Running: ./testmodel.py --libraries=/home/hudson/saved_omc/libraries/.openmodelica/libraries --ompython_omhome=/usr PNlib_PNlib.Examples.DisTest.ConflictBeneBaB.conf.json loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo", uses=false) loadFile("/home/hudson/saved_omc/libraries/.openmodelica/libraries/PNlib 3.0.0-master/package.mo", uses=false) Using package PNlib with version 3.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/PNlib 3.0.0-master/package.mo) Using package Modelica with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo) Using package Complex with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo) Using package ModelicaServices with version 4.0.0 (/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo) Running command: translateModel(PNlib.Examples.DisTest.ConflictBeneBaB,tolerance=1e-06,outputFormat="mat",numberOfIntervals=5000,variableFilter="P1.t|P2.t|P3.t|P4.t|P5.t|P6.t|P7.t|T1.active|T1.fire|T2.active|T2.fire|T3.active|T3.fire|T4.active|T4.fire|T5.active|T5.fire|T6.active|T6.fire|T7.active|T7.fire|time",fileNamePrefix="PNlib_PNlib.Examples.DisTest.ConflictBeneBaB") translateModel(PNlib.Examples.DisTest.ConflictBeneBaB,tolerance=1e-06,outputFormat="mat",numberOfIntervals=5000,variableFilter="P1.t|P2.t|P3.t|P4.t|P5.t|P6.t|P7.t|T1.active|T1.fire|T2.active|T2.fire|T3.active|T3.fire|T4.active|T4.fire|T5.active|T5.fire|T6.active|T6.fire|T7.active|T7.fire|time",fileNamePrefix="PNlib_PNlib.Examples.DisTest.ConflictBeneBaB") Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/ModelicaServices 4.0.0+maint.om/package.mo): time 0.001182/0.001182, allocations: 105 kB / 16.41 MB, free: 6.496 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Complex 4.0.0+maint.om/package.mo): time 0.001109/0.00111, allocations: 189.7 kB / 17.34 MB, free: 5.766 MB / 14.72 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/Modelica 4.0.0+maint.om/package.mo): time 2.242/2.242, allocations: 222.9 MB / 241 MB, free: 15.16 MB / 206.1 MB Notification: Performance of loadFile(/home/hudson/saved_omc/libraries/.openmodelica/libraries/PNlib 3.0.0-master/package.mo): time 0.131/0.131, allocations: 16.72 MB / 307.9 MB, free: 14.23 MB / 254.1 MB Notification: Performance of FrontEnd - loaded program: time 0.00121/0.00121, allocations: 59.89 kB / 427 MB, free: 10.45 MB / 302.1 MB Notification: Performance of FrontEnd - Absyn->SCode: time 0.08627/0.08749, allocations: 53.47 MB / 480.5 MB, free: 4.926 MB / 350.1 MB Notification: Performance of NFInst.instantiate(PNlib.Examples.DisTest.ConflictBeneBaB): time 0.008199/0.09574, allocations: 7.666 MB / 488.2 MB, free: 13.23 MB / 366.1 MB Notification: Performance of NFInst.instExpressions: time 0.01251/0.1083, allocations: 6.404 MB / 494.6 MB, free: 6.809 MB / 366.1 MB Notification: Performance of NFInst.updateImplicitVariability: time 0.002514/0.1109, allocations: 51.75 kB / 494.6 MB, free: 6.758 MB / 366.1 MB Notification: Performance of NFTyping.typeComponents: time 0.002294/0.1133, allocations: 0.7477 MB / 495.4 MB, free: 6.004 MB / 366.1 MB Notification: Performance of NFTyping.typeBindings: time 0.00368/0.117, allocations: 0.7943 MB / 496.1 MB, free: 5.203 MB / 366.1 MB Notification: Performance of NFTyping.typeClassSections: time 0.008604/0.1256, allocations: 3.451 MB / 499.6 MB, free: 1.75 MB / 366.1 MB Notification: Performance of NFFlatten.flatten: time 0.01273/0.1384, allocations: 10.41 MB / 0.4981 GB, free: 7.328 MB / 382.1 MB Notification: Performance of NFFlatten.resolveConnections: time 0.002447/0.1409, allocations: 1.806 MB / 0.4998 GB, free: 5.453 MB / 382.1 MB Notification: Performance of NFEvalConstants.evaluate: time 0.00592/0.1468, allocations: 3.977 MB / 0.5037 GB, free: 1.465 MB / 382.1 MB Notification: Performance of NFSimplifyModel.simplify: time 0.2084/0.3553, allocations: 2.87 MB / 0.5065 GB, free: 11.78 MB / 382.1 MB Notification: Performance of NFPackage.collectConstants: time 0.003235/0.3586, allocations: 0.756 MB / 0.5072 GB, free: 11.78 MB / 382.1 MB Notification: Performance of NFFlatten.collectFunctions: time 0.003771/0.3624, allocations: 1.397 MB / 0.5086 GB, free: 11.78 MB / 382.1 MB Notification: Performance of NFScalarize.scalarize: time 0.002195/0.3646, allocations: 1.319 MB / 0.5099 GB, free: 11.78 MB / 382.1 MB Notification: Performance of NFVerifyModel.verify: time 0.007174/0.3718, allocations: 3.361 MB / 0.5132 GB, free: 11.42 MB / 382.1 MB Notification: Performance of NFConvertDAE.convert: time 0.01305/0.3849, allocations: 8.288 MB / 0.5213 GB, free: 10.41 MB / 382.1 MB Notification: Performance of FrontEnd - DAE generated: time 7.564e-06/0.3849, allocations: 0 / 0.5213 GB, free: 10.41 MB / 382.1 MB Notification: Performance of FrontEnd: time 1.763e-06/0.3849, allocations: 0 / 0.5213 GB, free: 10.41 MB / 382.1 MB Notification: Performance of Transformations before backend: time 0.0003366/0.3853, allocations: 3.844 kB / 0.5213 GB, free: 10.41 MB / 382.1 MB Notification: Model statistics after passing the front-end and creating the data structures used by the back-end: * Number of equations: 1645 * Number of variables: 1645 Notification: Performance of Generate backend data structure: time 0.01862/0.4039, allocations: 8.223 MB / 0.5293 GB, free: 4.746 MB / 382.1 MB Notification: Performance of prepare preOptimizeDAE: time 4.617e-05/0.404, allocations: 10.75 kB / 0.5293 GB, free: 4.746 MB / 382.1 MB Notification: Performance of preOpt normalInlineFunction (simulation): time 0.004511/0.4085, allocations: 0.7687 MB / 0.5301 GB, free: 4.453 MB / 382.1 MB Notification: Performance of preOpt evaluateParameters (simulation): time 0.006403/0.4149, allocations: 2.405 MB / 0.5324 GB, free: 3.258 MB / 382.1 MB Notification: Performance of preOpt simplifyIfEquations (simulation): time 0.0009792/0.4159, allocations: 0.8807 MB / 0.5333 GB, free: 2.664 MB / 382.1 MB Notification: Performance of preOpt expandDerOperator (simulation): time 0.00288/0.4188, allocations: 0.7056 MB / 0.534 GB, free: 2.527 MB / 382.1 MB Notification: Performance of preOpt clockPartitioning (simulation): time 0.02994/0.4488, allocations: 12.89 MB / 0.5466 GB, free: 12.02 MB / 398.1 MB Notification: Performance of preOpt findStateOrder (simulation): time 0.0001433/0.449, allocations: 21.44 kB / 0.5466 GB, free: 12.02 MB / 398.1 MB Notification: Performance of preOpt replaceEdgeChange (simulation): time 0.002798/0.4518, allocations: 350.4 kB / 0.5469 GB, free: 11.87 MB / 398.1 MB Notification: Performance of preOpt inlineArrayEqn (simulation): time 0.001218/0.453, allocations: 0.6184 MB / 0.5475 GB, free: 11.59 MB / 398.1 MB Notification: Performance of preOpt removeEqualRHS (simulation): time 0.01961/0.4726, allocations: 9.134 MB / 0.5564 GB, free: 2.555 MB / 398.1 MB Notification: Performance of preOpt removeSimpleEquations (simulation): time 0.04375/0.5164, allocations: 27.72 MB / 0.5835 GB, free: 6.785 MB / 430.1 MB Notification: Performance of preOpt comSubExp (simulation): time 0.01598/0.5324, allocations: 14.82 MB / 0.598 GB, free: 7.949 MB / 446.1 MB Notification: Performance of preOpt resolveLoops (simulation): time 0.01452/0.547, allocations: 14.14 MB / 0.6118 GB, free: 9.801 MB / 462.1 MB Notification: Performance of preOpt evalFunc (simulation): time 0.000246/0.5473, allocations: 121.9 kB / 0.6119 GB, free: 9.664 MB / 462.1 MB Notification: Performance of preOpt encapsulateWhenConditions (simulation): time 0.01322/0.5605, allocations: 7.918 MB / 0.6196 GB, free: 1.559 MB / 462.1 MB Notification: Performance of pre-optimization done (n=637): time 1.011e-05/0.5606, allocations: 0 / 0.6196 GB, free: 1.559 MB / 462.1 MB Notification: Performance of matching and sorting (n=637): time 0.04257/0.6032, allocations: 22.93 MB / 0.642 GB, free: 10.22 MB / 494.1 MB Notification: Performance of inlineWhenForInitialization (initialization): time 0.003157/0.6064, allocations: 4.001 MB / 0.6459 GB, free: 5.531 MB / 494.1 MB Notification: Performance of selectInitializationVariablesDAE (initialization): time 0.004545/0.611, allocations: 2.784 MB / 0.6486 GB, free: 2.719 MB / 494.1 MB Notification: Performance of collectPreVariables (initialization): time 0.001235/0.6122, allocations: 359.5 kB / 0.649 GB, free: 2.363 MB / 494.1 MB Notification: Performance of collectInitialEqns (initialization): time 0.001949/0.6142, allocations: 1.901 MB / 0.6508 GB, free: 0.5078 MB / 494.1 MB Notification: Performance of collectInitialBindings (initialization): time 0.002364/0.6166, allocations: 1.586 MB / 0.6524 GB, free: 14.96 MB / 0.4981 GB Notification: Performance of simplifyInitialFunctions (initialization): time 0.003134/0.6197, allocations: 1.942 MB / 0.6543 GB, free: 13.02 MB / 0.4981 GB Notification: Performance of setup shared object (initialization): time 0.0001209/0.6199, allocations: 305.1 kB / 0.6546 GB, free: 12.71 MB / 0.4981 GB Notification: Performance of preBalanceInitialSystem (initialization): time 0.006435/0.6263, allocations: 3.726 MB / 0.6582 GB, free: 8.984 MB / 0.4981 GB Notification: Performance of partitionIndependentBlocks (initialization): time 0.00894/0.6353, allocations: 6.938 MB / 0.665 GB, free: 0.6875 MB / 0.4981 GB Notification: Performance of analyzeInitialSystem (initialization): time 0.02799/0.6633, allocations: 20.58 MB / 0.6851 GB, free: 9.961 MB / 0.5294 GB Notification: Performance of solveInitialSystemEqSystem (initialization): time 0.0001621/0.6635, allocations: 28 kB / 0.6851 GB, free: 9.934 MB / 0.5294 GB Notification: Performance of matching and sorting (n=1262) (initialization): time 0.02783/0.6914, allocations: 14.73 MB / 0.6995 GB, free: 11.18 MB / 0.545 GB Notification: Performance of prepare postOptimizeDAE: time 0.001815/0.6932, allocations: 2.307 MB / 0.7018 GB, free: 8.438 MB / 0.545 GB Notification: Performance of postOpt simplifyComplexFunction (initialization): time 0.0002095/0.6934, allocations: 96 kB / 0.7018 GB, free: 8.344 MB / 0.545 GB Notification: Performance of postOpt tearingSystem (initialization): time 0.0002161/0.6937, allocations: 148 kB / 0.702 GB, free: 8.199 MB / 0.545 GB Notification: Performance of postOpt solveSimpleEquations (initialization): time 0.004538/0.6982, allocations: 1.083 MB / 0.703 GB, free: 7.113 MB / 0.545 GB Notification: Performance of postOpt calculateStrongComponentJacobians (initialization): time 0.0002047/0.6985, allocations: 207.2 kB / 0.7032 GB, free: 6.91 MB / 0.545 GB Notification: Performance of postOpt simplifyAllExpressions (initialization): time 0.00674/0.7052, allocations: 1.088 MB / 0.7043 GB, free: 5.812 MB / 0.545 GB Notification: Performance of postOpt collapseArrayExpressions (initialization): time 0.001883/0.7071, allocations: 468 kB / 0.7047 GB, free: 5.355 MB / 0.545 GB Warning: Assuming fixed start value for the following 175 variables: P6.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P6.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P6.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P6.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P6.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P6.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P6.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P6.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P6.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P6.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P7.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P7.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P7.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P7.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P7.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P7.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P7.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P7.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P7.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P7.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P7.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P7.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P7.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P7.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P7.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P7.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P7.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P7.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P7.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer P7.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P5.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P5.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P5.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P5.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P5.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P5.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P5.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P5.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P5.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P5.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P5.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P5.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P5.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P5.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P5.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P5.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P5.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P5.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P5.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer P5.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P4.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P4.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P4.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P4.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P4.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P4.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P4.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P4.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P4.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P4.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P3.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P3.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P3.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P3.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P3.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P3.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P3.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P3.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P3.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P3.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P2.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P2.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P2.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P2.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P2.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P2.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P2.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P2.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P2.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P2.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P1.enableIn.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P1.enableIn.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P1.enableIn.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P1.enableIn.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P1.enableIn.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P1.enableIn.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P1.enableIn.sumEnablingProbTAin:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active input transitions" type: Real P1.enableIn.nTAin:DISCRETE(fixed = true protected = true ) "number ofactive input transitions" type: Integer P1.enableIn.nremTAin:DISCRETE(fixed = true protected = true ) "number of remaining active input transitions" type: Integer P1.enableIn.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P6.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P6.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer T6.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T6.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real T7.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T7.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real P7.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P7.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P5.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P5.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P4.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P4.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer T5.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T5.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real T4.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T4.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real T3.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T3.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real P3.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P3.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P2.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P2.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer T2.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T2.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real T1.ani:DISCRETE(fixed = true protected = true ) "for transition animation" type: Boolean T1.fireTime:DISCRETE(fixed = true protected = true ) "for transition animation" type: Real P1.firingSumOut.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P1.firingSumIn.firingSum:DISCRETE(fixed = true protected = true ) "firing sum" type: Integer P6.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P6.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P6.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P6.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P6.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P6.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P6.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P6.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P6.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P6.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer P4.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P4.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P4.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P4.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P4.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P4.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P4.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P4.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P4.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P4.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer P3.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P3.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P3.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P3.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P3.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P3.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P3.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P3.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P3.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P3.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer P2.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P2.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P2.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P2.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P2.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P2.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P2.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P2.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P2.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P2.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer P1.enableOut.benefitLimit:DISCRETE(fixed = true protected = true ) "best valid benefit" type: Real P1.enableOut.valid:DISCRETE(fixed = true protected = true ) "valid solution" type: Boolean P1.enableOut.benefitMax:DISCRETE(fixed = true protected = true ) "theoretical benefit" type: Real P1.enableOut.Index:DISCRETE(fixed = true protected = true ) "priority Index" type: Integer P1.enableOut.endWhile:DISCRETE(fixed = true protected = true ) type: Boolean P1.enableOut.sumEnablingProbTAout:DISCRETE(fixed = true protected = true ) "sum of the enabling probabilities of the active output transitions" type: Real P1.enableOut.posTE:DISCRETE(fixed = true protected = true ) "possible enabled transition" type: Integer P1.enableOut.k:DISCRETE(fixed = true protected = true ) "iteration index" type: Integer P1.enableOut.nTAout:DISCRETE(fixed = true protected = true ) "number of active output transitions" type: Integer P1.enableOut.nremTAout:DISCRETE(fixed = true protected = true ) "number of remaining active output transitions" type: Integer T6.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real T7.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real T5.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real T4.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real T3.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real T2.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real T1.firingTime:DISCRETE(fixed = true protected = true ) "next putative firing time" type: Real Notification: Model statistics after passing the back-end for initialization: * Number of independent subsystems: 433 * Number of states: 0 () * Number of discrete variables: 1038 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eOut.TAout[5],P7.enableOut.TAout[4],P7.enableOut.TAout[3],P7.enableOut.TAout[2],P7.enableOut.TAout[1],P7.enableOut.arcWeight[5],P7.enableOut.arcWeight[4],P7.enableOut.arcWeight[3],P7.enableOut.arcWeight[2],P7.enableOut.arcWeight[1],P7.firingSumOut.firingSum,P7.firingSumOut.arcWeight[6],P7.firingSumOut.arcWeight[5],P7.firingSumOut.arcWeight[4],P7.firingSumOut.arcWeight[3],P7.firingSumOut.arcWeight[2],P7.firingSumOut.arcWeight[1],P7.firingSumOut.fire[6],P7.firingSumOut.fire[5],P7.firingSumOut.fire[4],P7.firingSumOut.fire[3],P7.firingSumOut.fire[2],P7.firingSumOut.fire[1],P7.firingSumIn.firingSum,P7.firingSumIn.arcWeight[1],P7.firingSumIn.fire[1],P7.delayPassedIn.numtrue,P7.delayPassedIn.anytrue,P7.delayPassedIn.vec[1],P7.delayPassedOut.numtrue,P7.delayPassedOut.anytrue,P7.delayPassedOut.vec[6],P7.delayPassedOut.vec[5],P7.delayPassedOut.vec[4],P7.delayPassedOut.vec[3],P7.delayPassedOut.vec[2],P7.delayPassedOut.vec[1],P7.activeConOut.anychange,P7.activeConOut.vec[6],P7.activeConOut.vec[5],P7.activeConOut.vec[4],P7.activeConOut.vec[3],P7.activeConOut.vec[2],P7.activeConOut.vec[1],P7.activeOut[6],$PRE.P7.activeOut[6],P7.activeOut[5],$PRE.P7.activeOut[5],P7.activeOut[4],$PRE.P7.activeOut[4],P7.activeOut[3],$PRE.P7.activeOut[3],P7.activeOut[2],$PRE.P7.activeOut[2],P7.activeOut[1],$PRE.P7.activeOut[1],P7.t,$PRE.P7.t,P5.enableIn.arcWeightSum,P5.enableIn.TEin[1],P5.enableIn.TEin_[1],P5.enableIn.active[1],P5.enableIn.TAein[1],P5.enableIn.arcWeight[1],P5.enableOut.arcWeightSum,P5.enableOut.TEout[1],P5.enableOut.TEout_[1],P5.enableOut.TAout[1],P5.firingSumOut.firingSum,P5.firingSumOut.arcWeight[1],P5.firingSumOut.fire[1],P5.firingSumIn.firingSum,P5.firingSumIn.arcWeight[1],P5.firingSumIn.fire[1],P5.delayPassedIn.numtrue,P5.delayPassedIn.anytrue,P5.delayPassedIn.vec[1],P5.delayPassedOut.numtrue,P5.delayPassedOut.anytrue,P5.delayPassedOut.vec[1],P5.activeConOut.anychange,P5.activeConOut.vec[1],P5.activeOut[1],$PRE.P5.activeOut[1],P5.inTransition[1].enabledByInPlaces,P5.t,$PRE.P5.t,P4.enableIn.arcWeightSum,P4.enableIn.TEin[1],P4.enableIn.TEin_[1],P4.enableIn.active[1],P4.enableIn.TAein[1],P4.enableIn.arcWeight[1],P4.firingSumIn.firingSum,P4.firingSumIn.arcWeight[1],P4.firingSumIn.fire[1],P4.delayPassedIn.numtrue,P4.delayPassedIn.anytrue,P4.delayPassedIn.vec[1],P4.inTransition[1].enabledByInPlaces,P4.t,$PRE.P4.t,T5.activation.active,T5.activation.maxTokensInt[1],T5.activation.minTokensInt[1],T5.activation.tIntOut[1],T5.activation.tIntIn[1],T5.delayPassed,$PRE.T5.delayPassed,T5.firingTime,T5.active,T4.activation.active,T4.activation.maxTokensInt[1],T4.activation.minTokensInt[1],T4.activation.tIntOut[1],T4.activation.tIntIn[1],T4.delayPassed,$PRE.T4.delayPassed,T4.firingTime,T4.active,T3.activation.active,T3.activation.maxTokensInt[1],T3.activation.minTokensInt[1],T3.activation.arcWeightIntOut[1],T3.activation.tIntOut[1],T3.activation.tIntIn[1],T3.delayPassed,$PRE.T3.delayPassed,T3.firingTime,T3.outPlaces[1].enabledByInPlaces,T3.active,P3.enableIn.arcWeightSum,P3.enableIn.TEin[1],P3.enableIn.TEin_[1],P3.enableIn.active[1],P3.enableIn.TAein[1],P3.firingSumIn.firingSum,P3.firingSumIn.arcWeight[1],P3.firingSumIn.fire[1],P3.delayPassedIn.numtrue,P3.delayPassedIn.anytrue,P3.delayPassedIn.vec[1],P3.t,$PRE.P3.t,P2.enableIn.arcWeightSum,P2.enableIn.TEin[1],P2.enableIn.TEin_[1],P2.enableIn.active[1],P2.enableIn.TAein[1],P2.enableIn.arcWeight[1],P2.firingSumIn.firingSum,P2.firingSumIn.arcWeight[1],P2.firingSumIn.fire[1],P2.delayPassedIn.numtrue,P2.delayPassedIn.anytrue,P2.delayPassedIn.vec[1],P2.inTransition[1].enabledByInPlaces,P2.t,$PRE.P2.t,T2.activation.active,T2.activation.maxTokensInt[1],T2.activation.minTokensInt[1],T2.activation.tIntOut[1],T2.activation.tIntIn[1],T2.delayPassed,$PRE.T2.delayPassed,T2.firingTime,T2.active,T1.activation.active,T1.activation.maxTokensInt[1],T1.activation.minTokensInt[1],T1.activation.arcWeightIntOut[1],T1.activation.tIntOut[1],T1.activation.tIntIn[1],T1.delayPassed,$PRE.T1.delayPassed,T1.firingTime,T1.outPlaces[1].enabledByInPlaces,T1.active,P1.enableIn.arcWeightSum,P1.enableIn.TEin[1],P1.enableIn.TEin_[1],P1.enableIn.active[1],P1.enableIn.TAein[1],P1.firingSumIn.firingSum,P1.firingSumIn.arcWeight[1],P1.firingSumIn.fire[1],P1.delayPassedIn.numtrue,P1.delayPassedIn.anytrue,P1.delayPassedIn.vec[1],P1.t,$PRE.P1.t,$whenCondition14,$whenCondition13,$whenCondition12,$whenCondition11,$whenCondition10,$whenCondition9,$whenCondition8,$whenCondition7,$whenCondition6,$whenCondition18,$whenCondition19,$whenCondition20,$whenCondition21,$whenCondition31,$whenCondition32,$whenCondition33,$whenCondition34,$whenCondition35,$whenCondition36,$whenCondition43,$whenCondition44,$whenCondition45,$whenCondition46,P6.inTransition[1].emptied,P7.outTransition[6].fed,P7.outTransition[5].fed,P7.outTransition[4].fed,P7.outTransition[3].fed,P7.outTransition[2].fed,P7.outTransition[1].fed,P7.inTransition[1].emptied,P5.outTransition[1].fed,P5.inTransition[1].emptied,P4.inTransition[1].emptied,P3.inTransition[1].emptied,P2.inTransition[1].emptied,P1.inTransition[1].emptied) * Number of discrete states: 0 () * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for initialization (1145): * Single equations (assignments): 1073 * Array equations: 2 * Algorithm blocks: 70 * Record equations: 0 * When equations: 0 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 0 * Mixed (continuous/discrete) equation systems: 0 Notification: Performance of prepare postOptimizeDAE: time 0.2228/0.93, allocations: 5.374 MB / 0.71 GB, free: 187 MB / 0.545 GB Notification: Performance of postOpt lateInlineFunction (simulation): time 0.002784/0.9328, allocations: 0.5746 MB / 0.7106 GB, free: 187 MB / 0.545 GB Notification: Performance of postOpt wrapFunctionCalls (simulation): time 0.03235/0.9652, allocations: 17.74 MB / 0.7279 GB, free: 183.9 MB / 0.545 GB Notification: Performance of postOpt inlineArrayEqn (simulation): time 5.914e-05/0.9653, allocations: 43.52 kB / 0.7279 GB, free: 183.9 MB / 0.545 GB Notification: Performance of postOpt constantLinearSystem (simulation): time 1.423e-05/0.9653, allocations: 3.188 kB / 0.7279 GB, free: 183.9 MB / 0.545 GB Notification: Performance of postOpt simplifysemiLinear (simulation): time 2.833e-05/0.9654, allocations: 15 kB / 0.7279 GB, free: 183.9 MB / 0.545 GB Notification: Performance of postOpt removeSimpleEquations (simulation): time 0.03673/1.002, allocations: 25.33 MB / 0.7527 GB, free: 167.5 MB / 0.545 GB Notification: Performance of postOpt simplifyComplexFunction (simulation): time 2.056e-05/1.002, allocations: 3.188 kB / 0.7527 GB, free: 167.5 MB / 0.545 GB Notification: Performance of postOpt solveSimpleEquations (simulation): time 0.0009829/1.003, allocations: 272.2 kB / 0.7529 GB, free: 167.3 MB / 0.545 GB Notification: Performance of postOpt tearingSystem (simulation): time 1.572e-05/1.003, allocations: 12 kB / 0.753 GB, free: 167.3 MB / 0.545 GB Notification: Performance of postOpt inputDerivativesUsed (simulation): time 0.001199/1.004, allocations: 317.8 kB / 0.7533 GB, free: 167 MB / 0.545 GB Notification: Performance of postOpt calculateStrongComponentJacobians (simulation): time 1.546e-05/1.004, allocations: 15.84 kB / 0.7533 GB, free: 167 MB / 0.545 GB Notification: Performance of postOpt calculateStateSetsJacobians (simulation): time 2.685e-06/1.004, allocations: 0 / 0.7533 GB, free: 167 MB / 0.545 GB Notification: Performance of postOpt symbolicJacobian (simulation): time 0.02415/1.029, allocations: 19.62 MB / 0.7724 GB, free: 147.1 MB / 0.545 GB Notification: Performance of postOpt removeConstants (simulation): time 0.0007533/1.029, allocations: 495.9 kB / 0.7729 GB, free: 146.9 MB / 0.545 GB Notification: Performance of postOpt simplifyTimeIndepFuncCalls (simulation): time 0.002547/1.032, allocations: 0.5623 MB / 0.7735 GB, free: 146.3 MB / 0.545 GB Notification: Performance of postOpt simplifyAllExpressions (simulation): time 0.004163/1.036, allocations: 0.5605 MB / 0.774 GB, free: 145.8 MB / 0.545 GB Notification: Performance of postOpt findZeroCrossings (simulation): time 0.003432/1.04, allocations: 2.465 MB / 0.7764 GB, free: 143.3 MB / 0.545 GB Notification: Performance of postOpt collapseArrayExpressions (simulation): time 0.001639/1.041, allocations: 379.5 kB / 0.7768 GB, free: 142.9 MB / 0.545 GB Notification: Performance of sorting global known variables: time 0.001919/1.043, allocations: 1.448 MB / 0.7782 GB, free: 141.5 MB / 0.545 GB Notification: Performance of sort global known variables: time 3.1e-07/1.043, allocations: 3.5 kB / 0.7782 GB, free: 141.5 MB / 0.545 GB Notification: Performance of remove unused functions: time 0.009149/1.052, allocations: 2.107 MB / 0.7802 GB, free: 139.5 MB / 0.545 GB Notification: Model statistics after passing the back-end for simulation: * Number of independent subsystems: 6 * Number of states: 0 () * Number of discrete variables: 567 ($whenCondition1,P1.activeConOut.anychange,P1.delayPassedOut.anytrue,P1.delayPassedOut.numtrue,P1.enableOut.state128[1],P1.enableOut.state128[2],P1.enableOut.state128[3],P1.enableOut.state128[4],P1.enableOut.arcWeightSum,P1.enableOut.nremTAout,P1.enableOut.nTAout,P1.enableOut.k,P1.enableOut.posTE,P1.enableOut.randNum,P1.enableOut.sumEnablingProbTAout,P1.enableOut.endWhile,P1.enableOut.Index,P1.enableOut.benefitMax,P1.enableOut.valid,P1.enableOut.benefitLimit,$whenCondition2,P2.activeConOut.anychange,P2.delayPassedOut.anytrue,P2.delayPassedOut.numtrue,P2.enableOut.state128[1],P2.enableOut.state128[2],P2.enableOut.state128[3],P2.enableOut.state128[4],P2.enableOut.arcWeightSum,P2.enableOut.nremTAout,P2.enableOut.nTAout,P2.enableOut.k,P2.enableOut.posTE,P2.enableOut.randNum,P2.enableOut.sumEnablingProbTAout,P2.enableOut.endWhile,P2.enableOut.Index,P2.enableOut.benefitMax,P2.enableOut.valid,P2.enableOut.benefitLimit,$whenCondition3,P3.activeConOut.anychange,P3.delayPassedOut.anytrue,P3.delayPassedOut.numtrue,P3.enableOut.state128[1],P3.enableOut.state128[2],P3.enableOut.state128[3],P3.enableOut.state128[4],P3.enableOut.arcWeightSum,P3.enableOut.nremTAout,P3.enableOut.nTAout,P3.enableOut.k,P3.enableOut.posTE,P3.enableOut.randNum,P3.enableOut.sumEnablingProbTAout,P3.enableOut.endWhile,P3.enableOut.Index,P3.enableOut.benefitMax,P3.enableOut.valid,P3.enableOut.benefitLimit,$whenCondition4,P4.activeConOut.anychange,P4.delayPassedOut.anytrue,P4.delayPassedOut.numtrue,P4.enableOut.state128[1],P4.enableOut.state128[2],P4.enableOut.state128[3],P4.enableOut.state128[4],P4.enableOut.arcWeightSum,P4.enableOut.nremTAout,P4.enableOut.nTAout,P4.enableOut.k,P4.enableOut.posTE,P4.enableOut.randNum,P4.enableOut.sumEnablingProbTAout,P4.enableOut.endWhile,P4.enableOut.Index,P4.enableOut.benefitMax,P4.enableOut.valid,P4.enableOut.benefitLimit,$whenCondition5,P6.activeConOut.anychange,P6.delayPassedOut.anytrue,P6.delayPassedOut.numtrue,P6.enableOut.state128[1],P6.enableOut.state128[2],P6.enableOut.state128[3],P6.enableOut.state128[4],P6.enableOut.arcWeightSum,P6.enableOut.nremTAout,P6.enableOut.nTAout,P6.enableOut.k,P6.enableOut.posTE,P6.enableOut.randNum,P6.enableOut.sumEnablingProbTAout,P6.enableOut.endWhile,P6.enableOut.Index,P6.enableOut.benefitMax,P6.enableOut.valid,P6.enableOut.benefitLimit,T1.active,T2.active,T3.active,T4.active,T5.active,T7.active,T6.active,$whenCondition48,$whenCondition47,$whenCondition49,$whenCondition46,$whenCondition45,$whenCondition44,$whenCondition43,$whenCondition41,$whenCondition40,$whenCondition42,$whenCondition38,$whenCondition37,$whenCondition39,$whenCondition36,$whenCondition35,$whenCondition34,$whenCondition33,$whenCondition32,$whenCondition31,$whenCondition29,$whenCondition28,$whenCondition30,$whenCondition26,$whenCondition25,$whenCondition27,$whenCondition23,$whenCondition22,$whenCondition24,$whenCondition21,$whenCondition20,$whenCondition19,$whenCondition18,$whenCondition16,$whenCondition15,$whenCondition17,$whenCondition6,$whenCondition7,$whenCondition8,$whenCondition9,$whenCondition10,$whenCondition11,$whenCondition12,$whenCondition13,$whenCondition14,P1.t,P1.tokeninout,P1.delayPassedIn.vec[1],P1.delayPassedIn.anytrue,P1.delayPassedIn.numtrue,P1.firingSumIn.fire[1],P1.firingSumIn.arcWeight[1],P1.firingSumIn.firingSum,P1.firingSumOut.firingSum,P1.enableIn.TAein[1],P1.enableIn.active[1],P1.enableIn.TEin_[1],P1.enableIn.state128[1],P1.enableIn.state128[2],P1.enableIn.state128[3],P1.enableIn.state128[4],P1.enableIn.TEin[1],P1.enableIn.remTAin[1],P1.enableIn.cumEnablingProb[1],P1.enableIn.arcWeightSum,P1.enableIn.nremTAin,P1.enableIn.nTAin,P1.enableIn.k,P1.enableIn.posTE,P1.enableIn.randNum,P1.enableIn.sumEnablingProbTAin,P1.enableIn.endWhile,P1.enableIn.Index,P1.enableIn.benefitMax,P1.enableIn.valid,P1.enableIn.benefitLimit,T1.outPlaces[1].enabledByInPlaces,T1.firingTime,T1.fireTime,T1.delayPassed,T1.ani,T1.activation.tIntIn[1],T1.activation.tIntOut[1],T1.activation.arcWeightIntOut[1],T1.activation.minTokensInt[1],T1.activation.maxTokensInt[1],T1.activation.active,T2.firingTime,T2.fireTime,T2.delayPassed,T2.ani,T2.activation.tIntIn[1],T2.activation.tIntOut[1],T2.activation.minTokensInt[1],T2.activation.maxTokensInt[1],T2.activation.active,P2.t,P2.inTransition[1].enabledByInPlaces,P2.tokeninout,P2.delayPassedIn.vec[1],P2.delayPassedIn.anytrue,P2.delayPassedIn.numtrue,P2.firingSumIn.fire[1],P2.firingSumIn.arcWeight[1],P2.firingSumIn.firingSum,P2.firingSumOut.firingSum,P2.enableIn.arcWeight[1],P2.enableIn.TAein[1],P2.enableIn.active[1],P2.enableIn.TEin_[1],P2.enableIn.state128[1],P2.enableIn.state128[2],P2.enableIn.state128[3],P2.enableIn.state128[4],P2.enableIn.TEin[1],P2.enableIn.remTAin[1],P2.enableIn.cumEnablingProb[1],P2.enableIn.arcWeightSum,P2.enableIn.nremTAin,P2.enableIn.nTAin,P2.enableIn.k,P2.enableIn.posTE,P2.enableIn.randNum,P2.enableIn.sumEnablingProbTAin,P2.enableIn.endWhile,P2.enableIn.Index,P2.enableIn.benefitMax,P2.enableIn.valid,P2.enableIn.benefitLimit,P3.t,P3.tokeninout,P3.delayPassedIn.vec[1],P3.delayPassedIn.anytrue,P3.delayPassedIn.numtrue,P3.firingSumIn.fire[1],P3.firingSumIn.arcWeight[1],P3.firingSumIn.firingSum,P3.firingSumOut.firingSum,P3.enableIn.TAein[1],P3.enableIn.active[1],P3.enableIn.TEin_[1],P3.enableIn.state128[1],P3.enableIn.state128[2],P3.enableIn.state128[3],P3.enableIn.state128[4],P3.enableIn.TEin[1],P3.enableIn.remTAin[1],P3.enableIn.cumEnablingProb[1],P3.enableIn.arcWeightSum,P3.enableIn.nremTAin,P3.enableIn.nTAin,P3.enableIn.k,P3.enableIn.posTE,P3.enableIn.randNum,P3.enableIn.sumEnablingProbTAin,P3.enableIn.endWhile,P3.enableIn.Index,P3.enableIn.benefitMax,P3.enableIn.valid,P3.enableIn.benefitLimit,T3.outPlaces[1].enabledByInPlaces,T3.firingTime,T3.fireTime,T3.delayPassed,T3.ani,T3.activation.tIntIn[1],T3.activation.tIntOut[1],T3.activation.arcWeightIntOut[1],T3.activation.minTokensInt[1],T3.activation.maxTokensInt[1],T3.activation.active,T4.firingTime,T4.fireTime,T4.delayPassed,T4.ani,T4.activation.tIntIn[1],T4.activation.tIntOut[1],T4.activation.minTokensInt[1],T4.activation.maxTokensInt[1],T4.activation.active,T5.firingTime,T5.fireTime,T5.delayPassed,T5.ani,T5.activation.tIntIn[1],T5.activation.tIntOut[1],T5.activation.minTokensInt[1],T5.activation.maxTokensInt[1],T5.activation.active,P4.t,P4.inTransition[1].enabledByInPlaces,P4.tokeninout,P4.delayPassedIn.vec[1],P4.delayPassedIn.anytrue,P4.delayPassedIn.numtrue,P4.firingSumIn.fire[1],P4.firingSumIn.arcWeight[1],P4.firingSumIn.firingSum,P4.firingSumOut.firingSum,P4.enableIn.arcWeight[1],P4.enableIn.TAein[1],P4.enableIn.active[1],P4.enableIn.TEin_[1],P4.enableIn.state128[1],P4.enableIn.state128[2],P4.enableIn.state128[3],P4.enableIn.state128[4],P4.enableIn.TEin[1],P4.enableIn.remTAin[1],P4.enableIn.cumEnablingProb[1],P4.enableIn.arcWeightSum,P4.enableIn.nremTAin,P4.enableIn.nTAin,P4.enableIn.k,P4.enableIn.posTE,P4.enableIn.randNum,P4.enableIn.sumEnablingProbTAin,P4.enableIn.endWhile,P4.enableIn.Index,P4.enableIn.benefitMax,P4.enableIn.valid,P4.enableIn.benefitLimit,P5.t,P5.inTransition[1].enabledByInPlaces,P5.tokeninout,P5.activeOut[1],P5.activeConOut.vec[1],P5.activeConOut.anychange,P5.delayPassedOut.vec[1],P5.delayPassedOut.anytrue,P5.delayPassedOut.numtrue,P5.delayPassedIn.vec[1],P5.delayPassedIn.anytrue,P5.delayPassedIn.numtrue,P5.firingSumIn.fire[1],P5.firingSumIn.arcWeight[1],P5.firingSumIn.firingSum,P5.firingSumOut.fire[1],P5.firingSumOut.arcWeight[1],P5.firingSumOut.firingSum,P5.enableOut.TAout[1],P5.enableOut.TEout_[1],P5.enableOut.state128[1],P5.enableOut.state128[2],P5.enableOut.state128[3],P5.enableOut.state128[4],P5.enableOut.TEout[1],P5.enableOut.remTAout[1],P5.enableOut.cumEnablingProb[1],P5.enableOut.arcWeightSum,P5.enableOut.nremTAout,P5.enableOut.nTAout,P5.enableOut.k,P5.enableOut.posTE,P5.enableOut.randNum,P5.enableOut.sumEnablingProbTAout,P5.enableOut.endWhile,P5.enableOut.Index,P5.enableOut.benefitMax,P5.enableOut.valid,P5.enableOut.benefitLimit,P5.enableIn.arcWeight[1],P5.enableIn.TAein[1],P5.enableIn.active[1],P5.enableIn.TEin_[1],P5.enableIn.state128[1],P5.enableIn.state128[2],P5.enableIn.state128[3],P5.enableIn.state128[4],P5.enableIn.TEin[1],P5.enableIn.remTAin[1],P5.enableIn.cumEnablingProb[1],P5.enableIn.arcWeightSum,P5.enableIn.nremTAin,P5.enableIn.nTAin,P5.enableIn.k,P5.enableIn.posTE,P5.enableIn.randNum,P5.enableIn.sumEnablingProbTAin,P5.enableIn.endWhile,P5.enableIn.Index,P5.enableIn.benefitMax,P5.enableIn.valid,P5.enableIn.benefitLimit,P7.t,P7.outTransition[1].tokenInOut,P7.outTransition[2].tokenInOut,P7.outTransition[3].tokenInOut,P7.outTransition[4].tokenInOut,P7.outTransition[5].tokenInOut,P7.tokeninout,P7.activeOut[1],P7.activeOut[2],P7.activeOut[3],P7.activeOut[4],P7.activeOut[5],P7.activeOut[6],P7.activeConOut.vec[1],P7.activeConOut.vec[2],P7.activeConOut.vec[3],P7.activeConOut.vec[4],P7.activeConOut.vec[5],P7.activeConOut.vec[6],P7.activeConOut.anychange,P7.delayPassedOut.vec[1],P7.delayPassedOut.vec[2],P7.delayPassedOut.vec[3],P7.delayPassedOut.vec[4],P7.delayPassedOut.vec[5],P7.delayPassedOut.vec[6],P7.delayPassedOut.anytrue,P7.delayPassedOut.numtrue,P7.delayPassedIn.vec[1],P7.delayPassedIn.anytrue,P7.delayPassedIn.numtrue,P7.firingSumIn.fire[1],P7.firingSumIn.arcWeight[1],P7.firingSumIn.firingSum,P7.firingSumOut.fire[1],P7.firingSumOut.fire[2],P7.firingSumOut.fire[3],P7.firingSumOut.fire[4],P7.firingSumOut.fire[5],P7.firingSumOut.fire[6],P7.firingSumOut.arcWeight[1],P7.firingSumOut.arcWeight[2],P7.firingSumOut.arcWeight[3],P7.firingSumOut.arcWeight[4],P7.firingSumOut.arcWeight[5],P7.firingSumOut.arcWeight[6],P7.firingSumOut.firingSum,P7.enableOut.arcWeight[1],P7.enableOut.arcWeight[2],P7.enableOut.arcWeight[3],P7.enableOut.arcWeight[4],P7.enableOut.arcWeight[5],P7.enableOut.TAout[1],P7.enableOut.TAout[2],P7.enableOut.TAout[3],P7.enableOut.TAout[4],P7.enableOut.TAout[5],P7.enableOut.TAout[6],P7.enableOut.TEout_[1],P7.enableOut.TEout_[2],P7.enableOut.TEout_[3],P7.enableOut.TEout_[4],P7.enableOut.TEout_[5],P7.enableOut.TEout_[6],P7.enableOut.state128[1],P7.enableOut.state128[2],P7.enableOut.state128[3],P7.enableOut.state128[4],P7.enableOut.TEout[1],P7.enableOut.TEout[2],P7.enableOut.TEout[3],P7.enableOut.TEout[4],P7.enableOut.TEout[5],P7.enableOut.TEout[6],P7.enableOut.remTAout[1],P7.enableOut.remTAout[2],P7.enableOut.remTAout[3],P7.enableOut.remTAout[4],P7.enableOut.remTAout[5],P7.enableOut.remTAout[6],P7.enableOut.cumEnablingProb[1],P7.enableOut.cumEnablingProb[2],P7.enableOut.cumEnablingProb[3],P7.enableOut.cumEnablingProb[4],P7.enableOut.cumEnablingProb[5],P7.enableOut.cumEnablingProb[6],P7.enableOut.arcWeightSum,P7.enableOut.nremTAout,P7.enableOut.nTAout,P7.enableOut.k,P7.enableOut.posTE,P7.enableOut.randNum,P7.enableOut.sumEnablingProbTAout,P7.enableOut.endWhile,P7.enableOut.Index,P7.enableOut.benefitMax,P7.enableOut.valid,P7.enableOut.benefitLimit,P7.enableIn.TAein[1],P7.enableIn.active[1],P7.enableIn.TEin_[1],P7.enableIn.state128[1],P7.enableIn.state128[2],P7.enableIn.state128[3],P7.enableIn.state128[4],P7.enableIn.TEin[1],P7.enableIn.remTAin[1],P7.enableIn.cumEnablingProb[1],P7.enableIn.arcWeightSum,P7.enableIn.nremTAin,P7.enableIn.nTAin,P7.enableIn.k,P7.enableIn.posTE,P7.enableIn.randNum,P7.enableIn.sumEnablingProbTAin,P7.enableIn.endWhile,P7.enableIn.Index,P7.enableIn.benefitMax,P7.enableIn.valid,P7.enableIn.benefitLimit,T7.inPlaces[1].tokenInOut,T7.outPlaces[1].enabledByInPlaces,T7.firingTime,T7.fireTime,T7.delayPassed,T7.ani,T7.activation.tIntIn[1],T7.activation.tIntOut[1],T7.activation.arcWeightIntIn[1],T7.activation.arcWeightIntOut[1],T7.activation.minTokensInt[1],T7.activation.maxTokensInt[1],T7.activation.active,T6.inPlaces[1].tokenInOut,T6.firingTime,T6.fireTime,T6.delayPassed,T6.ani,T6.activation.tIntIn[1],T6.activation.tIntOut[1],T6.activation.arcWeightIntIn[1],T6.activation.minTokensInt[1],T6.activation.maxTokensInt[1],T6.activation.active,P6.t,P6.inTransition[1].enabledByInPlaces,P6.tokeninout,P6.delayPassedIn.vec[1],P6.delayPassedIn.anytrue,P6.delayPassedIn.numtrue,P6.firingSumIn.fire[1],P6.firingSumIn.arcWeight[1],P6.firingSumIn.firingSum,P6.firingSumOut.firingSum,P6.enableIn.arcWeight[1],P6.enableIn.TAein[1],P6.enableIn.active[1],P6.enableIn.TEin_[1],P6.enableIn.state128[1],P6.enableIn.state128[2],P6.enableIn.state128[3],P6.enableIn.state128[4],P6.enableIn.TEin[1],P6.enableIn.remTAin[1],P6.enableIn.cumEnablingProb[1],P6.enableIn.arcWeightSum,P6.enableIn.nremTAin,P6.enableIn.nTAin,P6.enableIn.k,P6.enableIn.posTE,P6.enableIn.randNum,P6.enableIn.sumEnablingProbTAin,P6.enableIn.endWhile,P6.enableIn.Index,P6.enableIn.benefitMax,P6.enableIn.valid,P6.enableIn.benefitLimit) * Number of discrete states: 376 (P1.firingSumOut.firingSum,P1.firingSumIn.firingSum,P2.firingSumOut.firingSum,P2.firingSumIn.firingSum,P3.firingSumOut.firingSum,P3.firingSumIn.firingSum,P4.firingSumOut.firingSum,P4.firingSumIn.firingSum,P5.firingSumOut.firingSum,P5.firingSumIn.firingSum,P7.firingSumOut.firingSum,P7.firingSumIn.firingSum,P6.firingSumOut.firingSum,P6.firingSumIn.firingSum,P7.tokeninout,P5.tokeninout,P6.t,P7.t,P7.activeOut[1],P7.activeOut[2],P7.activeOut[3],P7.activeOut[4],P7.activeOut[5],P7.activeOut[6],P5.t,P5.activeOut[1],P4.t,P3.t,P2.t,P1.t,T6.activation.active,T6.delayPassed,P6.delayPassedIn.numtrue,P6.delayPassedIn.anytrue,T7.activation.active,T7.delayPassed,P7.delayPassedIn.numtrue,P7.delayPassedIn.anytrue,P7.activeConOut.anychange,i,P7.activeConOut.vec[i],P5.delayPassedOut.numtrue,P5.delayPassedOut.anytrue,P5.activeConOut.anychange,P5.activeConOut.vec[i],P5.enableOut.TEout_[1],P5.enableOut.valid,P5.enableOut.benefitLimit,P5.enableOut.benefitMax,P5.enableOut.posTE,P5.enableOut.k,P5.enableOut.endWhile,P5.enableOut.state128[4],P5.enableOut.state128[3],P5.enableOut.state128[2],P5.enableOut.state128[1],P5.enableOut.randNum,P5.enableOut.cumEnablingProb[1],P5.enableOut.sumEnablingProbTAout,P5.enableOut.nTAout,P5.enableOut.nremTAout,P5.enableOut.remTAout[1],P5.enableOut.Index,$whenCondition10,P5.enableOut.arcWeightSum,P5.enableOut.TEout[1],P7.enableIn.TEin_[1],P7.enableIn.valid,P7.enableIn.benefitLimit,P7.enableIn.benefitMax,P7.enableIn.posTE,P7.enableIn.k,P7.enableIn.endWhile,P7.enableIn.state128[4],P7.enableIn.state128[3],P7.enableIn.state128[2],P7.enableIn.state128[1],P7.enableIn.randNum,P7.enableIn.cumEnablingProb[1],P7.enableIn.sumEnablingProbTAin,P7.enableIn.nTAin,P7.enableIn.nremTAin,P7.enableIn.remTAin[1],P7.enableIn.Index,$whenCondition13,P7.enableIn.arcWeightSum,P7.enableIn.TEin[1],T5.activation.active,T5.delayPassed,P4.delayPassedIn.numtrue,P4.delayPassedIn.anytrue,T4.activation.active,T4.delayPassed,P5.delayPassedIn.numtrue,P5.delayPassedIn.anytrue,T3.activation.active,T3.delayPassed,P3.delayPassedIn.numtrue,P3.delayPassedIn.anytrue,T2.activation.active,T2.delayPassed,P2.delayPassedIn.numtrue,P2.delayPassedIn.anytrue,T1.activation.active,T1.delayPassed,P7.delayPassedOut.numtrue,P7.delayPassedOut.anytrue,P7.enableOut.TEout_[6],P7.enableOut.TEout_[5],P7.enableOut.TEout_[4],P7.enableOut.TEout_[3],P7.enableOut.TEout_[2],P7.enableOut.TEout_[1],P7.enableOut.valid,P7.enableOut.benefitLimit,P7.enableOut.benefitMax,P7.enableOut.posTE,P7.enableOut.k,P7.enableOut.endWhile,P7.enableOut.state128[4],P7.enableOut.state128[3],P7.enableOut.state128[2],P7.enableOut.state128[1],P7.enableOut.randNum,P7.enableOut.cumEnablingProb[6],P7.enableOut.cumEnablingProb[5],P7.enableOut.cumEnablingProb[4],P7.enableOut.cumEnablingProb[3],P7.enableOut.cumEnablingProb[2],P7.enableOut.cumEnablingProb[1],P7.enableOut.sumEnablingProbTAout,P7.enableOut.nTAout,P7.enableOut.nremTAout,P7.enableOut.remTAout[6],P7.enableOut.remTAout[5],P7.enableOut.remTAout[4],P7.enableOut.remTAout[3],P7.enableOut.remTAout[2],P7.enableOut.remTAout[1],P7.enableOut.Index,$whenCondition12,P7.enableOut.arcWeightSum,P7.enableOut.TEout[6],P7.enableOut.TEout[5],P7.enableOut.TEout[4],P7.enableOut.TEout[3],P7.enableOut.TEout[2],P7.enableOut.TEout[1],P5.enableIn.TEin_[1],P5.enableIn.valid,P5.enableIn.benefitLimit,P5.enableIn.benefitMax,P5.enableIn.posTE,P5.enableIn.k,P5.enableIn.endWhile,P5.enableIn.state128[4],P5.enableIn.state128[3],P5.enableIn.state128[2],P5.enableIn.state128[1],P5.enableIn.randNum,P5.enableIn.cumEnablingProb[1],P5.enableIn.sumEnablingProbTAin,P5.enableIn.nTAin,P5.enableIn.nremTAin,P5.enableIn.remTAin[1],P5.enableIn.Index,$whenCondition11,P5.enableIn.arcWeightSum,P5.enableIn.TEin[1],P3.enableIn.TEin_[1],P3.enableIn.valid,P3.enableIn.benefitLimit,P3.enableIn.benefitMax,P3.enableIn.posTE,P3.enableIn.k,P3.enableIn.endWhile,P3.enableIn.state128[4],P3.enableIn.state128[3],P3.enableIn.state128[2],P3.enableIn.state128[1],P3.enableIn.randNum,P3.enableIn.cumEnablingProb[1],P3.enableIn.sumEnablingProbTAin,P3.enableIn.nTAin,P3.enableIn.nremTAin,P3.enableIn.remTAin[1],P3.enableIn.Index,$whenCondition8,P3.enableIn.arcWeightSum,P3.enableIn.TEin[1],P2.enableIn.TEin_[1],P2.enableIn.valid,P2.enableIn.benefitLimit,P2.enableIn.benefitMax,P2.enableIn.posTE,P2.enableIn.k,P2.enableIn.endWhile,P2.enableIn.state128[4],P2.enableIn.state128[3],P2.enableIn.state128[2],P2.enableIn.state128[1],P2.enableIn.randNum,P2.enableIn.cumEnablingProb[1],P2.enableIn.sumEnablingProbTAin,P2.enableIn.nTAin,P2.enableIn.nremTAin,P2.enableIn.remTAin[1],P2.enableIn.Index,$whenCondition7,P2.enableIn.arcWeightSum,P2.enableIn.TEin[1],P6.enableIn.TEin_[1],P6.enableIn.valid,P6.enableIn.benefitLimit,P6.enableIn.benefitMax,P6.enableIn.posTE,P6.enableIn.k,P6.enableIn.endWhile,P6.enableIn.state128[4],P6.enableIn.state128[3],P6.enableIn.state128[2],P6.enableIn.state128[1],P6.enableIn.randNum,P6.enableIn.cumEnablingProb[1],P6.enableIn.sumEnablingProbTAin,P6.enableIn.nTAin,P6.enableIn.nremTAin,P6.enableIn.remTAin[1],P6.enableIn.Index,$whenCondition14,P6.enableIn.arcWeightSum,P6.enableIn.TEin[1],P4.enableIn.TEin_[1],P4.enableIn.valid,P4.enableIn.benefitLimit,P4.enableIn.benefitMax,P4.enableIn.posTE,P4.enableIn.k,P4.enableIn.endWhile,P4.enableIn.state128[4],P4.enableIn.state128[3],P4.enableIn.state128[2],P4.enableIn.state128[1],P4.enableIn.randNum,P4.enableIn.cumEnablingProb[1],P4.enableIn.sumEnablingProbTAin,P4.enableIn.nTAin,P4.enableIn.nremTAin,P4.enableIn.remTAin[1],P4.enableIn.Index,$whenCondition9,P4.enableIn.arcWeightSum,P4.enableIn.TEin[1],P1.delayPassedIn.numtrue,P1.delayPassedIn.anytrue,P1.enableIn.TEin_[1],P1.enableIn.valid,P1.enableIn.benefitLimit,P1.enableIn.benefitMax,P1.enableIn.posTE,P1.enableIn.k,P1.enableIn.endWhile,P1.enableIn.state128[4],P1.enableIn.state128[3],P1.enableIn.state128[2],P1.enableIn.state128[1],P1.enableIn.randNum,P1.enableIn.cumEnablingProb[1],P1.enableIn.sumEnablingProbTAin,P1.enableIn.nTAin,P1.enableIn.nremTAin,P1.enableIn.remTAin[1],P1.enableIn.Index,$whenCondition6,P1.enableIn.arcWeightSum,P1.enableIn.TEin[1],P6.enableOut.benefitLimit,P6.enableOut.valid,P6.enableOut.benefitMax,P6.enableOut.Index,P6.enableOut.endWhile,P6.enableOut.sumEnablingProbTAout,P6.enableOut.state128[4],P6.enableOut.state128[3],P6.enableOut.state128[2],P6.enableOut.state128[1],P6.enableOut.randNum,P6.enableOut.posTE,P6.enableOut.k,P6.enableOut.nTAout,P6.enableOut.nremTAout,$whenCondition5,P6.enableOut.arcWeightSum,P6.delayPassedOut.numtrue,P6.delayPassedOut.anytrue,P6.activeConOut.anychange,P4.enableOut.benefitLimit,P4.enableOut.valid,P4.enableOut.benefitMax,P4.enableOut.Index,P4.enableOut.endWhile,P4.enableOut.sumEnablingProbTAout,P4.enableOut.state128[4],P4.enableOut.state128[3],P4.enableOut.state128[2],P4.enableOut.state128[1],P4.enableOut.randNum,P4.enableOut.posTE,P4.enableOut.k,P4.enableOut.nTAout,P4.enableOut.nremTAout,$whenCondition4,P4.enableOut.arcWeightSum,P4.delayPassedOut.numtrue,P4.delayPassedOut.anytrue,P4.activeConOut.anychange,P3.enableOut.benefitLimit,P3.enableOut.valid,P3.enableOut.benefitMax,P3.enableOut.Index,P3.enableOut.endWhile,P3.enableOut.sumEnablingProbTAout,P3.enableOut.state128[4],P3.enableOut.state128[3],P3.enableOut.state128[2],P3.enableOut.state128[1],P3.enableOut.randNum,P3.enableOut.posTE,P3.enableOut.k,P3.enableOut.nTAout,P3.enableOut.nremTAout,$whenCondition3,P3.enableOut.arcWeightSum,P3.delayPassedOut.numtrue,P3.delayPassedOut.anytrue,P3.activeConOut.anychange,P2.enableOut.benefitLimit,P2.enableOut.valid,P2.enableOut.benefitMax,P2.enableOut.Index,P2.enableOut.endWhile,P2.enableOut.sumEnablingProbTAout,P2.enableOut.state128[4],P2.enableOut.state128[3],P2.enableOut.state128[2],P2.enableOut.state128[1],P2.enableOut.randNum,P2.enableOut.posTE,P2.enableOut.k,P2.enableOut.nTAout,P2.enableOut.nremTAout,$whenCondition2,P2.enableOut.arcWeightSum,P2.delayPassedOut.numtrue,P2.delayPassedOut.anytrue,P2.activeConOut.anychange,P1.enableOut.benefitLimit,P1.enableOut.valid,P1.enableOut.benefitMax,P1.enableOut.Index,P1.enableOut.endWhile,P1.enableOut.sumEnablingProbTAout,P1.enableOut.state128[4],P1.enableOut.state128[3],P1.enableOut.state128[2],P1.enableOut.state128[1],P1.enableOut.randNum,P1.enableOut.posTE,P1.enableOut.k,P1.enableOut.nTAout,P1.enableOut.nremTAout,$whenCondition1,P1.enableOut.arcWeightSum,P1.delayPassedOut.numtrue,P1.delayPassedOut.anytrue,P1.activeConOut.anychange) * Number of clocked states: 0 () * Top-level inputs: 0 Notification: Strong component statistics for simulation (338): * Single equations (assignments): 252 * Array equations: 2 * Algorithm blocks: 56 * Record equations: 0 * When equations: 28 * If-equations: 0 * Equation systems (not torn): 0 * Torn equation systems: 0 * Mixed (continuous/discrete) equation systems: 0 Notification: Performance of Backend phase and start with SimCode phase: time 0.004159/1.057, allocations: 1.356 MB / 0.7816 GB, free: 138.2 MB / 0.545 GB Notification: Performance of simCode: created initialization part: time 0.02172/1.078, allocations: 17.81 MB / 0.799 GB, free: 119.6 MB / 0.545 GB Notification: Performance of simCode: created event and clocks part: time 1.268e-05/1.078, allocations: 4 kB / 0.799 GB, free: 119.6 MB / 0.545 GB Notification: Performance of simCode: created simulation system equations: time 0.02076/1.099, allocations: 28.07 MB / 0.8264 GB, free: 90.81 MB / 0.545 GB Notification: Performance of simCode: created of all other equations (e.g. parameter, nominal, assert, etc): time 0.00474/1.104, allocations: 0.8195 MB / 0.8272 GB, free: 90.04 MB / 0.545 GB Notification: Performance of simCode: created linear, non-linear and system jacobian parts: time 0.02188/1.126, allocations: 16.95 MB / 0.8437 GB, free: 73.06 MB / 0.545 GB Notification: Performance of simCode: some other stuff during SimCode phase: time 0.001892/1.128, allocations: 2.969 MB / 0.8466 GB, free: 70.11 MB / 0.545 GB Notification: Performance of simCode: all other stuff during SimCode phase: time 0.00102/1.129, allocations: 363.4 kB / 0.847 GB, free: 69.75 MB / 0.545 GB Notification: Performance of SimCode: time 9.82e-07/1.129, allocations: 0 / 0.847 GB, free: 69.75 MB / 0.545 GB Notification: Performance of Templates: time 0.3573/1.486, allocations: 90.71 MB / 0.9356 GB, free: 167.3 MB / 0.545 GB make -j1 -f PNlib_PNlib.Examples.DisTest.ConflictBeneBaB.makefile make -j1 -f PNlib_PNlib.Examples.DisTest.ConflictBeneBaB.makefile clang++ -std=c++17 -fopenmp=libomp -Winvalid-pch -O2 -g -DNDEBUG -fPIC -std=c++11 -DBOOST_ALL_DYN_LINK -DUSE_DGESV -DUSE_LOGGER -DOMC_BUILD -DUSE_THREAD -DSUNDIALS_MAJOR_VERSION=5 -DSUNDIALS_MINOR_VERSION=4 -DPMC_USE_SUNDIALS -I"." -I"/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/" -I. -I"." -I"." -I"/var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/include/omc/sundials" -DMEASURETIME_PROFILEBLOCKS -DUSE_LOGGER -c -o OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.o OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.cpp In file included from OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.cpp:29: ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBInitialize.cpp:2964:62: error: invalid argument type 'StatArrayDim1' to unary expression _P5_P_activeConOut_P_vec_.assign((_P5_P_activeOut__pre && (!_functions->_OMC_LIT1))); ^~~~~~~~~~~~~~~~~~~~~~ ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBInitialize.cpp:2999:113: error: no matching function for call to object of type 'WrapArray' _P5_P_activeConOut_P_anychange_ = (_P5_P_activeConOut_P_anychange_ || ((!_P5_P_activeConOut_P_vec_(i_) && _discrete_events->pre(_P5_P_activeConOut_P_vec_)(i_)) || (_P5_P_activeConOut_P_vec_(i_) && !_discrete_events->pre(_P5_P_activeConOut_P_vec_)(i_)))); ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:704:14: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual T& operator()(const vector& idx) ^ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:695:20: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual const T& operator()(const vector& idx) const ^ In file included from OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.cpp:29: ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBInitialize.cpp:2999:205: error: no matching function for call to object of type 'WrapArray' _P5_P_activeConOut_P_anychange_ = (_P5_P_activeConOut_P_anychange_ || ((!_P5_P_activeConOut_P_vec_(i_) && _discrete_events->pre(_P5_P_activeConOut_P_vec_)(i_)) || (_P5_P_activeConOut_P_vec_(i_) && !_discrete_events->pre(_P5_P_activeConOut_P_vec_)(i_)))); ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:704:14: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual T& operator()(const vector& idx) ^ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:695:20: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual const T& operator()(const vector& idx) const ^ In file included from OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.cpp:29: ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBInitialize.cpp:5528:62: error: invalid argument type 'StatArrayDim1' to unary expression _P7_P_activeConOut_P_vec_.assign((_P7_P_activeOut__pre && (!_functions->_OMC_LIT2))); ^~~~~~~~~~~~~~~~~~~~~~ ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBInitialize.cpp:5563:113: error: no matching function for call to object of type 'WrapArray' _P7_P_activeConOut_P_anychange_ = (_P7_P_activeConOut_P_anychange_ || ((!_P7_P_activeConOut_P_vec_(i_) && _discrete_events->pre(_P7_P_activeConOut_P_vec_)(i_)) || (_P7_P_activeConOut_P_vec_(i_) && !_discrete_events->pre(_P7_P_activeConOut_P_vec_)(i_)))); ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:704:14: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual T& operator()(const vector& idx) ^ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:695:20: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual const T& operator()(const vector& idx) const ^ In file included from OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.cpp:29: ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBInitialize.cpp:5563:205: error: no matching function for call to object of type 'WrapArray' _P7_P_activeConOut_P_anychange_ = (_P7_P_activeConOut_P_anychange_ || ((!_P7_P_activeConOut_P_vec_(i_) && _discrete_events->pre(_P7_P_activeConOut_P_vec_)(i_)) || (_P7_P_activeConOut_P_vec_(i_) && !_discrete_events->pre(_P7_P_activeConOut_P_vec_)(i_)))); ^~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:704:14: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual T& operator()(const vector& idx) ^ /var/lib/jenkins1/ws/OpenModelicaLibraryTestingWork/OpenModelica/OMCompiler/build/bin/../include/omc/cpp/Core/Math/Array.h:695:20: note: candidate function not viable: no known conversion from 'int' to 'const vector' (aka 'const vector') for 1st argument virtual const T& operator()(const vector& idx) const ^ In file included from OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.cpp:33: ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaB.cpp:324:81: error: invalid argument type 'StatArrayDim1' to unary expression _P5_P_activeConOut_P_vec_.assign((_discrete_events->pre(_P5_P_activeOut_) && (!_functions->_OMC_LIT1))); ^~~~~~~~~~~~~~~~~~~~~~ ./OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaB.cpp:416:81: error: invalid argument type 'StatArrayDim1' to unary expression _P7_P_activeConOut_P_vec_.assign((_discrete_events->pre(_P7_P_activeOut_) && (!_functions->_OMC_LIT2))); ^~~~~~~~~~~~~~~~~~~~~~ 8 errors generated. make: *** [: OMCppPNlib_PNlib.Examples.DisTest.ConflictBeneBaBCalcHelperMain.o] Error 1