src/HOL/Tools/Sledgehammer/sledgehammer_filter.ML
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(*  Title:      HOL/Tools/Sledgehammer/sledgehammer_filter.ML
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    Author:     Jia Meng, Cambridge University Computer Laboratory and NICTA
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    Author:     Jasmin Blanchette, TU Muenchen
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Sledgehammer's relevance filter.
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*)
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signature SLEDGEHAMMER_FILTER =
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sig
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  datatype locality = General | Intro | Elim | Simp | Local | Assum | Chained
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  type relevance_fudge =
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    {worse_irrel_freq : real,
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     higher_order_irrel_weight : real,
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     abs_rel_weight : real,
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     abs_irrel_weight : real,
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     skolem_irrel_weight : real,
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     theory_const_rel_weight : real,
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     theory_const_irrel_weight : real,
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     intro_bonus : real,
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     elim_bonus : real,
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     simp_bonus : real,
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     local_bonus : real,
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     assum_bonus : real,
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     chained_bonus : real,
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     max_imperfect : real,
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     max_imperfect_exp : real,
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     threshold_divisor : real,
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     ridiculous_threshold : real}
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  type relevance_override =
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    {add : (Facts.ref * Attrib.src list) list,
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     del : (Facts.ref * Attrib.src list) list,
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     only : bool}
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  val trace : bool Unsynchronized.ref
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  val fact_from_ref :
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    Proof.context -> unit Symtab.table -> thm list
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    -> Facts.ref * Attrib.src list -> ((string * locality) * thm) list
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  val relevant_facts :
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    Proof.context -> bool -> real * real -> int -> string list
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    -> relevance_fudge -> relevance_override -> thm list -> term list -> term
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    -> ((string * locality) * thm) list
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end;
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structure Sledgehammer_Filter : SLEDGEHAMMER_FILTER =
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struct
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open Sledgehammer_Util
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val trace = Unsynchronized.ref false
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fun trace_msg msg = if !trace then tracing (msg ()) else ()
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(* experimental features *)
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val term_patterns = false
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val respect_no_atp = true
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datatype locality = General | Intro | Elim | Simp | Local | Assum | Chained
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type relevance_fudge =
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  {worse_irrel_freq : real,
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   higher_order_irrel_weight : real,
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   abs_rel_weight : real,
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   abs_irrel_weight : real,
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   skolem_irrel_weight : real,
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   theory_const_rel_weight : real,
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   theory_const_irrel_weight : real,
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   intro_bonus : real,
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   elim_bonus : real,
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   simp_bonus : real,
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   local_bonus : real,
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   assum_bonus : real,
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   chained_bonus : real,
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   max_imperfect : real,
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   max_imperfect_exp : real,
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   threshold_divisor : real,
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   ridiculous_threshold : real}
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type relevance_override =
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  {add : (Facts.ref * Attrib.src list) list,
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   del : (Facts.ref * Attrib.src list) list,
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   only : bool}
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val sledgehammer_prefix = "Sledgehammer" ^ Long_Name.separator
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val abs_name = sledgehammer_prefix ^ "abs"
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val skolem_prefix = sledgehammer_prefix ^ "sko"
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val theory_const_suffix = Long_Name.separator ^ " 1"
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fun repair_name reserved multi j name =
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  (name |> Symtab.defined reserved name ? quote) ^
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  (if multi then "(" ^ Int.toString j ^ ")" else "")
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fun fact_from_ref ctxt reserved chained_ths (xthm as (xref, args)) =
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  let
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    val ths = Attrib.eval_thms ctxt [xthm]
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    val bracket =
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      implode (map (fn arg => "[" ^ Pretty.str_of (Args.pretty_src ctxt arg)
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                               ^ "]") args)
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    val name =
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      case xref of
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        Facts.Fact s => "`" ^ s ^ "`" ^ bracket
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      | Facts.Named (("", _), _) => "[" ^ bracket ^ "]"
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      | _ => Facts.string_of_ref xref ^ bracket
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    val multi = length ths > 1
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  in
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    (ths, (1, []))
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    |-> fold (fn th => fn (j, rest) =>
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                 (j + 1, ((repair_name reserved multi j name,
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                          if member Thm.eq_thm chained_ths th then Chained
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                          else General), th) :: rest))
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    |> snd
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  end
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(***************************************************************)
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(* Relevance Filtering                                         *)
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(***************************************************************)
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(*** constants with types ***)
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fun order_of_type (Type (@{type_name fun}, [T1, @{typ bool}])) =
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    order_of_type T1 (* cheat: pretend sets are first-order *)
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  | order_of_type (Type (@{type_name fun}, [T1, T2])) =
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    Int.max (order_of_type T1 + 1, order_of_type T2)
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  | order_of_type (Type (_, Ts)) = fold (Integer.max o order_of_type) Ts 0
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  | order_of_type _ = 0
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(* An abstraction of Isabelle types and first-order terms *)
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datatype pattern = PVar | PApp of string * pattern list
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datatype ptype = PType of int * pattern list
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fun string_for_pattern PVar = "_"
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  | string_for_pattern (PApp (s, ps)) =
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    if null ps then s else s ^ string_for_patterns ps
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and string_for_patterns ps = "(" ^ commas (map string_for_pattern ps) ^ ")"
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fun string_for_ptype (PType (_, ps)) = string_for_patterns ps
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(*Is the second type an instance of the first one?*)
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fun match_pattern (PVar, _) = true
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  | match_pattern (PApp _, PVar) = false
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  | match_pattern (PApp (s, ps), PApp (t, qs)) =
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    s = t andalso match_patterns (ps, qs)
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and match_patterns (_, []) = true
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  | match_patterns ([], _) = false
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  | match_patterns (p :: ps, q :: qs) =
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    match_pattern (p, q) andalso match_patterns (ps, qs)
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fun match_ptype (PType (_, ps), PType (_, qs)) = match_patterns (ps, qs)
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(* Is there a unifiable constant? *)
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fun pconst_mem f consts (s, ps) =
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  exists (curry (match_ptype o f) ps)
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         (map snd (filter (curry (op =) s o fst) consts))
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fun pconst_hyper_mem f const_tab (s, ps) =
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  exists (curry (match_ptype o f) ps) (these (Symtab.lookup const_tab s))
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fun pattern_for_type (Type (s, Ts)) = PApp (s, map pattern_for_type Ts)
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  | pattern_for_type (TFree (s, _)) = PApp (s, [])
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  | pattern_for_type (TVar _) = PVar
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fun pterm thy t =
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  case strip_comb t of
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    (Const x, ts) => PApp (pconst thy true x ts)
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  | (Free x, ts) => PApp (pconst thy false x ts)
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  | (Var _, []) => PVar
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  | _ => PApp ("?", [])  (* equivalence class of higher-order constructs *)
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(* Pairs a constant with the list of its type instantiations. *)
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and ptype thy const x ts =
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  (if const then map pattern_for_type (these (try (Sign.const_typargs thy) x))
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   else []) @
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  (if term_patterns then map (pterm thy) ts else [])
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and pconst thy const (s, T) ts = (s, ptype thy const (s, T) ts)
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and rich_ptype thy const (s, T) ts =
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  PType (order_of_type T, ptype thy const (s, T) ts)
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and rich_pconst thy const (s, T) ts = (s, rich_ptype thy const (s, T) ts)
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fun string_for_hyper_pconst (s, ps) =
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  s ^ "{" ^ commas (map string_for_ptype ps) ^ "}"
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(* Add a pconstant to the table, but a [] entry means a standard
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   connective, which we ignore.*)
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fun add_pconst_to_table irrelevant_consts also_skolem (c, p) =
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  if member (op =) irrelevant_consts c orelse
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     (not also_skolem andalso String.isPrefix skolem_prefix c) then
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    I
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  else
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    Symtab.map_default (c, [p]) (insert (op =) p)
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fun is_formula_type T = (T = HOLogic.boolT orelse T = propT)
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fun pconsts_in_terms thy irrelevant_consts also_skolems pos ts =
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  let
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    val flip = Option.map not
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    (* We include free variables, as well as constants, to handle locales. For
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       each quantifiers that must necessarily be skolemized by the ATP, we
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       introduce a fresh constant to simulate the effect of Skolemization. *)
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    fun do_const const (s, T) ts =
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      add_pconst_to_table irrelevant_consts also_skolems
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                          (rich_pconst thy const (s, T) ts)
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      #> fold do_term ts
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    and do_term t =
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      case strip_comb t of
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        (Const x, ts) => do_const true x ts
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      | (Free x, ts) => do_const false x ts
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      | (Abs (_, T, t'), ts) =>
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        (null ts
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         ? add_pconst_to_table irrelevant_consts true
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                               (abs_name, PType (order_of_type T + 1, [])))
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        #> fold do_term (t' :: ts)
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      | (_, ts) => fold do_term ts
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    fun do_quantifier will_surely_be_skolemized abs_T body_t =
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      do_formula pos body_t
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      #> (if also_skolems andalso will_surely_be_skolemized then
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            add_pconst_to_table irrelevant_consts true
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                         (gensym skolem_prefix, PType (order_of_type abs_T, []))
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          else
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            I)
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    and do_term_or_formula T =
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      if is_formula_type T then do_formula NONE else do_term
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    and do_formula pos t =
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      case t of
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        Const (@{const_name all}, _) $ Abs (_, T, t') =>
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        do_quantifier (pos = SOME false) T t'
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      | @{const "==>"} $ t1 $ t2 =>
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        do_formula (flip pos) t1 #> do_formula pos t2
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      | Const (@{const_name "=="}, Type (_, [T, _])) $ t1 $ t2 =>
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        fold (do_term_or_formula T) [t1, t2]
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      | @{const Trueprop} $ t1 => do_formula pos t1
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      | @{const Not} $ t1 => do_formula (flip pos) t1
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      | Const (@{const_name All}, _) $ Abs (_, T, t') =>
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        do_quantifier (pos = SOME false) T t'
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      | Const (@{const_name Ex}, _) $ Abs (_, T, t') =>
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        do_quantifier (pos = SOME true) T t'
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      | @{const HOL.conj} $ t1 $ t2 => fold (do_formula pos) [t1, t2]
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      | @{const HOL.disj} $ t1 $ t2 => fold (do_formula pos) [t1, t2]
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      | @{const HOL.implies} $ t1 $ t2 =>
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        do_formula (flip pos) t1 #> do_formula pos t2
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      | Const (@{const_name HOL.eq}, Type (_, [T, _])) $ t1 $ t2 =>
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        fold (do_term_or_formula T) [t1, t2]
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      | Const (@{const_name If}, Type (_, [_, Type (_, [T, _])]))
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        $ t1 $ t2 $ t3 =>
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        do_formula NONE t1 #> fold (do_term_or_formula T) [t2, t3]
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      | Const (@{const_name Ex1}, _) $ Abs (_, T, t') =>
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        do_quantifier (is_some pos) T t'
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      | Const (@{const_name Ball}, _) $ t1 $ Abs (_, T, t') =>
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        do_quantifier (pos = SOME false) T
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                      (HOLogic.mk_imp (incr_boundvars 1 t1 $ Bound 0, t'))
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      | Const (@{const_name Bex}, _) $ t1 $ Abs (_, T, t') =>
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        do_quantifier (pos = SOME true) T
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                      (HOLogic.mk_conj (incr_boundvars 1 t1 $ Bound 0, t'))
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      | (t0 as Const (_, @{typ bool})) $ t1 =>
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        do_term t0 #> do_formula pos t1  (* theory constant *)
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      | _ => do_term t
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  in Symtab.empty |> fold (do_formula pos) ts end
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(*Inserts a dummy "constant" referring to the theory name, so that relevance
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  takes the given theory into account.*)
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fun theory_const_prop_of ({theory_const_rel_weight,
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                           theory_const_irrel_weight, ...} : relevance_fudge)
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                         th =
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  if exists (curry (op <) 0.0) [theory_const_rel_weight,
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                                theory_const_irrel_weight] then
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    let
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      val name = Context.theory_name (theory_of_thm th)
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      val t = Const (name ^ theory_const_suffix, @{typ bool})
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    in t $ prop_of th end
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  else
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    prop_of th
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(**** Constant / Type Frequencies ****)
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(* A two-dimensional symbol table counts frequencies of constants. It's keyed
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   first by constant name and second by its list of type instantiations. For the
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   latter, we need a linear ordering on "pattern list". *)
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fun pattern_ord p =
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  case p of
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    (PVar, PVar) => EQUAL
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  | (PVar, PApp _) => LESS
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  | (PApp _, PVar) => GREATER
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  | (PApp q1, PApp q2) =>
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    prod_ord fast_string_ord (dict_ord pattern_ord) (q1, q2)
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fun ptype_ord (PType p, PType q) =
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  prod_ord (dict_ord pattern_ord) int_ord (swap p, swap q)
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structure PType_Tab = Table(type key = ptype val ord = ptype_ord)
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fun count_fact_consts thy fudge =
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  let
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    fun do_const const (s, T) ts =
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      (* Two-dimensional table update. Constant maps to types maps to count. *)
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      PType_Tab.map_default (rich_ptype thy const (s, T) ts, 0) (Integer.add 1)
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      |> Symtab.map_default (s, PType_Tab.empty)
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      #> fold do_term ts
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    and do_term t =
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      case strip_comb t of
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        (Const x, ts) => do_const true x ts
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      | (Free x, ts) => do_const false x ts
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      | (Abs (_, _, t'), ts) => fold do_term (t' :: ts)
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      | (_, ts) => fold do_term ts
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  in do_term o theory_const_prop_of fudge o snd end
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(**** Actual Filtering Code ****)
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fun pow_int _ 0 = 1.0
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  | pow_int x 1 = x
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  | pow_int x n = if n > 0 then x * pow_int x (n - 1) else pow_int x (n + 1) / x
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(*The frequency of a constant is the sum of those of all instances of its type.*)
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fun pconst_freq match const_tab (c, ps) =
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  PType_Tab.fold (fn (qs, m) => match (ps, qs) ? Integer.add m)
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                 (the (Symtab.lookup const_tab c)) 0
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(* A surprising number of theorems contain only a few significant constants.
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   These include all induction rules, and other general theorems. *)
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(* "log" seems best in practice. A constant function of one ignores the constant
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   frequencies. Rare constants give more points if they are relevant than less
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   rare ones. *)
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fun rel_weight_for _ freq = 1.0 + 2.0 / Math.ln (Real.fromInt freq + 1.0)
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(* Irrelevant constants are treated differently. We associate lower penalties to
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   very rare constants and very common ones -- the former because they can't
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   lead to the inclusion of too many new facts, and the latter because they are
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   so common as to be of little interest. *)
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fun irrel_weight_for ({worse_irrel_freq, higher_order_irrel_weight, ...}
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                      : relevance_fudge) order freq =
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  let val (k, x) = worse_irrel_freq |> `Real.ceil in
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    (if freq < k then Math.ln (Real.fromInt (freq + 1)) / Math.ln x
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     else rel_weight_for order freq / rel_weight_for order k)
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    * pow_int higher_order_irrel_weight (order - 1)
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  end
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(* Computes a constant's weight, as determined by its frequency. *)
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fun generic_pconst_weight abs_weight skolem_weight theory_const_weight
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                          weight_for f const_tab (c as (s, PType (m, _))) =
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  if s = abs_name then abs_weight
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  else if String.isPrefix skolem_prefix s then skolem_weight
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  else if String.isSuffix theory_const_suffix s then theory_const_weight
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  else weight_for m (pconst_freq (match_ptype o f) const_tab c)
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fun rel_pconst_weight ({abs_rel_weight, theory_const_rel_weight, ...}
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                       : relevance_fudge) const_tab =
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  generic_pconst_weight abs_rel_weight 0.0 theory_const_rel_weight
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                        rel_weight_for I const_tab
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fun irrel_pconst_weight (fudge as {abs_irrel_weight, skolem_irrel_weight,
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                                   theory_const_irrel_weight, ...}) const_tab =
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  generic_pconst_weight abs_irrel_weight skolem_irrel_weight
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                        theory_const_irrel_weight (irrel_weight_for fudge) swap
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                        const_tab
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fun locality_bonus (_ : relevance_fudge) General = 0.0
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  | locality_bonus {intro_bonus, ...} Intro = intro_bonus
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  | locality_bonus {elim_bonus, ...} Elim = elim_bonus
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  | locality_bonus {simp_bonus, ...} Simp = simp_bonus
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  | locality_bonus {local_bonus, ...} Local = local_bonus
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  | locality_bonus {assum_bonus, ...} Assum = assum_bonus
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  | locality_bonus {chained_bonus, ...} Chained = chained_bonus
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fun fact_weight fudge loc const_tab relevant_consts fact_consts =
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  case fact_consts |> List.partition (pconst_hyper_mem I relevant_consts)
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                   ||> filter_out (pconst_hyper_mem swap relevant_consts) of
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    ([], _) => 0.0
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  | (rel, irrel) =>
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    let
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      val irrel = irrel |> filter_out (pconst_mem swap rel)
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      val rel_weight =
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        0.0 |> fold (curry (op +) o rel_pconst_weight fudge const_tab) rel
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      val irrel_weight =
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        ~ (locality_bonus fudge loc)
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        |> fold (curry (op +) o irrel_pconst_weight fudge const_tab) irrel
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      val res = rel_weight / (rel_weight + irrel_weight)
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    in if Real.isFinite res then res else 0.0 end
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fun pconsts_in_fact thy irrelevant_consts t =
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  Symtab.fold (fn (s, pss) => fold (cons o pair s) pss)
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              (pconsts_in_terms thy irrelevant_consts true (SOME true) [t]) []
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fun pair_consts_fact thy irrelevant_consts fudge fact =
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  case fact |> snd |> theory_const_prop_of fudge
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            |> pconsts_in_fact thy irrelevant_consts of
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    [] => NONE
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  | consts => SOME ((fact, consts), NONE)
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type annotated_thm =
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  (((unit -> string) * locality) * thm) * (string * ptype) list
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fun take_most_relevant max_relevant remaining_max
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        ({max_imperfect, max_imperfect_exp, ...} : relevance_fudge) 
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        (candidates : (annotated_thm * real) list) =
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  let
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    val max_imperfect =
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      Real.ceil (Math.pow (max_imperfect,
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                    Math.pow (Real.fromInt remaining_max
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                              / Real.fromInt max_relevant, max_imperfect_exp)))
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    val (perfect, imperfect) =
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      candidates |> sort (Real.compare o swap o pairself snd)
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                 |> take_prefix (fn (_, w) => w > 0.99999)
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    val ((accepts, more_rejects), rejects) =
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      chop max_imperfect imperfect |>> append perfect |>> chop remaining_max
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  in
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    trace_msg (fn () =>
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        "Actually passed (" ^ Int.toString (length accepts) ^ " of " ^
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        Int.toString (length candidates) ^ "): " ^
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        (accepts |> map (fn ((((name, _), _), _), weight) =>
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                            name () ^ " [" ^ Real.toString weight ^ "]")
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                 |> commas));
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    (accepts, more_rejects @ rejects)
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  end
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fun if_empty_replace_with_locality thy irrelevant_consts facts loc tab =
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  if Symtab.is_empty tab then
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    pconsts_in_terms thy irrelevant_consts false (SOME false)
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        (map_filter (fn ((_, loc'), th) =>
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                        if loc' = loc then SOME (prop_of th) else NONE) facts)
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  else
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    tab
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fun relevance_filter ctxt threshold0 decay max_relevant irrelevant_consts
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        (fudge as {threshold_divisor, ridiculous_threshold, ...})
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        ({add, del, ...} : relevance_override) facts goal_ts =
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blanchet
parents: 38738
diff changeset
   421
  let
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   422
    val thy = ProofContext.theory_of ctxt
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   423
    val const_tab = fold (count_fact_consts thy fudge) facts Symtab.empty
38819
71c9f61516cd if the goal contains no constants or frees, fall back on chained facts, then on local facts, etc., instead of generating a trivial ATP problem
blanchet
parents: 38818
diff changeset
   424
    val goal_const_tab =
40071
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   425
      pconsts_in_terms thy irrelevant_consts false (SOME false) goal_ts
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   426
      |> fold (if_empty_replace_with_locality thy irrelevant_consts facts)
38993
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   427
              [Chained, Assum, Local]
39012
96d97d1c676f cosmetics
blanchet
parents: 38997
diff changeset
   428
    val add_ths = Attrib.eval_thms ctxt add
96d97d1c676f cosmetics
blanchet
parents: 38997
diff changeset
   429
    val del_ths = Attrib.eval_thms ctxt del
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   430
    val facts = facts |> filter_out (member Thm.eq_thm del_ths o snd)
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   431
    fun iter j remaining_max threshold rel_const_tab hopeless hopeful =
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   432
      let
40191
257d2e06bfb8 put theorems added using "add:" at the beginning of the list returned by the relevance filter, so that they don't get truncated away
blanchet
parents: 40071
diff changeset
   433
        fun relevant [] _ [] =
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   434
            (* Nothing has been added this iteration. *)
40070
bdb890782d4a replaced references with proper record that's threaded through
blanchet
parents: 39958
diff changeset
   435
            if j = 0 andalso threshold >= ridiculous_threshold then
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   436
              (* First iteration? Try again. *)
40070
bdb890782d4a replaced references with proper record that's threaded through
blanchet
parents: 39958
diff changeset
   437
              iter 0 max_relevant (threshold / threshold_divisor) rel_const_tab
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   438
                   hopeless hopeful
38744
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   439
            else
40191
257d2e06bfb8 put theorems added using "add:" at the beginning of the list returned by the relevance filter, so that they don't get truncated away
blanchet
parents: 40071
diff changeset
   440
              []
38889
d0e3f68dde63 fiddle with the relevance filter
blanchet
parents: 38829
diff changeset
   441
          | relevant candidates rejects [] =
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   442
            let
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   443
              val (accepts, more_rejects) =
40070
bdb890782d4a replaced references with proper record that's threaded through
blanchet
parents: 39958
diff changeset
   444
                take_most_relevant max_relevant remaining_max fudge candidates
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   445
              val rel_const_tab' =
38745
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   446
                rel_const_tab
40071
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   447
                |> fold (add_pconst_to_table irrelevant_consts false)
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   448
                        (maps (snd o fst) accepts)
38744
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   449
              fun is_dirty (c, _) =
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   450
                Symtab.lookup rel_const_tab' c <> Symtab.lookup rel_const_tab c
38745
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   451
              val (hopeful_rejects, hopeless_rejects) =
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   452
                 (rejects @ hopeless, ([], []))
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   453
                 |-> fold (fn (ax as (_, consts), old_weight) =>
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   454
                              if exists is_dirty consts then
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   455
                                apfst (cons (ax, NONE))
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   456
                              else
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   457
                                apsnd (cons (ax, old_weight)))
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   458
                 |>> append (more_rejects
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   459
                             |> map (fn (ax as (_, consts), old_weight) =>
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   460
                                        (ax, if exists is_dirty consts then NONE
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   461
                                             else SOME old_weight)))
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   462
              val threshold =
38822
aa0101e618e2 fix threshold computation + remove "op =" from relevant constants
blanchet
parents: 38821
diff changeset
   463
                1.0 - (1.0 - threshold)
aa0101e618e2 fix threshold computation + remove "op =" from relevant constants
blanchet
parents: 38821
diff changeset
   464
                      * Math.pow (decay, Real.fromInt (length accepts))
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   465
              val remaining_max = remaining_max - length accepts
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   466
            in
38744
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   467
              trace_msg (fn () => "New or updated constants: " ^
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   468
                  commas (rel_const_tab' |> Symtab.dest
38822
aa0101e618e2 fix threshold computation + remove "op =" from relevant constants
blanchet
parents: 38821
diff changeset
   469
                          |> subtract (op =) (rel_const_tab |> Symtab.dest)
38827
cf01645cbbce extended relevance filter with first-order term matching
blanchet
parents: 38825
diff changeset
   470
                          |> map string_for_hyper_pconst));
38745
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   471
              map (fst o fst) accepts @
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   472
              (if remaining_max = 0 then
40191
257d2e06bfb8 put theorems added using "add:" at the beginning of the list returned by the relevance filter, so that they don't get truncated away
blanchet
parents: 40071
diff changeset
   473
                 []
38745
ad577fd62ee4 reorganize options regarding to the relevance threshold and decay
blanchet
parents: 38744
diff changeset
   474
               else
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   475
                 iter (j + 1) remaining_max threshold rel_const_tab'
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   476
                      hopeless_rejects hopeful_rejects)
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   477
            end
38889
d0e3f68dde63 fiddle with the relevance filter
blanchet
parents: 38829
diff changeset
   478
          | relevant candidates rejects
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   479
                     (((ax as (((_, loc), _), fact_consts)), cached_weight)
38747
b264ae66cede fiddle with relevance filter
blanchet
parents: 38745
diff changeset
   480
                      :: hopeful) =
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   481
            let
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   482
              val weight =
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   483
                case cached_weight of
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   484
                  SOME w => w
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   485
                | NONE => fact_weight fudge loc const_tab rel_const_tab
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   486
                                      fact_consts
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   487
            in
38741
7635bf8918a1 get rid of "defs_relevant" feature;
blanchet
parents: 38739
diff changeset
   488
              if weight >= threshold then
38889
d0e3f68dde63 fiddle with the relevance filter
blanchet
parents: 38829
diff changeset
   489
                relevant ((ax, weight) :: candidates) rejects hopeful
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   490
              else
38889
d0e3f68dde63 fiddle with the relevance filter
blanchet
parents: 38829
diff changeset
   491
                relevant candidates ((ax, weight) :: rejects) hopeful
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   492
            end
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   493
        in
38744
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   494
          trace_msg (fn () =>
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   495
              "ITERATION " ^ string_of_int j ^ ": current threshold: " ^
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   496
              Real.toString threshold ^ ", constants: " ^
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   497
              commas (rel_const_tab |> Symtab.dest
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   498
                      |> filter (curry (op <>) [] o snd)
38827
cf01645cbbce extended relevance filter with first-order term matching
blanchet
parents: 38825
diff changeset
   499
                      |> map string_for_hyper_pconst));
38889
d0e3f68dde63 fiddle with the relevance filter
blanchet
parents: 38829
diff changeset
   500
          relevant [] [] hopeful
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   501
        end
40191
257d2e06bfb8 put theorems added using "add:" at the beginning of the list returned by the relevance filter, so that they don't get truncated away
blanchet
parents: 40071
diff changeset
   502
    fun add_add_ths accepts =
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   503
      (facts |> filter ((member Thm.eq_thm add_ths
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   504
                         andf (not o member (Thm.eq_thm o apsnd snd) accepts))
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   505
                        o snd))
40191
257d2e06bfb8 put theorems added using "add:" at the beginning of the list returned by the relevance filter, so that they don't get truncated away
blanchet
parents: 40071
diff changeset
   506
      @ accepts
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   507
  in
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   508
    facts |> map_filter (pair_consts_fact thy irrelevant_consts fudge)
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   509
          |> iter 0 max_relevant threshold0 goal_const_tab []
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   510
          |> not (null add_ths) ? add_add_ths
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   511
          |> tap (fn res => trace_msg (fn () =>
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   512
                               "Total relevant: " ^ Int.toString (length res)))
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   513
  end
24287
c857dac06da6 combining the relevance filter with res_atp
paulson
parents: 24286
diff changeset
   514
38744
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   515
24287
c857dac06da6 combining the relevance filter with res_atp
paulson
parents: 24286
diff changeset
   516
(***************************************************************)
19768
9afd9b9c47d0 ATP/res_clasimpset.ML has been merged into res_atp.ML.
mengj
parents: 19746
diff changeset
   517
(* Retrieving and filtering lemmas                             *)
9afd9b9c47d0 ATP/res_clasimpset.ML has been merged into res_atp.ML.
mengj
parents: 19746
diff changeset
   518
(***************************************************************)
9afd9b9c47d0 ATP/res_clasimpset.ML has been merged into res_atp.ML.
mengj
parents: 19746
diff changeset
   519
33022
c95102496490 Removal of the unused atpset concept, the atp attribute and some related code.
paulson
parents: 32994
diff changeset
   520
(*** retrieve lemmas and filter them ***)
19768
9afd9b9c47d0 ATP/res_clasimpset.ML has been merged into res_atp.ML.
mengj
parents: 19746
diff changeset
   521
20757
fe84fe0dfd30 Definitions produced by packages are now blacklisted.
paulson
parents: 20661
diff changeset
   522
(*Reject theorems with names like "List.filter.filter_list_def" or
21690
552d20ff9a95 Removal of theorem tagging, which the ATP linkup no longer requires.
paulson
parents: 21588
diff changeset
   523
  "Accessible_Part.acc.defs", as these are definitions arising from packages.*)
20757
fe84fe0dfd30 Definitions produced by packages are now blacklisted.
paulson
parents: 20661
diff changeset
   524
fun is_package_def a =
40205
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   525
  let val names = Long_Name.explode a in
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   526
    (length names > 2 andalso not (hd names = "local") andalso
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   527
     String.isSuffix "_def" a) orelse String.isSuffix "_defs" a
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   528
  end
20757
fe84fe0dfd30 Definitions produced by packages are now blacklisted.
paulson
parents: 20661
diff changeset
   529
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   530
fun mk_fact_table f xs =
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   531
  fold (Termtab.update o `(prop_of o f)) xs Termtab.empty
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   532
fun uniquify xs = Termtab.fold (cons o snd) (mk_fact_table snd xs) []
19768
9afd9b9c47d0 ATP/res_clasimpset.ML has been merged into res_atp.ML.
mengj
parents: 19746
diff changeset
   533
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   534
(* FIXME: put other record thms here, or declare as "no_atp" *)
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   535
val multi_base_blacklist =
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   536
  ["defs", "select_defs", "update_defs", "induct", "inducts", "split", "splits",
38682
3a203da3f89b weed out junk in relevance filter
blanchet
parents: 38681
diff changeset
   537
   "split_asm", "cases", "ext_cases", "eq.simps", "eq.refl", "nchotomy",
3a203da3f89b weed out junk in relevance filter
blanchet
parents: 38681
diff changeset
   538
   "case_cong", "weak_case_cong"]
3a203da3f89b weed out junk in relevance filter
blanchet
parents: 38681
diff changeset
   539
  |> map (prefix ".")
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   540
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   541
val max_lambda_nesting = 3
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   542
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   543
fun term_has_too_many_lambdas max (t1 $ t2) =
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   544
    exists (term_has_too_many_lambdas max) [t1, t2]
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   545
  | term_has_too_many_lambdas max (Abs (_, _, t)) =
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   546
    max = 0 orelse term_has_too_many_lambdas (max - 1) t
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   547
  | term_has_too_many_lambdas _ _ = false
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   548
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   549
(* Don't count nested lambdas at the level of formulas, since they are
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   550
   quantifiers. *)
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   551
fun formula_has_too_many_lambdas Ts (Abs (_, T, t)) =
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   552
    formula_has_too_many_lambdas (T :: Ts) t
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   553
  | formula_has_too_many_lambdas Ts t =
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   554
    if is_formula_type (fastype_of1 (Ts, t)) then
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   555
      exists (formula_has_too_many_lambdas Ts) (#2 (strip_comb t))
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   556
    else
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   557
      term_has_too_many_lambdas max_lambda_nesting t
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   558
38692
89d3550d8e16 cosmetics
blanchet
parents: 38689
diff changeset
   559
(* The max apply depth of any "metis" call in "Metis_Examples" (on 2007-10-31)
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   560
   was 11. *)
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   561
val max_apply_depth = 15
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   562
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   563
fun apply_depth (f $ t) = Int.max (apply_depth f, apply_depth t + 1)
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   564
  | apply_depth (Abs (_, _, t)) = apply_depth t
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   565
  | apply_depth _ = 0
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   566
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   567
fun is_formula_too_complex t =
38085
cc44e887246c avoid "clause" and "cnf" terminology where it no longer makes sense
blanchet
parents: 38027
diff changeset
   568
  apply_depth t > max_apply_depth orelse formula_has_too_many_lambdas [] t
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   569
39946
78faa9b31202 move Metis into Plain
blanchet
parents: 39896
diff changeset
   570
(* FIXME: Extend to "Meson" and "Metis" *)
37543
2e733b0a963c a76ace919f1c wasn't quite right; second try
blanchet
parents: 37538
diff changeset
   571
val exists_sledgehammer_const =
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   572
  exists_Const (fn (s, _) => String.isPrefix sledgehammer_prefix s)
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   573
38904
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   574
(* FIXME: make more reliable *)
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   575
val exists_low_level_class_const =
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   576
  exists_Const (fn (s, _) =>
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   577
     String.isSubstring (Long_Name.separator ^ "class" ^ Long_Name.separator) s)
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   578
38821
d0275b6c4e9d avoid needless "that" fact
blanchet
parents: 38820
diff changeset
   579
fun is_metastrange_theorem th =
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   580
  case head_of (concl_of th) of
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   581
      Const (a, _) => (a <> @{const_name Trueprop} andalso
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   582
                       a <> @{const_name "=="})
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   583
    | _ => false
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   584
38821
d0275b6c4e9d avoid needless "that" fact
blanchet
parents: 38820
diff changeset
   585
fun is_that_fact th =
d0275b6c4e9d avoid needless "that" fact
blanchet
parents: 38820
diff changeset
   586
  String.isSuffix (Long_Name.separator ^ Obtain.thatN) (Thm.get_name_hint th)
d0275b6c4e9d avoid needless "that" fact
blanchet
parents: 38820
diff changeset
   587
  andalso exists_subterm (fn Free (s, _) => s = Name.skolem Auto_Bind.thesisN
d0275b6c4e9d avoid needless "that" fact
blanchet
parents: 38820
diff changeset
   588
                           | _ => false) (prop_of th)
d0275b6c4e9d avoid needless "that" fact
blanchet
parents: 38820
diff changeset
   589
37626
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   590
val type_has_top_sort =
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   591
  exists_subtype (fn TFree (_, []) => true | TVar (_, []) => true | _ => false)
1146291fe718 move blacklisting completely out of the clausifier;
blanchet
parents: 37616
diff changeset
   592
38085
cc44e887246c avoid "clause" and "cnf" terminology where it no longer makes sense
blanchet
parents: 38027
diff changeset
   593
(**** Predicates to detect unwanted facts (prolific or likely to cause
37347
635425a442e8 show more respect for user-specified facts, even if they could lead to unsound proofs + don't throw away "unsound" theorems in "full_type" mode, since they are then sound
blanchet
parents: 37345
diff changeset
   594
      unsoundness) ****)
21470
7c1b59ddcd56 Consolidation of code to "blacklist" unhelpful theorems, including record
paulson
parents: 21431
diff changeset
   595
38289
74dd8dd33512 adapt "too_general_equality" blacklisting to the new FOF context, where quantifiers are sometimes present
blanchet
parents: 38279
diff changeset
   596
(* Too general means, positive equality literal with a variable X as one
74dd8dd33512 adapt "too_general_equality" blacklisting to the new FOF context, where quantifiers are sometimes present
blanchet
parents: 38279
diff changeset
   597
   operand, when X does not occur properly in the other operand. This rules out
74dd8dd33512 adapt "too_general_equality" blacklisting to the new FOF context, where quantifiers are sometimes present
blanchet
parents: 38279
diff changeset
   598
   clearly inconsistent facts such as X = a | X = b, though it by no means
74dd8dd33512 adapt "too_general_equality" blacklisting to the new FOF context, where quantifiers are sometimes present
blanchet
parents: 38279
diff changeset
   599
   guarantees soundness. *)
21470
7c1b59ddcd56 Consolidation of code to "blacklist" unhelpful theorems, including record
paulson
parents: 21431
diff changeset
   600
38289
74dd8dd33512 adapt "too_general_equality" blacklisting to the new FOF context, where quantifiers are sometimes present
blanchet
parents: 38279
diff changeset
   601
(* Unwanted equalities are those between a (bound or schematic) variable that
74dd8dd33512 adapt "too_general_equality" blacklisting to the new FOF context, where quantifiers are sometimes present
blanchet
parents: 38279
diff changeset
   602
   does not properly occur in the second operand. *)
38607
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   603
val is_exhaustive_finite =
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   604
  let
38629
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   605
    fun is_bad_equal (Var z) t =
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   606
        not (exists_subterm (fn Var z' => z = z' | _ => false) t)
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   607
      | is_bad_equal (Bound j) t = not (loose_bvar1 (t, j))
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   608
      | is_bad_equal _ _ = false
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   609
    fun do_equals t1 t2 = is_bad_equal t1 t2 orelse is_bad_equal t2 t1
38607
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   610
    fun do_formula pos t =
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   611
      case (pos, t) of
38615
4e1d828ee514 improve "x = A | x = B | x = C"-style axiom detection
blanchet
parents: 38611
diff changeset
   612
        (_, @{const Trueprop} $ t1) => do_formula pos t1
38607
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   613
      | (true, Const (@{const_name all}, _) $ Abs (_, _, t')) =>
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   614
        do_formula pos t'
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   615
      | (true, Const (@{const_name All}, _) $ Abs (_, _, t')) =>
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   616
        do_formula pos t'
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   617
      | (false, Const (@{const_name Ex}, _) $ Abs (_, _, t')) =>
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   618
        do_formula pos t'
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   619
      | (_, @{const "==>"} $ t1 $ t2) =>
38629
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   620
        do_formula (not pos) t1 andalso
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   621
        (t2 = @{prop False} orelse do_formula pos t2)
38786
e46e7a9cb622 formerly unnamed infix impliciation now named HOL.implies
haftmann
parents: 38752
diff changeset
   622
      | (_, @{const HOL.implies} $ t1 $ t2) =>
38629
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   623
        do_formula (not pos) t1 andalso
3387432c18af more work on finite axiom detection
blanchet
parents: 38627
diff changeset
   624
        (t2 = @{const False} orelse do_formula pos t2)
38607
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   625
      | (_, @{const Not} $ t1) => do_formula (not pos) t1
38795
848be46708dc formerly unnamed infix conjunction and disjunction now named HOL.conj and HOL.disj
haftmann
parents: 38786
diff changeset
   626
      | (true, @{const HOL.disj} $ t1 $ t2) => forall (do_formula pos) [t1, t2]
848be46708dc formerly unnamed infix conjunction and disjunction now named HOL.conj and HOL.disj
haftmann
parents: 38786
diff changeset
   627
      | (false, @{const HOL.conj} $ t1 $ t2) => forall (do_formula pos) [t1, t2]
38864
4abe644fcea5 formerly unnamed infix equality now named HOL.eq
haftmann
parents: 38829
diff changeset
   628
      | (true, Const (@{const_name HOL.eq}, _) $ t1 $ t2) => do_equals t1 t2
38607
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   629
      | (true, Const (@{const_name "=="}, _) $ t1 $ t2) => do_equals t1 t2
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   630
      | _ => false
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   631
  in do_formula true end
a2abe8c2a1c2 generalize the "too general equality" code to handle facts like "x ~= A ==> x = B"
blanchet
parents: 38606
diff changeset
   632
38592
ae6bb801e583 bound variables can be just as evil as schematic variables and lead to unsound proofs (e.g. "all_bool_eq")
blanchet
parents: 38587
diff changeset
   633
fun has_bound_or_var_of_type tycons =
ae6bb801e583 bound variables can be just as evil as schematic variables and lead to unsound proofs (e.g. "all_bool_eq")
blanchet
parents: 38587
diff changeset
   634
  exists_subterm (fn Var (_, Type (s, _)) => member (op =) tycons s
ae6bb801e583 bound variables can be just as evil as schematic variables and lead to unsound proofs (e.g. "all_bool_eq")
blanchet
parents: 38587
diff changeset
   635
                   | Abs (_, Type (s, _), _) => member (op =) tycons s
ae6bb801e583 bound variables can be just as evil as schematic variables and lead to unsound proofs (e.g. "all_bool_eq")
blanchet
parents: 38587
diff changeset
   636
                   | _ => false)
21431
ef9080e7dbbc Outputs a minimal number of arity clauses. Tidying of blacklist, fixing the blacklisting of thm lists
paulson
parents: 21397
diff changeset
   637
38085
cc44e887246c avoid "clause" and "cnf" terminology where it no longer makes sense
blanchet
parents: 38027
diff changeset
   638
(* Facts are forbidden to contain variables of these types. The typical reason
37347
635425a442e8 show more respect for user-specified facts, even if they could lead to unsound proofs + don't throw away "unsound" theorems in "full_type" mode, since they are then sound
blanchet
parents: 37345
diff changeset
   639
   is that they lead to unsoundness. Note that "unit" satisfies numerous
38085
cc44e887246c avoid "clause" and "cnf" terminology where it no longer makes sense
blanchet
parents: 38027
diff changeset
   640
   equations like "?x = ()". The resulting clauses will have no type constraint,
37347
635425a442e8 show more respect for user-specified facts, even if they could lead to unsound proofs + don't throw away "unsound" theorems in "full_type" mode, since they are then sound
blanchet
parents: 37345
diff changeset
   641
   yielding false proofs. Even "bool" leads to many unsound proofs, though only
635425a442e8 show more respect for user-specified facts, even if they could lead to unsound proofs + don't throw away "unsound" theorems in "full_type" mode, since they are then sound
blanchet
parents: 37345
diff changeset
   642
   for higher-order problems. *)
38592
ae6bb801e583 bound variables can be just as evil as schematic variables and lead to unsound proofs (e.g. "all_bool_eq")
blanchet
parents: 38587
diff changeset
   643
val dangerous_types = [@{type_name unit}, @{type_name bool}, @{type_name prop}];
22217
a5d983f7113f Tidying; more debugging information. New reference unwanted_types.
paulson
parents: 22193
diff changeset
   644
38085
cc44e887246c avoid "clause" and "cnf" terminology where it no longer makes sense
blanchet
parents: 38027
diff changeset
   645
(* Facts containing variables of type "unit" or "bool" or of the form
38290
581a402a80f0 prevent ATP thread for staying around for 1 minute if an exception occurred earlier;
blanchet
parents: 38289
diff changeset
   646
   "ALL x. x = A | x = B | x = C" are likely to lead to unsound proofs if types
581a402a80f0 prevent ATP thread for staying around for 1 minute if an exception occurred earlier;
blanchet
parents: 38289
diff changeset
   647
   are omitted. *)
38593
85aef7587cf1 minor cleanup
blanchet
parents: 38592
diff changeset
   648
fun is_dangerous_term full_types t =
38609
6220e5ab32f7 more fiddling with Sledgehammer's "add:" option
blanchet
parents: 38607
diff changeset
   649
  not full_types andalso
38679
2cfd0777580f destroy elim rules before checking for finite exhaustive facts
blanchet
parents: 38652
diff changeset
   650
  let val t = transform_elim_term t in
2cfd0777580f destroy elim rules before checking for finite exhaustive facts
blanchet
parents: 38652
diff changeset
   651
    has_bound_or_var_of_type dangerous_types t orelse
2cfd0777580f destroy elim rules before checking for finite exhaustive facts
blanchet
parents: 38652
diff changeset
   652
    is_exhaustive_finite t
2cfd0777580f destroy elim rules before checking for finite exhaustive facts
blanchet
parents: 38652
diff changeset
   653
  end
21470
7c1b59ddcd56 Consolidation of code to "blacklist" unhelpful theorems, including record
paulson
parents: 21431
diff changeset
   654
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   655
fun is_theorem_bad_for_atps full_types thm =
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   656
  let val t = prop_of thm in
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   657
    is_formula_too_complex t orelse exists_type type_has_top_sort t orelse
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   658
    is_dangerous_term full_types t orelse exists_sledgehammer_const t orelse
38904
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   659
    exists_low_level_class_const t orelse is_metastrange_theorem thm orelse
5e760c0f81a6 rule out low-level class facts
blanchet
parents: 38901
diff changeset
   660
    is_that_fact thm
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   661
  end
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   662
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   663
fun clasimpset_rules_of ctxt =
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   664
  let
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   665
    val {safeIs, safeEs, hazIs, hazEs, ...} = ctxt |> claset_of |> rep_cs
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   666
    val intros = safeIs @ hazIs
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   667
    val elims = map Classical.classical_rule (safeEs @ hazEs)
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   668
    val simps = ctxt |> simpset_of |> dest_ss |> #simps |> map snd
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   669
  in (mk_fact_table I intros, mk_fact_table I elims, mk_fact_table I simps) end
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   670
39265
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   671
fun all_prefixes_of s =
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   672
  map (fn i => String.extract (s, 0, SOME i)) (1 upto size s - 1)
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   673
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   674
(* This is a terrible hack. Free variables are sometimes code as "M__" when they
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   675
   are displayed as "M" and we want to avoid clashes with these. But sometimes
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   676
   it's even worse: "Ma__" encodes "M". So we simply reserve all prefixes of all
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   677
   free variables. In the worse case scenario, where the fact won't be resolved
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   678
   correctly, the user can fix it manually, e.g., by naming the fact in
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   679
   question. Ideally we would need nothing of it, but backticks just don't work
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   680
   with schematic variables. *)
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   681
fun close_form t =
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   682
  (t, [] |> Term.add_free_names t |> maps all_prefixes_of)
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   683
  |> fold (fn ((s, i), T) => fn (t', taken) =>
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   684
              let val s' = Name.variant taken s in
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   685
                (Term.all T $ Abs (s', T, abstract_over (Var ((s, i), T), t')),
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   686
                 s' :: taken)
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   687
              end)
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   688
          (Term.add_vars t [] |> sort_wrt (fst o fst))
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   689
  |> fst
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   690
40205
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   691
fun all_facts ctxt reserved full_types
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   692
              ({intro_bonus, elim_bonus, simp_bonus, ...} : relevance_fudge)
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   693
              add_ths chained_ths =
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   694
  let
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   695
    val thy = ProofContext.theory_of ctxt
39557
fe5722fce758 renamed structure PureThy to Pure_Thy and moved most content to Global_Theory, to emphasize that this is global-only;
wenzelm
parents: 39367
diff changeset
   696
    val global_facts = Global_Theory.facts_of thy
38644
25bbbaf7ce65 don't penalize abstractions in relevance filter + support nameless `foo`-style facts
blanchet
parents: 38629
diff changeset
   697
    val local_facts = ProofContext.facts_of ctxt
25bbbaf7ce65 don't penalize abstractions in relevance filter + support nameless `foo`-style facts
blanchet
parents: 38629
diff changeset
   698
    val named_locals = local_facts |> Facts.dest_static []
38993
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   699
    val assms = Assumption.all_assms_of ctxt
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   700
    fun is_assum th = exists (fn ct => prop_of th aconv term_of ct) assms
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   701
    val is_chained = member Thm.eq_thm chained_ths
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   702
    val (intros, elims, simps) =
40070
bdb890782d4a replaced references with proper record that's threaded through
blanchet
parents: 39958
diff changeset
   703
      if exists (curry (op <) 0.0) [intro_bonus, elim_bonus, simp_bonus] then
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   704
        clasimpset_rules_of ctxt
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   705
      else
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   706
        (Termtab.empty, Termtab.empty, Termtab.empty)
38738
0ce517c1970f make sure that "undo_ascii_of" is the inverse of "ascii_of", also for non-printable characters -- and avoid those in ``-style facts
blanchet
parents: 38699
diff changeset
   707
    fun is_good_unnamed_local th =
38820
d0f98bd81a85 add nameless chained facts to the pool of things known to Sledgehammer
blanchet
parents: 38819
diff changeset
   708
      not (Thm.has_name_hint th) andalso
38738
0ce517c1970f make sure that "undo_ascii_of" is the inverse of "ascii_of", also for non-printable characters -- and avoid those in ``-style facts
blanchet
parents: 38699
diff changeset
   709
      forall (fn (_, ths) => not (member Thm.eq_thm ths th)) named_locals
38644
25bbbaf7ce65 don't penalize abstractions in relevance filter + support nameless `foo`-style facts
blanchet
parents: 38629
diff changeset
   710
    val unnamed_locals =
38820
d0f98bd81a85 add nameless chained facts to the pool of things known to Sledgehammer
blanchet
parents: 38819
diff changeset
   711
      union Thm.eq_thm (Facts.props local_facts) chained_ths
d0f98bd81a85 add nameless chained facts to the pool of things known to Sledgehammer
blanchet
parents: 38819
diff changeset
   712
      |> filter is_good_unnamed_local |> map (pair "" o single)
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   713
    val full_space =
38738
0ce517c1970f make sure that "undo_ascii_of" is the inverse of "ascii_of", also for non-printable characters -- and avoid those in ``-style facts
blanchet
parents: 38699
diff changeset
   714
      Name_Space.merge (Facts.space_of global_facts, Facts.space_of local_facts)
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   715
    fun add_facts global foldx facts =
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   716
      foldx (fn (name0, ths) =>
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   717
        if name0 <> "" andalso
39012
96d97d1c676f cosmetics
blanchet
parents: 38997
diff changeset
   718
           forall (not o member Thm.eq_thm add_ths) ths andalso
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   719
           (Facts.is_concealed facts name0 orelse
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   720
            (respect_no_atp andalso is_package_def name0) orelse
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   721
            exists (fn s => String.isSuffix s name0) multi_base_blacklist orelse
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   722
            String.isSuffix "_def_raw" (* FIXME: crude hack *) name0) then
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   723
          I
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   724
        else
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   725
          let
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   726
            val multi = length ths > 1
38696
4c6b65d6a135 quote facts whose names collide with a keyword or command name (cf. "subclass" in "Jinja/J/TypeSafe.thy")
blanchet
parents: 38692
diff changeset
   727
            fun backquotify th =
39718
6e8c231876f5 remove needless flag
blanchet
parents: 39557
diff changeset
   728
              "`" ^ Print_Mode.setmp (filter (curry (op =) Symbol.xsymbolsN)
39265
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   729
                                             (print_mode_value ()))
c09c150f6af7 allow Sledgehammer proofs containing nameless local facts with schematic variables in them
blanchet
parents: 39264
diff changeset
   730
                   (Syntax.string_of_term ctxt) (close_form (prop_of th)) ^ "`"
38738
0ce517c1970f make sure that "undo_ascii_of" is the inverse of "ascii_of", also for non-printable characters -- and avoid those in ``-style facts
blanchet
parents: 38699
diff changeset
   731
              |> String.translate (fn c => if Char.isPrint c then str c else "")
0ce517c1970f make sure that "undo_ascii_of" is the inverse of "ascii_of", also for non-printable characters -- and avoid those in ``-style facts
blanchet
parents: 38699
diff changeset
   732
              |> simplify_spaces
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   733
            fun check_thms a =
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   734
              case try (ProofContext.get_thms ctxt) a of
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   735
                NONE => false
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   736
              | SOME ths' => Thm.eq_thms (ths, ths')
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   737
          in
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   738
            pair 1
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   739
            #> fold (fn th => fn (j, rest) =>
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   740
                 (j + 1,
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   741
                  if is_theorem_bad_for_atps full_types th andalso
39012
96d97d1c676f cosmetics
blanchet
parents: 38997
diff changeset
   742
                     not (member Thm.eq_thm add_ths th) then
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   743
                    rest
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   744
                  else
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   745
                    (((fn () =>
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   746
                          if name0 = "" then
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   747
                            th |> backquotify
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   748
                          else
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   749
                            let
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   750
                              val name1 = Facts.extern facts name0
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   751
                              val name2 = Name_Space.extern full_space name0
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   752
                            in
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   753
                              case find_first check_thms [name1, name2, name0] of
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   754
                                SOME name => repair_name reserved multi j name
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   755
                              | NONE => ""
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   756
                            end),
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   757
                      let val t = prop_of th in
40071
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   758
                        if is_chained th then
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   759
                          Chained
38993
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   760
                        else if global then
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   761
                          if Termtab.defined intros t then Intro
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   762
                          else if Termtab.defined elims t then Elim
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   763
                          else if Termtab.defined simps t then Simp
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   764
                          else General
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   765
                        else
504b9e1efd33 give priority to assumptions in structured proofs
blanchet
parents: 38992
diff changeset
   766
                          if is_assum th then Assum else Local
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   767
                      end),
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   768
                      (multi, th)) :: rest)) ths
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   769
            #> snd
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   770
          end)
38644
25bbbaf7ce65 don't penalize abstractions in relevance filter + support nameless `foo`-style facts
blanchet
parents: 38629
diff changeset
   771
  in
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   772
    [] |> add_facts false fold local_facts (unnamed_locals @ named_locals)
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   773
       |> add_facts true Facts.fold_static global_facts global_facts
38644
25bbbaf7ce65 don't penalize abstractions in relevance filter + support nameless `foo`-style facts
blanchet
parents: 38629
diff changeset
   774
  end
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   775
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   776
(* The single-name theorems go after the multiple-name ones, so that single
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   777
   names are preferred when both are available. *)
40205
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   778
fun rearrange_facts ctxt respect_no_atp =
38744
2b6333f78a9e make relevance filter work in term of a "max_relevant" option + use Vampire SOS;
blanchet
parents: 38743
diff changeset
   779
  List.partition (fst o snd) #> op @ #> map (apsnd snd)
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   780
  #> respect_no_atp ? filter_out (No_ATPs.member ctxt o snd)
38627
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   781
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   782
(***************************************************************)
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   783
(* ATP invocation methods setup                                *)
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   784
(***************************************************************)
760a2d5cc671 make sure minimizer facts go through "transform_elim_theorems"
blanchet
parents: 38617
diff changeset
   785
40071
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   786
fun relevant_facts ctxt full_types (threshold0, threshold1) max_relevant
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   787
                   irrelevant_consts fudge (override as {add, only, ...})
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   788
                   chained_ths hyp_ts concl_t =
37538
97ab019d5ac8 make sure that theorems passed using "add:" to Sledgehammer are not eliminated on heuristic grounds
blanchet
parents: 37537
diff changeset
   789
  let
38822
aa0101e618e2 fix threshold computation + remove "op =" from relevant constants
blanchet
parents: 38821
diff changeset
   790
    val decay = Math.pow ((1.0 - threshold1) / (1.0 - threshold0),
aa0101e618e2 fix threshold computation + remove "op =" from relevant constants
blanchet
parents: 38821
diff changeset
   791
                          1.0 / Real.fromInt (max_relevant + 1))
39012
96d97d1c676f cosmetics
blanchet
parents: 38997
diff changeset
   792
    val add_ths = Attrib.eval_thms ctxt add
38696
4c6b65d6a135 quote facts whose names collide with a keyword or command name (cf. "subclass" in "Jinja/J/TypeSafe.thy")
blanchet
parents: 38692
diff changeset
   793
    val reserved = reserved_isar_keyword_table ()
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   794
    val facts =
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   795
      (if only then
38752
6628adcae4a7 consider "locality" when assigning weights to facts
blanchet
parents: 38751
diff changeset
   796
         maps (map (fn ((name, loc), th) => ((K name, loc), (true, th)))
40205
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   797
               o fact_from_ref ctxt reserved chained_ths) add
38699
27378b4a776b compute names lazily;
blanchet
parents: 38698
diff changeset
   798
       else
40205
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   799
         all_facts ctxt reserved full_types fudge add_ths chained_ths)
277508b07418 if "debug" is on, print list of relevant facts (poweruser request);
blanchet
parents: 40204
diff changeset
   800
      |> rearrange_facts ctxt (respect_no_atp andalso not only)
38937
1b1a2f5ccd7d take into consideration whether a fact is an "intro"/"elim"/"simp" rule as an additional factor influencing the relevance filter
blanchet
parents: 38907
diff changeset
   801
      |> uniquify
37538
97ab019d5ac8 make sure that theorems passed using "add:" to Sledgehammer are not eliminated on heuristic grounds
blanchet
parents: 37537
diff changeset
   802
  in
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   803
    trace_msg (fn () => "Considering " ^ Int.toString (length facts) ^
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   804
                        " facts");
39366
f58fbb959826 handle relevance filter corner cases more gracefully;
blanchet
parents: 39265
diff changeset
   805
    (if only orelse threshold1 < 0.0 then
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   806
       facts
39366
f58fbb959826 handle relevance filter corner cases more gracefully;
blanchet
parents: 39265
diff changeset
   807
     else if threshold0 > 1.0 orelse threshold0 > threshold1 orelse
f58fbb959826 handle relevance filter corner cases more gracefully;
blanchet
parents: 39265
diff changeset
   808
             max_relevant = 0 then
38739
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   809
       []
8b8ed80b5699 renamed "relevance_convergence" to "relevance_decay"
blanchet
parents: 38738
diff changeset
   810
     else
40071
658a37c80b53 generalized the relevance filter so that it takes the list of "irrelevant constants" as argument (since the ATP and SMT preprocessing are different)
blanchet
parents: 40070
diff changeset
   811
       relevance_filter ctxt threshold0 decay max_relevant irrelevant_consts
40204
da97d75e20e6 standardize on "fact" terminology (vs. "axiom" or "theorem") in Sledgehammer -- but keep "Axiom" in the lower-level "ATP_Problem" module
blanchet
parents: 40191
diff changeset
   812
                        fudge override facts (concl_t :: hyp_ts))
38822
aa0101e618e2 fix threshold computation + remove "op =" from relevant constants
blanchet
parents: 38821
diff changeset
   813
    |> map (apfst (apfst (fn f => f ())))
37538
97ab019d5ac8 make sure that theorems passed using "add:" to Sledgehammer are not eliminated on heuristic grounds
blanchet
parents: 37537
diff changeset
   814
  end
30536
07b4f050e4df split relevance-filter and writing of problem-files;
immler@in.tum.de
parents: 30364
diff changeset
   815
15347
14585bc8fa09 resolution package tools by Jia Meng
paulson
parents:
diff changeset
   816
end;