TSTP Solution File: LCL261-3 by cvc5---1.0.5

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : cvc5---1.0.5
% Problem  : LCL261-3 : TPTP v8.1.2. Released v2.3.0.
% Transfm  : none
% Format   : tptp
% Command  : do_cvc5 %s %d

% Computer : n032.cluster.edu
% Model    : x86_64 x86_64
% CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory   : 8042.1875MB
% OS       : Linux 3.10.0-693.el7.x86_64
% CPULimit : 300s
% WCLimit  : 300s
% DateTime : Thu Aug 31 07:01:26 EDT 2023

% Result   : Unsatisfiable 43.50s 43.69s
% Output   : Proof 43.52s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.08  % Problem    : LCL261-3 : TPTP v8.1.2. Released v2.3.0.
% 0.00/0.09  % Command    : do_cvc5 %s %d
% 0.09/0.28  % Computer : n032.cluster.edu
% 0.09/0.28  % Model    : x86_64 x86_64
% 0.09/0.28  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.09/0.28  % Memory   : 8042.1875MB
% 0.09/0.28  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.09/0.28  % CPULimit   : 300
% 0.09/0.28  % WCLimit    : 300
% 0.09/0.28  % DateTime   : Thu Aug 24 21:15:42 EDT 2023
% 0.09/0.28  % CPUTime    : 
% 0.12/0.37  %----Proving TF0_NAR, FOF, or CNF
% 0.12/0.37  ------- convert to smt2 : /export/starexec/sandbox/tmp/tmp.lMjqtrmE0I/cvc5---1.0.5_28788.p...
% 0.12/0.37  ------- get file name : TPTP file name is LCL261-3
% 0.12/0.37  ------- cvc5-fof : /export/starexec/sandbox/solver/bin/cvc5---1.0.5_28788.smt2...
% 0.12/0.37  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 10...
% 10.25/10.53  --- Run --no-e-matching --full-saturate-quant at 5...
% 15.38/15.59  --- Run --no-e-matching --enum-inst-sum --full-saturate-quant at 5...
% 20.39/20.64  --- Run --finite-model-find --uf-ss=no-minimal at 5...
% 25.40/25.67  --- Run --multi-trigger-when-single --full-saturate-quant at 5...
% 30.51/30.78  --- Run --trigger-sel=max --full-saturate-quant at 5...
% 35.58/35.81  --- Run --multi-trigger-when-single --multi-trigger-priority --full-saturate-quant at 5...
% 40.71/40.99  --- Run --multi-trigger-cache --full-saturate-quant at 5...
% 43.50/43.69  % SZS status Unsatisfiable for LCL261-3
% 43.50/43.69  % SZS output start Proof for LCL261-3
% 43.50/43.69  (
% 43.50/43.69  (let ((_let_1 (tptp.and tptp.p tptp.q))) (let ((_let_2 (tptp.not tptp.q))) (let ((_let_3 (tptp.not tptp.p))) (let ((_let_4 (tptp.or _let_3 (tptp.or _let_2 _let_1)))) (let ((_let_5 (tptp.theorem _let_4))) (let ((_let_6 (not _let_5))) (let ((_let_7 (forall ((P $$unsorted) (Q $$unsorted)) (= (tptp.and P Q) (tptp.not (tptp.or (tptp.not P) (tptp.not Q))))))) (let ((_let_8 (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.theorem X) (not (tptp.theorem (tptp.implies Y X))) (not (tptp.theorem Y)))))) (let ((_let_9 (forall ((X $$unsorted)) (or (tptp.theorem X) (not (tptp.axiom X)))))) (let ((_let_10 (forall ((X $$unsorted) (Y $$unsorted)) (= (tptp.implies X Y) (tptp.or (tptp.not X) Y))))) (let ((_let_11 (forall ((A $$unsorted) (B $$unsorted) (C $$unsorted)) (tptp.axiom (tptp.implies (tptp.implies A B) (tptp.implies (tptp.or C A) (tptp.or C B))))))) (let ((_let_12 (forall ((A $$unsorted) (B $$unsorted) (C $$unsorted)) (tptp.axiom (tptp.implies (tptp.or A (tptp.or B C)) (tptp.or B (tptp.or A C))))))) (let ((_let_13 (forall ((A $$unsorted) (B $$unsorted)) (tptp.axiom (tptp.implies (tptp.or A B) (tptp.or B A)))))) (let ((_let_14 (tptp.or _let_3 _let_2))) (let ((_let_15 (tptp.not _let_14))) (let ((_let_16 (= _let_1 _let_15))) (let ((_let_17 (tptp.or _let_3 _let_1))) (let ((_let_18 (tptp.implies (tptp.or _let_1 _let_3) _let_17))) (let ((_let_19 (tptp.theorem _let_18))) (let ((_let_20 (tptp.or _let_15 _let_3))) (let ((_let_21 (tptp.implies _let_20 _let_17))) (let ((_let_22 (tptp.theorem _let_21))) (let ((_let_23 (_let_7))) (let ((_let_24 (ASSUME :args _let_23))) (let ((_let_25 (tptp.axiom _let_18))) (let ((_let_26 (not _let_25))) (let ((_let_27 (or _let_19 _let_26))) (let ((_let_28 (_let_9))) (let ((_let_29 (ASSUME :args _let_28))) (let ((_let_30 ((not (= (tptp.axiom X) false))))) (let ((_let_31 (_let_13))) (let ((_let_32 (ASSUME :args _let_31))) (let ((_let_33 (not _let_22))) (let ((_let_34 (tptp.or _let_2 _let_17))) (let ((_let_35 (tptp.or _let_2 _let_20))) (let ((_let_36 (tptp.implies _let_35 _let_34))) (let ((_let_37 (tptp.implies _let_21 _let_36))) (let ((_let_38 (tptp.theorem _let_37))) (let ((_let_39 (not _let_38))) (let ((_let_40 (tptp.theorem _let_36))) (let ((_let_41 (or _let_40 _let_39 _let_33))) (let ((_let_42 (_let_8))) (let ((_let_43 (ASSUME :args _let_42))) (let ((_let_44 ((tptp.implies Y X)))) (let ((_let_45 (tptp.axiom _let_37))) (let ((_let_46 (not _let_45))) (let ((_let_47 (or _let_38 _let_46))) (let ((_let_48 (_let_11))) (let ((_let_49 (ASSUME :args _let_48))) (let ((_let_50 (tptp.theorem _let_35))) (let ((_let_51 (not _let_50))) (let ((_let_52 (not _let_40))) (let ((_let_53 (tptp.theorem _let_34))) (let ((_let_54 (or _let_53 _let_52 _let_51))) (let ((_let_55 (tptp.or _let_2 _let_3))) (let ((_let_56 (tptp.or _let_15 _let_55))) (let ((_let_57 (tptp.theorem _let_56))) (let ((_let_58 (not _let_57))) (let ((_let_59 (tptp.implies _let_56 _let_35))) (let ((_let_60 (tptp.theorem _let_59))) (let ((_let_61 (not _let_60))) (let ((_let_62 (or _let_50 _let_61 _let_58))) (let ((_let_63 (tptp.axiom _let_59))) (let ((_let_64 (not _let_63))) (let ((_let_65 (or _let_60 _let_64))) (let ((_let_66 (_let_12))) (let ((_let_67 (ASSUME :args _let_66))) (let ((_let_68 (tptp.implies _let_14 _let_55))) (let ((_let_69 (= _let_68 _let_56))) (let ((_let_70 (tptp.theorem _let_68))) (let ((_let_71 (_let_10))) (let ((_let_72 (ASSUME :args _let_71))) (let ((_let_73 (tptp.axiom _let_68))) (let ((_let_74 (not _let_73))) (let ((_let_75 (or _let_70 _let_74))) (let ((_let_76 (and _let_69 _let_70))) (let ((_let_77 (ASSUME :args (_let_70)))) (let ((_let_78 (APPLY_UF tptp.theorem))) (let ((_let_79 (ASSUME :args (_let_69)))) (let ((_let_80 (not _let_53))) (let ((_let_81 (tptp.implies _let_34 _let_4))) (let ((_let_82 (tptp.theorem _let_81))) (let ((_let_83 (not _let_82))) (let ((_let_84 (or _let_5 _let_83 _let_80))) (let ((_let_85 (tptp.axiom _let_81))) (let ((_let_86 (not _let_85))) (let ((_let_87 (or _let_82 _let_86))) (let ((_let_88 (ASSUME :args (_let_33)))) (let ((_let_89 (ASSUME :args (_let_16)))) (let ((_let_90 (ASSUME :args (_let_19)))) (SCOPE (SCOPE (MACRO_RESOLUTION_TRUST (EQ_RESOLVE (NOT_AND (MACRO_SR_PRED_TRANSFORM (SCOPE (AND_INTRO _let_88 _let_89 _let_90) :args (_let_16 _let_19 _let_33)) (SCOPE (MACRO_SR_PRED_ELIM (TRANS (SYMM (TRUE_INTRO _let_90)) (CONG (CONG (CONG (SYMM (SYMM _let_89)) (REFL :args (_let_3)) :args (APPLY_UF tptp.or)) (REFL :args (_let_17)) :args (APPLY_UF tptp.implies)) :args _let_78) (FALSE_INTRO _let_88))) :args (_let_33 _let_16 _let_19)) :args ((not (and _let_16 _let_19 _let_33)) SB_LITERAL))) (CONG (REFL :args ((not _let_16))) (REFL :args ((not _let_19))) (MACRO_SR_PRED_INTRO :args ((= (not _let_33) _let_22))) :args (or))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_41)) :args ((or _let_40 _let_39 _let_33 (not _let_41)))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_54)) :args ((or _let_53 _let_51 _let_52 (not _let_54)))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_84)) :args ((or _let_5 _let_83 _let_80 (not _let_84)))) (ASSUME :args (_let_6)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_87)) :args ((or _let_86 _let_82 (not _let_87)))) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_67 :args (_let_2 _let_3 _let_1 QUANTIFIERS_INST_E_MATCHING ((tptp.or B (tptp.or A C))))) :args _let_66)) _let_67 :args (_let_85 false _let_12)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_29 :args (_let_81 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_30)) :args _let_28)) _let_29 :args (_let_87 false _let_9)) :args (_let_82 false _let_85 false _let_87)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_43 :args (_let_4 _let_34 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_44)) :args _let_42)) _let_43 :args (_let_84 false _let_8)) :args (_let_80 true _let_5 false _let_82 false _let_84)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_62)) :args ((or _let_58 _let_50 _let_61 (not _let_62)))) (MACRO_RESOLUTION_TRUST (REORDERING (RESOLUTION (CNF_AND_NEG :args (_let_76)) (IMPLIES_ELIM (SCOPE (MODUS_PONENS (AND_INTRO _let_77 _let_79) (SCOPE (TRUE_ELIM (TRANS (CONG (SYMM _let_79) :args _let_78) (TRUE_INTRO _let_77))) :args (_let_70 _let_69))) :args (_let_69 _let_70))) :args (true _let_76)) :args ((or (not _let_70) (not _let_69) _let_57))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_75)) :args ((or _let_74 _let_70 (not _let_75)))) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_32 :args (_let_3 _let_2 QUANTIFIERS_INST_E_MATCHING_SIMPLE ((tptp.or A B)))) :args _let_31)) _let_32 :args (_let_73 false _let_13)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_29 :args (_let_68 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_30)) :args _let_28)) _let_29 :args (_let_75 false _let_9)) :args (_let_70 false _let_73 false _let_75)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_72 :args (_let_14 _let_55 QUANTIFIERS_INST_E_MATCHING_SIMPLE ((tptp.implies X Y)))) :args _let_71)) _let_72 :args (_let_69 false _let_10)) :args (_let_57 false _let_70 false _let_69)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_65)) :args ((or _let_64 _let_60 (not _let_65)))) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_67 :args (_let_15 _let_2 _let_3 QUANTIFIERS_INST_E_MATCHING ((tptp.or A (tptp.or B C))))) :args _let_66)) _let_67 :args (_let_63 false _let_12)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_29 :args (_let_59 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_30)) :args _let_28)) _let_29 :args (_let_65 false _let_9)) :args (_let_60 false _let_63 false _let_65)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_43 :args (_let_35 _let_56 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_44)) :args _let_42)) _let_43 :args (_let_62 false _let_8)) :args (_let_50 false _let_57 false _let_60 false _let_62)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_43 :args (_let_34 _let_35 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_44)) :args _let_42)) _let_43 :args (_let_54 false _let_8)) :args (_let_52 true _let_53 false _let_50 false _let_54)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_47)) :args ((or _let_46 _let_38 (not _let_47)))) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_49 :args (_let_20 _let_17 _let_2 QUANTIFIERS_INST_E_MATCHING_MT ((tptp.or C A) (tptp.or C B)))) :args _let_48)) _let_49 :args (_let_45 false _let_11)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_29 :args (_let_37 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_30)) :args _let_28)) _let_29 :args (_let_47 false _let_9)) :args (_let_38 false _let_45 false _let_47)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_43 :args (_let_36 _let_21 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_44)) :args _let_42)) _let_43 :args (_let_41 false _let_8)) :args (_let_33 true _let_40 false _let_38 false _let_41)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_27)) :args ((or _let_26 _let_19 (not _let_27)))) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_32 :args (_let_1 _let_3 QUANTIFIERS_INST_E_MATCHING_SIMPLE ((tptp.or B A)))) :args _let_31)) _let_32 :args (_let_25 false _let_13)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_29 :args (_let_18 QUANTIFIERS_INST_E_MATCHING_SIMPLE _let_30)) :args _let_28)) _let_29 :args (_let_27 false _let_9)) :args (_let_19 false _let_25 false _let_27)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_24 :args (tptp.p tptp.q QUANTIFIERS_INST_E_MATCHING_SIMPLE ((tptp.and P Q)))) :args _let_23)) _let_24 :args (_let_16 false _let_7)) :args (false true _let_22 false _let_19 false _let_16)) :args ((forall ((A $$unsorted)) (tptp.axiom (tptp.implies (tptp.or A A) A))) (forall ((A $$unsorted) (B $$unsorted)) (tptp.axiom (tptp.implies A (tptp.or B A)))) _let_13 _let_12 _let_11 _let_10 _let_9 _let_8 _let_7 _let_6)))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))
% 43.50/43.69  )
% 43.52/43.70  % SZS output end Proof for LCL261-3
% 43.52/43.71  % cvc5---1.0.5 exiting
% 43.52/43.71  % cvc5---1.0.5 exiting
%------------------------------------------------------------------------------