author | blanchet |
Mon, 16 Dec 2013 14:49:18 +0100 | |
changeset 54767 | 81290fe85890 |
parent 54766 | 6ac273f176cd |
child 54768 | ee0881a54c72 |
permissions | -rw-r--r-- |
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(* Title: HOL/Tools/Sledgehammer/sledgehammer_reconstruct.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_RECONSTRUCT = |
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sig |
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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_Reconstructor.one_line_params |
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type isar_params = |
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bool * bool * string * string * Time.time option * real * bool * (term, string) atp_step list * |
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thm |
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val isar_proof_text : Proof.context -> bool option -> isar_params -> one_line_params -> string |
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val proof_text : Proof.context -> bool option -> (unit -> isar_params) -> int -> |
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one_line_params -> string |
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end; |
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structure Sledgehammer_Reconstruct : SLEDGEHAMMER_RECONSTRUCT = |
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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_Problem_Generate |
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open ATP_Proof_Reconstruct |
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open Sledgehammer_Util |
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open Sledgehammer_Reconstructor |
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open Sledgehammer_Proof |
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open Sledgehammer_Annotate |
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open Sledgehammer_Print |
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open Sledgehammer_Preplay |
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open Sledgehammer_Compress |
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open Sledgehammer_Try0 |
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open Sledgehammer_Minimize_Isar |
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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 e_skolemize_rule = "skolemize" |
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val vampire_skolemisation_rule = "skolemisation" |
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(* TODO: Use "Z3_Proof.string_of_rule" once it is moved to Isabelle *) |
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val z3_apply_def_rule = "apply-def" |
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val z3_hypothesis_rule = "hypothesis" |
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val z3_intro_def_rule = "intro-def" |
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val z3_lemma_rule = "lemma" |
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val z3_skolemize_rule = "sk" |
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val z3_th_lemma_rule = "th-lemma" |
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val is_skolemize_rule = |
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member (op =) [e_skolemize_rule, vampire_skolemisation_rule, z3_skolemize_rule] |
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val is_arith_rule = String.isPrefix z3_th_lemma_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_fact_of_dependencies [(_, ss as _ :: _)] = apsnd (union (op =) ss) |
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| add_fact_of_dependencies names = apfst (insert (op =) (label_of_clause names)) |
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fun replace_one_dependency (old, new) dep = |
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if is_same_atp_step dep old then new else [dep] |
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fun replace_dependencies_in_line p (name, role, t, rule, deps) = |
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(name, role, t, rule, fold (union (op =) o replace_one_dependency p) deps []) |
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fun inline_z3_defs _ [] = [] |
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| inline_z3_defs defs ((line as (name, role, t, rule, deps)) :: lines) = |
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if rule = z3_intro_def_rule then |
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let val def = t |> HOLogic.dest_Trueprop |> HOLogic.dest_eq |> swap in |
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inline_z3_defs (insert (op =) def defs) |
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(map (replace_dependencies_in_line (name, [])) lines) |
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end |
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else if rule = z3_apply_def_rule then |
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inline_z3_defs defs (map (replace_dependencies_in_line (name, [])) lines) |
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else |
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(name, role, Term.subst_atomic defs t, rule, deps) :: inline_z3_defs defs lines |
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fun alist_cons_list eq (k, v) = AList.map_default eq (k, []) (cons v) |
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fun add_z3_hypotheses [] = I |
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| add_z3_hypotheses hyps = |
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HOLogic.dest_Trueprop |
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#> curry s_imp (Library.foldr1 s_conj (map HOLogic.dest_Trueprop hyps)) |
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#> HOLogic.mk_Trueprop |
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fun inline_z3_hypotheses _ _ [] = [] |
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| inline_z3_hypotheses hyp_names hyps ((name, role, t, rule, deps) :: lines) = |
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if rule = z3_hypothesis_rule then |
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inline_z3_hypotheses (name :: hyp_names) (alist_cons_list (op =) (t, name) hyps) lines |
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else |
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let val deps' = subtract (op =) hyp_names deps in |
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if rule = z3_lemma_rule then |
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(name, role, t, rule, deps') :: inline_z3_hypotheses hyp_names hyps lines |
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else |
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let |
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val add_hyps = filter_out (null o inter (op =) deps o snd) hyps |
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val t' = add_z3_hypotheses (map fst add_hyps) t |
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val deps' = subtract (op =) hyp_names deps |
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val hyps' = fold (AList.update (op =) o apsnd (insert (op =) name)) add_hyps hyps |
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in |
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(name, role, t', rule, deps') :: inline_z3_hypotheses hyp_names hyps' lines |
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end |
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end |
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fun simplify_prop (@{const Not} $ t) = s_not (simplify_prop t) |
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| simplify_prop (@{const conj} $ t $ u) = s_conj (simplify_prop t, simplify_prop u) |
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| simplify_prop (@{const disj} $ t $ u) = s_disj (simplify_prop t, simplify_prop u) |
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| simplify_prop (@{const implies} $ t $ u) = s_imp (simplify_prop t, simplify_prop u) |
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| simplify_prop (@{const HOL.eq (bool)} $ t $ u) = s_iff (simplify_prop t, simplify_prop u) |
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| simplify_prop (t $ u) = simplify_prop t $ simplify_prop u |
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| simplify_prop (Abs (s, T, t)) = Abs (s, T, simplify_prop t) |
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| simplify_prop t = t |
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fun simplify_line (name, role, t, rule, deps) = (name, role, simplify_prop t, rule, deps) |
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(* No "real" literals means only type information (tfree_tcs, clsrel, or clsarity). *) |
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fun is_only_type_information t = t aconv @{prop True} |
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(* Discard facts; consolidate adjacent lines that prove the same formula, since they differ only in |
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type information. *) |
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fun add_line_pass1 (line as (name as (_, ss), role, t, rule, [])) lines = |
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(* No dependencies: lemma (for Z3), fact, conjecture, or (for Vampire) |
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internal facts or definitions. *) |
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if role = Lemma orelse role = Conjecture orelse role = Negated_Conjecture orelse |
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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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(* Facts are not proof lines. *) |
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lines |> is_only_type_information t ? map (replace_dependencies_in_line (name, [])) |
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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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(* Recursively delete empty lines (type information) from the proof. |
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(FIXME: needed? And why is "delete_dependency" so complicated?) *) |
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fun add_line_pass2 (line as (name, _, t, _, [])) lines = |
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if is_only_type_information t then delete_dependency name lines else line :: lines |
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| add_line_pass2 line lines = line :: lines |
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and delete_dependency name lines = |
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fold_rev add_line_pass2 (map (replace_dependencies_in_line (name, [])) lines) [] |
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fun add_line_pass3 res [] = rev res |
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| add_line_pass3 res ((name as (_, ss), role, t, rule, deps) :: lines) = |
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if role <> Plain orelse is_skolemize_rule rule orelse is_arith_rule rule orelse |
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(* the last line must be kept *) |
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null lines orelse |
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(not (is_only_type_information t) andalso null (Term.add_tvars t []) |
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andalso length deps >= 2 andalso |
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(* don't keep next to last line, which usually results in a trivial step *) |
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not (can the_single lines)) then |
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add_line_pass3 ((name, role, simplify_prop t, rule, deps) :: res) lines |
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else |
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add_line_pass3 res (map (replace_dependencies_in_line (name, deps)) lines) |
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val add_labels_of_proof = |
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steps_of_proof |
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#> fold_isar_steps (byline_of_step #> (fn SOME ((ls, _), _) => union (op =) ls | _ => I)) |
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fun kill_useless_labels_in_proof proof = |
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let |
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val used_ls = add_labels_of_proof proof [] |
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fun kill_label l = if member (op =) used_ls l then l else no_label |
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fun kill_assms assms = map (apfst kill_label) assms |
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fun kill_step (Prove (qs, xs, l, t, subproofs, by)) = |
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Prove (qs, xs, kill_label l, t, map kill_proof subproofs, by) |
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| kill_step step = step |
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and kill_proof (Proof (fix, assms, steps)) = |
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Proof (fix, kill_assms assms, map kill_step steps) |
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in |
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kill_proof proof |
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end |
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val assume_prefix = "a" |
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val have_prefix = "f" |
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val relabel_proof = |
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let |
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fun fresh_label depth prefix (accum as (l, subst, next)) = |
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if l = no_label then |
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accum |
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else |
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let val l' = (replicate_string (depth + 1) prefix, next) in |
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(l', (l, l') :: subst, next + 1) |
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end |
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fun relabel_facts subst = apfst (maps (the_list o AList.lookup (op =) subst)) |
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fun relabel_assm depth (l, t) (subst, next) = |
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let val (l, subst, next) = (l, subst, next) |> fresh_label depth assume_prefix in |
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((l, t), (subst, next)) |
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end |
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fun relabel_assms subst depth assms = fold_map (relabel_assm depth) assms (subst, 1) ||> fst |
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fun relabel_steps _ _ _ [] = [] |
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| relabel_steps subst depth next (Prove (qs, xs, l, t, sub, by) :: steps) = |
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let |
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val (l, subst, next) = (l, subst, next) |> fresh_label depth have_prefix |
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val sub = relabel_proofs subst depth sub |
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val by = apfst (relabel_facts subst) by |
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in |
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Prove (qs, xs, l, t, sub, by) :: relabel_steps subst depth next steps |
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end |
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| relabel_steps subst depth next (step :: steps) = |
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step :: relabel_steps subst depth next steps |
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and relabel_proof subst depth (Proof (fix, assms, steps)) = |
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let val (assms, subst) = relabel_assms subst depth assms in |
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Proof (fix, assms, relabel_steps subst depth 1 steps) |
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end |
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and relabel_proofs subst depth = map (relabel_proof subst (depth + 1)) |
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in |
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relabel_proof [] 0 |
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end |
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|
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val chain_direct_proof = |
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let |
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fun chain_qs_lfs NONE lfs = ([], lfs) |
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| chain_qs_lfs (SOME l0) lfs = |
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if member (op =) lfs l0 then ([Then], lfs |> remove (op =) l0) else ([], lfs) |
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fun chain_step lbl (Prove (qs, xs, l, t, subproofs, ((lfs, gfs), methss))) = |
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let val (qs', lfs) = chain_qs_lfs lbl lfs in |
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Prove (qs' @ qs, xs, l, t, chain_proofs subproofs, ((lfs, gfs), methss)) |
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end |
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| chain_step _ step = step |
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and chain_steps _ [] = [] |
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| chain_steps (prev as SOME _) (i :: is) = |
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chain_step prev i :: chain_steps (label_of_step i) is |
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| chain_steps _ (i :: is) = i :: chain_steps (label_of_step i) is |
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and chain_proof (Proof (fix, assms, steps)) = |
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Proof (fix, assms, chain_steps (try (List.last #> fst) assms) steps) |
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and chain_proofs proofs = map (chain_proof) proofs |
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in |
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chain_proof |
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end |
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type isar_params = |
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bool * bool * string * string * Time.time option * real * bool * (term, string) atp_step list * |
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thm |
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val arith_methodss = |
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[[Arith_Method, Simp_Method, Auto_Method, Fastforce_Method, Blast_Method, Force_Method, |
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Metis_Method], [Meson_Method]] |
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val metislike_methodss = |
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|
257 |
[[Metis_Method, Simp_Method, Auto_Method, Arith_Method, Blast_Method, Fastforce_Method, |
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258 |
Force_Method], [Meson_Method]] |
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|
259 |
val rewrite_methodss = |
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|
260 |
[[Simp_Method, Auto_Method, Fastforce_Method, Force_Method, Metis_Method], [Meson_Method]] |
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|
261 |
val skolem_methodss = [[Metis_Method, Blast_Method], [Metis_New_Skolem_Method], [Meson_Method]] |
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|
262 |
|
53052
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sledgehammer sendback always uses Markup.padding_command: sensible default for most practical applications -- old-style in-line replacement is superseded by auto mode or panel;
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|
263 |
fun isar_proof_text ctxt isar_proofs |
54756 | 264 |
(debug, verbose, metis_type_enc, metis_lam_trans, preplay_timeout, isar_compress, isar_try0, |
265 |
atp_proof, goal) |
|
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|
266 |
(one_line_params as (_, _, _, _, subgoal, subgoal_count)) = |
49883 | 267 |
let |
52196
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|
268 |
val (params, hyp_ts, concl_t) = strip_subgoal goal subgoal ctxt |
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|
269 |
val (_, ctxt) = |
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|
270 |
params |
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|
271 |
|> map (fn (s, T) => (Binding.name s, SOME T, NoSyn)) |
54507 | 272 |
|> (fn fixes => ctxt |> Variable.set_body false |> Proof_Context.add_fixes fixes) |
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|
273 |
val one_line_proof = one_line_proof_text 0 one_line_params |
52556
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|
274 |
val do_preplay = preplay_timeout <> SOME Time.zeroTime |
49883 | 275 |
|
54751 | 276 |
val is_fixed = Variable.is_declared ctxt orf can Name.dest_skolem |
277 |
fun skolems_of t = Term.add_frees t [] |> filter_out (is_fixed o fst) |> rev |
|
278 |
||
279 |
fun get_role keep_role ((num, _), role, t, rule, _) = |
|
280 |
if keep_role role then SOME ((raw_label_of_num num, t), rule) else NONE |
|
54700 | 281 |
|
49883 | 282 |
fun isar_proof_of () = |
283 |
let |
|
284 |
val atp_proof = |
|
285 |
atp_proof |
|
54746 | 286 |
|> inline_z3_defs [] |
54758 | 287 |
|> map simplify_line |
54750 | 288 |
|> inline_z3_hypotheses [] [] |
54755 | 289 |
|> rpair [] |-> fold_rev add_line_pass1 |
290 |
|> rpair [] |-> fold_rev add_line_pass2 |
|
291 |
|> add_line_pass3 [] |
|
54700 | 292 |
|
54535
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|
293 |
val conjs = |
54700 | 294 |
map_filter (fn (name, role, _, _, _) => |
295 |
if member (op =) [Conjecture, Negated_Conjecture] role then SOME name else NONE) |
|
296 |
atp_proof |
|
54751 | 297 |
val assms = map_filter (Option.map fst o get_role (curry (op =) Hypothesis)) atp_proof |
54700 | 298 |
val lems = |
299 |
map_filter (get_role (curry (op =) Lemma)) atp_proof |
|
54751 | 300 |
|> map (fn ((l, t), rule) => |
54753 | 301 |
let |
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|
302 |
val (skos, methss) = |
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|
303 |
if is_skolemize_rule rule then (skolems_of t, skolem_methodss) |
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|
304 |
else if is_arith_rule rule then ([], arith_methodss) |
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|
305 |
else ([], rewrite_methodss) |
54753 | 306 |
in |
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|
307 |
Prove ([], skos, l, t, [], (([], []), methss)) |
54753 | 308 |
end) |
54700 | 309 |
|
51212
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changeset
|
310 |
val bot = atp_proof |> List.last |> #1 |
54700 | 311 |
|
51145 | 312 |
val refute_graph = |
51212
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|
313 |
atp_proof |
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|
314 |
|> map (fn (name, _, _, _, from) => (from, name)) |
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|
315 |
|> make_refute_graph bot |
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|
316 |
|> fold (Atom_Graph.default_node o rpair ()) conjs |
54700 | 317 |
|
51145 | 318 |
val axioms = axioms_of_refute_graph refute_graph conjs |
54700 | 319 |
|
51145 | 320 |
val tainted = tainted_atoms_of_refute_graph refute_graph conjs |
51156 | 321 |
val is_clause_tainted = exists (member (op =) tainted) |
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|
322 |
val steps = |
49883 | 323 |
Symtab.empty |
51201 | 324 |
|> fold (fn (name as (s, _), role, t, rule, _) => |
54758 | 325 |
Symtab.update_new (s, (rule, t |
326 |
|> (if is_clause_tainted [name] then |
|
327 |
role <> Conjecture ? s_not_prop |
|
328 |
#> fold exists_of (map Var (Term.add_vars t [])) |
|
329 |
else |
|
330 |
I)))) |
|
331 |
atp_proof |
|
54700 | 332 |
|
54755 | 333 |
val rule_of_clause_id = fst o the o Symtab.lookup steps o fst |
54700 | 334 |
|
54757
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parents:
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diff
changeset
|
335 |
fun prop_of_clause [(num, _)] = Symtab.lookup steps num |> the |> snd |> close_form |
50016 | 336 |
| prop_of_clause names = |
50676
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diff
changeset
|
337 |
let |
54758 | 338 |
val lits = map (HOLogic.dest_Trueprop o snd) |
339 |
(map_filter (Symtab.lookup steps o fst) names) |
|
50676
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diff
changeset
|
340 |
in |
54754 | 341 |
(case List.partition (can HOLogic.dest_not) lits of |
50018
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parents:
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diff
changeset
|
342 |
(negs as _ :: _, pos as _ :: _) => |
54507 | 343 |
s_imp (Library.foldr1 s_conj (map HOLogic.dest_not negs), Library.foldr1 s_disj pos) |
54754 | 344 |
| _ => fold (curry s_disj) lits @{term False}) |
50018
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parents:
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diff
changeset
|
345 |
end |
50016 | 346 |
|> HOLogic.mk_Trueprop |> close_form |
54700 | 347 |
|
348 |
fun maybe_show outer c = |
|
349 |
(outer andalso length c = 1 andalso subset (op =) (c, conjs)) ? cons Show |
|
350 |
||
351 |
fun isar_steps outer predecessor accum [] = |
|
352 |
accum |
|
353 |
|> (if tainted = [] then |
|
354 |
cons (Prove (if outer then [Show] else [], [], no_label, concl_t, [], |
|
54767
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54766
diff
changeset
|
355 |
((the_list predecessor, []), metislike_methodss))) |
54700 | 356 |
else |
357 |
I) |
|
358 |
|> rev |
|
54755 | 359 |
| isar_steps outer _ accum (Have (id, (gamma, c)) :: infs) = |
54700 | 360 |
let |
361 |
val l = label_of_clause c |
|
362 |
val t = prop_of_clause c |
|
54755 | 363 |
val rule = rule_of_clause_id id |
364 |
val skolem = is_skolemize_rule rule |
|
365 |
||
54700 | 366 |
fun prove sub by = Prove (maybe_show outer c [], [], l, t, sub, by) |
367 |
fun do_rest l step = isar_steps outer (SOME l) (step :: accum) infs |
|
54755 | 368 |
|
369 |
val deps = fold add_fact_of_dependencies gamma no_facts |
|
54767
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parents:
54766
diff
changeset
|
370 |
val methss = if is_arith_rule rule then arith_methodss else metislike_methodss |
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parents:
54766
diff
changeset
|
371 |
val by = (deps, methss) |
54700 | 372 |
in |
373 |
if is_clause_tainted c then |
|
54712 | 374 |
(case gamma of |
54700 | 375 |
[g] => |
54755 | 376 |
if skolem andalso is_clause_tainted g then |
54751 | 377 |
let val subproof = Proof (skolems_of (prop_of_clause g), [], rev accum) in |
54767
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parents:
54766
diff
changeset
|
378 |
isar_steps outer (SOME l) [prove [subproof] (no_facts, skolem_methodss)] [] |
54700 | 379 |
end |
51148
2246a2e17f92
tuning -- refactoring in preparation for handling skolemization of conjecture
blanchet
parents:
51147
diff
changeset
|
380 |
else |
54700 | 381 |
do_rest l (prove [] by) |
54712 | 382 |
| _ => do_rest l (prove [] by)) |
54700 | 383 |
else |
54765 | 384 |
do_rest l (if skolem then Prove ([], skolems_of t, l, t, [], by) else prove [] by) |
54700 | 385 |
end |
386 |
| isar_steps outer predecessor accum (Cases cases :: infs) = |
|
387 |
let |
|
388 |
fun isar_case (c, infs) = |
|
389 |
isar_proof false [] [(label_of_clause c, prop_of_clause c)] [] infs |
|
390 |
val c = succedent_of_cases cases |
|
391 |
val l = label_of_clause c |
|
392 |
val t = prop_of_clause c |
|
393 |
val step = |
|
54760
a1ac3eaa0d11
generate proper succedent for cases with trivial branches
blanchet
parents:
54759
diff
changeset
|
394 |
Prove (maybe_show outer c [], [], l, t, |
a1ac3eaa0d11
generate proper succedent for cases with trivial branches
blanchet
parents:
54759
diff
changeset
|
395 |
map isar_case (filter_out (null o snd) cases), |
54767
81290fe85890
generalize method list further to list of list (clustering preferred methods together)
blanchet
parents:
54766
diff
changeset
|
396 |
((the_list predecessor, []), metislike_methodss)) |
54700 | 397 |
in |
398 |
isar_steps outer (SOME l) (step :: accum) infs |
|
399 |
end |
|
400 |
and isar_proof outer fix assms lems infs = |
|
401 |
Proof (fix, assms, lems @ isar_steps outer NONE [] infs) |
|
402 |
||
54765 | 403 |
(* 60 seconds seems like a reasonable interpreation of "no timeout" *) |
52592
8a25b17e3d79
optimize isar-proofs by trying different proof methods
smolkas
parents:
52556
diff
changeset
|
404 |
val preplay_timeout = preplay_timeout |> the_default (seconds 60.0) |
8a25b17e3d79
optimize isar-proofs by trying different proof methods
smolkas
parents:
52556
diff
changeset
|
405 |
|
53761
4d34e267fba9
use configuration mechanism for low-level tracing
blanchet
parents:
53586
diff
changeset
|
406 |
val (preplay_interface as {overall_preplay_stats, ...}, isar_proof) = |
51145 | 407 |
refute_graph |
54699 | 408 |
(* |
54751 | 409 |
|> tap (tracing o prefix "Refute graph: " o string_of_refute_graph) |
54699 | 410 |
*) |
51031
63d71b247323
more robustness in Isar proof reconstruction (cf. bug report by Ondrej)
blanchet
parents:
51026
diff
changeset
|
411 |
|> redirect_graph axioms tainted bot |
54699 | 412 |
(* |
54751 | 413 |
|> tap (tracing o prefix "Direct proof: " o string_of_direct_proof) |
54699 | 414 |
*) |
54754 | 415 |
|> isar_proof true params assms lems |
54712 | 416 |
|> postprocess_remove_unreferenced_steps I |
52556
c8357085217c
completely rewrote SH compress; added two parameters for experimentation/fine grained control
smolkas
parents:
52555
diff
changeset
|
417 |
|> relabel_proof_canonically |
54500 | 418 |
|> `(proof_preplay_interface debug ctxt metis_type_enc metis_lam_trans do_preplay |
53761
4d34e267fba9
use configuration mechanism for low-level tracing
blanchet
parents:
53586
diff
changeset
|
419 |
preplay_timeout) |
54754 | 420 |
|
52626 | 421 |
val ((preplay_time, preplay_fail), isar_proof) = |
52556
c8357085217c
completely rewrote SH compress; added two parameters for experimentation/fine grained control
smolkas
parents:
52555
diff
changeset
|
422 |
isar_proof |
54501 | 423 |
|> compress_proof (if isar_proofs = SOME true then isar_compress else 1000.0) |
53762 | 424 |
preplay_interface |
52632
23393c31c7fe
added sledgehammer parameters isar_try0 and isar_minimize and their negative aliases
smolkas
parents:
52626
diff
changeset
|
425 |
|> isar_try0 ? try0 preplay_timeout preplay_interface |
54712 | 426 |
|> postprocess_remove_unreferenced_steps (isar_try0 ? min_deps_of_step preplay_interface) |
52626 | 427 |
|> `overall_preplay_stats |
54758 | 428 |
||> (chain_direct_proof #> kill_useless_labels_in_proof #> relabel_proof) |
54754 | 429 |
|
54500 | 430 |
val isar_text = |
431 |
string_of_proof ctxt metis_type_enc metis_lam_trans subgoal subgoal_count isar_proof |
|
49883 | 432 |
in |
54754 | 433 |
(case isar_text of |
49883 | 434 |
"" => |
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
|
435 |
if isar_proofs = SOME true then |
50671 | 436 |
"\nNo structured proof available (proof too simple)." |
49883 | 437 |
else |
438 |
"" |
|
439 |
| _ => |
|
50670
eaa540986291
properly take the existential closure of skolems
blanchet
parents:
50557
diff
changeset
|
440 |
let |
eaa540986291
properly take the existential closure of skolems
blanchet
parents:
50557
diff
changeset
|
441 |
val msg = |
51203 | 442 |
(if verbose then |
443 |
let |
|
52592
8a25b17e3d79
optimize isar-proofs by trying different proof methods
smolkas
parents:
52556
diff
changeset
|
444 |
val num_steps = add_proof_steps (steps_of_proof isar_proof) 0 |
51203 | 445 |
in [string_of_int num_steps ^ " step" ^ plural_s num_steps] end |
446 |
else |
|
447 |
[]) @ |
|
52556
c8357085217c
completely rewrote SH compress; added two parameters for experimentation/fine grained control
smolkas
parents:
52555
diff
changeset
|
448 |
(if do_preplay then |
54763 | 449 |
[(if preplay_fail then "may fail, " else "") ^ string_of_ext_time preplay_time] |
50670
eaa540986291
properly take the existential closure of skolems
blanchet
parents:
50557
diff
changeset
|
450 |
else |
eaa540986291
properly take the existential closure of skolems
blanchet
parents:
50557
diff
changeset
|
451 |
[]) |
50277 | 452 |
in |
54507 | 453 |
"\n\nStructured proof" ^ (commas msg |> not (null msg) ? enclose " (" ")") ^ ":\n" ^ |
454 |
Active.sendback_markup [Markup.padding_command] isar_text |
|
54754 | 455 |
end) |
49883 | 456 |
end |
54760
a1ac3eaa0d11
generate proper succedent for cases with trivial branches
blanchet
parents:
54759
diff
changeset
|
457 |
|
49883 | 458 |
val isar_proof = |
459 |
if debug then |
|
460 |
isar_proof_of () |
|
54754 | 461 |
else |
462 |
(case try isar_proof_of () of |
|
463 |
SOME s => s |
|
464 |
| NONE => |
|
465 |
if isar_proofs = SOME true then "\nWarning: The Isar proof construction failed." else "") |
|
49883 | 466 |
in one_line_proof ^ isar_proof end |
467 |
||
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
|
468 |
fun isar_proof_would_be_a_good_idea preplay = |
54754 | 469 |
(case preplay of |
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
|
470 |
Played (reconstr, _) => reconstr = SMT |
54093 | 471 |
| Trust_Playable _ => false |
54754 | 472 |
| Failed_to_Play _ => 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
|
473 |
|
53052
a0db255af8c5
sledgehammer sendback always uses Markup.padding_command: sensible default for most practical applications -- old-style in-line replacement is superseded by auto mode or panel;
wenzelm
parents:
53047
diff
changeset
|
474 |
fun proof_text ctxt isar_proofs isar_params num_chained |
49883 | 475 |
(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
|
476 |
(if isar_proofs = SOME true orelse |
2654b3965c8d
made "isar_proofs" a 3-way option, to provide a way to totally disable isar_proofs if desired
blanchet
parents:
51187
diff
changeset
|
477 |
(isar_proofs = NONE andalso isar_proof_would_be_a_good_idea preplay) then |
54500 | 478 |
isar_proof_text ctxt isar_proofs (isar_params ()) |
49883 | 479 |
else |
53052
a0db255af8c5
sledgehammer sendback always uses Markup.padding_command: sensible default for most practical applications -- old-style in-line replacement is superseded by auto mode or panel;
wenzelm
parents:
53047
diff
changeset
|
480 |
one_line_proof_text num_chained) one_line_params |
49883 | 481 |
|
482 |
end; |