%------------------------------------------------------------------------------
% File : Vampire---5.0.1
% Problem : CSR126^1 : TPTP v9.3.1. Released v4.1.0.
% Transfm : none
% Format : tptp:raw
% Command : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% Computer : n026.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 : Wed Sep 30 07:47:04 AM UTC 2026
% Result : Theorem 0.21s 0.29s
% Output : Refutation 0.21s
% Verified :
% SZS Type : -
% Comments :
%------------------------------------------------------------------------------
%----WARNING: Could not form TPTP format derivation
%------------------------------------------------------------------------------
%----ORIGINAL SYSTEM OUTPUT
% 0.00/0.02 % Problem : CSR126^1 : TPTP v9.3.1. Released v4.1.0.
% 0.00/0.05 % Command : run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.08/0.19 % Computer : n026.cluster.edu
% 0.08/0.19 % Model : x86_64 x86_64
% 0.08/0.19 % CPU : Intel(R) Xeon(R) CPU E5-2620 v4 @ 2.10GHz
% 0.08/0.19 % Memory : 8046.5625MB
% 0.08/0.19 % OS : Linux 6.8.0-71-generic
% 0.08/0.19 % CPULimit : 300
% 0.08/0.19 % WCLimit : 300
% 0.08/0.19 % DateTime : Tue Sep 29 17:57:58 UTC 2026
% 0.08/0.19 % CPUTime :
% 0.08/0.19 Running run_vampire /export/starexec/sandbox2/benchmark/theBenchmark.p 300 THM
% 0.08/0.23 Running higher-order theorem proving
% 0.08/0.24 Running: /export/starexec/sandbox2/solver/bin/vampire-ho --input_syntax tptp --output_axiom_names on --mode casc -m 16384 --cores 7 -t 300 /export/starexec/sandbox2/benchmark/theBenchmark.p
% 0.21/0.29 % (947557)Detected a higher-order problem, will run a greedy HOL sequence.
% 0.21/0.29 % (947575)lrs+10_1_to=lpo:sil=128000:e2e=on:si=on:random_seed=2540800528:s2a=on:i=75:s2at=3:aac=none:bd=preordered:rtra=on:fe=abstraction_2999 on theBenchmark for (2999ds/75Mi)
% 0.21/0.29 % (947576)WARNING Broken Constraint: if ho_split_queue_ratios(1,8) has been set then ho_split_queue(off) is equal to on
% 0.21/0.29 % (947575) found proof, printing to "/export/starexec/sandbox2/tmp/vampire-proof-947557-947575"...
% 0.21/0.29 % (947576)WARNING Broken Constraint: if sine_to_age_tolerance(5) has been set then sine_to_age(off) is equal to on or sine_to_pred_levels(off) is not equal to off or sine_level_split_queue(off) is equal to on
% 0.21/0.29 % (947575)...printing done.
% 0.21/0.29 % (947575)Refutation found. Thanks to Tanya!
% 0.21/0.29 % SZS status Theorem for theBenchmark
% 0.21/0.29 % SZS output start Proof for theBenchmark
% 0.21/0.29 thf(type_def_5, type, num: $tType).
% 0.21/0.29 thf(type_def_6, type, sTfun: ($tType * $tType) > $tType).
% 0.21/0.29 thf(func_def_0, type, holdsDuring_THFTYPE_IiooI: ($i > $o > $o)).
% 0.21/0.29 thf(func_def_4, type, lYearFn_THFTYPE_IiiI: ($i > $i)).
% 0.21/0.29 thf(func_def_5, type, likes_THFTYPE_IiioI: ($i > $i > $o)).
% 0.21/0.29 thf(func_def_10, type, vIMP: ($o > $o > $o)).
% 0.21/0.29 thf(func_def_12, type, vNOT: ($o > $o)).
% 0.21/0.29 thf(f1,axiom,(
% 0.21/0.29 ! [X0 : $i] : (holdsDuring_THFTYPE_IiooI @ X0 @ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i))),
% 0.21/0.29 file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax)).
% 0.21/0.29 thf(f2,axiom,(
% 0.21/0.29 ! [X0 : $i] : (holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0) => (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0))),
% 0.21/0.29 file('/export/starexec/sandbox2/benchmark/theBenchmark.p',ax_001)).
% 0.21/0.29 thf(f3,conjecture,(
% 0.21/0.29 (holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))),
% 0.21/0.29 file('/export/starexec/sandbox2/benchmark/theBenchmark.p',con)).
% 0.21/0.29 thf(f4,negated_conjecture,(
% 0.21/0.29 ~(holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))),
% 0.21/0.29 inference(negated_conjecture,[status(cth)],[f3])).
% 0.21/0.29 thf(f5,plain,(
% 0.21/0.29 ~(holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))),
% 0.21/0.29 inference(rectify,[],[f4])).
% 0.21/0.29 thf(f6,plain,(
% 0.21/0.29 ~ (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))) = $true)),
% 0.21/0.29 inference(fool_elimination,[],[f5])).
% 0.21/0.29 thf(f7,plain,(
% 0.21/0.29 ! [X0 : $i] : (holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0) => (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0))),
% 0.21/0.29 inference(rectify,[],[f2])).
% 0.21/0.29 thf(f8,plain,(
% 0.21/0.29 ! [X0 : $i] : ($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ ((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0) => (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0)))))),
% 0.21/0.29 inference(fool_elimination,[],[f7])).
% 0.21/0.29 thf(f9,plain,(
% 0.21/0.29 ! [X0 : $i] : (holdsDuring_THFTYPE_IiooI @ X0 @ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i))),
% 0.21/0.29 inference(rectify,[],[f1])).
% 0.21/0.29 thf(f10,plain,(
% 0.21/0.29 ! [X0 : $i] : (((holdsDuring_THFTYPE_IiooI @ X0 @ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i))) = $true)),
% 0.21/0.29 inference(fool_elimination,[],[f9])).
% 0.21/0.29 thf(f11,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))) != $true)),
% 0.21/0.29 inference(flattening,[],[f6])).
% 0.21/0.29 thf(f12,plain,(
% 0.21/0.29 ( ! [X0 : $i] : ((((holdsDuring_THFTYPE_IiooI @ X0 @ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i))) = $true)) )),
% 0.21/0.29 inference(cnf_transformation,[],[f10])).
% 0.21/0.29 thf(f13,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))) != $true)),
% 0.21/0.29 inference(cnf_transformation,[],[f11])).
% 0.21/0.29 thf(f14,plain,(
% 0.21/0.29 ( ! [X0 : $i] : (($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ ((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0) => (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0)))))) )),
% 0.21/0.29 inference(cnf_transformation,[],[f8])).
% 0.21/0.29 thf(f16,definition,(
% 0.21/0.29 ( ! [X0 : $o] : (($true = X0) | ($false = X0)) )),
% 0.21/0.29 introduced(theory,[fool_exhaustiveness_axiom])).
% 0.21/0.29 thf(f19,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | ($true != ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $true)))),
% 0.21/0.29 inference(constrained_superposition,[],[f13,f16])).
% 0.21/0.29 thf(f23,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))) = $false) | ($true != $true)),
% 0.21/0.29 inference(constrained_superposition,[],[f13,f16])).
% 0.21/0.29 thf(f24,plain,(
% 0.21/0.29 ( ! [X0 : $i] : (((((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0) => (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0))) = $false) | ($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $true)))) )),
% 0.21/0.29 inference(constrained_superposition,[],[f14,f16])).
% 0.21/0.29 thf(f26,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i))) = $false)),
% 0.21/0.29 inference(trivial_inequality_removal,[],[f23])).
% 0.21/0.29 thf(f33,plain,(
% 0.21/0.29 ( ! [X0 : $i] : (($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $true))) | (((likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0)) = $false)) )),
% 0.21/0.29 inference(imp_proxy_clausification,[],[f24])).
% 0.21/0.29 thf(f34,plain,(
% 0.21/0.29 ( ! [X0 : $i] : (($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $true))) | (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0)) = $true)) )),
% 0.21/0.29 inference(imp_proxy_clausification,[],[f24])).
% 0.21/0.29 thf(f40,definition,(
% 0.21/0.29 spl0_2 <=> (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i)) = $false)),
% 0.21/0.29 introduced(definition,[new_symbols(definition,[spl0_2])],[avatar_definition])).
% 0.21/0.29 thf(f41,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | ~spl0_2),
% 0.21/0.29 inference(avatar_component_clause,[],[f40])).
% 0.21/0.29 thf(f44,definition,(
% 0.21/0.29 spl0_3 <=> (((likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i)) = $false)),
% 0.21/0.29 introduced(definition,[new_symbols(definition,[spl0_3])],[avatar_definition])).
% 0.21/0.29 thf(f45,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | ~spl0_3),
% 0.21/0.29 inference(avatar_component_clause,[],[f44])).
% 0.21/0.29 thf(f47,definition,(
% 0.21/0.29 spl0_4 <=> ($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $true)))),
% 0.21/0.29 introduced(definition,[new_symbols(definition,[spl0_4])],[avatar_definition])).
% 0.21/0.29 thf(f49,plain,(
% 0.21/0.29 spl0_3 | ~spl0_4),
% 0.21/0.29 inference(avatar_split_clause,[],[f19,f47,f44])).
% 0.21/0.29 thf(f52,definition,(
% 0.21/0.29 spl0_5 <=> ! [X0 : $i] : (((likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0)) = $false)),
% 0.21/0.29 introduced(definition,[new_symbols(definition,[spl0_5])],[avatar_definition])).
% 0.21/0.29 thf(f53,plain,(
% 0.21/0.29 ( ! [X0 : $i] : ((((likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0)) = $false)) ) | ~spl0_5),
% 0.21/0.29 inference(avatar_component_clause,[],[f52])).
% 0.21/0.29 thf(f56,definition,(
% 0.21/0.29 spl0_6 <=> ! [X0 : $i] : (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0)) = $true)),
% 0.21/0.29 introduced(definition,[new_symbols(definition,[spl0_6])],[avatar_definition])).
% 0.21/0.29 thf(f57,plain,(
% 0.21/0.29 ( ! [X0 : $i] : ((((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ X0)) = $true)) ) | ~spl0_6),
% 0.21/0.29 inference(avatar_component_clause,[],[f56])).
% 0.21/0.29 thf(f58,plain,(
% 0.21/0.29 spl0_4 | spl0_6),
% 0.21/0.29 inference(avatar_split_clause,[],[f34,f56,f47])).
% 0.21/0.29 thf(f59,plain,(
% 0.21/0.29 spl0_4 | spl0_5),
% 0.21/0.29 inference(avatar_split_clause,[],[f33,f52,f47])).
% 0.21/0.29 thf(f60,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $false)) = $false) | ~spl0_3),
% 0.21/0.29 inference(backward_demodulation,[],[f26,f45])).
% 0.21/0.29 thf(f61,plain,(
% 0.21/0.29 ( ! [X0 : $i] : (($true = ((holdsDuring_THFTYPE_IiooI @ X0 @ $false)))) ) | ~spl0_2),
% 0.21/0.29 inference(backward_demodulation,[],[f12,f41])).
% 0.21/0.29 thf(f62,plain,(
% 0.21/0.29 ($true = $false) | (~spl0_2 | ~spl0_3)),
% 0.21/0.29 inference(backward_demodulation,[],[f60,f61])).
% 0.21/0.29 thf(f63,plain,(
% 0.21/0.29 $false | (~spl0_2 | ~spl0_3)),
% 0.21/0.29 inference(trivial_inequality_removal,[],[f62])).
% 0.21/0.29 thf(f64,plain,(
% 0.21/0.29 ~spl0_2 | ~spl0_3),
% 0.21/0.29 inference(avatar_contradiction_clause,[],[f63])).
% 0.21/0.29 thf(f67,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ ((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i) => $false))) = $true) | ~spl0_3),
% 0.21/0.29 inference(constrained_superposition,[],[f14,f45])).
% 0.21/0.29 thf(f69,plain,(
% 0.21/0.29 ($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (~ (likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i))))) | ~spl0_3),
% 0.21/0.29 inference(boolean_simplification,[],[f67])).
% 0.21/0.29 thf(f72,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | ($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (~ $true)))) | ~spl0_3),
% 0.21/0.29 inference(constrained_superposition,[],[f69,f16])).
% 0.21/0.29 thf(f74,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $false)) = $true) | ~spl0_3),
% 0.21/0.29 inference(boolean_simplification,[],[f72])).
% 0.21/0.29 thf(f76,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | ($true = $false) | ~spl0_3),
% 0.21/0.29 inference(forward_demodulation,[],[f74,f60])).
% 0.21/0.29 thf(f77,plain,(
% 0.21/0.29 (((likes_THFTYPE_IiioI @ lMary_THFTYPE_i @ lBill_THFTYPE_i)) = $false) | ~spl0_3),
% 0.21/0.29 inference(trivial_inequality_removal,[],[f76])).
% 0.21/0.29 thf(f78,plain,(
% 0.21/0.29 spl0_2 | ~spl0_3),
% 0.21/0.29 inference(avatar_split_clause,[],[f77,f44,f40])).
% 0.21/0.29 thf(f80,plain,(
% 0.21/0.29 ( ! [X0 : $i] : ((((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ ($true => (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0)))) = $true)) ) | ~spl0_6),
% 0.21/0.29 inference(backward_demodulation,[],[f14,f57])).
% 0.21/0.29 thf(f82,plain,(
% 0.21/0.29 ( ! [X0 : $i] : (($true = ((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ (likes_THFTYPE_IiioI @ lSue_THFTYPE_i @ X0))))) ) | ~spl0_6),
% 0.21/0.29 inference(boolean_simplification,[],[f80])).
% 0.21/0.29 thf(f84,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $false)) = $false) | ~spl0_5),
% 0.21/0.29 inference(backward_demodulation,[],[f26,f53])).
% 0.21/0.29 thf(f87,plain,(
% 0.21/0.29 (((holdsDuring_THFTYPE_IiooI @ (lYearFn_THFTYPE_IiiI @ n2009_THFTYPE_i) @ $false)) = $true) | (~spl0_5 | ~spl0_6)),
% 0.21/0.29 inference(forward_demodulation,[],[f82,f53])).
% 0.21/0.29 thf(f89,plain,(
% 0.21/0.29 ($true = $false) | (~spl0_5 | ~spl0_6)),
% 0.21/0.29 inference(forward_demodulation,[],[f87,f84])).
% 0.21/0.29 thf(f90,plain,(
% 0.21/0.29 $false | (~spl0_5 | ~spl0_6)),
% 0.21/0.29 inference(trivial_inequality_removal,[],[f89])).
% 0.21/0.29 thf(f91,plain,(
% 0.21/0.29 ~spl0_5 | ~spl0_6),
% 0.21/0.29 inference(avatar_contradiction_clause,[],[f90])).
% 0.21/0.29 cnf(s2, plain, spl0_3 | ~spl0_4, inference(sat_conversion,[],[f49])).
% 0.21/0.29 cnf(s4, plain, spl0_4 | spl0_6, inference(sat_conversion,[],[f58])).
% 0.21/0.29 cnf(s5, plain, spl0_4 | spl0_5, inference(sat_conversion,[],[f59])).
% 0.21/0.29 cnf(s6, plain, ~spl0_2 | ~spl0_3, inference(sat_conversion,[],[f64])).
% 0.21/0.29 cnf(s7, plain, spl0_2 | ~spl0_3, inference(sat_conversion,[],[f78])).
% 0.21/0.29 cnf(s9, plain, ~spl0_5 | ~spl0_6, inference(sat_conversion,[],[f91])).
% 0.21/0.29 cnf(s11, plain, spl0_4, inference(rat,[],[s9,s4,s5])).
% 0.21/0.29 cnf(s12, plain, spl0_3, inference(rat,[],[s2,s11])).
% 0.21/0.29 cnf(s13, plain, spl0_2, inference(rat,[],[s7,s12])).
% 0.21/0.29 cnf(s14, plain, $false, inference(rat,[],[s6,s12,s13])).
% 0.21/0.29 thf(f95,plain,(
% 0.21/0.29 $false),
% 0.21/0.29 inference(avatar_sat_refutation,[],[s14])).
% 0.21/0.29 % SZS output end Proof for theBenchmark
% 0.21/0.29 % (947575)------------------------------
% 0.21/0.29 % (947575)Version: Vampire 5.0.1 (Release build, commit 5ef7c2677 on 2026-07-16 16:54:09 +0200)
% 0.21/0.29 % (947575)Linked with Z3 4.14.0.0 3c47fd96cf5645d0c42b2c819d9e9a84380aa721 z3-4.8.4-9178-g3c47fd96c
% 0.21/0.29 % (947575)CaDiCaL version: 2.1.3
% 0.21/0.29 % (947575)Termination reason: Refutation
% 0.21/0.29 % (947575)Time elapsed: 0.003 s
% 0.21/0.29 % (947575)Peak memory usage: 13 MB
% 0.21/0.29 % (947575)Instructions burned: 7 (million)
% 0.21/0.29 % (947557)Success in time 0.041 s
% 0.21/0.29 % Vampire exiting
%------------------------------------------------------------------------------