src/HOL/Tools/ATP_Manager/atp_wrapper.ML
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permissions -rw-r--r--
pass relevant options from "sledgehammer" to "sledgehammer minimize"; one nice side effect of this change is that the "sledgehammer minimize" syntax now only occurs in "sledgehammer_isar.ML", instead of being spread across two files
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(*  Title:      HOL/Tools/ATP_Manager/atp_wrapper.ML
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    Author:     Fabian Immler, TU Muenchen
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Wrapper functions for external ATPs.
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*)
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signature ATP_WRAPPER =
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sig
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  type prover = ATP_Manager.prover
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  (* hooks for problem files *)
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  val destdir : string Config.T
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  val problem_prefix : string Config.T
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  val measure_runtime : bool Config.T
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  val refresh_systems_on_tptp : unit -> unit
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  val setup : theory -> theory
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end;
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structure ATP_Wrapper : ATP_WRAPPER =
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struct
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open Sledgehammer_Util
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open Sledgehammer_Fact_Preprocessor
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open Sledgehammer_HOL_Clause
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open Sledgehammer_Fact_Filter
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open Sledgehammer_Proof_Reconstruct
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open ATP_Manager
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(** generic ATP wrapper **)
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(* external problem files *)
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val (destdir, destdir_setup) = Attrib.config_string "atp_destdir" (K "");
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  (*Empty string means create files in Isabelle's temporary files directory.*)
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val (problem_prefix, problem_prefix_setup) =
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  Attrib.config_string "atp_problem_prefix" (K "prob");
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val (measure_runtime, measure_runtime_setup) =
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  Attrib.config_bool "atp_measure_runtime" (K false);
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(* prover configuration *)
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type prover_config =
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 {command: Path.T,
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  arguments: Time.time -> string,
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  known_failures: (string list * string) list,
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  max_new_clauses: int,
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  prefers_theory_relevant: bool,
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  supports_isar_proofs: bool};
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(* basic template *)
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fun with_path cleanup after f path =
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  Exn.capture f path
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  |> tap (fn _ => cleanup path)
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  |> Exn.release
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  |> tap (after path);
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fun find_known_failure known_failures proof =
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  case map_filter (fn (patterns, message) =>
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                      if exists (fn pattern => String.isSubstring pattern proof)
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                                patterns then
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                        SOME message
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                      else
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                        NONE) known_failures of
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    [] => if is_proof_well_formed proof then ""
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          else "Error: The ATP output is ill-formed."
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  | (message :: _) => message
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fun generic_prover overlord get_facts prepare write_file cmd args known_failures
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        proof_text name ({debug, full_types, explicit_apply, ...} : params)
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        minimize_command
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        ({subgoal, goal, relevance_override, axiom_clauses, filtered_clauses}
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         : problem) =
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  let
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    (* get clauses and prepare them for writing *)
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    val (ctxt, (chain_ths, th)) = goal;
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    val thy = ProofContext.theory_of ctxt;
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    val chain_ths = map (Thm.put_name_hint chained_hint) chain_ths;
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    val goal_cls = #1 (neg_conjecture_clauses ctxt th subgoal);
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    val the_filtered_clauses =
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      (case filtered_clauses of
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        NONE => get_facts relevance_override goal goal_cls
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      | SOME fcls => fcls);
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    val the_axiom_clauses =
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      (case axiom_clauses of
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        NONE => the_filtered_clauses
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      | SOME axcls => axcls);
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    val (internal_thm_names, clauses) =
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      prepare goal_cls chain_ths the_axiom_clauses the_filtered_clauses thy;
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    (* path to unique problem file *)
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    val destdir' = if overlord then getenv "ISABELLE_HOME_USER"
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                   else Config.get ctxt destdir;
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    val problem_prefix' = Config.get ctxt problem_prefix;
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    fun prob_pathname nr =
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      let
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        val probfile =
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          Path.basic (problem_prefix' ^
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                      (if overlord then "_" ^ name else serial_string ())
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                      ^ "_" ^ string_of_int nr)
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      in
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        if destdir' = "" then File.tmp_path probfile
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        else if File.exists (Path.explode destdir')
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        then Path.append (Path.explode destdir') probfile
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        else error ("No such directory: " ^ destdir' ^ ".")
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      end;
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    (* write out problem file and call prover *)
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    fun cmd_line probfile =
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      if Config.get ctxt measure_runtime then
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        "TIMEFORMAT='%3U'; { time " ^ space_implode " " [File.shell_path cmd,
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        args, File.shell_path probfile] ^ " ; } 2>&1"
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      else
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        space_implode " " ["exec", File.shell_path cmd, args,
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        File.shell_path probfile, "2>&1"];
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    fun split_time s =
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      let
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        val split = String.tokens (fn c => str c = "\n");
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        val (proof, t) = s |> split |> split_last |> apfst cat_lines;
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        fun as_num f = f >> (fst o read_int);
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        val num = as_num (Scan.many1 Symbol.is_ascii_digit);
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        val digit = Scan.one Symbol.is_ascii_digit;
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        val num3 = as_num (digit ::: digit ::: (digit >> single));
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        val time = num --| Scan.$$ "." -- num3 >> (fn (a, b) => a * 1000 + b);
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        val as_time = the_default 0 o Scan.read Symbol.stopper time o explode;
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      in (proof, as_time t) end;
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    fun split_time' s =
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      if Config.get ctxt measure_runtime then split_time s else (s, 0)
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    fun run_on probfile =
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      if File.exists cmd then
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        write_file full_types explicit_apply probfile clauses
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        |> pair (apfst split_time' (bash_output (cmd_line probfile)))
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      else error ("Bad executable: " ^ Path.implode cmd ^ ".");
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    (* If the problem file has not been exported, remove it; otherwise, export
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       the proof file too. *)
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    fun cleanup probfile = if destdir' = "" then try File.rm probfile else NONE;
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    fun export probfile (((proof, _), _), _) =
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      if destdir' = "" then
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        ()
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      else
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        File.write (Path.explode (Path.implode probfile ^ "_proof"))
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                   ("% " ^ timestamp () ^ "\n" ^ proof)
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    val (((proof, atp_run_time_in_msecs), rc), _) =
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      with_path cleanup export run_on (prob_pathname subgoal);
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    (* Check for success and print out some information on failure. *)
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    val failure = find_known_failure known_failures proof;
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    val success = rc = 0 andalso failure = "";
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    val (message, relevant_thm_names) =
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      if success then
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        proof_text ctxt minimize_command proof internal_thm_names th subgoal
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      else if failure <> "" then
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        (failure, [])
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      else
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        ("Unknown ATP error: " ^ proof ^ ".\n", [])
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  in
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    {success = success, message = message,
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     relevant_thm_names = relevant_thm_names,
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     atp_run_time_in_msecs = atp_run_time_in_msecs, proof = proof,
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     internal_thm_names = internal_thm_names,
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     filtered_clauses = the_filtered_clauses}
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  end;
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(* generic TPTP-based provers *)
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fun generic_tptp_prover
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        (name, {command, arguments, known_failures, max_new_clauses,
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                prefers_theory_relevant, supports_isar_proofs})
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        (params as {debug, overlord, respect_no_atp, relevance_threshold,
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                    convergence, theory_relevant, higher_order, follow_defs,
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                    isar_proof, modulus, sorts, ...})
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        minimize_command timeout =
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  generic_prover overlord
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      (get_relevant_facts respect_no_atp relevance_threshold convergence
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                          higher_order follow_defs max_new_clauses
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                          (the_default prefers_theory_relevant theory_relevant))
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      (prepare_clauses higher_order false)
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      (write_tptp_file (debug andalso overlord andalso not isar_proof)) command
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      (arguments timeout) known_failures
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      (proof_text (supports_isar_proofs andalso isar_proof) modulus sorts)
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      name params minimize_command
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fun tptp_prover name p = (name, generic_tptp_prover (name, p));
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(** common provers **)
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fun generous_to_secs time = (Time.toMilliseconds time + 999) div 1000
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(* Vampire *)
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(* NB: Vampire does not work without explicit time limit. *)
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val vampire_config : prover_config =
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  {command = Path.explode "$VAMPIRE_HOME/vampire",
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   arguments = (fn timeout => "--output_syntax tptp --mode casc -t " ^
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                              string_of_int (generous_to_secs timeout)),
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   known_failures =
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     [(["Satisfiability detected", "CANNOT PROVE"],
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       "The ATP problem is unprovable."),
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      (["Refutation not found"],
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       "The ATP failed to determine the problem's status.")],
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   max_new_clauses = 60,
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   prefers_theory_relevant = false,
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   supports_isar_proofs = true}
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val vampire = tptp_prover "vampire" vampire_config
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(* E prover *)
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val e_config : prover_config =
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  {command = Path.explode "$E_HOME/eproof",
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   arguments = (fn timeout => "--tstp-in --tstp-out -l5 -xAutoDev \
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                              \-tAutoDev --silent --cpu-limit=" ^
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                              string_of_int (generous_to_secs timeout)),
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   known_failures =
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       [(["SZS status: Satisfiable", "SZS status Satisfiable"],
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         "The ATP problem is unprovable."),
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        (["SZS status: ResourceOut", "SZS status ResourceOut"],
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         "The ATP ran out of resources."),
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        (["# Cannot determine problem status"],
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         "The ATP failed to determine the problem's status.")],
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   max_new_clauses = 100,
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   prefers_theory_relevant = false,
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   supports_isar_proofs = true}
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val e = tptp_prover "e" e_config
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(* SPASS *)
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fun generic_dfg_prover
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        (name, ({command, arguments, known_failures, max_new_clauses,
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                 prefers_theory_relevant, ...} : prover_config))
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        (params as {overlord, respect_no_atp, relevance_threshold, convergence,
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                    theory_relevant, higher_order, follow_defs, ...})
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        minimize_command timeout =
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  generic_prover overlord
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      (get_relevant_facts respect_no_atp relevance_threshold convergence
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                          higher_order follow_defs max_new_clauses
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                          (the_default prefers_theory_relevant theory_relevant))
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      (prepare_clauses higher_order true) write_dfg_file command
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      (arguments timeout) known_failures (K metis_proof_text)
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      name params minimize_command
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fun dfg_prover name p = (name, generic_dfg_prover (name, p))
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(* The "-VarWeight=3" option helps the higher-order problems, probably by
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   counteracting the presence of "hAPP". *)
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val spass_config : prover_config =
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 {command = Path.explode "$SPASS_HOME/SPASS",
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  arguments = (fn timeout => "-Auto -SOS=1 -PGiven=0 -PProblem=0 -Splits=0" ^
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    " -FullRed=0 -DocProof -VarWeight=3 -TimeLimit=" ^
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    string_of_int (generous_to_secs timeout)),
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  known_failures =
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    [(["SPASS beiseite: Completion found."], "The ATP problem is unprovable."),
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     (["SPASS beiseite: Ran out of time."], "The ATP timed out."),
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     (["SPASS beiseite: Maximal number of loops exceeded."],
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      "The ATP hit its loop limit.")],
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  max_new_clauses = 40,
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  prefers_theory_relevant = true,
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  supports_isar_proofs = false}
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val spass = dfg_prover "spass" spass_config
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(* SPASS 3.7 supports both the DFG and the TPTP syntax, whereas SPASS 3.0
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   supports only the DFG syntax. As soon as all Isabelle repository/snapshot
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   users have upgraded to 3.7, we can kill "spass" (and all DFG support in
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   Sledgehammer) and rename "spass_tptp" "spass". *)
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(* FIXME: Change the error message below to point to the Isabelle download
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   page once the package is there (around the Isabelle2010 release). *)
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val spass_tptp_config =
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  {command = #command spass_config,
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   arguments = prefix "-TPTP " o #arguments spass_config,
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   known_failures =
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     #known_failures spass_config @
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     [(["unrecognized option `-TPTP'", "Unrecognized option TPTP"],
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       "Warning: Sledgehammer requires a more recent version of SPASS with \
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       \support for the TPTP syntax. To install it, download and untar the \
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       \package \"http://isabelle.in.tum.de/~blanchet/spass-3.7.tgz\" and add \
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       \the \"spass-3.7\" directory's full path to \"" ^
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       Path.implode (Path.expand (Path.appends
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           (Path.variable "ISABELLE_HOME_USER" ::
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            map Path.basic ["etc", "components"]))) ^
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       "\" on a line of its own.")],
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   max_new_clauses = #max_new_clauses spass_config,
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   prefers_theory_relevant = #prefers_theory_relevant spass_config,
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   supports_isar_proofs = #supports_isar_proofs spass_config}
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val spass_tptp = tptp_prover "spass_tptp" spass_tptp_config
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(* remote prover invocation via SystemOnTPTP *)
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val systems = Synchronized.var "atp_wrapper_systems" ([]: string list);
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fun get_systems () =
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  let
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    val (answer, rc) = bash_output "\"$ISABELLE_ATP_MANAGER/SystemOnTPTP\" -w"
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  in
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    if rc <> 0 then
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      error ("Failed to get available systems at SystemOnTPTP:\n" ^ answer)
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    else
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      split_lines answer
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  end;
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fun refresh_systems_on_tptp () =
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  Synchronized.change systems (fn _ => get_systems ());
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fun get_system prefix = Synchronized.change_result systems (fn systems =>
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  (if null systems then get_systems () else systems)
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  |> `(find_first (String.isPrefix prefix)));
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fun the_system prefix =
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  (case get_system prefix of
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    NONE => error ("System " ^ quote prefix ^ " not available at SystemOnTPTP")
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  | SOME sys => sys);
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val remote_known_failures =
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  [(["Remote-script could not extract proof"],
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    "Error: The remote ATP proof is ill-formed.")]
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fun remote_prover_config prover_prefix args
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        ({known_failures, max_new_clauses, prefers_theory_relevant, ...}
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         : prover_config) : prover_config =
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  {command = Path.explode "$ISABELLE_ATP_MANAGER/SystemOnTPTP",
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   arguments = (fn timeout =>
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     args ^ " -t " ^ string_of_int (generous_to_secs timeout) ^ " -s " ^
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     the_system prover_prefix),
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   known_failures = remote_known_failures @ known_failures,
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   max_new_clauses = max_new_clauses,
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   prefers_theory_relevant = prefers_theory_relevant,
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   supports_isar_proofs = false}
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val remote_vampire =
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  tptp_prover "remote_vampire"
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              (remote_prover_config "Vampire---9" "" vampire_config)
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val remote_e =
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  tptp_prover "remote_e" (remote_prover_config "EP---" "" e_config)
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val remote_spass =
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  tptp_prover "remote_spass" (remote_prover_config "SPASS---" "-x" spass_config)
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val provers = [spass, spass_tptp, vampire, e, remote_vampire, remote_spass,
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               remote_e]
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val prover_setup = fold add_prover provers
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val setup =
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  destdir_setup
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  #> problem_prefix_setup
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  #> measure_runtime_setup
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  #> prover_setup;
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end;