TSTP Solution File: FLD032-1 by cvc5---1.0.5

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : cvc5---1.0.5
% Problem  : FLD032-1 : TPTP v8.1.2. Bugfixed v2.1.0.
% Transfm  : none
% Format   : tptp
% Command  : do_cvc5 %s %d

% Computer : n005.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 : Wed Aug 30 22:28:17 EDT 2023

% Result   : Unsatisfiable 21.44s 21.71s
% Output   : Proof 21.44s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.07/0.14  % Problem    : FLD032-1 : TPTP v8.1.2. Bugfixed v2.1.0.
% 0.07/0.15  % Command    : do_cvc5 %s %d
% 0.15/0.36  % Computer : n005.cluster.edu
% 0.15/0.36  % Model    : x86_64 x86_64
% 0.15/0.36  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.15/0.36  % Memory   : 8042.1875MB
% 0.15/0.36  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.15/0.36  % CPULimit   : 300
% 0.15/0.36  % WCLimit    : 300
% 0.15/0.36  % DateTime   : Mon Aug 28 00:46:08 EDT 2023
% 0.15/0.36  % CPUTime    : 
% 0.22/0.51  %----Proving TF0_NAR, FOF, or CNF
% 0.22/0.51  ------- convert to smt2 : /export/starexec/sandbox/tmp/tmp.uZx5rAdjNo/cvc5---1.0.5_12756.p...
% 0.22/0.52  ------- get file name : TPTP file name is FLD032-1
% 0.22/0.52  ------- cvc5-fof : /export/starexec/sandbox/solver/bin/cvc5---1.0.5_12756.smt2...
% 0.22/0.53  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 10...
% 10.47/10.66  --- Run --no-e-matching --full-saturate-quant at 5...
% 15.50/15.70  --- Run --no-e-matching --enum-inst-sum --full-saturate-quant at 5...
% 20.49/20.72  --- Run --finite-model-find --uf-ss=no-minimal at 5...
% 21.44/21.71  % SZS status Unsatisfiable for FLD032-1
% 21.44/21.71  % SZS output start Proof for FLD032-1
% 21.44/21.71  (
% 21.44/21.71  (let ((_let_1 (tptp.equalish tptp.a tptp.multiplicative_identity))) (let ((_let_2 (not _let_1))) (let ((_let_3 (tptp.multiplicative_inverse tptp.a))) (let ((_let_4 (tptp.equalish _let_3 tptp.multiplicative_identity))) (let ((_let_5 (tptp.equalish tptp.a tptp.additive_identity))) (let ((_let_6 (not _let_5))) (let ((_let_7 (tptp.defined tptp.a))) (let ((_let_8 (forall ((X $$unsorted) (Z $$unsorted) (Y $$unsorted)) (or (tptp.equalish (tptp.multiply X Z) (tptp.multiply Y Z)) (not (tptp.defined Z)) (not (tptp.equalish X Y)))))) (let ((_let_9 (forall ((X $$unsorted) (Z $$unsorted) (Y $$unsorted)) (or (tptp.equalish X Z) (not (tptp.equalish X Y)) (not (tptp.equalish Y Z)))))) (let ((_let_10 (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.equalish X Y) (not (tptp.equalish Y X)))))) (let ((_let_11 (forall ((X $$unsorted)) (or (tptp.defined (tptp.multiplicative_inverse X)) (not (tptp.defined X)) (tptp.equalish X tptp.additive_identity))))) (let ((_let_12 (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.equalish (tptp.multiply X Y) (tptp.multiply Y X)) (not (tptp.defined X)) (not (tptp.defined Y)))))) (let ((_let_13 (forall ((X $$unsorted)) (or (tptp.equalish (tptp.multiply X (tptp.multiplicative_inverse X)) tptp.multiplicative_identity) (not (tptp.defined X)) (tptp.equalish X tptp.additive_identity))))) (let ((_let_14 (forall ((X $$unsorted)) (or (tptp.equalish (tptp.multiply tptp.multiplicative_identity X) X) (not (tptp.defined X)))))) (let ((_let_15 (tptp.multiply tptp.a _let_3))) (let ((_let_16 (tptp.equalish _let_15 tptp.multiplicative_identity))) (let ((_let_17 (not _let_16))) (let ((_let_18 (tptp.multiply _let_3 tptp.a))) (let ((_let_19 (tptp.equalish _let_18 _let_15))) (let ((_let_20 (not _let_19))) (let ((_let_21 (tptp.equalish _let_18 tptp.multiplicative_identity))) (let ((_let_22 (or _let_21 _let_20 _let_17))) (let ((_let_23 (_let_9))) (let ((_let_24 (ASSUME :args _let_23))) (let ((_let_25 (not _let_22))) (let ((_let_26 (not _let_21))) (let ((_let_27 (tptp.equalish tptp.multiplicative_identity _let_18))) (let ((_let_28 (or _let_27 _let_26))) (let ((_let_29 (_let_10))) (let ((_let_30 (ASSUME :args _let_29))) (let ((_let_31 (tptp.multiply tptp.multiplicative_identity tptp.a))) (let ((_let_32 (tptp.equalish _let_18 _let_31))) (let ((_let_33 (not _let_32))) (let ((_let_34 (not _let_27))) (let ((_let_35 (tptp.equalish tptp.multiplicative_identity _let_31))) (let ((_let_36 (or _let_35 _let_34 _let_33))) (let ((_let_37 (not _let_4))) (let ((_let_38 (not _let_7))) (let ((_let_39 (or _let_32 _let_38 _let_37))) (let ((_let_40 (_let_8))) (let ((_let_41 (ASSUME :args _let_40))) (let ((_let_42 (ASSUME :args (_let_7)))) (let ((_let_43 (tptp.equalish _let_31 tptp.a))) (let ((_let_44 (not _let_43))) (let ((_let_45 (not _let_35))) (let ((_let_46 (tptp.equalish tptp.multiplicative_identity tptp.a))) (let ((_let_47 (or _let_46 _let_45 _let_44))) (let ((_let_48 (or _let_43 _let_38))) (let ((_let_49 (_let_14))) (let ((_let_50 (ASSUME :args _let_49))) (let ((_let_51 (tptp.a QUANTIFIERS_INST_FMF_FMC_EXH))) (let ((_let_52 (not _let_46))) (let ((_let_53 (or _let_1 _let_52))) (let ((_let_54 (tptp.defined _let_3))) (let ((_let_55 (not _let_54))) (let ((_let_56 (or _let_19 _let_55 _let_38))) (let ((_let_57 (_let_12))) (let ((_let_58 (ASSUME :args _let_57))) (let ((_let_59 (or _let_54 _let_38 _let_5))) (let ((_let_60 (_let_11))) (let ((_let_61 (ASSUME :args _let_60))) (let ((_let_62 (ASSUME :args (_let_6)))) (let ((_let_63 (or _let_16 _let_38 _let_5))) (let ((_let_64 (_let_13))) (let ((_let_65 (ASSUME :args _let_64))) (SCOPE (SCOPE (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_24 :args (_let_18 tptp.multiplicative_identity _let_15 QUANTIFIERS_INST_CBQI_CONFLICT)) :args _let_23)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_22)) :args ((or _let_17 _let_20 _let_21 _let_25))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_63)) :args ((or _let_5 _let_38 _let_16 (not _let_63)))) _let_62 _let_42 (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_65 :args _let_51) :args _let_64)) _let_65 :args (_let_63 false _let_13)) :args (_let_16 true _let_5 false _let_7 false _let_63)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_56)) :args ((or _let_38 _let_55 _let_19 (not _let_56)))) _let_42 (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_59)) :args ((or _let_5 _let_38 _let_54 (not _let_59)))) _let_62 _let_42 (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_61 :args (tptp.a QUANTIFIERS_INST_CBQI_CONFLICT)) :args _let_60)) _let_61 :args (_let_59 false _let_11)) :args (_let_54 true _let_5 false _let_7 false _let_59)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_58 :args (_let_3 tptp.a QUANTIFIERS_INST_FMF_FMC_EXH)) :args _let_57)) _let_58 :args (_let_56 false _let_12)) :args (_let_19 false _let_7 false _let_54 false _let_56)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_28)) :args ((or _let_27 _let_26 (not _let_28)))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_36)) :args ((or _let_35 _let_33 _let_34 (not _let_36)))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_47)) :args ((or _let_46 _let_44 _let_45 (not _let_47)))) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_53)) :args ((or _let_1 _let_52 (not _let_53)))) (ASSUME :args (_let_2)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_30 :args (tptp.a tptp.multiplicative_identity QUANTIFIERS_INST_CBQI_PROP)) :args _let_29)) _let_30 :args (_let_53 false _let_10)) :args (_let_52 true _let_1 false _let_53)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_48)) :args ((or _let_38 _let_43 (not _let_48)))) _let_42 (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_50 :args _let_51) :args _let_49)) _let_50 :args (_let_48 false _let_14)) :args (_let_43 false _let_7 false _let_48)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_24 :args (tptp.multiplicative_identity tptp.a _let_31 QUANTIFIERS_INST_CBQI_CONFLICT)) :args _let_23)) _let_24 :args (_let_47 false _let_9)) :args (_let_45 true _let_46 false _let_43 false _let_47)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_39)) :args ((or _let_38 _let_37 _let_32 (not _let_39)))) _let_42 (ASSUME :args (_let_4)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_41 :args (_let_3 tptp.a tptp.multiplicative_identity QUANTIFIERS_INST_FMF_FMC_EXH)) :args _let_40)) _let_41 :args (_let_39 false _let_8)) :args (_let_32 false _let_7 false _let_4 false _let_39)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_24 :args (tptp.multiplicative_identity _let_31 _let_18 QUANTIFIERS_INST_CBQI_CONFLICT)) :args _let_23)) _let_24 :args (_let_36 false _let_9)) :args (_let_34 true _let_35 false _let_32 false _let_36)) (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_30 :args (tptp.multiplicative_identity _let_18 QUANTIFIERS_INST_CBQI_CONFLICT)) :args _let_29)) _let_30 :args (_let_28 false _let_10)) :args (_let_26 true _let_27 false _let_28)) :args (_let_25 false _let_16 false _let_19 true _let_21)) _let_24 :args (false true _let_22 false _let_9)) :args ((forall ((X $$unsorted) (Y $$unsorted) (Z $$unsorted)) (or (tptp.equalish (tptp.add X (tptp.add Y Z)) (tptp.add (tptp.add X Y) Z)) (not (tptp.defined X)) (not (tptp.defined Y)) (not (tptp.defined Z)))) (forall ((X $$unsorted)) (or (tptp.equalish (tptp.add tptp.additive_identity X) X) (not (tptp.defined X)))) (forall ((X $$unsorted)) (or (tptp.equalish (tptp.add X (tptp.additive_inverse X)) tptp.additive_identity) (not (tptp.defined X)))) (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.equalish (tptp.add X Y) (tptp.add Y X)) (not (tptp.defined X)) (not (tptp.defined Y)))) (forall ((X $$unsorted) (Y $$unsorted) (Z $$unsorted)) (or (tptp.equalish (tptp.multiply X (tptp.multiply Y Z)) (tptp.multiply (tptp.multiply X Y) Z)) (not (tptp.defined X)) (not (tptp.defined Y)) (not (tptp.defined Z)))) _let_14 _let_13 _let_12 (forall ((X $$unsorted) (Z $$unsorted) (Y $$unsorted)) (or (tptp.equalish (tptp.add (tptp.multiply X Z) (tptp.multiply Y Z)) (tptp.multiply (tptp.add X Y) Z)) (not (tptp.defined X)) (not (tptp.defined Y)) (not (tptp.defined Z)))) (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.defined (tptp.add X Y)) (not (tptp.defined X)) (not (tptp.defined Y)))) (tptp.defined tptp.additive_identity) (forall ((X $$unsorted)) (or (tptp.defined (tptp.additive_inverse X)) (not (tptp.defined X)))) (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.defined (tptp.multiply X Y)) (not (tptp.defined X)) (not (tptp.defined Y)))) (tptp.defined tptp.multiplicative_identity) _let_11 (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.equalish X Y) (not (tptp.less_or_equal X Y)) (not (tptp.less_or_equal Y X)))) (forall ((X $$unsorted) (Z $$unsorted) (Y $$unsorted)) (or (tptp.less_or_equal X Z) (not (tptp.less_or_equal X Y)) (not (tptp.less_or_equal Y Z)))) (forall ((X $$unsorted) (Y $$unsorted)) (or (tptp.less_or_equal X Y) (tptp.less_or_equal Y X) (not (tptp.defined X)) (not (tptp.defined Y)))) (forall ((X $$unsorted) (Z $$unsorted) (Y $$unsorted)) (or (tptp.less_or_equal (tptp.add X Z) (tptp.add Y Z)) (not (tptp.defined Z)) (not (tptp.less_or_equal X Y)))) (forall ((Y $$unsorted) (Z $$unsorted)) (or (tptp.less_or_equal tptp.additive_identity (tptp.multiply Y Z)) (not (tptp.less_or_equal tptp.additive_identity Y)) (not (tptp.less_or_equal tptp.additive_identity Z)))) (forall ((X $$unsorted)) (or (tptp.equalish X X) (not (tptp.defined X)))) _let_10 _let_9 (forall ((X $$unsorted) (Z $$unsorted) (Y $$unsorted)) (or (tptp.equalish (tptp.add X Z) (tptp.add Y Z)) (not (tptp.defined Z)) (not (tptp.equalish X Y)))) _let_8 (forall ((Y $$unsorted) (Z $$unsorted) (X $$unsorted)) (or (tptp.less_or_equal Y Z) (not (tptp.less_or_equal X Z)) (not (tptp.equalish X Y)))) (not (tptp.equalish tptp.additive_identity tptp.multiplicative_identity)) _let_7 _let_6 _let_4 _let_2))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))))
% 21.44/21.71  )
% 21.44/21.71  % SZS output end Proof for FLD032-1
% 21.44/21.72  % cvc5---1.0.5 exiting
% 21.44/21.72  % cvc5---1.0.5 exiting
%------------------------------------------------------------------------------