CMS 3D CMS Logo

Functions
relval_steps Namespace Reference

Functions

def gen (fragment, howMuch)
 Event to runs. More...
 
def gen2015 (fragment, howMuch)
 
def gen2017 (fragment, howMuch)
 
def gen2018 (fragment, howMuch)
 
def gen2018HiMix (fragment, howMuch)
 
def gen2018hiprod (fragment, howMuch)
 
def gen2018prod (fragment, howMuch)
 
def gen2018prodml (fragment, howMuch)
 
def gen2018RD (fragment, howMuch)
 
def gen2022HiMix (fragment, howMuch)
 
def gen2022hiprod (fragment, howMuch)
 
def gen2023HiMix (fragment, howMuch)
 
def gen2023hiprod (fragment, howMuch)
 
def gen2024 (fragment, howMuch)
 
def gen2024HiMix (fragment, howMuch)
 
def gen2024hiprod (fragment, howMuch)
 
def genS (fragment, howMuch)
 high stat step1 More...
 
def identityFS (wf)
 pPb tests More...
 
def identitySim (wf)
 Production test: 13 TeV equivalents. More...
 
def lhegensim (fragment, howMuch)
 GENERATORS. More...
 
def lhegensim2017 (fragment, howMuch)
 
def lhegensim2018 (fragment, howMuch)
 
def lhegensim2018ml (fragment, howMuch)
 

Function Documentation

◆ gen()

def relval_steps.gen (   fragment,
  howMuch 
)

Event to runs.

Production test section #### data #### run2 2015B #### Run2015B=[251642] # 251561 251638 251642 run2 2015C #### Run2015C, 25ns: 254790 (852 LS and 65 files), 254852 (126 LS and 5 files), 254879 (178 LS and 11 files) run2 2015D #### Run2015D, 25ns: 256677 run2 2016B #### Run2016B, 25ns: 274160 Run2016B=selectedLS([274160],l_json=data_json2016) run2 2016C #### run2 2016D #### run2 2016E #### run2 2016H #### run2 2016 PA UPC #### run2 2017B #### run2 2017C #### run2 2017D #### run2 2017E #### run2 2017F #### run2 2018A #### for 90 m beta* Totem run relvals #### run2 2018B #### run2 2018C #### run2 2018D #### PPS run3 2022B PPS run3 2024D and 2024E Run3 ##########################2022 Collisions at 900 GeV and ramp-up to 13.6 TeV this could be rised to "355769": [[1, 541]] 2023 Golden Data Wfs reading good runs directly from the latest golden json in https://cms-service-dqmdc.web.cern.ch/CAF/certification/ or (if available) 2024 number of events limits the files used as input run2 2015 HighLumi High Stat workflows ## Run2015HLHS, 25ns, run 260627, JetHT: 2.9M, SingleMuon: 5.7M, ZeroBias: 1.6M run2 Cosmic #### Run 256259 @ 0T 2015C### Run 272133 @ 3.8T 2016B### LS2 - MWGR 2021 - CSC, DAQ, DCS, DQM, DT, ECAL, GEM, HCAL, L1SCOUT, PIXEL, RPC, TCDS, TRACKER, TRG ### run3 Commissioning2021 #### Run 344518 @ 0.0T 2021CRUZET Run 345755 @ 3.8T 2021CRAFT Run 345881 @ 3.8T 2021Splash Collisions Test of lumi section boundary crossing with run2 2018D #### Run2 TauEmbedding setting #### Tau Embedding 2016 HIPM ### Tau Embedding 2016 ### Tau Embedding 2017 ### Tau Embedding 2018 ###

Definition at line 750 of file relval_steps.py.

Referenced by myFastSimVal.analyze(), HLTJetMETValidation.analyze(), ZdcSimHitStudy.analyze(), ExoticaDQM.analyzeDisplacedJets(), edmtest::RandomIntProducer.beginLuminosityBlockProduce(), testinter::StreamCache.beginLumiProduce(), cond::auth::DecodingKey.createFromInputFile(), cond::CredentialStore.createSchema(), CMTRawAnalyzer.fillMAP(), ExternalGeneratorFilter.filter(), TestInterProcessRandomProd.globalBeginLuminosityBlock(), ExternalGeneratorFilter.globalBeginLuminosityBlock(), TestInterProcessRandomProd.globalBeginLuminosityBlockProduce(), ExternalGeneratorFilter.globalBeginLuminosityBlockProduce(), hitfit::Resolution.pick(), TestCUDAProducerCPU.produce(), edmtest::RandomIntProducer.produce(), GenParticlePruner.produce(), cms::GenMETProducer.produce(), PackedCandidateGenAssociationProducer.produce(), testinter::StreamCache.produce(), externalgen::StreamCache.produce(), HcaluLUTTPGCoder.setLUTGenerationMode(), AHCalSD.unpackIndex(), cond.updateConnectionData(), and cond.updatePrincipalData().

750 def gen(fragment,howMuch):
751  global step1Defaults
752  return merge([{'cfg':fragment},howMuch,step1Defaults])
753 
Definition: merge.py:1
def gen(fragment, howMuch)
Event to runs.

◆ gen2015()

def relval_steps.gen2015 (   fragment,
  howMuch 
)

Definition at line 754 of file relval_steps.py.

Referenced by gen2024hiprod(), genS(), and identitySim().

754 def gen2015(fragment,howMuch):
755  global step1Up2015Defaults
756  return merge([{'cfg':fragment},howMuch,step1Up2015Defaults])
Definition: merge.py:1
def gen2015(fragment, howMuch)

◆ gen2017()

def relval_steps.gen2017 (   fragment,
  howMuch 
)

Definition at line 757 of file relval_steps.py.

Referenced by gen2024hiprod(), and genS().

757 def gen2017(fragment,howMuch):
758  global step1Up2017Defaults
759  return merge([{'cfg':fragment},howMuch,step1Up2017Defaults])
Definition: merge.py:1
def gen2017(fragment, howMuch)

◆ gen2018()

def relval_steps.gen2018 (   fragment,
  howMuch 
)

Definition at line 760 of file relval_steps.py.

Referenced by gen2024hiprod().

760 def gen2018(fragment,howMuch):
761  global step1Up2018Defaults
762  return merge([{'cfg':fragment},howMuch,step1Up2018Defaults])
Definition: merge.py:1
def gen2018(fragment, howMuch)

◆ gen2018HiMix()

def relval_steps.gen2018HiMix (   fragment,
  howMuch 
)

Definition at line 2774 of file relval_steps.py.

Referenced by gen2024HiMix().

2774 def gen2018HiMix(fragment,howMuch):
2775  global step1Up2018HiMixDefaults
2776  return merge([{'cfg':fragment},howMuch,step1Up2018HiMixDefaults])
2777 
Definition: merge.py:1
def gen2018HiMix(fragment, howMuch)

◆ gen2018hiprod()

def relval_steps.gen2018hiprod (   fragment,
  howMuch 
)

Definition at line 769 of file relval_steps.py.

Referenced by genS().

769 def gen2018hiprod(fragment,howMuch):
770  global step1Up2018HiProdDefaults
771  return merge([{'cfg':fragment},howMuch,step1Up2018HiProdDefaults])
Definition: merge.py:1
def gen2018hiprod(fragment, howMuch)

◆ gen2018prod()

def relval_steps.gen2018prod (   fragment,
  howMuch 
)

Definition at line 763 of file relval_steps.py.

Referenced by gen2024hiprod().

763 def gen2018prod(fragment,howMuch):
764  global step1Up2018ProdDefaults
765  return merge([{'cfg':fragment},howMuch,step1Up2018ProdDefaults])
Definition: merge.py:1
def gen2018prod(fragment, howMuch)

◆ gen2018prodml()

def relval_steps.gen2018prodml (   fragment,
  howMuch 
)

Definition at line 766 of file relval_steps.py.

Referenced by gen2024hiprod().

766 def gen2018prodml(fragment,howMuch): #Prod with multiple lumis
767  global step1Up2018ProdDefaults
768  return merge([{'cfg':fragment},howMuch,{'--customise_commands': '"process.source.numberEventsInLuminosityBlock=cms.untracked.uint32(5)"'},step1Up2018ProdDefaults]) #this setting is to allow job to cross LS in IB
Definition: merge.py:1
def gen2018prodml(fragment, howMuch)

◆ gen2018RD()

def relval_steps.gen2018RD (   fragment,
  howMuch 
)

Definition at line 1749 of file relval_steps.py.

References BasicGenValidation_cff.genvalid, MatrixUtil.Kby(), lhegensim(), lhegensim2017(), lhegensim2018(), and str.

1749 def gen2018RD(fragment,howMuch):
1750  global step1Up2018Defaults
1751  return merge([{'cfg':fragment},howMuch,{'--conditions':'auto:phase1_2018_realistic_rd','--customise_commands': "\"process.source.numberEventsInLuminosityBlock=cms.untracked.uint32(" + str(events_per_job_rd) + ") \""},step1Up2018Defaults])
1752 
1753 steps['ZEE_13UP18_RD']=gen2018RD('ZEE_13TeV_TuneCUETP8M1_cfi',Kby(kevents_rd,events_per_job_rd))
1754 steps['ZMM_13UP18_RD']=gen2018RD('ZMM_13TeV_TuneCUETP8M1_cfi',Kby(kevents_rd,events_per_job_rd))
1755 steps['TTbar_13UP18_RD']=gen2018RD('TTbar_13TeV_TuneCUETP8M1_cfi',Kby(kevents_rd,events_per_job_rd))
1756 steps['TTbar_13UP18_RD_IB']=gen2018RD('TTbar_13TeV_TuneCUETP8M1_cfi',Kby(kevents_rd,events_per_job_rd))
1757 steps['TTbar_13UP18_RD_IB']['--customise_commands'] = "\"process.source.numberEventsInLuminosityBlock=cms.untracked.uint32(5)\""
1758 
1759 steps['TTbar012Jets_NLO_Mad_py8_Evt_13']=lhegensim('Configuration/Generator/python/TTbar012Jets_5f_NLO_FXFX_Madgraph_LHE_13TeV_cfi.py',Kby(9,50))
1760 steps['GluGluHToZZTo4L_M125_Pow_py8_Evt_13']=lhegensim('Configuration/Generator/python/GGHZZ4L_JHUGen_Pow_NNPDF30_LHE_13TeV_cfi.py', Kby(9,50))
1761 steps['VBFHToZZTo4Nu_M125_Pow_py8_Evt_13']=lhegensim('Configuration/Generator/python/VBFHZZ4Nu_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,50))
1762 steps['VBFHToBB_M125_Pow_py8_Evt_13']=lhegensim('Configuration/Generator/python/VBFHbb_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,50))
1763 
1764 steps['GluGluHToZZTo4L_M125_Pow_py8_Evt_13UP17']=lhegensim2017('Configuration/Generator/python/GGHZZ4L_JHUGen_Pow_NNPDF30_LHE_13TeV_cfi.py', Kby(9,100))
1765 steps['VBFHToZZTo4Nu_M125_Pow_py8_Evt_13UP17']=lhegensim2017('Configuration/Generator/python/VBFHZZ4Nu_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,100))
1766 steps['VBFHToBB_M125_Pow_py8_Evt_13UP17']=lhegensim2017('Configuration/Generator/python/VBFHbb_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,100))
1767 
1768 steps['GluGluHToZZTo4L_M125_Pow_py8_Evt_13UP18']=lhegensim2018('Configuration/Generator/python/GGHZZ4L_JHUGen_Pow_NNPDF30_LHE_13TeV_cfi.py', Kby(9,100))
1769 steps['VBFHToZZTo4Nu_M125_Pow_py8_Evt_13UP18']=lhegensim2018('Configuration/Generator/python/VBFHZZ4Nu_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,100))
1770 steps['VBFHToBB_M125_Pow_py8_Evt_13UP18']=lhegensim2018('Configuration/Generator/python/VBFHbb_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,100))
1771 
1772 #GEN-SIM inputs for LHE-GEN-SIM workflows
1773 #steps['TTbar012Jets_NLO_Mad_py8_Evt_13INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar012Jets_NLO_Mad_py8_Evt_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
1774 #steps['GluGluHToZZTo4L_M125_Pow_py8_Evt_13INPUT']={'INPUT':InputInfo(dataSet='/RelValGluGluHToZZTo4L_M125_Pow_py8_Evt_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
1775 #steps['VBFHToZZTo4Nu_M125_Pow_py8_Evt_13INPUT']={'INPUT':InputInfo(dataSet='/RelValVBFHToZZTo4Nu_M125_Pow_py8_Evt_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
1776 #steps['VBFHToBB_M125_Pow_py8_Evt_13INPUT']={'INPUT':InputInfo(dataSet='/RelValVBFHToBB_M125_Pow_py8_Evt_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
1777 #steps['VBFHToZZTo4Nu_M125_Pow_py8_Evt_13UP17INPUT']={'INPUT':InputInfo(dataSet='/RelValVBFHToZZTo4Nu_M125_Pow_py8_Evt_13UP17/%s/GEN-SIM'%(baseDataSetRelease[21],),location='STD')}
1778 #steps['VBFHToBB_M125_Pow_py8_Evt_13UP17INPUT']={'INPUT':InputInfo(dataSet='/RelValVBFHToBB_M125_Pow_py8_Evt_13UP17/%s/GEN-SIM'%(baseDataSetRelease[21],),location='STD')}
1779 #steps['VBFHToZZTo4Nu_M125_Pow_py8_Evt_13UP18INPUT']={'INPUT':InputInfo(dataSet='/RelValVBFHToZZTo4Nu_M125_Pow_py8_Evt_13UP18/%s/GEN-SIM'%(baseDataSetRelease[22],),location='STD')}
1780 #steps['VBFHToBB_M125_Pow_py8_Evt_13UP18INPUT']={'INPUT':InputInfo(dataSet='/RelValVBFHToBB_M125_Pow_py8_Evt_13UP18/%s/GEN-SIM'%(baseDataSetRelease[22],),location='STD')}
1781 
1782 # normal fullSim workflows using pLHE-GEN-SIM 2016 by default
1783 # pLHE step
Definition: merge.py:1
def gen2018RD(fragment, howMuch)
def lhegensim(fragment, howMuch)
GENERATORS.
def lhegensim2018(fragment, howMuch)
def Kby(N, s)
Standard release validation samples ####.
Definition: MatrixUtil.py:245
def lhegensim2017(fragment, howMuch)
#define str(s)

◆ gen2022HiMix()

def relval_steps.gen2022HiMix (   fragment,
  howMuch 
)

Definition at line 2779 of file relval_steps.py.

Referenced by gen2024HiMix().

2779 def gen2022HiMix(fragment,howMuch):
2780  global step1Up2022HiMixDefaults
2781  return merge([{'cfg':fragment},howMuch,step1Up2022HiMixDefaults])
2782 
Definition: merge.py:1
def gen2022HiMix(fragment, howMuch)

◆ gen2022hiprod()

def relval_steps.gen2022hiprod (   fragment,
  howMuch 
)

Definition at line 772 of file relval_steps.py.

Referenced by genS().

772 def gen2022hiprod(fragment,howMuch):
773  global step1Up2022HiProdDefaults
774  return merge([{'cfg':fragment},howMuch,step1Up2022HiProdDefaults])
Definition: merge.py:1
def gen2022hiprod(fragment, howMuch)

◆ gen2023HiMix()

def relval_steps.gen2023HiMix (   fragment,
  howMuch 
)

Definition at line 2784 of file relval_steps.py.

Referenced by gen2024HiMix().

2784 def gen2023HiMix(fragment,howMuch):
2785  global step1Up2023HiMixDefaults
2786  return merge([{'cfg':fragment},howMuch,step1Up2023HiMixDefaults])
2787 
Definition: merge.py:1
def gen2023HiMix(fragment, howMuch)

◆ gen2023hiprod()

def relval_steps.gen2023hiprod (   fragment,
  howMuch 
)

Definition at line 775 of file relval_steps.py.

Referenced by genS().

775 def gen2023hiprod(fragment,howMuch):
776  global step1Up2023HiProdDefaults
777  return merge([{'cfg':fragment},howMuch,step1Up2023HiProdDefaults])
Definition: merge.py:1
def gen2023hiprod(fragment, howMuch)

◆ gen2024()

def relval_steps.gen2024 (   fragment,
  howMuch 
)

Definition at line 778 of file relval_steps.py.

Referenced by genS().

778 def gen2024(fragment,howMuch):
779  global step1Up2024Defaults
780  return merge([{'cfg':fragment},howMuch,step1Up2024Defaults])
Definition: merge.py:1
def gen2024(fragment, howMuch)

◆ gen2024HiMix()

def relval_steps.gen2024HiMix (   fragment,
  howMuch 
)

Definition at line 2789 of file relval_steps.py.

References gen2018HiMix(), gen2022HiMix(), gen2023HiMix(), MatrixUtil.Kby(), and MatrixUtil.remove().

2789 def gen2024HiMix(fragment,howMuch):
2790  global step1Up2024HiMixDefaults
2791  return merge([{'cfg':fragment},howMuch,step1Up2024HiMixDefaults])
2792 
2793 steps['Pyquen_GammaJet_pt20_2760GeV']=gen2018HiMix('Pyquen_GammaJet_pt20_2760GeV_cfi',Kby(9,100))
2794 steps['Pyquen_DiJet_pt80to120_2760GeV']=gen2018HiMix('Pyquen_DiJet_pt80to120_2760GeV_cfi',Kby(9,100))
2795 steps['Pyquen_ZeemumuJets_pt10_2760GeV']=gen2018HiMix('Pyquen_ZeemumuJets_pt10_2760GeV_cfi',Kby(9,100))
2796 steps['Pyquen_GammaJet_pt20_2760GeV_2022']=gen2022HiMix('Pyquen_GammaJet_pt20_2760GeV_cfi',Kby(9,100))
2797 steps['Pyquen_DiJet_pt80to120_2760GeV_2022']=gen2022HiMix('Pyquen_DiJet_pt80to120_2760GeV_cfi',Kby(9,100))
2798 steps['Pyquen_ZeemumuJets_pt10_2760GeV_2022']=gen2022HiMix('Pyquen_ZeemumuJets_pt10_2760GeV_cfi',Kby(9,100))
2799 steps['Pyquen_GammaJet_pt20_5362GeV_2023']=gen2023HiMix('Pyquen_GammaJet_pt20_5362GeV_cfi',Kby(9,100))
2800 steps['Pyquen_DiJet_pt80to120_5362GeV_2023']=gen2023HiMix('Pyquen_DiJet_pt80to120_5362GeV_cfi',Kby(9,100))
2801 steps['Pyquen_ZeemumuJets_pt10_5362GeV_2023']=gen2023HiMix('Pyquen_ZeemumuJets_pt10_5362GeV_cfi',Kby(9,100))
2802 steps['Pyquen_GammaJet_pt20_5362GeV_2024']=gen2024HiMix('Pyquen_GammaJet_pt20_5362GeV_cfi',Kby(9,100))
2803 steps['Pyquen_DiJet_pt80to120_5362GeV_2024']=gen2024HiMix('Pyquen_DiJet_pt80to120_5362GeV_cfi',Kby(9,100))
2804 steps['Pyquen_ZeemumuJets_pt10_5362GeV_2024']=gen2024HiMix('Pyquen_ZeemumuJets_pt10_5362GeV_cfi',Kby(9,100))
2805 
2806 # step3
Definition: merge.py:1
def gen2023HiMix(fragment, howMuch)
def gen2022HiMix(fragment, howMuch)
def gen2024HiMix(fragment, howMuch)
def gen2018HiMix(fragment, howMuch)
def Kby(N, s)
Standard release validation samples ####.
Definition: MatrixUtil.py:245

◆ gen2024hiprod()

def relval_steps.gen2024hiprod (   fragment,
  howMuch 
)

Definition at line 781 of file relval_steps.py.

References gen2015(), gen2017(), gen2018(), gen2018prod(), gen2018prodml(), MatrixUtil.Kby(), and MatrixUtil.Mby().

Referenced by genS().

781 def gen2024hiprod(fragment,howMuch):
782  global step1Up2024HiProdDefaults
783  return merge([{'cfg':fragment},howMuch,step1Up2024HiProdDefaults])
784 
Definition: merge.py:1
def gen2024hiprod(fragment, howMuch)

◆ genS()

def relval_steps.genS (   fragment,
  howMuch 
)

high stat step1

Definition at line 1104 of file relval_steps.py.

References gen2015(), gen2017(), gen2018hiprod(), gen2022hiprod(), gen2023hiprod(), gen2024(), gen2024hiprod(), MatrixUtil.Kby(), and MatrixUtil.Mby().

1104 def genS(fragment,howMuch):
1105  global step1Defaults,stCond
1106  return merge([{'cfg':fragment},stCond,howMuch,step1Defaults])
1107 
1108 steps['Higgs200ChargedTaus']=genS('H200ChargedTaus_Tauola_8TeV_cfi',Kby(9,100))
1109 steps['JpsiMM']=genS('JpsiMM_8TeV_TuneCUETP8M1_cfi',Kby(66,1000))
1110 steps['WE']=genS('WE_8TeV_TuneCUETP8M1_cfi',Kby(9,100))
1111 steps['WM']=genS('WM_8TeV_TuneCUETP8M1_cfi',Kby(9,200))
1112 steps['WpM']=genS('WpM_8TeV_TuneCUETP8M1_cfi',Kby(9,200))
1113 steps['ZMM']=genS('ZMM_8TeV_TuneCUETP8M1_cfi',Kby(18,300))
1114 steps['ZpMM']=genS('ZpMM_8TeV_TuneCUETP8M1_cfi',Kby(9,200))
1115 steps['Higgs200ChargedTaus_13']=gen2015('H200ChargedTaus_Tauola_13TeV_cfi',Kby(9,100))
1116 steps['Upsilon1SToMuMu_13']=gen2015('Upsilon1SToMuMu_forSTEAM_13TeV_TuneCUETP8M1_cfi',Kby(17,190))
1117 steps['BsToMuMu_13']=gen2015('BsToMuMu_13TeV_SoftQCDnonD_TuneCUEP8M1_cfi.py',Kby(21000,150000))
1118 steps['JpsiMuMu_Pt-8']=gen2015('JpsiMuMu_Pt-8_forSTEAM_13TeV_TuneCUETP8M1_cfi',Kby(3100,100000))
1119 steps['BdToMuMu_13']=gen2015('BdToMuMu_13TeV_SoftQCDnonD_TuneCUEP8M1_cfi',Kby(6000,60000))
1120 steps['BuToJpsiK_13']=gen2015('BuToJpsiK_13TeV_SoftQCDnonD_TuneCUEP8M1_cfi',Kby(16000,160000))
1121 steps['BsToJpsiPhi_13']=gen2015('BsToJpsiPhi_13TeV_SoftQCDnonD_TuneCUEP8M1_cfi',Kby(78000,400000))
1122 
1123 steps['WE_13']=gen2015('WE_13TeV_TuneCUETP8M1_cfi',Kby(9,100))
1124 steps['WM_13']=gen2015('WM_13TeV_TuneCUETP8M1_cfi',Kby(9,200))
1125 steps['WpM_13']=gen2015('WpM_13TeV_TuneCUETP8M1_cfi',Kby(9,200))
1126 steps['ZMM_13']=gen2015('ZMM_13TeV_TuneCUETP8M1_cfi',Kby(18,100))
1127 steps['ZEEMM_13']=gen2015('ZEEMM_13TeV_TuneCUETP8M1_cfi',Kby(18,300))
1128 steps['ZpMM_13']=gen2015('ZpMM_13TeV_TuneCUETP8M1_cfi',Kby(9,200))
1129 
1130 steps['ZTT']=genS('ZTT_All_hadronic_8TeV_TuneCUETP8M1_cfi',Kby(9,150))
1131 steps['H130GGgluonfusion']=genS('H130GGgluonfusion_8TeV_TuneCUETP8M1_cfi',Kby(9,100))
1132 steps['PhotonJets_Pt_10']=genS('PhotonJet_Pt_10_8TeV_TuneCUETP8M1_cfi',Kby(9,150))
1133 steps['QQH1352T']=genS('QQH1352T_8TeV_TuneCUETP8M1_cfi',Kby(9,100))
1134 steps['ZTT_13']=gen2015('ZTT_All_hadronic_13TeV_TuneCUETP8M1_cfi',Kby(9,80))
1135 steps['H125GGgluonfusion_13']=gen2015('H125GGgluonfusion_13TeV_TuneCUETP8M1_cfi',Kby(9,50))
1136 steps['PhotonJets_Pt_10_13']=gen2015('PhotonJet_Pt_10_13TeV_TuneCUETP8M1_cfi',Kby(9,150))
1137 steps['QQH1352T_13']=gen2015('QQH1352T_13TeV_TuneCUETP8M1_cfi',Kby(9,50))
1138 #steps['ZmumuJets_Pt_20_300']=gen('ZmumuJets_Pt_20_300_GEN_8TeV_TuneCUETP8M1_cfg',Kby(25,100))
1139 steps['ADDMonoJet_d3MD3']=genS('ADDMonoJet_8TeV_d3MD3_TuneCUETP8M1_cfi',Kby(9,100))
1140 steps['ADDMonoJet_d3MD3_13']=gen2015('ADDMonoJet_13TeV_d3MD3_TuneCUETP8M1_cfi',Kby(9,100))
1141 steps['RSKKGluon_m3000GeV_13']=gen2015('RSKKGluon_m3000GeV_13TeV_TuneCUETP8M1_cff',Kby(9,100))
1142 
1143 steps['MinBias2INPUT']={'INPUT':InputInfo(dataSet='/RelValMinBias/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1144 steps['Higgs200ChargedTausINPUT']={'INPUT':InputInfo(dataSet='/RelValHiggs200ChargedTaus/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1145 steps['QCD_Pt_3000_3500_2INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_3000_3500/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1146 steps['QCD_Pt_80_120_2INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1147 steps['JpsiMMINPUT']={'INPUT':InputInfo(dataSet='/RelValJpsiMM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1148 steps['TTbar2INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1149 steps['WEINPUT']={'INPUT':InputInfo(dataSet='/RelValWE/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1150 steps['WMINPUT']={'INPUT':InputInfo(dataSet='/RelValWM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1151 steps['ZEEINPUT']={'INPUT':InputInfo(dataSet='/RelValZEE/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1152 steps['ZMMINPUT']={'INPUT':InputInfo(dataSet='/RelValZMM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1153 steps['ZTTINPUT']={'INPUT':InputInfo(dataSet='/RelValZTT/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1154 steps['H130GGgluonfusionINPUT']={'INPUT':InputInfo(dataSet='/RelValH130GGgluonfusion/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1155 steps['PhotonJets_Pt_10INPUT']={'INPUT':InputInfo(dataSet='/RelValPhotonJets_Pt_10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1156 #steps['QQH1352TINPUT']={'INPUT':InputInfo(dataSet='/RelValQQH1352T/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')} #temporary comment out
1157 steps['ADDMonoJet_d3MD3INPUT']={'INPUT':InputInfo(dataSet='/RelValADDMonoJet_d3MD3/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1158 steps['WpMINPUT']={'INPUT':InputInfo(dataSet='/RelValWpM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1159 steps['ZpMMINPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1160 steps['ZpMM_2250_8TeVINPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM_2250_8TeV/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1161 steps['ZpEE_2250_8TeVINPUT']={'INPUT':InputInfo(dataSet='/RelValZpEE_2250_8TeV/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1162 steps['ZpTT_1500_8TeVINPUT']={'INPUT':InputInfo(dataSet='/RelValZpTT_1500_8TeV/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
1163 
1164 steps['Cosmics']=merge([{'cfg':'UndergroundCosmicMu_cfi.py','-n':'500','--scenario':'cosmics'},Kby(666,100000),step1Defaults])
1165 steps['CosmicsSPLoose']=merge([{'cfg':'UndergroundCosmicSPLooseMu_cfi.py','-n':'2000','--scenario':'cosmics'},Kby(5000,100000),step1Defaults])
1166 steps['CosmicsSPLoose_UP15']=merge([{'cfg':'UndergroundCosmicSPLooseMu_cfi.py','-n':'2000','--conditions':'auto:run2_mc_cosmics','--scenario':'cosmics'},Kby(5000,500000),step1Up2015Defaults])
1167 steps['Cosmics_UP16']=merge([{'cfg':'UndergroundCosmicMu_cfi.py','-n':'500','--conditions':'auto:run2_mc_cosmics','--scenario':'cosmics','--era':'Run2_2016'},Kby(666,100000),step1Defaults])
1168 steps['Cosmics_UP17']=merge([{'cfg':'UndergroundCosmicMu_cfi.py','-n':'500','--conditions':'auto:phase1_2017_cosmics','--scenario':'cosmics','--era':'Run2_2017'},Kby(666,100000),step1Defaults])
1169 steps['Cosmics_UP18']=merge([{'cfg':'UndergroundCosmicMu_cfi.py','-n':'500','--conditions':'auto:phase1_2018_cosmics','--scenario':'cosmics','--era':'Run2_2018'},Kby(666,100000),step1Defaults])
1170 steps['Cosmics_UP21']=merge([{'cfg':'UndergroundCosmicMu_cfi.py','-n':'500','--conditions':'auto:phase1_2022_cosmics','--scenario':'cosmics','--era':'Run3'},Kby(666,100000),step1Defaults])
1171 steps['Cosmics_UP21_0T']=merge([{'--magField':'0T','--conditions':'auto:phase1_2022_cosmics_0T'},steps['Cosmics_UP21']])
1172 steps['CosmicsSPLoose_UP17']=merge([{'cfg':'UndergroundCosmicSPLooseMu_cfi.py','-n':'2000','--conditions':'auto:phase1_2017_cosmics','--scenario':'cosmics','--era':'Run2_2017'},Kby(5000,500000),step1Up2015Defaults])
1173 steps['CosmicsSPLoose_UP18']=merge([{'cfg':'UndergroundCosmicSPLooseMu_cfi.py','-n':'2000','--conditions':'auto:phase1_2018_cosmics','--scenario':'cosmics','--era':'Run2_2018'},Kby(5000,500000),step1Up2015Defaults])
1174 
1175 # Phase2 cosmics with geometry D98
Definition: merge.py:1
def genS(fragment, howMuch)
high stat step1
def gen2015(fragment, howMuch)
def Kby(N, s)
Standard release validation samples ####.
Definition: MatrixUtil.py:245

◆ identityFS()

def relval_steps.identityFS (   wf)

pPb tests

pPb Run2 heavy ions tests pp reference tests fastsim section #### no forseen to do things in two steps GEN-SIM then FASTIM->end: maybe later step1FastDefaults =merge([{'-s':'GEN,SIM,RECOBEFMIX,DIGI:pdigi_valid,L1,DIGI2RAW,L1Reco,RECO,HLT:,VALIDATION:,DQM:', FastSim: produce sample of minbias events for PU mixing FastSim: produce sample of minbias events for PU mixing FastSim: produce sample of minbias events for PU mixing, 2018 FastSim: template to produce signal and overlay with minbias events FastSim: template to produce signal and overlay with minbias events #PU50 FastSim: template to produce signal and overlay with minbias events #PU50, 2018 FastSim: produce sample of premixed minbias events Fastsim: template to produce signal and overlay it with premixed minbias events FastSim: list of processes used in FastSim validation FastSim: produces sample of signal events, overlayed with premixed minbias events FastSim: produce sample of signal events, overlayed with minbias events FastSim: produce sample of premixed minbias events UP17 Fastsim: template to produce signal and overlay it with premixed minbias events FastSim: list of processes used in FastSim validation FastSim: produces sample of signal events, overlayed with premixed minbias events FastSim: produce sample of signal events, overlayed with minbias events end UP17 FastSim: produce sample of premixed minbias events UP18 Fastsim: template to produce signal and overlay it with premixed minbias events FastSim: list of processes used in FastSim validation FastSim: produces sample of signal events, overlayed with premixed minbias events FastSim: produce sample of signal events, overlayed with minbias events end UP18

Definition at line 1576 of file relval_steps.py.

References BasicGenValidation_cff.genvalid.

1576 def identityFS(wf):
1577  return merge([{'--restoreRND':'HLT','--process':'HLT2','--hltProcess':'HLT2', '--inputCommands':'"keep *","drop *TagInfo*_*_*_*"'},wf])
1578 
1579 steps['SingleMuPt10FS_UP15_ID']=identityFS(steps['SingleMuPt10FS_UP15'])
1580 steps['TTbarFS_13_ID']=identityFS(steps['TTbarFS_13'])
1581 
Definition: merge.py:1
def identityFS(wf)
pPb tests

◆ identitySim()

def relval_steps.identitySim (   wf)

Production test: 13 TeV equivalents.

production 2017 2017 wf: only the ones for premixing (for the moment) 2018 wf: only the ones for premixing (for the moment)

Definition at line 893 of file relval_steps.py.

References gen2015(), MatrixUtil.Kby(), and MatrixUtil.Mby().

893 def identitySim(wf):
894  return merge([{'--restoreRND':'SIM','--process':'SIM2', '--inputCommands':'"keep *","drop *TagInfo*_*_*_*"' },wf])
895 
896 steps['SingleMuPt10_UP15_ID']=identitySim(steps['SingleMuPt10_UP15'])
897 steps['TTbar_13_ID']=identitySim(steps['TTbar_13'])
898 
899 baseDataSetRelease=[
900  'CMSSW_9_2_4-91X_mcRun1_realistic_v2-v1', # 0 run1 samples; note TTbar GENSIM has v2 (see TTbarINPUT below)
901  'CMSSW_10_3_0_pre5-103X_upgrade2018_realistic_v7-v1', # 1 GEN-SIM for HI RunII, 2018
902  'CMSSW_6_2_0_pre8-PRE_ST62_V8_FastSim-v1', # 2 for fastsim id test
903 # 'CMSSW_7_1_0_pre5-START71_V1-v2', # 3 8 TeV , for the one sample which is part of the routine relval production (RelValZmumuJets_Pt_20_300, because of -v2)
904  # THIS ABOVE IS NOT USED, AT THE MOMENT
905  'CMSSW_10_6_0-106X_mcRun2_asymptotic_v3-v1', # 3 - GEN-SIM input for 13 TeV 2016 workfows
906  'CMSSW_7_3_0_pre1-PRE_LS172_V15_FastSim-v1', # 4 - fast sim GEN-SIM-DIGI-RAW-HLTDEBUG for id tests
907  'CMSSW_10_6_0-PU25ns_106X_mcRun2_asymptotic_v3-v1', # 5 - fullSim PU 25ns UP15 premix library
908  'CMSSW_10_4_0_pre1-PU50ns_103X_mcRun2_startup_v1-v1', # 6 - fullSim PU 50ns UP15 premix library
909  'CMSSW_10_6_0-106X_mcRun2_asymptotic_v3_FastSim-v1', # 7 - fastSim MinBias for mixing UP16
910  'CMSSW_10_6_0-PU25ns_106X_mcRun2_asymptotic_v3_FastSim-v1',# 8 - fastSim premix library UP16
911  'CMSSW_10_6_0-106X_upgrade2018_realistic_v4-v1', # 9 - Run2 HI GEN-SIM for mixing
912  'CMSSW_7_6_0-76X_mcRun2_asymptotic_v11-v1', # 10 - 13 TeV High Stats GEN-SIM
913  'CMSSW_7_6_0_pre7-76X_mcRun2_asymptotic_v9_realBS-v1', # 11 - 13 TeV High Stats MiniBias for mixing GEN-SIM
914  'CMSSW_8_1_0_pre9_Geant4102-81X_mcRun2cosmics_startup_peak_v2-v1', # 12 - GEN-SIM input for 1307 cosmics wf from 810_p2
915  'CMSSW_10_6_0-106X_mc2017_realistic_v3-v1', # 13 - GENSIM input for 2017 fullSim premix workflows
916  'CMSSW_10_6_0-PU25ns_106X_mc2017_realistic_v3-v1', # 14 - fullSim PU 25ns UP17 premix library
917  'CMSSW_10_6_0-106X_mc2017_realistic_v3_FastSim-v1', # 15 - fastSim MinBias for mixing UP17
918  'CMSSW_10_6_0-PU25ns_106X_mc2017_realistic_v3_FastSim-v1',# 16 - fastSim premix library UP17
919  'CMSSW_10_6_0-PU25ns_106X_upgrade2018_realistic_v4-v1', # 17 - fullSim PU 25ns UP18 premix library
920  'CMSSW_10_6_0-106X_upgrade2018_realistic_v4-v1', # 18 - GENSIM input for 2018 fullSim premix workflows
921  'CMSSW_10_6_0-106X_upgrade2018_realistic_v4_FastSim-v1', # 19 - fastSim MinBias for mixing UP18
922  'CMSSW_10_6_0-PU25ns_106X_upgrade2018_realistic_v4_FastSim-v1',# 20 - fastSim premix library UP18
923  'CMSSW_10_6_0-106X_mc2017_realistic_v3-v1', # 21 - GEN-SIM inputs for LHE-GEN-SIM 2017 workflows
924  'CMSSW_10_6_0-106X_upgrade2018_realistic_v4-v1', # 22 - GEN-SIM inputs for LHE-GEN-SIM 2018 workflows
925  'CMSSW_12_5_1-125X_mcRun3_2022_realistic_HI_v5-v1', #23 - 2022 HI GEN-SIM for mixing
926  'CMSSW_11_2_0_pre8-PU_112X_upgrade2018_realistic_v4-v1', # 24 - 2018 Run-Dependent premix library
927  'CMSSW_13_2_0_pre1-131X_mcRun3_2023_realistic_HI_v11-v1', # 2023 HI GEN-SIM for mixing
928  'CMSSW_14_1_0_pre7-141X_mcRun3_2024_realistic_HI_v4_STD_Run3_HIN_MinBias_2024-v1', # 2024 HI GEN-SIM for mixing
929 ]
930 
931 # note: INPUT commands to be added once GEN-SIM w/ 13TeV+PostLS1Geo will be available
932 steps['MinBiasINPUT']={'INPUT':InputInfo(dataSet='/RelValMinBias/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')} #was [0]
933 steps['QCD_Pt_3000_3500INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_3000_3500/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
934 steps['QCD_Pt_600_800INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_600_800/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
935 steps['QCD_Pt_80_120INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
936 steps['SingleElectronPt10INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
937 steps['SingleElectronPt1000INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt1000/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
938 steps['SingleElectronPt35INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt35/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
939 steps['SingleGammaPt10INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleGammaPt10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
940 steps['SingleGammaPt35INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleGammaPt35/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
941 steps['SingleMuPt1INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt1/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
942 steps['SingleMuPt10INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
943 steps['SingleMuPt10_UP15IDINPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10_UP15/%s/GEN-SIM-DIGI-RAW-HLTDEBUG'%(baseDataSetRelease[3],),location='STD',split=1)}
944 steps['SingleMuPt10_UP15FSIDINPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10/%s/GEN-SIM-DIGI-RECO'%(baseDataSetRelease[4],),location='STD',split=1)}
945 steps['SingleMuPt100INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt100/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
946 steps['SingleMuPt1000INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt1000/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
947 steps['TTbarINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/%s/GEN-SIM'%((baseDataSetRelease[0].rstrip('1')+'2'),),location='STD')}
948 steps['TTbar_13IDINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13/%s/GEN-SIM-DIGI-RAW-HLTDEBUG'%(baseDataSetRelease[3],),location='STD',split=1)}
949 steps['TTbar_13FSIDINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13/%s/GEN-SIM-DIGI-RECO'%(baseDataSetRelease[4],),location='STD',split=1)}
950 steps['TTbarLeptonINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbarLepton/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
951 steps['OldTTbarINPUT']={'INPUT':InputInfo(dataSet='/RelValProdTTbar/CMSSW_5_0_0_pre6-START50_V5-v1/GEN-SIM-RECO',location='STD')}
952 steps['OldGenSimINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/CMSSW_4_4_2-START44_V7-v1/GEN-SIM-DIGI-RAW-HLTDEBUG',location='STD')}
953 steps['Wjet_Pt_80_120INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_80_120/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
954 steps['Wjet_Pt_3000_3500INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_3000_3500/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
955 steps['LM1_sftsINPUT']={'INPUT':InputInfo(dataSet='/RelValLM1_sfts/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
956 steps['QCD_FlatPt_15_3000INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
957 
958 steps['QCD_FlatPt_15_3000HSINPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000HS/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
959 steps['TTbar__DIGIPU1INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/CMSSW_5_2_2-PU_START52_V4_special_120326-v1/GEN-SIM-DIGI-RAW-HLTDEBUG',location='STD')}
960 # INPUT command for reminiAOD wf on 80X relval input
961 steps['ProdZEE_13_reminiaodINPUT']={'INPUT':InputInfo(dataSet='/RelValProdZEE_13_pmx25ns/CMSSW_8_0_21-PUpmx25ns_80X_mcRun2_asymptotic_2016_TrancheIV_v6_Tr4GT_v6-v1/AODSIM',label='rmaod',location='STD')}
962 # INPUT command for reminiAOD wf on 94X relval input
963 steps['TTbar_13_94XreminiaodINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13/CMSSW_9_4_0-94X_mc2017_realistic_v10-v1/GEN-SIM-RECO',label='rmaod',location='STD')}
964 # INPUT command for reminiAOD wfs on UL-like relval inputs
965 steps['TTbar_13_reminiaod2016UL_preVFP_INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13UP16/CMSSW_10_6_12-PU25ns_106X_mcRun2_asymptotic_preVFP_v8_hltul16_preVFP-v1/AODSIM',label='rmaod',location='STD')}
966 steps['TTbar_13_reminiaod2016UL_postVFP_INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13UP16/CMSSW_10_6_12-PU25ns_106X_mcRun2_asymptotic_v13_hltul16_postVFP-v1/AODSIM',label='rmaod',location='STD')}
967 # FIXME: replace with AODSIM (more appropriate)
968 steps['TTbar_13_reminiaod2017UL_INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13/CMSSW_10_6_4-PUpmx25ns_106X_mc2017_realistic_v6_rsb-v1/GEN-SIM-RECO',label='rmaod',location='STD')}
969 steps['TTbar_13_reminiaod2018UL_INPUT']={'INPUT':InputInfo(dataSet='/RelValProdTTbar_13_pmx25ns/CMSSW_10_6_4-PUpmx25ns_106X_upgrade2018_realistic_v9-v1/AODSIM',label='rmaod',location='STD')}
970 # INPUT command for reminiAOD wfs on PbPb relval inputs
971 steps['HydjetQ_reminiaodPbPb2018_INPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B12_5020GeV_2018_ppReco/CMSSW_10_3_3-PU_103X_upgrade2018_realistic_HI_v11-v1/GEN-SIM-RECO',label='rmaod',location='STD')}
972 steps['HydjetQ_reminiaodPbPb2022_INPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B12_5020GeV_2021_ppReco/CMSSW_12_5_0_pre3-124X_mcRun3_2022_realistic_HI_v8-v1/GEN-SIM-RECO',label='rmaod',location='STD')}
973 #steps['HydjetQ_reminiaodPbPb2023_INPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B12_5362GeV_2023_ppReco/CMSSW_13_1_0_preX-131X_mcRun3_2023_realistic_HI_vX-v1/GEN-SIM-RECO',label='rmaod',location='STD')}
974 
975 
976 # 13 TeV recycle GEN-SIM input
977 steps['MinBias_13INPUT']={'INPUT':InputInfo(dataSet='/RelValMinBias_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
978 steps['QCD_Pt_3000_3500_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_3000_3500_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
979 steps['QCD_Pt_600_800_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_600_800_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
980 steps['QCD_Pt_80_120_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
981 steps['QCD_Pt_80_120_13_HIINPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120_13_HI/%s/GEN-SIM'%(baseDataSetRelease[1],),location='STD')}
982 steps['TTbar_13INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
983 steps['TTbarLepton_13INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbarLepton_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
984 steps['ZEE_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZEE_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
985 #steps['ZEE_13_DBLMINIAODINPUT']={'INPUT':InputInfo(dataSet='/RelValZEE_13_DBLMINIAOD/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
986 steps['Wjet_Pt_80_120_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_80_120_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
987 steps['Wjet_Pt_3000_3500_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_3000_3500_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
988 steps['SMS-T1tttt_mGl-1500_mLSP-100_13INPUT']={'INPUT':InputInfo(dataSet='/RelValSMS-T1tttt_mGl-1500_mLSP-100_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
989 steps['QCD_FlatPt_15_3000_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
990 steps['QCD_FlatPt_15_3000HS_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000HS_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
991 steps['ZpMM_2250_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM_2250_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
992 steps['ZpEE_2250_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZpEE_2250_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
993 steps['ZpTT_1500_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZpTT_1500_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
994 steps['MinBiasHS_13INPUT']={'INPUT':InputInfo(dataSet='/RelValMinBiasHS_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
995 steps['Higgs200ChargedTaus_13INPUT']={'INPUT':InputInfo(dataSet='/RelValHiggs200ChargedTaus_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
996 
997 steps['Upsilon1SToMuMu_13INPUT']={'INPUT':InputInfo(dataSet='/RelValUpsilon1SToMuMu_13/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
998 steps['JpsiMuMu_Pt-8INPUT']={'INPUT':InputInfo(dataSet='/RelValJpsiMuMu_Pt-8/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
999 # new BPH relvals produced for the first time in 810_pre9
1000 steps['BsToMuMu_13INPUT']={'INPUT':InputInfo(dataSet='/RelValBsToMuMu_13/CMSSW_8_1_0_pre9-81X_mcRun2_asymptotic_v2-v1/GEN-SIM',location='STD')}
1001 steps['BdToMuMu_13INPUT']={'INPUT':InputInfo(dataSet='/RelValBdToMuMu_13/CMSSW_8_1_0_pre9-81X_mcRun2_asymptotic_v2-v1/GEN-SIM',location='STD')}
1002 steps['BuToJpsiK_13INPUT']={'INPUT':InputInfo(dataSet='/RelValBuToJpsiK_13/CMSSW_8_1_0_pre9-81X_mcRun2_asymptotic_v2-v1/GEN-SIM',location='STD')}
1003 steps['BsToJpsiPhi_13INPUT']={'INPUT':InputInfo(dataSet='/RelValBsToJpsiPhi_13/CMSSW_8_1_0_pre9-81X_mcRun2_asymptotic_v2-v1/GEN-SIM',location='STD')}
Definition: merge.py:1
def identitySim(wf)
Production test: 13 TeV equivalents.

◆ lhegensim()

def relval_steps.lhegensim (   fragment,
  howMuch 
)

GENERATORS.

Definition at line 1728 of file relval_steps.py.

Referenced by gen2018RD().

1728 def lhegensim(fragment,howMuch):
1729  global step1LHEGenSimDefault
1730  return merge([{'cfg':fragment},howMuch,step1LHEGenSimDefault])
1731 
1732 # LHE-GEN-SIM step for 2017
Definition: merge.py:1
def lhegensim(fragment, howMuch)
GENERATORS.

◆ lhegensim2017()

def relval_steps.lhegensim2017 (   fragment,
  howMuch 
)

Definition at line 1735 of file relval_steps.py.

Referenced by gen2018RD().

1735 def lhegensim2017(fragment,howMuch):
1736  global step1LHEGenSimUp2017Default
1737  return merge([{'cfg':fragment},howMuch,step1LHEGenSimUp2017Default])
1738 
1739 # LHE-GEN-SIM step for 2018
Definition: merge.py:1
def lhegensim2017(fragment, howMuch)

◆ lhegensim2018()

def relval_steps.lhegensim2018 (   fragment,
  howMuch 
)

Definition at line 1742 of file relval_steps.py.

Referenced by gen2018RD().

1742 def lhegensim2018(fragment,howMuch):
1743  global step1LHEGenSimUp2018Default
1744  return merge([{'cfg':fragment},howMuch,step1LHEGenSimUp2018Default])
1745 
1746 # Run-Dependent MC
Definition: merge.py:1
def lhegensim2018(fragment, howMuch)

◆ lhegensim2018ml()

def relval_steps.lhegensim2018ml (   fragment,
  howMuch 
)

Definition at line 1853 of file relval_steps.py.

References MatrixUtil.Kby(), and str.

1853 def lhegensim2018ml(fragment,howMuch):
1854  return merge([{'cfg':fragment},howMuch,{'--customise_commands': '"process.source.numberEventsInLuminosityBlock=cms.untracked.uint32(5)"'},step1LHEGenSimUp2018Default])
1855 
1856 steps['GluGluHToZZTo4L_M125_Pow_py8_Evt_13UP18ml']=lhegensim2018ml('Configuration/Generator/python/GGHZZ4L_JHUGen_Pow_NNPDF30_LHE_13TeV_cfi.py',Kby(9,50))
1857 
1858 
1859 
1860 # sometimes v1 won't be used - override it here - the dictionary key is gen fragment + '_' + geometry
1861 overrideFragments={'H125GGgluonfusion_13UP18INPUT':'2'}
1862 
Definition: merge.py:1
def lhegensim2018ml(fragment, howMuch)
def Kby(N, s)
Standard release validation samples ####.
Definition: MatrixUtil.py:245