src/HOL/Tools/Sledgehammer/sledgehammer_proof_methods.ML
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(*  Title:      HOL/Tools/Sledgehammer/sledgehammer_proof_methods.ML
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    Author:     Jasmin Blanchette, TU Muenchen
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    Author:     Steffen Juilf Smolka, TU Muenchen
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Reconstructors.
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*)
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signature SLEDGEHAMMER_PROOF_METHODS =
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sig
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  type stature = ATP_Problem_Generate.stature
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  datatype SMT_backend =
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    SMT_Z3 |
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    SMT_Verit of string
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  datatype proof_method =
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    Metis_Method of string option * string option |
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    Meson_Method |
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    SMT_Method of SMT_backend |
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    SATx_Method |
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    Blast_Method |
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    Simp_Method |
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    Auto_Method |
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    Fastforce_Method |
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    Force_Method |
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    Moura_Method |
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    Linarith_Method |
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    Presburger_Method |
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    Algebra_Method
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  datatype play_outcome =
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    Played of Time.time |
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    Play_Timed_Out of Time.time |
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    Play_Failed
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  type one_line_params =
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    ((string * stature) list * (proof_method * play_outcome)) * string * int * int
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  val is_proof_method_direct : proof_method -> bool
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  val proof_method_distinguishes_chained_and_direct : proof_method -> bool
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  val string_of_proof_method : string list -> proof_method -> string
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  val tac_of_proof_method : Proof.context -> thm list * thm list -> proof_method -> int -> tactic
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  val string_of_play_outcome : play_outcome -> string
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  val play_outcome_ord : play_outcome ord
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  val one_line_proof_text : Proof.context -> int -> one_line_params -> string
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end;
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structure Sledgehammer_Proof_Methods : SLEDGEHAMMER_PROOF_METHODS =
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struct
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open ATP_Util
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open ATP_Problem_Generate
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open ATP_Proof_Reconstruct
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datatype SMT_backend =
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  SMT_Z3 |
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  SMT_Verit of string
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datatype proof_method =
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  Metis_Method of string option * string option |
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  Meson_Method |
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  SMT_Method of SMT_backend |
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  SATx_Method |
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  Blast_Method |
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  Simp_Method |
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  Auto_Method |
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  Fastforce_Method |
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  Force_Method |
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  Moura_Method |
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  Linarith_Method |
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  Presburger_Method |
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  Algebra_Method
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datatype play_outcome =
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  Played of Time.time |
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  Play_Timed_Out of Time.time |
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  Play_Failed
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type one_line_params =
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  ((string * stature) list * (proof_method * play_outcome)) * string * int * int
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fun is_proof_method_direct (Metis_Method _) = true
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  | is_proof_method_direct Meson_Method = true
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  | is_proof_method_direct (SMT_Method _) = true
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  | is_proof_method_direct Simp_Method = true
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  | is_proof_method_direct _ = false
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fun proof_method_distinguishes_chained_and_direct Simp_Method = true
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  | proof_method_distinguishes_chained_and_direct _ = false
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fun is_proof_method_multi_goal Auto_Method = true
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  | is_proof_method_multi_goal _ = false
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fun maybe_paren s = s |> not (Symbol_Pos.is_identifier s) ? enclose "(" ")"
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fun string_of_proof_method ss meth =
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  let
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    val meth_s =
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      (case meth of
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        Metis_Method (NONE, NONE) => "metis"
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      | Metis_Method (type_enc_opt, lam_trans_opt) =>
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        "metis (" ^ commas (map_filter I [type_enc_opt, lam_trans_opt]) ^ ")"
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      | Meson_Method => "meson"
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      | SMT_Method SMT_Z3 => "smt (z3)"
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      | SMT_Method (SMT_Verit strategy) =>
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        "smt (" ^ commas ("verit" :: (if strategy = "default" then [] else [strategy])) ^ ")"
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      | SATx_Method => "satx"
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      | Blast_Method => "blast"
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      | Simp_Method => if null ss then "simp" else "simp add:"
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      | Auto_Method => "auto"
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      | Fastforce_Method => "fastforce"
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      | Force_Method => "force"
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      | Moura_Method => "moura"
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      | Linarith_Method => "linarith"
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      | Presburger_Method => "presburger"
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      | Algebra_Method => "algebra")
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  in
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    maybe_paren (space_implode " " (meth_s :: ss))
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  end
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fun tac_of_proof_method ctxt (local_facts, global_facts) meth =
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  let
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    fun tac_of_metis (type_enc_opt, lam_trans_opt) =
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      let
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        val ctxt = ctxt
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          |> Config.put Metis_Tactic.verbose false
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          |> Config.put Metis_Tactic.trace false
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      in
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        SELECT_GOAL (Metis_Tactic.metis_method ((Option.map single type_enc_opt, lam_trans_opt),
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          global_facts) ctxt local_facts)
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      end
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    fun tac_of_smt SMT_Z3 = SMT_Solver.smt_tac
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      | tac_of_smt (SMT_Verit strategy) = Verit_Proof.verit_tac_stgy strategy
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  in
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    (case meth of
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      Metis_Method options => tac_of_metis options
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    | SMT_Method backend => tac_of_smt backend ctxt (local_facts @ global_facts)
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    | _ =>
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      Method.insert_tac ctxt local_facts THEN'
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      (case meth of
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        Meson_Method => Meson_Tactic.meson_general_tac ctxt global_facts
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      | Simp_Method => Simplifier.asm_full_simp_tac (ctxt addsimps global_facts)
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      | _ =>
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        Method.insert_tac ctxt global_facts THEN'
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        (case meth of
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          SATx_Method => SAT.satx_tac ctxt
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        | Blast_Method => blast_tac ctxt
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        | Auto_Method => SELECT_GOAL (Clasimp.auto_tac ctxt)
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        | Fastforce_Method => Clasimp.fast_force_tac ctxt
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        | Force_Method => Clasimp.force_tac ctxt
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        | Moura_Method => moura_tac ctxt
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        | Linarith_Method => Lin_Arith.tac ctxt
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        | Presburger_Method => Cooper.tac true [] [] ctxt
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        | Algebra_Method => Groebner.algebra_tac [] [] ctxt)))
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  end
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fun string_of_play_outcome (Played time) = string_of_ext_time (false, time)
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  | string_of_play_outcome (Play_Timed_Out time) =
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    if time = Time.zeroTime then "" else string_of_ext_time (true, time) ^ ", timed out"
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  | string_of_play_outcome Play_Failed = "failed"
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fun play_outcome_ord (Played time1, Played time2) =
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    int_ord (apply2 Time.toMilliseconds (time1, time2))
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  | play_outcome_ord (Played _, _) = LESS
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  | play_outcome_ord (_, Played _) = GREATER
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  | play_outcome_ord (Play_Timed_Out time1, Play_Timed_Out time2) =
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    int_ord (apply2 Time.toMilliseconds (time1, time2))
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  | play_outcome_ord (Play_Timed_Out _, _) = LESS
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  | play_outcome_ord (_, Play_Timed_Out _) = GREATER
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  | play_outcome_ord (Play_Failed, Play_Failed) = EQUAL
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fun apply_on_subgoal _ 1 = "by "
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  | apply_on_subgoal 1 _ = "apply "
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  | apply_on_subgoal i n = "prefer " ^ string_of_int i ^ " " ^ apply_on_subgoal 1 n
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(* FIXME *)
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fun proof_method_command meth i n used_chaineds _(*num_chained*) extras =
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  let
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    val (indirect_ss, direct_ss) =
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      if is_proof_method_direct meth then
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        ([], extras |> proof_method_distinguishes_chained_and_direct meth ? append used_chaineds)
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      else
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        (extras, [])
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  in
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    (if null indirect_ss then "" else "using " ^ space_implode " " indirect_ss ^ " ") ^
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    apply_on_subgoal i n ^ string_of_proof_method direct_ss meth ^
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    (if is_proof_method_multi_goal meth andalso n <> 1 then "[1]" else "")
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  end
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fun try_command_line banner play command =
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  let val s = string_of_play_outcome play in
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    banner ^ ": " ^ Active.sendback_markup_command command ^
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    (s |> s <> "" ? enclose " (" ")")
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  end
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fun one_line_proof_text _ num_chained
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    ((used_facts, (meth, play)), banner, subgoal, subgoal_count) =
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  let val (chained, extra) = List.partition (fn (_, (sc, _)) => sc = Chained) used_facts in
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    map fst extra
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    |> proof_method_command meth subgoal subgoal_count (map fst chained) num_chained
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    |> (if play = Play_Failed then prefix "One-line proof reconstruction failed: "
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        else try_command_line banner play)
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  end
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end;