author | blanchet |
Fri, 20 Aug 2010 15:16:27 +0200 | |
changeset 38613 | 4ca2cae2653f |
parent 38610 | 5266689abbc1 |
child 38618 | 5536897d04c2 |
permissions | -rw-r--r-- |
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(* Title: HOL/Tools/Sledgehammer/sledgehammer_translate.ML |
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Author: Fabian Immler, TU Muenchen |
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Author: Makarius |
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Author: Jasmin Blanchette, TU Muenchen |
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|
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Translation of HOL to FOL. |
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*) |
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|
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signature SLEDGEHAMMER_TRANSLATE = |
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sig |
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type 'a problem = 'a ATP_Problem.problem |
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|
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val axiom_prefix : string |
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val conjecture_prefix : string |
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val helper_prefix : string |
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val class_rel_clause_prefix : string |
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val arity_clause_prefix : string |
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val tfrees_name : string |
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val prepare_problem : |
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Proof.context -> bool -> bool -> bool -> bool -> term list -> term |
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-> (string * thm) list |
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-> string problem * string Symtab.table * int * string Vector.vector |
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end; |
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|
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structure Sledgehammer_Translate : SLEDGEHAMMER_TRANSLATE = |
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struct |
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|
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open ATP_Problem |
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open Metis_Clauses |
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open Sledgehammer_Util |
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|
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val axiom_prefix = "ax_" |
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val conjecture_prefix = "conj_" |
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val helper_prefix = "help_" |
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val class_rel_clause_prefix = "clrel_"; |
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val arity_clause_prefix = "arity_" |
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val tfrees_name = "tfrees" |
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|
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(* Freshness almost guaranteed! *) |
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val sledgehammer_weak_prefix = "Sledgehammer:" |
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|
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datatype fol_formula = |
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FOLFormula of {name: string, |
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kind: kind, |
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combformula: (name, combterm) formula, |
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ctypes_sorts: typ list} |
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|
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fun mk_anot phi = AConn (ANot, [phi]) |
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fun mk_aconn c phi1 phi2 = AConn (c, [phi1, phi2]) |
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fun mk_ahorn [] phi = phi |
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| mk_ahorn (phi :: phis) psi = |
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AConn (AImplies, [fold (mk_aconn AAnd) phis phi, psi]) |
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|
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fun combformula_for_prop thy = |
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let |
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val do_term = combterm_from_term thy |
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fun do_quant bs q s T t' = |
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let val s = Name.variant (map fst bs) s in |
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do_formula ((s, T) :: bs) t' |
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#>> (fn phi => AQuant (q, [`make_bound_var s], phi)) |
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end |
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and do_conn bs c t1 t2 = |
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do_formula bs t1 ##>> do_formula bs t2 |
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#>> (fn (phi1, phi2) => AConn (c, [phi1, phi2])) |
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and do_formula bs t = |
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case t of |
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@{const Not} $ t1 => |
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do_formula bs t1 #>> (fn phi => AConn (ANot, [phi])) |
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| Const (@{const_name All}, _) $ Abs (s, T, t') => |
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do_quant bs AForall s T t' |
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| Const (@{const_name Ex}, _) $ Abs (s, T, t') => |
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do_quant bs AExists s T t' |
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| @{const "op &"} $ t1 $ t2 => do_conn bs AAnd t1 t2 |
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| @{const "op |"} $ t1 $ t2 => do_conn bs AOr t1 t2 |
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| @{const "op -->"} $ t1 $ t2 => do_conn bs AImplies t1 t2 |
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| Const (@{const_name "op ="}, Type (_, [@{typ bool}, _])) $ t1 $ t2 => |
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do_conn bs AIff t1 t2 |
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| _ => (fn ts => do_term bs (Envir.eta_contract t) |
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|>> AAtom ||> union (op =) ts) |
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in do_formula [] end |
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81 |
|
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82 |
fun presimplify_term thy = |
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Skip_Proof.make_thm thy |
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#> Meson.presimplify |
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#> prop_of |
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|
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fun concealed_bound_name j = sledgehammer_weak_prefix ^ Int.toString j |
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fun conceal_bounds Ts t = |
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89 |
subst_bounds (map (Free o apfst concealed_bound_name) |
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90 |
(0 upto length Ts - 1 ~~ Ts), t) |
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91 |
fun reveal_bounds Ts = |
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subst_atomic (map (fn (j, T) => (Free (concealed_bound_name j, T), Bound j)) |
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(0 upto length Ts - 1 ~~ Ts)) |
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94 |
|
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beta eta contract the Sledgehammer conjecture (and also the axioms, although this might not be needed), just like Metis does (implicitly);
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95 |
(* Removes the lambdas from an equation of the form "t = (%x. u)". |
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96 |
(Cf. "extensionalize_theorem" in "Clausifier".) *) |
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97 |
fun extensionalize_term t = |
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98 |
let |
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99 |
fun aux j (@{const Trueprop} $ t') = @{const Trueprop} $ aux j t' |
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100 |
| aux j (t as Const (s, Type (_, [Type (_, [_, T']), |
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101 |
Type (_, [_, res_T])])) |
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102 |
$ t2 $ Abs (var_s, var_T, t')) = |
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103 |
if s = @{const_name "op ="} orelse s = @{const_name "=="} then |
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104 |
let val var_t = Var ((var_s, j), var_T) in |
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105 |
Const (s, T' --> T' --> res_T) |
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106 |
$ betapply (t2, var_t) $ subst_bound (var_t, t') |
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107 |
|> aux (j + 1) |
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108 |
end |
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109 |
else |
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110 |
t |
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111 |
| aux _ t = t |
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112 |
in aux (maxidx_of_term t + 1) t end |
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|
113 |
|
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diff
changeset
|
114 |
fun introduce_combinators_in_term ctxt kind t = |
38491
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
blanchet
parents:
38282
diff
changeset
|
115 |
let val thy = ProofContext.theory_of ctxt in |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
blanchet
parents:
38282
diff
changeset
|
116 |
if Meson.is_fol_term thy t then |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
blanchet
parents:
38282
diff
changeset
|
117 |
t |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
38282
diff
changeset
|
118 |
else |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
119 |
let |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
120 |
fun aux Ts t = |
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invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
121 |
case t of |
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invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
122 |
@{const Not} $ t1 => @{const Not} $ aux Ts t1 |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
blanchet
parents:
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diff
changeset
|
123 |
| (t0 as Const (@{const_name All}, _)) $ Abs (s, T, t') => |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
124 |
t0 $ Abs (s, T, aux (T :: Ts) t') |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
125 |
| (t0 as Const (@{const_name Ex}, _)) $ Abs (s, T, t') => |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
blanchet
parents:
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diff
changeset
|
126 |
t0 $ Abs (s, T, aux (T :: Ts) t') |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
127 |
| (t0 as @{const "op &"}) $ t1 $ t2 => t0 $ aux Ts t1 $ aux Ts t2 |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
128 |
| (t0 as @{const "op |"}) $ t1 $ t2 => t0 $ aux Ts t1 $ aux Ts t2 |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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diff
changeset
|
129 |
| (t0 as @{const "op -->"}) $ t1 $ t2 => t0 $ aux Ts t1 $ aux Ts t2 |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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|
130 |
| (t0 as Const (@{const_name "op ="}, Type (_, [@{typ bool}, _]))) |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
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|
131 |
$ t1 $ t2 => |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
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|
132 |
t0 $ aux Ts t1 $ aux Ts t2 |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
133 |
| _ => if not (exists_subterm (fn Abs _ => true | _ => false) t) then |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
134 |
t |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
135 |
else |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
38282
diff
changeset
|
136 |
t |> conceal_bounds Ts |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
137 |
|> Envir.eta_contract |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
138 |
|> cterm_of thy |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
139 |
|> Clausifier.introduce_combinators_in_cterm |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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|
140 |
|> prop_of |> Logic.dest_equals |> snd |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
141 |
|> reveal_bounds Ts |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
142 |
val ([t], ctxt') = Variable.import_terms true [t] ctxt |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
143 |
in t |> aux [] |> singleton (Variable.export_terms ctxt' ctxt) end |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
38282
diff
changeset
|
144 |
handle THM _ => |
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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parents:
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diff
changeset
|
145 |
(* A type variable of sort "{}" will make abstraction fail. *) |
38613
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|
146 |
if kind = Conjecture then HOLogic.false_const |
4ca2cae2653f
use "hypothesis" rather than "conjecture" for hypotheses in TPTP format;
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|
147 |
else HOLogic.true_const |
38491
f7e51d981a9f
invoke Variable.export/import_term on the entire formula, to make sure that schematic variables don't get different indices in different subterms;
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changeset
|
148 |
end |
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|
149 |
|
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|
150 |
(* Metis's use of "resolve_tac" freezes the schematic variables. We simulate the |
319c59682c51
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|
151 |
same in Sledgehammer to prevent the discovery of unreplable proofs. *) |
319c59682c51
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|
152 |
fun freeze_term t = |
319c59682c51
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|
153 |
let |
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changeset
|
154 |
fun aux (t $ u) = aux t $ aux u |
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parents:
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|
155 |
| aux (Abs (s, T, t)) = Abs (s, T, aux t) |
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|
156 |
| aux (Var ((s, i), T)) = |
319c59682c51
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parents:
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changeset
|
157 |
Free (sledgehammer_weak_prefix ^ s ^ "_" ^ string_of_int i, T) |
319c59682c51
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parents:
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changeset
|
158 |
| aux t = t |
319c59682c51
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diff
changeset
|
159 |
in t |> exists_subterm is_Var t ? aux end |
319c59682c51
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changeset
|
160 |
|
38604 | 161 |
(* "Object_Logic.atomize_term" isn't as powerful as it could be; for example, |
162 |
it leaves metaequalities over "prop"s alone. *) |
|
38605 | 163 |
val atomize_term = |
164 |
let |
|
165 |
fun aux (@{const Trueprop} $ t1) = t1 |
|
166 |
| aux (Const (@{const_name all}, _) $ Abs (s, T, t')) = |
|
167 |
HOLogic.all_const T $ Abs (s, T, aux t') |
|
168 |
| aux (@{const "==>"} $ t1 $ t2) = HOLogic.mk_imp (pairself aux (t1, t2)) |
|
169 |
| aux (Const (@{const_name "=="}, Type (_, [@{typ prop}, _])) $ t1 $ t2) = |
|
170 |
HOLogic.eq_const HOLogic.boolT $ aux t1 $ aux t2 |
|
171 |
| aux (Const (@{const_name "=="}, Type (_, [T, _])) $ t1 $ t2) = |
|
172 |
HOLogic.eq_const T $ t1 $ t2 |
|
173 |
| aux _ = raise Fail "aux" |
|
174 |
in perhaps (try aux) end |
|
38604 | 175 |
|
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|
176 |
(* making axiom and conjecture formulas *) |
38613
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changeset
|
177 |
fun make_formula ctxt presimp name kind t = |
38282
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parents:
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changeset
|
178 |
let |
319c59682c51
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changeset
|
179 |
val thy = ProofContext.theory_of ctxt |
38608
01ed56c46259
beta eta contract the Sledgehammer conjecture (and also the axioms, although this might not be needed), just like Metis does (implicitly);
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parents:
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|
180 |
val t = t |> Envir.beta_eta_contract |
38604 | 181 |
|> atomize_term |
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|
182 |
val t = t |> fastype_of t = HOLogic.boolT ? HOLogic.mk_Trueprop |
319c59682c51
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|
183 |
|> extensionalize_term |
319c59682c51
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changeset
|
184 |
|> presimp ? presimplify_term thy |
319c59682c51
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|
185 |
|> perhaps (try (HOLogic.dest_Trueprop)) |
319c59682c51
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parents:
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changeset
|
186 |
|> introduce_combinators_in_term ctxt kind |
38613
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|
187 |
|> kind <> Axiom ? freeze_term |
38282
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changeset
|
188 |
val (combformula, ctypes_sorts) = combformula_for_prop thy t [] |
319c59682c51
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parents:
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changeset
|
189 |
in |
319c59682c51
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changeset
|
190 |
FOLFormula {name = name, combformula = combformula, kind = kind, |
319c59682c51
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parents:
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changeset
|
191 |
ctypes_sorts = ctypes_sorts} |
319c59682c51
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parents:
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changeset
|
192 |
end |
319c59682c51
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parents:
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changeset
|
193 |
|
319c59682c51
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changeset
|
194 |
fun make_axiom ctxt presimp (name, th) = |
38613
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|
195 |
(name, make_formula ctxt presimp name Axiom (prop_of th)) |
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changeset
|
196 |
fun make_conjecture ctxt ts = |
4ca2cae2653f
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changeset
|
197 |
let val last = length ts - 1 in |
4ca2cae2653f
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changeset
|
198 |
map2 (fn j => make_formula ctxt true (Int.toString j) |
4ca2cae2653f
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|
199 |
(if j = last then Conjecture else Hypothesis)) |
4ca2cae2653f
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changeset
|
200 |
(0 upto last) ts |
4ca2cae2653f
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changeset
|
201 |
end |
38282
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blanchet
parents:
diff
changeset
|
202 |
|
319c59682c51
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parents:
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changeset
|
203 |
(** Helper facts **) |
319c59682c51
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parents:
diff
changeset
|
204 |
|
319c59682c51
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parents:
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changeset
|
205 |
fun count_combterm (CombConst ((s, _), _, _)) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
206 |
Symtab.map_entry s (Integer.add 1) |
319c59682c51
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blanchet
parents:
diff
changeset
|
207 |
| count_combterm (CombVar _) = I |
319c59682c51
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parents:
diff
changeset
|
208 |
| count_combterm (CombApp (t1, t2)) = fold count_combterm [t1, t2] |
319c59682c51
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blanchet
parents:
diff
changeset
|
209 |
fun count_combformula (AQuant (_, _, phi)) = count_combformula phi |
319c59682c51
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blanchet
parents:
diff
changeset
|
210 |
| count_combformula (AConn (_, phis)) = fold count_combformula phis |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
211 |
| count_combformula (AAtom tm) = count_combterm tm |
319c59682c51
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blanchet
parents:
diff
changeset
|
212 |
fun count_fol_formula (FOLFormula {combformula, ...}) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
213 |
count_combformula combformula |
319c59682c51
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blanchet
parents:
diff
changeset
|
214 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
215 |
val optional_helpers = |
319c59682c51
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blanchet
parents:
diff
changeset
|
216 |
[(["c_COMBI", "c_COMBK"], @{thms COMBI_def COMBK_def}), |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
217 |
(["c_COMBB", "c_COMBC"], @{thms COMBB_def COMBC_def}), |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
218 |
(["c_COMBS"], @{thms COMBS_def})] |
319c59682c51
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blanchet
parents:
diff
changeset
|
219 |
val optional_typed_helpers = |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
220 |
[(["c_True", "c_False"], @{thms True_or_False}), |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
221 |
(["c_If"], @{thms if_True if_False True_or_False})] |
38606
3003ddbd46d9
encode "fequal" reasoning rules in Metis problem, just as is done for Sledgehammer -- otherwise any proof that relies on "fequal" found by Sledgehammer can't be reconstructed
blanchet
parents:
38605
diff
changeset
|
222 |
val mandatory_helpers = @{thms fequal_def} |
38282
319c59682c51
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blanchet
parents:
diff
changeset
|
223 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
224 |
val init_counters = |
319c59682c51
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blanchet
parents:
diff
changeset
|
225 |
Symtab.make (maps (maps (map (rpair 0) o fst)) |
319c59682c51
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blanchet
parents:
diff
changeset
|
226 |
[optional_helpers, optional_typed_helpers]) |
319c59682c51
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blanchet
parents:
diff
changeset
|
227 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
228 |
fun get_helper_facts ctxt is_FO full_types conjectures axioms = |
319c59682c51
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blanchet
parents:
diff
changeset
|
229 |
let |
319c59682c51
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val ct = fold (fold count_fol_formula) [conjectures, axioms] init_counters |
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fun is_needed c = the (Symtab.lookup ct c) > 0 |
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in |
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(optional_helpers |
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|> full_types ? append optional_typed_helpers |
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|> maps (fn (ss, ths) => |
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if exists is_needed ss then map (`Thm.get_name_hint) ths |
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else [])) @ |
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(if is_FO then [] else map (`Thm.get_name_hint) mandatory_helpers) |
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|> map (snd o make_axiom ctxt false) |
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end |
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241 |
|
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fun prepare_formulas ctxt full_types hyp_ts concl_t axioms = |
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let |
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val thy = ProofContext.theory_of ctxt |
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val axiom_ts = map (prop_of o snd) axioms |
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val hyp_ts = |
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if null hyp_ts then |
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[] |
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else |
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250 |
(* Remove existing axioms from the conjecture, as this can dramatically |
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boost an ATP's performance (for some reason). *) |
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let |
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val axiom_table = fold (Termtab.update o rpair ()) axiom_ts |
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Termtab.empty |
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in hyp_ts |> filter_out (Termtab.defined axiom_table) end |
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val goal_t = Logic.list_implies (hyp_ts, concl_t) |
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val is_FO = Meson.is_fol_term thy goal_t |
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val subs = tfree_classes_of_terms [goal_t] |
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val supers = tvar_classes_of_terms axiom_ts |
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val tycons = type_consts_of_terms thy (goal_t :: axiom_ts) |
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(* TFrees in the conjecture; TVars in the axioms *) |
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val conjectures = make_conjecture ctxt (hyp_ts @ [concl_t]) |
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val (axiom_names, axioms) = |
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264 |
ListPair.unzip (map (make_axiom ctxt true) axioms) |
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val helper_facts = get_helper_facts ctxt is_FO full_types conjectures axioms |
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val (supers', arity_clauses) = make_arity_clauses thy tycons supers |
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val class_rel_clauses = make_class_rel_clauses thy subs supers' |
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in |
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(Vector.fromList axiom_names, |
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(conjectures, axioms, helper_facts, class_rel_clauses, arity_clauses)) |
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271 |
end |
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272 |
|
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fun wrap_type ty t = ATerm ((type_wrapper_name, type_wrapper_name), [ty, t]) |
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274 |
|
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fun fo_term_for_combtyp (CombTVar name) = ATerm (name, []) |
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| fo_term_for_combtyp (CombTFree name) = ATerm (name, []) |
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| fo_term_for_combtyp (CombType (name, tys)) = |
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ATerm (name, map fo_term_for_combtyp tys) |
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279 |
|
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280 |
fun fo_literal_for_type_literal (TyLitVar (class, name)) = |
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(true, ATerm (class, [ATerm (name, [])])) |
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| fo_literal_for_type_literal (TyLitFree (class, name)) = |
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(true, ATerm (class, [ATerm (name, [])])) |
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284 |
|
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285 |
fun formula_for_fo_literal (pos, t) = AAtom t |> not pos ? mk_anot |
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|
286 |
|
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287 |
fun fo_term_for_combterm full_types = |
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288 |
let |
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|
289 |
fun aux top_level u = |
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|
290 |
let |
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|
291 |
val (head, args) = strip_combterm_comb u |
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|
292 |
val (x, ty_args) = |
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|
293 |
case head of |
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|
294 |
CombConst (name as (s, s'), _, ty_args) => |
38496 | 295 |
let val ty_args = if full_types then [] else ty_args in |
296 |
if s = "equal" then |
|
297 |
if top_level andalso length args = 2 then (name, []) |
|
298 |
else (("c_fequal", @{const_name fequal}), ty_args) |
|
299 |
else if top_level then |
|
300 |
case s of |
|
301 |
"c_False" => (("$false", s'), []) |
|
302 |
| "c_True" => (("$true", s'), []) |
|
303 |
| _ => (name, ty_args) |
|
304 |
else |
|
305 |
(name, ty_args) |
|
306 |
end |
|
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|
307 |
| CombVar (name, _) => (name, []) |
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|
308 |
| CombApp _ => raise Fail "impossible \"CombApp\"" |
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|
309 |
val t = ATerm (x, map fo_term_for_combtyp ty_args @ |
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|
310 |
map (aux false) args) |
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|
311 |
in |
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|
312 |
if full_types then wrap_type (fo_term_for_combtyp (combtyp_of u)) t else t |
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|
313 |
end |
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|
314 |
in aux true end |
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|
315 |
|
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|
316 |
fun formula_for_combformula full_types = |
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|
317 |
let |
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|
318 |
fun aux (AQuant (q, xs, phi)) = AQuant (q, xs, aux phi) |
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|
319 |
| aux (AConn (c, phis)) = AConn (c, map aux phis) |
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|
320 |
| aux (AAtom tm) = AAtom (fo_term_for_combterm full_types tm) |
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|
321 |
in aux end |
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|
322 |
|
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|
323 |
fun formula_for_axiom full_types (FOLFormula {combformula, ctypes_sorts, ...}) = |
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|
324 |
mk_ahorn (map (formula_for_fo_literal o fo_literal_for_type_literal) |
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|
325 |
(type_literals_for_types ctypes_sorts)) |
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|
326 |
(formula_for_combformula full_types combformula) |
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|
327 |
|
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|
328 |
fun problem_line_for_fact prefix full_types |
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|
329 |
(formula as FOLFormula {name, kind, ...}) = |
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|
330 |
Fof (prefix ^ ascii_of name, kind, formula_for_axiom full_types formula) |
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|
331 |
|
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|
332 |
fun problem_line_for_class_rel_clause (ClassRelClause {name, subclass, |
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|
333 |
superclass, ...}) = |
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|
334 |
let val ty_arg = ATerm (("T", "T"), []) in |
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|
335 |
Fof (class_rel_clause_prefix ^ ascii_of name, Axiom, |
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|
336 |
AConn (AImplies, [AAtom (ATerm (subclass, [ty_arg])), |
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|
337 |
AAtom (ATerm (superclass, [ty_arg]))])) |
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|
338 |
end |
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|
339 |
|
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|
340 |
fun fo_literal_for_arity_literal (TConsLit (c, t, args)) = |
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|
341 |
(true, ATerm (c, [ATerm (t, map (fn arg => ATerm (arg, [])) args)])) |
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|
342 |
| fo_literal_for_arity_literal (TVarLit (c, sort)) = |
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|
343 |
(false, ATerm (c, [ATerm (sort, [])])) |
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|
344 |
|
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|
345 |
fun problem_line_for_arity_clause (ArityClause {name, conclLit, premLits, |
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|
346 |
...}) = |
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|
347 |
Fof (arity_clause_prefix ^ ascii_of name, Axiom, |
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|
348 |
mk_ahorn (map (formula_for_fo_literal o apfst not |
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|
349 |
o fo_literal_for_arity_literal) premLits) |
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|
350 |
(formula_for_fo_literal |
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|
351 |
(fo_literal_for_arity_literal conclLit))) |
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|
352 |
|
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parents:
diff
changeset
|
353 |
fun problem_line_for_conjecture full_types |
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parents:
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|
354 |
(FOLFormula {name, kind, combformula, ...}) = |
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parents:
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|
355 |
Fof (conjecture_prefix ^ name, kind, |
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parents:
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changeset
|
356 |
formula_for_combformula full_types combformula) |
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parents:
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changeset
|
357 |
|
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parents:
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changeset
|
358 |
fun free_type_literals_for_conjecture (FOLFormula {ctypes_sorts, ...}) = |
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parents:
diff
changeset
|
359 |
map fo_literal_for_type_literal (type_literals_for_types ctypes_sorts) |
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parents:
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changeset
|
360 |
|
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parents:
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changeset
|
361 |
fun problem_line_for_free_type lit = |
38613
4ca2cae2653f
use "hypothesis" rather than "conjecture" for hypotheses in TPTP format;
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38610
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changeset
|
362 |
Fof (tfrees_name, Hypothesis, formula_for_fo_literal lit) |
38282
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parents:
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changeset
|
363 |
fun problem_lines_for_free_types conjectures = |
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parents:
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changeset
|
364 |
let |
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parents:
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changeset
|
365 |
val litss = map free_type_literals_for_conjecture conjectures |
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parents:
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changeset
|
366 |
val lits = fold (union (op =)) litss [] |
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parents:
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changeset
|
367 |
in map problem_line_for_free_type lits end |
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parents:
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changeset
|
368 |
|
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parents:
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changeset
|
369 |
(** "hBOOL" and "hAPP" **) |
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parents:
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changeset
|
370 |
|
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parents:
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changeset
|
371 |
type const_info = {min_arity: int, max_arity: int, sub_level: bool} |
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changeset
|
372 |
|
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parents:
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changeset
|
373 |
fun consider_term top_level (ATerm ((s, _), ts)) = |
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parents:
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changeset
|
374 |
(if is_tptp_variable s then |
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parents:
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changeset
|
375 |
I |
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parents:
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changeset
|
376 |
else |
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parents:
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changeset
|
377 |
let val n = length ts in |
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parents:
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changeset
|
378 |
Symtab.map_default |
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parents:
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changeset
|
379 |
(s, {min_arity = n, max_arity = 0, sub_level = false}) |
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parents:
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changeset
|
380 |
(fn {min_arity, max_arity, sub_level} => |
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parents:
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changeset
|
381 |
{min_arity = Int.min (n, min_arity), |
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parents:
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changeset
|
382 |
max_arity = Int.max (n, max_arity), |
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parents:
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changeset
|
383 |
sub_level = sub_level orelse not top_level}) |
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parents:
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changeset
|
384 |
end) |
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parents:
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changeset
|
385 |
#> fold (consider_term (top_level andalso s = type_wrapper_name)) ts |
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parents:
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changeset
|
386 |
fun consider_formula (AQuant (_, _, phi)) = consider_formula phi |
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parents:
diff
changeset
|
387 |
| consider_formula (AConn (_, phis)) = fold consider_formula phis |
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parents:
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changeset
|
388 |
| consider_formula (AAtom tm) = consider_term true tm |
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parents:
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changeset
|
389 |
|
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parents:
diff
changeset
|
390 |
fun consider_problem_line (Fof (_, _, phi)) = consider_formula phi |
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parents:
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changeset
|
391 |
fun consider_problem problem = fold (fold consider_problem_line o snd) problem |
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parents:
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changeset
|
392 |
|
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parents:
diff
changeset
|
393 |
fun const_table_for_problem explicit_apply problem = |
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parents:
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changeset
|
394 |
if explicit_apply then NONE |
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parents:
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changeset
|
395 |
else SOME (Symtab.empty |> consider_problem problem) |
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parents:
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changeset
|
396 |
|
319c59682c51
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parents:
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changeset
|
397 |
fun min_arity_of thy full_types NONE s = |
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parents:
diff
changeset
|
398 |
(if s = "equal" orelse s = type_wrapper_name orelse |
319c59682c51
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blanchet
parents:
diff
changeset
|
399 |
String.isPrefix type_const_prefix s orelse |
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blanchet
parents:
diff
changeset
|
400 |
String.isPrefix class_prefix s then |
319c59682c51
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blanchet
parents:
diff
changeset
|
401 |
16383 (* large number *) |
319c59682c51
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blanchet
parents:
diff
changeset
|
402 |
else if full_types then |
319c59682c51
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parents:
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changeset
|
403 |
0 |
319c59682c51
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blanchet
parents:
diff
changeset
|
404 |
else case strip_prefix_and_undo_ascii const_prefix s of |
319c59682c51
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blanchet
parents:
diff
changeset
|
405 |
SOME s' => num_type_args thy (invert_const s') |
319c59682c51
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blanchet
parents:
diff
changeset
|
406 |
| NONE => 0) |
319c59682c51
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blanchet
parents:
diff
changeset
|
407 |
| min_arity_of _ _ (SOME the_const_tab) s = |
319c59682c51
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blanchet
parents:
diff
changeset
|
408 |
case Symtab.lookup the_const_tab s of |
319c59682c51
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blanchet
parents:
diff
changeset
|
409 |
SOME ({min_arity, ...} : const_info) => min_arity |
319c59682c51
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parents:
diff
changeset
|
410 |
| NONE => 0 |
319c59682c51
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parents:
diff
changeset
|
411 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
412 |
fun full_type_of (ATerm ((s, _), [ty, _])) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
413 |
if s = type_wrapper_name then ty else raise Fail "expected type wrapper" |
319c59682c51
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blanchet
parents:
diff
changeset
|
414 |
| full_type_of _ = raise Fail "expected type wrapper" |
319c59682c51
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blanchet
parents:
diff
changeset
|
415 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
416 |
fun list_hAPP_rev _ t1 [] = t1 |
319c59682c51
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blanchet
parents:
diff
changeset
|
417 |
| list_hAPP_rev NONE t1 (t2 :: ts2) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
418 |
ATerm (`I "hAPP", [list_hAPP_rev NONE t1 ts2, t2]) |
319c59682c51
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blanchet
parents:
diff
changeset
|
419 |
| list_hAPP_rev (SOME ty) t1 (t2 :: ts2) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
420 |
let val ty' = ATerm (`make_fixed_type_const @{type_name fun}, |
319c59682c51
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blanchet
parents:
diff
changeset
|
421 |
[full_type_of t2, ty]) in |
319c59682c51
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blanchet
parents:
diff
changeset
|
422 |
ATerm (`I "hAPP", [wrap_type ty' (list_hAPP_rev (SOME ty') t1 ts2), t2]) |
319c59682c51
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parents:
diff
changeset
|
423 |
end |
319c59682c51
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blanchet
parents:
diff
changeset
|
424 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
425 |
fun repair_applications_in_term thy full_types const_tab = |
319c59682c51
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blanchet
parents:
diff
changeset
|
426 |
let |
319c59682c51
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blanchet
parents:
diff
changeset
|
427 |
fun aux opt_ty (ATerm (name as (s, _), ts)) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
428 |
if s = type_wrapper_name then |
319c59682c51
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blanchet
parents:
diff
changeset
|
429 |
case ts of |
319c59682c51
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blanchet
parents:
diff
changeset
|
430 |
[t1, t2] => ATerm (name, [aux NONE t1, aux (SOME t1) t2]) |
319c59682c51
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blanchet
parents:
diff
changeset
|
431 |
| _ => raise Fail "malformed type wrapper" |
319c59682c51
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blanchet
parents:
diff
changeset
|
432 |
else |
319c59682c51
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blanchet
parents:
diff
changeset
|
433 |
let |
319c59682c51
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blanchet
parents:
diff
changeset
|
434 |
val ts = map (aux NONE) ts |
319c59682c51
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blanchet
parents:
diff
changeset
|
435 |
val (ts1, ts2) = chop (min_arity_of thy full_types const_tab s) ts |
319c59682c51
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blanchet
parents:
diff
changeset
|
436 |
in list_hAPP_rev opt_ty (ATerm (name, ts1)) (rev ts2) end |
319c59682c51
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blanchet
parents:
diff
changeset
|
437 |
in aux NONE end |
319c59682c51
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blanchet
parents:
diff
changeset
|
438 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
439 |
fun boolify t = ATerm (`I "hBOOL", [t]) |
319c59682c51
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blanchet
parents:
diff
changeset
|
440 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
441 |
(* True if the constant ever appears outside of the top-level position in |
319c59682c51
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blanchet
parents:
diff
changeset
|
442 |
literals, or if it appears with different arities (e.g., because of different |
319c59682c51
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blanchet
parents:
diff
changeset
|
443 |
type instantiations). If false, the constant always receives all of its |
319c59682c51
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blanchet
parents:
diff
changeset
|
444 |
arguments and is used as a predicate. *) |
319c59682c51
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blanchet
parents:
diff
changeset
|
445 |
fun is_predicate NONE s = |
38589
b03f8fe043ec
added "max_relevant_per_iter" option to Sledgehammer
blanchet
parents:
38518
diff
changeset
|
446 |
s = "equal" orelse s = "$false" orelse s = "$true" orelse |
b03f8fe043ec
added "max_relevant_per_iter" option to Sledgehammer
blanchet
parents:
38518
diff
changeset
|
447 |
String.isPrefix type_const_prefix s orelse String.isPrefix class_prefix s |
38282
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
448 |
| is_predicate (SOME the_const_tab) s = |
319c59682c51
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blanchet
parents:
diff
changeset
|
449 |
case Symtab.lookup the_const_tab s of |
319c59682c51
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blanchet
parents:
diff
changeset
|
450 |
SOME {min_arity, max_arity, sub_level} => |
319c59682c51
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blanchet
parents:
diff
changeset
|
451 |
not sub_level andalso min_arity = max_arity |
319c59682c51
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blanchet
parents:
diff
changeset
|
452 |
| NONE => false |
319c59682c51
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blanchet
parents:
diff
changeset
|
453 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
454 |
fun repair_predicates_in_term const_tab (t as ATerm ((s, _), ts)) = |
319c59682c51
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blanchet
parents:
diff
changeset
|
455 |
if s = type_wrapper_name then |
319c59682c51
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blanchet
parents:
diff
changeset
|
456 |
case ts of |
319c59682c51
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blanchet
parents:
diff
changeset
|
457 |
[_, t' as ATerm ((s', _), _)] => |
319c59682c51
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blanchet
parents:
diff
changeset
|
458 |
if is_predicate const_tab s' then t' else boolify t |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
459 |
| _ => raise Fail "malformed type wrapper" |
319c59682c51
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blanchet
parents:
diff
changeset
|
460 |
else |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
461 |
t |> not (is_predicate const_tab s) ? boolify |
319c59682c51
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blanchet
parents:
diff
changeset
|
462 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
463 |
fun close_universally phi = |
319c59682c51
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blanchet
parents:
diff
changeset
|
464 |
let |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
465 |
fun term_vars bounds (ATerm (name as (s, _), tms)) = |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
466 |
(is_tptp_variable s andalso not (member (op =) bounds name)) |
319c59682c51
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blanchet
parents:
diff
changeset
|
467 |
? insert (op =) name |
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|
468 |
#> fold (term_vars bounds) tms |
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|
469 |
fun formula_vars bounds (AQuant (q, xs, phi)) = |
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parents:
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|
470 |
formula_vars (xs @ bounds) phi |
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parents:
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|
471 |
| formula_vars bounds (AConn (_, phis)) = fold (formula_vars bounds) phis |
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|
472 |
| formula_vars bounds (AAtom tm) = term_vars bounds tm |
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parents:
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changeset
|
473 |
in |
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parents:
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|
474 |
case formula_vars [] phi [] of [] => phi | xs => AQuant (AForall, xs, phi) |
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|
475 |
end |
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|
476 |
|
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parents:
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changeset
|
477 |
fun repair_formula thy explicit_forall full_types const_tab = |
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parents:
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|
478 |
let |
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|
479 |
fun aux (AQuant (q, xs, phi)) = AQuant (q, xs, aux phi) |
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parents:
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changeset
|
480 |
| aux (AConn (c, phis)) = AConn (c, map aux phis) |
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parents:
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|
481 |
| aux (AAtom tm) = |
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parents:
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|
482 |
AAtom (tm |> repair_applications_in_term thy full_types const_tab |
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parents:
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changeset
|
483 |
|> repair_predicates_in_term const_tab) |
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parents:
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changeset
|
484 |
in aux #> explicit_forall ? close_universally end |
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parents:
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changeset
|
485 |
|
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parents:
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|
486 |
fun repair_problem_line thy explicit_forall full_types const_tab |
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parents:
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|
487 |
(Fof (ident, kind, phi)) = |
319c59682c51
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parents:
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changeset
|
488 |
Fof (ident, kind, repair_formula thy explicit_forall full_types const_tab phi) |
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parents:
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changeset
|
489 |
fun repair_problem_with_const_table thy = |
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parents:
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changeset
|
490 |
map o apsnd o map ooo repair_problem_line thy |
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parents:
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changeset
|
491 |
|
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parents:
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|
492 |
fun repair_problem thy explicit_forall full_types explicit_apply problem = |
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parents:
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changeset
|
493 |
repair_problem_with_const_table thy explicit_forall full_types |
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parents:
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changeset
|
494 |
(const_table_for_problem explicit_apply problem) problem |
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parents:
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|
495 |
|
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parents:
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changeset
|
496 |
fun prepare_problem ctxt readable_names explicit_forall full_types |
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parents:
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|
497 |
explicit_apply hyp_ts concl_t axiom_ts = |
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parents:
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changeset
|
498 |
let |
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parents:
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changeset
|
499 |
val thy = ProofContext.theory_of ctxt |
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parents:
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|
500 |
val (axiom_names, (conjectures, axioms, helper_facts, class_rel_clauses, |
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blanchet
parents:
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|
501 |
arity_clauses)) = |
319c59682c51
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blanchet
parents:
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changeset
|
502 |
prepare_formulas ctxt full_types hyp_ts concl_t axiom_ts |
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parents:
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changeset
|
503 |
val axiom_lines = map (problem_line_for_fact axiom_prefix full_types) axioms |
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parents:
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changeset
|
504 |
val helper_lines = |
319c59682c51
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parents:
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changeset
|
505 |
map (problem_line_for_fact helper_prefix full_types) helper_facts |
319c59682c51
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parents:
diff
changeset
|
506 |
val conjecture_lines = |
319c59682c51
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parents:
diff
changeset
|
507 |
map (problem_line_for_conjecture full_types) conjectures |
319c59682c51
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blanchet
parents:
diff
changeset
|
508 |
val tfree_lines = problem_lines_for_free_types conjectures |
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blanchet
parents:
diff
changeset
|
509 |
val class_rel_lines = |
319c59682c51
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blanchet
parents:
diff
changeset
|
510 |
map problem_line_for_class_rel_clause class_rel_clauses |
319c59682c51
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blanchet
parents:
diff
changeset
|
511 |
val arity_lines = map problem_line_for_arity_clause arity_clauses |
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blanchet
parents:
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changeset
|
512 |
(* Reordering these might or might not confuse the proof reconstruction |
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blanchet
parents:
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changeset
|
513 |
code or the SPASS Flotter hack. *) |
319c59682c51
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parents:
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changeset
|
514 |
val problem = |
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blanchet
parents:
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changeset
|
515 |
[("Relevant facts", axiom_lines), |
319c59682c51
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parents:
diff
changeset
|
516 |
("Class relationships", class_rel_lines), |
319c59682c51
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parents:
diff
changeset
|
517 |
("Arity declarations", arity_lines), |
319c59682c51
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parents:
diff
changeset
|
518 |
("Helper facts", helper_lines), |
319c59682c51
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parents:
diff
changeset
|
519 |
("Conjectures", conjecture_lines), |
319c59682c51
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parents:
diff
changeset
|
520 |
("Type variables", tfree_lines)] |
319c59682c51
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parents:
diff
changeset
|
521 |
|> repair_problem thy explicit_forall full_types explicit_apply |
319c59682c51
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blanchet
parents:
diff
changeset
|
522 |
val (problem, pool) = nice_tptp_problem readable_names problem |
319c59682c51
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blanchet
parents:
diff
changeset
|
523 |
val conjecture_offset = |
319c59682c51
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blanchet
parents:
diff
changeset
|
524 |
length axiom_lines + length class_rel_lines + length arity_lines |
319c59682c51
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blanchet
parents:
diff
changeset
|
525 |
+ length helper_lines |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
526 |
in |
319c59682c51
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parents:
diff
changeset
|
527 |
(problem, |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
528 |
case pool of SOME the_pool => snd the_pool | NONE => Symtab.empty, |
319c59682c51
move Sledgehammer's HOL -> FOL translation to separate file (sledgehammer_translate.ML)
blanchet
parents:
diff
changeset
|
529 |
conjecture_offset, axiom_names) |
319c59682c51
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blanchet
parents:
diff
changeset
|
530 |
end |
319c59682c51
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blanchet
parents:
diff
changeset
|
531 |
|
319c59682c51
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blanchet
parents:
diff
changeset
|
532 |
end; |