| author | wenzelm | 
| Mon, 05 Aug 2002 21:17:04 +0200 | |
| changeset 13457 | 7ddcf40a80b3 | 
| parent 13102 | b6f8aae5f152 | 
| child 13527 | bbd328200a9a | 
| permissions | -rw-r--r-- | 
| 11519 | 1  | 
(* Title: Pure/proofterm.ML  | 
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ID: $Id$  | 
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| 11540 | 3  | 
Author: Stefan Berghofer, TU Muenchen  | 
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License: GPL (GNU GENERAL PUBLIC LICENSE)  | 
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LF style proof terms.  | 
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*)  | 
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||
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infix 8 % %% %>;  | 
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signature BASIC_PROOFTERM =  | 
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sig  | 
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11543
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
13  | 
val proofs: int ref  | 
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datatype proof =  | 
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PBound of int  | 
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| Abst of string * typ option * proof  | 
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| AbsP of string * term option * proof  | 
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| % of proof * term option  | 
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| %% of proof * proof  | 
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| Hyp of term  | 
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| PThm of (string * (string * string list) list) * proof * term * typ list option  | 
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| PAxm of string * term * typ list option  | 
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| Oracle of string * term * typ list option  | 
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| MinProof of proof list;  | 
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val %> : proof * term -> proof  | 
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end;  | 
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signature PROOFTERM =  | 
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sig  | 
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include BASIC_PROOFTERM  | 
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val infer_derivs : (proof -> proof -> proof) -> bool * proof -> bool * proof -> bool * proof  | 
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val infer_derivs' : (proof -> proof) -> (bool * proof -> bool * proof)  | 
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(** primitive operations **)  | 
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val proof_combt : proof * term list -> proof  | 
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val proof_combt' : proof * term option list -> proof  | 
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val proof_combP : proof * proof list -> proof  | 
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val strip_combt : proof -> proof * term option list  | 
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val strip_combP : proof -> proof * proof list  | 
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val strip_thm : proof -> proof  | 
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val map_proof_terms : (term -> term) -> (typ -> typ) -> proof -> proof  | 
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val fold_proof_terms : (term * 'a -> 'a) -> (typ * 'a -> 'a) -> 'a * proof -> 'a  | 
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val add_prf_names : string list * proof -> string list  | 
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val add_prf_tfree_names : string list * proof -> string list  | 
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val add_prf_tvar_ixns : indexname list * proof -> indexname list  | 
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val maxidx_of_proof : proof -> int  | 
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12907
 
27e6d344d724
New function change_type for changing type assignments of theorems,
 
berghofe 
parents: 
12890 
diff
changeset
 | 
50  | 
val change_type : typ list option -> proof -> proof  | 
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val prf_abstract_over : term -> proof -> proof  | 
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val prf_incr_bv : int -> int -> int -> int -> proof -> proof  | 
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val incr_pboundvars : int -> int -> proof -> proof  | 
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val prf_loose_bvar1 : proof -> int -> bool  | 
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val prf_loose_Pbvar1 : proof -> int -> bool  | 
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val prf_add_loose_bnos : int -> int -> proof ->  | 
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int list * int list -> int list * int list  | 
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val norm_proof : Envir.env -> proof -> proof  | 
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val norm_proof' : Envir.env -> proof -> proof  | 
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val prf_subst_bounds : term list -> proof -> proof  | 
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val prf_subst_pbounds : proof list -> proof -> proof  | 
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val freeze_thaw_prf : proof -> proof * (proof -> proof)  | 
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val thms_of_proof : (term * proof) list Symtab.table -> proof ->  | 
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(term * proof) list Symtab.table  | 
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val axms_of_proof : proof Symtab.table -> proof -> proof Symtab.table  | 
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val oracles_of_proof : proof list -> proof -> proof list  | 
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(** proof terms for specific inference rules **)  | 
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val implies_intr_proof : term -> proof -> proof  | 
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val forall_intr_proof : term -> string -> proof -> proof  | 
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val varify_proof : term -> string list -> proof -> proof  | 
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val freezeT : term -> proof -> proof  | 
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val rotate_proof : term list -> term -> int -> proof -> proof  | 
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val permute_prems_prf : term list -> int -> int -> proof -> proof  | 
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val instantiate : (indexname * typ) list -> (term * term) list -> proof -> proof  | 
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val lift_proof : term -> int -> term -> proof -> proof  | 
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val assumption_proof : term list -> term -> int -> proof -> proof  | 
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val bicompose_proof : term list -> term list -> term list -> term option ->  | 
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int -> proof -> proof -> proof  | 
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val equality_axms : (string * term) list  | 
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val reflexive_axm : proof  | 
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val symmetric_axm : proof  | 
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val transitive_axm : proof  | 
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val equal_intr_axm : proof  | 
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val equal_elim_axm : proof  | 
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val abstract_rule_axm : proof  | 
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val combination_axm : proof  | 
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val reflexive : proof  | 
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val symmetric : proof -> proof  | 
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val transitive : term -> typ -> proof -> proof -> proof  | 
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val abstract_rule : term -> string -> proof -> proof  | 
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val combination : term -> term -> term -> term -> typ -> proof -> proof -> proof  | 
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val equal_intr : term -> term -> proof -> proof -> proof  | 
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val equal_elim : term -> term -> proof -> proof -> proof  | 
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val axm_proof : string -> term -> proof  | 
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val oracle_proof : string -> term -> proof  | 
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val thm_proof : Sign.sg -> string * (string * string list) list ->  | 
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term list -> term -> proof -> proof  | 
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val get_name_tags : term list -> term -> proof -> string * (string * string list) list  | 
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(** rewriting on proof terms **)  | 
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val add_prf_rrules : (proof * proof) list -> theory -> theory  | 
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val add_prf_rprocs : (string * (Term.typ list -> proof -> proof option)) list ->  | 
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theory -> theory  | 
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val rewrite_proof : Type.type_sig -> (proof * proof) list *  | 
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(string * (typ list -> proof -> proof option)) list -> proof -> proof  | 
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val rewrite_proof_notypes : (proof * proof) list *  | 
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(string * (typ list -> proof -> proof option)) list -> proof -> proof  | 
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val init : theory -> theory  | 
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end  | 
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structure Proofterm : PROOFTERM =  | 
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struct  | 
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11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
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open Envir;  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
118  | 
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| 11519 | 119  | 
datatype proof =  | 
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PBound of int  | 
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| Abst of string * typ option * proof  | 
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| AbsP of string * term option * proof  | 
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| op % of proof * term option  | 
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| op %% of proof * proof  | 
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| Hyp of term  | 
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| PThm of (string * (string * string list) list) * proof * term * typ list option  | 
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| PAxm of string * term * typ list option  | 
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| Oracle of string * term * typ list option  | 
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| MinProof of proof list;  | 
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fun oracles_of_proof prfs prf =  | 
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let  | 
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fun oras_of (tabs, Abst (_, _, prf)) = oras_of (tabs, prf)  | 
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| oras_of (tabs, AbsP (_, _, prf)) = oras_of (tabs, prf)  | 
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| oras_of (tabs, prf % _) = oras_of (tabs, prf)  | 
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| oras_of (tabs, prf1 %% prf2) = oras_of (oras_of (tabs, prf1), prf2)  | 
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| oras_of (tabs as (thms, oras), PThm ((name, _), prf, prop, _)) =  | 
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(case Symtab.lookup (thms, name) of  | 
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None => oras_of ((Symtab.update ((name, [prop]), thms), oras), prf)  | 
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| Some ps => if prop mem ps then tabs else  | 
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oras_of ((Symtab.update ((name, prop::ps), thms), oras), prf))  | 
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| oras_of ((thms, oras), prf as Oracle _) = (thms, prf ins oras)  | 
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| oras_of (tabs, MinProof prfs) = foldl oras_of (tabs, prfs)  | 
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| oras_of (tabs, _) = tabs  | 
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in  | 
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snd (oras_of ((Symtab.empty, prfs), prf))  | 
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end;  | 
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fun thms_of_proof tab (Abst (_, _, prf)) = thms_of_proof tab prf  | 
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| thms_of_proof tab (AbsP (_, _, prf)) = thms_of_proof tab prf  | 
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| thms_of_proof tab (prf1 %% prf2) = thms_of_proof (thms_of_proof tab prf1) prf2  | 
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| thms_of_proof tab (prf % _) = thms_of_proof tab prf  | 
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| thms_of_proof tab (prf' as PThm ((s, _), prf, prop, _)) =  | 
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(case Symtab.lookup (tab, s) of  | 
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None => thms_of_proof (Symtab.update ((s, [(prop, prf')]), tab)) prf  | 
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| Some ps => if exists (equal prop o fst) ps then tab else  | 
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thms_of_proof (Symtab.update ((s, (prop, prf')::ps), tab)) prf)  | 
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| thms_of_proof tab _ = tab;  | 
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fun axms_of_proof tab (Abst (_, _, prf)) = axms_of_proof tab prf  | 
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| axms_of_proof tab (AbsP (_, _, prf)) = axms_of_proof tab prf  | 
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| axms_of_proof tab (prf1 %% prf2) = axms_of_proof (axms_of_proof tab prf1) prf2  | 
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| axms_of_proof tab (prf % _) = axms_of_proof tab prf  | 
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| axms_of_proof tab (prf as PAxm (s, _, _)) = Symtab.update ((s, prf), tab)  | 
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| axms_of_proof tab _ = tab;  | 
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(** collect all theorems, axioms and oracles **)  | 
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fun mk_min_proof (prfs, Abst (_, _, prf)) = mk_min_proof (prfs, prf)  | 
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| mk_min_proof (prfs, AbsP (_, _, prf)) = mk_min_proof (prfs, prf)  | 
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| mk_min_proof (prfs, prf % _) = mk_min_proof (prfs, prf)  | 
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| mk_min_proof (prfs, prf1 %% prf2) = mk_min_proof (mk_min_proof (prfs, prf1), prf2)  | 
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| mk_min_proof (prfs, prf as PThm _) = prf ins prfs  | 
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| mk_min_proof (prfs, prf as PAxm _) = prf ins prfs  | 
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| mk_min_proof (prfs, prf as Oracle _) = prf ins prfs  | 
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| mk_min_proof (prfs, MinProof prfs') = prfs union prfs'  | 
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| mk_min_proof (prfs, _) = prfs;  | 
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(** proof objects with different levels of detail **)  | 
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| 
11543
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
181  | 
val proofs = ref 2;  | 
| 11519 | 182  | 
|
| 
11543
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
183  | 
fun err_illegal_level i =  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
184  | 
  error ("Illegal level of detail for proof objects: " ^ string_of_int i);
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fun if_ora b = if b then oracles_of_proof else K;  | 
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fun infer_derivs f (ora1, prf1) (ora2, prf2) =  | 
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(ora1 orelse ora2,  | 
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| 
11543
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
190  | 
case !proofs of  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
191  | 
2 => f prf1 prf2  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
192  | 
| 1 => MinProof (mk_min_proof (mk_min_proof ([], prf1), prf2))  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
193  | 
| 0 => MinProof (if_ora ora2 (if_ora ora1 [] prf1) prf2)  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
194  | 
| i => err_illegal_level i);  | 
| 11519 | 195  | 
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196  | 
fun infer_derivs' f (ora, prf) =  | 
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197  | 
(ora,  | 
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11543
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
198  | 
case !proofs of  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
199  | 
2 => f prf  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
200  | 
| 1 => MinProof (mk_min_proof ([], prf))  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
201  | 
| 0 => MinProof (if_ora ora [] prf)  | 
| 
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
202  | 
| i => err_illegal_level i);  | 
| 11519 | 203  | 
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| 11615 | 204  | 
fun (prf %> t) = prf % Some t;  | 
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val proof_combt = foldl (op %>);  | 
207  | 
val proof_combt' = foldl (op %);  | 
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208  | 
val proof_combP = foldl (op %%);  | 
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| 11519 | 209  | 
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210  | 
fun strip_combt prf =  | 
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let fun stripc (prf % t, ts) = stripc (prf, t::ts)  | 
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| stripc x = x  | 
213  | 
in stripc (prf, []) end;  | 
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214  | 
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215  | 
fun strip_combP prf =  | 
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| 11615 | 216  | 
let fun stripc (prf %% prf', prfs) = stripc (prf, prf'::prfs)  | 
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| stripc x = x  | 
218  | 
in stripc (prf, []) end;  | 
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219  | 
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220  | 
fun strip_thm prf = (case strip_combt (fst (strip_combP prf)) of  | 
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221  | 
(PThm (_, prf', _, _), _) => prf'  | 
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222  | 
| _ => prf);  | 
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223  | 
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224  | 
val mk_Abst = foldr (fn ((s, T:typ), prf) => Abst (s, None, prf));  | 
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225  | 
fun mk_AbsP (i, prf) = funpow i (fn prf => AbsP ("H", None, prf)) prf;
 | 
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226  | 
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| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
227  | 
fun apsome' f None = raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
228  | 
| apsome' f (Some x) = Some (f x);  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
229  | 
|
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
230  | 
fun same f x =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
231  | 
let val x' = f x  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
232  | 
in if x = x' then raise SAME else x' end;  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
233  | 
|
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
234  | 
fun map_proof_terms f g =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
235  | 
let  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
236  | 
fun mapp (Abst (s, T, prf)) = (Abst (s, apsome' (same g) T, mapph prf)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
237  | 
handle SAME => Abst (s, T, mapp prf))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
238  | 
| mapp (AbsP (s, t, prf)) = (AbsP (s, apsome' (same f) t, mapph prf)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
239  | 
handle SAME => AbsP (s, t, mapp prf))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
240  | 
| mapp (prf % t) = (mapp prf % apsome f t  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
241  | 
handle SAME => prf % apsome' (same f) t)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
242  | 
| mapp (prf1 %% prf2) = (mapp prf1 %% mapph prf2  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
243  | 
handle SAME => prf1 %% mapp prf2)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
244  | 
| mapp (PThm (a, prf, prop, Some Ts)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
245  | 
PThm (a, prf, prop, Some (same (map g) Ts))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
246  | 
| mapp (PAxm (a, prop, Some Ts)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
247  | 
PAxm (a, prop, Some (same (map g) Ts))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
248  | 
| mapp _ = raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
249  | 
and mapph prf = (mapp prf handle SAME => prf)  | 
| 
 
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changeset
 | 
250  | 
|
| 
 
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diff
changeset
 | 
251  | 
in mapph end;  | 
| 11519 | 252  | 
|
253  | 
fun fold_proof_terms f g (a, Abst (_, Some T, prf)) = fold_proof_terms f g (g (T, a), prf)  | 
|
254  | 
| fold_proof_terms f g (a, Abst (_, None, prf)) = fold_proof_terms f g (a, prf)  | 
|
255  | 
| fold_proof_terms f g (a, AbsP (_, Some t, prf)) = fold_proof_terms f g (f (t, a), prf)  | 
|
256  | 
| fold_proof_terms f g (a, AbsP (_, None, prf)) = fold_proof_terms f g (a, prf)  | 
|
| 11615 | 257  | 
| fold_proof_terms f g (a, prf % Some t) = f (t, fold_proof_terms f g (a, prf))  | 
258  | 
| fold_proof_terms f g (a, prf % None) = fold_proof_terms f g (a, prf)  | 
|
259  | 
| fold_proof_terms f g (a, prf1 %% prf2) = fold_proof_terms f g  | 
|
| 11519 | 260  | 
(fold_proof_terms f g (a, prf1), prf2)  | 
261  | 
| fold_proof_terms _ g (a, PThm (_, _, _, Some Ts)) = foldr g (Ts, a)  | 
|
262  | 
| fold_proof_terms _ g (a, PAxm (_, prop, Some Ts)) = foldr g (Ts, a)  | 
|
263  | 
| fold_proof_terms _ _ (a, _) = a;  | 
|
264  | 
||
265  | 
val add_prf_names = fold_proof_terms add_term_names ((uncurry K) o swap);  | 
|
266  | 
val add_prf_tfree_names = fold_proof_terms add_term_tfree_names add_typ_tfree_names;  | 
|
267  | 
val add_prf_tvar_ixns = fold_proof_terms add_term_tvar_ixns (add_typ_ixns o swap);  | 
|
268  | 
||
| 12868 | 269  | 
fun maxidx_of_proof prf = fold_proof_terms  | 
270  | 
(Int.max o apfst maxidx_of_term) (Int.max o apfst maxidx_of_typ) (~1, prf);  | 
|
271  | 
||
| 
12907
 
27e6d344d724
New function change_type for changing type assignments of theorems,
 
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parents: 
12890 
diff
changeset
 | 
272  | 
fun change_type opTs (PThm (name, prf, prop, _)) = PThm (name, prf, prop, opTs)  | 
| 
 
27e6d344d724
New function change_type for changing type assignments of theorems,
 
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parents: 
12890 
diff
changeset
 | 
273  | 
| change_type opTs (PAxm (name, prop, _)) = PAxm (name, prop, opTs)  | 
| 
 
27e6d344d724
New function change_type for changing type assignments of theorems,
 
berghofe 
parents: 
12890 
diff
changeset
 | 
274  | 
| change_type opTs (Oracle (name, prop, _)) = Oracle (name, prop, opTs)  | 
| 
 
27e6d344d724
New function change_type for changing type assignments of theorems,
 
berghofe 
parents: 
12890 
diff
changeset
 | 
275  | 
| change_type _ prf = prf;  | 
| 
 
27e6d344d724
New function change_type for changing type assignments of theorems,
 
berghofe 
parents: 
12890 
diff
changeset
 | 
276  | 
|
| 11519 | 277  | 
|
278  | 
(***** utilities *****)  | 
|
279  | 
||
280  | 
fun strip_abs (_::Ts) (Abs (_, _, t)) = strip_abs Ts t  | 
|
281  | 
| strip_abs _ t = t;  | 
|
282  | 
||
283  | 
fun mk_abs Ts t = foldl (fn (t', T) => Abs ("", T, t')) (t, Ts);
 | 
|
284  | 
||
285  | 
||
286  | 
(*Abstraction of a proof term over its occurrences of v,  | 
|
287  | 
which must contain no loose bound variables.  | 
|
288  | 
The resulting proof term is ready to become the body of an Abst.*)  | 
|
289  | 
||
290  | 
fun prf_abstract_over v =  | 
|
291  | 
let  | 
|
| 
11715
 
592923615f77
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berghofe 
parents: 
11652 
diff
changeset
 | 
292  | 
fun abst' lev u = if v aconv u then Bound lev else  | 
| 
 
592923615f77
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parents: 
11652 
diff
changeset
 | 
293  | 
(case u of  | 
| 
 
592923615f77
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berghofe 
parents: 
11652 
diff
changeset
 | 
294  | 
Abs (a, T, t) => Abs (a, T, abst' (lev + 1) t)  | 
| 
 
592923615f77
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parents: 
11652 
diff
changeset
 | 
295  | 
| f $ t => (abst' lev f $ absth' lev t handle SAME => f $ abst' lev t)  | 
| 
 
592923615f77
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berghofe 
parents: 
11652 
diff
changeset
 | 
296  | 
| _ => raise SAME)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
297  | 
and absth' lev t = (abst' lev t handle SAME => t);  | 
| 11519 | 298  | 
|
| 
11715
 
592923615f77
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berghofe 
parents: 
11652 
diff
changeset
 | 
299  | 
fun abst lev (AbsP (a, t, prf)) =  | 
| 
 
592923615f77
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berghofe 
parents: 
11652 
diff
changeset
 | 
300  | 
(AbsP (a, apsome' (abst' lev) t, absth lev prf)  | 
| 
 
592923615f77
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berghofe 
parents: 
11652 
diff
changeset
 | 
301  | 
handle SAME => AbsP (a, t, abst lev prf))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
302  | 
| abst lev (Abst (a, T, prf)) = Abst (a, T, abst (lev + 1) prf)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
303  | 
| abst lev (prf1 %% prf2) = (abst lev prf1 %% absth lev prf2  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
304  | 
handle SAME => prf1 %% abst lev prf2)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
305  | 
| abst lev (prf % t) = (abst lev prf % apsome (absth' lev) t  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
306  | 
handle SAME => prf % apsome' (abst' lev) t)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
307  | 
| abst _ _ = raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
308  | 
and absth lev prf = (abst lev prf handle SAME => prf)  | 
| 11519 | 309  | 
|
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
310  | 
in absth 0 end;  | 
| 11519 | 311  | 
|
312  | 
||
313  | 
(*increments a proof term's non-local bound variables  | 
|
314  | 
required when moving a proof term within abstractions  | 
|
315  | 
inc is increment for bound variables  | 
|
316  | 
lev is level at which a bound variable is considered 'loose'*)  | 
|
317  | 
||
318  | 
fun incr_bv' inct tlev t = incr_bv (inct, tlev, t);  | 
|
319  | 
||
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
320  | 
fun prf_incr_bv' incP inct Plev tlev (PBound i) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
321  | 
if i >= Plev then PBound (i+incP) else raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
322  | 
| prf_incr_bv' incP inct Plev tlev (AbsP (a, t, body)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
323  | 
(AbsP (a, apsome' (same (incr_bv' inct tlev)) t,  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
324  | 
prf_incr_bv incP inct (Plev+1) tlev body) handle SAME =>  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
325  | 
AbsP (a, t, prf_incr_bv' incP inct (Plev+1) tlev body))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
326  | 
| prf_incr_bv' incP inct Plev tlev (Abst (a, T, body)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
327  | 
Abst (a, T, prf_incr_bv' incP inct Plev (tlev+1) body)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
328  | 
| prf_incr_bv' incP inct Plev tlev (prf %% prf') =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
329  | 
(prf_incr_bv' incP inct Plev tlev prf %% prf_incr_bv incP inct Plev tlev prf'  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
330  | 
handle SAME => prf %% prf_incr_bv' incP inct Plev tlev prf')  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
331  | 
| prf_incr_bv' incP inct Plev tlev (prf % t) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
332  | 
(prf_incr_bv' incP inct Plev tlev prf % apsome (incr_bv' inct tlev) t  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
333  | 
handle SAME => prf % apsome' (same (incr_bv' inct tlev)) t)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
334  | 
| prf_incr_bv' _ _ _ _ _ = raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
335  | 
and prf_incr_bv incP inct Plev tlev prf =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
336  | 
(prf_incr_bv' incP inct Plev tlev prf handle SAME => prf);  | 
| 11519 | 337  | 
|
338  | 
fun incr_pboundvars 0 0 prf = prf  | 
|
339  | 
| incr_pboundvars incP inct prf = prf_incr_bv incP inct 0 0 prf;  | 
|
340  | 
||
341  | 
||
| 11615 | 342  | 
fun prf_loose_bvar1 (prf1 %% prf2) k = prf_loose_bvar1 prf1 k orelse prf_loose_bvar1 prf2 k  | 
343  | 
| prf_loose_bvar1 (prf % Some t) k = prf_loose_bvar1 prf k orelse loose_bvar1 (t, k)  | 
|
344  | 
| prf_loose_bvar1 (_ % None) _ = true  | 
|
| 11519 | 345  | 
| prf_loose_bvar1 (AbsP (_, Some t, prf)) k = loose_bvar1 (t, k) orelse prf_loose_bvar1 prf k  | 
346  | 
| prf_loose_bvar1 (AbsP (_, None, _)) k = true  | 
|
347  | 
| prf_loose_bvar1 (Abst (_, _, prf)) k = prf_loose_bvar1 prf (k+1)  | 
|
348  | 
| prf_loose_bvar1 _ _ = false;  | 
|
349  | 
||
350  | 
fun prf_loose_Pbvar1 (PBound i) k = i = k  | 
|
| 11615 | 351  | 
| prf_loose_Pbvar1 (prf1 %% prf2) k = prf_loose_Pbvar1 prf1 k orelse prf_loose_Pbvar1 prf2 k  | 
352  | 
| prf_loose_Pbvar1 (prf % _) k = prf_loose_Pbvar1 prf k  | 
|
| 11519 | 353  | 
| prf_loose_Pbvar1 (AbsP (_, _, prf)) k = prf_loose_Pbvar1 prf (k+1)  | 
354  | 
| prf_loose_Pbvar1 (Abst (_, _, prf)) k = prf_loose_Pbvar1 prf k  | 
|
355  | 
| prf_loose_Pbvar1 _ _ = false;  | 
|
356  | 
||
| 12279 | 357  | 
fun prf_add_loose_bnos plev tlev (PBound i) (is, js) =  | 
358  | 
if i < plev then (is, js) else ((i-plev) ins is, js)  | 
|
359  | 
| prf_add_loose_bnos plev tlev (prf1 %% prf2) p =  | 
|
360  | 
prf_add_loose_bnos plev tlev prf2  | 
|
361  | 
(prf_add_loose_bnos plev tlev prf1 p)  | 
|
362  | 
| prf_add_loose_bnos plev tlev (prf % opt) (is, js) =  | 
|
363  | 
prf_add_loose_bnos plev tlev prf (case opt of  | 
|
364  | 
None => (is, ~1 ins js)  | 
|
365  | 
| Some t => (is, add_loose_bnos (t, tlev, js)))  | 
|
366  | 
| prf_add_loose_bnos plev tlev (AbsP (_, opt, prf)) (is, js) =  | 
|
367  | 
prf_add_loose_bnos (plev+1) tlev prf (case opt of  | 
|
368  | 
None => (is, ~1 ins js)  | 
|
369  | 
| Some t => (is, add_loose_bnos (t, tlev, js)))  | 
|
370  | 
| prf_add_loose_bnos plev tlev (Abst (_, _, prf)) p =  | 
|
371  | 
prf_add_loose_bnos plev (tlev+1) prf p  | 
|
372  | 
| prf_add_loose_bnos _ _ _ _ = ([], []);  | 
|
373  | 
||
| 11519 | 374  | 
|
375  | 
(**** substitutions ****)  | 
|
376  | 
||
377  | 
fun norm_proof env =  | 
|
378  | 
let  | 
|
| 12497 | 379  | 
val envT = type_env env;  | 
380  | 
fun norm (Abst (s, T, prf)) = (Abst (s, apsome' (norm_type_same envT) T, normh prf)  | 
|
| 11519 | 381  | 
handle SAME => Abst (s, T, norm prf))  | 
382  | 
| norm (AbsP (s, t, prf)) = (AbsP (s, apsome' (norm_term_same env) t, normh prf)  | 
|
383  | 
handle SAME => AbsP (s, t, norm prf))  | 
|
| 11615 | 384  | 
| norm (prf % t) = (norm prf % apsome (norm_term env) t  | 
385  | 
handle SAME => prf % apsome' (norm_term_same env) t)  | 
|
386  | 
| norm (prf1 %% prf2) = (norm prf1 %% normh prf2  | 
|
387  | 
handle SAME => prf1 %% norm prf2)  | 
|
| 12497 | 388  | 
| norm (PThm (s, prf, t, Ts)) = PThm (s, prf, t, apsome' (norm_types_same envT) Ts)  | 
389  | 
| norm (PAxm (s, prop, Ts)) = PAxm (s, prop, apsome' (norm_types_same envT) Ts)  | 
|
| 11519 | 390  | 
| norm _ = raise SAME  | 
391  | 
and normh prf = (norm prf handle SAME => prf);  | 
|
392  | 
in normh end;  | 
|
393  | 
||
394  | 
(***** Remove some types in proof term (to save space) *****)  | 
|
395  | 
||
396  | 
fun remove_types (Abs (s, _, t)) = Abs (s, dummyT, remove_types t)  | 
|
397  | 
| remove_types (t $ u) = remove_types t $ remove_types u  | 
|
398  | 
| remove_types (Const (s, _)) = Const (s, dummyT)  | 
|
399  | 
| remove_types t = t;  | 
|
400  | 
||
401  | 
fun remove_types_env (Envir.Envir {iTs, asol, maxidx}) =
 | 
|
402  | 
  Envir.Envir {iTs = iTs, asol = Vartab.map remove_types asol, maxidx = maxidx};
 | 
|
403  | 
||
404  | 
fun norm_proof' env prf = norm_proof (remove_types_env env) prf;  | 
|
405  | 
||
406  | 
(**** substitution of bound variables ****)  | 
|
407  | 
||
408  | 
fun prf_subst_bounds args prf =  | 
|
409  | 
let  | 
|
410  | 
val n = length args;  | 
|
411  | 
fun subst' lev (Bound i) =  | 
|
412  | 
(if i<lev then raise SAME (*var is locally bound*)  | 
|
413  | 
else incr_boundvars lev (List.nth (args, i-lev))  | 
|
414  | 
handle Subscript => Bound (i-n) (*loose: change it*))  | 
|
415  | 
| subst' lev (Abs (a, T, body)) = Abs (a, T, subst' (lev+1) body)  | 
|
416  | 
| subst' lev (f $ t) = (subst' lev f $ substh' lev t  | 
|
417  | 
handle SAME => f $ subst' lev t)  | 
|
418  | 
| subst' _ _ = raise SAME  | 
|
419  | 
and substh' lev t = (subst' lev t handle SAME => t);  | 
|
420  | 
||
421  | 
fun subst lev (AbsP (a, t, body)) = (AbsP (a, apsome' (subst' lev) t, substh lev body)  | 
|
422  | 
handle SAME => AbsP (a, t, subst lev body))  | 
|
423  | 
| subst lev (Abst (a, T, body)) = Abst (a, T, subst (lev+1) body)  | 
|
| 11615 | 424  | 
| subst lev (prf %% prf') = (subst lev prf %% substh lev prf'  | 
425  | 
handle SAME => prf %% subst lev prf')  | 
|
426  | 
| subst lev (prf % t) = (subst lev prf % apsome (substh' lev) t  | 
|
427  | 
handle SAME => prf % apsome' (subst' lev) t)  | 
|
| 11519 | 428  | 
| subst _ _ = raise SAME  | 
429  | 
and substh lev prf = (subst lev prf handle SAME => prf)  | 
|
430  | 
in case args of [] => prf | _ => substh 0 prf end;  | 
|
431  | 
||
432  | 
fun prf_subst_pbounds args prf =  | 
|
433  | 
let  | 
|
434  | 
val n = length args;  | 
|
435  | 
fun subst (PBound i) Plev tlev =  | 
|
436  | 
(if i < Plev then raise SAME (*var is locally bound*)  | 
|
437  | 
else incr_pboundvars Plev tlev (List.nth (args, i-Plev))  | 
|
438  | 
handle Subscript => PBound (i-n) (*loose: change it*))  | 
|
439  | 
| subst (AbsP (a, t, body)) Plev tlev = AbsP (a, t, subst body (Plev+1) tlev)  | 
|
440  | 
| subst (Abst (a, T, body)) Plev tlev = Abst (a, T, subst body Plev (tlev+1))  | 
|
| 11615 | 441  | 
| subst (prf %% prf') Plev tlev = (subst prf Plev tlev %% substh prf' Plev tlev  | 
442  | 
handle SAME => prf %% subst prf' Plev tlev)  | 
|
443  | 
| subst (prf % t) Plev tlev = subst prf Plev tlev % t  | 
|
| 11519 | 444  | 
| subst prf _ _ = raise SAME  | 
445  | 
and substh prf Plev tlev = (subst prf Plev tlev handle SAME => prf)  | 
|
446  | 
in case args of [] => prf | _ => substh prf 0 0 end;  | 
|
447  | 
||
448  | 
||
449  | 
(**** Freezing and thawing of variables in proof terms ****)  | 
|
450  | 
||
451  | 
fun frzT names =  | 
|
452  | 
map_type_tvar (fn (ixn, xs) => TFree (the (assoc (names, ixn)), xs));  | 
|
453  | 
||
454  | 
fun thawT names =  | 
|
455  | 
map_type_tfree (fn (s, xs) => case assoc (names, s) of  | 
|
456  | 
None => TFree (s, xs)  | 
|
457  | 
| Some ixn => TVar (ixn, xs));  | 
|
458  | 
||
459  | 
fun freeze names names' (t $ u) =  | 
|
460  | 
freeze names names' t $ freeze names names' u  | 
|
461  | 
| freeze names names' (Abs (s, T, t)) =  | 
|
462  | 
Abs (s, frzT names' T, freeze names names' t)  | 
|
463  | 
| freeze names names' (Const (s, T)) = Const (s, frzT names' T)  | 
|
464  | 
| freeze names names' (Free (s, T)) = Free (s, frzT names' T)  | 
|
465  | 
| freeze names names' (Var (ixn, T)) =  | 
|
466  | 
Free (the (assoc (names, ixn)), frzT names' T)  | 
|
467  | 
| freeze names names' t = t;  | 
|
468  | 
||
469  | 
fun thaw names names' (t $ u) =  | 
|
470  | 
thaw names names' t $ thaw names names' u  | 
|
471  | 
| thaw names names' (Abs (s, T, t)) =  | 
|
472  | 
Abs (s, thawT names' T, thaw names names' t)  | 
|
473  | 
| thaw names names' (Const (s, T)) = Const (s, thawT names' T)  | 
|
474  | 
| thaw names names' (Free (s, T)) =  | 
|
475  | 
let val T' = thawT names' T  | 
|
476  | 
in case assoc (names, s) of  | 
|
477  | 
None => Free (s, T')  | 
|
478  | 
| Some ixn => Var (ixn, T')  | 
|
479  | 
end  | 
|
480  | 
| thaw names names' (Var (ixn, T)) = Var (ixn, thawT names' T)  | 
|
481  | 
| thaw names names' t = t;  | 
|
482  | 
||
483  | 
fun freeze_thaw_prf prf =  | 
|
484  | 
let  | 
|
485  | 
val (fs, Tfs, vs, Tvs) = fold_proof_terms  | 
|
486  | 
(fn (t, (fs, Tfs, vs, Tvs)) =>  | 
|
487  | 
(add_term_frees (t, fs), add_term_tfree_names (t, Tfs),  | 
|
488  | 
add_term_vars (t, vs), add_term_tvar_ixns (t, Tvs)))  | 
|
489  | 
(fn (T, (fs, Tfs, vs, Tvs)) =>  | 
|
490  | 
(fs, add_typ_tfree_names (T, Tfs),  | 
|
491  | 
vs, add_typ_ixns (Tvs, T)))  | 
|
492  | 
(([], [], [], []), prf);  | 
|
493  | 
val fs' = map (fst o dest_Free) fs;  | 
|
494  | 
val vs' = map (fst o dest_Var) vs;  | 
|
495  | 
val names = vs' ~~ variantlist (map fst vs', fs');  | 
|
496  | 
val names' = Tvs ~~ variantlist (map fst Tvs, Tfs);  | 
|
497  | 
val rnames = map swap names;  | 
|
498  | 
val rnames' = map swap names';  | 
|
499  | 
in  | 
|
500  | 
(map_proof_terms (freeze names names') (frzT names') prf,  | 
|
501  | 
map_proof_terms (thaw rnames rnames') (thawT rnames'))  | 
|
502  | 
end;  | 
|
503  | 
||
504  | 
||
505  | 
(***** implication introduction *****)  | 
|
506  | 
||
507  | 
fun implies_intr_proof h prf =  | 
|
508  | 
let  | 
|
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
509  | 
fun abshyp i (Hyp t) = if h aconv t then PBound i else raise SAME  | 
| 11519 | 510  | 
| abshyp i (Abst (s, T, prf)) = Abst (s, T, abshyp i prf)  | 
511  | 
| abshyp i (AbsP (s, t, prf)) = AbsP (s, t, abshyp (i+1) prf)  | 
|
| 11615 | 512  | 
| abshyp i (prf % t) = abshyp i prf % t  | 
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
513  | 
| abshyp i (prf1 %% prf2) = (abshyp i prf1 %% abshyph i prf2  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
514  | 
handle SAME => prf1 %% abshyp i prf2)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
515  | 
| abshyp _ _ = raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
516  | 
and abshyph i prf = (abshyp i prf handle SAME => prf)  | 
| 11519 | 517  | 
in  | 
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
518  | 
    AbsP ("H", None (*h*), abshyph 0 prf)
 | 
| 11519 | 519  | 
end;  | 
520  | 
||
521  | 
||
522  | 
(***** forall introduction *****)  | 
|
523  | 
||
524  | 
fun forall_intr_proof x a prf = Abst (a, None, prf_abstract_over x prf);  | 
|
525  | 
||
526  | 
||
527  | 
(***** varify *****)  | 
|
528  | 
||
529  | 
fun varify_proof t fixed prf =  | 
|
530  | 
let  | 
|
531  | 
val fs = add_term_tfree_names (t, []) \\ fixed;  | 
|
532  | 
val ixns = add_term_tvar_ixns (t, []);  | 
|
533  | 
val fmap = fs ~~ variantlist (fs, map #1 ixns)  | 
|
534  | 
fun thaw (f as (a, S)) =  | 
|
535  | 
(case assoc (fmap, a) of  | 
|
536  | 
None => TFree f  | 
|
537  | 
| Some b => TVar ((b, 0), S));  | 
|
538  | 
in map_proof_terms (map_term_types (map_type_tfree thaw)) (map_type_tfree thaw) prf  | 
|
539  | 
end;  | 
|
540  | 
||
541  | 
||
542  | 
local  | 
|
543  | 
||
544  | 
fun new_name (ix, (pairs,used)) =  | 
|
545  | 
let val v = variant used (string_of_indexname ix)  | 
|
546  | 
in ((ix, v) :: pairs, v :: used) end;  | 
|
547  | 
||
548  | 
fun freeze_one alist (ix, sort) = (case assoc (alist, ix) of  | 
|
549  | 
None => TVar (ix, sort)  | 
|
550  | 
| Some name => TFree (name, sort));  | 
|
551  | 
||
552  | 
in  | 
|
553  | 
||
554  | 
fun freezeT t prf =  | 
|
555  | 
let  | 
|
556  | 
val used = it_term_types add_typ_tfree_names (t, [])  | 
|
557  | 
and tvars = map #1 (it_term_types add_typ_tvars (t, []));  | 
|
558  | 
val (alist, _) = foldr new_name (tvars, ([], used));  | 
|
559  | 
in  | 
|
560  | 
(case alist of  | 
|
561  | 
[] => prf (*nothing to do!*)  | 
|
562  | 
| _ =>  | 
|
563  | 
let val frzT = map_type_tvar (freeze_one alist)  | 
|
564  | 
in map_proof_terms (map_term_types frzT) frzT prf end)  | 
|
565  | 
end;  | 
|
566  | 
||
567  | 
end;  | 
|
568  | 
||
569  | 
||
570  | 
(***** rotate assumptions *****)  | 
|
571  | 
||
572  | 
fun rotate_proof Bs Bi m prf =  | 
|
573  | 
let  | 
|
574  | 
val params = Term.strip_all_vars Bi;  | 
|
575  | 
val asms = Logic.strip_imp_prems (Term.strip_all_body Bi);  | 
|
576  | 
val i = length asms;  | 
|
577  | 
val j = length Bs;  | 
|
578  | 
in  | 
|
579  | 
mk_AbsP (j+1, proof_combP (prf, map PBound  | 
|
580  | 
(j downto 1) @ [mk_Abst (params, mk_AbsP (i,  | 
|
581  | 
proof_combP (proof_combt (PBound i, map Bound ((length params - 1) downto 0)),  | 
|
582  | 
map PBound (((i-m-1) downto 0) @ ((i-1) downto (i-m))))))]))  | 
|
583  | 
end;  | 
|
584  | 
||
585  | 
||
586  | 
(***** permute premises *****)  | 
|
587  | 
||
588  | 
fun permute_prems_prf prems j k prf =  | 
|
589  | 
let val n = length prems  | 
|
590  | 
in mk_AbsP (n, proof_combP (prf,  | 
|
591  | 
map PBound ((n-1 downto n-j) @ (k-1 downto 0) @ (n-j-1 downto k))))  | 
|
592  | 
end;  | 
|
593  | 
||
594  | 
||
595  | 
(***** instantiation *****)  | 
|
596  | 
||
597  | 
fun instantiate vTs tpairs =  | 
|
598  | 
map_proof_terms (subst_atomic (map (apsnd remove_types) tpairs) o  | 
|
599  | 
subst_TVars vTs) (typ_subst_TVars vTs);  | 
|
600  | 
||
601  | 
||
602  | 
(***** lifting *****)  | 
|
603  | 
||
604  | 
fun lift_proof Bi inc prop prf =  | 
|
605  | 
let  | 
|
606  | 
val (_, lift_all) = Logic.lift_fns (Bi, inc);  | 
|
607  | 
||
608  | 
fun lift'' Us Ts t = strip_abs Ts (Logic.incr_indexes (Us, inc) (mk_abs Ts t));  | 
|
609  | 
||
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
610  | 
fun lift' Us Ts (Abst (s, T, prf)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
611  | 
(Abst (s, apsome' (same (incr_tvar inc)) T, lifth' Us (dummyT::Ts) prf)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
612  | 
handle SAME => Abst (s, T, lift' Us (dummyT::Ts) prf))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
613  | 
| lift' Us Ts (AbsP (s, t, prf)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
614  | 
(AbsP (s, apsome' (same (lift'' Us Ts)) t, lifth' Us Ts prf)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
615  | 
handle SAME => AbsP (s, t, lift' Us Ts prf))  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
616  | 
| lift' Us Ts (prf % t) = (lift' Us Ts prf % apsome (lift'' Us Ts) t  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
617  | 
handle SAME => prf % apsome' (same (lift'' Us Ts)) t)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
618  | 
| lift' Us Ts (prf1 %% prf2) = (lift' Us Ts prf1 %% lifth' Us Ts prf2  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
619  | 
handle SAME => prf1 %% lift' Us Ts prf2)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
620  | 
| lift' _ _ (PThm (s, prf, prop, Ts)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
621  | 
PThm (s, prf, prop, apsome' (same (map (incr_tvar inc))) Ts)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
622  | 
| lift' _ _ (PAxm (s, prop, Ts)) =  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
623  | 
PAxm (s, prop, apsome' (same (map (incr_tvar inc))) Ts)  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
624  | 
| lift' _ _ _ = raise SAME  | 
| 
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
625  | 
and lifth' Us Ts prf = (lift' Us Ts prf handle SAME => prf);  | 
| 11519 | 626  | 
|
627  | 
val ps = map lift_all (Logic.strip_imp_prems (snd (Logic.strip_flexpairs prop)));  | 
|
628  | 
val k = length ps;  | 
|
629  | 
||
630  | 
fun mk_app (b, (i, j, prf)) =  | 
|
| 11615 | 631  | 
if b then (i-1, j, prf %% PBound i) else (i, j-1, prf %> Bound j);  | 
| 11519 | 632  | 
|
633  | 
    fun lift Us bs i j (Const ("==>", _) $ A $ B) =
 | 
|
634  | 
	    AbsP ("H", None (*A*), lift Us (true::bs) (i+1) j B)
 | 
|
635  | 
      | lift Us bs i j (Const ("all", _) $ Abs (a, T, t)) = 
 | 
|
636  | 
Abst (a, None (*T*), lift (T::Us) (false::bs) i (j+1) t)  | 
|
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
637  | 
| lift Us bs i j _ = proof_combP (lifth' (rev Us) [] prf,  | 
| 11519 | 638  | 
map (fn k => (#3 (foldr mk_app (bs, (i-1, j-1, PBound k)))))  | 
639  | 
(i + k - 1 downto i));  | 
|
640  | 
in  | 
|
641  | 
mk_AbsP (k, lift [] [] 0 0 Bi)  | 
|
642  | 
end;  | 
|
643  | 
||
644  | 
||
645  | 
(***** proof by assumption *****)  | 
|
646  | 
||
647  | 
fun mk_asm_prf (Const ("==>", _) $ A $ B) i = AbsP ("H", None (*A*), mk_asm_prf B (i+1))
 | 
|
648  | 
  | mk_asm_prf (Const ("all", _) $ Abs (a, T, t)) i = Abst (a, None (*T*), mk_asm_prf t i)
 | 
|
649  | 
| mk_asm_prf _ i = PBound i;  | 
|
650  | 
||
651  | 
fun assumption_proof Bs Bi n prf =  | 
|
652  | 
mk_AbsP (length Bs, proof_combP (prf,  | 
|
653  | 
map PBound (length Bs - 1 downto 0) @ [mk_asm_prf Bi (~n)]));  | 
|
654  | 
||
655  | 
||
656  | 
(***** Composition of object rule with proof state *****)  | 
|
657  | 
||
658  | 
fun flatten_params_proof i j n (Const ("==>", _) $ A $ B, k) =
 | 
|
659  | 
      AbsP ("H", None (*A*), flatten_params_proof (i+1) j n (B, k))
 | 
|
660  | 
  | flatten_params_proof i j n (Const ("all", _) $ Abs (a, T, t), k) =
 | 
|
661  | 
Abst (a, None (*T*), flatten_params_proof i (j+1) n (t, k))  | 
|
662  | 
| flatten_params_proof i j n (_, k) = proof_combP (proof_combt (PBound (k+i),  | 
|
663  | 
map Bound (j-1 downto 0)), map PBound (i-1 downto 0 \ i-n));  | 
|
664  | 
||
665  | 
fun bicompose_proof Bs oldAs newAs A n rprf sprf =  | 
|
666  | 
let  | 
|
667  | 
val la = length newAs;  | 
|
668  | 
val lb = length Bs;  | 
|
669  | 
in  | 
|
670  | 
mk_AbsP (lb+la, proof_combP (sprf,  | 
|
| 11615 | 671  | 
map PBound (lb + la - 1 downto la)) %%  | 
| 11519 | 672  | 
proof_combP (rprf, (if n>0 then [mk_asm_prf (the A) (~n)] else []) @  | 
673  | 
map (flatten_params_proof 0 0 n) (oldAs ~~ (la - 1 downto 0))))  | 
|
674  | 
end;  | 
|
675  | 
||
676  | 
||
677  | 
(***** axioms for equality *****)  | 
|
678  | 
||
679  | 
val aT = TFree ("'a", ["logic"]);
 | 
|
680  | 
val bT = TFree ("'b", ["logic"]);
 | 
|
681  | 
val x = Free ("x", aT);
 | 
|
682  | 
val y = Free ("y", aT);
 | 
|
683  | 
val z = Free ("z", aT);
 | 
|
684  | 
val A = Free ("A", propT);
 | 
|
685  | 
val B = Free ("B", propT);
 | 
|
686  | 
val f = Free ("f", aT --> bT);
 | 
|
687  | 
val g = Free ("g", aT --> bT);
 | 
|
688  | 
||
689  | 
local open Logic in  | 
|
690  | 
||
691  | 
val equality_axms =  | 
|
692  | 
  [("reflexive", mk_equals (x, x)),
 | 
|
693  | 
   ("symmetric", mk_implies (mk_equals (x, y), mk_equals (y, x))),
 | 
|
694  | 
   ("transitive", list_implies ([mk_equals (x, y), mk_equals (y, z)], mk_equals (x, z))),
 | 
|
695  | 
   ("equal_intr", list_implies ([mk_implies (A, B), mk_implies (B, A)], mk_equals (A, B))),
 | 
|
696  | 
   ("equal_elim", list_implies ([mk_equals (A, B), A], B)),
 | 
|
697  | 
   ("abstract_rule", Logic.mk_implies
 | 
|
698  | 
      (all aT $ Abs ("x", aT, equals bT $ (f $ Bound 0) $ (g $ Bound 0)),
 | 
|
699  | 
equals (aT --> bT) $  | 
|
700  | 
         Abs ("x", aT, f $ Bound 0) $ Abs ("x", aT, g $ Bound 0))),
 | 
|
701  | 
   ("combination", Logic.list_implies
 | 
|
702  | 
([Logic.mk_equals (f, g), Logic.mk_equals (x, y)],  | 
|
703  | 
Logic.mk_equals (f $ x, g $ y)))];  | 
|
704  | 
||
705  | 
val [reflexive_axm, symmetric_axm, transitive_axm, equal_intr_axm,  | 
|
706  | 
equal_elim_axm, abstract_rule_axm, combination_axm] =  | 
|
707  | 
    map (fn (s, t) => PAxm ("ProtoPure." ^ s, varify t, None)) equality_axms;
 | 
|
708  | 
||
709  | 
end;  | 
|
710  | 
||
| 11615 | 711  | 
val reflexive = reflexive_axm % None;  | 
| 11519 | 712  | 
|
| 11615 | 713  | 
fun symmetric (prf as PAxm ("ProtoPure.reflexive", _, _) % _) = prf
 | 
714  | 
| symmetric prf = symmetric_axm % None % None %% prf;  | 
|
| 11519 | 715  | 
|
| 11615 | 716  | 
fun transitive _ _ (PAxm ("ProtoPure.reflexive", _, _) % _) prf2 = prf2
 | 
717  | 
  | transitive _ _ prf1 (PAxm ("ProtoPure.reflexive", _, _) % _) = prf1
 | 
|
| 11519 | 718  | 
  | transitive u (Type ("prop", [])) prf1 prf2 =
 | 
| 11615 | 719  | 
transitive_axm % None % Some (remove_types u) % None %% prf1 %% prf2  | 
| 11519 | 720  | 
| transitive u T prf1 prf2 =  | 
| 11615 | 721  | 
transitive_axm % None % None % None %% prf1 %% prf2;  | 
| 11519 | 722  | 
|
723  | 
fun abstract_rule x a prf =  | 
|
| 11615 | 724  | 
abstract_rule_axm % None % None %% forall_intr_proof x a prf;  | 
| 11519 | 725  | 
|
| 11615 | 726  | 
fun check_comb (PAxm ("ProtoPure.combination", _, _) % f % g % _ % _ %% prf %% _) =
 | 
| 11519 | 727  | 
is_some f orelse check_comb prf  | 
| 11615 | 728  | 
  | check_comb (PAxm ("ProtoPure.transitive", _, _) % _ % _ % _ %% prf1 %% prf2) =
 | 
| 11519 | 729  | 
check_comb prf1 andalso check_comb prf2  | 
| 11615 | 730  | 
  | check_comb (PAxm ("ProtoPure.symmetric", _, _) % _ % _ %% prf) = check_comb prf
 | 
| 11519 | 731  | 
| check_comb _ = false;  | 
732  | 
||
733  | 
fun combination f g t u (Type (_, [T, U])) prf1 prf2 =  | 
|
734  | 
let  | 
|
735  | 
val f = Envir.beta_norm f;  | 
|
736  | 
val g = Envir.beta_norm g;  | 
|
737  | 
val prf = if check_comb prf1 then  | 
|
| 11615 | 738  | 
combination_axm % None % None  | 
| 11519 | 739  | 
else (case prf1 of  | 
| 11615 | 740  | 
          PAxm ("ProtoPure.reflexive", _, _) % _ =>
 | 
741  | 
combination_axm %> remove_types f % None  | 
|
742  | 
| _ => combination_axm %> remove_types f %> remove_types g)  | 
|
| 11519 | 743  | 
in  | 
744  | 
(case T of  | 
|
| 11615 | 745  | 
       Type ("fun", _) => prf %
 | 
| 11519 | 746  | 
(case head_of f of  | 
747  | 
Abs _ => Some (remove_types t)  | 
|
748  | 
| Var _ => Some (remove_types t)  | 
|
| 11615 | 749  | 
| _ => None) %  | 
| 11519 | 750  | 
(case head_of g of  | 
751  | 
Abs _ => Some (remove_types u)  | 
|
752  | 
| Var _ => Some (remove_types u)  | 
|
| 11615 | 753  | 
| _ => None) %% prf1 %% prf2  | 
754  | 
| _ => prf % None % None %% prf1 %% prf2)  | 
|
| 11519 | 755  | 
end;  | 
756  | 
||
757  | 
fun equal_intr A B prf1 prf2 =  | 
|
| 11615 | 758  | 
equal_intr_axm %> remove_types A %> remove_types B %% prf1 %% prf2;  | 
| 11519 | 759  | 
|
760  | 
fun equal_elim A B prf1 prf2 =  | 
|
| 11615 | 761  | 
equal_elim_axm %> remove_types A %> remove_types B %% prf1 %% prf2;  | 
| 11519 | 762  | 
|
763  | 
||
764  | 
(***** axioms and theorems *****)  | 
|
765  | 
||
766  | 
fun vars_of t = rev (foldl_aterms  | 
|
767  | 
(fn (vs, v as Var _) => v ins vs | (vs, _) => vs) ([], t));  | 
|
768  | 
||
769  | 
fun test_args _ [] = true  | 
|
770  | 
| test_args is (Bound i :: ts) =  | 
|
771  | 
not (i mem is) andalso test_args (i :: is) ts  | 
|
772  | 
| test_args _ _ = false;  | 
|
773  | 
||
774  | 
fun is_fun (Type ("fun", _)) = true
 | 
|
775  | 
| is_fun (TVar _) = true  | 
|
776  | 
| is_fun _ = false;  | 
|
777  | 
||
778  | 
fun add_funvars Ts (vs, t) =  | 
|
779  | 
if is_fun (fastype_of1 (Ts, t)) then  | 
|
780  | 
vs union mapfilter (fn Var (ixn, T) =>  | 
|
781  | 
if is_fun T then Some ixn else None | _ => None) (vars_of t)  | 
|
782  | 
else vs;  | 
|
783  | 
||
784  | 
fun add_npvars q p Ts (vs, Const ("==>", _) $ t $ u) =
 | 
|
785  | 
add_npvars q p Ts (add_npvars q (not p) Ts (vs, t), u)  | 
|
786  | 
  | add_npvars q p Ts (vs, Const ("all", Type (_, [Type (_, [T, _]), _])) $ t) =
 | 
|
787  | 
      add_npvars q p Ts (vs, if p andalso q then betapply (t, Var (("",0), T)) else t)
 | 
|
| 12041 | 788  | 
| add_npvars q p Ts (vs, Abs (_, T, t)) = add_npvars q p (T::Ts) (vs, t)  | 
789  | 
| add_npvars _ _ Ts (vs, t) = add_npvars' Ts (vs, t)  | 
|
790  | 
and add_npvars' Ts (vs, t) = (case strip_comb t of  | 
|
| 11519 | 791  | 
(Var (ixn, _), ts) => if test_args [] ts then vs  | 
| 12041 | 792  | 
else foldl (add_npvars' Ts) (overwrite (vs,  | 
| 11519 | 793  | 
(ixn, foldl (add_funvars Ts) (if_none (assoc (vs, ixn)) [], ts))), ts)  | 
| 12041 | 794  | 
| (Abs (_, T, u), ts) => foldl (add_npvars' (T::Ts)) (vs, u :: ts)  | 
795  | 
| (_, ts) => foldl (add_npvars' Ts) (vs, ts));  | 
|
| 11519 | 796  | 
|
797  | 
fun prop_vars (Const ("==>", _) $ P $ Q) = prop_vars P union prop_vars Q
 | 
|
798  | 
  | prop_vars (Const ("all", _) $ Abs (_, _, t)) = prop_vars t
 | 
|
799  | 
| prop_vars t = (case strip_comb t of  | 
|
800  | 
(Var (ixn, _), _) => [ixn] | _ => []);  | 
|
801  | 
||
802  | 
fun is_proj t =  | 
|
803  | 
let  | 
|
804  | 
fun is_p i t = (case strip_comb t of  | 
|
805  | 
(Bound j, []) => false  | 
|
806  | 
| (Bound j, ts) => j >= i orelse exists (is_p i) ts  | 
|
807  | 
| (Abs (_, _, u), _) => is_p (i+1) u  | 
|
808  | 
| (_, ts) => exists (is_p i) ts)  | 
|
809  | 
in (case strip_abs_body t of  | 
|
810  | 
Bound _ => true  | 
|
811  | 
| t' => is_p 0 t')  | 
|
812  | 
end;  | 
|
813  | 
||
814  | 
fun needed_vars prop =  | 
|
815  | 
foldl op union ([], map op ins (add_npvars true true [] ([], prop))) union  | 
|
816  | 
prop_vars prop;  | 
|
817  | 
||
818  | 
fun gen_axm_proof c name prop =  | 
|
819  | 
let  | 
|
820  | 
val nvs = needed_vars prop;  | 
|
821  | 
val args = map (fn (v as Var (ixn, _)) =>  | 
|
822  | 
if ixn mem nvs then Some v else None) (vars_of prop) @  | 
|
823  | 
map Some (sort (make_ord atless) (term_frees prop));  | 
|
824  | 
in  | 
|
825  | 
proof_combt' (c (name, prop, None), args)  | 
|
826  | 
end;  | 
|
827  | 
||
828  | 
val axm_proof = gen_axm_proof PAxm;  | 
|
829  | 
val oracle_proof = gen_axm_proof Oracle;  | 
|
830  | 
||
831  | 
fun shrink ls lev (prf as Abst (a, T, body)) =  | 
|
832  | 
let val (b, is, ch, body') = shrink ls (lev+1) body  | 
|
833  | 
in (b, is, ch, if ch then Abst (a, T, body') else prf) end  | 
|
834  | 
| shrink ls lev (prf as AbsP (a, t, body)) =  | 
|
835  | 
let val (b, is, ch, body') = shrink (lev::ls) lev body  | 
|
836  | 
in (b orelse 0 mem is, mapfilter (fn 0 => None | i => Some (i-1)) is,  | 
|
837  | 
ch, if ch then AbsP (a, t, body') else prf)  | 
|
838  | 
end  | 
|
839  | 
| shrink ls lev prf =  | 
|
840  | 
let val (is, ch, _, prf') = shrink' ls lev [] [] prf  | 
|
841  | 
in (false, is, ch, prf') end  | 
|
| 11615 | 842  | 
and shrink' ls lev ts prfs (prf as prf1 %% prf2) =  | 
| 11519 | 843  | 
let  | 
844  | 
val p as (_, is', ch', prf') = shrink ls lev prf2;  | 
|
845  | 
val (is, ch, ts', prf'') = shrink' ls lev ts (p::prfs) prf1  | 
|
846  | 
in (is union is', ch orelse ch', ts',  | 
|
| 11615 | 847  | 
if ch orelse ch' then prf'' %% prf' else prf)  | 
| 11519 | 848  | 
end  | 
| 11615 | 849  | 
| shrink' ls lev ts prfs (prf as prf1 % t) =  | 
| 11519 | 850  | 
let val (is, ch, (ch', t')::ts', prf') = shrink' ls lev (t::ts) prfs prf1  | 
| 11615 | 851  | 
in (is, ch orelse ch', ts', if ch orelse ch' then prf' % t' else prf) end  | 
| 11519 | 852  | 
| shrink' ls lev ts prfs (prf as PBound i) =  | 
853  | 
(if exists (fn Some (Bound j) => lev-j <= nth_elem (i, ls) | _ => true) ts  | 
|
| 12233 | 854  | 
orelse not (null (duplicates  | 
855  | 
(foldl (fn (js, Some (Bound j)) => j :: js | (js, _) => js) ([], ts))))  | 
|
| 11519 | 856  | 
orelse exists #1 prfs then [i] else [], false, map (pair false) ts, prf)  | 
857  | 
| shrink' ls lev ts prfs (prf as Hyp _) = ([], false, map (pair false) ts, prf)  | 
|
| 11615 | 858  | 
| shrink' ls lev ts prfs (prf as MinProof _) =  | 
859  | 
([], false, map (pair false) ts, prf)  | 
|
| 11519 | 860  | 
| shrink' ls lev ts prfs prf =  | 
861  | 
let  | 
|
862  | 
val prop = (case prf of PThm (_, _, prop, _) => prop | PAxm (_, prop, _) => prop  | 
|
863  | 
| Oracle (_, prop, _) => prop | _ => error "shrink: proof not in normal form");  | 
|
864  | 
val vs = vars_of prop;  | 
|
865  | 
val ts' = take (length vs, ts)  | 
|
866  | 
val ts'' = drop (length vs, ts)  | 
|
867  | 
val insts = take (length ts', map (fst o dest_Var) vs) ~~ ts';  | 
|
868  | 
val nvs = foldl (fn (ixns', (ixn, ixns)) =>  | 
|
869  | 
ixn ins (case assoc (insts, ixn) of  | 
|
870  | 
Some (Some t) => if is_proj t then ixns union ixns' else ixns'  | 
|
871  | 
| _ => ixns union ixns'))  | 
|
872  | 
(needed prop ts'' prfs, add_npvars false true [] ([], prop));  | 
|
873  | 
val insts' = map  | 
|
874  | 
(fn (ixn, x as Some _) => if ixn mem nvs then (false, x) else (true, None)  | 
|
875  | 
| (_, x) => (false, x)) insts  | 
|
876  | 
in ([], false, insts' @ map (pair false) ts'', prf) end  | 
|
877  | 
and needed (Const ("==>", _) $ t $ u) ts ((b, _, _, _)::prfs) =
 | 
|
878  | 
(if b then map (fst o dest_Var) (vars_of t) else []) union needed u ts prfs  | 
|
879  | 
| needed (Var (ixn, _)) (_::_) _ = [ixn]  | 
|
880  | 
| needed _ _ _ = [];  | 
|
881  | 
||
882  | 
||
883  | 
(**** Simple first order matching functions for terms and proofs ****)  | 
|
884  | 
||
885  | 
exception PMatch;  | 
|
886  | 
||
887  | 
(** see pattern.ML **)  | 
|
888  | 
||
| 12923 | 889  | 
fun flt (i: int) = filter (fn n => n < i);  | 
| 12279 | 890  | 
|
891  | 
fun fomatch Ts tymatch j =  | 
|
| 11519 | 892  | 
let  | 
893  | 
fun mtch (instsp as (tyinsts, insts)) = fn  | 
|
894  | 
(Var (ixn, T), t) =>  | 
|
| 12279 | 895  | 
if j>0 andalso not (null (flt j (loose_bnos t)))  | 
896  | 
then raise PMatch  | 
|
897  | 
else (tymatch (tyinsts, fn () => (T, fastype_of1 (Ts, t))),  | 
|
898  | 
(ixn, t) :: insts)  | 
|
| 11519 | 899  | 
| (Free (a, T), Free (b, U)) =>  | 
| 12279 | 900  | 
if a=b then (tymatch (tyinsts, K (T, U)), insts) else raise PMatch  | 
| 11519 | 901  | 
| (Const (a, T), Const (b, U)) =>  | 
| 12279 | 902  | 
if a=b then (tymatch (tyinsts, K (T, U)), insts) else raise PMatch  | 
| 11519 | 903  | 
| (f $ t, g $ u) => mtch (mtch instsp (f, g)) (t, u)  | 
| 12279 | 904  | 
| (Bound i, Bound j) => if i=j then instsp else raise PMatch  | 
| 11519 | 905  | 
| _ => raise PMatch  | 
906  | 
in mtch end;  | 
|
907  | 
||
| 12279 | 908  | 
fun match_proof Ts tymatch =  | 
| 11519 | 909  | 
let  | 
| 12279 | 910  | 
fun optmatch _ inst (None, _) = inst  | 
911  | 
| optmatch _ _ (Some _, None) = raise PMatch  | 
|
912  | 
| optmatch mtch inst (Some x, Some y) = mtch inst (x, y)  | 
|
913  | 
||
914  | 
fun matcht Ts j (pinst, tinst) (t, u) =  | 
|
915  | 
(pinst, fomatch Ts tymatch j tinst (t, Envir.beta_norm u));  | 
|
916  | 
fun matchT (pinst, (tyinsts, insts)) p =  | 
|
917  | 
(pinst, (tymatch (tyinsts, K p), insts));  | 
|
918  | 
fun matchTs inst (Ts, Us) = foldl (uncurry matchT) (inst, Ts ~~ Us);  | 
|
919  | 
||
920  | 
fun mtch Ts i j (pinst, tinst) (Hyp (Var (ixn, _)), prf) =  | 
|
921  | 
if i = 0 andalso j = 0 then ((ixn, prf) :: pinst, tinst)  | 
|
922  | 
else (case apfst (flt i) (apsnd (flt j)  | 
|
923  | 
(prf_add_loose_bnos 0 0 prf ([], []))) of  | 
|
924  | 
([], []) => ((ixn, incr_pboundvars (~i) (~j) prf) :: pinst, tinst)  | 
|
925  | 
| ([], _) => if j = 0 then  | 
|
926  | 
((ixn, incr_pboundvars (~i) (~j) prf) :: pinst, tinst)  | 
|
927  | 
else raise PMatch  | 
|
928  | 
| _ => raise PMatch)  | 
|
929  | 
| mtch Ts i j inst (prf1 % opt1, prf2 % opt2) =  | 
|
930  | 
optmatch (matcht Ts j) (mtch Ts i j inst (prf1, prf2)) (opt1, opt2)  | 
|
931  | 
| mtch Ts i j inst (prf1 %% prf2, prf1' %% prf2') =  | 
|
932  | 
mtch Ts i j (mtch Ts i j inst (prf1, prf1')) (prf2, prf2')  | 
|
933  | 
| mtch Ts i j inst (Abst (_, opT, prf1), Abst (_, opU, prf2)) =  | 
|
934  | 
mtch (if_none opU dummyT :: Ts) i (j+1)  | 
|
935  | 
(optmatch matchT inst (opT, opU)) (prf1, prf2)  | 
|
936  | 
| mtch Ts i j inst (prf1, Abst (_, opU, prf2)) =  | 
|
937  | 
mtch (if_none opU dummyT :: Ts) i (j+1) inst  | 
|
938  | 
(incr_pboundvars 0 1 prf1 %> Bound 0, prf2)  | 
|
939  | 
| mtch Ts i j inst (AbsP (_, opt, prf1), AbsP (_, opu, prf2)) =  | 
|
940  | 
mtch Ts (i+1) j (optmatch (matcht Ts j) inst (opt, opu)) (prf1, prf2)  | 
|
941  | 
| mtch Ts i j inst (prf1, AbsP (_, _, prf2)) =  | 
|
942  | 
mtch Ts (i+1) j inst (incr_pboundvars 1 0 prf1 %% PBound 0, prf2)  | 
|
943  | 
| mtch Ts i j inst (PThm ((name1, _), _, prop1, opTs),  | 
|
944  | 
PThm ((name2, _), _, prop2, opUs)) =  | 
|
| 11519 | 945  | 
if name1=name2 andalso prop1=prop2 then  | 
| 12279 | 946  | 
optmatch matchTs inst (opTs, opUs)  | 
| 11519 | 947  | 
else raise PMatch  | 
| 12279 | 948  | 
| mtch Ts i j inst (PAxm (s1, _, opTs), PAxm (s2, _, opUs)) =  | 
949  | 
if s1=s2 then optmatch matchTs inst (opTs, opUs)  | 
|
| 11519 | 950  | 
else raise PMatch  | 
| 12279 | 951  | 
| mtch _ _ _ inst (PBound i, PBound j) = if i = j then inst else raise PMatch  | 
952  | 
| mtch _ _ _ _ _ = raise PMatch  | 
|
953  | 
in mtch Ts 0 0 end;  | 
|
| 11519 | 954  | 
|
955  | 
fun prf_subst (pinst, (tyinsts, insts)) =  | 
|
956  | 
let  | 
|
957  | 
val substT = typ_subst_TVars_Vartab tyinsts;  | 
|
958  | 
||
959  | 
fun subst' lev (t as Var (ixn, _)) = (case assoc (insts, ixn) of  | 
|
960  | 
None => t  | 
|
961  | 
| Some u => incr_boundvars lev u)  | 
|
962  | 
| subst' lev (Const (s, T)) = Const (s, substT T)  | 
|
963  | 
| subst' lev (Free (s, T)) = Free (s, substT T)  | 
|
964  | 
| subst' lev (Abs (a, T, body)) = Abs (a, substT T, subst' (lev+1) body)  | 
|
965  | 
| subst' lev (f $ t) = subst' lev f $ subst' lev t  | 
|
966  | 
| subst' _ t = t;  | 
|
967  | 
||
968  | 
fun subst plev tlev (AbsP (a, t, body)) =  | 
|
969  | 
AbsP (a, apsome (subst' tlev) t, subst (plev+1) tlev body)  | 
|
970  | 
| subst plev tlev (Abst (a, T, body)) =  | 
|
971  | 
Abst (a, apsome substT T, subst plev (tlev+1) body)  | 
|
| 11615 | 972  | 
| subst plev tlev (prf %% prf') = subst plev tlev prf %% subst plev tlev prf'  | 
973  | 
| subst plev tlev (prf % t) = subst plev tlev prf % apsome (subst' tlev) t  | 
|
| 11519 | 974  | 
| subst plev tlev (prf as Hyp (Var (ixn, _))) = (case assoc (pinst, ixn) of  | 
975  | 
None => prf  | 
|
976  | 
| Some prf' => incr_pboundvars plev tlev prf')  | 
|
977  | 
| subst _ _ (PThm (id, prf, prop, Ts)) =  | 
|
978  | 
PThm (id, prf, prop, apsome (map substT) Ts)  | 
|
979  | 
| subst _ _ (PAxm (id, prop, Ts)) =  | 
|
980  | 
PAxm (id, prop, apsome (map substT) Ts)  | 
|
981  | 
| subst _ _ t = t  | 
|
982  | 
in subst 0 0 end;  | 
|
983  | 
||
| 
12871
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
984  | 
(*A fast unification filter: true unless the two terms cannot be unified.  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
985  | 
Terms must be NORMAL. Treats all Vars as distinct. *)  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
986  | 
fun could_unify prf1 prf2 =  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
987  | 
let  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
988  | 
fun matchrands (prf1 %% prf2) (prf1' %% prf2') =  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
989  | 
could_unify prf2 prf2' andalso matchrands prf1 prf1'  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
990  | 
| matchrands (prf % Some t) (prf' % Some t') =  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
991  | 
Term.could_unify (t, t') andalso matchrands prf prf'  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
992  | 
| matchrands (prf % _) (prf' % _) = matchrands prf prf'  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
993  | 
| matchrands _ _ = true  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
994  | 
|
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
995  | 
fun head_of (prf %% _) = head_of prf  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
996  | 
| head_of (prf % _) = head_of prf  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
997  | 
| head_of prf = prf  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
998  | 
|
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
999  | 
in case (head_of prf1, head_of prf2) of  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1000  | 
(_, Hyp (Var _)) => true  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1001  | 
| (Hyp (Var _), _) => true  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1002  | 
| (PThm ((a, _), _, propa, _), PThm ((b, _), _, propb, _)) =>  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1003  | 
a = b andalso propa = propb andalso matchrands prf1 prf2  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1004  | 
| (PAxm (a, _, _), PAxm (b, _, _)) => a = b andalso matchrands prf1 prf2  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1005  | 
| (PBound i, PBound j) => i = j andalso matchrands prf1 prf2  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1006  | 
| (AbsP _, _) => true (*because of possible eta equality*)  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1007  | 
| (Abst _, _) => true  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1008  | 
| (_, AbsP _) => true  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1009  | 
| (_, Abst _) => true  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1010  | 
| _ => false  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1011  | 
end;  | 
| 
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1012  | 
|
| 11519 | 1013  | 
(**** rewriting on proof terms ****)  | 
1014  | 
||
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1015  | 
val skel0 = PBound 0;  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1016  | 
|
| 12279 | 1017  | 
fun rewrite_prf tymatch (rules, procs) prf =  | 
| 11519 | 1018  | 
let  | 
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1019  | 
fun rew _ (Abst (_, _, body) % Some t) = Some (prf_subst_bounds [t] body, skel0)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1020  | 
| rew _ (AbsP (_, _, body) %% prf) = Some (prf_subst_pbounds [prf] body, skel0)  | 
| 11519 | 1021  | 
| rew Ts prf = (case get_first (fn (_, r) => r Ts prf) procs of  | 
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1022  | 
Some prf' => Some (prf', skel0)  | 
| 11519 | 1023  | 
| None => get_first (fn (prf1, prf2) => Some (prf_subst  | 
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1024  | 
(match_proof Ts tymatch ([], (Vartab.empty, [])) (prf1, prf)) prf2, prf2)  | 
| 
12871
 
21486a0557d1
Added function could_unify to speed up rewriting of proof terms.
 
berghofe 
parents: 
12868 
diff
changeset
 | 
1025  | 
handle PMatch => None) (filter (could_unify prf o fst) rules));  | 
| 11519 | 1026  | 
|
| 11615 | 1027  | 
fun rew0 Ts (prf as AbsP (_, _, prf' %% PBound 0)) =  | 
| 11519 | 1028  | 
if prf_loose_Pbvar1 prf' 0 then rew Ts prf  | 
1029  | 
else  | 
|
1030  | 
let val prf'' = incr_pboundvars (~1) 0 prf'  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1031  | 
in Some (if_none (rew Ts prf'') (prf'', skel0)) end  | 
| 11615 | 1032  | 
| rew0 Ts (prf as Abst (_, _, prf' % Some (Bound 0))) =  | 
| 11519 | 1033  | 
if prf_loose_bvar1 prf' 0 then rew Ts prf  | 
1034  | 
else  | 
|
1035  | 
let val prf'' = incr_pboundvars 0 (~1) prf'  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1036  | 
in Some (if_none (rew Ts prf'') (prf'', skel0)) end  | 
| 11519 | 1037  | 
| rew0 Ts prf = rew Ts prf;  | 
1038  | 
||
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1039  | 
fun rew1 _ (Hyp (Var _)) _ = None  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1040  | 
| rew1 Ts skel prf = (case rew2 Ts skel prf of  | 
| 11519 | 1041  | 
Some prf1 => (case rew0 Ts prf1 of  | 
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1042  | 
Some (prf2, skel') => Some (if_none (rew1 Ts skel' prf2) prf2)  | 
| 11519 | 1043  | 
| None => Some prf1)  | 
1044  | 
| None => (case rew0 Ts prf of  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1045  | 
Some (prf1, skel') => Some (if_none (rew1 Ts skel' prf1) prf1)  | 
| 11519 | 1046  | 
| None => None))  | 
1047  | 
||
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1048  | 
and rew2 Ts skel (prf % Some t) = (case prf of  | 
| 11519 | 1049  | 
Abst (_, _, body) =>  | 
1050  | 
let val prf' = prf_subst_bounds [t] body  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1051  | 
in Some (if_none (rew2 Ts skel0 prf') prf') end  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1052  | 
| _ => (case rew1 Ts (case skel of skel' % _ => skel' | _ => skel0) prf of  | 
| 11615 | 1053  | 
Some prf' => Some (prf' % Some t)  | 
| 11519 | 1054  | 
| None => None))  | 
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1055  | 
| rew2 Ts skel (prf % None) = apsome (fn prf' => prf' % None)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1056  | 
(rew1 Ts (case skel of skel' % _ => skel' | _ => skel0) prf)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1057  | 
| rew2 Ts skel (prf1 %% prf2) = (case prf1 of  | 
| 11519 | 1058  | 
AbsP (_, _, body) =>  | 
1059  | 
let val prf' = prf_subst_pbounds [prf2] body  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1060  | 
in Some (if_none (rew2 Ts skel0 prf') prf') end  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1061  | 
| _ =>  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1062  | 
let val (skel1, skel2) = (case skel of  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1063  | 
skel1 %% skel2 => (skel1, skel2)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1064  | 
| _ => (skel0, skel0))  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1065  | 
in case rew1 Ts skel1 prf1 of  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1066  | 
Some prf1' => (case rew1 Ts skel2 prf2 of  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1067  | 
Some prf2' => Some (prf1' %% prf2')  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1068  | 
| None => Some (prf1' %% prf2))  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1069  | 
| None => (case rew1 Ts skel2 prf2 of  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1070  | 
Some prf2' => Some (prf1 %% prf2')  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1071  | 
| None => None)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1072  | 
end)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1073  | 
| rew2 Ts skel (Abst (s, T, prf)) = (case rew1 (if_none T dummyT :: Ts)  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1074  | 
(case skel of Abst (_, _, skel') => skel' | _ => skel0) prf of  | 
| 11519 | 1075  | 
Some prf' => Some (Abst (s, T, prf'))  | 
1076  | 
| None => None)  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1077  | 
| rew2 Ts skel (AbsP (s, t, prf)) = (case rew1 Ts  | 
| 
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1078  | 
(case skel of AbsP (_, _, skel') => skel' | _ => skel0) prf of  | 
| 11519 | 1079  | 
Some prf' => Some (AbsP (s, t, prf'))  | 
1080  | 
| None => None)  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1081  | 
| rew2 _ _ _ = None  | 
| 11519 | 1082  | 
|
| 
13102
 
b6f8aae5f152
Added skeletons to speed up rewriting on proof terms.
 
berghofe 
parents: 
12923 
diff
changeset
 | 
1083  | 
in if_none (rew1 [] skel0 prf) prf end;  | 
| 11519 | 1084  | 
|
1085  | 
fun rewrite_proof tsig = rewrite_prf (fn (tab, f) =>  | 
|
1086  | 
Type.typ_match tsig (tab, f ()) handle Type.TYPE_MATCH => raise PMatch);  | 
|
1087  | 
||
| 
11715
 
592923615f77
Tuned several functions to improve sharing of unchanged subproofs.
 
berghofe 
parents: 
11652 
diff
changeset
 | 
1088  | 
fun rewrite_proof_notypes rews = rewrite_prf fst rews;  | 
| 11615 | 1089  | 
|
| 11519 | 1090  | 
(**** theory data ****)  | 
1091  | 
||
1092  | 
(* data kind 'Pure/proof' *)  | 
|
1093  | 
||
1094  | 
structure ProofArgs =  | 
|
1095  | 
struct  | 
|
1096  | 
val name = "Pure/proof";  | 
|
1097  | 
type T = ((proof * proof) list *  | 
|
| 12233 | 1098  | 
(string * (typ list -> proof -> proof option)) list);  | 
| 11519 | 1099  | 
|
| 12233 | 1100  | 
val empty = ([], []);  | 
1101  | 
val copy = I;  | 
|
1102  | 
val prep_ext = I;  | 
|
1103  | 
fun merge ((rules1, procs1), (rules2, procs2)) =  | 
|
| 12293 | 1104  | 
(merge_lists rules1 rules2, merge_alists procs1 procs2);  | 
| 11519 | 1105  | 
fun print _ _ = ();  | 
1106  | 
end;  | 
|
1107  | 
||
1108  | 
structure ProofData = TheoryDataFun(ProofArgs);  | 
|
1109  | 
||
1110  | 
val init = ProofData.init;  | 
|
1111  | 
||
| 12233 | 1112  | 
fun add_prf_rrules rs thy =  | 
| 11519 | 1113  | 
let val r = ProofData.get thy  | 
| 12233 | 1114  | 
in ProofData.put (rs @ fst r, snd r) thy end;  | 
| 11519 | 1115  | 
|
| 12233 | 1116  | 
fun add_prf_rprocs ps thy =  | 
| 11519 | 1117  | 
let val r = ProofData.get thy  | 
| 12233 | 1118  | 
in ProofData.put (fst r, ps @ snd r) thy end;  | 
| 11519 | 1119  | 
|
1120  | 
fun thm_proof sign (name, tags) hyps prop prf =  | 
|
1121  | 
let  | 
|
| 12923 | 1122  | 
val prop = Logic.list_implies (hyps, prop);  | 
| 11519 | 1123  | 
val nvs = needed_vars prop;  | 
1124  | 
val args = map (fn (v as Var (ixn, _)) =>  | 
|
1125  | 
if ixn mem nvs then Some v else None) (vars_of prop) @  | 
|
1126  | 
map Some (sort (make_ord atless) (term_frees prop));  | 
|
| 
11543
 
d61b913431c5
renamed `keep_derivs' to `proofs', and made an integer;
 
wenzelm 
parents: 
11540 
diff
changeset
 | 
1127  | 
val opt_prf = if ! proofs = 2 then  | 
| 12233 | 1128  | 
#4 (shrink [] 0 (rewrite_prf fst (ProofData.get_sg sign)  | 
| 12923 | 1129  | 
(foldr (uncurry implies_intr_proof) (hyps, prf))))  | 
| 11519 | 1130  | 
else MinProof (mk_min_proof ([], prf));  | 
| 12233 | 1131  | 
val head = (case strip_combt (fst (strip_combP prf)) of  | 
| 11519 | 1132  | 
(PThm ((old_name, _), prf', prop', None), args') =>  | 
1133  | 
if (old_name="" orelse old_name=name) andalso  | 
|
1134  | 
prop = prop' andalso args = args' then  | 
|
1135  | 
PThm ((name, tags), prf', prop, None)  | 
|
1136  | 
else  | 
|
1137  | 
PThm ((name, tags), opt_prf, prop, None)  | 
|
1138  | 
| _ => PThm ((name, tags), opt_prf, prop, None))  | 
|
1139  | 
in  | 
|
| 12923 | 1140  | 
proof_combP (proof_combt' (head, args), map Hyp hyps)  | 
| 11519 | 1141  | 
end;  | 
1142  | 
||
| 12923 | 1143  | 
fun get_name_tags hyps prop prf =  | 
1144  | 
let val prop = Logic.list_implies (hyps, prop) in  | 
|
1145  | 
(case strip_combt (fst (strip_combP prf)) of  | 
|
| 11519 | 1146  | 
(PThm ((name, tags), _, prop', _), _) =>  | 
1147  | 
        if prop=prop' then (name, tags) else ("", [])
 | 
|
1148  | 
| (PAxm (name, prop', _), _) =>  | 
|
1149  | 
        if prop=prop' then (name, []) else ("", [])
 | 
|
| 12923 | 1150  | 
    | _ => ("", []))
 | 
1151  | 
end;  | 
|
| 11519 | 1152  | 
|
1153  | 
end;  | 
|
1154  | 
||
1155  | 
structure BasicProofterm : BASIC_PROOFTERM = Proofterm;  | 
|
1156  | 
open BasicProofterm;  |