| author | wenzelm | 
| Thu, 02 May 2024 14:08:59 +0200 | |
| changeset 80168 | 007e6af8a020 | 
| parent 77879 | dd222e2af01a | 
| child 80306 | c2537860ccf8 | 
| permissions | -rw-r--r-- | 
| 39941 | 1 | (* Title: HOL/Tools/Meson/meson.ML | 
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changeset | 2 | Author: Lawrence C Paulson, Cambridge University Computer Laboratory | 
| 39941 | 3 | Author: Jasmin Blanchette, TU Muenchen | 
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changeset | 4 | |
| 9869 | 5 | The MESON resolution proof procedure for HOL. | 
| 29267 | 6 | When making clauses, avoids using the rewriter -- instead uses RS recursively. | 
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changeset | 7 | *) | 
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changeset | 8 | |
| 24300 | 9 | signature MESON = | 
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changeset | 10 | sig | 
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changeset | 11 |   type simp_options = {if_simps : bool, let_simps : bool}
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changeset | 12 | val simp_options_all_true : simp_options | 
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changeset | 13 | val trace : bool Config.T | 
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changeset | 14 | val max_clauses : int Config.T | 
| 60362 | 15 | val first_order_resolve : Proof.context -> thm -> thm -> thm | 
| 24300 | 16 | val size_of_subgoals: thm -> int | 
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changeset | 17 | val has_too_many_clauses: Proof.context -> term -> bool | 
| 59165 | 18 | val make_cnf: thm list -> thm -> Proof.context -> thm list * Proof.context | 
| 24300 | 19 | val finish_cnf: thm list -> thm list | 
| 46093 | 20 | val presimplified_consts : string list | 
| 74051 | 21 | val presimplify: simp_options -> Proof.context -> thm -> thm | 
| 22 | val make_nnf: simp_options -> Proof.context -> thm -> thm | |
| 39950 | 23 | val choice_theorems : theory -> thm list | 
| 74051 | 24 | val skolemize_with_choice_theorems : simp_options -> Proof.context -> thm list -> thm -> thm | 
| 25 | val skolemize : simp_options -> Proof.context -> thm -> thm | |
| 59632 | 26 | val cong_extensionalize_thm : Proof.context -> thm -> thm | 
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changeset | 27 | val abs_extensionalize_conv : Proof.context -> conv | 
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changeset | 28 | val abs_extensionalize_thm : Proof.context -> thm -> thm | 
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changeset | 29 | val make_clauses_unsorted: Proof.context -> thm list -> thm list | 
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changeset | 30 | val make_clauses: Proof.context -> thm list -> thm list | 
| 24300 | 31 | val make_horns: thm list -> thm list | 
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changeset | 32 | val best_prolog_tac: Proof.context -> (thm -> int) -> thm list -> tactic | 
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changeset | 33 | val depth_prolog_tac: Proof.context -> thm list -> tactic | 
| 24300 | 34 | val gocls: thm list -> thm list | 
| 74051 | 35 | val skolemize_prems_tac : simp_options -> Proof.context -> thm list -> int -> tactic | 
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changeset | 36 | val MESON: | 
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changeset | 37 | tactic -> (thm list -> thm list) -> (thm list -> tactic) -> Proof.context | 
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changeset | 38 | -> int -> tactic | 
| 32262 | 39 | val best_meson_tac: (thm -> int) -> Proof.context -> int -> tactic | 
| 40 | val safe_best_meson_tac: Proof.context -> int -> tactic | |
| 41 | val depth_meson_tac: Proof.context -> int -> tactic | |
| 58957 | 42 | val prolog_step_tac': Proof.context -> thm list -> int -> tactic | 
| 43 | val iter_deepen_prolog_tac: Proof.context -> thm list -> tactic | |
| 32262 | 44 | val iter_deepen_meson_tac: Proof.context -> thm list -> int -> tactic | 
| 60358 | 45 | val make_meta_clause: Proof.context -> thm -> thm | 
| 46 | val make_meta_clauses: Proof.context -> thm list -> thm list | |
| 32262 | 47 | val meson_tac: Proof.context -> thm list -> int -> tactic | 
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changeset | 48 | end | 
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changeset | 49 | |
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changeset | 50 | structure Meson : MESON = | 
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changeset | 51 | struct | 
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changeset | 52 | |
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changeset | 53 | type simp_options = {if_simps : bool, let_simps : bool}
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changeset | 54 | val simp_options_all_true = {if_simps = true, let_simps = true}
 | 
| 74051 | 55 | |
| 67149 | 56 | val trace = Attrib.setup_config_bool \<^binding>\<open>meson_trace\<close> (K false) | 
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changeset | 57 | |
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changeset | 58 | fun trace_msg ctxt msg = if Config.get ctxt trace then tracing (msg ()) else () | 
| 32955 | 59 | |
| 67149 | 60 | val max_clauses = Attrib.setup_config_int \<^binding>\<open>meson_max_clauses\<close> (K 60) | 
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changeset | 61 | |
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changeset | 62 | (*No known example (on 1-5-2007) needs even thirty*) | 
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changeset | 63 | val iter_deepen_limit = 50; | 
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changeset | 64 | |
| 31454 | 65 | val disj_forward = @{thm disj_forward};
 | 
| 66 | val disj_forward2 = @{thm disj_forward2};
 | |
| 67 | val make_pos_rule = @{thm make_pos_rule};
 | |
| 68 | val make_pos_rule' = @{thm make_pos_rule'};
 | |
| 69 | val make_pos_goal = @{thm make_pos_goal};
 | |
| 70 | val make_neg_rule = @{thm make_neg_rule};
 | |
| 71 | val make_neg_rule' = @{thm make_neg_rule'};
 | |
| 72 | val make_neg_goal = @{thm make_neg_goal};
 | |
| 73 | val conj_forward = @{thm conj_forward};
 | |
| 74 | val all_forward = @{thm all_forward};
 | |
| 75 | val ex_forward = @{thm ex_forward};
 | |
| 76 | ||
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changeset | 77 | val not_conjD = @{thm not_conjD};
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changeset | 78 | val not_disjD = @{thm not_disjD};
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changeset | 79 | val not_notD = @{thm not_notD};
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changeset | 80 | val not_allD = @{thm not_allD};
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changeset | 81 | val not_exD = @{thm not_exD};
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changeset | 82 | val imp_to_disjD = @{thm imp_to_disjD};
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changeset | 83 | val not_impD = @{thm not_impD};
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changeset | 84 | val iff_to_disjD = @{thm iff_to_disjD};
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changeset | 85 | val not_iffD = @{thm not_iffD};
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changeset | 86 | val conj_exD1 = @{thm conj_exD1};
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changeset | 87 | val conj_exD2 = @{thm conj_exD2};
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changeset | 88 | val disj_exD = @{thm disj_exD};
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changeset | 89 | val disj_exD1 = @{thm disj_exD1};
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changeset | 90 | val disj_exD2 = @{thm disj_exD2};
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changeset | 91 | val disj_assoc = @{thm disj_assoc};
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changeset | 92 | val disj_comm = @{thm disj_comm};
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changeset | 93 | val disj_FalseD1 = @{thm disj_FalseD1};
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changeset | 94 | val disj_FalseD2 = @{thm disj_FalseD2};
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changeset | 95 | |
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changeset | 96 | |
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changeset | 97 | (**** Operators for forward proof ****) | 
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changeset | 98 | |
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changeset | 99 | |
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changeset | 100 | (** First-order Resolution **) | 
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changeset | 101 | |
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changeset | 102 | (*FIXME: currently does not "rename variables apart"*) | 
| 60362 | 103 | fun first_order_resolve ctxt thA thB = | 
| 32262 | 104 | (case | 
| 73551 | 105 | \<^try>\<open> | 
| 60362 | 106 | let val thy = Proof_Context.theory_of ctxt | 
| 59582 | 107 | val tmA = Thm.concl_of thA | 
| 74346 | 108 | val \<^Const_>\<open>Pure.imp for tmB _\<close> = Thm.prop_of thB | 
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changeset | 109 | val tenv = | 
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changeset | 110 | Pattern.first_order_match thy (tmB, tmA) | 
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changeset | 111 | (Vartab.empty, Vartab.empty) |> snd | 
| 60781 | 112 | val insts = Vartab.fold (fn (xi, (_, t)) => cons (xi, Thm.cterm_of ctxt t)) tenv []; | 
| 73551 | 113 | in thA RS (infer_instantiate ctxt insts thB) end\<close> of | 
| 32262 | 114 | SOME th => th | 
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changeset | 115 |   | NONE => raise THM ("first_order_resolve", 0, [thA, thB]))
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changeset | 116 | |
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changeset | 117 | (* Hack to make it less likely that we lose our precious bound variable names in | 
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changeset | 118 | "rename_bound_vars_RS" below, because of a clash. *) | 
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changeset | 119 | val protect_prefix = "Meson_xyzzy" | 
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changeset | 120 | |
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changeset | 121 | fun protect_bound_var_names (t $ u) = | 
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changeset | 122 | protect_bound_var_names t $ protect_bound_var_names u | 
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changeset | 123 | | protect_bound_var_names (Abs (s, T, t')) = | 
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changeset | 124 | Abs (protect_prefix ^ s, T, protect_bound_var_names t') | 
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changeset | 125 | | protect_bound_var_names t = t | 
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changeset | 126 | |
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changeset | 127 | fun fix_bound_var_names old_t new_t = | 
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changeset | 128 | let | 
| 67149 | 129 | fun quant_of \<^const_name>\<open>All\<close> = SOME true | 
| 130 | | quant_of \<^const_name>\<open>Ball\<close> = SOME true | |
| 131 | | quant_of \<^const_name>\<open>Ex\<close> = SOME false | |
| 132 | | quant_of \<^const_name>\<open>Bex\<close> = SOME false | |
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changeset | 133 | | quant_of _ = NONE | 
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changeset | 134 | val flip_quant = Option.map not | 
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changeset | 135 | fun some_eq (SOME x) (SOME y) = x = y | 
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changeset | 136 | | some_eq _ _ = false | 
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changeset | 137 | fun add_names quant (Const (quant_s, _) $ Abs (s, _, t')) = | 
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changeset | 138 | add_names quant t' #> some_eq quant (quant_of quant_s) ? cons s | 
| 74346 | 139 | | add_names quant \<^Const_>\<open>Not for t\<close> = add_names (flip_quant quant) t | 
| 140 | | add_names quant \<^Const_>\<open>implies for t1 t2\<close> = | |
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changeset | 141 | add_names (flip_quant quant) t1 #> add_names quant t2 | 
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changeset | 142 | | add_names quant (t1 $ t2) = fold (add_names quant) [t1, t2] | 
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changeset | 143 | | add_names _ _ = I | 
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changeset | 144 | fun lost_names quant = | 
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changeset | 145 | subtract (op =) (add_names quant new_t []) (add_names quant old_t []) | 
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changeset | 146 | fun aux ((t1 as Const (quant_s, _)) $ (Abs (s, T, t'))) = | 
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changeset | 147 | t1 $ Abs (s |> String.isPrefix protect_prefix s | 
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changeset | 148 | ? perhaps (try (fn _ => hd (lost_names (quant_of quant_s)))), | 
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changeset | 149 | T, aux t') | 
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changeset | 150 | | aux (t1 $ t2) = aux t1 $ aux t2 | 
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changeset | 151 | | aux t = t | 
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changeset | 152 | in aux new_t end | 
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changeset | 153 | |
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changeset | 154 | (* Forward proof while preserving bound variables names *) | 
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changeset | 155 | fun rename_bound_vars_RS th rl = | 
| 39904 | 156 | let | 
| 59582 | 157 | val t = Thm.concl_of th | 
| 158 | val r = Thm.concl_of rl | |
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changeset | 159 | val th' = th RS Thm.rename_boundvars r (protect_bound_var_names r) rl | 
| 59582 | 160 | val t' = Thm.concl_of th' | 
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changeset | 161 | in Thm.rename_boundvars t' (fix_bound_var_names t t') th' end | 
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changeset | 162 | |
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changeset | 163 | (*raises exception if no rules apply*) | 
| 24300 | 164 | fun tryres (th, rls) = | 
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changeset | 165 |   let fun tryall [] = raise THM("tryres", 0, th::rls)
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changeset | 166 | | tryall (rl::rls) = | 
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changeset | 167 | (rename_bound_vars_RS th rl handle THM _ => tryall rls) | 
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changeset | 168 | in tryall rls end; | 
| 24300 | 169 | |
| 58839 | 170 | (* Special version of "resolve_tac" that works around an explosion in the unifier. | 
| 50702 | 171 | If the goal has the form "?P c", the danger is that resolving it against a | 
| 172 | property of the form "... c ... c ... c ..." will lead to a huge unification | |
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changeset | 173 | problem, due to the (spurious) choices between projection and imitation. The | 
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changeset | 174 | workaround is to instantiate "?P := (%c. ... c ... c ... c ...)" manually. *) | 
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changeset | 175 | fun quant_resolve_tac ctxt th i st = | 
| 59582 | 176 | case (Thm.concl_of st, Thm.prop_of th) of | 
| 74346 | 177 | (\<^Const_>\<open>Trueprop for \<open>Var _ $ (c as Free _)\<close>\<close>, \<^Const_>\<open>Trueprop for _\<close>) => | 
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changeset | 178 | let | 
| 59632 | 179 | val cc = Thm.cterm_of ctxt c | 
| 59582 | 180 | val ct = Thm.dest_arg (Thm.cprop_of th) | 
| 60801 | 181 | in resolve_tac ctxt [th] i (Thm.instantiate' [] [SOME (Thm.lambda cc ct)] st) end | 
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changeset | 182 | | _ => resolve_tac ctxt [th] i st | 
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changeset | 183 | |
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changeset | 184 | (*Permits forward proof from rules that discharge assumptions. The supplied proof state st, | 
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changeset | 185 | e.g. from conj_forward, should have the form | 
| 74501 | 186 | "\<lbrakk>P' \<Longrightarrow> ?P; Q' \<Longrightarrow> ?Q\<rbrakk> \<Longrightarrow> ?P \<and> ?Q" | 
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changeset | 187 | and the effect should be to instantiate ?P and ?Q with normalized versions of P' and Q'.*) | 
| 32262 | 188 | fun forward_res ctxt nf st = | 
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changeset | 189 | let | 
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changeset | 190 | fun tacf [prem] = quant_resolve_tac ctxt (nf prem) 1 | 
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changeset | 191 | | tacf prems = | 
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changeset | 192 | error (cat_lines | 
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changeset | 193 |           ("Bad proof state in forward_res, please inform lcp@cl.cam.ac.uk:" ::
 | 
| 61268 | 194 | Thm.string_of_thm ctxt st :: | 
| 195 | "Premises:" :: map (Thm.string_of_thm ctxt) prems)) | |
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changeset | 196 | in | 
| 59165 | 197 | case Seq.pull (ALLGOALS (Misc_Legacy.METAHYPS ctxt tacf) st) of | 
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changeset | 198 | SOME (th, _) => th | 
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changeset | 199 |     | NONE => raise THM ("forward_res", 0, [st])
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changeset | 200 | end; | 
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changeset | 201 | |
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changeset | 202 | (*Are any of the logical connectives in "bs" present in the term?*) | 
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changeset | 203 | fun has_conns bs = | 
| 39328 | 204 | let fun has (Const _) = false | 
| 74346 | 205 | | has \<^Const_>\<open>Trueprop for p\<close> = has p | 
| 206 | | has \<^Const_>\<open>Not for p\<close> = has p | |
| 207 | | has \<^Const_>\<open>disj for p q\<close> = member (op =) bs \<^const_name>\<open>disj\<close> orelse has p orelse has q | |
| 208 | | has \<^Const_>\<open>conj for p q\<close> = member (op =) bs \<^const_name>\<open>conj\<close> orelse has p orelse has q | |
| 209 | | has \<^Const_>\<open>All _ for \<open>Abs(_,_,p)\<close>\<close> = member (op =) bs \<^const_name>\<open>All\<close> orelse has p | |
| 210 | | has \<^Const_>\<open>Ex _ for \<open>Abs(_,_,p)\<close>\<close> = member (op =) bs \<^const_name>\<open>Ex\<close> orelse has p | |
| 24300 | 211 | | has _ = false | 
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changeset | 212 | in has end; | 
| 24300 | 213 | |
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changeset | 214 | |
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changeset | 215 | (**** Clause handling ****) | 
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changeset | 216 | |
| 74346 | 217 | fun literals \<^Const_>\<open>Trueprop for P\<close> = literals P | 
| 218 | | literals \<^Const_>\<open>disj for P Q\<close> = literals P @ literals Q | |
| 219 | | literals \<^Const_>\<open>Not for P\<close> = [(false,P)] | |
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changeset | 220 | | literals P = [(true,P)]; | 
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changeset | 221 | |
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changeset | 222 | (*number of literals in a term*) | 
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changeset | 223 | val nliterals = length o literals; | 
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changeset | 224 | |
| 18389 | 225 | |
| 226 | (*** Tautology Checking ***) | |
| 227 | ||
| 74346 | 228 | fun signed_lits_aux \<^Const_>\<open>disj for P Q\<close> (poslits, neglits) = | 
| 18389 | 229 | signed_lits_aux Q (signed_lits_aux P (poslits, neglits)) | 
| 74346 | 230 | | signed_lits_aux \<^Const_>\<open>Not for P\<close> (poslits, neglits) = (poslits, P::neglits) | 
| 18389 | 231 | | signed_lits_aux P (poslits, neglits) = (P::poslits, neglits); | 
| 24300 | 232 | |
| 59582 | 233 | fun signed_lits th = signed_lits_aux (HOLogic.dest_Trueprop (Thm.concl_of th)) ([],[]); | 
| 18389 | 234 | |
| 235 | (*Literals like X=X are tautologous*) | |
| 74346 | 236 | fun taut_poslit \<^Const_>\<open>HOL.eq _ for t u\<close> = t aconv u | 
| 237 | | taut_poslit \<^Const_>\<open>True\<close> = true | |
| 18389 | 238 | | taut_poslit _ = false; | 
| 239 | ||
| 240 | fun is_taut th = | |
| 241 | let val (poslits,neglits) = signed_lits th | |
| 242 | in exists taut_poslit poslits | |
| 243 | orelse | |
| 67149 | 244 | exists (member (op aconv) neglits) (\<^term>\<open>False\<close> :: poslits) | 
| 19894 | 245 | end | 
| 24300 | 246 | handle TERM _ => false; (*probably dest_Trueprop on a weird theorem*) | 
| 18389 | 247 | |
| 248 | ||
| 249 | (*** To remove trivial negated equality literals from clauses ***) | |
| 250 | ||
| 251 | (*They are typically functional reflexivity axioms and are the converses of | |
| 252 | injectivity equivalences*) | |
| 24300 | 253 | |
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changeset | 254 | val not_refl_disj_D = @{thm not_refl_disj_D};
 | 
| 18389 | 255 | |
| 20119 | 256 | (*Is either term a Var that does not properly occur in the other term?*) | 
| 257 | fun eliminable (t as Var _, u) = t aconv u orelse not (Logic.occs(t,u)) | |
| 258 | | eliminable (u, t as Var _) = t aconv u orelse not (Logic.occs(t,u)) | |
| 259 | | eliminable _ = false; | |
| 260 | ||
| 18389 | 261 | fun refl_clause_aux 0 th = th | 
| 262 | | refl_clause_aux n th = | |
| 59582 | 263 | case HOLogic.dest_Trueprop (Thm.concl_of th) of | 
| 74375 | 264 | \<^Const_>\<open>disj for \<^Const_>\<open>disj for _ _\<close> _\<close> => | 
| 18389 | 265 | refl_clause_aux n (th RS disj_assoc) (*isolate an atom as first disjunct*) | 
| 74375 | 266 | | \<^Const_>\<open>disj for \<^Const_>\<open>Not for \<^Const_>\<open>HOL.eq _ for t u\<close>\<close> _\<close> => | 
| 24300 | 267 | if eliminable(t,u) | 
| 268 | then refl_clause_aux (n-1) (th RS not_refl_disj_D) (*Var inequation: delete*) | |
| 269 | else refl_clause_aux (n-1) (th RS disj_comm) (*not between Vars: ignore*) | |
| 74346 | 270 | | \<^Const>\<open>disj for _ _\<close> => refl_clause_aux n (th RS disj_comm) | 
| 24300 | 271 | | _ => (*not a disjunction*) th; | 
| 18389 | 272 | |
| 74346 | 273 | fun notequal_lits_count \<^Const_>\<open>disj for P Q\<close> = notequal_lits_count P + notequal_lits_count Q | 
| 74375 | 274 | | notequal_lits_count \<^Const_>\<open>Not for \<^Const_>\<open>HOL.eq _ for _ _\<close>\<close> = 1 | 
| 18389 | 275 | | notequal_lits_count _ = 0; | 
| 276 | ||
| 277 | (*Simplify a clause by applying reflexivity to its negated equality literals*) | |
| 24300 | 278 | fun refl_clause th = | 
| 59582 | 279 | let val neqs = notequal_lits_count (HOLogic.dest_Trueprop (Thm.concl_of th)) | 
| 19894 | 280 | in zero_var_indexes (refl_clause_aux neqs th) end | 
| 24300 | 281 | handle TERM _ => th; (*probably dest_Trueprop on a weird theorem*) | 
| 18389 | 282 | |
| 283 | ||
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changeset | 284 | (*** Removal of duplicate literals ***) | 
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changeset | 285 | |
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changeset | 286 | (*Forward proof, passing extra assumptions as theorems to the tactic*) | 
| 59165 | 287 | fun forward_res2 ctxt nf hyps st = | 
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changeset | 288 | case Seq.pull | 
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changeset | 289 | (REPEAT | 
| 59165 | 290 | (Misc_Legacy.METAHYPS ctxt | 
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changeset | 291 | (fn major::minors => resolve_tac ctxt [nf (minors @ hyps) major] 1) 1) | 
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changeset | 292 | st) | 
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changeset | 293 | of SOME(th,_) => th | 
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changeset | 294 |    | NONE => raise THM("forward_res2", 0, [st]);
 | 
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changeset | 295 | |
| 74501 | 296 | (*Remove duplicates in P\<or>Q by assuming \<not>P in Q | 
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changeset | 297 | rls (initially []) accumulates assumptions of the form P==>False*) | 
| 32262 | 298 | fun nodups_aux ctxt rls th = nodups_aux ctxt rls (th RS disj_assoc) | 
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changeset | 299 | handle THM _ => tryres(th,rls) | 
| 59165 | 300 | handle THM _ => tryres(forward_res2 ctxt (nodups_aux ctxt) rls (th RS disj_forward2), | 
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changeset | 301 | [disj_FalseD1, disj_FalseD2, asm_rl]) | 
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changeset | 302 | handle THM _ => th; | 
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changeset | 303 | |
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changeset | 304 | (*Remove duplicate literals, if there are any*) | 
| 32262 | 305 | fun nodups ctxt th = | 
| 59582 | 306 | if has_duplicates (op =) (literals (Thm.prop_of th)) | 
| 32262 | 307 | then nodups_aux ctxt [] th | 
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changeset | 308 | else th; | 
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changeset | 309 | |
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changeset | 310 | |
| 18389 | 311 | (*** The basic CNF transformation ***) | 
| 312 | ||
| 39328 | 313 | fun estimated_num_clauses bound t = | 
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changeset | 314 | let | 
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changeset | 315 | fun sum x y = if x < bound andalso y < bound then x+y else bound | 
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changeset | 316 | fun prod x y = if x < bound andalso y < bound then x*y else bound | 
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changeset | 317 | |
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changeset | 318 | (*Estimate the number of clauses in order to detect infeasible theorems*) | 
| 74346 | 319 | fun signed_nclauses b \<^Const_>\<open>Trueprop for t\<close> = signed_nclauses b t | 
| 320 | | signed_nclauses b \<^Const_>\<open>Not for t\<close> = signed_nclauses (not b) t | |
| 321 | | signed_nclauses b \<^Const_>\<open>conj for t u\<close> = | |
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changeset | 322 | if b then sum (signed_nclauses b t) (signed_nclauses b u) | 
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changeset | 323 | else prod (signed_nclauses b t) (signed_nclauses b u) | 
| 74346 | 324 | | signed_nclauses b \<^Const_>\<open>disj for t u\<close> = | 
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changeset | 325 | if b then prod (signed_nclauses b t) (signed_nclauses b u) | 
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changeset | 326 | else sum (signed_nclauses b t) (signed_nclauses b u) | 
| 74346 | 327 | | signed_nclauses b \<^Const_>\<open>implies for t u\<close> = | 
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changeset | 328 | if b then prod (signed_nclauses (not b) t) (signed_nclauses b u) | 
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changeset | 329 | else sum (signed_nclauses (not b) t) (signed_nclauses b u) | 
| 74346 | 330 | | signed_nclauses b \<^Const_>\<open>HOL.eq \<open>T\<close> for t u\<close> = | 
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changeset | 331 | if T = HOLogic.boolT then (*Boolean equality is if-and-only-if*) | 
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changeset | 332 | if b then sum (prod (signed_nclauses (not b) t) (signed_nclauses b u)) | 
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changeset | 333 | (prod (signed_nclauses (not b) u) (signed_nclauses b t)) | 
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changeset | 334 | else sum (prod (signed_nclauses b t) (signed_nclauses b u)) | 
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changeset | 335 | (prod (signed_nclauses (not b) t) (signed_nclauses (not b) u)) | 
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changeset | 336 | else 1 | 
| 74346 | 337 | | signed_nclauses b \<^Const_>\<open>Ex _ for \<open>Abs (_,_,t)\<close>\<close> = signed_nclauses b t | 
| 338 | | signed_nclauses b \<^Const_>\<open>All _ for \<open>Abs (_,_,t)\<close>\<close> = signed_nclauses b t | |
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changeset | 339 | | signed_nclauses _ _ = 1; (* literal *) | 
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changeset | 340 | in signed_nclauses true t end | 
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changeset | 341 | |
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changeset | 342 | fun has_too_many_clauses ctxt t = | 
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changeset | 343 | let val max_cl = Config.get ctxt max_clauses in | 
| 39328 | 344 | estimated_num_clauses (max_cl + 1) t > max_cl | 
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changeset | 345 | end | 
| 19894 | 346 | |
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changeset | 347 | (*Replaces universally quantified variables by FREE variables -- because | 
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changeset | 348 | assumptions may not contain scheme variables. Later, generalize using Variable.export. *) | 
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changeset | 349 | local | 
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changeset | 350 | val spec_var = | 
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changeset | 351 | Thm.dest_arg (Thm.dest_arg (#2 (Thm.dest_implies (Thm.cprop_of spec)))) | 
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changeset | 352 | |> Thm.term_of |> dest_Var; | 
| 74346 | 353 | fun name_of \<^Const_>\<open>All _ for \<open>Abs(x, _, _)\<close>\<close> = x | name_of _ = Name.uu; | 
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changeset | 354 | in | 
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changeset | 355 | fun freeze_spec th ctxt = | 
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changeset | 356 | let | 
| 59582 | 357 | val ([x], ctxt') = | 
| 358 | Variable.variant_fixes [name_of (HOLogic.dest_Trueprop (Thm.concl_of th))] ctxt; | |
| 59617 | 359 | val spec' = spec | 
| 74282 | 360 | |> Thm.instantiate | 
| 77879 | 361 | (TVars.empty, Vars.make1 (spec_var, Thm.cterm_of ctxt' (Free (x, snd spec_var)))); | 
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changeset | 362 | in (th RS spec', ctxt') end | 
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changeset | 363 | end; | 
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changeset | 364 | |
| 60362 | 365 | fun apply_skolem_theorem ctxt (th, rls) = | 
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changeset | 366 | let | 
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changeset | 367 |     fun tryall [] = raise THM ("apply_skolem_theorem", 0, th::rls)
 | 
| 60362 | 368 | | tryall (rl :: rls) = first_order_resolve ctxt th rl handle THM _ => tryall rls | 
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changeset | 369 | in tryall rls end | 
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changeset | 370 | |
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changeset | 371 | (* Conjunctive normal form, adding clauses from th in front of ths (for foldr). | 
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changeset | 372 | Strips universal quantifiers and breaks up conjunctions. | 
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changeset | 373 | Eliminates existential quantifiers using Skolemization theorems. *) | 
| 59165 | 374 | fun cnf old_skolem_ths ctxt (th, ths) = | 
| 375 | let val ctxt_ref = Unsynchronized.ref ctxt (* FIXME ??? *) | |
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changeset | 376 | fun cnf_aux (th,ths) = | 
| 59582 | 377 | if not (can HOLogic.dest_Trueprop (Thm.prop_of th)) then ths (*meta-level: ignore*) | 
| 67149 | 378 | else if not (has_conns [\<^const_name>\<open>All\<close>, \<^const_name>\<open>Ex\<close>, \<^const_name>\<open>HOL.conj\<close>] (Thm.prop_of th)) | 
| 59165 | 379 | then nodups ctxt th :: ths (*no work to do, terminate*) | 
| 59582 | 380 | else case head_of (HOLogic.dest_Trueprop (Thm.concl_of th)) of | 
| 74346 | 381 | \<^Const_>\<open>conj\<close> => (*conjunction*) | 
| 24300 | 382 | cnf_aux (th RS conjunct1, cnf_aux (th RS conjunct2, ths)) | 
| 74346 | 383 | | \<^Const_>\<open>All _\<close> => (*universal quantifier*) | 
| 59165 | 384 | let val (th', ctxt') = freeze_spec th (! ctxt_ref) | 
| 385 | in ctxt_ref := ctxt'; cnf_aux (th', ths) end | |
| 74346 | 386 | | \<^Const_>\<open>Ex _\<close> => | 
| 24300 | 387 | (*existential quantifier: Insert Skolem functions*) | 
| 60362 | 388 | cnf_aux (apply_skolem_theorem (! ctxt_ref) (th, old_skolem_ths), ths) | 
| 74346 | 389 | | \<^Const_>\<open>disj\<close> => | 
| 24300 | 390 | (*Disjunction of P, Q: Create new goal of proving ?P | ?Q and solve it using | 
| 391 | all combinations of converting P, Q to CNF.*) | |
| 59171 | 392 | (*There is one assumption, which gets bound to prem and then normalized via | 
| 393 | cnf_nil. The normal form is given to resolve_tac, instantiate a Boolean | |
| 394 | variable created by resolution with disj_forward. Since (cnf_nil prem) | |
| 395 | returns a LIST of theorems, we can backtrack to get all combinations.*) | |
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changeset | 396 | let val tac = Misc_Legacy.METAHYPS ctxt (fn [prem] => resolve_tac ctxt (cnf_nil prem) 1) 1 | 
| 59171 | 397 | in Seq.list_of ((tac THEN tac) (th RS disj_forward)) @ ths end | 
| 59165 | 398 | | _ => nodups ctxt th :: ths (*no work to do*) | 
| 399 | and cnf_nil th = cnf_aux (th, []) | |
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changeset | 400 | val cls = | 
| 59582 | 401 | if has_too_many_clauses ctxt (Thm.concl_of th) then | 
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changeset | 402 | (trace_msg ctxt (fn () => | 
| 61268 | 403 | "cnf is ignoring: " ^ Thm.string_of_thm ctxt th); ths) | 
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changeset | 404 | else | 
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changeset | 405 | cnf_aux (th, ths) | 
| 59165 | 406 | in (cls, !ctxt_ref) end | 
| 407 | ||
| 408 | fun make_cnf old_skolem_ths th ctxt = | |
| 409 | cnf old_skolem_ths ctxt (th, []) | |
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changeset | 410 | |
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changeset | 411 | (*Generalization, removal of redundant equalities, removal of tautologies.*) | 
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changeset | 412 | fun finish_cnf ths = filter (not o is_taut) (map refl_clause ths); | 
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changeset | 413 | |
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changeset | 414 | |
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changeset | 415 | (**** Generation of contrapositives ****) | 
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changeset | 416 | |
| 74375 | 417 | fun is_left \<^Const_>\<open>Trueprop for \<^Const_>\<open>disj for \<^Const_>\<open>disj for _ _\<close> _\<close>\<close> = true | 
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changeset | 418 | | is_left _ = false; | 
| 24300 | 419 | |
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changeset | 420 | (*Associate disjuctions to right -- make leftmost disjunct a LITERAL*) | 
| 24300 | 421 | fun assoc_right th = | 
| 59582 | 422 | if is_left (Thm.prop_of th) then assoc_right (th RS disj_assoc) | 
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changeset | 423 | else th; | 
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changeset | 424 | |
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changeset | 425 | (*Must check for negative literal first!*) | 
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changeset | 426 | val clause_rules = [disj_assoc, make_neg_rule, make_pos_rule]; | 
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changeset | 427 | |
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changeset | 428 | (*For ordinary resolution. *) | 
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changeset | 429 | val resolution_clause_rules = [disj_assoc, make_neg_rule', make_pos_rule']; | 
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changeset | 430 | |
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changeset | 431 | (*Create a goal or support clause, conclusing False*) | 
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changeset | 432 | fun make_goal th = (*Must check for negative literal first!*) | 
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changeset | 433 | make_goal (tryres(th, clause_rules)) | 
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changeset | 434 | handle THM _ => tryres(th, [make_neg_goal, make_pos_goal]); | 
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changeset | 435 | |
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changeset | 436 | fun rigid t = not (is_Var (head_of t)); | 
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changeset | 437 | |
| 74375 | 438 | fun ok4horn \<^Const_>\<open>Trueprop for \<^Const_>\<open>disj for t _\<close>\<close> = rigid t | 
| 74346 | 439 | | ok4horn \<^Const_>\<open>Trueprop for t\<close> = rigid t | 
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changeset | 440 | | ok4horn _ = false; | 
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changeset | 441 | |
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changeset | 442 | (*Create a meta-level Horn clause*) | 
| 24300 | 443 | fun make_horn crules th = | 
| 59582 | 444 | if ok4horn (Thm.concl_of th) | 
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changeset | 445 | then make_horn crules (tryres(th,crules)) handle THM _ => th | 
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changeset | 446 | else th; | 
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changeset | 447 | |
| 16563 | 448 | (*Generate Horn clauses for all contrapositives of a clause. The input, th, | 
| 449 | is a HOL disjunction.*) | |
| 33339 | 450 | fun add_contras crules th hcs = | 
| 39328 | 451 | let fun rots (0,_) = hcs | 
| 24300 | 452 | | rots (k,th) = zero_var_indexes (make_horn crules th) :: | 
| 453 | rots(k-1, assoc_right (th RS disj_comm)) | |
| 59582 | 454 | in case nliterals(Thm.prop_of th) of | 
| 24300 | 455 | 1 => th::hcs | 
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changeset | 456 | | n => rots(n, assoc_right th) | 
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changeset | 457 | end; | 
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changeset | 458 | |
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changeset | 459 | (*Use "theorem naming" to label the clauses*) | 
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changeset | 460 | fun name_thms label = | 
| 33339 | 461 | let fun name1 th (k, ths) = | 
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changeset | 462 | (k-1, Thm.put_name_hint (label ^ string_of_int k) th :: ths) | 
| 33339 | 463 | in fn ths => #2 (fold_rev name1 ths (length ths, [])) end; | 
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changeset | 464 | |
| 16563 | 465 | (*Is the given disjunction an all-negative support clause?*) | 
| 59582 | 466 | fun is_negative th = forall (not o #1) (literals (Thm.prop_of th)); | 
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changeset | 467 | |
| 33317 | 468 | val neg_clauses = filter is_negative; | 
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changeset | 469 | |
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changeset | 470 | |
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changeset | 471 | (***** MESON PROOF PROCEDURE *****) | 
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changeset | 472 | |
| 74375 | 473 | fun rhyps (\<^Const_>\<open>Pure.imp for \<^Const_>\<open>Trueprop for A\<close> phi\<close>, As) = rhyps(phi, A::As) | 
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changeset | 474 | | rhyps (_, As) = As; | 
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changeset | 475 | |
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changeset | 476 | (** Detecting repeated assumptions in a subgoal **) | 
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changeset | 477 | |
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changeset | 478 | (*The stringtree detects repeated assumptions.*) | 
| 33245 | 479 | fun ins_term t net = Net.insert_term (op aconv) (t, t) net; | 
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changeset | 480 | |
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changeset | 481 | (*detects repetitions in a list of terms*) | 
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changeset | 482 | fun has_reps [] = false | 
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changeset | 483 | | has_reps [_] = false | 
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changeset | 484 | | has_reps [t,u] = (t aconv u) | 
| 33245 | 485 | | has_reps ts = (fold ins_term ts Net.empty; false) handle Net.INSERT => true; | 
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changeset | 486 | |
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changeset | 487 | (*Like TRYALL eq_assume_tac, but avoids expensive THEN calls*) | 
| 18508 | 488 | fun TRYING_eq_assume_tac 0 st = Seq.single st | 
| 489 | | TRYING_eq_assume_tac i st = | |
| 31945 | 490 | TRYING_eq_assume_tac (i-1) (Thm.eq_assumption i st) | 
| 18508 | 491 | handle THM _ => TRYING_eq_assume_tac (i-1) st; | 
| 492 | ||
| 59582 | 493 | fun TRYALL_eq_assume_tac st = TRYING_eq_assume_tac (Thm.nprems_of st) st; | 
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changeset | 494 | |
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changeset | 495 | (*Loop checking: FAIL if trying to prove the same thing twice | 
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changeset | 496 | -- if *ANY* subgoal has repeated literals*) | 
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changeset | 497 | fun check_tac st = | 
| 59582 | 498 | if exists (fn prem => has_reps (rhyps(prem,[]))) (Thm.prems_of st) | 
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changeset | 499 | then Seq.empty else Seq.single st; | 
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changeset | 500 | |
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changeset | 501 | |
| 59164 | 502 | (* resolve_from_net_tac actually made it slower... *) | 
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changeset | 503 | fun prolog_step_tac ctxt horns i = | 
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changeset | 504 | (assume_tac ctxt i APPEND resolve_tac ctxt horns i) THEN check_tac THEN | 
| 18508 | 505 | TRYALL_eq_assume_tac; | 
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changeset | 506 | |
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changeset | 507 | (*Sums the sizes of the subgoals, ignoring hypotheses (ancestors)*) | 
| 33339 | 508 | fun addconcl prem sz = size_of_term (Logic.strip_assums_concl prem) + sz; | 
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changeset | 509 | |
| 59582 | 510 | fun size_of_subgoals st = fold_rev addconcl (Thm.prems_of st) 0; | 
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changeset | 511 | |
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changeset | 512 | |
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changeset | 513 | (*Negation Normal Form*) | 
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changeset | 514 | val nnf_rls = [imp_to_disjD, iff_to_disjD, not_conjD, not_disjD, | 
| 9869 | 515 | not_impD, not_iffD, not_allD, not_exD, not_notD]; | 
| 15581 | 516 | |
| 74375 | 517 | fun ok4nnf \<^Const_>\<open>Trueprop for \<^Const_>\<open>Not for t\<close>\<close> = rigid t | 
| 74346 | 518 | | ok4nnf \<^Const_>\<open>Trueprop for t\<close> = rigid t | 
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changeset | 519 | | ok4nnf _ = false; | 
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changeset | 520 | |
| 32262 | 521 | fun make_nnf1 ctxt th = | 
| 59582 | 522 | if ok4nnf (Thm.concl_of th) | 
| 32262 | 523 | then make_nnf1 ctxt (tryres(th, nnf_rls)) | 
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changeset | 524 |     handle THM ("tryres", _, _) =>
 | 
| 32262 | 525 | forward_res ctxt (make_nnf1 ctxt) | 
| 9869 | 526 | (tryres(th, [conj_forward,disj_forward,all_forward,ex_forward])) | 
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changeset | 527 |     handle THM ("tryres", _, _) => th
 | 
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changeset | 528 | else th | 
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changeset | 529 | |
| 24300 | 530 | (*The simplification removes defined quantifiers and occurrences of True and False. | 
| 20018 | 531 | nnf_ss also includes the one-point simprocs, | 
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changeset | 532 | which are needed to avoid the various one-point theorems from generating junk clauses.*) | 
| 19894 | 533 | val nnf_simps = | 
| 37539 | 534 |   @{thms simp_implies_def Ex1_def Ball_def Bex_def if_True if_False if_cancel
 | 
| 535 | if_eq_cancel cases_simp} | |
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changeset | 536 | fun nnf_extra_simps ({if_simps, ...} : simp_options) =
 | 
| 74051 | 537 |   (if if_simps then @{thms split_ifs} else []) @ @{thms ex_simps all_simps simp_thms}
 | 
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changeset | 538 | |
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changeset | 539 | (* FIXME: "let_simp" is probably redundant now that we also rewrite with | 
| 46904 | 540 | "Let_def [abs_def]". *) | 
| 74051 | 541 | fun nnf_ss simp_options = | 
| 69593 | 542 | simpset_of (put_simpset HOL_basic_ss \<^context> | 
| 74051 | 543 | addsimps (nnf_extra_simps simp_options) | 
| 67149 | 544 | addsimprocs [\<^simproc>\<open>defined_All\<close>, \<^simproc>\<open>defined_Ex\<close>, \<^simproc>\<open>neq\<close>, \<^simproc>\<open>let_simp\<close>]) | 
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changeset | 545 | |
| 46093 | 546 | val presimplified_consts = | 
| 67149 | 547 | [\<^const_name>\<open>simp_implies\<close>, \<^const_name>\<open>False\<close>, \<^const_name>\<open>True\<close>, | 
| 548 | \<^const_name>\<open>Ex1\<close>, \<^const_name>\<open>Ball\<close>, \<^const_name>\<open>Bex\<close>, \<^const_name>\<open>If\<close>, | |
| 549 | \<^const_name>\<open>Let\<close>] | |
| 15872 | 550 | |
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changeset | 551 | fun presimplify (simp_options as {let_simps, ...} : simp_options) ctxt =
 | 
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changeset | 552 | rewrite_rule ctxt (map safe_mk_meta_eq nnf_simps) | 
| 74051 | 553 | #> simplify (put_simpset (nnf_ss simp_options) ctxt) | 
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changeset | 554 |   #> let_simps ? rewrite_rule ctxt @{thms Let_def [abs_def]}
 | 
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changeset | 555 | |
| 74051 | 556 | fun make_nnf simp_options ctxt th = | 
| 59582 | 557 | (case Thm.prems_of th of | 
| 74051 | 558 | [] => th |> presimplify simp_options ctxt |> make_nnf1 ctxt | 
| 59582 | 559 |   | _ => raise THM ("make_nnf: premises in argument", 0, [th]));
 | 
| 15581 | 560 | |
| 39950 | 561 | fun choice_theorems thy = | 
| 562 | try (Global_Theory.get_thm thy) "Hilbert_Choice.choice" |> the_list | |
| 563 | ||
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changeset | 564 | (* Pull existential quantifiers to front. This accomplishes Skolemization for | 
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changeset | 565 | clauses that arise from a subgoal. *) | 
| 74051 | 566 | fun skolemize_with_choice_theorems simp_options ctxt choice_ths = | 
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changeset | 567 | let | 
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changeset | 568 | fun aux th = | 
| 67149 | 569 | if not (has_conns [\<^const_name>\<open>Ex\<close>] (Thm.prop_of th)) then | 
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changeset | 570 | th | 
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changeset | 571 | else | 
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changeset | 572 | tryres (th, choice_ths @ | 
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changeset | 573 | [conj_exD1, conj_exD2, disj_exD, disj_exD1, disj_exD2]) | 
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changeset | 574 | |> aux | 
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changeset | 575 |         handle THM ("tryres", _, _) =>
 | 
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changeset | 576 | tryres (th, [conj_forward, disj_forward, all_forward]) | 
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changeset | 577 | |> forward_res ctxt aux | 
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changeset | 578 | |> aux | 
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changeset | 579 |                handle THM ("tryres", _, _) =>
 | 
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changeset | 580 | rename_bound_vars_RS th ex_forward | 
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changeset | 581 | |> forward_res ctxt aux | 
| 74051 | 582 | in aux o make_nnf simp_options ctxt end | 
| 29684 | 583 | |
| 74051 | 584 | fun skolemize simp_options ctxt = | 
| 42361 | 585 | let val thy = Proof_Context.theory_of ctxt in | 
| 74051 | 586 | skolemize_with_choice_theorems simp_options ctxt (choice_theorems thy) | 
| 39950 | 587 | end | 
| 39904 | 588 | |
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changeset | 589 | exception NO_F_PATTERN of unit | 
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changeset | 590 | |
| 47956 | 591 | fun get_F_pattern T t u = | 
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changeset | 592 | let | 
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changeset | 593 | fun pat t u = | 
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changeset | 594 | let | 
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changeset | 595 | val ((head1, args1), (head2, args2)) = (t, u) |> apply2 strip_comb | 
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changeset | 596 | in | 
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changeset | 597 | if head1 = head2 then | 
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changeset | 598 | let val pats = map2 pat args1 args2 in | 
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changeset | 599 | case filter (is_some o fst) pats of | 
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changeset | 600 | [(SOME T, _)] => (SOME T, list_comb (head1, map snd pats)) | 
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changeset | 601 | | [] => (NONE, t) | 
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changeset | 602 | | _ => raise NO_F_PATTERN () | 
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changeset | 603 | end | 
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changeset | 604 | else | 
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changeset | 605 | let val T = fastype_of t in | 
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changeset | 606 | if can dest_funT T then (SOME T, Bound 0) else raise NO_F_PATTERN () | 
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changeset | 607 | end | 
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changeset | 608 | end | 
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changeset | 609 | in | 
| 74346 | 610 | if T = \<^Type>\<open>bool\<close> then | 
| 47956 | 611 | NONE | 
| 612 | else case pat t u of | |
| 613 | (SOME T, p as _ $ _) => SOME (Abs (Name.uu, T, p)) | |
| 614 | | _ => NONE | |
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changeset | 615 | end | 
| 47956 | 616 | handle NO_F_PATTERN () => NONE | 
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changeset | 617 | |
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changeset | 618 | val ext_cong_neq = @{thm ext_cong_neq}
 | 
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changeset | 619 | |
| 74501 | 620 | (* Strengthens "f g \<noteq> f h" to "f g \<noteq> f h \<and> (\<exists>x. g x \<noteq> h x)". *) | 
| 59632 | 621 | fun cong_extensionalize_thm ctxt th = | 
| 59582 | 622 | (case Thm.concl_of th of | 
| 74375 | 623 | \<^Const_>\<open>Trueprop for \<^Const_>\<open>Not for \<^Const_>\<open>HOL.eq T for \<open>t as _ $ _\<close> \<open>u as _ $ _\<close>\<close>\<close>\<close> => | 
| 74346 | 624 | (case get_F_pattern T t u of | 
| 625 |         SOME p => th RS infer_instantiate ctxt [(("F", 0), Thm.cterm_of ctxt p)] ext_cong_neq
 | |
| 626 | | NONE => th) | |
| 59582 | 627 | | _ => th) | 
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changeset | 628 | |
| 42760 | 629 | (* Removes the lambdas from an equation of the form "t = (%x1 ... xn. u)". It | 
| 630 | would be desirable to do this symmetrically but there's at least one existing | |
| 631 | proof in "Tarski" that relies on the current behavior. *) | |
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changeset | 632 | fun abs_extensionalize_conv ctxt ct = | 
| 59582 | 633 | (case Thm.term_of ct of | 
| 74346 | 634 | \<^Const_>\<open>HOL.eq _ for _ \<open>Abs _\<close>\<close> => | 
| 635 |       ct |> (Conv.rewr_conv @{thm fun_eq_iff [THEN eq_reflection]}
 | |
| 636 | then_conv abs_extensionalize_conv ctxt) | |
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changeset | 637 | | _ $ _ => Conv.comb_conv (abs_extensionalize_conv ctxt) ct | 
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changeset | 638 | | Abs _ => Conv.abs_conv (abs_extensionalize_conv o snd) ctxt ct | 
| 59582 | 639 | | _ => Conv.all_conv ct) | 
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changeset | 640 | |
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changeset | 641 | val abs_extensionalize_thm = Conv.fconv_rule o abs_extensionalize_conv | 
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changeset | 642 | |
| 74051 | 643 | fun try_skolemize_etc simp_options ctxt th = | 
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changeset | 644 | let | 
| 59632 | 645 | val th = th |> cong_extensionalize_thm ctxt | 
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changeset | 646 | in | 
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changeset | 647 | [th] | 
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changeset | 648 | (* Extensionalize lambdas in "th", because that makes sense and that's what | 
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changeset | 649 | Sledgehammer does, but also keep an unextensionalized version of "th" for | 
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changeset | 650 | backward compatibility. *) | 
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changeset | 651 | |> insert Thm.eq_thm_prop (abs_extensionalize_thm ctxt th) | 
| 74051 | 652 | |> map_filter (fn th => th |> try (skolemize simp_options ctxt) | 
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changeset | 653 | |> tap (fn NONE => | 
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changeset | 654 | trace_msg ctxt (fn () => | 
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changeset | 655 | "Failed to skolemize " ^ | 
| 61268 | 656 | Thm.string_of_thm ctxt th) | 
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changeset | 657 | | _ => ())) | 
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changeset | 658 | end | 
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changeset | 659 | |
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changeset | 660 | fun add_clauses ctxt th cls = | 
| 59165 | 661 | let | 
| 662 | val (cnfs, ctxt') = ctxt | |
| 663 | |> Variable.declare_thm th | |
| 664 | |> make_cnf [] th; | |
| 665 | in Variable.export ctxt' ctxt cnfs @ cls end; | |
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changeset | 666 | |
| 47035 | 667 | (*Sort clauses by number of literals*) | 
| 59582 | 668 | fun fewerlits (th1, th2) = nliterals (Thm.prop_of th1) < nliterals (Thm.prop_of th2) | 
| 47035 | 669 | |
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changeset | 670 | (*Make clauses from a list of theorems, previously Skolemized and put into nnf. | 
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changeset | 671 | The resulting clauses are HOL disjunctions.*) | 
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changeset | 672 | fun make_clauses_unsorted ctxt ths = fold_rev (add_clauses ctxt) ths []; | 
| 47035 | 673 | val make_clauses = sort (make_ord fewerlits) oo make_clauses_unsorted; | 
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changeset | 674 | |
| 16563 | 675 | (*Convert a list of clauses (disjunctions) to Horn clauses (contrapositives)*) | 
| 9869 | 676 | fun make_horns ths = | 
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changeset | 677 | name_thms "Horn#" | 
| 33339 | 678 | (distinct Thm.eq_thm_prop (fold_rev (add_contras clause_rules) ths [])); | 
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changeset | 679 | |
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changeset | 680 | (*Could simply use nprems_of, which would count remaining subgoals -- no | 
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changeset | 681 | discrimination as to their size! With BEST_FIRST, fails for problem 41.*) | 
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changeset | 682 | |
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changeset | 683 | fun best_prolog_tac ctxt sizef horns = | 
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changeset | 684 | BEST_FIRST (has_fewer_prems 1, sizef) (prolog_step_tac ctxt horns 1); | 
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changeset | 685 | |
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changeset | 686 | fun depth_prolog_tac ctxt horns = | 
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changeset | 687 | DEPTH_FIRST (has_fewer_prems 1) (prolog_step_tac ctxt horns 1); | 
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changeset | 688 | |
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changeset | 689 | (*Return all negative clauses, as possible goal clauses*) | 
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changeset | 690 | fun gocls cls = name_thms "Goal#" (map make_goal (neg_clauses cls)); | 
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changeset | 691 | |
| 74051 | 692 | fun skolemize_prems_tac simp_options ctxt prems = | 
| 693 | cut_facts_tac (maps (try_skolemize_etc simp_options ctxt) prems) THEN' | |
| 694 | REPEAT o eresolve_tac ctxt [exE] | |
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changeset | 695 | |
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changeset | 696 | (*Basis of all meson-tactics. Supplies cltac with clauses: HOL disjunctions. | 
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changeset | 697 | Function mkcl converts theorems to clauses.*) | 
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changeset | 698 | fun MESON preskolem_tac mkcl cltac ctxt i st = | 
| 16588 | 699 | SELECT_GOAL | 
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changeset | 700 | (EVERY [Object_Logic.atomize_prems_tac ctxt 1, | 
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changeset | 701 |             resolve_tac ctxt @{thms ccontr} 1,
 | 
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changeset | 702 | preskolem_tac, | 
| 32283 | 703 |             Subgoal.FOCUS (fn {context = ctxt', prems = negs, ...} =>
 | 
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changeset | 704 | EVERY1 [skolemize_prems_tac simp_options_all_true ctxt' negs, | 
| 32283 | 705 | Subgoal.FOCUS (cltac o mkcl o #prems) ctxt']) ctxt 1]) i st | 
| 24300 | 706 | handle THM _ => no_tac st; (*probably from make_meta_clause, not first-order*) | 
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changeset | 707 | |
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changeset | 708 | |
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changeset | 709 | (** Best-first search versions **) | 
| 
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changeset | 710 | |
| 16563 | 711 | (*ths is a list of additional clauses (HOL disjunctions) to use.*) | 
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changeset | 712 | fun best_meson_tac sizef ctxt = | 
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changeset | 713 | MESON all_tac (make_clauses ctxt) | 
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changeset | 714 | (fn cls => | 
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changeset | 715 | THEN_BEST_FIRST (resolve_tac ctxt (gocls cls) 1) | 
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changeset | 716 | (has_fewer_prems 1, sizef) | 
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changeset | 717 | (prolog_step_tac ctxt (make_horns cls) 1)) | 
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changeset | 718 | ctxt | 
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changeset | 719 | |
| 
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changeset | 720 | (*First, breaks the goal into independent units*) | 
| 32262 | 721 | fun safe_best_meson_tac ctxt = | 
| 42793 | 722 | SELECT_GOAL (TRY (safe_tac ctxt) THEN TRYALL (best_meson_tac size_of_subgoals ctxt)); | 
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changeset | 723 | |
| 
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changeset | 724 | (** Depth-first search version **) | 
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changeset | 725 | |
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changeset | 726 | fun depth_meson_tac ctxt = | 
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changeset | 727 | MESON all_tac (make_clauses ctxt) | 
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changeset | 728 | (fn cls => EVERY [resolve_tac ctxt (gocls cls) 1, depth_prolog_tac ctxt (make_horns cls)]) | 
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changeset | 729 | ctxt | 
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changeset | 730 | |
| 
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changeset | 731 | (** Iterative deepening version **) | 
| 
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changeset | 732 | |
| 
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changeset | 733 | (*This version does only one inference per call; | 
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changeset | 734 | having only one eq_assume_tac speeds it up!*) | 
| 58957 | 735 | fun prolog_step_tac' ctxt horns = | 
| 67522 | 736 | let val horn0s = (*0 subgoals vs 1 or more*) | 
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changeset | 737 | take_prefix Thm.no_prems horns | 
| 59164 | 738 | val nrtac = resolve_from_net_tac ctxt (Tactic.build_net horns) | 
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changeset | 739 | in fn i => eq_assume_tac i ORELSE | 
| 58957 | 740 | match_tac ctxt horn0s i ORELSE (*no backtracking if unit MATCHES*) | 
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changeset | 741 | ((assume_tac ctxt i APPEND nrtac i) THEN check_tac) | 
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changeset | 742 | end; | 
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changeset | 743 | |
| 58957 | 744 | fun iter_deepen_prolog_tac ctxt horns = | 
| 745 | ITER_DEEPEN iter_deepen_limit (has_fewer_prems 1) (prolog_step_tac' ctxt horns); | |
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changeset | 746 | |
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changeset | 747 | fun iter_deepen_meson_tac ctxt ths = ctxt |> MESON all_tac (make_clauses ctxt) | 
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changeset | 748 | (fn cls => | 
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changeset | 749 | (case (gocls (cls @ ths)) of | 
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changeset | 750 | [] => no_tac (*no goal clauses*) | 
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changeset | 751 | | goes => | 
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changeset | 752 | let | 
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changeset | 753 | val horns = make_horns (cls @ ths) | 
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changeset | 754 | val _ = trace_msg ctxt (fn () => | 
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changeset | 755 |             cat_lines ("meson method called:" ::
 | 
| 61268 | 756 | map (Thm.string_of_thm ctxt) (cls @ ths) @ | 
| 757 | ["clauses:"] @ map (Thm.string_of_thm ctxt) horns)) | |
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changeset | 758 | in | 
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changeset | 759 | THEN_ITER_DEEPEN iter_deepen_limit | 
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changeset | 760 | (resolve_tac ctxt goes 1) (has_fewer_prems 1) (prolog_step_tac' ctxt horns) | 
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changeset | 761 | end)); | 
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changeset | 762 | |
| 32262 | 763 | fun meson_tac ctxt ths = | 
| 42793 | 764 | SELECT_GOAL (TRY (safe_tac ctxt) THEN TRYALL (iter_deepen_meson_tac ctxt ths)); | 
| 9869 | 765 | |
| 766 | ||
| 14813 | 767 | (**** Code to support ordinary resolution, rather than Model Elimination ****) | 
| 14744 | 768 | |
| 24300 | 769 | (*Convert a list of clauses (disjunctions) to meta-level clauses (==>), | 
| 15008 | 770 | with no contrapositives, for ordinary resolution.*) | 
| 14744 | 771 | |
| 772 | (*Rules to convert the head literal into a negated assumption. If the head | |
| 773 | literal is already negated, then using notEfalse instead of notEfalse' | |
| 774 | prevents a double negation.*) | |
| 67091 | 775 | val notEfalse = @{lemma "\<not> P \<Longrightarrow> P \<Longrightarrow> False" by (rule notE)};
 | 
| 776 | val notEfalse' = @{lemma "P \<Longrightarrow> \<not> P \<Longrightarrow> False" by (rule notE)};
 | |
| 14744 | 777 | |
| 24300 | 778 | fun negated_asm_of_head th = | 
| 14744 | 779 | th RS notEfalse handle THM _ => th RS notEfalse'; | 
| 780 | ||
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changeset | 781 | (*Converting one theorem from a disjunction to a meta-level clause*) | 
| 60358 | 782 | fun make_meta_clause ctxt th = | 
| 783 | let val (fth, thaw) = Misc_Legacy.freeze_thaw_robust ctxt th | |
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changeset | 784 | in | 
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changeset | 785 | (zero_var_indexes o Thm.varifyT_global o thaw 0 o | 
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changeset | 786 | negated_asm_of_head o make_horn resolution_clause_rules) fth | 
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changeset | 787 | end; | 
| 24300 | 788 | |
| 60358 | 789 | fun make_meta_clauses ctxt ths = | 
| 14744 | 790 | name_thms "MClause#" | 
| 60358 | 791 | (distinct Thm.eq_thm_prop (map (make_meta_clause ctxt) ths)); | 
| 14744 | 792 | |
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changeset | 793 | end; |