| author | nipkow | 
| Tue, 20 Oct 2009 14:44:19 +0200 | |
| changeset 33020 | 0908ed080ccf | 
| parent 32970 | fbd2bb2489a8 | 
| child 33040 | cffdb7b28498 | 
| permissions | -rw-r--r-- | 
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changeset | 1 | (* Title: HOL/Tools/inductive.ML | 
| 5094 | 2 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | 
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changeset | 3 | Author: Stefan Berghofer and Markus Wenzel, TU Muenchen | 
| 5094 | 4 | |
| 6424 | 5 | (Co)Inductive Definition module for HOL. | 
| 5094 | 6 | |
| 7 | Features: | |
| 6424 | 8 | * least or greatest fixedpoints | 
| 9 | * mutually recursive definitions | |
| 10 | * definitions involving arbitrary monotone operators | |
| 11 | * automatically proves introduction and elimination rules | |
| 5094 | 12 | |
| 13 | Introduction rules have the form | |
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changeset | 14 | [| M Pj ti, ..., Q x, ... |] ==> Pk t | 
| 5094 | 15 | where M is some monotone operator (usually the identity) | 
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changeset | 16 | Q x is any side condition on the free variables | 
| 5094 | 17 | ti, t are any terms | 
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changeset | 18 | Pj, Pk are two of the predicates being defined in mutual recursion | 
| 5094 | 19 | *) | 
| 20 | ||
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changeset | 21 | signature BASIC_INDUCTIVE = | 
| 5094 | 22 | sig | 
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changeset | 23 | type inductive_result | 
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changeset | 24 | val morph_result: morphism -> inductive_result -> inductive_result | 
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changeset | 25 | type inductive_info | 
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changeset | 26 | val the_inductive: Proof.context -> string -> inductive_info | 
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changeset | 27 | val print_inductives: Proof.context -> unit | 
| 18728 | 28 | val mono_add: attribute | 
| 29 | val mono_del: attribute | |
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changeset | 30 | val get_monos: Proof.context -> thm list | 
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changeset | 31 | val mk_cases: Proof.context -> term -> thm | 
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export inductive_forall_name, inductive_forall_def, rulify;
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changeset | 32 | val inductive_forall_name: string | 
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export inductive_forall_name, inductive_forall_def, rulify;
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changeset | 33 | val inductive_forall_def: thm | 
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changeset | 34 | val rulify: thm -> thm | 
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changeset | 35 | val inductive_cases: (Attrib.binding * string list) list -> local_theory -> | 
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changeset | 36 | thm list list * local_theory | 
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changeset | 37 | val inductive_cases_i: (Attrib.binding * term list) list -> local_theory -> | 
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changeset | 38 | thm list list * local_theory | 
| 26534 | 39 | type inductive_flags | 
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changeset | 40 | val add_inductive_i: | 
| 29581 | 41 | inductive_flags -> ((binding * typ) * mixfix) list -> | 
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changeset | 42 | (string * typ) list -> (Attrib.binding * term) list -> thm list -> local_theory -> | 
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changeset | 43 | inductive_result * local_theory | 
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changeset | 44 | val add_inductive: bool -> bool -> | 
| 29581 | 45 | (binding * string option * mixfix) list -> | 
| 46 | (binding * string option * mixfix) list -> | |
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changeset | 47 | (Attrib.binding * string) list -> | 
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changeset | 48 | (Facts.ref * Attrib.src list) list -> | 
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changeset | 49 | bool -> local_theory -> inductive_result * local_theory | 
| 26534 | 50 | val add_inductive_global: string -> inductive_flags -> | 
| 29581 | 51 | ((binding * typ) * mixfix) list -> (string * typ) list -> (Attrib.binding * term) list -> | 
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changeset | 52 | thm list -> theory -> inductive_result * theory | 
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changeset | 53 | val arities_of: thm -> (string * int) list | 
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changeset | 54 | val params_of: thm -> term list | 
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changeset | 55 | val partition_rules: thm -> thm list -> (string * thm list) list | 
| 25822 | 56 | val partition_rules': thm -> (thm * 'a) list -> (string * (thm * 'a) list) list | 
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changeset | 57 | val unpartition_rules: thm list -> (string * 'a list) list -> 'a list | 
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changeset | 58 | val infer_intro_vars: thm -> int -> thm list -> term list list | 
| 18708 | 59 | val setup: theory -> theory | 
| 5094 | 60 | end; | 
| 61 | ||
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changeset | 62 | signature INDUCTIVE = | 
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changeset | 63 | sig | 
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changeset | 64 | include BASIC_INDUCTIVE | 
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changeset | 65 | type add_ind_def | 
| 29581 | 66 | val declare_rules: string -> binding -> bool -> bool -> string list -> | 
| 67 | thm list -> binding list -> Attrib.src list list -> (thm * string list) list -> | |
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changeset | 68 | thm -> local_theory -> thm list * thm list * thm * local_theory | 
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changeset | 69 | val add_ind_def: add_ind_def | 
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changeset | 70 | val gen_add_inductive_i: add_ind_def -> inductive_flags -> | 
| 29581 | 71 | ((binding * typ) * mixfix) list -> (string * typ) list -> (Attrib.binding * term) list -> | 
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changeset | 72 | thm list -> local_theory -> inductive_result * local_theory | 
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changeset | 73 | val gen_add_inductive: add_ind_def -> bool -> bool -> | 
| 29581 | 74 | (binding * string option * mixfix) list -> | 
| 75 | (binding * string option * mixfix) list -> | |
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changeset | 76 | (Attrib.binding * string) list -> (Facts.ref * Attrib.src list) list -> | 
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changeset | 77 | bool -> local_theory -> inductive_result * local_theory | 
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changeset | 78 | val gen_ind_decl: add_ind_def -> bool -> | 
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changeset | 79 | OuterParse.token list -> (bool -> local_theory -> local_theory) * OuterParse.token list | 
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changeset | 80 | end; | 
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changeset | 81 | |
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changeset | 82 | structure Inductive: INDUCTIVE = | 
| 5094 | 83 | struct | 
| 84 | ||
| 9598 | 85 | |
| 10729 | 86 | (** theory context references **) | 
| 87 | ||
| 11991 | 88 | val inductive_forall_name = "HOL.induct_forall"; | 
| 32602 | 89 | val inductive_forall_def = @{thm induct_forall_def};
 | 
| 11991 | 90 | val inductive_conj_name = "HOL.induct_conj"; | 
| 32602 | 91 | val inductive_conj_def = @{thm induct_conj_def};
 | 
| 92 | val inductive_conj = @{thms induct_conj};
 | |
| 93 | val inductive_atomize = @{thms induct_atomize};
 | |
| 94 | val inductive_rulify = @{thms induct_rulify};
 | |
| 95 | val inductive_rulify_fallback = @{thms induct_rulify_fallback};
 | |
| 10729 | 96 | |
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changeset | 97 | val notTrueE = TrueI RSN (2, notE); | 
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changeset | 98 | val notFalseI = Seq.hd (atac 1 notI); | 
| 32181 | 99 | |
| 100 | val simp_thms' = map mk_meta_eq | |
| 101 |   @{lemma "(~True) = False" "(~False) = True"
 | |
| 102 | "(True --> P) = P" "(False --> P) = True" | |
| 103 | "(P & True) = P" "(True & P) = P" | |
| 104 | by (fact simp_thms)+}; | |
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changeset | 105 | |
| 32652 | 106 | val simp_thms'' = map mk_meta_eq [@{thm inf_fun_eq}, @{thm inf_bool_eq}] @ simp_thms';
 | 
| 107 | ||
| 108 | val simp_thms''' = map mk_meta_eq | |
| 109 |   [@{thm le_fun_def}, @{thm le_bool_def}, @{thm sup_fun_eq}, @{thm sup_bool_eq}];
 | |
| 10729 | 110 | |
| 111 | ||
| 22846 | 112 | (** context data **) | 
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changeset | 113 | |
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changeset | 114 | type inductive_result = | 
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changeset | 115 |   {preds: term list, elims: thm list, raw_induct: thm,
 | 
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changeset | 116 | induct: thm, intrs: thm list}; | 
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changeset | 117 | |
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changeset | 118 | fun morph_result phi {preds, elims, raw_induct: thm, induct, intrs} =
 | 
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changeset | 119 | let | 
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changeset | 120 | val term = Morphism.term phi; | 
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changeset | 121 | val thm = Morphism.thm phi; | 
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changeset | 122 | val fact = Morphism.fact phi; | 
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changeset | 123 | in | 
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changeset | 124 |    {preds = map term preds, elims = fact elims, raw_induct = thm raw_induct,
 | 
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changeset | 125 | induct = thm induct, intrs = fact intrs} | 
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changeset | 126 | end; | 
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changeset | 127 | |
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changeset | 128 | type inductive_info = | 
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changeset | 129 |   {names: string list, coind: bool} * inductive_result;
 | 
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changeset | 130 | |
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changeset | 131 | structure InductiveData = GenericDataFun | 
| 22846 | 132 | ( | 
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changeset | 133 | type T = inductive_info Symtab.table * thm list; | 
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changeset | 134 | val empty = (Symtab.empty, []); | 
| 16432 | 135 | val extend = I; | 
| 136 | fun merge _ ((tab1, monos1), (tab2, monos2)) = | |
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changeset | 137 | (Symtab.merge (K true) (tab1, tab2), Thm.merge_thms (monos1, monos2)); | 
| 22846 | 138 | ); | 
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changeset | 139 | |
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changeset | 140 | val get_inductives = InductiveData.get o Context.Proof; | 
| 22846 | 141 | |
| 142 | fun print_inductives ctxt = | |
| 143 | let | |
| 144 | val (tab, monos) = get_inductives ctxt; | |
| 145 | val space = Consts.space_of (ProofContext.consts_of ctxt); | |
| 146 | in | |
| 147 |     [Pretty.strs ("(co)inductives:" :: map #1 (NameSpace.extern_table (space, tab))),
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changeset | 148 | Pretty.big_list "monotonicity rules:" (map (Display.pretty_thm ctxt) monos)] | 
| 22846 | 149 | |> Pretty.chunks |> Pretty.writeln | 
| 150 | end; | |
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changeset | 151 | |
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changeset | 152 | |
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changeset | 153 | (* get and put data *) | 
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changeset | 154 | |
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changeset | 155 | fun the_inductive ctxt name = | 
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changeset | 156 | (case Symtab.lookup (#1 (get_inductives ctxt)) name of | 
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changeset | 157 |     NONE => error ("Unknown (co)inductive predicate " ^ quote name)
 | 
| 15531 | 158 | | SOME info => info); | 
| 9598 | 159 | |
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changeset | 160 | fun put_inductives names info = InductiveData.map | 
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changeset | 161 | (apfst (fold (fn name => Symtab.update (name, info)) names)); | 
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changeset | 162 | |
| 8277 | 163 | |
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changeset | 164 | |
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changeset | 165 | (** monotonicity rules **) | 
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changeset | 166 | |
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changeset | 167 | val get_monos = #2 o get_inductives; | 
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changeset | 168 | val map_monos = InductiveData.map o apsnd; | 
| 8277 | 169 | |
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changeset | 170 | fun mk_mono thm = | 
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changeset | 171 | let | 
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changeset | 172 | val concl = concl_of thm; | 
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changeset | 173 | fun eq2mono thm' = [thm' RS (thm' RS eq_to_mono)] @ | 
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changeset | 174 | (case concl of | 
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changeset | 175 |           (_ $ (_ $ (Const ("Not", _) $ _) $ _)) => []
 | 
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changeset | 176 | | _ => [thm' RS (thm' RS eq_to_mono2)]); | 
| 32652 | 177 |     fun dest_less_concl thm = dest_less_concl (thm RS @{thm le_funD})
 | 
| 178 |       handle THM _ => thm RS @{thm le_boolD}
 | |
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changeset | 179 | in | 
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changeset | 180 | case concl of | 
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changeset | 181 |       Const ("==", _) $ _ $ _ => eq2mono (thm RS meta_eq_to_obj_eq)
 | 
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changeset | 182 |     | _ $ (Const ("op =", _) $ _ $ _) => eq2mono thm
 | 
| 32602 | 183 |     | _ $ (Const (@{const_name HOL.less_eq}, _) $ _ $ _) =>
 | 
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changeset | 184 | [dest_less_concl (Seq.hd (REPEAT (FIRSTGOAL | 
| 32652 | 185 |          (resolve_tac [@{thm le_funI}, @{thm le_boolI'}])) thm))]
 | 
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changeset | 186 | | _ => [thm] | 
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changeset | 187 | end handle THM _ => | 
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changeset | 188 |     error ("Bad monotonicity theorem:\n" ^ Display.string_of_thm_without_context thm);
 | 
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changeset | 189 | |
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changeset | 190 | val mono_add = Thm.declaration_attribute (map_monos o fold Thm.add_thm o mk_mono); | 
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changeset | 191 | val mono_del = Thm.declaration_attribute (map_monos o fold Thm.del_thm o mk_mono); | 
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changeset | 192 | |
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changeset | 193 | |
| 7107 | 194 | |
| 10735 | 195 | (** misc utilities **) | 
| 6424 | 196 | |
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changeset | 197 | fun message quiet_mode s = if quiet_mode then () else writeln s; | 
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changeset | 198 | fun clean_message quiet_mode s = if ! quick_and_dirty then () else message quiet_mode s; | 
| 5662 | 199 | |
| 6424 | 200 | fun coind_prefix true = "co" | 
| 201 | | coind_prefix false = ""; | |
| 202 | ||
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changeset | 203 | fun log (b:int) m n = if m >= n then 0 else 1 + log b (b * m) n; | 
| 6424 | 204 | |
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changeset | 205 | fun make_bool_args f g [] i = [] | 
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changeset | 206 | | make_bool_args f g (x :: xs) i = | 
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changeset | 207 | (if i mod 2 = 0 then f x else g x) :: make_bool_args f g xs (i div 2); | 
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changeset | 208 | |
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changeset | 209 | fun make_bool_args' xs = | 
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changeset | 210 | make_bool_args (K HOLogic.false_const) (K HOLogic.true_const) xs; | 
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changeset | 211 | |
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changeset | 212 | fun find_arg T x [] = sys_error "find_arg" | 
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changeset | 213 | | find_arg T x ((p as (_, (SOME _, _))) :: ps) = | 
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changeset | 214 | apsnd (cons p) (find_arg T x ps) | 
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changeset | 215 | | find_arg T x ((p as (U, (NONE, y))) :: ps) = | 
| 23577 | 216 | if (T: typ) = U then (y, (U, (SOME x, y)) :: ps) | 
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changeset | 217 | else apsnd (cons p) (find_arg T x ps); | 
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changeset | 218 | |
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changeset | 219 | fun make_args Ts xs = | 
| 28524 | 220 |   map (fn (T, (NONE, ())) => Const (@{const_name undefined}, T) | (_, (SOME t, ())) => t)
 | 
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changeset | 221 | (fold (fn (t, T) => snd o find_arg T t) xs (map (rpair (NONE, ())) Ts)); | 
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changeset | 222 | |
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changeset | 223 | fun make_args' Ts xs Us = | 
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changeset | 224 | fst (fold_map (fn T => find_arg T ()) Us (Ts ~~ map (pair NONE) xs)); | 
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changeset | 225 | |
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changeset | 226 | fun dest_predicate cs params t = | 
| 5094 | 227 | let | 
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changeset | 228 | val k = length params; | 
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changeset | 229 | val (c, ts) = strip_comb t; | 
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changeset | 230 | val (xs, ys) = chop k ts; | 
| 31986 | 231 | val i = find_index (fn c' => c' = c) cs; | 
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changeset | 232 | in | 
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changeset | 233 | if xs = params andalso i >= 0 then | 
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changeset | 234 | SOME (c, i, ys, chop (length ys) | 
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changeset | 235 | (List.drop (binder_types (fastype_of c), k))) | 
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changeset | 236 | else NONE | 
| 5094 | 237 | end; | 
| 238 | ||
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changeset | 239 | fun mk_names a 0 = [] | 
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changeset | 240 | | mk_names a 1 = [a] | 
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changeset | 241 | | mk_names a n = map (fn i => a ^ string_of_int i) (1 upto n); | 
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changeset | 242 | |
| 6424 | 243 | |
| 244 | ||
| 10729 | 245 | (** process rules **) | 
| 246 | ||
| 247 | local | |
| 5094 | 248 | |
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changeset | 249 | fun err_in_rule ctxt name t msg = | 
| 16432 | 250 | error (cat_lines ["Ill-formed introduction rule " ^ quote name, | 
| 24920 | 251 | Syntax.string_of_term ctxt t, msg]); | 
| 10729 | 252 | |
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changeset | 253 | fun err_in_prem ctxt name t p msg = | 
| 24920 | 254 | error (cat_lines ["Ill-formed premise", Syntax.string_of_term ctxt p, | 
| 255 | "in introduction rule " ^ quote name, Syntax.string_of_term ctxt t, msg]); | |
| 5094 | 256 | |
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changeset | 257 | val bad_concl = "Conclusion of introduction rule must be an inductive predicate"; | 
| 10729 | 258 | |
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changeset | 259 | val bad_ind_occ = "Inductive predicate occurs in argument of inductive predicate"; | 
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changeset | 260 | |
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changeset | 261 | val bad_app = "Inductive predicate must be applied to parameter(s) "; | 
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changeset | 262 | |
| 16432 | 263 | fun atomize_term thy = MetaSimplifier.rewrite_term thy inductive_atomize []; | 
| 10729 | 264 | |
| 265 | in | |
| 5094 | 266 | |
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changeset | 267 | fun check_rule ctxt cs params ((binding, att), rule) = | 
| 10729 | 268 | let | 
| 30218 | 269 | val err_name = Binding.str_of binding; | 
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changeset | 270 | val params' = Term.variant_frees rule (Logic.strip_params rule); | 
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changeset | 271 | val frees = rev (map Free params'); | 
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changeset | 272 | val concl = subst_bounds (frees, Logic.strip_assums_concl rule); | 
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changeset | 273 | val prems = map (curry subst_bounds frees) (Logic.strip_assums_hyp rule); | 
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changeset | 274 | val rule' = Logic.list_implies (prems, concl); | 
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changeset | 275 | val aprems = map (atomize_term (ProofContext.theory_of ctxt)) prems; | 
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changeset | 276 | val arule = list_all_free (params', Logic.list_implies (aprems, concl)); | 
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changeset | 277 | |
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changeset | 278 | fun check_ind err t = case dest_predicate cs params t of | 
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changeset | 279 | NONE => err (bad_app ^ | 
| 24920 | 280 | commas (map (Syntax.string_of_term ctxt) params)) | 
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changeset | 281 | | SOME (_, _, ys, _) => | 
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changeset | 282 | if exists (fn c => exists (fn t => Logic.occs (c, t)) ys) cs | 
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changeset | 283 | then err bad_ind_occ else (); | 
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changeset | 284 | |
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changeset | 285 | fun check_prem' prem t = | 
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changeset | 286 | if head_of t mem cs then | 
| 29006 | 287 | check_ind (err_in_prem ctxt err_name rule prem) t | 
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changeset | 288 | else (case t of | 
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changeset | 289 | Abs (_, _, t) => check_prem' prem t | 
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changeset | 290 | | t $ u => (check_prem' prem t; check_prem' prem u) | 
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changeset | 291 | | _ => ()); | 
| 5094 | 292 | |
| 10729 | 293 | fun check_prem (prem, aprem) = | 
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changeset | 294 | if can HOLogic.dest_Trueprop aprem then check_prem' prem prem | 
| 29006 | 295 | else err_in_prem ctxt err_name rule prem "Non-atomic premise"; | 
| 10729 | 296 | in | 
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changeset | 297 | (case concl of | 
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changeset | 298 |        Const ("Trueprop", _) $ t =>
 | 
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changeset | 299 | if head_of t mem cs then | 
| 29006 | 300 | (check_ind (err_in_rule ctxt err_name rule') t; | 
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changeset | 301 | List.app check_prem (prems ~~ aprems)) | 
| 29006 | 302 | else err_in_rule ctxt err_name rule' bad_concl | 
| 303 | | _ => err_in_rule ctxt err_name rule' bad_concl); | |
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changeset | 304 | ((binding, att), arule) | 
| 10729 | 305 | end; | 
| 5094 | 306 | |
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changeset | 307 | val rulify = | 
| 18222 | 308 | hol_simplify inductive_conj | 
| 18463 | 309 | #> hol_simplify inductive_rulify | 
| 310 | #> hol_simplify inductive_rulify_fallback | |
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changeset | 311 | #> Simplifier.norm_hhf; | 
| 10729 | 312 | |
| 313 | end; | |
| 314 | ||
| 5094 | 315 | |
| 6424 | 316 | |
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changeset | 317 | (** proofs for (co)inductive predicates **) | 
| 6424 | 318 | |
| 26534 | 319 | (* prove monotonicity *) | 
| 5094 | 320 | |
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changeset | 321 | fun prove_mono quiet_mode skip_mono fork_mono predT fp_fun monos ctxt = | 
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changeset | 322 | (message (quiet_mode orelse skip_mono andalso !quick_and_dirty orelse fork_mono) | 
| 26534 | 323 | " Proving monotonicity ..."; | 
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changeset | 324 | (if skip_mono then Skip_Proof.prove else if fork_mono then Goal.prove_future else Goal.prove) ctxt | 
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changeset | 325 | [] [] | 
| 17985 | 326 | (HOLogic.mk_Trueprop | 
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changeset | 327 |       (Const (@{const_name Orderings.mono}, (predT --> predT) --> HOLogic.boolT) $ fp_fun))
 | 
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changeset | 328 |     (fn _ => EVERY [rtac @{thm monoI} 1,
 | 
| 32652 | 329 |       REPEAT (resolve_tac [@{thm le_funI}, @{thm le_boolI'}] 1),
 | 
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changeset | 330 | REPEAT (FIRST | 
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changeset | 331 | [atac 1, | 
| 32952 | 332 | resolve_tac (maps mk_mono monos @ get_monos ctxt) 1, | 
| 32652 | 333 |          etac @{thm le_funE} 1, dtac @{thm le_boolD} 1])]));
 | 
| 5094 | 334 | |
| 6424 | 335 | |
| 10735 | 336 | (* prove introduction rules *) | 
| 5094 | 337 | |
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changeset | 338 | fun prove_intrs quiet_mode coind mono fp_def k params intr_ts rec_preds_defs ctxt = | 
| 5094 | 339 | let | 
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changeset | 340 | val _ = clean_message quiet_mode " Proving the introduction rules ..."; | 
| 5094 | 341 | |
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changeset | 342 | val unfold = funpow k (fn th => th RS fun_cong) | 
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changeset | 343 | (mono RS (fp_def RS | 
| 32652 | 344 |         (if coind then @{thm def_gfp_unfold} else @{thm def_lfp_unfold})));
 | 
| 5094 | 345 | |
| 346 | fun select_disj 1 1 = [] | |
| 347 | | select_disj _ 1 = [rtac disjI1] | |
| 348 | | select_disj n i = (rtac disjI2)::(select_disj (n - 1) (i - 1)); | |
| 349 | ||
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changeset | 350 | val rules = [refl, TrueI, notFalseI, exI, conjI]; | 
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changeset | 351 | |
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changeset | 352 | val intrs = map_index (fn (i, intr) => rulify | 
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changeset | 353 | (Skip_Proof.prove ctxt (map (fst o dest_Free) params) [] intr (fn _ => EVERY | 
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changeset | 354 | [rewrite_goals_tac rec_preds_defs, | 
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changeset | 355 | rtac (unfold RS iffD2) 1, | 
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changeset | 356 | EVERY1 (select_disj (length intr_ts) (i + 1)), | 
| 17985 | 357 | (*Not ares_tac, since refl must be tried before any equality assumptions; | 
| 358 | backtracking may occur if the premises have extra variables!*) | |
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changeset | 359 | DEPTH_SOLVE_1 (resolve_tac rules 1 APPEND assume_tac 1)]))) intr_ts | 
| 5094 | 360 | |
| 361 | in (intrs, unfold) end; | |
| 362 | ||
| 6424 | 363 | |
| 10735 | 364 | (* prove elimination rules *) | 
| 5094 | 365 | |
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changeset | 366 | fun prove_elims quiet_mode cs params intr_ts intr_names unfold rec_preds_defs ctxt = | 
| 5094 | 367 | let | 
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changeset | 368 | val _ = clean_message quiet_mode " Proving the elimination rules ..."; | 
| 5094 | 369 | |
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changeset | 370 | val ([pname], ctxt') = ctxt |> | 
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changeset | 371 | Variable.add_fixes (map (fst o dest_Free) params) |> snd |> | 
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changeset | 372 | Variable.variant_fixes ["P"]; | 
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changeset | 373 | val P = HOLogic.mk_Trueprop (Free (pname, HOLogic.boolT)); | 
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changeset | 374 | |
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changeset | 375 | fun dest_intr r = | 
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changeset | 376 | (the (dest_predicate cs params (HOLogic.dest_Trueprop (Logic.strip_assums_concl r))), | 
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changeset | 377 | Logic.strip_assums_hyp r, Logic.strip_params r); | 
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changeset | 378 | |
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changeset | 379 | val intrs = map dest_intr intr_ts ~~ intr_names; | 
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changeset | 380 | |
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changeset | 381 | val rules1 = [disjE, exE, FalseE]; | 
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changeset | 382 | val rules2 = [conjE, FalseE, notTrueE]; | 
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changeset | 383 | |
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changeset | 384 | fun prove_elim c = | 
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changeset | 385 | let | 
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changeset | 386 | val Ts = List.drop (binder_types (fastype_of c), length params); | 
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changeset | 387 | val (anames, ctxt'') = Variable.variant_fixes (mk_names "a" (length Ts)) ctxt'; | 
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changeset | 388 | val frees = map Free (anames ~~ Ts); | 
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changeset | 389 | |
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changeset | 390 | fun mk_elim_prem ((_, _, us, _), ts, params') = | 
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changeset | 391 | list_all (params', | 
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changeset | 392 | Logic.list_implies (map (HOLogic.mk_Trueprop o HOLogic.mk_eq) | 
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changeset | 393 | (frees ~~ us) @ ts, P)); | 
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changeset | 394 | val c_intrs = (List.filter (equal c o #1 o #1 o #1) intrs); | 
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changeset | 395 | val prems = HOLogic.mk_Trueprop (list_comb (c, params @ frees)) :: | 
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changeset | 396 | map mk_elim_prem (map #1 c_intrs) | 
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changeset | 397 | in | 
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changeset | 398 | (Skip_Proof.prove ctxt'' [] prems P | 
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changeset | 399 |           (fn {prems, ...} => EVERY
 | 
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changeset | 400 | [cut_facts_tac [hd prems] 1, | 
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changeset | 401 | rewrite_goals_tac rec_preds_defs, | 
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changeset | 402 | dtac (unfold RS iffD1) 1, | 
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changeset | 403 | REPEAT (FIRSTGOAL (eresolve_tac rules1)), | 
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changeset | 404 | REPEAT (FIRSTGOAL (eresolve_tac rules2)), | 
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changeset | 405 | EVERY (map (fn prem => | 
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changeset | 406 | DEPTH_SOLVE_1 (ares_tac [rewrite_rule rec_preds_defs prem, conjI] 1)) (tl prems))]) | 
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changeset | 407 | |> rulify | 
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changeset | 408 | |> singleton (ProofContext.export ctxt'' ctxt), | 
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changeset | 409 | map #2 c_intrs) | 
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changeset | 410 | end | 
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changeset | 411 | |
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changeset | 412 | in map prove_elim cs end; | 
| 5094 | 413 | |
| 6424 | 414 | |
| 10735 | 415 | (* derivation of simplified elimination rules *) | 
| 5094 | 416 | |
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changeset | 417 | local | 
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changeset | 418 | |
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changeset | 419 | (*delete needless equality assumptions*) | 
| 29064 | 420 | val refl_thin = Goal.prove_global @{theory HOL} [] [] @{prop "!!P. a = a ==> P ==> P"}
 | 
| 22838 | 421 | (fn _ => assume_tac 1); | 
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changeset | 422 | val elim_rls = [asm_rl, FalseE, refl_thin, conjE, exE]; | 
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changeset | 423 | val elim_tac = REPEAT o Tactic.eresolve_tac elim_rls; | 
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changeset | 424 | |
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changeset | 425 | fun simp_case_tac ss i = | 
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changeset | 426 | EVERY' [elim_tac, asm_full_simp_tac ss, elim_tac, REPEAT o bound_hyp_subst_tac] i; | 
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changeset | 427 | |
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changeset | 428 | in | 
| 9598 | 429 | |
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changeset | 430 | fun mk_cases ctxt prop = | 
| 7107 | 431 | let | 
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changeset | 432 | val thy = ProofContext.theory_of ctxt; | 
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changeset | 433 | val ss = simpset_of ctxt; | 
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changeset | 434 | |
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changeset | 435 | fun err msg = | 
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changeset | 436 | error (Pretty.string_of (Pretty.block | 
| 24920 | 437 | [Pretty.str msg, Pretty.fbrk, Syntax.pretty_term ctxt prop])); | 
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changeset | 438 | |
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changeset | 439 | val elims = Induct.find_casesP ctxt prop; | 
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changeset | 440 | |
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changeset | 441 | val cprop = Thm.cterm_of thy prop; | 
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changeset | 442 | val tac = ALLGOALS (simp_case_tac ss) THEN prune_params_tac; | 
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changeset | 443 | fun mk_elim rl = | 
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changeset | 444 | Thm.implies_intr cprop (Tactic.rule_by_tactic tac (Thm.assume cprop RS rl)) | 
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changeset | 445 | |> singleton (Variable.export (Variable.auto_fixes prop ctxt) ctxt); | 
| 7107 | 446 | in | 
| 447 | (case get_first (try mk_elim) elims of | |
| 15531 | 448 | SOME r => r | 
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changeset | 449 | | NONE => err "Proposition not an inductive predicate:") | 
| 7107 | 450 | end; | 
| 451 | ||
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changeset | 452 | end; | 
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changeset | 453 | |
| 7107 | 454 | |
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changeset | 455 | (* inductive_cases *) | 
| 7107 | 456 | |
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changeset | 457 | fun gen_inductive_cases prep_att prep_prop args lthy = | 
| 9598 | 458 | let | 
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changeset | 459 | val thy = ProofContext.theory_of lthy; | 
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changeset | 460 | val facts = args |> map (fn ((a, atts), props) => | 
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changeset | 461 | ((a, map (prep_att thy) atts), | 
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changeset | 462 | map (Thm.no_attributes o single o mk_cases lthy o prep_prop lthy) props)); | 
| 31177 | 463 | in lthy |> LocalTheory.notes Thm.generatedK facts |>> map snd end; | 
| 5094 | 464 | |
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changeset | 465 | val inductive_cases = gen_inductive_cases Attrib.intern_src Syntax.read_prop; | 
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changeset | 466 | val inductive_cases_i = gen_inductive_cases (K I) Syntax.check_prop; | 
| 7107 | 467 | |
| 6424 | 468 | |
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changeset | 469 | val ind_cases_setup = | 
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changeset | 470 |   Method.setup @{binding ind_cases}
 | 
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changeset | 471 | (Scan.lift (Scan.repeat1 Args.name_source -- | 
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changeset | 472 | Scan.optional (Args.$$$ "for" |-- Scan.repeat1 Args.name) []) >> | 
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changeset | 473 | (fn (raw_props, fixes) => fn ctxt => | 
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changeset | 474 | let | 
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changeset | 475 | val (_, ctxt') = Variable.add_fixes fixes ctxt; | 
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changeset | 476 | val props = Syntax.read_props ctxt' raw_props; | 
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changeset | 477 | val ctxt'' = fold Variable.declare_term props ctxt'; | 
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changeset | 478 | val rules = ProofContext.export ctxt'' ctxt (map (mk_cases ctxt'') props) | 
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changeset | 479 | in Method.erule 0 rules end)) | 
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changeset | 480 | "dynamic case analysis on predicates"; | 
| 9598 | 481 | |
| 482 | ||
| 10735 | 483 | (* prove induction rule *) | 
| 5094 | 484 | |
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changeset | 485 | fun prove_indrule quiet_mode cs argTs bs xs rec_const params intr_ts mono | 
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changeset | 486 | fp_def rec_preds_defs ctxt = | 
| 5094 | 487 | let | 
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changeset | 488 | val _ = clean_message quiet_mode " Proving the induction rule ..."; | 
| 20047 | 489 | val thy = ProofContext.theory_of ctxt; | 
| 5094 | 490 | |
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changeset | 491 | (* predicates for induction rule *) | 
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changeset | 492 | |
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changeset | 493 | val (pnames, ctxt') = ctxt |> | 
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changeset | 494 | Variable.add_fixes (map (fst o dest_Free) params) |> snd |> | 
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changeset | 495 | Variable.variant_fixes (mk_names "P" (length cs)); | 
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changeset | 496 | val preds = map Free (pnames ~~ | 
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changeset | 497 | map (fn c => List.drop (binder_types (fastype_of c), length params) ---> | 
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changeset | 498 | HOLogic.boolT) cs); | 
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changeset | 499 | |
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changeset | 500 | (* transform an introduction rule into a premise for induction rule *) | 
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changeset | 501 | |
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changeset | 502 | fun mk_ind_prem r = | 
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changeset | 503 | let | 
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changeset | 504 | fun subst s = (case dest_predicate cs params s of | 
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changeset | 505 | SOME (_, i, ys, (_, Ts)) => | 
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changeset | 506 | let | 
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changeset | 507 | val k = length Ts; | 
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changeset | 508 | val bs = map Bound (k - 1 downto 0); | 
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changeset | 509 | val P = list_comb (List.nth (preds, i), | 
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changeset | 510 | map (incr_boundvars k) ys @ bs); | 
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changeset | 511 | val Q = list_abs (mk_names "x" k ~~ Ts, | 
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changeset | 512 | HOLogic.mk_binop inductive_conj_name | 
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changeset | 513 | (list_comb (incr_boundvars k s, bs), P)) | 
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changeset | 514 | in (Q, case Ts of [] => SOME (s, P) | _ => NONE) end | 
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changeset | 515 | | NONE => (case s of | 
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changeset | 516 | (t $ u) => (fst (subst t) $ fst (subst u), NONE) | 
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changeset | 517 | | (Abs (a, T, t)) => (Abs (a, T, fst (subst t)), NONE) | 
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changeset | 518 | | _ => (s, NONE))); | 
| 7293 | 519 | |
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changeset | 520 | fun mk_prem (s, prems) = (case subst s of | 
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changeset | 521 | (_, SOME (t, u)) => t :: u :: prems | 
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changeset | 522 | | (t, _) => t :: prems); | 
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changeset | 523 | |
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changeset | 524 | val SOME (_, i, ys, _) = dest_predicate cs params | 
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changeset | 525 | (HOLogic.dest_Trueprop (Logic.strip_assums_concl r)) | 
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changeset | 526 | |
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changeset | 527 | in list_all_free (Logic.strip_params r, | 
| 30190 | 528 | Logic.list_implies (map HOLogic.mk_Trueprop (List.foldr mk_prem | 
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changeset | 529 | [] (map HOLogic.dest_Trueprop (Logic.strip_assums_hyp r))), | 
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changeset | 530 | HOLogic.mk_Trueprop (list_comb (List.nth (preds, i), ys)))) | 
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changeset | 531 | end; | 
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changeset | 532 | |
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changeset | 533 | val ind_prems = map mk_ind_prem intr_ts; | 
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changeset | 534 | |
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changeset | 535 | |
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changeset | 536 | (* make conclusions for induction rules *) | 
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changeset | 537 | |
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changeset | 538 | val Tss = map (binder_types o fastype_of) preds; | 
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changeset | 539 | val (xnames, ctxt'') = | 
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changeset | 540 | Variable.variant_fixes (mk_names "x" (length (flat Tss))) ctxt'; | 
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changeset | 541 | val mutual_ind_concl = HOLogic.mk_Trueprop (foldr1 HOLogic.mk_conj | 
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changeset | 542 | (map (fn (((xnames, Ts), c), P) => | 
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changeset | 543 | let val frees = map Free (xnames ~~ Ts) | 
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changeset | 544 | in HOLogic.mk_imp | 
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changeset | 545 | (list_comb (c, params @ frees), list_comb (P, frees)) | 
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changeset | 546 | end) (unflat Tss xnames ~~ Tss ~~ cs ~~ preds))); | 
| 5094 | 547 | |
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changeset | 548 | |
| 5094 | 549 | (* make predicate for instantiation of abstract induction rule *) | 
| 550 | ||
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changeset | 551 | val ind_pred = fold_rev lambda (bs @ xs) (foldr1 HOLogic.mk_conj | 
| 30190 | 552 | (map_index (fn (i, P) => List.foldr HOLogic.mk_imp | 
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changeset | 553 | (list_comb (P, make_args' argTs xs (binder_types (fastype_of P)))) | 
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changeset | 554 | (make_bool_args HOLogic.mk_not I bs i)) preds)); | 
| 5094 | 555 | |
| 556 | val ind_concl = HOLogic.mk_Trueprop | |
| 23881 | 557 | (HOLogic.mk_binrel "HOL.ord_class.less_eq" (rec_const, ind_pred)); | 
| 5094 | 558 | |
| 32652 | 559 |     val raw_fp_induct = (mono RS (fp_def RS @{thm def_lfp_induct}));
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changeset | 560 | |
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changeset | 561 | val induct = Skip_Proof.prove ctxt'' [] ind_prems ind_concl | 
| 20248 | 562 |       (fn {prems, ...} => EVERY
 | 
| 17985 | 563 | [rewrite_goals_tac [inductive_conj_def], | 
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changeset | 564 | DETERM (rtac raw_fp_induct 1), | 
| 32652 | 565 |          REPEAT (resolve_tac [@{thm le_funI}, @{thm le_boolI}] 1),
 | 
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changeset | 566 | rewrite_goals_tac simp_thms'', | 
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changeset | 567 | (*This disjE separates out the introduction rules*) | 
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changeset | 568 | REPEAT (FIRSTGOAL (eresolve_tac [disjE, exE, FalseE])), | 
| 5094 | 569 | (*Now break down the individual cases. No disjE here in case | 
| 570 | some premise involves disjunction.*) | |
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changeset | 571 | REPEAT (FIRSTGOAL (etac conjE ORELSE' bound_hyp_subst_tac)), | 
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changeset | 572 | REPEAT (FIRSTGOAL | 
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changeset | 573 | (resolve_tac [conjI, impI] ORELSE' (etac notE THEN' atac))), | 
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changeset | 574 | EVERY (map (fn prem => DEPTH_SOLVE_1 (ares_tac [rewrite_rule | 
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changeset | 575 | (inductive_conj_def :: rec_preds_defs @ simp_thms'') prem, | 
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changeset | 576 | conjI, refl] 1)) prems)]); | 
| 5094 | 577 | |
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changeset | 578 | val lemma = Skip_Proof.prove ctxt'' [] [] | 
| 17985 | 579 | (Logic.mk_implies (ind_concl, mutual_ind_concl)) (fn _ => EVERY | 
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changeset | 580 | [rewrite_goals_tac rec_preds_defs, | 
| 5094 | 581 | REPEAT (EVERY | 
| 582 | [REPEAT (resolve_tac [conjI, impI] 1), | |
| 32652 | 583 |             REPEAT (eresolve_tac [@{thm le_funE}, @{thm le_boolE}] 1),
 | 
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changeset | 584 | atac 1, | 
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changeset | 585 | rewrite_goals_tac simp_thms', | 
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changeset | 586 | atac 1])]) | 
| 5094 | 587 | |
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changeset | 588 | in singleton (ProofContext.export ctxt'' ctxt) (induct RS lemma) end; | 
| 5094 | 589 | |
| 6424 | 590 | |
| 591 | ||
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changeset | 592 | (** specification of (co)inductive predicates **) | 
| 10729 | 593 | |
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changeset | 594 | fun mk_ind_def quiet_mode skip_mono fork_mono alt_name coind cs intr_ts monos params cnames_syn ctxt = | 
| 5094 | 595 | let | 
| 24915 | 596 |     val fp_name = if coind then @{const_name Inductive.gfp} else @{const_name Inductive.lfp};
 | 
| 5094 | 597 | |
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changeset | 598 | val argTs = fold (fn c => fn Ts => Ts @ | 
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changeset | 599 | (List.drop (binder_types (fastype_of c), length params) \\ Ts)) cs []; | 
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changeset | 600 | val k = log 2 1 (length cs); | 
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changeset | 601 | val predT = replicate k HOLogic.boolT ---> argTs ---> HOLogic.boolT; | 
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changeset | 602 | val p :: xs = map Free (Variable.variant_frees ctxt intr_ts | 
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changeset | 603 |       (("p", predT) :: (mk_names "x" (length argTs) ~~ argTs)));
 | 
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changeset | 604 | val bs = map Free (Variable.variant_frees ctxt (p :: xs @ intr_ts) | 
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changeset | 605 | (map (rpair HOLogic.boolT) (mk_names "b" k))); | 
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changeset | 606 | |
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changeset | 607 | fun subst t = (case dest_predicate cs params t of | 
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changeset | 608 | SOME (_, i, ts, (Ts, Us)) => | 
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changeset | 609 | let | 
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changeset | 610 | val l = length Us; | 
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changeset | 611 | val zs = map Bound (l - 1 downto 0) | 
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changeset | 612 | in | 
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changeset | 613 | list_abs (map (pair "z") Us, list_comb (p, | 
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changeset | 614 | make_bool_args' bs i @ make_args argTs | 
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changeset | 615 | ((map (incr_boundvars l) ts ~~ Ts) @ (zs ~~ Us)))) | 
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changeset | 616 | end | 
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changeset | 617 | | NONE => (case t of | 
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changeset | 618 | t1 $ t2 => subst t1 $ subst t2 | 
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changeset | 619 | | Abs (x, T, u) => Abs (x, T, subst u) | 
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changeset | 620 | | _ => t)); | 
| 5149 | 621 | |
| 5094 | 622 | (* transform an introduction rule into a conjunction *) | 
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changeset | 623 | (* [| p_i t; ... |] ==> p_j u *) | 
| 5094 | 624 | (* is transformed into *) | 
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changeset | 625 | (* b_j & x_j = u & p b_j t & ... *) | 
| 5094 | 626 | |
| 627 | fun transform_rule r = | |
| 628 | let | |
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changeset | 629 | val SOME (_, i, ts, (Ts, _)) = dest_predicate cs params | 
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changeset | 630 | (HOLogic.dest_Trueprop (Logic.strip_assums_concl r)); | 
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changeset | 631 | val ps = make_bool_args HOLogic.mk_not I bs i @ | 
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changeset | 632 | map HOLogic.mk_eq (make_args' argTs xs Ts ~~ ts) @ | 
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changeset | 633 | map (subst o HOLogic.dest_Trueprop) | 
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changeset | 634 | (Logic.strip_assums_hyp r) | 
| 30190 | 635 | in List.foldr (fn ((x, T), P) => HOLogic.exists_const T $ (Abs (x, T, P))) | 
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changeset | 636 | (if null ps then HOLogic.true_const else foldr1 HOLogic.mk_conj ps) | 
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changeset | 637 | (Logic.strip_params r) | 
| 5094 | 638 | end | 
| 639 | ||
| 640 | (* make a disjunction of all introduction rules *) | |
| 641 | ||
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changeset | 642 | val fp_fun = fold_rev lambda (p :: bs @ xs) | 
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changeset | 643 | (if null intr_ts then HOLogic.false_const | 
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changeset | 644 | else foldr1 HOLogic.mk_disj (map transform_rule intr_ts)); | 
| 5094 | 645 | |
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changeset | 646 | (* add definiton of recursive predicates to theory *) | 
| 5094 | 647 | |
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changeset | 648 | val rec_name = | 
| 28965 | 649 | if Binding.is_empty alt_name then | 
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changeset | 650 | Binding.name (space_implode "_" (map (Binding.name_of o fst) cnames_syn)) | 
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changeset | 651 | else alt_name; | 
| 5094 | 652 | |
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changeset | 653 | val ((rec_const, (_, fp_def)), ctxt') = ctxt |> | 
| 26128 | 654 | LocalTheory.define Thm.internalK | 
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changeset | 655 | ((rec_name, case cnames_syn of [(_, syn)] => syn | _ => NoSyn), | 
| 28965 | 656 | (Attrib.empty_binding, fold_rev lambda params | 
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changeset | 657 | (Const (fp_name, (predT --> predT) --> predT) $ fp_fun))); | 
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changeset | 658 | val fp_def' = Simplifier.rewrite (HOL_basic_ss addsimps [fp_def]) | 
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changeset | 659 | (cterm_of (ProofContext.theory_of ctxt') (list_comb (rec_const, params))); | 
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changeset | 660 | val specs = if length cs < 2 then [] else | 
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changeset | 661 | map_index (fn (i, (name_mx, c)) => | 
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changeset | 662 | let | 
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changeset | 663 | val Ts = List.drop (binder_types (fastype_of c), length params); | 
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changeset | 664 | val xs = map Free (Variable.variant_frees ctxt intr_ts | 
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changeset | 665 | (mk_names "x" (length Ts) ~~ Ts)) | 
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changeset | 666 | in | 
| 28965 | 667 | (name_mx, (Attrib.empty_binding, fold_rev lambda (params @ xs) | 
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changeset | 668 | (list_comb (rec_const, params @ make_bool_args' bs i @ | 
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changeset | 669 | make_args argTs (xs ~~ Ts))))) | 
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changeset | 670 | end) (cnames_syn ~~ cs); | 
| 26128 | 671 | val (consts_defs, ctxt'') = fold_map (LocalTheory.define Thm.internalK) specs ctxt'; | 
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changeset | 672 | val preds = (case cs of [_] => [rec_const] | _ => map #1 consts_defs); | 
| 5094 | 673 | |
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changeset | 674 | val mono = prove_mono quiet_mode skip_mono fork_mono predT fp_fun monos ctxt''; | 
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changeset | 675 | val ((_, [mono']), ctxt''') = | 
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changeset | 676 | LocalTheory.note Thm.internalK (Attrib.empty_binding, [mono]) ctxt''; | 
| 5094 | 677 | |
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changeset | 678 | in (ctxt''', rec_name, mono', fp_def', map (#2 o #2) consts_defs, | 
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changeset | 679 | list_comb (rec_const, params), preds, argTs, bs, xs) | 
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changeset | 680 | end; | 
| 5094 | 681 | |
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changeset | 682 | fun declare_rules kind rec_binding coind no_ind cnames intrs intr_bindings intr_atts | 
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changeset | 683 | elims raw_induct ctxt = | 
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changeset | 684 | let | 
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changeset | 685 | val rec_name = Binding.name_of rec_binding; | 
| 32773 | 686 | fun rec_qualified qualified = Binding.qualify qualified rec_name; | 
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changeset | 687 | val intr_names = map Binding.name_of intr_bindings; | 
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changeset | 688 | val ind_case_names = RuleCases.case_names intr_names; | 
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changeset | 689 | val induct = | 
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changeset | 690 | if coind then | 
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changeset | 691 | (raw_induct, [RuleCases.case_names [rec_name], | 
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changeset | 692 | RuleCases.case_conclusion (rec_name, intr_names), | 
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changeset | 693 | RuleCases.consumes 1, Induct.coinduct_pred (hd cnames)]) | 
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changeset | 694 | else if no_ind orelse length cnames > 1 then | 
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changeset | 695 | (raw_induct, [ind_case_names, RuleCases.consumes 0]) | 
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changeset | 696 | else (raw_induct RSN (2, rev_mp), [ind_case_names, RuleCases.consumes 1]); | 
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changeset | 697 | |
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changeset | 698 | val (intrs', ctxt1) = | 
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changeset | 699 | ctxt |> | 
| 26128 | 700 | LocalTheory.notes kind | 
| 32773 | 701 | (map (rec_qualified false) intr_bindings ~~ intr_atts ~~ map (fn th => [([th], | 
| 29868 | 702 | [Attrib.internal (K (ContextRules.intro_query NONE)), | 
| 31902 | 703 | Attrib.internal (K Nitpick_Ind_Intros.add)])]) intrs) |>> | 
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changeset | 704 | map (hd o snd); | 
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changeset | 705 | val (((_, elims'), (_, [induct'])), ctxt2) = | 
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changeset | 706 | ctxt1 |> | 
| 32773 | 707 | LocalTheory.note kind ((rec_qualified true (Binding.name "intros"), []), intrs') ||>> | 
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changeset | 708 | fold_map (fn (name, (elim, cases)) => | 
| 32773 | 709 | LocalTheory.note kind ((Binding.qualify true (Long_Name.base_name name) (Binding.name "cases"), | 
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changeset | 710 | [Attrib.internal (K (RuleCases.case_names cases)), | 
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changeset | 711 | Attrib.internal (K (RuleCases.consumes 1)), | 
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changeset | 712 | Attrib.internal (K (Induct.cases_pred name)), | 
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changeset | 713 | Attrib.internal (K (ContextRules.elim_query NONE))]), [elim]) #> | 
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changeset | 714 | apfst (hd o snd)) (if null elims then [] else cnames ~~ elims) ||>> | 
| 28107 | 715 | LocalTheory.note kind | 
| 32773 | 716 | ((rec_qualified true (Binding.name (coind_prefix coind ^ "induct")), | 
| 28107 | 717 | map (Attrib.internal o K) (#2 induct)), [rulify (#1 induct)]); | 
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changeset | 718 | |
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changeset | 719 | val ctxt3 = if no_ind orelse coind then ctxt2 else | 
| 32172 | 720 | let val inducts = cnames ~~ Project_Rule.projects ctxt2 (1 upto length cnames) induct' | 
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changeset | 721 | in | 
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changeset | 722 | ctxt2 |> | 
| 32773 | 723 | LocalTheory.notes kind [((rec_qualified true (Binding.name "inducts"), []), | 
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changeset | 724 | inducts |> map (fn (name, th) => ([th], | 
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changeset | 725 | [Attrib.internal (K ind_case_names), | 
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changeset | 726 | Attrib.internal (K (RuleCases.consumes 1)), | 
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changeset | 727 | Attrib.internal (K (Induct.induct_pred name))])))] |> snd | 
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changeset | 728 | end | 
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changeset | 729 | in (intrs', elims', induct', ctxt3) end; | 
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changeset | 730 | |
| 26534 | 731 | type inductive_flags = | 
| 29581 | 732 |   {quiet_mode: bool, verbose: bool, kind: string, alt_name: binding,
 | 
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changeset | 733 | coind: bool, no_elim: bool, no_ind: bool, skip_mono: bool, fork_mono: bool} | 
| 26534 | 734 | |
| 735 | type add_ind_def = | |
| 736 | inductive_flags -> | |
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changeset | 737 | term list -> (Attrib.binding * term) list -> thm list -> | 
| 29581 | 738 | term list -> (binding * mixfix) list -> | 
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changeset | 739 | local_theory -> inductive_result * local_theory | 
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changeset | 740 | |
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changeset | 741 | fun add_ind_def {quiet_mode, verbose, kind, alt_name, coind, no_elim, no_ind, skip_mono, fork_mono}
 | 
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changeset | 742 | cs intros monos params cnames_syn ctxt = | 
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changeset | 743 | let | 
| 25288 | 744 | val _ = null cnames_syn andalso error "No inductive predicates given"; | 
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changeset | 745 | val names = map (Binding.name_of o fst) cnames_syn; | 
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changeset | 746 | val _ = message (quiet_mode andalso not verbose) | 
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changeset | 747 |       ("Proofs for " ^ coind_prefix coind ^ "inductive predicate(s) " ^ commas_quote names);
 | 
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changeset | 748 | |
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changeset | 749 | val cnames = map (LocalTheory.full_name ctxt o #1) cnames_syn; (* FIXME *) | 
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changeset | 750 | val ((intr_names, intr_atts), intr_ts) = | 
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changeset | 751 | apfst split_list (split_list (map (check_rule ctxt cs params) intros)); | 
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changeset | 752 | |
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changeset | 753 | val (ctxt1, rec_name, mono, fp_def, rec_preds_defs, rec_const, preds, | 
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changeset | 754 | argTs, bs, xs) = mk_ind_def quiet_mode skip_mono fork_mono alt_name coind cs intr_ts | 
| 26534 | 755 | monos params cnames_syn ctxt; | 
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changeset | 756 | |
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changeset | 757 | val (intrs, unfold) = prove_intrs quiet_mode coind mono fp_def (length bs + length xs) | 
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changeset | 758 | params intr_ts rec_preds_defs ctxt1; | 
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changeset | 759 | val elims = if no_elim then [] else | 
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changeset | 760 | prove_elims quiet_mode cs params intr_ts (map Binding.name_of intr_names) | 
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changeset | 761 | unfold rec_preds_defs ctxt1; | 
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changeset | 762 | val raw_induct = zero_var_indexes | 
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changeset | 763 | (if no_ind then Drule.asm_rl else | 
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changeset | 764 | if coind then | 
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changeset | 765 | singleton (ProofContext.export | 
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changeset | 766 | (snd (Variable.add_fixes (map (fst o dest_Free) params) ctxt1)) ctxt1) | 
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changeset | 767 | (rotate_prems ~1 (ObjectLogic.rulify | 
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changeset | 768 | (fold_rule rec_preds_defs | 
| 32652 | 769 | (rewrite_rule simp_thms''' | 
| 770 |                 (mono RS (fp_def RS @{thm def_coinduct}))))))
 | |
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changeset | 771 | else | 
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changeset | 772 | prove_indrule quiet_mode cs argTs bs xs rec_const params intr_ts mono fp_def | 
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changeset | 773 | rec_preds_defs ctxt1); | 
| 5094 | 774 | |
| 26128 | 775 | val (intrs', elims', induct, ctxt2) = declare_rules kind rec_name coind no_ind | 
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changeset | 776 | cnames intrs intr_names intr_atts elims raw_induct ctxt1; | 
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changeset | 777 | |
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changeset | 778 | val result = | 
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changeset | 779 |       {preds = preds,
 | 
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changeset | 780 | intrs = intrs', | 
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changeset | 781 | elims = elims', | 
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changeset | 782 | raw_induct = rulify raw_induct, | 
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changeset | 783 | induct = induct}; | 
| 21367 
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changeset | 784 | |
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changeset | 785 | val ctxt3 = ctxt2 | 
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changeset | 786 | |> LocalTheory.declaration (fn phi => | 
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changeset | 787 | let val result' = morph_result phi result; | 
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changeset | 788 |         in put_inductives cnames (*global names!?*) ({names = cnames, coind = coind}, result') end);
 | 
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changeset | 789 | in (result, ctxt3) end; | 
| 5094 | 790 | |
| 6424 | 791 | |
| 10735 | 792 | (* external interfaces *) | 
| 5094 | 793 | |
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changeset | 794 | fun gen_add_inductive_i mk_def | 
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changeset | 795 |     (flags as {quiet_mode, verbose, kind, alt_name, coind, no_elim, no_ind, skip_mono, fork_mono})
 | 
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changeset | 796 | cnames_syn pnames spec monos lthy = | 
| 5094 | 797 | let | 
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changeset | 798 | val thy = ProofContext.theory_of lthy; | 
| 6424 | 799 | val _ = Theory.requires thy "Inductive" (coind_prefix coind ^ "inductive definitions"); | 
| 5094 | 800 | |
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changeset | 801 | |
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changeset | 802 | (* abbrevs *) | 
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changeset | 803 | |
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changeset | 804 | val (_, ctxt1) = Variable.add_fixes (map (Binding.name_of o fst o fst) cnames_syn) lthy; | 
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changeset | 805 | |
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changeset | 806 | fun get_abbrev ((name, atts), t) = | 
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changeset | 807 | if can (Logic.strip_assums_concl #> Logic.dest_equals) t then | 
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changeset | 808 | let | 
| 29006 | 809 | val _ = Binding.is_empty name andalso null atts orelse | 
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changeset | 810 | error "Abbreviations may not have names or attributes"; | 
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changeset | 811 | val ((x, T), rhs) = LocalDefs.abs_def (snd (LocalDefs.cert_def ctxt1 t)); | 
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changeset | 812 | val var = | 
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changeset | 813 | (case find_first (fn ((c, _), _) => Binding.name_of c = x) cnames_syn of | 
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changeset | 814 |               NONE => error ("Undeclared head of abbreviation " ^ quote x)
 | 
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changeset | 815 | | SOME ((b, T'), mx) => | 
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changeset | 816 |                 if T <> T' then error ("Bad type specification for abbreviation " ^ quote x)
 | 
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changeset | 817 | else (b, mx)); | 
| 
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changeset | 818 | in SOME (var, rhs) end | 
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changeset | 819 | else NONE; | 
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changeset | 820 | |
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changeset | 821 | val abbrevs = map_filter get_abbrev spec; | 
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changeset | 822 | val bs = map (Binding.name_of o fst o fst) abbrevs; | 
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changeset | 823 | |
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changeset | 824 | |
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changeset | 825 | (* predicates *) | 
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changeset | 826 | |
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changeset | 827 | val pre_intros = filter_out (is_some o get_abbrev) spec; | 
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changeset | 828 | val cnames_syn' = filter_out (member (op =) bs o Binding.name_of o fst o fst) cnames_syn; | 
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changeset | 829 | val cs = map (Free o apfst Binding.name_of o fst) cnames_syn'; | 
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changeset | 830 | val ps = map Free pnames; | 
| 5094 | 831 | |
| 30223 
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changeset | 832 | val (_, ctxt2) = lthy |> Variable.add_fixes (map (Binding.name_of o fst o fst) cnames_syn'); | 
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changeset | 833 | val _ = map (fn abbr => LocalDefs.fixed_abbrev abbr ctxt2) abbrevs; | 
| 
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changeset | 834 | val ctxt3 = ctxt2 |> fold (snd oo LocalDefs.fixed_abbrev) abbrevs; | 
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changeset | 835 | val expand = Assumption.export_term ctxt3 lthy #> ProofContext.cert_term lthy; | 
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changeset | 836 | |
| 
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changeset | 837 | fun close_rule r = list_all_free (rev (fold_aterms | 
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changeset | 838 | (fn t as Free (v as (s, _)) => | 
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changeset | 839 | if Variable.is_fixed ctxt1 s orelse | 
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changeset | 840 | member (op =) ps t then I else insert (op =) v | 
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changeset | 841 | | _ => I) r []), r); | 
| 5094 | 842 | |
| 26736 
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changeset | 843 | val intros = map (apsnd (Syntax.check_term lthy #> close_rule #> expand)) pre_intros; | 
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changeset | 844 | val preds = map (fn ((c, _), mx) => (c, mx)) cnames_syn'; | 
| 21048 
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changeset | 845 | in | 
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changeset | 846 | lthy | 
| 
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changeset | 847 | |> mk_def flags cs intros monos ps preds | 
| 
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changeset | 848 | ||> fold (snd oo LocalTheory.abbrev Syntax.mode_default) abbrevs | 
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changeset | 849 | end; | 
| 5094 | 850 | |
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changeset | 851 | fun gen_add_inductive mk_def verbose coind cnames_syn pnames_syn intro_srcs raw_monos int lthy = | 
| 5094 | 852 | let | 
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changeset | 853 | val ((vars, intrs), _) = lthy | 
| 
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changeset | 854 | |> ProofContext.set_mode ProofContext.mode_abbrev | 
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changeset | 855 | |> Specification.read_spec (cnames_syn @ pnames_syn) intro_srcs; | 
| 24721 | 856 | val (cs, ps) = chop (length cnames_syn) vars; | 
| 857 | val monos = Attrib.eval_thms lthy raw_monos; | |
| 31177 | 858 |     val flags = {quiet_mode = false, verbose = verbose, kind = Thm.generatedK,
 | 
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changeset | 859 | alt_name = Binding.empty, coind = coind, no_elim = false, no_ind = false, | 
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changeset | 860 | skip_mono = false, fork_mono = not int}; | 
| 26128 | 861 | in | 
| 862 | lthy | |
| 863 | |> LocalTheory.set_group (serial_string ()) | |
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changeset | 864 | |> gen_add_inductive_i mk_def flags cs (map (apfst Binding.name_of o fst) ps) intrs monos | 
| 26128 | 865 | end; | 
| 5094 | 866 | |
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changeset | 867 | val add_inductive_i = gen_add_inductive_i add_ind_def; | 
| 
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changeset | 868 | val add_inductive = gen_add_inductive add_ind_def; | 
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changeset | 869 | |
| 26128 | 870 | fun add_inductive_global group flags cnames_syn pnames pre_intros monos thy = | 
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changeset | 871 | let | 
| 29006 | 872 | val name = Sign.full_name thy (fst (fst (hd cnames_syn))); | 
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changeset | 873 | val ctxt' = thy | 
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changeset | 874 | |> TheoryTarget.init NONE | 
| 26128 | 875 | |> LocalTheory.set_group group | 
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changeset | 876 | |> add_inductive_i flags cnames_syn pnames pre_intros monos |> snd | 
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changeset | 877 | |> LocalTheory.exit; | 
| 
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changeset | 878 | val info = #2 (the_inductive ctxt' name); | 
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changeset | 879 | in (info, ProofContext.theory_of ctxt') end; | 
| 6424 | 880 | |
| 881 | ||
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changeset | 882 | (* read off arities of inductive predicates from raw induction rule *) | 
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changeset | 883 | fun arities_of induct = | 
| 
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changeset | 884 | map (fn (_ $ t $ u) => | 
| 
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changeset | 885 | (fst (dest_Const (head_of t)), length (snd (strip_comb u)))) | 
| 
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changeset | 886 | (HOLogic.dest_conj (HOLogic.dest_Trueprop (concl_of induct))); | 
| 
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changeset | 887 | |
| 
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changeset | 888 | (* read off parameters of inductive predicate from raw induction rule *) | 
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changeset | 889 | fun params_of induct = | 
| 
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changeset | 890 | let | 
| 
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changeset | 891 | val (_ $ t $ u :: _) = | 
| 
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changeset | 892 | HOLogic.dest_conj (HOLogic.dest_Trueprop (concl_of induct)); | 
| 
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changeset | 893 | val (_, ts) = strip_comb t; | 
| 
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changeset | 894 | val (_, us) = strip_comb u | 
| 
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changeset | 895 | in | 
| 
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changeset | 896 | List.take (ts, length ts - length us) | 
| 
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changeset | 897 | end; | 
| 
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changeset | 898 | |
| 
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changeset | 899 | val pname_of_intr = | 
| 
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changeset | 900 | concl_of #> HOLogic.dest_Trueprop #> head_of #> dest_Const #> fst; | 
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changeset | 901 | |
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changeset | 902 | (* partition introduction rules according to predicate name *) | 
| 25822 | 903 | fun gen_partition_rules f induct intros = | 
| 904 | fold_rev (fn r => AList.map_entry op = (pname_of_intr (f r)) (cons r)) intros | |
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changeset | 905 | (map (rpair [] o fst) (arities_of induct)); | 
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changeset | 906 | |
| 25822 | 907 | val partition_rules = gen_partition_rules I; | 
| 908 | fun partition_rules' induct = gen_partition_rules fst induct; | |
| 909 | ||
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changeset | 910 | fun unpartition_rules intros xs = | 
| 
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changeset | 911 | fold_map (fn r => AList.map_entry_yield op = (pname_of_intr r) | 
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changeset | 912 | (fn x :: xs => (x, xs)) #>> the) intros xs |> fst; | 
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changeset | 913 | |
| 
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changeset | 914 | (* infer order of variables in intro rules from order of quantifiers in elim rule *) | 
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changeset | 915 | fun infer_intro_vars elim arity intros = | 
| 
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changeset | 916 | let | 
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changeset | 917 | val thy = theory_of_thm elim; | 
| 
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changeset | 918 | val _ :: cases = prems_of elim; | 
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changeset | 919 | val used = map (fst o fst) (Term.add_vars (prop_of elim) []); | 
| 
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changeset | 920 | fun mtch (t, u) = | 
| 
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changeset | 921 | let | 
| 
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changeset | 922 | val params = Logic.strip_params t; | 
| 
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changeset | 923 | val vars = map (Var o apfst (rpair 0)) | 
| 
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changeset | 924 | (Name.variant_list used (map fst params) ~~ map snd params); | 
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changeset | 925 | val ts = map (curry subst_bounds (rev vars)) | 
| 
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changeset | 926 | (List.drop (Logic.strip_assums_hyp t, arity)); | 
| 
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changeset | 927 | val us = Logic.strip_imp_prems u; | 
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changeset | 928 | val tab = fold (Pattern.first_order_match thy) (ts ~~ us) | 
| 
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changeset | 929 | (Vartab.empty, Vartab.empty); | 
| 
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changeset | 930 | in | 
| 32035 | 931 | map (Envir.subst_term tab) vars | 
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changeset | 932 | end | 
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changeset | 933 | in | 
| 
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changeset | 934 | map (mtch o apsnd prop_of) (cases ~~ intros) | 
| 
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changeset | 935 | end; | 
| 
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changeset | 936 | |
| 
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changeset | 937 | |
| 25978 | 938 | |
| 6437 | 939 | (** package setup **) | 
| 940 | ||
| 941 | (* setup theory *) | |
| 942 | ||
| 8634 | 943 | val setup = | 
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changeset | 944 | ind_cases_setup #> | 
| 30528 | 945 |   Attrib.setup @{binding mono} (Attrib.add_del mono_add mono_del)
 | 
| 946 | "declaration of monotonicity rule"; | |
| 6437 | 947 | |
| 948 | ||
| 949 | (* outer syntax *) | |
| 6424 | 950 | |
| 17057 | 951 | local structure P = OuterParse and K = OuterKeyword in | 
| 6424 | 952 | |
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changeset | 953 | val _ = OuterKeyword.keyword "monos"; | 
| 24867 | 954 | |
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changeset | 955 | fun gen_ind_decl mk_def coind = | 
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changeset | 956 | P.fixes -- P.for_fixes -- | 
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changeset | 957 | Scan.optional SpecParse.where_alt_specs [] -- | 
| 22102 | 958 | Scan.optional (P.$$$ "monos" |-- P.!!! SpecParse.xthms1) [] | 
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changeset | 959 | >> (fn (((preds, params), specs), monos) => | 
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changeset | 960 | (snd oo gen_add_inductive mk_def true coind preds params specs monos)); | 
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changeset | 961 | |
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changeset | 962 | val ind_decl = gen_ind_decl add_ind_def; | 
| 6424 | 963 | |
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changeset | 964 | val _ = OuterSyntax.local_theory' "inductive" "define inductive predicates" K.thy_decl (ind_decl false); | 
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changeset | 965 | val _ = OuterSyntax.local_theory' "coinductive" "define coinductive predicates" K.thy_decl (ind_decl true); | 
| 6723 | 966 | |
| 24867 | 967 | val _ = | 
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changeset | 968 | OuterSyntax.local_theory "inductive_cases" | 
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changeset | 969 | "create simplified instances of elimination rules (improper)" K.thy_script | 
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changeset | 970 | (P.and_list1 SpecParse.specs >> (snd oo inductive_cases)); | 
| 7107 | 971 | |
| 5094 | 972 | end; | 
| 6424 | 973 | |
| 974 | end; |