author | Christian Urban <urbanc@in.tum.de> |
Tue, 17 Aug 2010 18:00:55 +0800 | |
changeset 2408 | f1980f89c405 |
parent 2407 | 49ab06c0ca64 |
child 2410 | 2bbdb9c427b5 |
permissions | -rw-r--r-- |
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(* Title: nominal_library.ML |
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Author: Christian Urban |
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Basic functions for nominal. |
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*) |
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signature NOMINAL_LIBRARY = |
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sig |
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val last2: 'a list -> 'a * 'a |
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val dest_listT: typ -> typ |
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val size_const: typ -> term |
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||
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val mk_minus: term -> term |
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val mk_plus: term -> term -> term |
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val perm_ty: typ -> typ |
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val mk_perm_ty: typ -> term -> term -> term |
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val mk_perm: term -> term -> term |
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val dest_perm: term -> term * term |
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1962
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val mk_sort_of: term -> term |
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val atom_ty: typ -> typ |
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val mk_atom_ty: typ -> term -> term |
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val mk_atom: term -> term |
84a13d1e2511
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val supp_ty: typ -> typ |
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val supp_const: typ -> term |
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val mk_supp_ty: typ -> term -> term |
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val mk_supp: term -> term |
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val mk_equiv: thm -> thm |
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val safe_mk_equiv: thm -> thm |
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val mk_diff: term * term -> term |
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val mk_append: term * term -> term |
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val mk_union: term * term -> term |
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val fold_union: term list -> term |
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val mk_conj: term * term -> term |
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val fold_conj: term list -> term |
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(* datatype operations *) |
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type cns_info = (term * typ * typ list * bool list) list |
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||
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val all_dtyps: Datatype_Aux.descr -> (string * sort) list -> typ list |
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val nth_dtyp: Datatype_Aux.descr -> (string * sort) list -> int -> typ |
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val all_dtyp_constrs_types: Datatype_Aux.descr -> (string * sort) list -> cns_info list |
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val nth_dtyp_constrs_types: Datatype_Aux.descr -> (string * sort) list -> int -> cns_info |
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val prefix_dt_names: Datatype_Aux.descr -> (string * sort) list -> string -> string list |
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(* tactics for function package *) |
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val pat_completeness_simp: thm list -> Proof.context -> tactic |
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val prove_termination: Proof.context -> Function.info * local_theory |
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(* transformations of premises in inductions *) |
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val transform_prem1: Proof.context -> string list -> thm -> thm |
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val transform_prem2: Proof.context -> string list -> thm -> thm |
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(* transformation into the object logic *) |
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val atomize: thm -> thm |
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end |
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structure Nominal_Library: NOMINAL_LIBRARY = |
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struct |
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fun last2 [] = raise Empty |
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| last2 [_] = raise Empty |
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| last2 [x, y] = (x, y) |
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| last2 (_ :: xs) = last2 xs |
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fun dest_listT (Type (@{type_name list}, [T])) = T |
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| dest_listT T = raise TYPE ("dest_listT: list type expected", [T], []) |
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fun size_const ty = Const (@{const_name size}, ty --> @{typ nat}) |
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fun mk_minus p = @{term "uminus::perm => perm"} $ p |
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fun mk_plus p q = @{term "plus::perm => perm => perm"} $ p $ q |
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fun perm_ty ty = @{typ "perm"} --> ty --> ty |
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fun mk_perm_ty ty p trm = Const (@{const_name "permute"}, perm_ty ty) $ p $ trm |
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fun mk_perm p trm = mk_perm_ty (fastype_of trm) p trm |
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fun dest_perm (Const (@{const_name "permute"}, _) $ p $ t) = (p, t) |
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| dest_perm t = raise TERM ("dest_perm", [t]); |
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1962
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fun mk_sort_of t = @{term "sort_of"} $ t; |
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fun atom_ty ty = ty --> @{typ "atom"}; |
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fun mk_atom_ty ty t = Const (@{const_name "atom"}, atom_ty ty) $ t; |
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fun mk_atom t = mk_atom_ty (fastype_of t) t; |
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fun supp_ty ty = ty --> @{typ "atom set"}; |
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fun supp_const ty = Const (@{const_name "supp"}, supp_ty ty) |
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fun mk_supp_ty ty t = supp_const ty $ t; |
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fun mk_supp t = mk_supp_ty (fastype_of t) t; |
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fun mk_equiv r = r RS @{thm eq_reflection}; |
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fun safe_mk_equiv r = mk_equiv r handle Thm.THM _ => r; |
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|
1962
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106 |
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2296 | 107 |
(* functions that construct differences, appends and unions |
108 |
but avoid producing empty atom sets or empty atom lists *) |
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fun mk_diff (@{term "{}::atom set"}, _) = @{term "{}::atom set"} |
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| mk_diff (t1, @{term "{}::atom set"}) = t1 |
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| mk_diff (t1, t2) = HOLogic.mk_binop @{const_name minus} (t1, t2) |
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fun mk_append (t1, @{term "[]::atom list"}) = t1 |
2296 | 115 |
| mk_append (@{term "[]::atom list"}, t2) = t2 |
116 |
| mk_append (t1, t2) = HOLogic.mk_binop @{const_name "append"} (t1, t2) |
|
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||
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fun mk_union (t1, @{term "{}::atom set"}) = t1 |
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| mk_union (@{term "{}::atom set"}, t2) = t2 |
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| mk_union (t1, t2) = HOLogic.mk_binop @{const_name "sup"} (t1, t2) |
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fun fold_union trms = fold_rev (curry mk_union) trms @{term "{}::atom set"} |
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fun mk_conj (t1, @{term "True"}) = t1 |
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| mk_conj (@{term "True"}, t2) = t2 |
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| mk_conj (t1, t2) = HOLogic.mk_conj (t1, t2) |
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fun fold_conj trms = fold_rev (curry mk_conj) trms @{term "True"} |
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(** datatypes **) |
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(* constructor infos *) |
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type cns_info = (term * typ * typ list * bool list) list |
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(* returns the type of the nth datatype *) |
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fun all_dtyps descr sorts = |
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map (fn n => Datatype_Aux.typ_of_dtyp descr sorts (Datatype_Aux.DtRec n)) (0 upto (length descr - 1)) |
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fun nth_dtyp descr sorts n = |
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Datatype_Aux.typ_of_dtyp descr sorts (Datatype_Aux.DtRec n); |
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141 |
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(* returns info about constructors in a datatype *) |
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fun all_dtyp_constrs_info descr = |
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map (fn (_, (ty, vs, constrs)) => map (pair (ty, vs)) constrs) descr |
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145 |
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(* returns the constants of the constructors plus the |
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corresponding type and types of arguments *) |
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fun all_dtyp_constrs_types descr sorts = |
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149 |
let |
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fun aux ((ty_name, vs), (cname, args)) = |
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let |
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val vs_tys = map (Datatype_Aux.typ_of_dtyp descr sorts) vs |
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val ty = Type (ty_name, vs_tys) |
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val arg_tys = map (Datatype_Aux.typ_of_dtyp descr sorts) args |
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val is_rec = map Datatype_Aux.is_rec_type args |
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156 |
in |
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(Const (cname, arg_tys ---> ty), ty, arg_tys, is_rec) |
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158 |
end |
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159 |
in |
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160 |
map (map aux) (all_dtyp_constrs_info descr) |
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161 |
end |
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162 |
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fun nth_dtyp_constrs_types descr sorts n = |
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nth (all_dtyp_constrs_types descr sorts) n |
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165 |
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166 |
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167 |
(* generates for every datatype a name str ^ dt_name |
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168 |
plus and index for multiple occurences of a string *) |
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169 |
fun prefix_dt_names descr sorts str = |
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170 |
let |
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171 |
fun get_nth_name (i, _) = |
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172 |
Datatype_Aux.name_of_typ (nth_dtyp descr sorts i) |
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173 |
in |
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174 |
Datatype_Prop.indexify_names |
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175 |
(map (prefix str o get_nth_name) descr) |
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176 |
end |
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177 |
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178 |
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179 |
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180 |
(** function package tactics **) |
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181 |
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182 |
fun pat_completeness_simp simps lthy = |
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183 |
let |
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184 |
val simp_set = HOL_basic_ss addsimps (@{thms sum.inject sum.distinct} @ simps) |
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185 |
in |
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186 |
Pat_Completeness.pat_completeness_tac lthy 1 |
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187 |
THEN ALLGOALS (asm_full_simp_tac simp_set) |
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188 |
end |
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189 |
|
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190 |
fun prove_termination lthy = |
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191 |
Function.prove_termination NONE |
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(Lexicographic_Order.lexicographic_order_tac true lthy) lthy |
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193 |
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(** transformations of premises (in inductive proofs) **) |
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196 |
|
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197 |
(* |
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given the theorem F[t]; proves the theorem F[f t] |
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199 |
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200 |
- F needs to be monotone |
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201 |
- f returns either SOME for a term it fires on |
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and NONE elsewhere |
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203 |
*) |
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204 |
fun map_term f t = |
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(case f t of |
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NONE => map_term' f t |
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207 |
| x => x) |
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and map_term' f (t $ u) = |
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(case (map_term f t, map_term f u) of |
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(NONE, NONE) => NONE |
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| (SOME t'', NONE) => SOME (t'' $ u) |
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| (NONE, SOME u'') => SOME (t $ u'') |
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| (SOME t'', SOME u'') => SOME (t'' $ u'')) |
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| map_term' f (Abs (s, T, t)) = |
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(case map_term f t of |
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NONE => NONE |
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| SOME t'' => SOME (Abs (s, T, t''))) |
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| map_term' _ _ = NONE; |
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219 |
|
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fun map_thm_tac ctxt tac thm = |
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221 |
let |
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val monos = Inductive.get_monos ctxt |
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val simps = HOL_basic_ss addsimps @{thms split_def} |
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224 |
in |
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EVERY [cut_facts_tac [thm] 1, etac rev_mp 1, |
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226 |
REPEAT_DETERM (FIRSTGOAL (simp_tac simps THEN' resolve_tac monos)), |
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227 |
REPEAT_DETERM (rtac impI 1 THEN (atac 1 ORELSE tac))] |
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228 |
end |
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229 |
|
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230 |
fun map_thm ctxt f tac thm = |
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231 |
let |
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val opt_goal_trm = map_term f (prop_of thm) |
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233 |
in |
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case opt_goal_trm of |
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235 |
NONE => thm |
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236 |
| SOME goal => |
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237 |
Goal.prove ctxt [] [] goal (fn _ => map_thm_tac ctxt tac thm) |
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238 |
end |
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239 |
|
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240 |
(* |
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241 |
inductive premises can be of the form |
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242 |
R ... /\ P ...; split_conj_i picks out |
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243 |
the part R or P part |
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244 |
*) |
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fun split_conj1 names (Const ("op &", _) $ f1 $ f2) = |
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(case head_of f1 of |
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Const (name, _) => if member (op =) names name then SOME f1 else NONE |
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| _ => NONE) |
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| split_conj1 _ _ = NONE; |
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|
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fun split_conj2 names (Const ("op &", _) $ f1 $ f2) = |
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(case head_of f1 of |
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Const (name, _) => if member (op =) names name then SOME f2 else NONE |
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| _ => NONE) |
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| split_conj2 _ _ = NONE; |
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|
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fun transform_prem1 ctxt names thm = |
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map_thm ctxt (split_conj1 names) (etac conjunct1 1) thm |
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|
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fun transform_prem2 ctxt names thm = |
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map_thm ctxt (split_conj2 names) (etac conjunct2 1) thm |
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|
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(* transformes a theorem into one of the object logic *) |
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val atomize = Conv.fconv_rule Object_Logic.atomize o forall_intr_vars |
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|
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end (* structure *) |
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|
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open Nominal_Library; |