TSTP Solution File: ARI381_1 by Princess---230619

View Problem - Process Solution

%------------------------------------------------------------------------------
% File     : Princess---230619
% Problem  : ARI381_1 : TPTP v8.1.2. Released v5.0.0.
% Transfm  : none
% Format   : tptp
% Command  : princess -inputFormat=tptp +threads -portfolio=casc +printProof -timeoutSec=%d %s

% Computer : n019.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 17:47:50 EDT 2023

% Result   : Theorem 6.02s 1.58s
% Output   : Proof 9.83s
% Verified : 
% SZS Type : -

% Comments : 
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.07/0.12  % Problem  : ARI381_1 : TPTP v8.1.2. Released v5.0.0.
% 0.07/0.13  % Command  : princess -inputFormat=tptp +threads -portfolio=casc +printProof -timeoutSec=%d %s
% 0.13/0.34  % Computer : n019.cluster.edu
% 0.13/0.34  % Model    : x86_64 x86_64
% 0.13/0.34  % CPU      : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.13/0.34  % Memory   : 8042.1875MB
% 0.13/0.34  % OS       : Linux 3.10.0-693.el7.x86_64
% 0.13/0.34  % CPULimit : 300
% 0.13/0.34  % WCLimit  : 300
% 0.13/0.34  % DateTime : Tue Aug 29 17:55:13 EDT 2023
% 0.13/0.34  % CPUTime  : 
% 0.21/0.61  ________       _____
% 0.21/0.61  ___  __ \_________(_)________________________________
% 0.21/0.61  __  /_/ /_  ___/_  /__  __ \  ___/  _ \_  ___/_  ___/
% 0.21/0.61  _  ____/_  /   _  / _  / / / /__ /  __/(__  )_(__  )
% 0.21/0.61  /_/     /_/    /_/  /_/ /_/\___/ \___//____/ /____/
% 0.21/0.61  
% 0.21/0.61  A Theorem Prover for First-Order Logic modulo Linear Integer Arithmetic
% 0.21/0.61  (2023-06-19)
% 0.21/0.61  
% 0.21/0.61  (c) Philipp Rümmer, 2009-2023
% 0.21/0.61  Contributors: Peter Backeman, Peter Baumgartner, Angelo Brillout, Zafer Esen,
% 0.21/0.61                Amanda Stjerna.
% 0.21/0.61  Free software under BSD-3-Clause.
% 0.21/0.61  
% 0.21/0.61  For more information, visit http://www.philipp.ruemmer.org/princess.shtml
% 0.21/0.61  
% 0.21/0.61  Loading /export/starexec/sandbox2/benchmark/theBenchmark.p ...
% 0.21/0.63  Running up to 7 provers in parallel.
% 0.21/0.64  Prover 0: Options:  +triggersInConjecture +genTotalityAxioms +tightFunctionScopes -clausifier=simple -reverseFunctionalityPropagation -boolFunsAsPreds -triggerStrategy=allUni -realRatSaturationRounds=0 -ignoreQuantifiers -constructProofs=never -generateTriggers=all -randomSeed=1042961893
% 0.21/0.64  Prover 1: Options:  +triggersInConjecture -genTotalityAxioms -tightFunctionScopes -clausifier=none -reverseFunctionalityPropagation -boolFunsAsPreds -triggerStrategy=maximal -realRatSaturationRounds=0 +ignoreQuantifiers -constructProofs=always -generateTriggers=all -randomSeed=-1571432423
% 0.21/0.64  Prover 2: Options:  +triggersInConjecture +genTotalityAxioms -tightFunctionScopes -clausifier=simple +reverseFunctionalityPropagation +boolFunsAsPreds -triggerStrategy=allMinimalAndEmpty -realRatSaturationRounds=1 -ignoreQuantifiers -constructProofs=never -generateTriggers=all -randomSeed=-1065072994
% 0.21/0.64  Prover 3: Options:  +triggersInConjecture -genTotalityAxioms -tightFunctionScopes -clausifier=none -reverseFunctionalityPropagation -boolFunsAsPreds -triggerStrategy=maximal -realRatSaturationRounds=1 +ignoreQuantifiers -constructProofs=never -generateTriggers=all -randomSeed=1922548996
% 0.21/0.64  Prover 4: Options:  +triggersInConjecture -genTotalityAxioms -tightFunctionScopes -clausifier=simple -reverseFunctionalityPropagation -boolFunsAsPreds -triggerStrategy=allUni -realRatSaturationRounds=0 +ignoreQuantifiers -constructProofs=always -generateTriggers=all -randomSeed=1868514696
% 0.21/0.64  Prover 5: Options:  +triggersInConjecture -genTotalityAxioms +tightFunctionScopes -clausifier=none +reverseFunctionalityPropagation +boolFunsAsPreds -triggerStrategy=allMaximal -realRatSaturationRounds=1 -ignoreQuantifiers -constructProofs=never -generateTriggers=complete -randomSeed=1259561288
% 0.21/0.64  Prover 6: Options:  -triggersInConjecture -genTotalityAxioms +tightFunctionScopes -clausifier=none +reverseFunctionalityPropagation -boolFunsAsPreds -triggerStrategy=maximalOutermost -realRatSaturationRounds=0 -ignoreQuantifiers -constructProofs=never -generateTriggers=all -randomSeed=-1399714365
% 1.63/0.93  Prover 5: Warning: Problem contains reals, using incomplete axiomatisation
% 1.63/0.93  Prover 6: Warning: Problem contains reals, using incomplete axiomatisation
% 1.63/0.93  Prover 0: Warning: Problem contains reals, using incomplete axiomatisation
% 1.63/0.93  Prover 4: Warning: Problem contains reals, using incomplete axiomatisation
% 1.63/0.93  Prover 3: Warning: Problem contains reals, using incomplete axiomatisation
% 1.63/0.93  Prover 1: Warning: Problem contains reals, using incomplete axiomatisation
% 1.63/0.93  Prover 2: Warning: Problem contains reals, using incomplete axiomatisation
% 2.29/1.00  Prover 4: Preprocessing ...
% 2.41/1.01  Prover 1: Preprocessing ...
% 2.47/1.07  Prover 6: Preprocessing ...
% 2.47/1.07  Prover 0: Preprocessing ...
% 3.14/1.13  Prover 3: Preprocessing ...
% 3.14/1.13  Prover 5: Preprocessing ...
% 3.14/1.13  Prover 2: Preprocessing ...
% 6.02/1.54  Prover 6: Constructing countermodel ...
% 6.02/1.55  Prover 1: Constructing countermodel ...
% 6.02/1.58  Prover 6: proved (940ms)
% 6.02/1.58  
% 6.02/1.58  % SZS status Theorem for /export/starexec/sandbox2/benchmark/theBenchmark.p
% 6.02/1.58  
% 6.65/1.59  Prover 0: Constructing countermodel ...
% 6.65/1.59  Prover 7: Options:  +triggersInConjecture -genTotalityAxioms +tightFunctionScopes -clausifier=simple +reverseFunctionalityPropagation +boolFunsAsPreds -triggerStrategy=allUni -realRatSaturationRounds=1 +ignoreQuantifiers -constructProofs=always -generateTriggers=all -randomSeed=-236303470
% 6.65/1.59  Prover 0: stopped
% 6.65/1.61  Prover 7: Warning: Problem contains reals, using incomplete axiomatisation
% 6.65/1.61  Prover 8: Options:  +triggersInConjecture +genTotalityAxioms -tightFunctionScopes -clausifier=none -reverseFunctionalityPropagation -boolFunsAsPreds -triggerStrategy=maximal -realRatSaturationRounds=0 +ignoreQuantifiers -constructProofs=always -generateTriggers=all -randomSeed=-200781089
% 6.65/1.63  Prover 8: Warning: Problem contains reals, using incomplete axiomatisation
% 6.65/1.63  Prover 8: Preprocessing ...
% 6.65/1.64  Prover 4: Constructing countermodel ...
% 6.65/1.66  Prover 7: Preprocessing ...
% 7.60/1.75  Prover 8: Warning: ignoring some quantifiers
% 7.60/1.76  Prover 8: Constructing countermodel ...
% 8.33/1.87  Prover 4: Found proof (size 4)
% 8.33/1.87  Prover 1: Found proof (size 4)
% 8.33/1.87  Prover 4: proved (1230ms)
% 8.33/1.87  Prover 1: proved (1235ms)
% 8.33/1.88  Prover 8: stopped
% 8.33/1.90  Prover 2: Constructing countermodel ...
% 8.33/1.90  Prover 2: stopped
% 8.33/1.92  Prover 5: Constructing countermodel ...
% 8.33/1.92  Prover 5: stopped
% 9.12/1.99  Prover 3: Constructing countermodel ...
% 9.12/1.99  Prover 3: stopped
% 9.12/2.02  Prover 7: Warning: ignoring some quantifiers
% 9.12/2.03  Prover 7: Constructing countermodel ...
% 9.60/2.06  Prover 7: stopped
% 9.60/2.06  
% 9.60/2.06  % SZS status Theorem for /export/starexec/sandbox2/benchmark/theBenchmark.p
% 9.60/2.06  
% 9.60/2.07  % SZS output start Proof for theBenchmark
% 9.60/2.07  Assumptions after simplification:
% 9.60/2.07  ---------------------------------
% 9.60/2.07  
% 9.60/2.07    (real_greater_problem_10)
% 9.83/2.09    real_$greater(real_-869/100, real_-13/4) = 0
% 9.83/2.09  
% 9.83/2.09    (input)
% 9.83/2.11     ~ (real_very_large = real_very_small) &  ~ (real_very_large = real_-13/4) & 
% 9.83/2.11    ~ (real_very_large = real_-869/100) &  ~ (real_very_large = real_0) &  ~
% 9.83/2.11    (real_very_small = real_-13/4) &  ~ (real_very_small = real_-869/100) &  ~
% 9.83/2.11    (real_very_small = real_0) &  ~ (real_-13/4 = real_-869/100) &  ~ (real_-13/4
% 9.83/2.11      = real_0) &  ~ (real_-869/100 = real_0) & real_$is_int(real_-13/4) = 1 &
% 9.83/2.11    real_$is_int(real_-869/100) = 1 & real_$is_int(real_0) = 0 &
% 9.83/2.11    real_$is_rat(real_-13/4) = 0 & real_$is_rat(real_-869/100) = 0 &
% 9.83/2.11    real_$is_rat(real_0) = 0 & real_$floor(real_0) = real_0 &
% 9.83/2.11    real_$ceiling(real_0) = real_0 & real_$truncate(real_0) = real_0 &
% 9.83/2.11    real_$round(real_0) = real_0 & real_$to_int(real_-13/4) = -4 &
% 9.83/2.11    real_$to_int(real_-869/100) = -9 & real_$to_int(real_0) = 0 &
% 9.83/2.11    real_$to_rat(real_-13/4) = rat_-13/4 & real_$to_rat(real_-869/100) =
% 9.83/2.11    rat_-869/100 & real_$to_rat(real_0) = rat_0 & real_$to_real(real_-13/4) =
% 9.83/2.11    real_-13/4 & real_$to_real(real_-869/100) = real_-869/100 &
% 9.83/2.11    real_$to_real(real_0) = real_0 & int_$to_real(0) = real_0 &
% 9.83/2.11    real_$quotient(real_0, real_-13/4) = real_0 & real_$quotient(real_0,
% 9.83/2.11      real_-869/100) = real_0 & real_$product(real_-13/4, real_0) = real_0 &
% 9.83/2.11    real_$product(real_-869/100, real_0) = real_0 & real_$product(real_0,
% 9.83/2.12      real_-13/4) = real_0 & real_$product(real_0, real_-869/100) = real_0 &
% 9.83/2.12    real_$product(real_0, real_0) = real_0 & real_$difference(real_-13/4,
% 9.83/2.12      real_-13/4) = real_0 & real_$difference(real_-13/4, real_0) = real_-13/4 &
% 9.83/2.12    real_$difference(real_-869/100, real_-869/100) = real_0 &
% 9.83/2.12    real_$difference(real_-869/100, real_0) = real_-869/100 &
% 9.83/2.12    real_$difference(real_0, real_0) = real_0 & real_$uminus(real_0) = real_0 &
% 9.83/2.12    real_$sum(real_-13/4, real_0) = real_-13/4 & real_$sum(real_-869/100, real_0)
% 9.83/2.12    = real_-869/100 & real_$sum(real_0, real_-13/4) = real_-13/4 &
% 9.83/2.12    real_$sum(real_0, real_-869/100) = real_-869/100 & real_$sum(real_0, real_0) =
% 9.83/2.12    real_0 & real_$greatereq(real_very_small, real_very_large) = 1 &
% 9.83/2.12    real_$greatereq(real_-13/4, real_-13/4) = 0 & real_$greatereq(real_-13/4,
% 9.83/2.12      real_-869/100) = 0 & real_$greatereq(real_-13/4, real_0) = 1 &
% 9.83/2.12    real_$greatereq(real_-869/100, real_-13/4) = 1 &
% 9.83/2.12    real_$greatereq(real_-869/100, real_-869/100) = 0 &
% 9.83/2.12    real_$greatereq(real_-869/100, real_0) = 1 & real_$greatereq(real_0,
% 9.83/2.12      real_-13/4) = 0 & real_$greatereq(real_0, real_-869/100) = 0 &
% 9.83/2.12    real_$greatereq(real_0, real_0) = 0 & real_$lesseq(real_very_small,
% 9.83/2.12      real_very_large) = 0 & real_$lesseq(real_-13/4, real_-13/4) = 0 &
% 9.83/2.12    real_$lesseq(real_-13/4, real_-869/100) = 1 & real_$lesseq(real_-13/4, real_0)
% 9.83/2.12    = 0 & real_$lesseq(real_-869/100, real_-13/4) = 0 &
% 9.83/2.12    real_$lesseq(real_-869/100, real_-869/100) = 0 & real_$lesseq(real_-869/100,
% 9.83/2.12      real_0) = 0 & real_$lesseq(real_0, real_-13/4) = 1 & real_$lesseq(real_0,
% 9.83/2.12      real_-869/100) = 1 & real_$lesseq(real_0, real_0) = 0 &
% 9.83/2.12    real_$less(real_very_small, real_very_large) = 0 & real_$less(real_very_small,
% 9.83/2.12      real_-13/4) = 0 & real_$less(real_very_small, real_-869/100) = 0 &
% 9.83/2.12    real_$less(real_very_small, real_0) = 0 & real_$less(real_-13/4,
% 9.83/2.12      real_very_large) = 0 & real_$less(real_-13/4, real_-13/4) = 1 &
% 9.83/2.12    real_$less(real_-13/4, real_-869/100) = 1 & real_$less(real_-13/4, real_0) = 0
% 9.83/2.12    & real_$less(real_-869/100, real_very_large) = 0 & real_$less(real_-869/100,
% 9.83/2.12      real_-13/4) = 0 & real_$less(real_-869/100, real_-869/100) = 1 &
% 9.83/2.12    real_$less(real_-869/100, real_0) = 0 & real_$less(real_0, real_very_large) =
% 9.83/2.12    0 & real_$less(real_0, real_-13/4) = 1 & real_$less(real_0, real_-869/100) = 1
% 9.83/2.12    & real_$less(real_0, real_0) = 1 & real_$greater(real_very_large, real_-13/4)
% 9.83/2.12    = 0 & real_$greater(real_very_large, real_-869/100) = 0 &
% 9.83/2.12    real_$greater(real_very_large, real_0) = 0 & real_$greater(real_very_small,
% 9.83/2.12      real_very_large) = 1 & real_$greater(real_-13/4, real_very_small) = 0 &
% 9.83/2.12    real_$greater(real_-13/4, real_-13/4) = 1 & real_$greater(real_-13/4,
% 9.83/2.12      real_-869/100) = 0 & real_$greater(real_-13/4, real_0) = 1 &
% 9.83/2.12    real_$greater(real_-869/100, real_very_small) = 0 &
% 9.83/2.12    real_$greater(real_-869/100, real_-13/4) = 1 & real_$greater(real_-869/100,
% 9.83/2.12      real_-869/100) = 1 & real_$greater(real_-869/100, real_0) = 1 &
% 9.83/2.12    real_$greater(real_0, real_very_small) = 0 & real_$greater(real_0, real_-13/4)
% 9.83/2.12    = 0 & real_$greater(real_0, real_-869/100) = 0 & real_$greater(real_0, real_0)
% 9.83/2.12    = 1 &  ! [v0: $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: $real] :  !
% 9.83/2.12    [v4: $real] : ( ~ (real_$sum(v3, v0) = v4) |  ~ (real_$sum(v2, v1) = v3) |  ?
% 9.83/2.12      [v5: $real] : (real_$sum(v2, v5) = v4 & real_$sum(v1, v0) = v5)) &  ! [v0:
% 9.83/2.12      $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: $real] : (v3 = v1 | v0 =
% 9.83/2.12      real_0 |  ~ (real_$quotient(v2, v0) = v3) |  ~ (real_$product(v1, v0) = v2))
% 9.83/2.12    &  ! [v0: $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: int] : (v3 = 0 | 
% 9.83/2.12      ~ (real_$lesseq(v2, v0) = v3) |  ~ (real_$lesseq(v1, v0) = 0) |  ? [v4: int]
% 9.83/2.12      : ( ~ (v4 = 0) & real_$lesseq(v2, v1) = v4)) &  ! [v0: $real] :  ! [v1:
% 9.83/2.12      $real] :  ! [v2: $real] :  ! [v3: int] : (v3 = 0 |  ~ (real_$lesseq(v1, v0)
% 9.83/2.12        = 0) |  ~ (real_$less(v2, v0) = v3) |  ? [v4: int] : ( ~ (v4 = 0) &
% 9.83/2.12        real_$less(v2, v1) = v4)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2:
% 9.83/2.12      $real] :  ! [v3: $real] : ( ~ (real_$uminus(v0) = v2) |  ~ (real_$sum(v1,
% 9.83/2.12          v2) = v3) | real_$difference(v1, v0) = v3) &  ! [v0: $real] :  ! [v1:
% 9.83/2.12      $real] :  ! [v2: $real] : (v2 = real_0 |  ~ (real_$uminus(v0) = v1) |  ~
% 9.83/2.12      (real_$sum(v0, v1) = v2)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2: int] :
% 9.83/2.12    (v2 = 0 |  ~ (real_$greatereq(v0, v1) = v2) |  ? [v3: int] : ( ~ (v3 = 0) &
% 9.83/2.12        real_$lesseq(v1, v0) = v3)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2:
% 9.83/2.12      int] : (v2 = 0 |  ~ (real_$lesseq(v1, v0) = v2) | ( ~ (v1 = v0) &  ? [v3:
% 9.83/2.12          int] : ( ~ (v3 = 0) & real_$less(v1, v0) = v3))) &  ! [v0: $real] :  !
% 9.83/2.12    [v1: $real] :  ! [v2: int] : (v2 = 0 |  ~ (real_$greater(v0, v1) = v2) |  ?
% 9.83/2.12      [v3: int] : ( ~ (v3 = 0) & real_$less(v1, v0) = v3)) &  ! [v0: $real] :  !
% 9.83/2.12    [v1: $real] :  ! [v2: $real] : ( ~ (real_$product(v0, v1) = v2) |
% 9.83/2.12      real_$product(v1, v0) = v2) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2:
% 9.83/2.12      $real] : ( ~ (real_$sum(v0, v1) = v2) | real_$sum(v1, v0) = v2) &  ! [v0:
% 9.83/2.12      $real] :  ! [v1: $real] :  ! [v2: $real] : ( ~ (real_$lesseq(v2, v1) = 0) | 
% 9.83/2.12      ~ (real_$less(v1, v0) = 0) | real_$less(v2, v0) = 0) &  ! [v0: $real] :  !
% 9.83/2.12    [v1: $real] : (v1 = v0 |  ~ (real_$sum(v0, real_0) = v1)) &  ! [v0: $real] : 
% 9.83/2.12    ! [v1: $real] : (v1 = v0 |  ~ (real_$lesseq(v1, v0) = 0) | real_$less(v1, v0)
% 9.83/2.12      = 0) &  ! [v0: $real] :  ! [v1: $real] : ( ~ (real_$uminus(v0) = v1) |
% 9.83/2.12      real_$uminus(v1) = v0) &  ! [v0: $real] :  ! [v1: $real] : ( ~
% 9.83/2.12      (real_$greatereq(v0, v1) = 0) | real_$lesseq(v1, v0) = 0) &  ! [v0: $real] :
% 9.83/2.12     ! [v1: $real] : ( ~ (real_$greater(v0, v1) = 0) | real_$less(v1, v0) = 0) & 
% 9.83/2.12    ! [v0: $real] : (v0 = real_0 |  ~ (real_$uminus(v0) = v0))
% 9.83/2.12  
% 9.83/2.12    (function-axioms)
% 9.83/2.13     ! [v0: $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: $real] : (v1 = v0 |
% 9.83/2.13       ~ (real_$quotient(v3, v2) = v1) |  ~ (real_$quotient(v3, v2) = v0)) &  !
% 9.83/2.13    [v0: $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: $real] : (v1 = v0 |  ~
% 9.83/2.13      (real_$product(v3, v2) = v1) |  ~ (real_$product(v3, v2) = v0)) &  ! [v0:
% 9.83/2.13      $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: $real] : (v1 = v0 |  ~
% 9.83/2.13      (real_$difference(v3, v2) = v1) |  ~ (real_$difference(v3, v2) = v0)) &  !
% 9.83/2.13    [v0: $real] :  ! [v1: $real] :  ! [v2: $real] :  ! [v3: $real] : (v1 = v0 |  ~
% 9.83/2.13      (real_$sum(v3, v2) = v1) |  ~ (real_$sum(v3, v2) = v0)) &  ! [v0:
% 9.83/2.13      MultipleValueBool] :  ! [v1: MultipleValueBool] :  ! [v2: $real] :  ! [v3:
% 9.83/2.13      $real] : (v1 = v0 |  ~ (real_$greatereq(v3, v2) = v1) |  ~
% 9.83/2.13      (real_$greatereq(v3, v2) = v0)) &  ! [v0: MultipleValueBool] :  ! [v1:
% 9.83/2.13      MultipleValueBool] :  ! [v2: $real] :  ! [v3: $real] : (v1 = v0 |  ~
% 9.83/2.13      (real_$lesseq(v3, v2) = v1) |  ~ (real_$lesseq(v3, v2) = v0)) &  ! [v0:
% 9.83/2.13      MultipleValueBool] :  ! [v1: MultipleValueBool] :  ! [v2: $real] :  ! [v3:
% 9.83/2.13      $real] : (v1 = v0 |  ~ (real_$less(v3, v2) = v1) |  ~ (real_$less(v3, v2) =
% 9.83/2.13        v0)) &  ! [v0: MultipleValueBool] :  ! [v1: MultipleValueBool] :  ! [v2:
% 9.83/2.13      $real] :  ! [v3: $real] : (v1 = v0 |  ~ (real_$greater(v3, v2) = v1) |  ~
% 9.83/2.13      (real_$greater(v3, v2) = v0)) &  ! [v0: MultipleValueBool] :  ! [v1:
% 9.83/2.13      MultipleValueBool] :  ! [v2: $real] : (v1 = v0 |  ~ (real_$is_int(v2) = v1)
% 9.83/2.13      |  ~ (real_$is_int(v2) = v0)) &  ! [v0: MultipleValueBool] :  ! [v1:
% 9.83/2.13      MultipleValueBool] :  ! [v2: $real] : (v1 = v0 |  ~ (real_$is_rat(v2) = v1)
% 9.83/2.13      |  ~ (real_$is_rat(v2) = v0)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2:
% 9.83/2.13      $real] : (v1 = v0 |  ~ (real_$floor(v2) = v1) |  ~ (real_$floor(v2) = v0)) &
% 9.83/2.13     ! [v0: $real] :  ! [v1: $real] :  ! [v2: $real] : (v1 = v0 |  ~
% 9.83/2.13      (real_$ceiling(v2) = v1) |  ~ (real_$ceiling(v2) = v0)) &  ! [v0: $real] : 
% 9.83/2.13    ! [v1: $real] :  ! [v2: $real] : (v1 = v0 |  ~ (real_$truncate(v2) = v1) |  ~
% 9.83/2.13      (real_$truncate(v2) = v0)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2:
% 9.83/2.13      $real] : (v1 = v0 |  ~ (real_$round(v2) = v1) |  ~ (real_$round(v2) = v0)) &
% 9.83/2.13     ! [v0: int] :  ! [v1: int] :  ! [v2: $real] : (v1 = v0 |  ~ (real_$to_int(v2)
% 9.83/2.13        = v1) |  ~ (real_$to_int(v2) = v0)) &  ! [v0: $rat] :  ! [v1: $rat] :  !
% 9.83/2.13    [v2: $real] : (v1 = v0 |  ~ (real_$to_rat(v2) = v1) |  ~ (real_$to_rat(v2) =
% 9.83/2.13        v0)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2: $real] : (v1 = v0 |  ~
% 9.83/2.13      (real_$to_real(v2) = v1) |  ~ (real_$to_real(v2) = v0)) &  ! [v0: $real] : 
% 9.83/2.13    ! [v1: $real] :  ! [v2: int] : (v1 = v0 |  ~ (int_$to_real(v2) = v1) |  ~
% 9.83/2.13      (int_$to_real(v2) = v0)) &  ! [v0: $real] :  ! [v1: $real] :  ! [v2: $real]
% 9.83/2.13    : (v1 = v0 |  ~ (real_$uminus(v2) = v1) |  ~ (real_$uminus(v2) = v0))
% 9.83/2.13  
% 9.83/2.13  Those formulas are unsatisfiable:
% 9.83/2.13  ---------------------------------
% 9.83/2.13  
% 9.83/2.13  Begin of proof
% 9.83/2.13  | 
% 9.83/2.13  | ALPHA: (function-axioms) implies:
% 9.83/2.13  |   (1)   ! [v0: MultipleValueBool] :  ! [v1: MultipleValueBool] :  ! [v2:
% 9.83/2.13  |          $real] :  ! [v3: $real] : (v1 = v0 |  ~ (real_$greater(v3, v2) = v1)
% 9.83/2.13  |          |  ~ (real_$greater(v3, v2) = v0))
% 9.83/2.13  | 
% 9.83/2.13  | ALPHA: (input) implies:
% 9.83/2.13  |   (2)  real_$greater(real_-869/100, real_-13/4) = 1
% 9.83/2.13  | 
% 9.83/2.13  | GROUND_INST: instantiating (1) with 0, 1, real_-13/4, real_-869/100,
% 9.83/2.13  |              simplifying with (2), (real_greater_problem_10) gives:
% 9.83/2.13  |   (3)  $false
% 9.83/2.13  | 
% 9.83/2.13  | CLOSE: (3) is inconsistent.
% 9.83/2.13  | 
% 9.83/2.13  End of proof
% 9.83/2.13  % SZS output end Proof for theBenchmark
% 9.83/2.13  
% 9.83/2.13  1519ms
%------------------------------------------------------------------------------