%------------------------------------------------------------------------------
% File : Vampire-SAT---5.0.1
% Problem : CSR029+2 : TPTP v9.3.1. Released v3.4.0.
% Transfm : none
% Format : tptp:raw
% Command : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 SAT
% Computer : n011.cluster.edu
% Model : x86_64 x86_64
% CPU : Intel(R) Xeon(R) CPU E5-2620 v4 2.10GHz
% Memory : 8046.5625MB
% OS : Linux 6.8.0-71-generic
% CPULimit : 300s
% WCLimit : 300s
% DateTime : Tue Sep 29 09:44:25 AM UTC 2026
% Result : Theorem 0.27s 0.39s
% Output : Refutation 0.27s
% Verified :
% SZS Type : Refutation
% Derivation depth : 13
% Number of leaves : 12
% Syntax : Number of formulae : 56 ( 18 unt; 3 def)
% Number of atoms : 105 ( 0 equ)
% Maximal formula atoms : 3 ( 1 avg)
% Number of connectives : 85 ( 36 ~; 33 |; 5 &)
% ( 3 <=>; 8 =>; 0 <=; 0 <~>)
% Maximal formula depth : 7 ( 3 avg)
% Maximal term depth : 1 ( 1 avg)
% Number of predicates : 9 ( 8 usr; 4 prp; 0-2 aty)
% Number of functors : 6 ( 6 usr; 6 con; 0-0 aty)
% Number of variables : 29 ( 0 sgn 29 !; 0 ?)
% Comments :
%------------------------------------------------------------------------------
fof(f121,axiom,
( mtvisible(c_worldgeographymt)
=> geolevel_3(c_georegion_l3_x4_y13) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_121) ).
fof(f128,axiom,
! [X0,X1] :
( geographicalsubregions(X0,X1)
=> inregion(X1,X0) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_128) ).
fof(f212,axiom,
genlmt(c_tptpgeo_member3_mt,c_tptpgeo_spindleheadmt),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_212) ).
fof(f282,axiom,
( mtvisible(c_tptpgeo_member3_mt)
=> inregion(c_geolocation_x14_y39,c_georegion_l4_x14_y39) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_282) ).
fof(f326,axiom,
genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_326) ).
fof(f337,axiom,
( mtvisible(c_tptpgeo_member3_mt)
=> geographicalsubregions(c_georegion_l3_x4_y13,c_georegion_l4_x14_y39) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_337) ).
fof(f933,axiom,
! [X0,X1,X2] :
( ( inregion(X0,X1)
& inregion(X1,X2) )
=> inregion(X0,X2) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_933) ).
fof(f1123,axiom,
! [X0,X1] :
( ( mtvisible(X0)
& genlmt(X0,X1) )
=> mtvisible(X1) ),
file('/export/starexec/sandbox2/benchmark/Axioms/CSR002+1.ax',ax1_1123) ).
fof(f1132,conjecture,
( mtvisible(c_tptpgeo_member3_mt)
=> ( inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13)
& geolevel_3(c_georegion_l3_x4_y13) ) ),
file('/export/starexec/sandbox2/benchmark/theBenchmark.p',query79) ).
fof(f1133,negated_conjecture,
~ ( mtvisible(c_tptpgeo_member3_mt)
=> ( inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13)
& geolevel_3(c_georegion_l3_x4_y13) ) ),
inference(negated_conjecture,[status(cth)],[f1132]) ).
fof(f1284,plain,
( geolevel_3(c_georegion_l3_x4_y13)
| ~ mtvisible(c_worldgeographymt) ),
inference(ennf_transformation,[],[f121]) ).
fof(f1288,plain,
! [X0,X1] :
( inregion(X1,X0)
| ~ geographicalsubregions(X0,X1) ),
inference(ennf_transformation,[],[f128]) ).
fof(f1358,plain,
( inregion(c_geolocation_x14_y39,c_georegion_l4_x14_y39)
| ~ mtvisible(c_tptpgeo_member3_mt) ),
inference(ennf_transformation,[],[f282]) ).
fof(f1387,plain,
( geographicalsubregions(c_georegion_l3_x4_y13,c_georegion_l4_x14_y39)
| ~ mtvisible(c_tptpgeo_member3_mt) ),
inference(ennf_transformation,[],[f337]) ).
fof(f1831,plain,
! [X0,X1,X2] :
( inregion(X0,X2)
| ~ inregion(X0,X1)
| ~ inregion(X1,X2) ),
inference(ennf_transformation,[],[f933]) ).
fof(f1832,plain,
! [X0,X1,X2] :
( inregion(X0,X2)
| ~ inregion(X0,X1)
| ~ inregion(X1,X2) ),
inference(flattening,[],[f1831]) ).
fof(f2012,plain,
! [X0,X1] :
( mtvisible(X1)
| ~ mtvisible(X0)
| ~ genlmt(X0,X1) ),
inference(ennf_transformation,[],[f1123]) ).
fof(f2013,plain,
! [X0,X1] :
( mtvisible(X1)
| ~ mtvisible(X0)
| ~ genlmt(X0,X1) ),
inference(flattening,[],[f2012]) ).
fof(f2022,plain,
( ( ~ inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13)
| ~ geolevel_3(c_georegion_l3_x4_y13) )
& mtvisible(c_tptpgeo_member3_mt) ),
inference(ennf_transformation,[],[f1133]) ).
fof(f2142,plain,
( geolevel_3(c_georegion_l3_x4_y13)
| ~ mtvisible(c_worldgeographymt) ),
inference(cnf_transformation,[],[f1284]) ).
fof(f2149,plain,
! [X0,X1] :
( ~ geographicalsubregions(X0,X1)
| inregion(X1,X0) ),
inference(cnf_transformation,[],[f1288]) ).
fof(f2233,plain,
genlmt(c_tptpgeo_member3_mt,c_tptpgeo_spindleheadmt),
inference(cnf_transformation,[],[f212]) ).
fof(f2303,plain,
( inregion(c_geolocation_x14_y39,c_georegion_l4_x14_y39)
| ~ mtvisible(c_tptpgeo_member3_mt) ),
inference(cnf_transformation,[],[f1358]) ).
fof(f2346,plain,
genlmt(c_tptpgeo_spindleheadmt,c_worldgeographymt),
inference(cnf_transformation,[],[f326]) ).
fof(f2357,plain,
( geographicalsubregions(c_georegion_l3_x4_y13,c_georegion_l4_x14_y39)
| ~ mtvisible(c_tptpgeo_member3_mt) ),
inference(cnf_transformation,[],[f1387]) ).
fof(f2885,plain,
! [X2,X0,X1] :
( ~ inregion(X0,X1)
| inregion(X0,X2)
| ~ inregion(X1,X2) ),
inference(cnf_transformation,[],[f1832]) ).
fof(f3053,plain,
! [X0,X1] :
( ~ mtvisible(X0)
| mtvisible(X1)
| ~ genlmt(X0,X1) ),
inference(cnf_transformation,[],[f2013]) ).
fof(f3062,plain,
mtvisible(c_tptpgeo_member3_mt),
inference(cnf_transformation,[],[f2022]) ).
fof(f3063,plain,
( ~ inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13)
| ~ geolevel_3(c_georegion_l3_x4_y13) ),
inference(cnf_transformation,[],[f2022]) ).
fof(f3065,definition,
( spl0_1
<=> geolevel_3(c_georegion_l3_x4_y13) ),
introduced(definition,[new_symbols(definition,[spl0_1])],[avatar_definition]) ).
fof(f3069,definition,
( spl0_2
<=> inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13) ),
introduced(definition,[new_symbols(definition,[spl0_2])],[avatar_definition]) ).
fof(f3071,plain,
( ~ inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13)
| spl0_2 ),
inference(avatar_component_clause,[],[f3069]) ).
fof(f3072,plain,
( ~ spl0_1
| ~ spl0_2 ),
inference(avatar_split_clause,[],[f3063,f3069,f3065]) ).
fof(f3105,definition,
( spl0_10
<=> mtvisible(c_worldgeographymt) ),
introduced(definition,[new_symbols(definition,[spl0_10])],[avatar_definition]) ).
fof(f3107,plain,
( ~ mtvisible(c_worldgeographymt)
| spl0_10 ),
inference(avatar_component_clause,[],[f3105]) ).
fof(f3190,plain,
geographicalsubregions(c_georegion_l3_x4_y13,c_georegion_l4_x14_y39),
inference(forward_subsumption_resolution,[],[f2357,f3062]) ).
fof(f3233,plain,
inregion(c_geolocation_x14_y39,c_georegion_l4_x14_y39),
inference(forward_subsumption_resolution,[],[f2303,f3062]) ).
fof(f3323,plain,
( ~ spl0_10
| spl0_1 ),
inference(avatar_split_clause,[],[f2142,f3065,f3105]) ).
fof(f4238,plain,
inregion(c_georegion_l4_x14_y39,c_georegion_l3_x4_y13),
inference(resolution,[],[f2149,f3190]) ).
fof(f4504,plain,
! [X0] :
( ~ genlmt(c_tptpgeo_member3_mt,X0)
| mtvisible(X0) ),
inference(resolution,[],[f3053,f3062]) ).
fof(f4528,plain,
mtvisible(c_tptpgeo_spindleheadmt),
inference(resolution,[],[f4504,f2233]) ).
fof(f4530,plain,
! [X0] :
( ~ genlmt(c_tptpgeo_spindleheadmt,X0)
| mtvisible(X0) ),
inference(resolution,[],[f4528,f3053]) ).
fof(f4532,plain,
mtvisible(c_worldgeographymt),
inference(resolution,[],[f4530,f2346]) ).
fof(f4533,plain,
( $false
| spl0_10 ),
inference(forward_subsumption_resolution,[],[f4532,f3107]) ).
fof(f4534,plain,
spl0_10,
inference(avatar_contradiction_clause,[],[f4533]) ).
fof(f4684,plain,
! [X0] :
( ~ inregion(c_georegion_l4_x14_y39,X0)
| inregion(c_geolocation_x14_y39,X0) ),
inference(resolution,[],[f2885,f3233]) ).
fof(f4740,plain,
inregion(c_geolocation_x14_y39,c_georegion_l3_x4_y13),
inference(resolution,[],[f4684,f4238]) ).
fof(f4741,plain,
( $false
| spl0_2 ),
inference(forward_subsumption_resolution,[],[f4740,f3071]) ).
fof(f4742,plain,
spl0_2,
inference(avatar_contradiction_clause,[],[f4741]) ).
cnf(s1,plain,
( ~ spl0_1
| ~ spl0_2 ),
inference(sat_conversion,[],[f3072]) ).
cnf(s41,plain,
( spl0_1
| ~ spl0_10 ),
inference(sat_conversion,[],[f3323]) ).
cnf(s53,plain,
spl0_10,
inference(sat_conversion,[],[f4534]) ).
cnf(s54,plain,
spl0_2,
inference(sat_conversion,[],[f4742]) ).
cnf(s55,plain,
spl0_1,
inference(rat,[],[s41,s53]) ).
cnf(s60,plain,
$false,
inference(rat,[],[s1,s54,s55]) ).
fof(f4743,plain,
$false,
inference(avatar_sat_refutation,[],[s60]) ).
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.03 % Problem : CSR029+2 : TPTP v9.3.1. Released v3.4.0.
% 0.00/0.07 % Command : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 SAT
% 0.12/0.24 % Computer : n011.cluster.edu
% 0.12/0.24 % Model : x86_64 x86_64
% 0.12/0.24 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.12/0.24 % Memory : 8046.5625MB
% 0.12/0.24 % OS : Linux 6.8.0-71-generic
% 0.12/0.24 % CPULimit : 300
% 0.12/0.24 % WCLimit : 300
% 0.12/0.24 % DateTime : Mon Sep 28 22:11:31 UTC 2026
% 0.12/0.25 % CPUTime :
% 0.12/0.25 Running run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 SAT
% 0.12/0.29 Running first-order model finding
% 0.12/0.29 Running: /export/starexec/sandbox2/solver/bin/vampire-ho --input_syntax tptp --output_axiom_names on --mode casc --intent sat -m 16384 --cores 7 -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.27/0.39 % (3836995)Will run a generic schedule for satisfiability detection.
% 0.27/0.39 % (3837002)dis+10_161_sil=256000:plsq=on:plsqr=61199697,1048576:gs=on:alpa=true:sac=on:slsq=on:cn=on:random_seed=2911708809:i=88024:add=on:rawr=on_2999 on theBenchmark for (2999ds/88024Mi)
% 0.27/0.39 % (3837005)ott+1_1_to=lpo:sil=16000:sp=reverse_arity:erd=off:random_seed=1810685396:i=131_2999 on theBenchmark for (2999ds/131Mi)
% 0.27/0.39 % (3837001)% WARNING: option uhcvi not known.
% 0.27/0.39 % (3837003)dis+10_1_sil=32000:sp=arity:random_seed=3560074248:i=103:fgj=on_2999 on theBenchmark for (2999ds/103Mi)
% 0.27/0.39 % (3837001)dis+11_61:31_drc=ordering:lsd=5:bsr=unit_only:rp=on:newcnf=on:random_seed=1973704609:i=135531:add=off:rawr=on_2999 on theBenchmark for (2999ds/135531Mi)
% 0.27/0.39 % (3837000)fmb+10_1_sas=cadical:bce=on:rp=on:random_seed=3343008188_2999 on theBenchmark for (2999ds/0Mi)
% 0.27/0.39 % (3837006)ott-3_16_to=lpo:sil=16000:sp=arity:fd=off:rp=on:random_seed=3044820874:i=159:bs=unit_only:nicw=on:fsr=off:amm=off_2999 on theBenchmark for (2999ds/159Mi)
% 0.27/0.39 % (3837004)ott+31_1_sil=16000:lcm=predicate:bce=on:newcnf=on:random_seed=3082234930:i=116_2999 on theBenchmark for (2999ds/116Mi)
% 0.27/0.39 % (3837005) found proof, printing to "/export/starexec/sandbox2/tmp/vampire-proof-3836995-3837005"...
% 0.27/0.39 % (3837005)...printing done.
% 0.27/0.39 % (3837005)Refutation found. Thanks to Tanya!
% 0.27/0.39 % SZS status Theorem for theBenchmark
% 0.27/0.39 % SZS output start Proof for theBenchmark
% See solution above
% 0.27/0.40 % (3837005)------------------------------
% 0.27/0.40 % (3837005)Version: Vampire 5.0.1 (Release build, commit 5ef7c2677 on 2026-07-16 16:54:09 +0200)
% 0.27/0.40 % (3837005)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 0.27/0.40 % (3837005)CaDiCaL version: 2.1.3
% 0.27/0.40 % (3837005)Termination reason: Refutation
% 0.27/0.40 % (3837005)Time elapsed: 0.034 s
% 0.27/0.40 % (3837005)Peak memory usage: 15 MB
% 0.27/0.40 % (3837005)Instructions burned: 54 (million)
% 0.27/0.40 % (3836995)Success in time 0.086 s
% 0.27/0.40 % Vampire exiting
%------------------------------------------------------------------------------