 1916 | val concls = map2 mk_concl Jsetss_by_range Kss; | 
| 57567 | 1917 | |
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changeset | 1918 | val goals = map2 (fn prems => fn concl => | 
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changeset | 1919 | Logic.list_implies (prems, HOLogic.mk_Trueprop concl)) premss concls; | 
| 56179 | 1920 | in | 
| 1921 | map2 (fn goal => fn col_minimal => | |
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changeset | 1922 | Variable.add_free_names lthy goal [] | 
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changeset | 1923 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 56179 | 1924 |                 (fn {context = ctxt, prems = _} => unfold_thms_tac ctxt Jset_defs THEN
 | 
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changeset | 1925 | mk_Jset_minimal_tac ctxt n col_minimal)) | 
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changeset | 1926 | |> Thm.close_derivation) | 
| 56179 | 1927 | goals col_minimal_thms | 
| 1928 | end; | |
| 1929 | ||
| 1930 | val (dtor_Jset_incl_thmss, dtor_set_Jset_incl_thmsss) = | |
| 1931 | let | |
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changeset | 1932 | fun mk_set_incl_Jset dtor x set Jset = | 
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changeset | 1933 | HOLogic.mk_Trueprop (mk_leq (set $ (dtor $ x)) (Jset $ x)); | 
| 57567 | 1934 | |
| 56179 | 1935 | fun mk_set_Jset_incl_Jset dtor x y set Jset1 Jset2 = | 
| 57567 | 1936 | Logic.mk_implies (mk_Trueprop_mem (x, set $ (dtor $ y)), | 
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changeset | 1937 | HOLogic.mk_Trueprop (mk_leq (Jset1 $ x) (Jset2 $ y))); | 
| 57567 | 1938 | |
| 56179 | 1939 | val set_incl_Jset_goalss = | 
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changeset | 1940 |               @{map 4} (fn dtor => fn x => fn sets => fn Jsets =>
 | 
| 56179 | 1941 | map2 (mk_set_incl_Jset dtor x) (take m sets) Jsets) | 
| 1942 | dtors Jzs FTs_setss Jsetss_by_bnf; | |
| 57567 | 1943 | |
| 56179 | 1944 | (*x(k) : F(i)set(m+k) (dtor(i) y(i)) ==> J(k)set(j) x(k) <= J(i)set(j) y(i)*) | 
| 1945 | val set_Jset_incl_Jset_goalsss = | |
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changeset | 1946 |               @{map 4} (fn dtori => fn yi => fn sets => fn Jsetsi =>
 | 
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changeset | 1947 |                 @{map 3} (fn xk => fn set => fn Jsetsk =>
 | 
| 56179 | 1948 | map2 (mk_set_Jset_incl_Jset dtori xk yi set) Jsetsk Jsetsi) | 
| 1949 | Jzs_copy (drop m sets) Jsetss_by_bnf) | |
| 1950 | dtors Jzs FTs_setss Jsetss_by_bnf; | |
| 1951 | in | |
| 1952 | (map2 (fn goals => fn rec_Sucs => | |
| 1953 | map2 (fn goal => fn rec_Suc => | |
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changeset | 1954 | Variable.add_free_names lthy goal [] | 
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changeset | 1955 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 56179 | 1956 |                   (fn {context = ctxt, prems = _} => unfold_thms_tac ctxt Jset_defs THEN
 | 
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changeset | 1957 | mk_set_incl_Jset_tac ctxt rec_Suc)) | 
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changeset | 1958 | |> Thm.close_derivation) | 
| 56179 | 1959 | goals rec_Sucs) | 
| 1960 | set_incl_Jset_goalss col_Sucss, | |
| 1961 | map2 (fn goalss => fn rec_Sucs => | |
| 1962 | map2 (fn k => fn goals => | |
| 1963 | map2 (fn goal => fn rec_Suc => | |
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changeset | 1964 | Variable.add_free_names lthy goal [] | 
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changeset | 1965 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 56179 | 1966 |                     (fn {context = ctxt, prems = _} => unfold_thms_tac ctxt Jset_defs THEN
 | 
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changeset | 1967 | mk_set_Jset_incl_Jset_tac ctxt n rec_Suc k)) | 
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changeset | 1968 | |> Thm.close_derivation) | 
| 56179 | 1969 | goals rec_Sucs) | 
| 1970 | ks goalss) | |
| 1971 | set_Jset_incl_Jset_goalsss col_Sucss) | |
| 1972 | end; | |
| 57567 | 1973 | |
| 56179 | 1974 | val set_incl_Jset_thmss' = transpose dtor_Jset_incl_thmss; | 
| 1975 | val set_Jset_incl_Jset_thmsss' = transpose (map transpose dtor_set_Jset_incl_thmsss); | |
| 1976 |         val set_Jset_thmss = map (map (fn thm => thm RS @{thm set_mp})) dtor_Jset_incl_thmss;
 | |
| 1977 |         val set_Jset_Jset_thmsss = map (map (map (fn thm => thm RS @{thm set_mp})))
 | |
| 1978 | dtor_set_Jset_incl_thmsss; | |
| 1979 | val set_Jset_thmss' = transpose set_Jset_thmss; | |
| 1980 | val set_Jset_Jset_thmsss' = transpose (map transpose set_Jset_Jset_thmsss); | |
| 57567 | 1981 | |
| 56179 | 1982 | val dtor_Jset_induct_thms = | 
| 1983 | let | |
| 1984 | val incls = | |
| 1985 |               maps (map (fn thm => thm RS @{thm subset_Collect_iff})) dtor_Jset_incl_thmss @
 | |
| 1986 |                 @{thms subset_Collect_iff[OF subset_refl]};
 | |
| 1987 | ||
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changeset | 1988 | val cTs = map (SOME o Thm.ctyp_of lthy) params'; | 
| 56179 | 1989 | fun mk_induct_tinst phis jsets y y' = | 
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changeset | 1990 |               @{map 4} (fn phi => fn jset => fn Jz => fn Jz' =>
 | 
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changeset | 1991 | SOME (Thm.cterm_of lthy (Term.absfree Jz' (HOLogic.mk_Collect (fst y', snd y', | 
| 56179 | 1992 | HOLogic.mk_conj (HOLogic.mk_mem (y, jset $ Jz), phi $ y $ Jz)))))) | 
| 1993 | phis jsets Jzs Jzs'; | |
| 1994 | in | |
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changeset | 1995 |             @{map 6} (fn set_minimal => fn set_set_inclss => fn jsets => fn y => fn y' => fn phis =>
 | 
| 56179 | 1996 | ((set_minimal | 
| 60801 | 1997 | |> Thm.instantiate' cTs (mk_induct_tinst phis jsets y y') | 
| 56179 | 1998 | |> unfold_thms lthy incls) OF | 
| 1999 | (replicate n ballI @ | |
| 2000 |                   maps (map (fn thm => thm RS @{thm subset_CollectI})) set_set_inclss))
 | |
| 2001 | |> singleton (Proof_Context.export names_lthy lthy) | |
| 60728 | 2002 | |> rule_by_tactic lthy (ALLGOALS (TRY o etac lthy asm_rl))) | 
| 56179 | 2003 | Jset_minimal_thms set_Jset_incl_Jset_thmsss' Jsetss_by_range ys ys' dtor_set_induct_phiss | 
| 2004 | end; | |
| 2005 | ||
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changeset | 2006 | val (dtor_Jset_thmss', dtor_Jset_thmss) = | 
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changeset | 2007 | let | 
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changeset | 2008 | fun mk_simp_goal relate pas_set act_sets sets dtor z set = | 
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changeset | 2009 | relate (set $ z, mk_union (pas_set $ (dtor $ z), | 
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changeset | 2010 | Library.foldl1 mk_union | 
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changeset | 2011 | (map2 (fn X => mk_UNION (X $ (dtor $ z))) act_sets sets))); | 
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changeset | 2012 | fun mk_goals eq = | 
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changeset | 2013 | map2 (fn i => fn sets => | 
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changeset | 2014 |                 @{map 4} (fn Fsets =>
 | 
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changeset | 2015 | mk_simp_goal eq (nth Fsets (i - 1)) (drop m Fsets) sets) | 
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changeset | 2016 | FTs_setss dtors Jzs sets) | 
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changeset | 2017 | ls Jsetss_by_range; | 
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changeset | 2018 | |
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changeset | 2019 | val le_goals = map (HOLogic.mk_Trueprop o Library.foldr1 HOLogic.mk_conj) | 
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changeset | 2020 | (mk_goals (uncurry mk_leq)); | 
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changeset | 2021 | val set_le_thmss = map split_conj_thm | 
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changeset | 2022 |               (@{map 4} (fn goal => fn Jset_minimal => fn set_Jsets => fn set_Jset_Jsetss =>
 | 
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changeset | 2023 | Variable.add_free_names lthy goal [] | 
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changeset | 2024 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 60728 | 2025 |                   (fn {context = ctxt, prems = _} =>
 | 
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changeset | 2026 | mk_set_le_tac ctxt n Jset_minimal set_Jsets set_Jset_Jsetss)) | 
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changeset | 2027 | |> Thm.close_derivation) | 
| 56179 | 2028 | le_goals Jset_minimal_thms set_Jset_thmss' set_Jset_Jset_thmsss'); | 
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changeset | 2029 | |
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changeset | 2030 | val ge_goalss = map (map HOLogic.mk_Trueprop) (mk_goals (uncurry mk_leq o swap)); | 
| 57567 | 2031 | val set_ge_thmss = | 
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changeset | 2032 |               @{map 3} (@{map 3} (fn goal => fn set_incl_Jset => fn set_Jset_incl_Jsets =>
 | 
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changeset | 2033 | Variable.add_free_names lthy goal [] | 
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changeset | 2034 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 60728 | 2035 |                   (fn {context = ctxt, prems = _} =>
 | 
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changeset | 2036 | mk_set_ge_tac ctxt n set_incl_Jset set_Jset_incl_Jsets)) | 
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changeset | 2037 | |> Thm.close_derivation)) | 
| 56179 | 2038 | ge_goalss set_incl_Jset_thmss' set_Jset_incl_Jset_thmsss' | 
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changeset | 2039 | in | 
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changeset | 2040 | map2 (map2 (fn le => fn ge => equalityI OF [le, ge])) set_le_thmss set_ge_thmss | 
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changeset | 2041 | |> `transpose | 
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changeset | 2042 | end; | 
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changeset | 2043 | |
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changeset | 2044 | val timer = time (timer "set functions for the new codatatypes"); | 
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changeset | 2045 | |
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changeset | 2046 | val colss = map2 (fn j => fn T => | 
| 56113 | 2047 | map (fn i => mk_col Ts nat i j T) ks) ls passiveAs; | 
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changeset | 2048 | val colss' = map2 (fn j => fn T => | 
| 56113 | 2049 | map (fn i => mk_col Ts' nat i j T) ks) ls passiveBs; | 
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changeset | 2050 | |
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changeset | 2051 | val col_natural_thmss = | 
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changeset | 2052 | let | 
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changeset | 2053 | fun mk_col_natural f map z col col' = | 
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changeset | 2054 | HOLogic.mk_eq (mk_image f $ (col $ z), col' $ (map $ z)); | 
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changeset | 2055 | |
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changeset | 2056 | fun mk_goal f cols cols' = list_all_free Jzs (Library.foldr1 HOLogic.mk_conj | 
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changeset | 2057 |               (@{map 4} (mk_col_natural f) fs_Jmaps Jzs cols cols'));
 | 
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changeset | 2058 | |
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changeset | 2059 |             val goals = @{map 3} mk_goal fs colss colss';
 | 
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changeset | 2060 | |
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changeset | 2061 | val ctss = | 
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changeset | 2062 | map (fn phi => map (SOME o Thm.cterm_of lthy) [Term.absfree nat' phi, nat]) goals; | 
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changeset | 2063 | |
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changeset | 2064 | val thms = | 
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changeset | 2065 |               @{map 4} (fn goal => fn cts => fn rec_0s => fn rec_Sucs =>
 | 
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changeset | 2066 | Variable.add_free_names lthy goal [] | 
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changeset | 2067 | |> (fn vars => Goal.prove_sorry lthy vars [] (HOLogic.mk_Trueprop goal) | 
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changeset | 2068 |                   (fn {context = ctxt, prems = _} => mk_col_natural_tac ctxt cts rec_0s rec_Sucs
 | 
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changeset | 2069 | dtor_Jmap_thms set_mapss)) | 
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changeset | 2070 | |> Thm.close_derivation) | 
| 56113 | 2071 | goals ctss col_0ss' col_Sucss'; | 
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changeset | 2072 | in | 
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changeset | 2073 | map (split_conj_thm o mk_specN n) thms | 
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changeset | 2074 | end; | 
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changeset | 2075 | |
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changeset | 2076 | val col_bd_thmss = | 
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changeset | 2077 | let | 
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changeset | 2078 | fun mk_col_bd z col bd = mk_ordLeq (mk_card_of (col $ z)) bd; | 
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changeset | 2079 | |
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changeset | 2080 | fun mk_goal bds cols = list_all_free Jzs (Library.foldr1 HOLogic.mk_conj | 
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changeset | 2081 |               (@{map 3} mk_col_bd Jzs cols bds));
 | 
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changeset | 2082 | |
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changeset | 2083 | val goals = map (mk_goal Jbds) colss; | 
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changeset | 2084 | |
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changeset | 2085 | val ctss = map (fn phi => map (SOME o Thm.cterm_of lthy) [Term.absfree nat' phi, nat]) | 
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changeset | 2086 | (map (mk_goal (replicate n sbd)) colss); | 
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changeset | 2087 | |
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changeset | 2088 | val thms = | 
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changeset | 2089 |               @{map 5} (fn j => fn goal => fn cts => fn rec_0s => fn rec_Sucs =>
 | 
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changeset | 2090 | Variable.add_free_names lthy goal [] | 
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changeset | 2091 | |> (fn vars => Goal.prove_sorry lthy vars [] (HOLogic.mk_Trueprop goal) | 
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changeset | 2092 |                   (fn {context = ctxt, prems = _} => unfold_thms_tac ctxt Jbd_defs THEN
 | 
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changeset | 2093 | mk_col_bd_tac ctxt m j cts rec_0s rec_Sucs sbd_Card_order sbd_Cinfinite set_sbdss)) | 
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changeset | 2094 | |> Thm.close_derivation) | 
| 56113 | 2095 | ls goals ctss col_0ss' col_Sucss'; | 
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changeset | 2096 | in | 
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changeset | 2097 | map (split_conj_thm o mk_specN n) thms | 
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changeset | 2098 | end; | 
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changeset | 2099 | |
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changeset | 2100 | val map_cong0_thms = | 
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changeset | 2101 | let | 
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changeset | 2102 | val cTs = map (SOME o Thm.ctyp_of lthy o | 
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changeset | 2103 | Term.typ_subst_atomic (passiveAs ~~ passiveBs) o TFree) coinduct_params; | 
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changeset | 2104 | |
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changeset | 2105 | fun mk_prem z set f g y y' = | 
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changeset | 2106 | mk_Ball (set $ z) (Term.absfree y' (HOLogic.mk_eq (f $ y, g $ y))); | 
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changeset | 2107 | |
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changeset | 2108 | fun mk_prems sets z = | 
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changeset | 2109 |               Library.foldr1 HOLogic.mk_conj (@{map 5} (mk_prem z) sets fs fs_copy ys ys')
 | 
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changeset | 2110 | |
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changeset | 2111 | fun mk_map_cong0 sets z fmap gmap = | 
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changeset | 2112 | HOLogic.mk_imp (mk_prems sets z, HOLogic.mk_eq (fmap $ z, gmap $ z)); | 
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changeset | 2113 | |
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changeset | 2114 | fun mk_coind_body sets (x, T) z fmap gmap y y_copy = | 
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changeset | 2115 | HOLogic.mk_conj | 
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changeset | 2116 | (HOLogic.mk_mem (z, HOLogic.mk_Collect (x, T, mk_prems sets z)), | 
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changeset | 2117 | HOLogic.mk_conj (HOLogic.mk_eq (y, fmap $ z), | 
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changeset | 2118 | HOLogic.mk_eq (y_copy, gmap $ z))) | 
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changeset | 2119 | |
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changeset | 2120 | fun mk_cphi sets (z' as (x, T)) z fmap gmap y' y y'_copy y_copy = | 
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changeset | 2121 | HOLogic.mk_exists (x, T, mk_coind_body sets z' z fmap gmap y y_copy) | 
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changeset | 2122 | |> Term.absfree y'_copy | 
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changeset | 2123 | |> Term.absfree y' | 
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changeset | 2124 | |> Thm.cterm_of lthy; | 
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changeset | 2125 | |
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changeset | 2126 |             val cphis = @{map 9} mk_cphi
 | 
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changeset | 2127 | Jsetss_by_bnf Jzs' Jzs fs_Jmaps fs_copy_Jmaps Jys' Jys Jys'_copy Jys_copy; | 
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changeset | 2128 | |
| 60801 | 2129 | val coinduct = Thm.instantiate' cTs (map SOME cphis) dtor_coinduct_thm; | 
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changeset | 2130 | |
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changeset | 2131 | val goal = | 
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changeset | 2132 | HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | 
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changeset | 2133 |                 (@{map 4} mk_map_cong0 Jsetss_by_bnf Jzs fs_Jmaps fs_copy_Jmaps));
 | 
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changeset | 2134 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 2135 | |
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changeset | 2136 | val thm = | 
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changeset | 2137 | Goal.prove_sorry lthy vars [] goal | 
| 60728 | 2138 |                 (fn {context = ctxt, prems = _} => mk_mcong_tac ctxt m (rtac ctxt coinduct) map_comps
 | 
| 2139 | dtor_Jmap_thms map_cong0s | |
| 2140 | set_mapss set_Jset_thmss set_Jset_Jset_thmsss in_rels) | |
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changeset | 2141 | |> Thm.close_derivation; | 
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changeset | 2142 | in | 
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changeset | 2143 | split_conj_thm thm | 
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changeset | 2144 | end; | 
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changeset | 2145 | |
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changeset | 2146 |         val in_Jrels = map (fn def => trans OF [def, @{thm OO_Grp_alt}] RS @{thm predicate2_eqD})
 | 
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changeset | 2147 | Jrel_unabs_defs; | 
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changeset | 2148 | |
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changeset | 2149 | val Jrels = mk_Jrels passiveAs passiveBs; | 
| 62324 | 2150 | val Jpreds = mk_Jpreds passiveAs; | 
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changeset | 2151 | val Jrelphis = map (fn rel => Term.list_comb (rel, Jphis)) Jrels; | 
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changeset | 2152 | val relphis = map (fn rel => Term.list_comb (rel, Jphis @ Jrelphis)) rels; | 
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changeset | 2153 | val Jrelpsi1s = map (fn rel => Term.list_comb (rel, Jpsi1s)) (mk_Jrels passiveAs passiveCs); | 
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changeset | 2154 | val Jrelpsi2s = map (fn rel => Term.list_comb (rel, Jpsi2s)) (mk_Jrels passiveCs passiveBs); | 
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changeset | 2155 | val Jrelpsi12s = map (fn rel => | 
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changeset | 2156 | Term.list_comb (rel, map2 (curry mk_rel_compp) Jpsi1s Jpsi2s)) Jrels; | 
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changeset | 2157 | |
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changeset | 2158 | val dtor_Jrel_thms = | 
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changeset | 2159 | let | 
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changeset | 2160 | fun mk_goal Jz Jz' dtor dtor' Jrelphi relphi = | 
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changeset | 2161 | mk_Trueprop_eq (Jrelphi $ Jz $ Jz', relphi $ (dtor $ Jz) $ (dtor' $ Jz')); | 
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changeset | 2162 |             val goals = @{map 6} mk_goal Jzs Jz's dtors dtor's Jrelphis relphis;
 | 
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changeset | 2163 | in | 
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changeset | 2164 |             @{map 12} (fn i => fn goal => fn in_rel => fn map_comp0 => fn map_cong0 =>
 | 
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changeset | 2165 | fn dtor_map => fn dtor_sets => fn dtor_inject => fn dtor_ctor => | 
| 53289 | 2166 | fn set_map0s => fn dtor_set_incls => fn dtor_set_set_inclss => | 
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changeset | 2167 | Variable.add_free_names lthy goal [] | 
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changeset | 2168 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 61271 | 2169 |                 (fn {context = ctxt, prems = _} =>
 | 
| 2170 | mk_dtor_rel_tac ctxt in_Jrels i in_rel map_comp0 map_cong0 dtor_map dtor_sets | |
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changeset | 2171 | dtor_inject dtor_ctor set_map0s dtor_set_incls dtor_set_set_inclss)) | 
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changeset | 2172 | |> Thm.close_derivation) | 
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changeset | 2173 | ks goals in_rels map_comps map_cong0s dtor_Jmap_thms dtor_Jset_thmss' | 
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changeset | 2174 | dtor_inject_thms dtor_ctor_thms set_mapss dtor_Jset_incl_thmss | 
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changeset | 2175 | dtor_set_Jset_incl_thmsss | 
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changeset | 2176 | end; | 
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changeset | 2177 | |
| 51925 | 2178 | val passiveABs = map2 (curry HOLogic.mk_prodT) passiveAs passiveBs; | 
| 2179 | val zip_ranTs = passiveABs @ prodTsTs'; | |
| 2180 | val allJphis = Jphis @ activeJphis; | |
| 2181 | val zipFTs = mk_FTs zip_ranTs; | |
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changeset | 2182 |       val zipTs = @{map 3} (fn T => fn T' => fn FT => T --> T' --> FT) Ts Ts' zipFTs;
 | 
| 51925 | 2183 | val zip_zTs = mk_Ts passiveABs; | 
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changeset | 2184 | val (((zips, (abs, abs')), (zip_zs, zip_zs')), _) = | 
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changeset | 2185 | names_lthy | 
| 51925 | 2186 | |> mk_Frees "zip" zipTs | 
| 2187 | ||>> mk_Frees' "ab" passiveABs | |
| 55602 | 2188 | ||>> mk_Frees' "z" zip_zTs; | 
| 51925 | 2189 | |
| 2190 | val Iphi_sets = | |
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changeset | 2191 | map2 (fn phi => fn T => HOLogic.Collect_const T $ HOLogic.mk_case_prod phi) allJphis zip_ranTs; | 
| 51925 | 2192 | val in_phis = map2 (mk_in Iphi_sets) (mk_setss zip_ranTs) zipFTs; | 
| 2193 | val fstABs = map fst_const passiveABs; | |
| 2194 | val all_fsts = fstABs @ fstsTsTs'; | |
| 2195 | val map_all_fsts = map2 (fn Ds => fn bnf => | |
| 2196 | Term.list_comb (mk_map_of_bnf Ds zip_ranTs (passiveAs @ Ts) bnf, all_fsts)) Dss bnfs; | |
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changeset | 2197 | val Jmap_fsts = map2 (fn map => fn T => if m = 0 then HOLogic.id_const T | 
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changeset | 2198 | else Term.list_comb (map, fstABs)) (mk_Jmaps passiveABs passiveAs) Ts; | 
| 51925 | 2199 | |
| 2200 | val sndABs = map snd_const passiveABs; | |
| 2201 | val all_snds = sndABs @ sndsTsTs'; | |
| 2202 | val map_all_snds = map2 (fn Ds => fn bnf => | |
| 2203 | Term.list_comb (mk_map_of_bnf Ds zip_ranTs (passiveBs @ Ts') bnf, all_snds)) Dss bnfs; | |
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changeset | 2204 | val Jmap_snds = map2 (fn map => fn T => if m = 0 then HOLogic.id_const T | 
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changeset | 2205 | else Term.list_comb (map, sndABs)) (mk_Jmaps passiveABs passiveBs) Ts; | 
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changeset | 2206 | val zip_unfolds = map (mk_unfold zip_zTs (map HOLogic.mk_case_prod zips)) ks; | 
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changeset | 2207 | val zip_setss = mk_Jsetss passiveABs |> transpose; | 
| 51925 | 2208 | |
| 55197 | 2209 |       fun Jrel_coinduct_tac {context = ctxt, prems = CIHs} =
 | 
| 51925 | 2210 | let | 
| 2211 | fun mk_helper_prem phi in_phi zip x y map map' dtor dtor' = | |
| 2212 | let | |
| 2213 | val zipxy = zip $ x $ y; | |
| 2214 | in | |
| 2215 | HOLogic.mk_Trueprop (list_all_free [x, y] | |
| 2216 | (HOLogic.mk_imp (phi $ x $ y, HOLogic.mk_conj (HOLogic.mk_mem (zipxy, in_phi), | |
| 2217 | HOLogic.mk_conj (HOLogic.mk_eq (map $ zipxy, dtor $ x), | |
| 2218 | HOLogic.mk_eq (map' $ zipxy, dtor' $ y)))))) | |
| 2219 | end; | |
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changeset | 2220 |           val helper_prems = @{map 9} mk_helper_prem
 | 
| 51925 | 2221 | activeJphis in_phis zips Jzs Jz's map_all_fsts map_all_snds dtors dtor's; | 
| 55602 | 2222 | fun mk_helper_coind_phi fst phi x alt y map zip_unfold = | 
| 2223 | list_exists_free [if fst then y else x] (HOLogic.mk_conj (phi $ x $ y, | |
| 2224 | HOLogic.mk_eq (alt, map $ (zip_unfold $ HOLogic.mk_prod (x, y))))) | |
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changeset | 2225 |           val coind1_phis = @{map 6} (mk_helper_coind_phi true)
 | 
| 55602 | 2226 | activeJphis Jzs Jzs_copy Jz's Jmap_fsts zip_unfolds; | 
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changeset | 2227 |           val coind2_phis = @{map 6} (mk_helper_coind_phi false)
 | 
| 55602 | 2228 | activeJphis Jzs Jz's_copy Jz's Jmap_snds zip_unfolds; | 
| 2229 | fun mk_cts zs z's phis = | |
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changeset | 2230 |             @{map 3} (fn z => fn z' => fn phi =>
 | 
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changeset | 2231 | SOME (Thm.cterm_of lthy (fold_rev (Term.absfree o Term.dest_Free) [z', z] phi))) | 
| 55602 | 2232 | zs z's phis @ | 
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changeset | 2233 | map (SOME o Thm.cterm_of lthy) (splice z's zs); | 
| 55602 | 2234 | val cts1 = mk_cts Jzs Jzs_copy coind1_phis; | 
| 2235 | val cts2 = mk_cts Jz's Jz's_copy coind2_phis; | |
| 2236 | ||
| 2237 | fun mk_helper_coind_concl z alt coind_phi = | |
| 2238 | HOLogic.mk_imp (coind_phi, HOLogic.mk_eq (alt, z)); | |
| 51925 | 2239 | val helper_coind1_concl = | 
| 2240 | HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | |
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changeset | 2241 |               (@{map 3} mk_helper_coind_concl Jzs Jzs_copy coind1_phis));
 | 
| 51925 | 2242 | val helper_coind2_concl = | 
| 2243 | HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj | |
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changeset | 2244 |               (@{map 3} mk_helper_coind_concl Jz's Jz's_copy coind2_phis));
 | 
| 55602 | 2245 | |
| 55644 | 2246 | fun mk_helper_coind_thms fst concl cts = | 
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changeset | 2247 | let | 
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changeset | 2248 | val vars = fold (Variable.add_free_names lthy) (concl :: helper_prems) []; | 
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changeset | 2249 | in | 
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changeset | 2250 | Goal.prove_sorry lthy vars [] (Logic.list_implies (helper_prems, concl)) | 
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changeset | 2251 |                 (fn {context = ctxt, prems = _} =>
 | 
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changeset | 2252 | mk_rel_coinduct_coind_tac ctxt fst m | 
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changeset | 2253 | (infer_instantiate' ctxt cts dtor_coinduct_thm) ks map_comps map_cong0s | 
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changeset | 2254 | map_arg_cong_thms set_mapss dtor_unfold_thms dtor_Jmap_thms in_rels) | 
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changeset | 2255 | |> Thm.close_derivation | 
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changeset | 2256 | |> split_conj_thm | 
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changeset | 2257 | end; | 
| 55602 | 2258 | |
| 55644 | 2259 | val helper_coind1_thms = mk_helper_coind_thms true helper_coind1_concl cts1; | 
| 2260 | val helper_coind2_thms = mk_helper_coind_thms false helper_coind2_concl cts2; | |
| 55602 | 2261 | |
| 2262 | fun mk_helper_ind_phi phi ab fst snd z active_phi x y zip_unfold = | |
| 2263 | list_all_free [x, y] (HOLogic.mk_imp | |
| 51925 | 2264 | (HOLogic.mk_conj (active_phi $ x $ y, | 
| 2265 | HOLogic.mk_eq (z, zip_unfold $ HOLogic.mk_prod (x, y))), | |
| 55602 | 2266 | phi $ (fst $ ab) $ (snd $ ab))); | 
| 2267 | val helper_ind_phiss = | |
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changeset | 2268 |             @{map 4} (fn Jphi => fn ab => fn fst => fn snd =>
 | 
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changeset | 2269 |               @{map 5} (mk_helper_ind_phi Jphi ab fst snd)
 | 
| 55602 | 2270 | zip_zs activeJphis Jzs Jz's zip_unfolds) | 
| 2271 | Jphis abs fstABs sndABs; | |
| 2272 | val ctss = map2 (fn ab' => fn phis => | |
| 2273 | map2 (fn z' => fn phi => | |
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changeset | 2274 | SOME (Thm.cterm_of lthy (Term.absfree ab' (Term.absfree z' phi)))) | 
| 55602 | 2275 | zip_zs' phis @ | 
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changeset | 2276 | map (SOME o Thm.cterm_of lthy) zip_zs) | 
| 55602 | 2277 | abs' helper_ind_phiss; | 
| 2278 | fun mk_helper_ind_concl ab' z ind_phi set = | |
| 2279 | mk_Ball (set $ z) (Term.absfree ab' ind_phi); | |
| 57567 | 2280 | |
| 51925 | 2281 | val mk_helper_ind_concls = | 
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changeset | 2282 |             @{map 3} (fn ab' => fn ind_phis => fn zip_sets =>
 | 
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changeset | 2283 |               @{map 3} (mk_helper_ind_concl ab') zip_zs ind_phis zip_sets)
 | 
| 55602 | 2284 | abs' helper_ind_phiss zip_setss | 
| 51925 | 2285 | |> map (HOLogic.mk_Trueprop o Library.foldr1 HOLogic.mk_conj); | 
| 55602 | 2286 | |
| 51925 | 2287 | val helper_ind_thmss = if m = 0 then replicate n [] else | 
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changeset | 2288 |             @{map 4} (fn concl => fn j => fn set_induct => fn cts =>
 | 
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changeset | 2289 | fold (Variable.add_free_names lthy) (concl :: helper_prems) [] | 
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changeset | 2290 | |> (fn vars => Goal.prove_sorry lthy vars [] (Logic.list_implies (helper_prems, concl)) | 
| 60784 | 2291 |                 (fn {context = ctxt, prems = _} =>
 | 
| 2292 | mk_rel_coinduct_ind_tac ctxt m ks | |
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changeset | 2293 | dtor_unfold_thms set_mapss j (infer_instantiate' ctxt cts set_induct))) | 
| 51925 | 2294 | |> Thm.close_derivation | 
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changeset | 2295 | |> split_conj_thm) | 
| 55602 | 2296 | mk_helper_ind_concls ls dtor_Jset_induct_thms ctss | 
| 51925 | 2297 | |> transpose; | 
| 2298 | in | |
| 55197 | 2299 | mk_rel_coinduct_tac ctxt CIHs in_rels in_Jrels | 
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changeset | 2300 | helper_ind_thmss helper_coind1_thms helper_coind2_thms | 
| 51925 | 2301 | end; | 
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changeset | 2302 | |
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changeset | 2303 | val Jrel_coinduct_thm = | 
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changeset | 2304 | mk_xtor_rel_co_induct_thm Greatest_FP rels activeJphis Jrels Jphis Jzs Jz's dtors dtor's | 
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changeset | 2305 | Jrel_coinduct_tac lthy; | 
| 51925 | 2306 | |
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changeset | 2307 | val le_Jrel_OO_thm = | 
| 
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changeset | 2308 | let | 
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changeset | 2309 | fun mk_le_Jrel_OO Jrelpsi1 Jrelpsi2 Jrelpsi12 = | 
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changeset | 2310 | mk_leq (mk_rel_compp (Jrelpsi1, Jrelpsi2)) Jrelpsi12; | 
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changeset | 2311 |             val goals = @{map 3} mk_le_Jrel_OO Jrelpsi1s Jrelpsi2s Jrelpsi12s;
 | 
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changeset | 2312 | |
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changeset | 2313 | val goal = HOLogic.mk_Trueprop (Library.foldr1 HOLogic.mk_conj goals); | 
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changeset | 2314 | val vars = Variable.add_free_names lthy goal []; | 
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changeset | 2315 | in | 
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changeset | 2316 |             Goal.prove_sorry lthy vars [] goal (fn {context = ctxt, prems = _} =>
 | 
| 60728 | 2317 | mk_le_rel_OO_tac ctxt Jrel_coinduct_thm dtor_Jrel_thms le_rel_OOs) | 
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changeset | 2318 | |> Thm.close_derivation | 
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changeset | 2319 | end; | 
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changeset | 2320 | |
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changeset | 2321 | val timer = time (timer "helpers for BNF properties"); | 
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changeset | 2322 | |
| 56179 | 2323 | fun close_wit I wit = (I, fold_rev Term.absfree (map (nth ys') I) wit); | 
| 2324 | ||
| 2325 | val all_unitTs = replicate live HOLogic.unitT; | |
| 2326 | val unitTs = replicate n HOLogic.unitT; | |
| 2327 | val unit_funs = replicate n (Term.absdummy HOLogic.unitT HOLogic.unit); | |
| 2328 | fun mk_map_args I = | |
| 2329 | map (fn i => | |
| 2330 | if member (op =) I i then Term.absdummy HOLogic.unitT (nth ys i) | |
| 2331 | else mk_undefined (HOLogic.unitT --> nth passiveAs i)) | |
| 2332 | (0 upto (m - 1)); | |
| 2333 | ||
| 2334 | fun mk_nat_wit Ds bnf (I, wit) () = | |
| 2335 | let | |
| 2336 | val passiveI = filter (fn i => i < m) I; | |
| 2337 | val map_args = mk_map_args passiveI; | |
| 2338 | in | |
| 2339 | Term.absdummy HOLogic.unitT (Term.list_comb | |
| 2340 | (mk_map_of_bnf Ds all_unitTs (passiveAs @ unitTs) bnf, map_args @ unit_funs) $ wit) | |
| 2341 | end; | |
| 2342 | ||
| 2343 | fun mk_dummy_wit Ds bnf I = | |
| 2344 | let | |
| 2345 | val map_args = mk_map_args I; | |
| 2346 | in | |
| 2347 | Term.absdummy HOLogic.unitT (Term.list_comb | |
| 2348 | (mk_map_of_bnf Ds all_unitTs (passiveAs @ unitTs) bnf, map_args @ unit_funs) $ | |
| 2349 | mk_undefined (mk_T_of_bnf Ds all_unitTs bnf)) | |
| 2350 | end; | |
| 2351 | ||
| 2352 | val nat_witss = | |
| 2353 | map2 (fn Ds => fn bnf => mk_wits_of_bnf (replicate (nwits_of_bnf bnf) Ds) | |
| 2354 | (replicate (nwits_of_bnf bnf) (replicate live HOLogic.unitT)) bnf | |
| 2355 | |> map (fn (I, wit) => | |
| 2356 | (I, Lazy.lazy (mk_nat_wit Ds bnf (I, Term.list_comb (wit, map (K HOLogic.unit) I)))))) | |
| 2357 | Dss bnfs; | |
| 2358 | ||
| 2359 | val nat_wit_thmss = map2 (curry op ~~) nat_witss (map wit_thmss_of_bnf bnfs) | |
| 2360 | ||
| 2361 | val Iss = map (map fst) nat_witss; | |
| 2362 | ||
| 2363 | fun filter_wits (I, wit) = | |
| 2364 | let val J = filter (fn i => i < m) I; | |
| 2365 | in (J, (length J < length I, wit)) end; | |
| 2366 | ||
| 2367 | val wit_treess = map_index (fn (i, Is) => | |
| 2368 | map_index (finish Iss m [i+m] (i+m)) Is) Iss | |
| 2369 | |> map (minimize_wits o map filter_wits o minimize_wits o flat); | |
| 2370 | ||
| 2371 | val coind_wit_argsss = | |
| 2372 | map (map (tree_to_coind_wits nat_wit_thmss o snd o snd) o filter (fst o snd)) wit_treess; | |
| 2373 | ||
| 2374 | val nonredundant_coind_wit_argsss = | |
| 2375 | fold (fn i => fn argsss => | |
| 2376 | nth_map (i - 1) (filter_out (fn xs => | |
| 2377 | exists (fn ys => | |
| 2378 | let | |
| 2379 | val xs' = (map (fst o fst) xs, snd (fst (hd xs))); | |
| 2380 | val ys' = (map (fst o fst) ys, snd (fst (hd ys))); | |
| 2381 | in | |
| 2382 | eq_pair (subset (op =)) (eq_set (op =)) (xs', ys') andalso not (fst xs' = fst ys') | |
| 2383 | end) | |
| 2384 | (flat argsss))) | |
| 2385 | argsss) | |
| 2386 | ks coind_wit_argsss; | |
| 2387 | ||
| 2388 | fun prepare_args args = | |
| 2389 | let | |
| 2390 | val I = snd (fst (hd args)); | |
| 2391 | val (dummys, args') = | |
| 2392 | map_split (fn i => | |
| 2393 | (case find_first (fn arg => fst (fst arg) = i - 1) args of | |
| 2394 | SOME (_, ((_, wit), thms)) => (NONE, (Lazy.force wit, thms)) | |
| 2395 | | NONE => | |
| 2396 | (SOME (i - 1), (mk_dummy_wit (nth Dss (i - 1)) (nth bnfs (i - 1)) I, [])))) | |
| 2397 | ks; | |
| 2398 | in | |
| 2399 | ((I, dummys), apsnd flat (split_list args')) | |
| 2400 | end; | |
| 2401 | ||
| 2402 | fun mk_coind_wits ((I, dummys), (args, thms)) = | |
| 2403 | ((I, dummys), (map (fn i => mk_unfold Ts args i $ HOLogic.unit) ks, thms)); | |
| 2404 | ||
| 2405 | val coind_witss = | |
| 2406 | maps (map (mk_coind_wits o prepare_args)) nonredundant_coind_wit_argsss; | |
| 2407 | ||
| 2408 | val witss = map2 (fn Ds => fn bnf => mk_wits_of_bnf | |
| 2409 | (replicate (nwits_of_bnf bnf) Ds) | |
| 2410 | (replicate (nwits_of_bnf bnf) (passiveAs @ Ts)) bnf) Dss bnfs; | |
| 2411 | ||
| 2412 | val ctor_witss = | |
| 2413 | map (map (uncurry close_wit o tree_to_ctor_wit ys ctors witss o snd o snd) o | |
| 2414 | filter_out (fst o snd)) wit_treess; | |
| 2415 | ||
| 2416 | fun mk_coind_wit_thms ((I, dummys), (wits, wit_thms)) = | |
| 2417 | let | |
| 2418 | fun mk_goal sets y y_copy y'_copy j = | |
| 2419 | let | |
| 2420 | fun mk_conjunct set z dummy wit = | |
| 2421 | mk_Ball (set $ z) (Term.absfree y'_copy | |
| 2422 | (if dummy = NONE orelse member (op =) I (j - 1) then | |
| 2423 | HOLogic.mk_imp (HOLogic.mk_eq (z, wit), | |
| 2424 | if member (op =) I (j - 1) then HOLogic.mk_eq (y_copy, y) | |
| 69593 | 2425 | else \<^term>\<open>False\<close>) | 
| 2426 | else \<^term>\<open>True\<close>)); | |
| 56179 | 2427 | in | 
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changeset | 2428 | HOLogic.mk_Trueprop | 
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changeset | 2429 |                   (Library.foldr1 HOLogic.mk_conj (@{map 4} mk_conjunct sets Jzs dummys wits))
 | 
| 56179 | 2430 | end; | 
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changeset | 2431 |             val goals = @{map 5} mk_goal Jsetss_by_range ys ys_copy ys'_copy ls;
 | 
| 56179 | 2432 | in | 
| 2433 | map2 (fn goal => fn induct => | |
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changeset | 2434 | Variable.add_free_names lthy goal [] | 
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changeset | 2435 | |> (fn vars => Goal.prove_sorry lthy vars [] goal | 
| 56179 | 2436 |                 (fn {context = ctxt, prems = _} => mk_coind_wit_tac ctxt induct dtor_unfold_thms
 | 
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changeset | 2437 | (flat set_mapss) wit_thms)) | 
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changeset | 2438 | |> Thm.close_derivation) | 
| 56179 | 2439 | goals dtor_Jset_induct_thms | 
| 2440 | |> map split_conj_thm | |
| 2441 | |> transpose | |
| 2442 | |> map (map_filter (try (fn thm => thm RS bspec RS mp))) | |
| 2443 | |> curry op ~~ (map_index Library.I (map (close_wit I) wits)) | |
| 2444 | |> filter (fn (_, thms) => length thms = m) | |
| 2445 | end; | |
| 2446 | ||
| 2447 | val coind_wit_thms = maps mk_coind_wit_thms coind_witss; | |
| 2448 | ||
| 2449 | val (wit_thmss, all_witss) = | |
| 2450 | fold (fn ((i, wit), thms) => fn witss => | |
| 2451 | nth_map i (fn (thms', wits) => (thms @ thms', wit :: wits)) witss) | |
| 2452 | coind_wit_thms (map (pair []) ctor_witss) | |
| 2453 | |> map (apsnd (map snd o minimize_wits)) | |
| 2454 | |> split_list; | |
| 2455 | ||
| 2456 | val timer = time (timer "witnesses"); | |
| 2457 | ||
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changeset | 2458 | val map_id0_tacs = | 
| 60728 | 2459 | map2 (fn thm => fn thm' => fn ctxt => | 
| 2460 | mk_map_id0_tac ctxt Jmap_thms thm thm') | |
| 2461 | dtor_unfold_unique_thms unfold_dtor_thms; | |
| 2462 | val map_comp0_tacs = map (fn thm => fn ctxt => rtac ctxt (thm RS sym) 1) Jmap_comp0_thms; | |
| 55197 | 2463 | val map_cong0_tacs = map (fn thm => fn ctxt => mk_map_cong0_tac ctxt m thm) map_cong0_thms; | 
| 2464 | val set_map0_tacss = | |
| 60728 | 2465 | map (map (fn col => fn ctxt => | 
| 2466 | unfold_thms_tac ctxt Jset_defs THEN mk_set_map0_tac ctxt col)) | |
| 2467 | (transpose col_natural_thmss); | |
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changeset | 2468 | |
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changeset | 2469 | val Jbd_card_orders = map (fn def => Local_Defs.fold lthy [def] sbd_card_order) Jbd_defs; | 
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changeset | 2470 | val Jbd_Cinfinites = map (fn def => Local_Defs.fold lthy [def] sbd_Cinfinite) Jbd_defs; | 
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changeset | 2471 | |
| 60728 | 2472 | val bd_co_tacs = map (fn thm => fn ctxt => rtac ctxt thm 1) Jbd_card_orders; | 
| 2473 | val bd_cinf_tacs = map (fn thm => fn ctxt => rtac ctxt (thm RS conjunct1) 1) Jbd_Cinfinites; | |
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changeset | 2474 | |
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changeset | 2475 | val set_bd_tacss = | 
| 56113 | 2476 | map2 (fn Cinf => map (fn col => fn ctxt => | 
| 60728 | 2477 | unfold_thms_tac ctxt Jset_defs THEN mk_set_bd_tac ctxt Cinf col)) | 
| 56113 | 2478 | Jbd_Cinfinites (transpose col_bd_thmss); | 
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changeset | 2479 | |
| 60728 | 2480 | val le_rel_OO_tacs = map (fn i => fn ctxt => | 
| 2481 | rtac ctxt (le_Jrel_OO_thm RS mk_conjunctN n i) 1) ks; | |
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changeset | 2482 | |
| 60728 | 2483 | val rel_OO_Grp_tacs = map (fn def => fn ctxt => rtac ctxt def 1) Jrel_unabs_defs; | 
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changeset | 2484 | |
| 62324 | 2485 | val pred_set_tacs = map (fn def => fn ctxt => rtac ctxt def 1) Jpred_unabs_defs; | 
| 2486 | ||
| 2487 |         val tacss = @{map 10} zip_axioms map_id0_tacs map_comp0_tacs map_cong0_tacs set_map0_tacss
 | |
| 2488 | bd_co_tacs bd_cinf_tacs set_bd_tacss le_rel_OO_tacs rel_OO_Grp_tacs pred_set_tacs; | |
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changeset | 2489 | |
| 56179 | 2490 | fun wit_tac thms ctxt = | 
| 55197 | 2491 | mk_wit_tac ctxt n dtor_ctor_thms (flat dtor_Jset_thmss) (maps wit_thms_of_bnf bnfs) thms; | 
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changeset | 2492 | |
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changeset | 2493 | val (Jbnfs, lthy) = | 
| 62324 | 2494 |           @{fold_map 7} (fn tacs => fn map_b => fn rel_b => fn pred_b => fn set_bs => fn wit_thms =>
 | 
| 56348 | 2495 | fn consts => | 
| 56179 | 2496 | bnf_def Hardly_Inline (user_policy Note_Some) false I tacs (wit_tac wit_thms) | 
| 62324 | 2497 | (SOME deads) map_b rel_b pred_b set_bs consts) | 
| 2498 | tacss map_bs rel_bs pred_bs set_bss wit_thmss | |
| 2499 | (((((((replicate n Binding.empty ~~ Ts) ~~ Jmaps) ~~ Jsetss_by_bnf) ~~ Jbds) ~~ | |
| 2500 | all_witss) ~~ map SOME Jrels) ~~ map SOME Jpreds) | |
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changeset | 2501 | lthy; | 
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changeset | 2502 | |
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changeset | 2503 | val timer = time (timer "registered new codatatypes as BNFs"); | 
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changeset | 2504 | |
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changeset | 2505 | val ls' = if m = 1 then [0] else ls; | 
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changeset | 2506 | |
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changeset | 2507 | val Jbnf_common_notes = | 
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changeset | 2508 | map2 (fn i => fn thm => (mk_dtor_set_inductN i, [thm])) ls' dtor_Jset_induct_thms | 
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changeset | 2509 | |> map (fn (thmN, thms) => | 
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changeset | 2510 | ((Binding.qualify true (Binding.name_of b) (Binding.name thmN), []), [(thms, [])])); | 
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changeset | 2511 | |
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changeset | 2512 | val Jbnf_notes = | 
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changeset | 2513 | [(dtor_mapN, map single dtor_Jmap_thms), | 
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changeset | 2514 | (dtor_map_uniqueN, map single dtor_Jmap_unique_thms), | 
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changeset | 2515 | (dtor_relN, map single dtor_Jrel_thms), | 
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changeset | 2516 | (dtor_set_inclN, dtor_Jset_incl_thmss), | 
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changeset | 2517 | (dtor_set_set_inclN, map flat dtor_set_Jset_incl_thmsss)] @ | 
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changeset | 2518 | map2 (fn i => fn thms => (mk_dtor_setN i, map single thms)) ls' dtor_Jset_thmss | 
| 
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changeset | 2519 | |> maps (fn (thmN, thmss) => | 
| 
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changeset | 2520 | map2 (fn b => fn thms => | 
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changeset | 2521 | ((Binding.qualify true (Binding.name_of b) (Binding.name thmN), []), [(thms, [])])) | 
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changeset | 2522 | bs thmss) | 
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changeset | 2523 | in | 
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changeset | 2524 | (timer, Jbnfs, (Jmap_thms, dtor_Jmap_thms), dtor_Jmap_unique_thm, dtor_Jset_thmss', | 
| 57700 | 2525 | dtor_Jrel_thms, Jrel_coinduct_thm, Jbnf_common_notes @ Jbnf_notes, dtor_Jset_induct_thms, | 
| 2526 | lthy) | |
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changeset | 2527 | end; | 
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changeset | 2528 | |
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changeset | 2529 | val ((Jphis, activephis), _) = | 
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changeset | 2530 | lthy | 
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changeset | 2531 | |> mk_Frees "R" JphiTs | 
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changeset | 2532 | ||>> mk_Frees "S" activephiTs; | 
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changeset | 2533 | |
| 62827 | 2534 | val dtor_unfold_o_Jmap_thms = mk_xtor_co_iter_o_map_thms Greatest_FP false m | 
| 64413 | 2535 | dtor_unfold_unique_thm dtor_Jmap_o_thms (map (mk_pointfree2 lthy) dtor_unfold_thms) | 
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changeset | 2536 | sym_map_comps map_cong0s; | 
| 54841 
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changeset | 2537 | |
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changeset | 2538 | val rels = map2 (fn Ds => mk_rel_of_bnf Ds allAs allBs') Dss bnfs; | 
| 58443 | 2539 | val Jrels = if m = 0 then map HOLogic.eq_const Ts | 
| 2540 | else map (mk_rel_of_bnf deads passiveAs passiveBs) Jbnfs; | |
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changeset | 2541 | |
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changeset | 2542 | val dtor_unfold_transfer_thms = | 
| 62827 | 2543 | mk_xtor_co_iter_transfer_thms Greatest_FP rels activephis activephis Jrels Jphis | 
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changeset | 2544 | (mk_unfolds passiveAs activeAs) (mk_unfolds passiveBs activeBs) | 
| 
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changeset | 2545 |         (fn {context = ctxt, prems = _} => mk_unfold_transfer_tac ctxt m Jrel_coinduct_thm
 | 
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changeset | 2546 | (map map_transfer_of_bnf bnfs) dtor_unfold_thms) | 
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changeset | 2547 | lthy; | 
| 52731 | 2548 | |
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changeset | 2549 | val timer = time (timer "relator coinduction"); | 
| 51925 | 2550 | |
| 62905 | 2551 | fun mk_Ts As = map (typ_subst_atomic (passiveAs ~~ As)) Ts; | 
| 2552 | val export = map (Morphism.term (Local_Theory.target_morphism lthy)) | |
| 2553 | val ((corecs, (dtor_corec_thms, dtor_corec_unique_thm, dtor_corec_o_Jmap_thms, | |
| 2554 | dtor_corec_transfer_thms)), lthy) = lthy | |
| 2555 | |> derive_xtor_co_recs Greatest_FP external_bs mk_Ts (Dss, resDs) bnfs | |
| 2556 | (export dtors) (export unfolds) | |
| 2557 | dtor_unfold_unique_thm dtor_unfold_thms dtor_unfold_transfer_thms | |
| 63045 | 2558 | dtor_Jmap_thms dtor_Jrel_thms (replicate n NONE); | 
| 62905 | 2559 | |
| 2560 | val timer = time (timer "recursor"); | |
| 2561 | ||
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changeset | 2562 | val common_notes = | 
| 
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changeset | 2563 | [(dtor_coinductN, [dtor_coinduct_thm]), | 
| 59856 
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changeset | 2564 | (dtor_rel_coinductN, [Jrel_coinduct_thm])] | 
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changeset | 2565 | |> map (fn (thmN, thms) => | 
| 
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changeset | 2566 | ((Binding.qualify true (Binding.name_of b) (Binding.name thmN), []), [(thms, [])])); | 
| 49109 
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changeset | 2567 | |
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changeset | 2568 | val notes = | 
| 
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changeset | 2569 | [(ctor_dtorN, ctor_dtor_thms), | 
| 
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changeset | 2570 | (ctor_exhaustN, ctor_exhaust_thms), | 
| 
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changeset | 2571 | (ctor_injectN, ctor_inject_thms), | 
| 
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changeset | 2572 | (dtor_ctorN, dtor_ctor_thms), | 
| 
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changeset | 2573 | (dtor_exhaustN, dtor_exhaust_thms), | 
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changeset | 2574 | (dtor_injectN, dtor_inject_thms), | 
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changeset | 2575 | (dtor_unfoldN, dtor_unfold_thms), | 
| 
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changeset | 2576 | (dtor_unfold_o_mapN, dtor_unfold_o_Jmap_thms), | 
| 59856 
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changeset | 2577 | (dtor_unfold_transferN, dtor_unfold_transfer_thms), | 
| 
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changeset | 2578 | (dtor_unfold_uniqueN, dtor_unfold_unique_thms)] | 
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changeset | 2579 | |> map (apsnd (map single)) | 
| 
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changeset | 2580 | |> maps (fn (thmN, thmss) => | 
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changeset | 2581 | map2 (fn b => fn thms => | 
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changeset | 2582 | ((Binding.qualify true (Binding.name_of b) (Binding.name thmN), []), [(thms, [])])) | 
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changeset | 2583 | bs thmss); | 
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changeset | 2584 | |
| 62093 | 2585 | val lthy' = lthy |> internals ? snd o Local_Theory.notes (common_notes @ notes @ Jbnf_notes); | 
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changeset | 2586 | |
| 
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changeset | 2587 | val fp_res = | 
| 62684 
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changeset | 2588 |       {Ts = Ts, bnfs = Jbnfs, pre_bnfs = bnfs, absT_infos = absT_infos,
 | 
| 62907 | 2589 | ctors = ctors, dtors = dtors, xtor_un_folds = unfolds, xtor_co_recs = export corecs, | 
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changeset | 2590 | xtor_co_induct = dtor_coinduct_thm, dtor_ctors = dtor_ctor_thms, ctor_dtors = ctor_dtor_thms, | 
| 
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changeset | 2591 | ctor_injects = ctor_inject_thms, dtor_injects = dtor_inject_thms, xtor_maps = dtor_Jmap_thms, | 
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changeset | 2592 | xtor_map_unique = dtor_Jmap_unique_thm, xtor_setss = dtor_Jset_thmss', | 
| 62907 | 2593 | xtor_rels = dtor_Jrel_thms, xtor_un_fold_thms = dtor_unfold_thms, | 
| 2594 | xtor_co_rec_thms = dtor_corec_thms, xtor_un_fold_unique = dtor_unfold_unique_thm, | |
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changeset | 2595 | xtor_co_rec_unique = dtor_corec_unique_thm, | 
| 62907 | 2596 | xtor_un_fold_o_maps = dtor_unfold_o_Jmap_thms, | 
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changeset | 2597 | xtor_co_rec_o_maps = dtor_corec_o_Jmap_thms, | 
| 62907 | 2598 | xtor_un_fold_transfers = dtor_unfold_transfer_thms, | 
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changeset | 2599 | xtor_co_rec_transfers = dtor_corec_transfer_thms, xtor_rel_co_induct = Jrel_coinduct_thm, | 
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changeset | 2600 | dtor_set_inducts = dtor_Jset_induct_thms}; | 
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changeset | 2601 | in | 
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changeset | 2602 | timer; (fp_res, lthy') | 
| 48975 
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changeset | 2603 | end; | 
| 
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changeset | 2604 | |
| 
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changeset | 2605 | val _ = | 
| 69593 | 2606 | Outer_Syntax.local_theory \<^command_keyword>\<open>codatatype\<close> "define coinductive datatypes" | 
| 52207 
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changeset | 2607 | (parse_co_datatype_cmd Greatest_FP construct_gfp); | 
| 49308 
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changeset | 2608 | |
| 69593 | 2609 | val _ = Theory.setup (fp_antiquote_setup \<^binding>\<open>codatatype\<close>); | 
| 58256 
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changeset | 2610 | |
| 48975 
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changeset | 2611 | end; |