| author | bulwahn | 
| Thu, 19 Nov 2009 10:49:43 +0100 | |
| changeset 33757 | bc75dbbbf3e6 | 
| parent 33643 | b275f26a638b | 
| child 33832 | cff42395c246 | 
| permissions | -rw-r--r-- | 
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changeset | 1 | (* Title: Pure/drule.ML | 
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changeset | 2 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | 
| 0 | 3 | |
| 3766 | 4 | Derived rules and other operations on theorems. | 
| 0 | 5 | *) | 
| 6 | ||
| 21578 | 7 | infix 0 RS RSN RL RLN MRS MRL OF COMP INCR_COMP COMP_INCR; | 
| 0 | 8 | |
| 5903 | 9 | signature BASIC_DRULE = | 
| 3766 | 10 | sig | 
| 18179 | 11 | val mk_implies: cterm * cterm -> cterm | 
| 12 | val list_implies: cterm list * cterm -> cterm | |
| 13 | val strip_imp_prems: cterm -> cterm list | |
| 14 | val strip_imp_concl: cterm -> cterm | |
| 15 | val cprems_of: thm -> cterm list | |
| 16 | val cterm_fun: (term -> term) -> (cterm -> cterm) | |
| 17 | val ctyp_fun: (typ -> typ) -> (ctyp -> ctyp) | |
| 18 | val forall_intr_list: cterm list -> thm -> thm | |
| 19 | val forall_intr_frees: thm -> thm | |
| 20 | val forall_intr_vars: thm -> thm | |
| 21 | val forall_elim_list: cterm list -> thm -> thm | |
| 22 | val gen_all: thm -> thm | |
| 23 | val lift_all: cterm -> thm -> thm | |
| 24 | val freeze_thaw: thm -> thm * (thm -> thm) | |
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changeset | 25 | val freeze_thaw_robust: thm -> thm * (int -> thm -> thm) | 
| 18179 | 26 | val implies_elim_list: thm -> thm list -> thm | 
| 27 | val implies_intr_list: cterm list -> thm -> thm | |
| 18206 | 28 | val instantiate: (ctyp * ctyp) list * (cterm * cterm) list -> thm -> thm | 
| 21603 | 29 | val zero_var_indexes_list: thm list -> thm list | 
| 18179 | 30 | val zero_var_indexes: thm -> thm | 
| 31 | val implies_intr_hyps: thm -> thm | |
| 32 | val rotate_prems: int -> thm -> thm | |
| 33 | val rearrange_prems: int list -> thm -> thm | |
| 34 | val RSN: thm * (int * thm) -> thm | |
| 35 | val RS: thm * thm -> thm | |
| 36 | val RLN: thm list * (int * thm list) -> thm list | |
| 37 | val RL: thm list * thm list -> thm list | |
| 38 | val MRS: thm list * thm -> thm | |
| 39 | val MRL: thm list list * thm list -> thm list | |
| 40 | val OF: thm * thm list -> thm | |
| 41 | val compose: thm * int * thm -> thm list | |
| 42 | val COMP: thm * thm -> thm | |
| 21578 | 43 | val INCR_COMP: thm * thm -> thm | 
| 44 | val COMP_INCR: thm * thm -> thm | |
| 18179 | 45 | val cterm_instantiate: (cterm*cterm)list -> thm -> thm | 
| 46 | val size_of_thm: thm -> int | |
| 47 | val reflexive_thm: thm | |
| 48 | val symmetric_thm: thm | |
| 49 | val transitive_thm: thm | |
| 50 | val symmetric_fun: thm -> thm | |
| 51 | val extensional: thm -> thm | |
| 18820 | 52 | val equals_cong: thm | 
| 18179 | 53 | val imp_cong: thm | 
| 54 | val swap_prems_eq: thm | |
| 55 | val asm_rl: thm | |
| 56 | val cut_rl: thm | |
| 57 | val revcut_rl: thm | |
| 58 | val thin_rl: thm | |
| 4285 | 59 | val triv_forall_equality: thm | 
| 19051 | 60 | val distinct_prems_rl: thm | 
| 18179 | 61 | val swap_prems_rl: thm | 
| 62 | val equal_intr_rule: thm | |
| 63 | val equal_elim_rule1: thm | |
| 19421 | 64 | val equal_elim_rule2: thm | 
| 18179 | 65 | val instantiate': ctyp option list -> cterm option list -> thm -> thm | 
| 5903 | 66 | end; | 
| 67 | ||
| 68 | signature DRULE = | |
| 69 | sig | |
| 70 | include BASIC_DRULE | |
| 19999 | 71 | val generalize: string list * string list -> thm -> thm | 
| 15949 | 72 | val list_comb: cterm * cterm list -> cterm | 
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changeset | 73 | val strip_comb: cterm -> cterm * cterm list | 
| 15262 | 74 | val strip_type: ctyp -> ctyp list * ctyp | 
| 15949 | 75 | val beta_conv: cterm -> cterm -> cterm | 
| 27156 | 76 | val types_sorts: thm -> (indexname-> typ option) * (indexname-> sort option) | 
| 17713 | 77 | val flexflex_unique: thm -> thm | 
| 32958 | 78 | val standard: thm -> thm | 
| 79 | val standard': thm -> thm | |
| 30342 | 80 | val get_def: theory -> xstring -> thm | 
| 33277 | 81 | val store_thm: binding -> thm -> thm | 
| 82 | val store_standard_thm: binding -> thm -> thm | |
| 83 | val store_thm_open: binding -> thm -> thm | |
| 84 | val store_standard_thm_open: binding -> thm -> thm | |
| 11975 | 85 | val compose_single: thm * int * thm -> thm | 
| 18468 | 86 | val imp_cong_rule: thm -> thm -> thm | 
| 22939 | 87 | val arg_cong_rule: cterm -> thm -> thm | 
| 23568 | 88 | val binop_cong_rule: cterm -> thm -> thm -> thm | 
| 22939 | 89 | val fun_cong_rule: thm -> cterm -> thm | 
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changeset | 90 | val beta_eta_conversion: cterm -> thm | 
| 15925 | 91 | val eta_long_conversion: cterm -> thm | 
| 20861 | 92 | val eta_contraction_rule: thm -> thm | 
| 11975 | 93 | val norm_hhf_eq: thm | 
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changeset | 94 | val norm_hhf_eqs: thm list | 
| 12800 | 95 | val is_norm_hhf: term -> bool | 
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changeset | 96 | val norm_hhf: theory -> term -> term | 
| 20298 | 97 | val norm_hhf_cterm: cterm -> cterm | 
| 18025 | 98 | val protect: cterm -> cterm | 
| 99 | val protectI: thm | |
| 100 | val protectD: thm | |
| 18179 | 101 | val protect_cong: thm | 
| 18025 | 102 | val implies_intr_protected: cterm list -> thm -> thm | 
| 19775 | 103 | val termI: thm | 
| 104 | val mk_term: cterm -> thm | |
| 105 | val dest_term: thm -> cterm | |
| 21519 | 106 | val cterm_rule: (thm -> thm) -> cterm -> cterm | 
| 20881 | 107 | val term_rule: theory -> (thm -> thm) -> term -> term | 
| 24005 | 108 | val dummy_thm: thm | 
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changeset | 109 | val sort_constraintI: thm | 
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changeset | 110 | val sort_constraint_eq: thm | 
| 19504 | 111 | val unconstrainTs: thm -> thm | 
| 23423 | 112 | val with_subgoal: int -> (thm -> thm) -> thm -> thm | 
| 29344 | 113 | val comp_no_flatten: thm * int -> int -> thm -> thm | 
| 14081 | 114 | val rename_bvars: (string * string) list -> thm -> thm | 
| 115 | val rename_bvars': string option list -> thm -> thm | |
| 24426 | 116 | val incr_type_indexes: int -> thm -> thm | 
| 19124 | 117 | val incr_indexes: thm -> thm -> thm | 
| 118 | val incr_indexes2: thm -> thm -> thm -> thm | |
| 12297 | 119 | val remdups_rl: thm | 
| 18225 | 120 | val multi_resolve: thm list -> thm -> thm Seq.seq | 
| 121 | val multi_resolves: thm list -> thm list -> thm Seq.seq | |
| 13325 | 122 | val abs_def: thm -> thm | 
| 3766 | 123 | end; | 
| 0 | 124 | |
| 5903 | 125 | structure Drule: DRULE = | 
| 0 | 126 | struct | 
| 127 | ||
| 3991 | 128 | |
| 16682 | 129 | (** some cterm->cterm operations: faster than calling cterm_of! **) | 
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changeset | 130 | |
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changeset | 131 | (* A1==>...An==>B goes to [A1,...,An], where B is not an implication *) | 
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changeset | 132 | fun strip_imp_prems ct = | 
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changeset | 133 | let val (cA, cB) = Thm.dest_implies ct | 
| 20579 | 134 | in cA :: strip_imp_prems cB end | 
| 135 | handle TERM _ => []; | |
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changeset | 136 | |
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changeset | 137 | (* A1==>...An==>B goes to B, where B is not an implication *) | 
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changeset | 138 | fun strip_imp_concl ct = | 
| 20579 | 139 | (case Thm.term_of ct of | 
| 140 |     Const ("==>", _) $ _ $ _ => strip_imp_concl (Thm.dest_arg ct)
 | |
| 141 | | _ => ct); | |
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changeset | 142 | |
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changeset | 143 | (*The premises of a theorem, as a cterm list*) | 
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changeset | 144 | val cprems_of = strip_imp_prems o cprop_of; | 
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changeset | 145 | |
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changeset | 146 | fun cterm_fun f ct = Thm.cterm_of (Thm.theory_of_cterm ct) (f (Thm.term_of ct)); | 
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changeset | 147 | fun ctyp_fun f cT = Thm.ctyp_of (Thm.theory_of_ctyp cT) (f (Thm.typ_of cT)); | 
| 15797 | 148 | |
| 26487 | 149 | fun certify t = Thm.cterm_of (Context.the_theory (Context.the_thread_data ())) t; | 
| 9547 | 150 | |
| 27333 | 151 | val implies = certify Logic.implies; | 
| 19183 | 152 | fun mk_implies (A, B) = Thm.capply (Thm.capply implies A) B; | 
| 9547 | 153 | |
| 154 | (*cterm version of list_implies: [A1,...,An], B goes to [|A1;==>;An|]==>B *) | |
| 155 | fun list_implies([], B) = B | |
| 156 | | list_implies(A::AS, B) = mk_implies (A, list_implies(AS,B)); | |
| 157 | ||
| 15949 | 158 | (*cterm version of list_comb: maps (f, [t1,...,tn]) to f(t1,...,tn) *) | 
| 159 | fun list_comb (f, []) = f | |
| 160 | | list_comb (f, t::ts) = list_comb (Thm.capply f t, ts); | |
| 161 | ||
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changeset | 162 | (*cterm version of strip_comb: maps f(t1,...,tn) to (f, [t1,...,tn]) *) | 
| 18179 | 163 | fun strip_comb ct = | 
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changeset | 164 | let | 
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changeset | 165 | fun stripc (p as (ct, cts)) = | 
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changeset | 166 | let val (ct1, ct2) = Thm.dest_comb ct | 
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changeset | 167 | in stripc (ct1, ct2 :: cts) end handle CTERM _ => p | 
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changeset | 168 | in stripc (ct, []) end; | 
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changeset | 169 | |
| 15262 | 170 | (* cterm version of strip_type: maps [T1,...,Tn]--->T to ([T1,T2,...,Tn], T) *) | 
| 171 | fun strip_type cT = (case Thm.typ_of cT of | |
| 172 |     Type ("fun", _) =>
 | |
| 173 | let | |
| 174 | val [cT1, cT2] = Thm.dest_ctyp cT; | |
| 175 | val (cTs, cT') = strip_type cT2 | |
| 176 | in (cT1 :: cTs, cT') end | |
| 177 | | _ => ([], cT)); | |
| 178 | ||
| 15949 | 179 | (*Beta-conversion for cterms, where x is an abstraction. Simply returns the rhs | 
| 180 | of the meta-equality returned by the beta_conversion rule.*) | |
| 18179 | 181 | fun beta_conv x y = | 
| 20579 | 182 | Thm.dest_arg (cprop_of (Thm.beta_conversion false (Thm.capply x y))); | 
| 15949 | 183 | |
| 15875 | 184 | |
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changeset | 185 | |
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changeset | 186 | (*** Find the type (sort) associated with a (T)Var or (T)Free in a term | 
| 0 | 187 | Used for establishing default types (of variables) and sorts (of | 
| 188 | type variables) when reading another term. | |
| 189 | Index -1 indicates that a (T)Free rather than a (T)Var is wanted. | |
| 190 | ***) | |
| 191 | ||
| 192 | fun types_sorts thm = | |
| 20329 | 193 | let | 
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changeset | 194 | val vars = Thm.fold_terms Term.add_vars thm []; | 
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changeset | 195 | val frees = Thm.fold_terms Term.add_frees thm []; | 
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changeset | 196 | val tvars = Thm.fold_terms Term.add_tvars thm []; | 
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changeset | 197 | val tfrees = Thm.fold_terms Term.add_tfrees thm []; | 
| 20329 | 198 | fun types (a, i) = | 
| 199 | if i < 0 then AList.lookup (op =) frees a else AList.lookup (op =) vars (a, i); | |
| 200 | fun sorts (a, i) = | |
| 201 | if i < 0 then AList.lookup (op =) tfrees a else AList.lookup (op =) tvars (a, i); | |
| 202 | in (types, sorts) end; | |
| 0 | 203 | |
| 15669 | 204 | |
| 7636 | 205 | |
| 9455 | 206 | |
| 0 | 207 | (** Standardization of rules **) | 
| 208 | ||
| 19523 | 209 | (* type classes and sorts *) | 
| 210 | ||
| 19504 | 211 | fun unconstrainTs th = | 
| 20298 | 212 | fold (Thm.unconstrainT o Thm.ctyp_of (Thm.theory_of_thm th) o TVar) | 
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changeset | 213 | (Thm.fold_terms Term.add_tvars th []) th; | 
| 19504 | 214 | |
| 19730 | 215 | (*Generalization over a list of variables*) | 
| 216 | val forall_intr_list = fold_rev forall_intr; | |
| 0 | 217 | |
| 218 | (*Generalization over all suitable Free variables*) | |
| 219 | fun forall_intr_frees th = | |
| 19730 | 220 | let | 
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changeset | 221 | val thy = Thm.theory_of_thm th; | 
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changeset | 222 |       val {prop, hyps, tpairs, ...} = rep_thm th;
 | 
| 19730 | 223 | val fixed = fold Term.add_frees (Thm.terms_of_tpairs tpairs @ hyps) []; | 
| 224 | val frees = Term.fold_aterms (fn Free v => | |
| 225 | if member (op =) fixed v then I else insert (op =) v | _ => I) prop []; | |
| 226 | in fold (forall_intr o cterm_of thy o Free) frees th end; | |
| 0 | 227 | |
| 18535 | 228 | (*Generalization over Vars -- canonical order*) | 
| 229 | fun forall_intr_vars th = | |
| 20298 | 230 | fold forall_intr | 
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changeset | 231 | (map (Thm.cterm_of (Thm.theory_of_thm th) o Var) (Thm.fold_terms Term.add_vars th [])) th; | 
| 18535 | 232 | |
| 18025 | 233 | fun outer_params t = | 
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changeset | 234 | let val vs = Term.strip_all_vars t | 
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changeset | 235 | in Name.variant_list [] (map (Name.clean o #1) vs) ~~ map #2 vs end; | 
| 18025 | 236 | |
| 237 | (*generalize outermost parameters*) | |
| 238 | fun gen_all th = | |
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changeset | 239 | let | 
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changeset | 240 | val thy = Thm.theory_of_thm th; | 
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changeset | 241 |     val {prop, maxidx, ...} = Thm.rep_thm th;
 | 
| 18025 | 242 | val cert = Thm.cterm_of thy; | 
| 243 | fun elim (x, T) = Thm.forall_elim (cert (Var ((x, maxidx + 1), T))); | |
| 244 | in fold elim (outer_params prop) th end; | |
| 245 | ||
| 246 | (*lift vars wrt. outermost goal parameters | |
| 18118 | 247 | -- reverses the effect of gen_all modulo higher-order unification*) | 
| 18025 | 248 | fun lift_all goal th = | 
| 249 | let | |
| 250 | val thy = Theory.merge (Thm.theory_of_cterm goal, Thm.theory_of_thm th); | |
| 251 | val cert = Thm.cterm_of thy; | |
| 19421 | 252 | val maxidx = Thm.maxidx_of th; | 
| 18025 | 253 | val ps = outer_params (Thm.term_of goal) | 
| 254 | |> map (fn (x, T) => Var ((x, maxidx + 1), Logic.incr_tvar (maxidx + 1) T)); | |
| 255 | val Ts = map Term.fastype_of ps; | |
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changeset | 256 | val inst = Thm.fold_terms Term.add_vars th [] |> map (fn (xi, T) => | 
| 18025 | 257 | (cert (Var (xi, T)), cert (Term.list_comb (Var (xi, Ts ---> T), ps)))); | 
| 258 | in | |
| 259 | th |> Thm.instantiate ([], inst) | |
| 260 | |> fold_rev (Thm.forall_intr o cert) ps | |
| 261 | end; | |
| 262 | ||
| 19999 | 263 | (*direct generalization*) | 
| 264 | fun generalize names th = Thm.generalize names (Thm.maxidx_of th + 1) th; | |
| 9554 | 265 | |
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changeset | 266 | (*specialization over a list of cterms*) | 
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changeset | 267 | val forall_elim_list = fold forall_elim; | 
| 0 | 268 | |
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changeset | 269 | (*maps A1,...,An |- B to [| A1;...;An |] ==> B*) | 
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changeset | 270 | val implies_intr_list = fold_rev implies_intr; | 
| 0 | 271 | |
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changeset | 272 | (*maps [| A1;...;An |] ==> B and [A1,...,An] to B*) | 
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changeset | 273 | fun implies_elim_list impth ths = fold Thm.elim_implies ths impth; | 
| 0 | 274 | |
| 275 | (*Reset Var indexes to zero, renaming to preserve distinctness*) | |
| 21603 | 276 | fun zero_var_indexes_list [] = [] | 
| 277 | | zero_var_indexes_list ths = | |
| 278 | let | |
| 279 | val thy = Theory.merge_list (map Thm.theory_of_thm ths); | |
| 280 | val certT = Thm.ctyp_of thy and cert = Thm.cterm_of thy; | |
| 31977 | 281 | val (instT, inst) = Term_Subst.zero_var_indexes_inst (map Thm.full_prop_of ths); | 
| 21603 | 282 | val cinstT = map (fn (v, T) => (certT (TVar v), certT T)) instT; | 
| 283 | val cinst = map (fn (v, t) => (cert (Var v), cert t)) inst; | |
| 284 | in map (Thm.adjust_maxidx_thm ~1 o Thm.instantiate (cinstT, cinst)) ths end; | |
| 285 | ||
| 286 | val zero_var_indexes = singleton zero_var_indexes_list; | |
| 0 | 287 | |
| 288 | ||
| 14394 | 289 | (** Standard form of object-rule: no hypotheses, flexflex constraints, | 
| 290 | Frees, or outer quantifiers; all generality expressed by Vars of index 0.**) | |
| 10515 | 291 | |
| 16595 | 292 | (*Discharge all hypotheses.*) | 
| 293 | fun implies_intr_hyps th = | |
| 294 | fold Thm.implies_intr (#hyps (Thm.crep_thm th)) th; | |
| 295 | ||
| 14394 | 296 | (*Squash a theorem's flexflex constraints provided it can be done uniquely. | 
| 297 | This step can lose information.*) | |
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changeset | 298 | fun flexflex_unique th = | 
| 17713 | 299 | if null (tpairs_of th) then th else | 
| 23439 | 300 | case distinct Thm.eq_thm (Seq.list_of (flexflex_rule th)) of | 
| 301 | [th] => th | |
| 302 |     | []   => raise THM("flexflex_unique: impossible constraints", 0, [th])
 | |
| 303 |     |  _   => raise THM("flexflex_unique: multiple unifiers", 0, [th]);
 | |
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changeset | 304 | |
| 21603 | 305 | |
| 306 | (* legacy standard operations *) | |
| 307 | ||
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changeset | 308 | val standard' = | 
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changeset | 309 | implies_intr_hyps | 
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changeset | 310 | #> forall_intr_frees | 
| 19421 | 311 | #> `Thm.maxidx_of | 
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changeset | 312 | #-> (fn maxidx => | 
| 26653 | 313 | Thm.forall_elim_vars (maxidx + 1) | 
| 20904 | 314 | #> Thm.strip_shyps | 
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changeset | 315 | #> zero_var_indexes | 
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changeset | 316 | #> Thm.varifyT); | 
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changeset | 317 | |
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changeset | 318 | val standard = | 
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changeset | 319 | flexflex_unique | 
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changeset | 320 | #> standard' | 
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changeset | 321 | #> Thm.close_derivation; | 
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changeset | 322 | |
| 0 | 323 | |
| 8328 | 324 | (*Convert all Vars in a theorem to Frees. Also return a function for | 
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changeset | 325 | reversing that operation. DOES NOT WORK FOR TYPE VARIABLES. | 
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changeset | 326 | Similar code in type/freeze_thaw*) | 
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changeset | 327 | |
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changeset | 328 | fun freeze_thaw_robust th = | 
| 19878 | 329 | let val fth = Thm.freezeT th | 
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changeset | 330 | val thy = Thm.theory_of_thm fth | 
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changeset | 331 |      val {prop, tpairs, ...} = rep_thm fth
 | 
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changeset | 332 | in | 
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changeset | 333 | case List.foldr OldTerm.add_term_vars [] (prop :: Thm.terms_of_tpairs tpairs) of | 
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changeset | 334 | [] => (fth, fn i => fn x => x) (*No vars: nothing to do!*) | 
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changeset | 335 | | vars => | 
| 19753 | 336 | let fun newName (Var(ix,_)) = (ix, gensym (string_of_indexname ix)) | 
| 337 | val alist = map newName vars | |
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changeset | 338 | fun mk_inst (Var(v,T)) = | 
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changeset | 339 | (cterm_of thy (Var(v,T)), | 
| 17325 | 340 | cterm_of thy (Free(((the o AList.lookup (op =) alist) v), T))) | 
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changeset | 341 | val insts = map mk_inst vars | 
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changeset | 342 | fun thaw i th' = (*i is non-negative increment for Var indexes*) | 
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changeset | 343 | th' |> forall_intr_list (map #2 insts) | 
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changeset | 344 | |> forall_elim_list (map (Thm.incr_indexes_cterm i o #1) insts) | 
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changeset | 345 | in (Thm.instantiate ([],insts) fth, thaw) end | 
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changeset | 346 | end; | 
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changeset | 347 | |
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changeset | 348 | (*Basic version of the function above. No option to rename Vars apart in thaw. | 
| 19999 | 349 | The Frees created from Vars have nice names. FIXME: does not check for | 
| 19753 | 350 | clashes with variables in the assumptions, so delete and use freeze_thaw_robust instead?*) | 
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changeset | 351 | fun freeze_thaw th = | 
| 19878 | 352 | let val fth = Thm.freezeT th | 
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changeset | 353 | val thy = Thm.theory_of_thm fth | 
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changeset | 354 |      val {prop, tpairs, ...} = rep_thm fth
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changeset | 355 | in | 
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changeset | 356 | case List.foldr OldTerm.add_term_vars [] (prop :: Thm.terms_of_tpairs tpairs) of | 
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changeset | 357 | [] => (fth, fn x => x) | 
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changeset | 358 | | vars => | 
| 8328 | 359 | let fun newName (Var(ix,_), (pairs,used)) = | 
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changeset | 360 | let val v = Name.variant used (string_of_indexname ix) | 
| 8328 | 361 | in ((ix,v)::pairs, v::used) end; | 
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changeset | 362 | val (alist, _) = List.foldr newName ([], Library.foldr OldTerm.add_term_names | 
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changeset | 363 | (prop :: Thm.terms_of_tpairs tpairs, [])) vars | 
| 8328 | 364 | fun mk_inst (Var(v,T)) = | 
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changeset | 365 | (cterm_of thy (Var(v,T)), | 
| 17325 | 366 | cterm_of thy (Free(((the o AList.lookup (op =) alist) v), T))) | 
| 8328 | 367 | val insts = map mk_inst vars | 
| 368 | fun thaw th' = | |
| 369 | th' |> forall_intr_list (map #2 insts) | |
| 370 | |> forall_elim_list (map #1 insts) | |
| 371 | in (Thm.instantiate ([],insts) fth, thaw) end | |
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changeset | 372 | end; | 
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changeset | 373 | |
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changeset | 374 | (*Rotates a rule's premises to the left by k*) | 
| 23537 | 375 | fun rotate_prems 0 = I | 
| 31945 | 376 | | rotate_prems k = Thm.permute_prems 0 k; | 
| 23537 | 377 | |
| 23423 | 378 | fun with_subgoal i f = rotate_prems (i - 1) #> f #> rotate_prems (1 - i); | 
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changeset | 379 | |
| 31945 | 380 | (*Permute prems, where the i-th position in the argument list (counting from 0) | 
| 381 | gives the position within the original thm to be transferred to position i. | |
| 382 | Any remaining trailing positions are left unchanged.*) | |
| 383 | val rearrange_prems = | |
| 384 | let | |
| 385 | fun rearr new [] thm = thm | |
| 386 | | rearr new (p :: ps) thm = | |
| 387 | rearr (new + 1) | |
| 388 | (map (fn q => if new <= q andalso q < p then q + 1 else q) ps) | |
| 389 | (Thm.permute_prems (new + 1) (new - p) (Thm.permute_prems new (p - new) thm)) | |
| 11163 | 390 | in rearr 0 end; | 
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changeset | 391 | |
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changeset | 392 | (*Resolution: exactly one resolvent must be produced.*) | 
| 0 | 393 | fun tha RSN (i,thb) = | 
| 31945 | 394 | case Seq.chop 2 (Thm.biresolution false [(false,tha)] i thb) of | 
| 0 | 395 | ([th],_) => th | 
| 396 |     | ([],_)   => raise THM("RSN: no unifiers", i, [tha,thb])
 | |
| 397 |     |      _   => raise THM("RSN: multiple unifiers", i, [tha,thb]);
 | |
| 398 | ||
| 399 | (*resolution: P==>Q, Q==>R gives P==>R. *) | |
| 400 | fun tha RS thb = tha RSN (1,thb); | |
| 401 | ||
| 402 | (*For joining lists of rules*) | |
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changeset | 403 | fun thas RLN (i,thbs) = | 
| 31945 | 404 | let val resolve = Thm.biresolution false (map (pair false) thas) i | 
| 4270 | 405 | fun resb thb = Seq.list_of (resolve thb) handle THM _ => [] | 
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changeset | 406 | in maps resb thbs end; | 
| 0 | 407 | |
| 408 | fun thas RL thbs = thas RLN (1,thbs); | |
| 409 | ||
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changeset | 410 | (*Resolve a list of rules against bottom_rl from right to left; | 
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changeset | 411 | makes proof trees*) | 
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changeset | 412 | fun rls MRS bottom_rl = | 
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changeset | 413 | let fun rs_aux i [] = bottom_rl | 
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changeset | 414 | | rs_aux i (rl::rls) = rl RSN (i, rs_aux (i+1) rls) | 
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changeset | 415 | in rs_aux 1 rls end; | 
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changeset | 416 | |
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changeset | 417 | (*As above, but for rule lists*) | 
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changeset | 418 | fun rlss MRL bottom_rls = | 
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changeset | 419 | let fun rs_aux i [] = bottom_rls | 
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changeset | 420 | | rs_aux i (rls::rlss) = rls RLN (i, rs_aux (i+1) rlss) | 
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changeset | 421 | in rs_aux 1 rlss end; | 
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changeset | 422 | |
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changeset | 423 | (*A version of MRS with more appropriate argument order*) | 
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changeset | 424 | fun bottom_rl OF rls = rls MRS bottom_rl; | 
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changeset | 425 | |
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changeset | 426 | (*compose Q and [...,Qi,Q(i+1),...]==>R to [...,Q(i+1),...]==>R | 
| 0 | 427 | with no lifting or renaming! Q may contain ==> or meta-quants | 
| 428 | ALWAYS deletes premise i *) | |
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changeset | 429 | fun compose(tha,i,thb) = | 
| 31945 | 430 | distinct Thm.eq_thm (Seq.list_of (Thm.bicompose false (false,tha,0) i thb)); | 
| 0 | 431 | |
| 6946 | 432 | fun compose_single (tha,i,thb) = | 
| 24426 | 433 | case compose (tha,i,thb) of | 
| 6946 | 434 | [th] => th | 
| 24426 | 435 |   | _ => raise THM ("compose: unique result expected", i, [tha,thb]);
 | 
| 6946 | 436 | |
| 0 | 437 | (*compose Q and [Q1,Q2,...,Qk]==>R to [Q2,...,Qk]==>R getting unique result*) | 
| 438 | fun tha COMP thb = | |
| 24426 | 439 | case compose(tha,1,thb) of | 
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changeset | 440 | [th] => th | 
| 0 | 441 |       | _ =>   raise THM("COMP", 1, [tha,thb]);
 | 
| 442 | ||
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changeset | 443 | |
| 4016 | 444 | (** theorem equality **) | 
| 0 | 445 | |
| 446 | (*Useful "distance" function for BEST_FIRST*) | |
| 16720 | 447 | val size_of_thm = size_of_term o Thm.full_prop_of; | 
| 0 | 448 | |
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changeset | 449 | |
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changeset | 450 | |
| 0 | 451 | (*** Meta-Rewriting Rules ***) | 
| 452 | ||
| 33384 | 453 | val read_prop = certify o Simple_Syntax.read_prop; | 
| 26487 | 454 | |
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changeset | 455 | fun get_def thy = Thm.axiom thy o Name_Space.intern (Theory.axiom_space thy) o Thm.def_name; | 
| 30342 | 456 | |
| 26487 | 457 | fun store_thm name th = | 
| 33277 | 458 | Context.>>> (Context.map_theory_result (PureThy.store_thm (name, th))); | 
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changeset | 459 | |
| 26487 | 460 | fun store_thm_open name th = | 
| 33277 | 461 | Context.>>> (Context.map_theory_result (PureThy.store_thm_open (name, th))); | 
| 26487 | 462 | |
| 463 | fun store_standard_thm name th = store_thm name (standard th); | |
| 12135 | 464 | fun store_standard_thm_open name thm = store_thm_open name (standard' thm); | 
| 4016 | 465 | |
| 0 | 466 | val reflexive_thm = | 
| 26487 | 467 |   let val cx = certify (Var(("x",0),TVar(("'a",0),[])))
 | 
| 33277 | 468 | in store_standard_thm_open (Binding.name "reflexive") (Thm.reflexive cx) end; | 
| 0 | 469 | |
| 470 | val symmetric_thm = | |
| 33277 | 471 | let | 
| 472 | val xy = read_prop "x::'a == y::'a"; | |
| 473 | val thm = Thm.implies_intr xy (Thm.symmetric (Thm.assume xy)); | |
| 474 | in store_standard_thm_open (Binding.name "symmetric") thm end; | |
| 0 | 475 | |
| 476 | val transitive_thm = | |
| 33277 | 477 | let | 
| 478 | val xy = read_prop "x::'a == y::'a"; | |
| 479 | val yz = read_prop "y::'a == z::'a"; | |
| 480 | val xythm = Thm.assume xy; | |
| 481 | val yzthm = Thm.assume yz; | |
| 482 | val thm = Thm.implies_intr yz (Thm.transitive xythm yzthm); | |
| 483 | in store_standard_thm_open (Binding.name "transitive") thm end; | |
| 0 | 484 | |
| 4679 | 485 | fun symmetric_fun thm = thm RS symmetric_thm; | 
| 486 | ||
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changeset | 487 | fun extensional eq = | 
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changeset | 488 | let val eq' = | 
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changeset | 489 | abstract_rule "x" (Thm.dest_arg (fst (Thm.dest_equals (cprop_of eq)))) eq | 
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changeset | 490 | in equal_elim (eta_conversion (cprop_of eq')) eq' end; | 
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changeset | 491 | |
| 18820 | 492 | val equals_cong = | 
| 33277 | 493 | store_standard_thm_open (Binding.name "equals_cong") | 
| 494 | (Thm.reflexive (read_prop "x::'a == y::'a")); | |
| 18820 | 495 | |
| 10414 | 496 | val imp_cong = | 
| 497 | let | |
| 24241 | 498 | val ABC = read_prop "A ==> B::prop == C::prop" | 
| 499 | val AB = read_prop "A ==> B" | |
| 500 | val AC = read_prop "A ==> C" | |
| 501 | val A = read_prop "A" | |
| 10414 | 502 | in | 
| 33277 | 503 | store_standard_thm_open (Binding.name "imp_cong") (implies_intr ABC (equal_intr | 
| 10414 | 504 | (implies_intr AB (implies_intr A | 
| 505 | (equal_elim (implies_elim (assume ABC) (assume A)) | |
| 506 | (implies_elim (assume AB) (assume A))))) | |
| 507 | (implies_intr AC (implies_intr A | |
| 508 | (equal_elim (symmetric (implies_elim (assume ABC) (assume A))) | |
| 509 | (implies_elim (assume AC) (assume A))))))) | |
| 510 | end; | |
| 511 | ||
| 512 | val swap_prems_eq = | |
| 513 | let | |
| 24241 | 514 | val ABC = read_prop "A ==> B ==> C" | 
| 515 | val BAC = read_prop "B ==> A ==> C" | |
| 516 | val A = read_prop "A" | |
| 517 | val B = read_prop "B" | |
| 10414 | 518 | in | 
| 33277 | 519 | store_standard_thm_open (Binding.name "swap_prems_eq") | 
| 520 | (equal_intr | |
| 521 | (implies_intr ABC (implies_intr B (implies_intr A | |
| 522 | (implies_elim (implies_elim (assume ABC) (assume A)) (assume B))))) | |
| 523 | (implies_intr BAC (implies_intr A (implies_intr B | |
| 524 | (implies_elim (implies_elim (assume BAC) (assume B)) (assume A)))))) | |
| 10414 | 525 | end; | 
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changeset | 526 | |
| 22938 | 527 | val imp_cong_rule = Thm.combination o Thm.combination (Thm.reflexive implies); | 
| 528 | ||
| 23537 | 529 | fun arg_cong_rule ct th = Thm.combination (Thm.reflexive ct) th; (*AP_TERM in LCF/HOL*) | 
| 530 | fun fun_cong_rule th ct = Thm.combination th (Thm.reflexive ct); (*AP_THM in LCF/HOL*) | |
| 23568 | 531 | fun binop_cong_rule ct th1 th2 = Thm.combination (arg_cong_rule ct th1) th2; | 
| 0 | 532 | |
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changeset | 533 | local | 
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changeset | 534 | val dest_eq = Thm.dest_equals o cprop_of | 
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changeset | 535 | val rhs_of = snd o dest_eq | 
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changeset | 536 | in | 
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changeset | 537 | fun beta_eta_conversion t = | 
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changeset | 538 | let val thm = beta_conversion true t | 
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changeset | 539 | in transitive thm (eta_conversion (rhs_of thm)) end | 
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changeset | 540 | end; | 
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changeset | 541 | |
| 15925 | 542 | fun eta_long_conversion ct = transitive (beta_eta_conversion ct) | 
| 543 | (symmetric (beta_eta_conversion (cterm_fun (Pattern.eta_long []) ct))); | |
| 544 | ||
| 20861 | 545 | (*Contract all eta-redexes in the theorem, lest they give rise to needless abstractions*) | 
| 546 | fun eta_contraction_rule th = | |
| 547 | equal_elim (eta_conversion (cprop_of th)) th; | |
| 548 | ||
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changeset | 549 | |
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changeset | 550 | (* abs_def *) | 
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changeset | 551 | |
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changeset | 552 | (* | 
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changeset | 553 | f ?x1 ... ?xn == u | 
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changeset | 554 | -------------------- | 
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changeset | 555 | f == %x1 ... xn. u | 
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changeset | 556 | *) | 
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changeset | 557 | |
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changeset | 558 | local | 
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changeset | 559 | |
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changeset | 560 | fun contract_lhs th = | 
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changeset | 561 | Thm.transitive (Thm.symmetric (beta_eta_conversion | 
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changeset | 562 | (fst (Thm.dest_equals (cprop_of th))))) th; | 
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changeset | 563 | |
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changeset | 564 | fun var_args ct = | 
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changeset | 565 | (case try Thm.dest_comb ct of | 
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changeset | 566 | SOME (f, arg) => | 
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changeset | 567 | (case Thm.term_of arg of | 
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changeset | 568 | Var ((x, _), _) => update (eq_snd (op aconvc)) (x, arg) (var_args f) | 
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changeset | 569 | | _ => []) | 
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changeset | 570 | | NONE => []); | 
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changeset | 571 | |
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changeset | 572 | in | 
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changeset | 573 | |
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changeset | 574 | fun abs_def th = | 
| 18337 | 575 | let | 
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changeset | 576 | val th' = contract_lhs th; | 
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changeset | 577 | val args = var_args (Thm.lhs_of th'); | 
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changeset | 578 | in contract_lhs (fold (uncurry Thm.abstract_rule) args th') end; | 
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changeset | 579 | |
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changeset | 580 | end; | 
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changeset | 581 | |
| 18337 | 582 | |
| 18468 | 583 | |
| 15669 | 584 | (*** Some useful meta-theorems ***) | 
| 0 | 585 | |
| 586 | (*The rule V/V, obtains assumption solving for eresolve_tac*) | |
| 33277 | 587 | val asm_rl = store_standard_thm_open (Binding.name "asm_rl") (Thm.trivial (read_prop "?psi")); | 
| 588 | val _ = store_thm_open (Binding.name "_") asm_rl; | |
| 0 | 589 | |
| 590 | (*Meta-level cut rule: [| V==>W; V |] ==> W *) | |
| 4016 | 591 | val cut_rl = | 
| 33277 | 592 | store_standard_thm_open (Binding.name "cut_rl") | 
| 24241 | 593 | (Thm.trivial (read_prop "?psi ==> ?theta")); | 
| 0 | 594 | |
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changeset | 595 | (*Generalized elim rule for one conclusion; cut_rl with reversed premises: | 
| 0 | 596 | [| PROP V; PROP V ==> PROP W |] ==> PROP W *) | 
| 597 | val revcut_rl = | |
| 33277 | 598 | let | 
| 599 | val V = read_prop "V"; | |
| 600 | val VW = read_prop "V ==> W"; | |
| 4016 | 601 | in | 
| 33277 | 602 | store_standard_thm_open (Binding.name "revcut_rl") | 
| 4016 | 603 | (implies_intr V (implies_intr VW (implies_elim (assume VW) (assume V)))) | 
| 0 | 604 | end; | 
| 605 | ||
| 668 | 606 | (*for deleting an unwanted assumption*) | 
| 607 | val thin_rl = | |
| 33277 | 608 | let | 
| 609 | val V = read_prop "V"; | |
| 610 | val W = read_prop "W"; | |
| 611 | val thm = implies_intr V (implies_intr W (assume W)); | |
| 612 | in store_standard_thm_open (Binding.name "thin_rl") thm end; | |
| 668 | 613 | |
| 0 | 614 | (* (!!x. PROP ?V) == PROP ?V Allows removal of redundant parameters*) | 
| 615 | val triv_forall_equality = | |
| 33277 | 616 | let | 
| 617 | val V = read_prop "V"; | |
| 618 | val QV = read_prop "!!x::'a. V"; | |
| 619 |     val x = certify (Free ("x", Term.aT []));
 | |
| 4016 | 620 | in | 
| 33277 | 621 | store_standard_thm_open (Binding.name "triv_forall_equality") | 
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changeset | 622 | (equal_intr (implies_intr QV (forall_elim x (assume QV))) | 
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changeset | 623 | (implies_intr V (forall_intr x (assume V)))) | 
| 0 | 624 | end; | 
| 625 | ||
| 19051 | 626 | (* (PROP ?Phi ==> PROP ?Phi ==> PROP ?Psi) ==> | 
| 627 | (PROP ?Phi ==> PROP ?Psi) | |
| 628 | *) | |
| 629 | val distinct_prems_rl = | |
| 630 | let | |
| 33277 | 631 | val AAB = read_prop "Phi ==> Phi ==> Psi"; | 
| 24241 | 632 | val A = read_prop "Phi"; | 
| 19051 | 633 | in | 
| 33277 | 634 | store_standard_thm_open (Binding.name "distinct_prems_rl") | 
| 19051 | 635 | (implies_intr_list [AAB, A] (implies_elim_list (assume AAB) [assume A, assume A])) | 
| 636 | end; | |
| 637 | ||
| 1756 | 638 | (* (PROP ?PhiA ==> PROP ?PhiB ==> PROP ?Psi) ==> | 
| 639 | (PROP ?PhiB ==> PROP ?PhiA ==> PROP ?Psi) | |
| 640 | `thm COMP swap_prems_rl' swaps the first two premises of `thm' | |
| 641 | *) | |
| 642 | val swap_prems_rl = | |
| 33277 | 643 | let | 
| 644 | val cmajor = read_prop "PhiA ==> PhiB ==> Psi"; | |
| 645 | val major = assume cmajor; | |
| 646 | val cminor1 = read_prop "PhiA"; | |
| 647 | val minor1 = assume cminor1; | |
| 648 | val cminor2 = read_prop "PhiB"; | |
| 649 | val minor2 = assume cminor2; | |
| 650 | in | |
| 651 | store_standard_thm_open (Binding.name "swap_prems_rl") | |
| 652 | (implies_intr cmajor (implies_intr cminor2 (implies_intr cminor1 | |
| 653 | (implies_elim (implies_elim major minor1) minor2)))) | |
| 1756 | 654 | end; | 
| 655 | ||
| 3653 | 656 | (* [| PROP ?phi ==> PROP ?psi; PROP ?psi ==> PROP ?phi |] | 
| 657 | ==> PROP ?phi == PROP ?psi | |
| 8328 | 658 | Introduction rule for == as a meta-theorem. | 
| 3653 | 659 | *) | 
| 660 | val equal_intr_rule = | |
| 33277 | 661 | let | 
| 662 | val PQ = read_prop "phi ==> psi"; | |
| 663 | val QP = read_prop "psi ==> phi"; | |
| 4016 | 664 | in | 
| 33277 | 665 | store_standard_thm_open (Binding.name "equal_intr_rule") | 
| 4016 | 666 | (implies_intr PQ (implies_intr QP (equal_intr (assume PQ) (assume QP)))) | 
| 3653 | 667 | end; | 
| 668 | ||
| 19421 | 669 | (* PROP ?phi == PROP ?psi ==> PROP ?phi ==> PROP ?psi *) | 
| 13368 | 670 | val equal_elim_rule1 = | 
| 33277 | 671 | let | 
| 672 | val eq = read_prop "phi::prop == psi::prop"; | |
| 673 | val P = read_prop "phi"; | |
| 674 | in | |
| 675 | store_standard_thm_open (Binding.name "equal_elim_rule1") | |
| 676 | (Thm.equal_elim (assume eq) (assume P) |> implies_intr_list [eq, P]) | |
| 13368 | 677 | end; | 
| 4285 | 678 | |
| 19421 | 679 | (* PROP ?psi == PROP ?phi ==> PROP ?phi ==> PROP ?psi *) | 
| 680 | val equal_elim_rule2 = | |
| 33277 | 681 | store_standard_thm_open (Binding.name "equal_elim_rule2") | 
| 682 | (symmetric_thm RS equal_elim_rule1); | |
| 19421 | 683 | |
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changeset | 684 | (* PROP ?phi ==> PROP ?phi ==> PROP ?psi ==> PROP ?psi *) | 
| 12297 | 685 | val remdups_rl = | 
| 33277 | 686 | let | 
| 687 | val P = read_prop "phi"; | |
| 688 | val Q = read_prop "psi"; | |
| 689 | val thm = implies_intr_list [P, P, Q] (Thm.assume Q); | |
| 690 | in store_standard_thm_open (Binding.name "remdups_rl") thm end; | |
| 12297 | 691 | |
| 692 | ||
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changeset | 693 | |
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changeset | 694 | (** embedded terms and types **) | 
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changeset | 695 | |
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changeset | 696 | local | 
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changeset | 697 |   val A = certify (Free ("A", propT));
 | 
| 28674 | 698 | val axiom = Thm.unvarify o Thm.axiom (Context.the_theory (Context.the_thread_data ())); | 
| 699 | val prop_def = axiom "Pure.prop_def"; | |
| 700 | val term_def = axiom "Pure.term_def"; | |
| 701 | val sort_constraint_def = axiom "Pure.sort_constraint_def"; | |
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changeset | 702 | val C = Thm.lhs_of sort_constraint_def; | 
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changeset | 703 | val T = Thm.dest_arg C; | 
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changeset | 704 | val CA = mk_implies (C, A); | 
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changeset | 705 | in | 
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changeset | 706 | |
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changeset | 707 | (* protect *) | 
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changeset | 708 | |
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changeset | 709 | val protect = Thm.capply (certify Logic.protectC); | 
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changeset | 710 | |
| 33277 | 711 | val protectI = | 
| 712 | store_thm (Binding.conceal (Binding.name "protectI")) | |
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changeset | 713 | (standard (Thm.equal_elim (Thm.symmetric prop_def) (Thm.assume A))); | 
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changeset | 714 | |
| 33277 | 715 | val protectD = | 
| 716 | store_thm (Binding.conceal (Binding.name "protectD")) | |
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changeset | 717 | (standard (Thm.equal_elim prop_def (Thm.assume (protect A)))); | 
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changeset | 718 | |
| 33277 | 719 | val protect_cong = | 
| 720 | store_standard_thm_open (Binding.name "protect_cong") (Thm.reflexive (protect A)); | |
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changeset | 721 | |
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changeset | 722 | fun implies_intr_protected asms th = | 
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changeset | 723 | let val asms' = map protect asms in | 
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changeset | 724 | implies_elim_list | 
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changeset | 725 | (implies_intr_list asms th) | 
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changeset | 726 | (map (fn asm' => Thm.assume asm' RS protectD) asms') | 
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changeset | 727 | |> implies_intr_list asms' | 
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changeset | 728 | end; | 
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changeset | 729 | |
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changeset | 730 | |
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changeset | 731 | (* term *) | 
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changeset | 732 | |
| 33277 | 733 | val termI = | 
| 734 | store_thm (Binding.conceal (Binding.name "termI")) | |
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changeset | 735 | (standard (Thm.equal_elim (Thm.symmetric term_def) (Thm.forall_intr A (Thm.trivial A)))); | 
| 9554 | 736 | |
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changeset | 737 | fun mk_term ct = | 
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changeset | 738 | let | 
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changeset | 739 | val thy = Thm.theory_of_cterm ct; | 
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changeset | 740 | val cert = Thm.cterm_of thy; | 
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changeset | 741 | val certT = Thm.ctyp_of thy; | 
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changeset | 742 | val T = Thm.typ_of (Thm.ctyp_of_term ct); | 
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changeset | 743 |     val a = certT (TVar (("'a", 0), []));
 | 
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changeset | 744 |     val x = cert (Var (("x", 0), T));
 | 
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changeset | 745 | in Thm.instantiate ([(a, certT T)], [(x, ct)]) termI end; | 
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changeset | 746 | |
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changeset | 747 | fun dest_term th = | 
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changeset | 748 | let val cprop = strip_imp_concl (Thm.cprop_of th) in | 
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changeset | 749 | if can Logic.dest_term (Thm.term_of cprop) then | 
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changeset | 750 | Thm.dest_arg cprop | 
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changeset | 751 |     else raise THM ("dest_term", 0, [th])
 | 
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changeset | 752 | end; | 
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changeset | 753 | |
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changeset | 754 | fun cterm_rule f = dest_term o f o mk_term; | 
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changeset | 755 | fun term_rule thy f t = Thm.term_of (cterm_rule f (Thm.cterm_of thy t)); | 
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changeset | 756 | |
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changeset | 757 | val dummy_thm = mk_term (certify (Term.dummy_pattern propT)); | 
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changeset | 758 | |
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changeset | 759 | |
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changeset | 760 | (* sort_constraint *) | 
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changeset | 761 | |
| 33277 | 762 | val sort_constraintI = | 
| 763 | store_thm (Binding.conceal (Binding.name "sort_constraintI")) | |
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changeset | 764 | (standard (Thm.equal_elim (Thm.symmetric sort_constraint_def) (mk_term T))); | 
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changeset | 765 | |
| 33277 | 766 | val sort_constraint_eq = | 
| 767 | store_thm (Binding.conceal (Binding.name "sort_constraint_eq")) | |
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changeset | 768 | (standard | 
| 33277 | 769 | (Thm.equal_intr | 
| 770 | (Thm.implies_intr CA (Thm.implies_elim (Thm.assume CA) (Thm.unvarify sort_constraintI))) | |
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changeset | 771 | (implies_intr_list [A, C] (Thm.assume A)))); | 
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changeset | 772 | |
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changeset | 773 | end; | 
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changeset | 774 | |
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changeset | 775 | |
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changeset | 776 | (* HHF normalization *) | 
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changeset | 777 | |
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changeset | 778 | (* (PROP ?phi ==> (!!x. PROP ?psi(x))) == (!!x. PROP ?phi ==> PROP ?psi(x)) *) | 
| 9554 | 779 | val norm_hhf_eq = | 
| 780 | let | |
| 14854 | 781 |     val aT = TFree ("'a", []);
 | 
| 9554 | 782 | val all = Term.all aT; | 
| 783 |     val x = Free ("x", aT);
 | |
| 784 |     val phi = Free ("phi", propT);
 | |
| 785 |     val psi = Free ("psi", aT --> propT);
 | |
| 786 | ||
| 26487 | 787 | val cx = certify x; | 
| 788 | val cphi = certify phi; | |
| 789 |     val lhs = certify (Logic.mk_implies (phi, all $ Abs ("x", aT, psi $ Bound 0)));
 | |
| 790 |     val rhs = certify (all $ Abs ("x", aT, Logic.mk_implies (phi, psi $ Bound 0)));
 | |
| 9554 | 791 | in | 
| 792 | Thm.equal_intr | |
| 793 | (Thm.implies_elim (Thm.assume lhs) (Thm.assume cphi) | |
| 794 | |> Thm.forall_elim cx | |
| 795 | |> Thm.implies_intr cphi | |
| 796 | |> Thm.forall_intr cx | |
| 797 | |> Thm.implies_intr lhs) | |
| 798 | (Thm.implies_elim | |
| 799 | (Thm.assume rhs |> Thm.forall_elim cx) (Thm.assume cphi) | |
| 800 | |> Thm.forall_intr cx | |
| 801 | |> Thm.implies_intr cphi | |
| 802 | |> Thm.implies_intr rhs) | |
| 33277 | 803 | |> store_standard_thm_open (Binding.name "norm_hhf_eq") | 
| 9554 | 804 | end; | 
| 805 | ||
| 18179 | 806 | val norm_hhf_prop = Logic.dest_equals (Thm.prop_of norm_hhf_eq); | 
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changeset | 807 | val norm_hhf_eqs = [norm_hhf_eq, sort_constraint_eq]; | 
| 18179 | 808 | |
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changeset | 809 | fun is_norm_hhf (Const ("Pure.sort_constraint", _)) = false
 | 
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changeset | 810 |   | is_norm_hhf (Const ("==>", _) $ _ $ (Const ("all", _) $ _)) = false
 | 
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changeset | 811 | | is_norm_hhf (Abs _ $ _) = false | 
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changeset | 812 | | is_norm_hhf (t $ u) = is_norm_hhf t andalso is_norm_hhf u | 
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changeset | 813 | | is_norm_hhf (Abs (_, _, t)) = is_norm_hhf t | 
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changeset | 814 | | is_norm_hhf _ = true; | 
| 12800 | 815 | |
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changeset | 816 | fun norm_hhf thy t = | 
| 12800 | 817 | if is_norm_hhf t then t | 
| 18179 | 818 | else Pattern.rewrite_term thy [norm_hhf_prop] [] t; | 
| 819 | ||
| 20298 | 820 | fun norm_hhf_cterm ct = | 
| 821 | if is_norm_hhf (Thm.term_of ct) then ct | |
| 822 | else cterm_fun (Pattern.rewrite_term (Thm.theory_of_cterm ct) [norm_hhf_prop] []) ct; | |
| 823 | ||
| 12800 | 824 | |
| 21603 | 825 | (* var indexes *) | 
| 826 | ||
| 24426 | 827 | (*Increment the indexes of only the type variables*) | 
| 828 | fun incr_type_indexes inc th = | |
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changeset | 829 | let val tvs = OldTerm.term_tvars (prop_of th) | 
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changeset | 830 | and thy = Thm.theory_of_thm th | 
| 24426 | 831 | fun inc_tvar ((a,i),s) = pairself (ctyp_of thy) (TVar ((a,i),s), TVar ((a,i+inc),s)) | 
| 832 | in Thm.instantiate (map inc_tvar tvs, []) th end; | |
| 833 | ||
| 21603 | 834 | fun incr_indexes th = Thm.incr_indexes (Thm.maxidx_of th + 1); | 
| 835 | ||
| 836 | fun incr_indexes2 th1 th2 = | |
| 837 | Thm.incr_indexes (Int.max (Thm.maxidx_of th1, Thm.maxidx_of th2) + 1); | |
| 838 | ||
| 839 | fun th1 INCR_COMP th2 = incr_indexes th2 th1 COMP th2; | |
| 840 | fun th1 COMP_INCR th2 = th1 COMP incr_indexes th1 th2; | |
| 841 | ||
| 29344 | 842 | fun comp_no_flatten (th, n) i rule = | 
| 843 | (case distinct Thm.eq_thm (Seq.list_of | |
| 844 | (Thm.compose_no_flatten false (th, n) i (incr_indexes th rule))) of | |
| 845 | [th'] => th' | |
| 846 |   | [] => raise THM ("comp_no_flatten", i, [th, rule])
 | |
| 847 |   | _ => raise THM ("comp_no_flatten: unique result expected", i, [th, rule]));
 | |
| 848 | ||
| 849 | ||
| 9554 | 850 | |
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changeset | 851 | (*** Instantiate theorem th, reading instantiations in theory thy ****) | 
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changeset | 852 | |
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changeset | 853 | (*Version that normalizes the result: Thm.instantiate no longer does that*) | 
| 21603 | 854 | fun instantiate instpair th = | 
| 855 | Thm.adjust_maxidx_thm ~1 (Thm.instantiate instpair th COMP_INCR asm_rl); | |
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changeset | 856 | |
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changeset | 857 | (*Left-to-right replacements: tpairs = [...,(vi,ti),...]. | 
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changeset | 858 | Instantiates distinct Vars by terms, inferring type instantiations. *) | 
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changeset | 859 | local | 
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changeset | 860 | fun add_types ((ct,cu), (thy,tye,maxidx)) = | 
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changeset | 861 | let | 
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changeset | 862 | val thyt = Thm.theory_of_cterm ct; | 
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changeset | 863 | val thyu = Thm.theory_of_cterm cu; | 
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changeset | 864 |         val {t, T, maxidx = maxt, ...} = Thm.rep_cterm ct;
 | 
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changeset | 865 |         val {t = u, T = U, maxidx = maxu, ...} = Thm.rep_cterm cu;
 | 
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changeset | 866 | val maxi = Int.max(maxidx, Int.max(maxt, maxu)); | 
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changeset | 867 | val thy' = Theory.merge(thy, Theory.merge(thyt, thyu)) | 
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changeset | 868 | val (tye',maxi') = Sign.typ_unify thy' (T, U) (tye, maxi) | 
| 25470 | 869 |           handle Type.TUNIFY => raise TYPE ("Ill-typed instantiation:\nType\n" ^
 | 
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changeset | 870 | Syntax.string_of_typ_global thy' (Envir.norm_type tye T) ^ | 
| 25470 | 871 | "\nof variable " ^ | 
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changeset | 872 | Syntax.string_of_term_global thy' (Term.map_types (Envir.norm_type tye) t) ^ | 
| 25470 | 873 | "\ncannot be unified with type\n" ^ | 
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changeset | 874 | Syntax.string_of_typ_global thy' (Envir.norm_type tye U) ^ "\nof term " ^ | 
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changeset | 875 | Syntax.string_of_term_global thy' (Term.map_types (Envir.norm_type tye) u), | 
| 25470 | 876 | [T, U], [t, u]) | 
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changeset | 877 | in (thy', tye', maxi') end; | 
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changeset | 878 | in | 
| 22561 | 879 | fun cterm_instantiate [] th = th | 
| 880 | | cterm_instantiate ctpairs0 th = | |
| 23178 | 881 | let val (thy,tye,_) = List.foldr add_types (Thm.theory_of_thm th, Vartab.empty, 0) ctpairs0 | 
| 18179 | 882 | fun instT(ct,cu) = | 
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changeset | 883 | let val inst = cterm_of thy o Term.map_types (Envir.norm_type tye) o term_of | 
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changeset | 884 | in (inst ct, inst cu) end | 
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changeset | 885 | fun ctyp2 (ixn, (S, T)) = (ctyp_of thy (TVar (ixn, S)), ctyp_of thy (Envir.norm_type tye T)) | 
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changeset | 886 | in instantiate (map ctyp2 (Vartab.dest tye), map instT ctpairs0) th end | 
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changeset | 887 | handle TERM _ => | 
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changeset | 888 |            raise THM("cterm_instantiate: incompatible theories",0,[th])
 | 
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changeset | 889 | | TYPE (msg, _, _) => raise THM(msg, 0, [th]) | 
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changeset | 890 | end; | 
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changeset | 891 | |
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changeset | 892 | |
| 4789 | 893 | |
| 5688 | 894 | (** variations on instantiate **) | 
| 4285 | 895 | |
| 896 | (* instantiate by left-to-right occurrence of variables *) | |
| 897 | ||
| 898 | fun instantiate' cTs cts thm = | |
| 899 | let | |
| 900 | fun err msg = | |
| 901 |       raise TYPE ("instantiate': " ^ msg,
 | |
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changeset | 902 | map_filter (Option.map Thm.typ_of) cTs, | 
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changeset | 903 | map_filter (Option.map Thm.term_of) cts); | 
| 4285 | 904 | |
| 905 | fun inst_of (v, ct) = | |
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changeset | 906 | (Thm.cterm_of (Thm.theory_of_cterm ct) (Var v), ct) | 
| 4285 | 907 | handle TYPE (msg, _, _) => err msg; | 
| 908 | ||
| 15797 | 909 | fun tyinst_of (v, cT) = | 
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changeset | 910 | (Thm.ctyp_of (Thm.theory_of_ctyp cT) (TVar v), cT) | 
| 15797 | 911 | handle TYPE (msg, _, _) => err msg; | 
| 912 | ||
| 20298 | 913 | fun zip_vars xs ys = | 
| 914 | zip_options xs ys handle Library.UnequalLengths => | |
| 915 | err "more instantiations than variables in thm"; | |
| 4285 | 916 | |
| 917 | (*instantiate types first!*) | |
| 918 | val thm' = | |
| 919 | if forall is_none cTs then thm | |
| 20298 | 920 | else Thm.instantiate | 
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changeset | 921 | (map tyinst_of (zip_vars (rev (Thm.fold_terms Term.add_tvars thm [])) cTs), []) thm; | 
| 20579 | 922 | val thm'' = | 
| 4285 | 923 | if forall is_none cts then thm' | 
| 20298 | 924 | else Thm.instantiate | 
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changeset | 925 | ([], map inst_of (zip_vars (rev (Thm.fold_terms Term.add_vars thm' [])) cts)) thm'; | 
| 20298 | 926 | in thm'' end; | 
| 4285 | 927 | |
| 928 | ||
| 14081 | 929 | |
| 930 | (** renaming of bound variables **) | |
| 931 | ||
| 932 | (* replace bound variables x_i in thm by y_i *) | |
| 933 | (* where vs = [(x_1, y_1), ..., (x_n, y_n)] *) | |
| 934 | ||
| 935 | fun rename_bvars [] thm = thm | |
| 936 | | rename_bvars vs thm = | |
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changeset | 937 | let | 
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changeset | 938 | val cert = Thm.cterm_of (Thm.theory_of_thm thm); | 
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changeset | 939 | fun ren (Abs (x, T, t)) = Abs (AList.lookup (op =) vs x |> the_default x, T, ren t) | 
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changeset | 940 | | ren (t $ u) = ren t $ ren u | 
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changeset | 941 | | ren t = t; | 
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changeset | 942 | in equal_elim (reflexive (cert (ren (Thm.prop_of thm)))) thm end; | 
| 14081 | 943 | |
| 944 | ||
| 945 | (* renaming in left-to-right order *) | |
| 946 | ||
| 947 | fun rename_bvars' xs thm = | |
| 948 | let | |
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changeset | 949 | val cert = Thm.cterm_of (Thm.theory_of_thm thm); | 
| 
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changeset | 950 | val prop = Thm.prop_of thm; | 
| 14081 | 951 | fun rename [] t = ([], t) | 
| 952 | | rename (x' :: xs) (Abs (x, T, t)) = | |
| 953 | let val (xs', t') = rename xs t | |
| 18929 | 954 | in (xs', Abs (the_default x x', T, t')) end | 
| 14081 | 955 | | rename xs (t $ u) = | 
| 956 | let | |
| 957 | val (xs', t') = rename xs t; | |
| 958 | val (xs'', u') = rename xs' u | |
| 959 | in (xs'', t' $ u') end | |
| 960 | | rename xs t = (xs, t); | |
| 961 | in case rename xs prop of | |
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changeset | 962 | ([], prop') => equal_elim (reflexive (cert prop')) thm | 
| 14081 | 963 | | _ => error "More names than abstractions in theorem" | 
| 964 | end; | |
| 965 | ||
| 966 | ||
| 11975 | 967 | |
| 18225 | 968 | (** multi_resolve **) | 
| 969 | ||
| 970 | local | |
| 971 | ||
| 972 | fun res th i rule = | |
| 973 | Thm.biresolution false [(false, th)] i rule handle THM _ => Seq.empty; | |
| 974 | ||
| 975 | fun multi_res _ [] rule = Seq.single rule | |
| 976 | | multi_res i (th :: ths) rule = Seq.maps (res th i) (multi_res (i + 1) ths rule); | |
| 977 | ||
| 978 | in | |
| 979 | ||
| 980 | val multi_resolve = multi_res 1; | |
| 981 | fun multi_resolves facts rules = Seq.maps (multi_resolve facts) (Seq.of_list rules); | |
| 982 | ||
| 983 | end; | |
| 984 | ||
| 11975 | 985 | end; | 
| 5903 | 986 | |
| 987 | structure BasicDrule: BASIC_DRULE = Drule; | |
| 988 | open BasicDrule; |