src/HOL/Tools/Sledgehammer/sledgehammer_isar.ML
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killed final stops in Sledgehammer and friends
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(*  Title:      HOL/Tools/Sledgehammer/sledgehammer_isar.ML
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    Author:     Jasmin Blanchette, TU Muenchen
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    Author:     Steffen Juilf Smolka, TU Muenchen
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Isar proof reconstruction from ATP proofs.
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*)
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signature SLEDGEHAMMER_ISAR =
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sig
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  type atp_step_name = ATP_Proof.atp_step_name
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  type ('a, 'b) atp_step = ('a, 'b) ATP_Proof.atp_step
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  type 'a atp_proof = 'a ATP_Proof.atp_proof
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  type stature = ATP_Problem_Generate.stature
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  type one_line_params = Sledgehammer_Proof_Methods.one_line_params
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  val trace : bool Config.T
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  type isar_params =
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    bool * (string option * string option) * Time.time * real option * bool * bool
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    * (term, string) atp_step list * thm
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  val proof_text : Proof.context -> bool -> bool option -> bool option -> (unit -> isar_params) ->
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    int -> one_line_params -> string
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end;
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structure Sledgehammer_Isar : SLEDGEHAMMER_ISAR =
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struct
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open ATP_Util
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open ATP_Problem
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open ATP_Proof
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open ATP_Proof_Reconstruct
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open ATP_Waldmeister
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open Sledgehammer_Util
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open Sledgehammer_Proof_Methods
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open Sledgehammer_Isar_Proof
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open Sledgehammer_Isar_Preplay
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open Sledgehammer_Isar_Compress
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open Sledgehammer_Isar_Minimize
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structure String_Redirect = ATP_Proof_Redirect(
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  type key = atp_step_name
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  val ord = fn ((s, _ : string list), (s', _)) => fast_string_ord (s, s')
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  val string_of = fst)
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open String_Redirect
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val trace = Attrib.setup_config_bool @{binding sledgehammer_isar_trace} (K false)
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val e_definition_rule = "definition"
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val e_skolemize_rule = "skolemize"
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val leo2_extcnf_forall_neg_rule = "extcnf_forall_neg"
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val pirate_datatype_rule = "DT"
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val satallax_skolemize_rule = "tab_ex"
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val vampire_skolemisation_rule = "skolemisation"
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val veriT_la_generic_rule = "la_generic"
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val veriT_simp_arith_rule = "simp_arith"
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val veriT_tmp_ite_elim_rule = "tmp_ite_elim"
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val veriT_tmp_skolemize_rule = "tmp_skolemize"
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val z3_skolemize_rule = Z3_Proof.string_of_rule Z3_Proof.Skolemize
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val z3_th_lemma_rule_prefix = Z3_Proof.string_of_rule (Z3_Proof.Th_Lemma "")
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val zipperposition_cnf_rule = "cnf"
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val skolemize_rules =
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  [e_definition_rule, e_skolemize_rule, leo2_extcnf_forall_neg_rule, satallax_skolemize_rule,
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   spass_skolemize_rule, vampire_skolemisation_rule, veriT_tmp_ite_elim_rule,
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   veriT_tmp_skolemize_rule, waldmeister_skolemize_rule, z3_skolemize_rule, zipperposition_cnf_rule]
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fun is_ext_rule rule = (rule = leo2_extcnf_equal_neg_rule)
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val is_maybe_ext_rule = is_ext_rule orf String.isPrefix satallax_tab_rule_prefix
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val is_skolemize_rule = member (op =) skolemize_rules
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fun is_arith_rule rule =
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  String.isPrefix z3_th_lemma_rule_prefix rule orelse rule = veriT_simp_arith_rule orelse
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  rule = veriT_la_generic_rule
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val is_datatype_rule = String.isPrefix pirate_datatype_rule
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fun raw_label_of_num num = (num, 0)
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fun label_of_clause [(num, _)] = raw_label_of_num num
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  | label_of_clause c = (space_implode "___" (map (fst o raw_label_of_num o fst) c), 0)
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fun add_global_fact ss = apsnd (union (op =) ss)
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fun add_fact_of_dependency [(_, ss as _ :: _)] = add_global_fact ss
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  | add_fact_of_dependency names = apfst (insert (op =) (label_of_clause names))
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fun add_line_pass1 (line as (name, role, t, rule, [])) lines =
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    (* No dependencies: lemma (for Z3), fact, conjecture, or (for Vampire) internal facts or
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       definitions. *)
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    if role = Conjecture orelse role = Negated_Conjecture then
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      line :: lines
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    else if t aconv @{prop True} then
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      map (replace_dependencies_in_line (name, [])) lines
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    else if role = Lemma orelse role = Hypothesis orelse is_arith_rule rule then
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      line :: lines
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    else if role = Axiom then
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      lines (* axioms (facts) need no proof lines *)
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    else
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      map (replace_dependencies_in_line (name, [])) lines
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  | add_line_pass1 line lines = line :: lines
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fun add_lines_pass2 res [] = rev res
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  | add_lines_pass2 res ((line as (name, role, t, rule, deps)) :: lines) =
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    let
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      fun normalize role =
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        role = Conjecture ? (HOLogic.dest_Trueprop #> s_not #> HOLogic.mk_Trueprop)
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      val norm_t = normalize role t
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      val is_duplicate =
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        exists (fn (prev_name, prev_role, prev_t, _, _) =>
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            (prev_role = Hypothesis andalso prev_t aconv t) orelse
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            (member (op =) deps prev_name andalso
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             Term.aconv_untyped (normalize prev_role prev_t, norm_t)))
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          res
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      fun looks_boring () = t aconv @{prop False} orelse length deps < 2
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      fun is_skolemizing_line (_, _, _, rule', deps') =
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        is_skolemize_rule rule' andalso member (op =) deps' name
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      fun is_before_skolemize_rule () = exists is_skolemizing_line lines
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    in
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      if is_duplicate orelse
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          (role = Plain andalso not (is_skolemize_rule rule) andalso
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           not (is_ext_rule rule) andalso not (is_arith_rule rule) andalso
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           not (is_datatype_rule rule) andalso not (null lines) andalso looks_boring () andalso
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           not (is_before_skolemize_rule ())) then
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        add_lines_pass2 res (map (replace_dependencies_in_line (name, deps)) lines)
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      else
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        add_lines_pass2 (line :: res) lines
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    end
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type isar_params =
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  bool * (string option * string option) * Time.time * real option * bool * bool
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  * (term, string) atp_step list * thm
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val basic_systematic_methods = [Metis_Method (NONE, NONE), Meson_Method, Blast_Method, SATx_Method]
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val basic_simp_based_methods = [Auto_Method, Simp_Method, Fastforce_Method, Force_Method]
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val basic_arith_methods = [Linarith_Method, Presburger_Method, Algebra_Method]
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val arith_methods = basic_arith_methods @ basic_simp_based_methods @ basic_systematic_methods
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val datatype_methods = [Simp_Method, Simp_Size_Method]
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val systematic_methods =
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  basic_systematic_methods @ basic_arith_methods @ basic_simp_based_methods @
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  [Metis_Method (SOME full_typesN, NONE), Metis_Method (SOME no_typesN, NONE)]
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val rewrite_methods = basic_simp_based_methods @ basic_systematic_methods @ basic_arith_methods
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val skolem_methods = Moura_Method :: systematic_methods
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fun isar_proof_text ctxt debug num_chained isar_proofs smt_proofs isar_params
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    (one_line_params as ((used_facts, (_, one_line_play)), banner, subgoal, subgoal_count)) =
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  let
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    val _ = if debug then writeln "Constructing Isar proof..." else ()
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    fun generate_proof_text () =
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      let
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        val (verbose, alt_metis_args, preplay_timeout, compress, try0, minimize, atp_proof0, goal) =
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          isar_params ()
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      in
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        if null atp_proof0 then
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          one_line_proof_text ctxt 0 one_line_params
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        else
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          let
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            val systematic_methods' = insert (op =) (Metis_Method alt_metis_args) systematic_methods
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            fun massage_methods (meths as meth :: _) =
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              if not try0 then [meth]
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              else if smt_proofs = SOME true then SMT_Method :: meths
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              else meths
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            val (params, _, concl_t) = strip_subgoal goal subgoal ctxt
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            val fixes = map (fn (s, T) => (Binding.name s, SOME T, NoSyn)) params
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            val ctxt = ctxt |> Variable.set_body false |> Proof_Context.add_fixes fixes |> snd
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            val do_preplay = preplay_timeout <> Time.zeroTime
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            val compress =
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              (case compress of
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                NONE => if isar_proofs = NONE andalso do_preplay then 1000.0 else 10.0
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              | SOME n => n)
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            fun is_fixed ctxt = Variable.is_declared ctxt orf Name.is_skolem
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            fun skolems_of ctxt t = Term.add_frees t [] |> filter_out (is_fixed ctxt o fst) |> rev
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            fun get_role keep_role ((num, _), role, t, rule, _) =
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              if keep_role role then SOME ((raw_label_of_num num, t), rule) else NONE
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            val atp_proof =
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              fold_rev add_line_pass1 atp_proof0 []
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              |> add_lines_pass2 []
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            val conjs =
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              map_filter (fn (name, role, _, _, _) =>
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                  if member (op =) [Conjecture, Negated_Conjecture] role then SOME name else NONE)
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                atp_proof
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            val assms = map_filter (Option.map fst o get_role (curry (op =) Hypothesis)) atp_proof
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            fun add_lemma ((l, t), rule) ctxt =
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              let
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                val (skos, meths) =
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                  (if is_skolemize_rule rule then (skolems_of ctxt t, skolem_methods)
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                   else if is_arith_rule rule then ([], arith_methods)
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                   else ([], rewrite_methods))
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                  ||> massage_methods
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              in
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                (Prove ([], skos, l, t, [], ([], []), meths, ""),
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                 ctxt |> not (null skos) ? (Variable.add_fixes (map fst skos) #> snd))
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              end
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            val (lems, _) =
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              fold_map add_lemma (map_filter (get_role (curry (op =) Lemma)) atp_proof) ctxt
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            val bot = #1 (List.last atp_proof)
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            val refute_graph =
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              atp_proof
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              |> map (fn (name, _, _, _, from) => (from, name))
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              |> make_refute_graph bot
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              |> fold (Atom_Graph.default_node o rpair ()) conjs
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            val axioms = axioms_of_refute_graph refute_graph conjs
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            val tainted = tainted_atoms_of_refute_graph refute_graph conjs
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            val is_clause_tainted = exists (member (op =) tainted)
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            val steps =
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              Symtab.empty
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              |> fold (fn (name as (s, _), role, t, rule, _) =>
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                  Symtab.update_new (s, (rule, t
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                    |> (if is_clause_tainted [name] then
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                          HOLogic.dest_Trueprop
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                          #> role <> Conjecture ? s_not
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                          #> fold exists_of (map Var (Term.add_vars t []))
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                          #> HOLogic.mk_Trueprop
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                        else
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                          I))))
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                atp_proof
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            fun is_referenced_in_step _ (Let _) = false
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              | is_referenced_in_step l (Prove (_, _, _, _, subs, (ls, _), _, _)) =
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                member (op =) ls l orelse exists (is_referenced_in_proof l) subs
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            and is_referenced_in_proof l (Proof (_, _, steps)) =
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              exists (is_referenced_in_step l) steps
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            fun insert_lemma_in_step lem
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                (step as Prove (qs, fix, l, t, subs, (ls, gs), meths, comment)) =
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              let val l' = the (label_of_isar_step lem) in
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                if member (op =) ls l' then
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                  [lem, step]
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                else
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                  let val refs = map (is_referenced_in_proof l') subs in
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                    if length (filter I refs) = 1 then
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                      let
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                        val subs' = map2 (fn false => I | true => insert_lemma_in_proof lem) refs
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                          subs
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                      in
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                        [Prove (qs, fix, l, t, subs', (ls, gs), meths, comment)]
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                      end
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                    else
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                      [lem, step]
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                  end
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              end
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            and insert_lemma_in_steps lem [] = [lem]
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              | insert_lemma_in_steps lem (step :: steps) =
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                if is_referenced_in_step (the (label_of_isar_step lem)) step then
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                  insert_lemma_in_step lem step @ steps
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                else
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                  step :: insert_lemma_in_steps lem steps
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            and insert_lemma_in_proof lem (Proof (fix, assms, steps)) =
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              Proof (fix, assms, insert_lemma_in_steps lem steps)
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            val rule_of_clause_id = fst o the o Symtab.lookup steps o fst
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            val finish_off = close_form #> rename_bound_vars
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            fun prop_of_clause [(num, _)] = Symtab.lookup steps num |> the |> snd |> finish_off
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              | prop_of_clause names =
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                let
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                  val lits =
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                    map (HOLogic.dest_Trueprop o snd) (map_filter (Symtab.lookup steps o fst) names)
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                in
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                  (case List.partition (can HOLogic.dest_not) lits of
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                    (negs as _ :: _, pos as _ :: _) =>
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                    s_imp (Library.foldr1 s_conj (map HOLogic.dest_not negs),
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                      Library.foldr1 s_disj pos)
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                  | _ => fold (curry s_disj) lits @{term False})
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                end
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                |> HOLogic.mk_Trueprop |> finish_off
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            fun maybe_show outer c = if outer andalso eq_set (op =) (c, conjs) then [Show] else []
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            fun isar_steps outer predecessor accum [] =
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                accum
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                |> (if tainted = [] then
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                      (* e.g., trivial, empty proof by Z3 *)
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                      cons (Prove (if outer then [Show] else [], [], no_label, concl_t, [],
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                        sort_facts (the_list predecessor, []), massage_methods systematic_methods',
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                        ""))
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                    else
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                      I)
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                |> rev
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              | isar_steps outer _ accum (Have (id, (gamma, c)) :: infs) =
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                let
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                  val l = label_of_clause c
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                  val t = prop_of_clause c
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                  val rule = rule_of_clause_id id
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                  val skolem = is_skolemize_rule rule
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                  val deps = ([], [])
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                    |> fold add_fact_of_dependency gamma
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                    |> is_maybe_ext_rule rule ? add_global_fact [short_thm_name ctxt ext]
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                    |> sort_facts
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                  val meths =
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                    (if skolem then skolem_methods
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                     else if is_arith_rule rule then arith_methods
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                     else if is_datatype_rule rule then datatype_methods
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                     else systematic_methods')
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                    |> massage_methods
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                  fun prove sub facts = Prove (maybe_show outer c, [], l, t, sub, facts, meths, "")
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                  fun steps_of_rest step = isar_steps outer (SOME l) (step :: accum) infs
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                in
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                  if is_clause_tainted c then
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                    (case gamma of
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                      [g] =>
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                      if skolem andalso is_clause_tainted g then
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                        let
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                          val skos = skolems_of ctxt (prop_of_clause g)
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                          val subproof = Proof (skos, [], rev accum)
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                        in
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                          isar_steps outer (SOME l) [prove [subproof] ([], [])] infs
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                        end
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                      else
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                        steps_of_rest (prove [] deps)
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                    | _ => steps_of_rest (prove [] deps))
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                  else
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                    steps_of_rest
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                      (if skolem then
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                         (case skolems_of ctxt t of
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                           [] => prove [] deps
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                         | skos => Prove ([], skos, l, t, [], deps, meths, ""))
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                       else
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                         prove [] deps)
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                end
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              | isar_steps outer predecessor accum (Cases cases :: infs) =
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                let
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                  fun isar_case (c, subinfs) =
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                    isar_proof false [] [(label_of_clause c, prop_of_clause c)] [] subinfs
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                  val c = succedent_of_cases cases
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                  val l = label_of_clause c
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                  val t = prop_of_clause c
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                  val step =
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                    Prove (maybe_show outer c, [], l, t,
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                      map isar_case (filter_out (null o snd) cases),
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                      sort_facts (the_list predecessor, []), massage_methods systematic_methods',
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                      "")
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                in
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                  isar_steps outer (SOME l) (step :: accum) infs
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                end
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            and isar_proof outer fix assms lems infs =
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              Proof (fix, assms,
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                fold_rev insert_lemma_in_steps lems (isar_steps outer NONE [] infs))
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            val trace = Config.get ctxt trace
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            val canonical_isar_proof =
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              refute_graph
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              |> trace ? tap (tracing o prefix "Refute graph:\n" o string_of_refute_graph)
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              |> redirect_graph axioms tainted bot
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              |> trace ? tap (tracing o prefix "Direct proof:\n" o string_of_direct_proof)
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              |> isar_proof true params assms lems
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              |> postprocess_isar_proof_remove_show_stuttering
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              |> postprocess_isar_proof_remove_unreferenced_steps I
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              |> relabel_isar_proof_canonically
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            val ctxt = ctxt |> enrich_context_with_local_facts canonical_isar_proof
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            val preplay_data = Unsynchronized.ref Canonical_Label_Tab.empty
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            val _ = fold_isar_steps (fn meth =>
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                K (set_preplay_outcomes_of_isar_step ctxt preplay_timeout preplay_data meth []))
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              (steps_of_isar_proof canonical_isar_proof) ()
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            fun str_of_preplay_outcome outcome =
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              if Lazy.is_finished outcome then string_of_play_outcome (Lazy.force outcome) else "?"
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            fun str_of_meth l meth =
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              string_of_proof_method ctxt [] meth ^ " " ^
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              str_of_preplay_outcome
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                (preplay_outcome_of_isar_step_for_method (!preplay_data) l meth)
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            fun comment_of l = map (str_of_meth l) #> commas
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   389
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            fun trace_isar_proof label proof =
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              if trace then
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                tracing (timestamp () ^ "\n" ^ label ^ ":\n\n" ^
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                  string_of_isar_proof ctxt subgoal subgoal_count
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                    (comment_isar_proof comment_of proof) ^ "\n")
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              else
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                ()
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   397
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            fun comment_of l (meth :: _) =
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              (case (verbose,
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                  Lazy.force (preplay_outcome_of_isar_step_for_method (!preplay_data) l meth)) of
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                (false, Played _) => ""
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              | (_, outcome) => string_of_play_outcome outcome)
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   403
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            val (play_outcome, isar_proof) =
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              canonical_isar_proof
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              |> tap (trace_isar_proof "Original")
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              |> compress_isar_proof ctxt compress preplay_timeout preplay_data
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              |> tap (trace_isar_proof "Compressed")
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              |> postprocess_isar_proof_remove_unreferenced_steps
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                   (keep_fastest_method_of_isar_step (!preplay_data)
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                    #> minimize ? minimize_isar_step_dependencies ctxt preplay_data)
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              |> tap (trace_isar_proof "Minimized")
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              |> `(preplay_outcome_of_isar_proof (!preplay_data))
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              ||> (comment_isar_proof comment_of
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                   #> chain_isar_proof
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                   #> kill_useless_labels_in_isar_proof
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                   #> relabel_isar_proof_nicely
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                   #> rationalize_obtains_in_isar_proofs ctxt)
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          in
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            (case (num_chained, add_isar_steps (steps_of_isar_proof isar_proof) 0) of
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              (0, 1) =>
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              one_line_proof_text ctxt 0
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                (if play_outcome_ord (play_outcome, one_line_play) = LESS then
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                   (case isar_proof of
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                     Proof (_, _, [Prove (_, _, _, _, _, (_, gfs), meth :: _, _)]) =>
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                     let
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                       val used_facts' = filter (fn (s, (sc, _)) =>
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                         member (op =) gfs s andalso sc <> Chained) used_facts
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   429
                     in
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                       ((used_facts', (meth, play_outcome)), banner, subgoal, subgoal_count)
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   431
                     end)
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   432
                 else
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   433
                   one_line_params) ^
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   434
              (if isar_proofs = SOME true then "\n(No Isar proof available.)" else "")
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   435
            | (_, num_steps) =>
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   436
              let
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   437
                val msg =
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   438
                  (if verbose then [string_of_int num_steps ^ " step" ^ plural_s num_steps]
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   439
                   else []) @
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   440
                  (if do_preplay then [string_of_play_outcome play_outcome] else [])
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   441
              in
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   442
                one_line_proof_text ctxt 0 one_line_params ^
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   443
                "\n\nIsar proof" ^ (commas msg |> not (null msg) ? enclose " (" ")") ^ ":\n" ^
63518
ae8fd6fe63a1 tuned signature;
wenzelm
parents: 62826
diff changeset
   444
                Active.sendback_markup_command
62220
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   445
                  (string_of_isar_proof ctxt subgoal subgoal_count isar_proof)
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   446
              end)
0e17a97234bd avoid error in Isar proof reconstruction if no ATP proof is available
blanchet
parents: 60612
diff changeset
   447
          end
49883
a6ebdaf8e267 added missing file
blanchet
parents:
diff changeset
   448
      end
57056
8b2283566f6e properly reconstruct helpers in Z3 proofs
blanchet
parents: 57054
diff changeset
   449
  in
57287
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   450
    if debug then
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   451
      generate_proof_text ()
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   452
    else
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   453
      (case try generate_proof_text () of
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   454
        SOME s => s
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   455
      | NONE =>
68aa585269ac given two one-liners, only show the best of the two
blanchet
parents: 57286
diff changeset
   456
        one_line_proof_text ctxt 0 one_line_params ^
63692
1bc4bc2c9fd1 killed final stops in Sledgehammer and friends
blanchet
parents: 63518
diff changeset
   457
        (if isar_proofs = SOME true then "\nWarning: Isar proof construction failed" else ""))
57056
8b2283566f6e properly reconstruct helpers in Z3 proofs
blanchet
parents: 57054
diff changeset
   458
  end
49883
a6ebdaf8e267 added missing file
blanchet
parents:
diff changeset
   459
55297
1dfcd49f5dcb renamed 'smt' option 'smt_proofs' to avoid clash with 'smt' prover
blanchet
parents: 55296
diff changeset
   460
fun isar_proof_would_be_a_good_idea smt_proofs (meth, play) =
54824
4e58a38b330b refactored preplaying outcome data structure
blanchet
parents: 54823
diff changeset
   461
  (case play of
58061
3d060f43accb renamed new SMT module from 'SMT2' to 'SMT'
blanchet
parents: 57792
diff changeset
   462
    Played _ => meth = SMT_Method andalso smt_proofs <> SOME true
62826
eb94e570c1a4 prefer infix operations;
wenzelm
parents: 62220
diff changeset
   463
  | Play_Timed_Out time => time > Time.zeroTime
56093
4eeb73a1feec simplified preplaying information
blanchet
parents: 56081
diff changeset
   464
  | Play_Failed => true)
51187
c344cf148e8f avoid using "smt" for minimization -- better use the prover itself, since then Sledgehammer gets to try metis again and gives the opportunity to output an Isar proof -- and show Isar proof as fallback for SMT proofs
blanchet
parents: 51179
diff changeset
   465
55297
1dfcd49f5dcb renamed 'smt' option 'smt_proofs' to avoid clash with 'smt' prover
blanchet
parents: 55296
diff changeset
   466
fun proof_text ctxt debug isar_proofs smt_proofs isar_params num_chained
57739
blanchet
parents: 57735
diff changeset
   467
    (one_line_params as ((_, preplay), _, _, _)) =
51190
2654b3965c8d made "isar_proofs" a 3-way option, to provide a way to totally disable isar_proofs if desired
blanchet
parents: 51187
diff changeset
   468
  (if isar_proofs = SOME true orelse
55297
1dfcd49f5dcb renamed 'smt' option 'smt_proofs' to avoid clash with 'smt' prover
blanchet
parents: 55296
diff changeset
   469
      (isar_proofs = NONE andalso isar_proof_would_be_a_good_idea smt_proofs preplay) then
60612
79d71bfea310 removed chained facts from preplaying -- and careful about extra chained facts when removing 'proof -' and 'qed' from one-line Isar proofs
blanchet
parents: 59577
diff changeset
   470
     isar_proof_text ctxt debug num_chained isar_proofs smt_proofs isar_params
49883
a6ebdaf8e267 added missing file
blanchet
parents:
diff changeset
   471
   else
56985
82c83978fbd9 correctly add extra facts to lemmas (cf. conjecture and hypotheses) in Z3 Isar proofs
blanchet
parents: 56983
diff changeset
   472
     one_line_proof_text ctxt num_chained) one_line_params
49883
a6ebdaf8e267 added missing file
blanchet
parents:
diff changeset
   473
a6ebdaf8e267 added missing file
blanchet
parents:
diff changeset
   474
end;