TSTP Solution File: SYN630-1 by cvc5---1.0.5

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : cvc5---1.0.5
% Problem  : SYN630-1 : TPTP v8.1.2. Released v2.5.0.
% Transfm  : none
% Format   : tptp
% Command  : do_cvc5 %s %d

% Computer : n001.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 : Fri Sep  1 02:04:23 EDT 2023

% Result   : Unsatisfiable 0.20s 0.54s
% Output   : Proof 0.20s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.13  % Problem    : SYN630-1 : TPTP v8.1.2. Released v2.5.0.
% 0.00/0.14  % Command    : do_cvc5 %s %d
% 0.14/0.35  % Computer : n001.cluster.edu
% 0.14/0.35  % Model    : x86_64 x86_64
% 0.14/0.35  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.14/0.35  % Memory   : 8042.1875MB
% 0.14/0.35  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.14/0.35  % CPULimit   : 300
% 0.14/0.35  % WCLimit    : 300
% 0.14/0.35  % DateTime   : Sat Aug 26 21:33:46 EDT 2023
% 0.14/0.35  % CPUTime    : 
% 0.20/0.48  %----Proving TF0_NAR, FOF, or CNF
% 0.20/0.49  ------- convert to smt2 : /export/starexec/sandbox/tmp/tmp.J0tdzJgJuq/cvc5---1.0.5_22956.p...
% 0.20/0.50  ------- get file name : TPTP file name is SYN630-1
% 0.20/0.50  ------- cvc5-fof : /export/starexec/sandbox/solver/bin/cvc5---1.0.5_22956.smt2...
% 0.20/0.50  --- Run --decision=internal --simplification=none --no-inst-no-entail --no-cbqi --full-saturate-quant at 10...
% 0.20/0.54  % SZS status Unsatisfiable for SYN630-1
% 0.20/0.54  % SZS output start Proof for SYN630-1
% 0.20/0.54  (
% 0.20/0.54  (let ((_let_1 (forall ((X19 $$unsorted) (X20 $$unsorted) (X21 $$unsorted) (X18 $$unsorted) (X23 $$unsorted) (X22 $$unsorted) (X24 $$unsorted)) (let ((_let_1 (tptp.f11 tptp.c29))) (let ((_let_2 (tptp.f9 (tptp.f10 _let_1)))) (let ((_let_3 (tptp.f16 _let_2))) (let ((_let_4 (tptp.f9 _let_1))) (or (tptp.p4 (tptp.f5 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X23) (not (tptp.p21 X22 _let_2)) (not (tptp.p21 X23 (tptp.f12 _let_2 X20))) (not (tptp.p22 (tptp.f12 _let_2 (tptp.f18 X20 _let_4)) X23)) (not (tptp.p3 X18 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 _let_4)) X22) (tptp.f13 (tptp.f15 _let_3 X24) (tptp.f14 (tptp.f16 X23) (tptp.f15 _let_3 X21)))))))))))))) (let ((_let_2 (tptp.f11 tptp.c29))) (let ((_let_3 (tptp.f9 (tptp.f10 _let_2)))) (let ((_let_4 (tptp.f16 _let_3))) (let ((_let_5 (tptp.f9 _let_2))) (let ((_let_6 (tptp.p3 tptp.c26 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 _let_5)) tptp.c28) (tptp.f13 (tptp.f15 _let_4 tptp.c30) (tptp.f14 (tptp.f16 tptp.c27) (tptp.f15 _let_4 tptp.c25))))))) (let ((_let_7 (tptp.p22 (tptp.f12 _let_3 (tptp.f18 tptp.c24 _let_5)) tptp.c27))) (let ((_let_8 (tptp.p4 (tptp.f5 (tptp.f7 tptp.c23 (tptp.f8 tptp.c24 tptp.c25)) tptp.c26) tptp.c27))) (let ((_let_9 (not _let_8))) (let ((_let_10 (tptp.p21 tptp.c27 (tptp.f12 _let_3 tptp.c24)))) (let ((_let_11 (tptp.p21 tptp.c28 _let_3))) (let ((_let_12 (not _let_6))) (let ((_let_13 (not _let_7))) (let ((_let_14 (not _let_10))) (let ((_let_15 (not _let_11))) (let ((_let_16 (or _let_8 _let_15 _let_14 _let_13 _let_12))) (let ((_let_17 (_let_1))) (let ((_let_18 (ASSUME :args _let_17))) (let ((_let_19 (not _let_16))) (SCOPE (SCOPE (MACRO_RESOLUTION_TRUST (IMPLIES_ELIM (SCOPE (INSTANTIATE _let_18 :args (tptp.c23 tptp.c24 tptp.c25 tptp.c26 tptp.c27 tptp.c28 tptp.c30 QUANTIFIERS_INST_E_MATCHING ((not (= (tptp.p4 (tptp.f5 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X23) true)) (not (= (tptp.p21 X22 _let_3) false)) (tptp.f15 _let_4 X24)))) :args _let_17)) (MACRO_RESOLUTION_TRUST (REORDERING (CNF_OR_POS :args (_let_16)) :args ((or _let_8 _let_15 _let_14 _let_13 _let_12 _let_19))) (ASSUME :args (_let_9)) (ASSUME :args (_let_11)) (ASSUME :args (_let_10)) (ASSUME :args (_let_7)) (ASSUME :args (_let_6)) :args (_let_19 true _let_8 false _let_11 false _let_10 false _let_7 false _let_6)) _let_18 :args (false true _let_16 false _let_1)) :args ((forall ((X0 $$unsorted)) (tptp.p2 X0 X0)) (forall ((X70 $$unsorted)) (tptp.p6 X70 X70)) (forall ((X41 $$unsorted)) (tptp.p4 X41 X41)) (forall ((X15 $$unsorted)) (tptp.p3 X15 X15)) _let_11 _let_10 (forall ((X68 $$unsorted) (X69 $$unsorted)) (or (tptp.p4 (tptp.f9 X68) (tptp.f9 X69)) (not (tptp.p4 X68 X69)))) (forall ((X37 $$unsorted) (X38 $$unsorted)) (or (tptp.p3 (tptp.f16 X37) (tptp.f16 X38)) (not (tptp.p4 X37 X38)))) (forall ((X39 $$unsorted) (X40 $$unsorted)) (or (tptp.p3 (tptp.f17 X39) (tptp.f17 X40)) (not (tptp.p3 X39 X40)))) (forall ((X44 $$unsorted) (X45 $$unsorted)) (or (tptp.p4 (tptp.f10 X44) (tptp.f10 X45)) (not (tptp.p4 X44 X45)))) (forall ((X46 $$unsorted) (X47 $$unsorted)) (or (tptp.p4 (tptp.f11 X46) (tptp.f11 X47)) (not (tptp.p4 X46 X47)))) _let_9 (forall ((X1 $$unsorted) (X2 $$unsorted) (X0 $$unsorted)) (or (tptp.p2 X1 X2) (not (tptp.p2 X0 X1)) (not (tptp.p2 X0 X2)))) (forall ((X71 $$unsorted) (X72 $$unsorted) (X70 $$unsorted)) (or (tptp.p6 X71 X72) (not (tptp.p6 X70 X71)) (not (tptp.p6 X70 X72)))) (forall ((X42 $$unsorted) (X43 $$unsorted) (X41 $$unsorted)) (or (tptp.p4 X42 X43) (not (tptp.p4 X41 X42)) (not (tptp.p4 X41 X43)))) (forall ((X16 $$unsorted) (X17 $$unsorted) (X15 $$unsorted)) (or (tptp.p3 X16 X17) (not (tptp.p3 X15 X16)) (not (tptp.p3 X15 X17)))) _let_7 (forall ((X7 $$unsorted) (X8 $$unsorted) (X9 $$unsorted) (X10 $$unsorted)) (or (tptp.p21 X7 X8) (not (tptp.p4 X9 X7)) (not (tptp.p4 X10 X8)) (not (tptp.p21 X9 X10)))) (forall ((X11 $$unsorted) (X12 $$unsorted) (X13 $$unsorted) (X14 $$unsorted)) (or (tptp.p22 X11 X12) (not (tptp.p4 X13 X11)) (not (tptp.p4 X14 X12)) (not (tptp.p22 X13 X14)))) (forall ((X73 $$unsorted) (X74 $$unsorted) (X75 $$unsorted) (X76 $$unsorted)) (or (tptp.p6 (tptp.f8 X73 X74) (tptp.f8 X75 X76)) (not (tptp.p4 X74 X76)) (not (tptp.p4 X73 X75)))) (forall ((X3 $$unsorted) (X4 $$unsorted) (X5 $$unsorted) (X6 $$unsorted)) (or (tptp.p2 (tptp.f7 X3 X4) (tptp.f7 X5 X6)) (not (tptp.p4 X3 X5)) (not (tptp.p6 X4 X6)))) (forall ((X25 $$unsorted) (X26 $$unsorted) (X27 $$unsorted) (X28 $$unsorted)) (or (tptp.p3 (tptp.f13 X25 X26) (tptp.f13 X27 X28)) (not (tptp.p3 X25 X27)) (not (tptp.p3 X26 X28)))) (forall ((X29 $$unsorted) (X30 $$unsorted) (X31 $$unsorted) (X32 $$unsorted)) (or (tptp.p3 (tptp.f14 X29 X30) (tptp.f14 X31 X32)) (not (tptp.p3 X29 X31)) (not (tptp.p3 X30 X32)))) (forall ((X33 $$unsorted) (X34 $$unsorted) (X35 $$unsorted) (X36 $$unsorted)) (or (tptp.p3 (tptp.f15 X33 X34) (tptp.f15 X35 X36)) (not (tptp.p3 X33 X35)) (not (tptp.p4 X34 X36)))) (forall ((X48 $$unsorted) (X49 $$unsorted) (X50 $$unsorted) (X51 $$unsorted)) (or (tptp.p4 (tptp.f12 X48 X49) (tptp.f12 X50 X51)) (not (tptp.p4 X48 X50)) (not (tptp.p4 X49 X51)))) (forall ((X52 $$unsorted) (X53 $$unsorted) (X54 $$unsorted) (X55 $$unsorted)) (or (tptp.p4 (tptp.f18 X52 X53) (tptp.f18 X54 X55)) (not (tptp.p4 X52 X54)) (not (tptp.p4 X53 X55)))) (forall ((X56 $$unsorted) (X57 $$unsorted) (X58 $$unsorted) (X59 $$unsorted)) (or (tptp.p4 (tptp.f19 X56 X57) (tptp.f19 X58 X59)) (not (tptp.p2 X56 X58)) (not (tptp.p3 X57 X59)))) (forall ((X60 $$unsorted) (X61 $$unsorted) (X62 $$unsorted) (X63 $$unsorted)) (or (tptp.p4 (tptp.f20 X60 X61) (tptp.f20 X62 X63)) (not (tptp.p2 X60 X62)) (not (tptp.p3 X61 X63)))) (forall ((X64 $$unsorted) (X65 $$unsorted) (X66 $$unsorted) (X67 $$unsorted)) (or (tptp.p4 (tptp.f5 X64 X65) (tptp.f5 X66 X67)) (not (tptp.p2 X64 X66)) (not (tptp.p3 X65 X67)))) _let_6 (forall ((X19 $$unsorted) (X20 $$unsorted) (X21 $$unsorted) (X18 $$unsorted) (X23 $$unsorted) (X24 $$unsorted) (X22 $$unsorted)) (let ((_let_1 (tptp.f11 tptp.c29))) (let ((_let_2 (tptp.f9 (tptp.f10 _let_1)))) (let ((_let_3 (tptp.f16 _let_2))) (or (tptp.p4 (tptp.f5 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X23) (not (tptp.p4 X24 (tptp.f9 tptp.c29))) (not (tptp.p21 X22 _let_2)) (not (tptp.p21 X23 (tptp.f12 _let_2 X20))) (not (tptp.p3 X18 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 (tptp.f9 _let_1))) X22) (tptp.f13 (tptp.f15 _let_3 X24) (tptp.f14 (tptp.f16 X23) (tptp.f15 _let_3 X21))))))))))) (forall ((X19 $$unsorted) (X20 $$unsorted) (X21 $$unsorted) (X18 $$unsorted) (X24 $$unsorted) (X22 $$unsorted) (X23 $$unsorted)) (let ((_let_1 (tptp.f11 tptp.c29))) (let ((_let_2 (tptp.f9 (tptp.f10 _let_1)))) (let ((_let_3 (tptp.f16 _let_2))) (or (tptp.p4 (tptp.f19 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X24) (not (tptp.p4 X24 (tptp.f9 tptp.c29))) (not (tptp.p21 X22 _let_2)) (not (tptp.p21 X23 (tptp.f12 _let_2 X20))) (not (tptp.p3 X18 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 (tptp.f9 _let_1))) X22) (tptp.f13 (tptp.f15 _let_3 X24) (tptp.f14 (tptp.f16 X23) (tptp.f15 _let_3 X21))))))))))) (forall ((X18 $$unsorted) (X19 $$unsorted) (X20 $$unsorted) (X21 $$unsorted) (X22 $$unsorted) (X24 $$unsorted) (X23 $$unsorted)) (let ((_let_1 (tptp.f11 tptp.c29))) (let ((_let_2 (tptp.f9 (tptp.f10 _let_1)))) (let ((_let_3 (tptp.f16 _let_2))) (let ((_let_4 (tptp.f9 tptp.c29))) (or (tptp.p3 X18 (tptp.f16 _let_4)) (tptp.p4 (tptp.f20 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X22) (not (tptp.p4 X24 _let_4)) (not (tptp.p21 X22 _let_2)) (not (tptp.p21 X23 (tptp.f12 _let_2 X20))) (not (tptp.p3 X18 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 (tptp.f9 _let_1))) X22) (tptp.f13 (tptp.f15 _let_3 X24) (tptp.f14 (tptp.f16 X23) (tptp.f15 _let_3 X21)))))))))))) _let_1 (forall ((X19 $$unsorted) (X20 $$unsorted) (X21 $$unsorted) (X18 $$unsorted) (X24 $$unsorted) (X22 $$unsorted) (X23 $$unsorted)) (let ((_let_1 (tptp.f11 tptp.c29))) (let ((_let_2 (tptp.f9 (tptp.f10 _let_1)))) (let ((_let_3 (tptp.f16 _let_2))) (let ((_let_4 (tptp.f9 _let_1))) (or (tptp.p4 (tptp.f19 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X24) (not (tptp.p21 X22 _let_2)) (not (tptp.p21 X23 (tptp.f12 _let_2 X20))) (not (tptp.p22 (tptp.f12 _let_2 (tptp.f18 X20 _let_4)) X23)) (not (tptp.p3 X18 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 _let_4)) X22) (tptp.f13 (tptp.f15 _let_3 X24) (tptp.f14 (tptp.f16 X23) (tptp.f15 _let_3 X21)))))))))))) (forall ((X18 $$unsorted) (X19 $$unsorted) (X20 $$unsorted) (X21 $$unsorted) (X22 $$unsorted) (X23 $$unsorted) (X24 $$unsorted)) (let ((_let_1 (tptp.f11 tptp.c29))) (let ((_let_2 (tptp.f9 (tptp.f10 _let_1)))) (let ((_let_3 (tptp.f16 _let_2))) (let ((_let_4 (tptp.f9 _let_1))) (or (tptp.p3 X18 (tptp.f16 (tptp.f9 tptp.c29))) (tptp.p4 (tptp.f20 (tptp.f7 X19 (tptp.f8 X20 X21)) X18) X22) (not (tptp.p21 X22 _let_2)) (not (tptp.p21 X23 (tptp.f12 _let_2 X20))) (not (tptp.p22 (tptp.f12 _let_2 (tptp.f18 X20 _let_4)) X23)) (not (tptp.p3 X18 (tptp.f13 (tptp.f15 (tptp.f17 (tptp.f16 _let_4)) X22) (tptp.f13 (tptp.f15 _let_3 X24) (tptp.f14 (tptp.f16 X23) (tptp.f15 _let_3 X21))))))))))))))))))))))))))))))))))
% 0.20/0.54  )
% 0.20/0.55  % SZS output end Proof for SYN630-1
% 0.20/0.55  % cvc5---1.0.5 exiting
% 0.20/0.55  % cvc5---1.0.5 exiting
%------------------------------------------------------------------------------