| author | paulson | 
| Mon, 30 Apr 2018 22:13:21 +0100 | |
| changeset 68059 | 6f7829c14f5a | 
| parent 67637 | e6bcd14139fc | 
| child 69593 | 3dda49e08b9d | 
| permissions | -rw-r--r-- | 
| 
31723
 
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1  | 
(* Title: HOL/Tools/inductive_set.ML  | 
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2  | 
Author: Stefan Berghofer, TU Muenchen  | 
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New wrapper for defining inductive sets with new inductive
 
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3  | 
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4  | 
Wrapper for defining inductive sets using package for inductive predicates,  | 
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New wrapper for defining inductive sets with new inductive
 
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5  | 
including infrastructure for converting between predicates and sets.  | 
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New wrapper for defining inductive sets with new inductive
 
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parents:  
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6  | 
*)  | 
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7  | 
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31723
 
f5cafe803b55
discontinued ancient tradition to suffix certain ML module names with "_package"
 
haftmann 
parents: 
30860 
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8  | 
signature INDUCTIVE_SET =  | 
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New wrapper for defining inductive sets with new inductive
 
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9  | 
sig  | 
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val to_set_att: thm list -> attribute  | 
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val to_pred_att: thm list -> attribute  | 
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val to_pred : thm list -> Context.generic -> thm -> thm  | 
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val pred_set_conv_att: attribute  | 
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val add_inductive_i:  | 
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15  | 
Inductive.inductive_flags ->  | 
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((binding * typ) * mixfix) list ->  | 
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type Attrib.binding abbreviates Name.binding without attributes;
 
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(string * typ) list ->  | 
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type Attrib.binding abbreviates Name.binding without attributes;
 
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(Attrib.binding * term) list -> thm list ->  | 
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discontinued ancient tradition to suffix certain ML module names with "_package"
 
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parents: 
30860 
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19  | 
local_theory -> Inductive.inductive_result * local_theory  | 
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type Attrib.binding abbreviates Name.binding without attributes;
 
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val add_inductive: bool -> bool ->  | 
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(binding * string option * mixfix) list ->  | 
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(binding * string option * mixfix) list ->  | 
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Specification.multi_specs_cmd -> (Facts.ref * Token.src list) list ->  | 
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local_theory -> Inductive.inductive_result * local_theory  | 
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val mono_add: attribute  | 
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val mono_del: attribute  | 
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end;  | 
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28  | 
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31723
 
f5cafe803b55
discontinued ancient tradition to suffix certain ML module names with "_package"
 
haftmann 
parents: 
30860 
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29  | 
structure Inductive_Set: INDUCTIVE_SET =  | 
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30  | 
struct  | 
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(***********************************************************************************)  | 
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(* simplifies (%x y. (x, y) : S & P x y) to (%x y. (x, y) : S Int {(x, y). P x y}) *)
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(* and        (%x y. (x, y) : S | P x y) to (%x y. (x, y) : S Un {(x, y). P x y})  *)
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(* used for converting "strong" (co)induction rules *)  | 
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(***********************************************************************************)  | 
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37  | 
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val anyt = Free ("t", TFree ("'t", []));
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40  | 
fun strong_ind_simproc tab =  | 
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  Simplifier.make_simproc @{context} "strong_ind"
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   {lhss = [\<^term>\<open>x::'a::{}\<close>],
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proc = fn _ => fn ctxt => fn ct =>  | 
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let  | 
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fun close p t f =  | 
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let val vs = Term.add_vars t []  | 
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in Thm.instantiate' [] (rev (map (SOME o Thm.cterm_of ctxt o Var) vs))  | 
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(p (fold (Logic.all o Var) vs t) f)  | 
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end;  | 
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fun mkop \<^const_name>\<open>HOL.conj\<close> T x =  | 
51  | 
SOME (Const (\<^const_name>\<open>Lattices.inf\<close>, T --> T --> T), x)  | 
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| mkop \<^const_name>\<open>HOL.disj\<close> T x =  | 
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SOME (Const (\<^const_name>\<open>Lattices.sup\<close>, T --> T --> T), x)  | 
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| mkop _ _ _ = NONE;  | 
55  | 
fun mk_collect p T t =  | 
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let val U = HOLogic.dest_setT T  | 
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in HOLogic.Collect_const U $  | 
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HOLogic.mk_ptupleabs (HOLogic.flat_tuple_paths p) U HOLogic.boolT t  | 
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end;  | 
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fun decomp (Const (s, _) $ ((m as Const (\<^const_name>\<open>Set.member\<close>,  | 
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Type (_, [_, Type (_, [T, _])]))) $ p $ S) $ u) =  | 
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mkop s T (m, p, S, mk_collect p T (head_of u))  | 
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| decomp (Const (s, _) $ u $ ((m as Const (\<^const_name>\<open>Set.member\<close>,  | 
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Type (_, [_, Type (_, [T, _])]))) $ p $ S)) =  | 
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mkop s T (m, p, mk_collect p T (head_of u), S)  | 
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| decomp _ = NONE;  | 
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val simp =  | 
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full_simp_tac  | 
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            (put_simpset HOL_basic_ss ctxt addsimps @{thms mem_Collect_eq case_prod_conv}) 1;
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fun mk_rew t = (case strip_abs_vars t of  | 
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[] => NONE  | 
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| xs => (case decomp (strip_abs_body t) of  | 
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NONE => NONE  | 
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| SOME (bop, (m, p, S, S')) =>  | 
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SOME (close (Goal.prove ctxt [] [])  | 
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(Logic.mk_equals (t, fold_rev Term.abs xs (m $ p $ (bop $ S $ S'))))  | 
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(K (EVERY  | 
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[resolve_tac ctxt [eq_reflection] 1,  | 
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                     REPEAT (resolve_tac ctxt @{thms ext} 1),
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                     resolve_tac ctxt @{thms iffI} 1,
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                     EVERY [eresolve_tac ctxt @{thms conjE} 1,
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                       resolve_tac ctxt @{thms IntI} 1, simp, simp,
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                       eresolve_tac ctxt @{thms IntE} 1,
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                       resolve_tac ctxt @{thms conjI} 1, simp, simp] ORELSE
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                     EVERY [eresolve_tac ctxt @{thms disjE} 1,
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                       resolve_tac ctxt @{thms UnI1} 1, simp,
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                       resolve_tac ctxt @{thms UnI2} 1, simp,
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                       eresolve_tac ctxt @{thms UnE} 1,
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                       resolve_tac ctxt @{thms disjI1} 1, simp,
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                       resolve_tac ctxt @{thms disjI2} 1, simp]])))
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handle ERROR _ => NONE))  | 
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in  | 
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(case strip_comb (Thm.term_of ct) of  | 
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(h as Const (name, _), ts) =>  | 
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if Symtab.defined tab name then  | 
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let val rews = map mk_rew ts  | 
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in  | 
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if forall is_none rews then NONE  | 
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else SOME (fold (fn th1 => fn th2 => Thm.combination th2 th1)  | 
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(map2 (fn SOME r => K r | NONE => Thm.reflexive o Thm.cterm_of ctxt)  | 
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rews ts) (Thm.reflexive (Thm.cterm_of ctxt h)))  | 
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end  | 
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else NONE  | 
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| _ => NONE)  | 
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end};  | 
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106  | 
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107  | 
(* only eta contract terms occurring as arguments of functions satisfying p *)  | 
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fun eta_contract p =  | 
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let  | 
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110  | 
fun eta b (Abs (a, T, body)) =  | 
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(case eta b body of  | 
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body' as (f $ Bound 0) =>  | 
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if Term.is_dependent f orelse not b then Abs (a, T, body')  | 
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else incr_boundvars ~1 f  | 
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| body' => Abs (a, T, body'))  | 
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116  | 
| eta b (t $ u) = eta b t $ eta (p (head_of t)) u  | 
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| eta b t = t  | 
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in eta false end;  | 
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119  | 
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fun eta_contract_thm ctxt p =  | 
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121  | 
Conv.fconv_rule (Conv.then_conv (Thm.beta_conversion true, fn ct =>  | 
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122  | 
Thm.transitive (Thm.eta_conversion ct)  | 
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(Thm.symmetric (Thm.eta_conversion (Thm.cterm_of ctxt (eta_contract p (Thm.term_of ct)))))));  | 
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(***********************************************************)  | 
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(* rules for converting between predicate and set notation *)  | 
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(* *)  | 
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(* rules for converting predicates to sets have the form *)  | 
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130  | 
(* P (%x y. (x, y) : s) = (%x y. (x, y) : S s) *)  | 
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131  | 
(* *)  | 
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(* rules for converting sets to predicates have the form *)  | 
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133  | 
(* S {(x, y). p x y} = {(x, y). P p x y}                   *)
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(* *)  | 
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(* where s and p are parameters *)  | 
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(***********************************************************)  | 
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137  | 
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138  | 
structure Data = Generic_Data  | 
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139  | 
(  | 
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140  | 
type T =  | 
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141  | 
    {(* rules for converting predicates to sets *)
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142  | 
to_set_simps: thm list,  | 
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143  | 
(* rules for converting sets to predicates *)  | 
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144  | 
to_pred_simps: thm list,  | 
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145  | 
(* arities of functions of type t set => ... => u set *)  | 
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146  | 
set_arities: (typ * (int list list option list * int list list option)) list Symtab.table,  | 
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147  | 
(* arities of functions of type (t => ... => bool) => u => ... => bool *)  | 
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148  | 
pred_arities: (typ * (int list list option list * int list list option)) list Symtab.table};  | 
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149  | 
  val empty = {to_set_simps = [], to_pred_simps = [],
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150  | 
set_arities = Symtab.empty, pred_arities = Symtab.empty};  | 
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151  | 
val extend = I;  | 
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fun merge  | 
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153  | 
    ({to_set_simps = to_set_simps1, to_pred_simps = to_pred_simps1,
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154  | 
set_arities = set_arities1, pred_arities = pred_arities1},  | 
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155  | 
     {to_set_simps = to_set_simps2, to_pred_simps = to_pred_simps2,
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| 29288 | 156  | 
set_arities = set_arities2, pred_arities = pred_arities2}) : T =  | 
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157  | 
    {to_set_simps = Thm.merge_thms (to_set_simps1, to_set_simps2),
 | 
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158  | 
to_pred_simps = Thm.merge_thms (to_pred_simps1, to_pred_simps2),  | 
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159  | 
set_arities = Symtab.merge_list (op =) (set_arities1, set_arities2),  | 
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pred_arities = Symtab.merge_list (op =) (pred_arities1, pred_arities2)};  | 
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161  | 
);  | 
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162  | 
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fun name_type_of (Free p) = SOME p  | 
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| name_type_of (Const p) = SOME p  | 
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| name_type_of _ = NONE;  | 
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166  | 
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fun map_type f (Free (s, T)) = Free (s, f T)  | 
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| map_type f (Var (ixn, T)) = Var (ixn, f T)  | 
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| map_type f _ = error "map_type";  | 
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170  | 
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fun find_most_specific is_inst f eq xs T =  | 
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find_first (fn U => is_inst (T, f U)  | 
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andalso forall (fn U' => eq (f U, f U') orelse not  | 
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(is_inst (T, f U') andalso is_inst (f U', f U)))  | 
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175  | 
xs) xs;  | 
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176  | 
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fun lookup_arity thy arities (s, T) = case Symtab.lookup arities s of  | 
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NONE => NONE  | 
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| SOME xs => find_most_specific (Sign.typ_instance thy) fst (op =) xs T;  | 
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180  | 
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181  | 
fun lookup_rule thy f rules = find_most_specific  | 
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182  | 
(swap #> Pattern.matches thy) (f #> fst) (op aconv) rules;  | 
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183  | 
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184  | 
fun infer_arities thy arities (optf, t) fs = case strip_comb t of  | 
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(Abs (_, _, u), []) => infer_arities thy arities (NONE, u) fs  | 
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186  | 
| (Abs _, _) => infer_arities thy arities (NONE, Envir.beta_norm t) fs  | 
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187  | 
| (u, ts) => (case Option.map (lookup_arity thy arities) (name_type_of u) of  | 
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188  | 
SOME (SOME (_, (arity, _))) =>  | 
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189  | 
(fold (infer_arities thy arities) (arity ~~ List.take (ts, length arity)) fs  | 
| 43278 | 190  | 
handle General.Subscript => error "infer_arities: bad term")  | 
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191  | 
| _ => fold (infer_arities thy arities) (map (pair NONE) ts)  | 
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192  | 
(case optf of  | 
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193  | 
NONE => fs  | 
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194  | 
| SOME f => AList.update op = (u, the_default f  | 
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(Option.map (fn g => inter (op =) g f) (AList.lookup op = fs u))) fs));  | 
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196  | 
|
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197  | 
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198  | 
(**************************************************************)  | 
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199  | 
(* derive the to_pred equation from the to_set equation *)  | 
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200  | 
(* *)  | 
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201  | 
(* 1. instantiate each set parameter with {(x, y). p x y}     *)
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202  | 
(* 2. apply %P. {(x, y). P x y} to both sides of the equation *)
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203  | 
(* 3. simplify *)  | 
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(**************************************************************)  | 
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205  | 
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fun mk_to_pred_inst ctxt fs =  | 
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207  | 
map (fn (x, ps) =>  | 
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208  | 
let  | 
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val (Ts, T) = strip_type (fastype_of x);  | 
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210  | 
val U = HOLogic.dest_setT T;  | 
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val x' = map_type  | 
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212  | 
(K (Ts @ HOLogic.strip_ptupleT ps U ---> HOLogic.boolT)) x;  | 
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213  | 
in  | 
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214  | 
(dest_Var x,  | 
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Thm.cterm_of ctxt (fold_rev (Term.abs o pair "x") Ts  | 
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216  | 
(HOLogic.Collect_const U $  | 
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217  | 
HOLogic.mk_ptupleabs ps U HOLogic.boolT  | 
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218  | 
(list_comb (x', map Bound (length Ts - 1 downto 0))))))  | 
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219  | 
end) fs;  | 
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220  | 
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221  | 
fun mk_to_pred_eq ctxt p fs optfs' T thm =  | 
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222  | 
let  | 
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val insts = mk_to_pred_inst ctxt fs;  | 
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224  | 
val thm' = Thm.instantiate ([], insts) thm;  | 
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225  | 
val thm'' =  | 
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226  | 
(case optfs' of  | 
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227  | 
NONE => thm' RS sym  | 
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228  | 
| SOME fs' =>  | 
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229  | 
let  | 
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val U = HOLogic.dest_setT (body_type T);  | 
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231  | 
val Ts = HOLogic.strip_ptupleT fs' U;  | 
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232  | 
val arg_cong' = Thm.incr_indexes (Thm.maxidx_of thm + 1) arg_cong;  | 
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val (Var (arg_cong_f, _), _) = arg_cong' |> Thm.concl_of |>  | 
234  | 
dest_comb |> snd |> strip_comb |> snd |> hd |> dest_comb;  | 
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235  | 
in  | 
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thm' RS (infer_instantiate ctxt [(arg_cong_f,  | 
| 59642 | 237  | 
              Thm.cterm_of ctxt (Abs ("P", Ts ---> HOLogic.boolT,
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238  | 
HOLogic.Collect_const U $ HOLogic.mk_ptupleabs fs' U  | 
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239  | 
HOLogic.boolT (Bound 0))))] arg_cong' RS sym)  | 
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240  | 
end)  | 
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241  | 
in  | 
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Simplifier.simplify  | 
243  | 
      (put_simpset HOL_basic_ss ctxt addsimps @{thms mem_Collect_eq case_prod_conv}
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addsimprocs [\<^simproc>\<open>Collect_mem\<close>]) thm''  | 
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|> zero_var_indexes |> eta_contract_thm ctxt (equal p)  | 
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246  | 
end;  | 
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247  | 
|
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248  | 
|
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249  | 
(**** declare rules for converting predicates to sets ****)  | 
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250  | 
|
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251  | 
exception Malformed of string;  | 
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252  | 
|
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253  | 
fun add context thm (tab as {to_set_simps, to_pred_simps, set_arities, pred_arities}) =
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(case Thm.prop_of thm of  | 
| 67149 | 255  | 
Const (\<^const_name>\<open>Trueprop\<close>, _) $ (Const (\<^const_name>\<open>HOL.eq\<close>, Type (_, [T, _])) $ lhs $ rhs) =>  | 
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256  | 
(case body_type T of  | 
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\<^typ>\<open>bool\<close> =>  | 
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258  | 
let  | 
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259  | 
val thy = Context.theory_of context;  | 
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260  | 
val ctxt = Context.proof_of context;  | 
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261  | 
fun factors_of t fs = case strip_abs_body t of  | 
| 67149 | 262  | 
Const (\<^const_name>\<open>Set.member\<close>, _) $ u $ S =>  | 
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263  | 
if is_Free S orelse is_Var S then  | 
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264  | 
let val ps = HOLogic.flat_tuple_paths u  | 
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265  | 
in (SOME ps, (S, ps) :: fs) end  | 
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266  | 
else (NONE, fs)  | 
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267  | 
| _ => (NONE, fs);  | 
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268  | 
val (h, ts) = strip_comb lhs  | 
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269  | 
val (pfs, fs) = fold_map factors_of ts [];  | 
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270  | 
val ((h', ts'), fs') = (case rhs of  | 
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271  | 
Abs _ => (case strip_abs_body rhs of  | 
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Const (\<^const_name>\<open>Set.member\<close>, _) $ u $ S =>  | 
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273  | 
(strip_comb S, SOME (HOLogic.flat_tuple_paths u))  | 
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274  | 
| _ => raise Malformed "member symbol on right-hand side expected")  | 
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275  | 
| _ => (strip_comb rhs, NONE))  | 
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276  | 
in  | 
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277  | 
case (name_type_of h, name_type_of h') of  | 
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278  | 
(SOME (s, T), SOME (s', T')) =>  | 
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279  | 
if exists (fn (U, _) =>  | 
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280  | 
Sign.typ_instance thy (T', U) andalso  | 
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281  | 
Sign.typ_instance thy (U, T'))  | 
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282  | 
(Symtab.lookup_list set_arities s')  | 
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283  | 
then  | 
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284  | 
(if Context_Position.is_really_visible ctxt then  | 
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285  | 
                     warning ("Ignoring conversion rule for operator " ^ s')
 | 
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286  | 
else (); tab)  | 
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287  | 
else  | 
| 67637 | 288  | 
                   {to_set_simps = Thm.trim_context thm :: to_set_simps,
 | 
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289  | 
to_pred_simps =  | 
| 67637 | 290  | 
Thm.trim_context (mk_to_pred_eq ctxt h fs fs' T' thm) :: to_pred_simps,  | 
| 
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291  | 
set_arities = Symtab.insert_list op = (s',  | 
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292  | 
(T', (map (AList.lookup op = fs) ts', fs'))) set_arities,  | 
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293  | 
pred_arities = Symtab.insert_list op = (s,  | 
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294  | 
(T, (pfs, fs'))) pred_arities}  | 
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295  | 
| _ => raise Malformed "set / predicate constant expected"  | 
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296  | 
end  | 
| 
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297  | 
| _ => raise Malformed "equation between predicates expected")  | 
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298  | 
| _ => raise Malformed "equation expected")  | 
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299  | 
handle Malformed msg =>  | 
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300  | 
let  | 
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301  | 
val ctxt = Context.proof_of context  | 
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302  | 
val _ =  | 
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303  | 
if Context_Position.is_really_visible ctxt then  | 
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304  | 
          warning ("Ignoring malformed set / predicate conversion rule: " ^ msg ^
 | 
| 61268 | 305  | 
"\n" ^ Thm.string_of_thm ctxt thm)  | 
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306  | 
else ();  | 
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307  | 
in tab end;  | 
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308  | 
|
| 
 
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309  | 
val pred_set_conv_att = Thm.declaration_attribute  | 
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310  | 
(fn thm => fn ctxt => Data.map (add ctxt thm) ctxt);  | 
| 
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311  | 
|
| 
 
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312  | 
|
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313  | 
(**** convert theorem in set notation to predicate notation ****)  | 
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314  | 
|
| 
 
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315  | 
fun is_pred tab t =  | 
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316  | 
case Option.map (Symtab.lookup tab o fst) (name_type_of t) of  | 
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317  | 
SOME (SOME _) => true | _ => false;  | 
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318  | 
|
| 
 
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319  | 
fun to_pred_simproc rules =  | 
| 
 
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320  | 
let val rules' = map mk_meta_eq rules  | 
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321  | 
in  | 
| 61144 | 322  | 
    Simplifier.make_simproc @{context} "to_pred"
 | 
323  | 
      {lhss = [anyt],
 | 
|
324  | 
proc = fn _ => fn ctxt => fn ct =>  | 
|
325  | 
lookup_rule (Proof_Context.theory_of ctxt)  | 
|
| 62913 | 326  | 
(Thm.prop_of #> Logic.dest_equals) rules' (Thm.term_of ct)}  | 
| 
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327  | 
end;  | 
| 
 
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328  | 
|
| 59642 | 329  | 
fun to_pred_proc thy rules t =  | 
330  | 
case lookup_rule thy I rules t of  | 
|
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331  | 
NONE => NONE  | 
| 
 
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332  | 
| SOME (lhs, rhs) =>  | 
| 32035 | 333  | 
SOME (Envir.subst_term  | 
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334  | 
(Pattern.match thy (lhs, t) (Vartab.empty, Vartab.empty)) rhs);  | 
| 
 
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335  | 
|
| 
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336  | 
fun to_pred thms context thm =  | 
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337  | 
let  | 
| 
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338  | 
val thy = Context.theory_of context;  | 
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339  | 
val ctxt = Context.proof_of context;  | 
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340  | 
    val {to_pred_simps, set_arities, pred_arities, ...} =
 | 
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341  | 
fold (add context) thms (Data.get context);  | 
| 
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342  | 
val fs = filter (is_Var o fst)  | 
| 59582 | 343  | 
(infer_arities thy set_arities (NONE, Thm.prop_of thm) []);  | 
| 
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344  | 
    (* instantiate each set parameter with {(x, y). p x y} *)
 | 
| 59642 | 345  | 
val insts = mk_to_pred_inst ctxt fs  | 
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346  | 
in  | 
| 
 
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347  | 
thm |>  | 
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348  | 
Thm.instantiate ([], insts) |>  | 
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349  | 
Simplifier.full_simplify (put_simpset HOL_basic_ss ctxt addsimprocs  | 
| 67637 | 350  | 
[to_pred_simproc  | 
351  | 
        (@{thm mem_Collect_eq} :: @{thm case_prod_conv} :: map (Thm.transfer thy) to_pred_simps)]) |>
 | 
|
| 60328 | 352  | 
eta_contract_thm ctxt (is_pred pred_arities) |>  | 
| 33368 | 353  | 
Rule_Cases.save thm  | 
| 
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354  | 
end;  | 
| 
 
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355  | 
|
| 
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356  | 
val to_pred_att = Thm.rule_attribute [] o to_pred;  | 
| 45979 | 357  | 
|
| 
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358  | 
|
| 
 
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359  | 
(**** convert theorem in predicate notation to set notation ****)  | 
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360  | 
|
| 
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361  | 
fun to_set thms context thm =  | 
| 
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362  | 
let  | 
| 
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 | 
363  | 
val thy = Context.theory_of context;  | 
| 
 
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364  | 
val ctxt = Context.proof_of context;  | 
| 
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365  | 
    val {to_set_simps, pred_arities, ...} =
 | 
| 
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366  | 
fold (add context) thms (Data.get context);  | 
| 
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367  | 
val fs = filter (is_Var o fst)  | 
| 59582 | 368  | 
(infer_arities thy pred_arities (NONE, Thm.prop_of thm) []);  | 
| 
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369  | 
(* instantiate each predicate parameter with %x y. (x, y) : s *)  | 
| 
 
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370  | 
val insts = map (fn (x, ps) =>  | 
| 
 
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371  | 
let  | 
| 
 
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372  | 
val Ts = binder_types (fastype_of x);  | 
| 
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373  | 
val l = length Ts;  | 
| 
 
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374  | 
val k = length ps;  | 
| 
 
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 | 
375  | 
val (Rs, Us) = chop (l - k - 1) Ts;  | 
| 
 
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 | 
376  | 
val T = HOLogic.mk_ptupleT ps Us;  | 
| 
 
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 | 
377  | 
val x' = map_type (K (Rs ---> HOLogic.mk_setT T)) x  | 
| 
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378  | 
in  | 
| 
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 | 
379  | 
(dest_Var x,  | 
| 59642 | 380  | 
Thm.cterm_of ctxt (fold_rev (Term.abs o pair "x") Ts  | 
| 
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 | 
381  | 
(HOLogic.mk_mem (HOLogic.mk_ptuple ps T (map Bound (k downto 0)),  | 
| 
 
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 | 
382  | 
list_comb (x', map Bound (l - 1 downto k + 1))))))  | 
| 
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383  | 
end) fs;  | 
| 
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 | 
384  | 
in  | 
| 
25416
 
1d8ebaf5f211
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 | 
385  | 
thm |>  | 
| 
 
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 | 
386  | 
Thm.instantiate ([], insts) |>  | 
| 
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 | 
387  | 
Simplifier.full_simplify (put_simpset HOL_basic_ss ctxt addsimps to_set_simps  | 
| 67149 | 388  | 
addsimprocs [strong_ind_simproc pred_arities, \<^simproc>\<open>Collect_mem\<close>]) |>  | 
| 33368 | 389  | 
Rule_Cases.save thm  | 
| 
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 | 
390  | 
end;  | 
| 
 
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 | 
391  | 
|
| 
61853
 
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 | 
392  | 
val to_set_att = Thm.rule_attribute [] o to_set;  | 
| 
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 | 
393  | 
|
| 
 
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 | 
394  | 
|
| 
 
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 | 
395  | 
(**** definition of inductive sets ****)  | 
| 
 
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 | 
396  | 
|
| 29389 | 397  | 
fun add_ind_set_def  | 
| 
49170
 
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 | 
398  | 
    {quiet_mode, verbose, alt_name, coind, no_elim, no_ind, skip_mono}
 | 
| 
33458
 
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 | 
399  | 
cs intros monos params cnames_syn lthy =  | 
| 
 
ae1f5d89b082
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 | 
400  | 
let  | 
| 42361 | 401  | 
val thy = Proof_Context.theory_of lthy;  | 
| 
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 | 
402  | 
    val {set_arities, pred_arities, to_pred_simps, ...} =
 | 
| 
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 | 
403  | 
Data.get (Context.Proof lthy);  | 
| 
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 | 
404  | 
fun infer (Abs (_, _, t)) = infer t  | 
| 67149 | 405  | 
| infer (Const (\<^const_name>\<open>Set.member\<close>, _) $ t $ u) =  | 
| 
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 | 
406  | 
infer_arities thy set_arities (SOME (HOLogic.flat_tuple_paths t), u)  | 
| 
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 | 
407  | 
| infer (t $ u) = infer t #> infer u  | 
| 
 
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 | 
408  | 
| infer _ = I;  | 
| 
 
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 | 
409  | 
val new_arities = filter_out  | 
| 45979 | 410  | 
(fn (x as Free (_, T), _) => member (op =) params x andalso length (binder_types T) > 0  | 
| 
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 | 
411  | 
| _ => false) (fold (snd #> infer) intros []);  | 
| 33278 | 412  | 
val params' = map (fn x =>  | 
413  | 
(case AList.lookup op = new_arities x of  | 
|
| 
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 | 
414  | 
SOME fs =>  | 
| 
 
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 | 
415  | 
let  | 
| 
 
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 | 
416  | 
val T = HOLogic.dest_setT (fastype_of x);  | 
| 
32342
 
3fabf5b5fc83
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 | 
417  | 
val Ts = HOLogic.strip_ptupleT fs T;  | 
| 
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 | 
418  | 
val x' = map_type (K (Ts ---> HOLogic.boolT)) x  | 
| 
 
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 | 
419  | 
in  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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420  | 
(x, (x',  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
421  | 
(HOLogic.Collect_const T $  | 
| 
61424
 
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prod_case as canonical name for product type eliminator
 
haftmann 
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 | 
422  | 
HOLogic.mk_ptupleabs fs T HOLogic.boolT x',  | 
| 
46219
 
426ed18eba43
discontinued old-style Term.list_abs in favour of plain Term.abs;
 
wenzelm 
parents: 
45979 
diff
changeset
 | 
423  | 
fold_rev (Term.abs o pair "x") Ts  | 
| 
 
426ed18eba43
discontinued old-style Term.list_abs in favour of plain Term.abs;
 
wenzelm 
parents: 
45979 
diff
changeset
 | 
424  | 
(HOLogic.mk_mem  | 
| 
 
426ed18eba43
discontinued old-style Term.list_abs in favour of plain Term.abs;
 
wenzelm 
parents: 
45979 
diff
changeset
 | 
425  | 
(HOLogic.mk_ptuple fs T (map Bound (length fs downto 0)), x)))))  | 
| 
23764
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
426  | 
end  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
427  | 
| NONE => (x, (x, (x, x))))) params;  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
428  | 
val (params1, (params2, params3)) =  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
429  | 
params' |> map snd |> split_list ||> split_list;  | 
| 
30860
 
e5f9477aed50
Added check whether argument types of inductive set agree with types of declared
 
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30528 
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 | 
430  | 
val paramTs = map fastype_of params;  | 
| 
23764
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
431  | 
|
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
432  | 
(* equations for converting sets to predicates *)  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
433  | 
val ((cs', cs_info), eqns) = cs |> map (fn c as Free (s, T) =>  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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434  | 
let  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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435  | 
val fs = the_default [] (AList.lookup op = new_arities c);  | 
| 45979 | 436  | 
val (Us, U) = strip_type T |> apsnd HOLogic.dest_setT;  | 
| 
30860
 
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437  | 
val _ = Us = paramTs orelse error (Pretty.string_of (Pretty.chunks  | 
| 
 
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 | 
438  | 
[Pretty.str "Argument types",  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
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 | 
439  | 
Pretty.block (Pretty.commas (map (Syntax.pretty_typ lthy) Us)),  | 
| 
30860
 
e5f9477aed50
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 | 
440  | 
           Pretty.str ("of " ^ s ^ " do not agree with types"),
 | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
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changeset
 | 
441  | 
Pretty.block (Pretty.commas (map (Syntax.pretty_typ lthy) paramTs)),  | 
| 
30860
 
e5f9477aed50
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 | 
442  | 
Pretty.str "of declared parameters"]));  | 
| 
32342
 
3fabf5b5fc83
path-sensitive tuple combinators carry a "p"(ath) prefix; combinators for standard right-fold tuples
 
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 | 
443  | 
val Ts = HOLogic.strip_ptupleT fs U;  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
444  | 
val c' = Free (s ^ "p",  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
445  | 
map fastype_of params1 @ Ts ---> HOLogic.boolT)  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
446  | 
in  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
447  | 
((c', (fs, U, Ts)),  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
448  | 
(list_comb (c, params2),  | 
| 
61424
 
c3658c18b7bc
prod_case as canonical name for product type eliminator
 
haftmann 
parents: 
61268 
diff
changeset
 | 
449  | 
HOLogic.Collect_const U $ HOLogic.mk_ptupleabs fs U HOLogic.boolT  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
450  | 
(list_comb (c', params1))))  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
451  | 
end) |> split_list |>> split_list;  | 
| 
 
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 | 
452  | 
val eqns' = eqns @  | 
| 59582 | 453  | 
map (Thm.prop_of #> HOLogic.dest_Trueprop #> HOLogic.dest_eq)  | 
| 63399 | 454  | 
        (@{thm mem_Collect_eq} :: @{thm case_prod_conv} :: to_pred_simps);
 | 
| 
23764
 
15f81c5d5330
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 | 
455  | 
|
| 
 
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 | 
456  | 
(* predicate version of the introduction rules *)  | 
| 
 
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 | 
457  | 
val intros' =  | 
| 
 
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 | 
458  | 
map (fn (name_atts, t) => (name_atts,  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
459  | 
t |>  | 
| 
 
15f81c5d5330
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 | 
460  | 
map_aterms (fn u =>  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
461  | 
(case AList.lookup op = params' u of  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
462  | 
SOME (_, (u', _)) => u'  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
463  | 
| NONE => u)) |>  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
464  | 
Pattern.rewrite_term thy [] [to_pred_proc thy eqns'] |>  | 
| 
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
465  | 
eta_contract (member op = cs' orf is_pred pred_arities))) intros;  | 
| 30345 | 466  | 
val cnames_syn' = map (fn (b, _) => (Binding.suffix_name "p" b, NoSyn)) cnames_syn;  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
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changeset
 | 
467  | 
val monos' = map (to_pred [] (Context.Proof lthy)) monos;  | 
| 
38665
 
e92223c886f8
introducing simplification equations for inductive sets; added data structure for storing equations; rewriting retrieval of simplification equation for inductive predicates and sets
 
bulwahn 
parents: 
37863 
diff
changeset
 | 
468  | 
    val ({preds, intrs, elims, raw_induct, eqs, ...}, lthy1) =
 | 
| 
31723
 
f5cafe803b55
discontinued ancient tradition to suffix certain ML module names with "_package"
 
haftmann 
parents: 
30860 
diff
changeset
 | 
469  | 
Inductive.add_ind_def  | 
| 33669 | 470  | 
        {quiet_mode = quiet_mode, verbose = verbose, alt_name = Binding.empty,
 | 
| 
49170
 
03bee3a6a1b7
discontinued obsolete fork_mono to loosen some brakes -- NB: TTY interaction has Goal.future_proofs disabled due to missing Future.worker_task;
 
wenzelm 
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46961 
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changeset
 | 
471  | 
coind = coind, no_elim = no_elim, no_ind = no_ind, skip_mono = skip_mono}  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
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diff
changeset
 | 
472  | 
cs' intros' monos' params1 cnames_syn' lthy;  | 
| 
23764
 
15f81c5d5330
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 | 
473  | 
|
| 
 
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 | 
474  | 
(* define inductive sets using previously defined predicates *)  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
475  | 
val (defs, lthy2) = lthy1  | 
| 
33766
 
c679f05600cd
adapted Local_Theory.define -- eliminated odd thm kind;
 
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changeset
 | 
476  | 
|> fold_map Local_Theory.define  | 
| 61951 | 477  | 
(map (fn (((b, mx), (fs, U, _)), p) =>  | 
| 
63041
 
cb495c4807b3
clarified def binding position: reset for implicit/derived binding, keep for explicit binding;
 
wenzelm 
parents: 
63006 
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 | 
478  | 
((b, mx), ((Thm.def_binding b, []),  | 
| 61951 | 479  | 
fold_rev lambda params (HOLogic.Collect_const U $  | 
480  | 
HOLogic.mk_ptupleabs fs U HOLogic.boolT (list_comb (p, params3))))))  | 
|
481  | 
(cnames_syn ~~ cs_info ~~ preds));  | 
|
| 
23764
 
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New wrapper for defining inductive sets with new inductive
 
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 | 
482  | 
|
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
483  | 
(* prove theorems for converting predicate to set notation *)  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
484  | 
val lthy3 = fold  | 
| 
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
485  | 
(fn (((p, c as Free (s, _)), (fs, U, Ts)), (_, (_, def))) => fn lthy =>  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
486  | 
let val conv_thm =  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
487  | 
Goal.prove lthy (map (fst o dest_Free) params) []  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
488  | 
(HOLogic.mk_Trueprop (HOLogic.mk_eq  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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parents:  
diff
changeset
 | 
489  | 
(list_comb (p, params3),  | 
| 
46219
 
426ed18eba43
discontinued old-style Term.list_abs in favour of plain Term.abs;
 
wenzelm 
parents: 
45979 
diff
changeset
 | 
490  | 
fold_rev (Term.abs o pair "x") Ts  | 
| 
 
426ed18eba43
discontinued old-style Term.list_abs in favour of plain Term.abs;
 
wenzelm 
parents: 
45979 
diff
changeset
 | 
491  | 
(HOLogic.mk_mem (HOLogic.mk_ptuple fs U (map Bound (length fs downto 0)),  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
492  | 
list_comb (c, params))))))  | 
| 
59498
 
50b60f501b05
proper context for resolve_tac, eresolve_tac, dresolve_tac, forward_tac etc.;
 
wenzelm 
parents: 
58839 
diff
changeset
 | 
493  | 
            (K (REPEAT (resolve_tac lthy @{thms ext} 1) THEN
 | 
| 58839 | 494  | 
simp_tac (put_simpset HOL_basic_ss lthy addsimps  | 
| 63399 | 495  | 
                [def, @{thm mem_Collect_eq}, @{thm case_prod_conv}]) 1))
 | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
496  | 
in  | 
| 33671 | 497  | 
lthy |> Local_Theory.note ((Binding.name (s ^ "p_" ^ s ^ "_eq"),  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
498  | 
[Attrib.internal (K pred_set_conv_att)]),  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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changeset
 | 
499  | 
[conv_thm]) |> snd  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
500  | 
end) (preds ~~ cs ~~ cs_info ~~ defs) lthy2;  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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 | 
501  | 
|
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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parents:  
diff
changeset
 | 
502  | 
(* convert theorems to set notation *)  | 
| 
28083
 
103d9282a946
explicit type Name.binding for higher-specification elements;
 
wenzelm 
parents: 
27330 
diff
changeset
 | 
503  | 
val rec_name =  | 
| 63006 | 504  | 
if Binding.is_empty alt_name then Binding.conglomerate (map #1 cnames_syn) else alt_name;  | 
| 33671 | 505  | 
val cnames = map (Local_Theory.full_name lthy3 o #1) cnames_syn; (* FIXME *)  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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diff
changeset
 | 
506  | 
val (intr_names, intr_atts) = split_list (map fst intros);  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
507  | 
val raw_induct' = to_set [] (Context.Proof lthy3) raw_induct;  | 
| 
37734
 
489ac1ecb9f1
added the new command inductive_cases to derive simplification equations for inductive predicates; added binding simps for general simplification equation
 
bulwahn 
parents: 
37677 
diff
changeset
 | 
508  | 
val (intrs', elims', eqs', induct, inducts, lthy4) =  | 
| 
35757
 
c2884bec5463
adding Spec_Rules to definitional package inductive and inductive_set
 
bulwahn 
parents: 
35646 
diff
changeset
 | 
509  | 
Inductive.declare_rules rec_name coind no_ind cnames (map fst defs)  | 
| 33459 | 510  | 
(map (to_set [] (Context.Proof lthy3)) intrs) intr_names intr_atts  | 
511  | 
(map (fn th => (to_set [] (Context.Proof lthy3) th,  | 
|
| 
44045
 
2814ff2a6e3e
infrastructure for attaching names to hypothesis in cases; realised via the same tag mechanism as case names
 
nipkow 
parents: 
43278 
diff
changeset
 | 
512  | 
map (fst o fst) (fst (Rule_Cases.get th)),  | 
| 
34986
 
7f7939c9370f
Added "constraints" tag / attribute for specifying the number of equality
 
berghofe 
parents: 
34903 
diff
changeset
 | 
513  | 
Rule_Cases.get_constraints th)) elims)  | 
| 
38665
 
e92223c886f8
introducing simplification equations for inductive sets; added data structure for storing equations; rewriting retrieval of simplification equation for inductive predicates and sets
 
bulwahn 
parents: 
37863 
diff
changeset
 | 
514  | 
(map (to_set [] (Context.Proof lthy3)) eqs) raw_induct' lthy3;  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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parents:  
diff
changeset
 | 
515  | 
in  | 
| 35646 | 516  | 
    ({intrs = intrs', elims = elims', induct = induct, inducts = inducts,
 | 
| 
37734
 
489ac1ecb9f1
added the new command inductive_cases to derive simplification equations for inductive predicates; added binding simps for general simplification equation
 
bulwahn 
parents: 
37677 
diff
changeset
 | 
517  | 
raw_induct = raw_induct', preds = map fst defs, eqs = eqs'},  | 
| 
33458
 
ae1f5d89b082
proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
33368 
diff
changeset
 | 
518  | 
lthy4)  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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parents:  
diff
changeset
 | 
519  | 
end;  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
berghofe 
parents:  
diff
changeset
 | 
520  | 
|
| 
31723
 
f5cafe803b55
discontinued ancient tradition to suffix certain ML module names with "_package"
 
haftmann 
parents: 
30860 
diff
changeset
 | 
521  | 
val add_inductive_i = Inductive.gen_add_inductive_i add_ind_set_def;  | 
| 
 
f5cafe803b55
discontinued ancient tradition to suffix certain ML module names with "_package"
 
haftmann 
parents: 
30860 
diff
changeset
 | 
522  | 
val add_inductive = Inductive.gen_add_inductive add_ind_set_def;  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
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parents:  
diff
changeset
 | 
523  | 
|
| 
45384
 
dffa657f0aa2
clarified attribute "mono_set": pure declaration, proper export in ML;
 
wenzelm 
parents: 
45375 
diff
changeset
 | 
524  | 
fun mono_att att =  | 
| 
 
dffa657f0aa2
clarified attribute "mono_set": pure declaration, proper export in ML;
 
wenzelm 
parents: 
45375 
diff
changeset
 | 
525  | 
Thm.declaration_attribute (fn thm => fn context =>  | 
| 
 
dffa657f0aa2
clarified attribute "mono_set": pure declaration, proper export in ML;
 
wenzelm 
parents: 
45375 
diff
changeset
 | 
526  | 
Thm.attribute_declaration att (to_pred [] context thm) context);  | 
| 
45375
 
7fe19930dfc9
more explicit representation of rule_attribute vs. declaration_attribute vs. mixed_attribute;
 
wenzelm 
parents: 
45177 
diff
changeset
 | 
527  | 
|
| 
45384
 
dffa657f0aa2
clarified attribute "mono_set": pure declaration, proper export in ML;
 
wenzelm 
parents: 
45375 
diff
changeset
 | 
528  | 
val mono_add = mono_att Inductive.mono_add;  | 
| 
 
dffa657f0aa2
clarified attribute "mono_set": pure declaration, proper export in ML;
 
wenzelm 
parents: 
45375 
diff
changeset
 | 
529  | 
val mono_del = mono_att Inductive.mono_del;  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
berghofe 
parents:  
diff
changeset
 | 
530  | 
|
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
berghofe 
parents:  
diff
changeset
 | 
531  | 
|
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
berghofe 
parents:  
diff
changeset
 | 
532  | 
(** package setup **)  | 
| 
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
berghofe 
parents:  
diff
changeset
 | 
533  | 
|
| 56512 | 534  | 
(* attributes *)  | 
| 
23764
 
15f81c5d5330
New wrapper for defining inductive sets with new inductive
 
berghofe 
parents:  
diff
changeset
 | 
535  | 
|
| 56512 | 536  | 
val _ =  | 
537  | 
Theory.setup  | 
|
| 67149 | 538  | 
(Attrib.setup \<^binding>\<open>pred_set_conv\<close> (Scan.succeed pred_set_conv_att)  | 
| 56512 | 539  | 
"declare rules for converting between predicate and set notation" #>  | 
| 67149 | 540  | 
Attrib.setup \<^binding>\<open>to_set\<close> (Attrib.thms >> to_set_att)  | 
| 56512 | 541  | 
"convert rule to set notation" #>  | 
| 67149 | 542  | 
Attrib.setup \<^binding>\<open>to_pred\<close> (Attrib.thms >> to_pred_att)  | 
| 56512 | 543  | 
"convert rule to predicate notation" #>  | 
| 67149 | 544  | 
Attrib.setup \<^binding>\<open>mono_set\<close> (Attrib.add_del mono_add mono_del)  | 
| 56512 | 545  | 
"declare of monotonicity rule for set operators");  | 
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547  | 
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prod_case as canonical name for product type eliminator
 
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548  | 
(* commands *)  | 
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549  | 
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discontinued ancient tradition to suffix certain ML module names with "_package"
 
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550  | 
val ind_set_decl = Inductive.gen_ind_decl add_ind_set_def;  | 
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551  | 
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val _ =  | 
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Outer_Syntax.local_theory \<^command_keyword>\<open>inductive_set\<close> "define inductive sets"  | 
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proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
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554  | 
(ind_set_decl false);  | 
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555  | 
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val _ =  | 
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Outer_Syntax.local_theory \<^command_keyword>\<open>coinductive_set\<close> "define coinductive sets"  | 
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proper naming convention lthy: local_theory, but ctxt: Proof.context for arbitrary context;
 
wenzelm 
parents: 
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558  | 
(ind_set_decl true);  | 
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berghofe 
parents:  
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559  | 
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560  | 
end;  |