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relval_steps.py
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1 class Matrix(dict):
2  def __setitem__(self,key,value):
3  if key in self:
4  print "ERROR in Matrix"
5  print "overwritting",key,"not allowed"
6  else:
7  self.update({float(key):WF(float(key),value)})
8 
9 
10 #the class to collect all possible steps
11 class Steps(dict):
12  def __setitem__(self,key,value):
13  if key in self:
14  print "ERROR in Step"
15  print "overwritting",key,"not allowed"
16  import sys
17  sys.exit(-9)
18  else:
19  self.update({key:value})
20  # make the python file named <step>.py
21  #if not '--python' in value: self[key].update({'--python':'%s.py'%(key,)})
22 
23  def overwrite(self,keypair):
24  value=self[keypair[1]]
25  print "overwritting step",keypair[0],"with",keypair[1],str(value)
26  self.update({keypair[0]:value})
27 
28 class WF(list):
29  def __init__(self,n,l):
30  self.extend(l)
31  self.num=n
32  #the actual steps of this WF
33  self.steps=[]
34 
35 
36  def interpret(self,stepsDict):
37  for s in self:
38  steps.append(stepsDict[s])
39 
40 InputInfoNDefault=2000000
42  def __init__(self,dataSet,label='',run=[],files=1000,events=InputInfoNDefault,split=10,location='CAF',ib_blacklist=None,ib_block=None) :
43  self.run = run
44  self.files = files
45  self.events = events
46  self.location = location
47  self.label = label
48  self.dataSet = dataSet
49  self.split = split
50  self.ib_blacklist = ib_blacklist
51  self.ib_block = ib_block
52 
53  def das(self):
54  query_by = "block" if self.ib_block else "dataset"
55  query_source = "{0}#{1}".format(self.dataSet, self.ib_block) if self.ib_block else self.dataSet
56  if len(self.run) is not 0:
57  command = ";".join(["das_client.py --limit=0 --query 'file {0}={1} run={2}'".format(query_by, query_source, query_run) for query_run in self.run])
58  command = "({0})".format(command)
59  else:
60  command = "das_client.py --limit=0 --query 'file {0}={1} site=T2_CH_CERN'".format(query_by, query_source)
61 
62  # Run filter on DAS output
63  if self.ib_blacklist:
64  command += " | grep -E -v "
65  command += " ".join(["-e '{0}'".format(pattern) for pattern in self.ib_blacklist])
66  command += " | sort -u"
67  return command
68 
69  def lumiRanges(self):
70  if len(self.run) != 0:
71  return "echo '{\n"+",".join(('"%d":[[1,268435455]]\n'%(x,) for x in self.run))+"}'"
72  return None
73 
74  def __str__(self):
75  if self.ib_block:
76  return "input from: {0} with run {1}#{2}".format(self.dataSet, self.ib_block, self.run)
77  return "input from: {0} with run {1}".format(self.dataSet, self.run)
78 
79 # merge dictionaries, with prioty on the [0] index
80 def merge(dictlist,TELL=False):
81  import copy
82  last=len(dictlist)-1
83  if TELL: print last,dictlist
84  if last==0:
85  # ONLY ONE ITEM LEFT
86  return copy.copy(dictlist[0])
87  else:
88  reducedlist=dictlist[0:max(0,last-1)]
89  if TELL: print reducedlist
90  # make a copy of the last item
91  d=copy.copy(dictlist[last])
92  # update with the last but one item
93  d.update(dictlist[last-1])
94  # and recursively do the rest
95  reducedlist.append(d)
96  return merge(reducedlist,TELL)
97 
98 
99 # step1 gensim
100 step1Defaults = {'--relval' : None, # need to be explicitly set
101  '-s' : 'GEN,SIM',
102  '-n' : 10,
103  '--conditions' : 'auto:startup',
104  '--datatier' : 'GEN-SIM',
105  '--eventcontent': 'RAWSIM',
106  }
107 # 2015 step1 gensim
108 step1Up2015Defaults = {'-s' : 'GEN,SIM',
109  '-n' : 10,
110  '--conditions' : 'auto:upgradePLS1', # 25ns GT
111  '--datatier' : 'GEN-SIM',
112  '--eventcontent': 'FEVTDEBUG',
113  '--geometry' : 'Extended2015',
114  '--magField' : '38T_PostLS1',
115  '--customise' : 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1'
116  }
117 # differences between upgradePLS150ns and upgradePLS1 ought to be irrelevant for GEN-SIM
118 #step1Up2015Defaults50ns = merge([{'--conditions':'auto:upgradePLS150ns'},step1Up2015Defaults])
119 
120 
121 steps = Steps()
122 #wmsplit = {}
123 
124 #### Production test section ####
125 steps['ProdMinBias']=merge([{'cfg':'MinBias_8TeV_cfi','--relval':'9000,300'},step1Defaults])
126 steps['ProdTTbar']=merge([{'cfg':'TTbar_Tauola_8TeV_cfi','--relval':'9000,100'},step1Defaults])
127 steps['ProdQCD_Pt_3000_3500']=merge([{'cfg':'QCD_Pt_3000_3500_8TeV_cfi','--relval':'9000,50'},step1Defaults])
128 
129 #### data ####
130 #list of run to harvest for 2010A: 144086,144085,144084,144083,144011,139790,139789,139788,139787,138937,138934,138924,138923
131 #list of run to harvest for 2010B: 149442,149291,149181,149011,148822,147929,147115,146644
132 Run2010ASk=[138937,138934,138924,138923,139790,139789,139788,139787,144086,144085,144084,144083,144011]
133 Run2010BSk=[146644,147115,147929,148822,149011,149181,149182,149291,149294,149442]
134 steps['MinimumBias2010A']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2010A-valskim-v6/RAW-RECO',label='run2010A',location='STD',run=Run2010ASk)}
135 steps['MinimumBias2010B']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2010B-valskim-v2/RAW-RECO',label='run2010B',run=Run2010BSk)}
136 steps['WZMuSkim2010A']={'INPUT':InputInfo(dataSet='/Mu/Run2010A-WZMu-Nov4Skim_v1/RAW-RECO',label='wzMu2010A',run=Run2010ASk)}
137 steps['WZMuSkim2010B']={'INPUT':InputInfo(dataSet='/Mu/Run2010B-WZMu-Nov4Skim_v1/RAW-RECO',label='wzMu2010B',run=Run2010BSk)}
138 steps['WZEGSkim2010A']={'INPUT':InputInfo(dataSet='/EG/Run2010A-WZEG-Nov4Skim_v1/RAW-RECO',label='wzEG2010A',run=Run2010ASk)}
139 steps['WZEGSkim2010B']={'INPUT':InputInfo(dataSet='/Electron/Run2010B-WZEG-Nov4Skim_v1/RAW-RECO',label='wzEG2010B',run=Run2010BSk)}
140 
141 steps['RunCosmicsA']={'INPUT':InputInfo(dataSet='/Cosmics/Run2010A-v1/RAW',label='cos2010A',run=[142089],events=100000)}
142 Run2010B=[149011]
143 steps['RunMinBias2010B']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2010B-RelValRawSkim-v1/RAW',label='mb2010B',run=Run2010B,events=100000)}
144 steps['RunMu2010B']={'INPUT':InputInfo(dataSet='/Mu/Run2010B-RelValRawSkim-v1/RAW',label='mu2010B',run=Run2010B,events=100000)}
145 steps['RunElectron2010B']={'INPUT':InputInfo(dataSet='/Electron/Run2010B-RelValRawSkim-v1/RAW',label='electron2010B',run=Run2010B,events=100000)}
146 steps['RunPhoton2010B']={'INPUT':InputInfo(dataSet='/Photon/Run2010B-RelValRawSkim-v1/RAW',label='photon2010B',run=Run2010B,events=100000)}
147 steps['RunJet2010B']={'INPUT':InputInfo(dataSet='/Jet/Run2010B-RelValRawSkim-v1/RAW',label='jet2010B',run=Run2010B,events=100000)}
148 
149 #list of run to harvest 2011A: 165121, 172802,
150 Run2011ASk=[165121,172802]
151 steps['ValSkim2011A']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2011A-ValSkim-08Nov2011-v1/RAW-RECO',ib_block='239c497e-0fae-11e1-a8b1-00221959e72f',label='run2011A',location='STD',run=Run2011ASk)}
152 steps['WMuSkim2011A']={'INPUT':InputInfo(dataSet='/SingleMu/Run2011A-WMu-08Nov2011-v1/RAW-RECO',ib_block='388c2990-0de6-11e1-bb7e-00221959e72f',label='wMu2011A',location='STD',run=Run2011ASk)}
153 steps['WElSkim2011A']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2011A-WElectron-08Nov2011-v1/RAW-RECO',ib_block='9c48c4ea-0db2-11e1-b62c-00221959e69e',label='wEl2011A',location='STD',run=Run2011ASk)}
154 steps['ZMuSkim2011A']={'INPUT':InputInfo(dataSet='/DoubleMu/Run2011A-ZMu-08Nov2011-v1/RAW-RECO',label='zMu2011A',location='STD',run=Run2011ASk)}
155 steps['ZElSkim2011A']={'INPUT':InputInfo(dataSet='/DoubleElectron/Run2011A-ZElectron-08Nov2011-v1/RAW-RECO',label='zEl2011A',location='STD',run=Run2011ASk)}
156 steps['HighMet2011A']={'INPUT':InputInfo(dataSet='/Jet/Run2011A-HighMET-08Nov2011-v1/RAW-RECO',ib_block='3c764584-0b59-11e1-b62c-00221959e69e',label='hMet2011A',location='STD',run=Run2011ASk)}
157 
158 steps['RunCosmics2011A']={'INPUT':InputInfo(dataSet='/Cosmics/Run2011A-v1/RAW',label='cos2011A',run=[160960],events=100000,location='STD')}
159 Run2011A=[165121]
160 steps['RunMinBias2011A']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2011A-v1/RAW',label='mb2011A',run=Run2011A,events=100000,location='STD')}
161 steps['RunMu2011A']={'INPUT':InputInfo(dataSet='/SingleMu/Run2011A-v1/RAW',label='mu2011A',run=Run2011A,events=100000)}
162 steps['RunElectron2011A']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2011A-v1/RAW',label='electron2011A',run=Run2011A,events=100000)}
163 steps['RunPhoton2011A']={'INPUT':InputInfo(dataSet='/Photon/Run2011A-v1/RAW',label='photon2011A',run=Run2011A,events=100000)}
164 steps['RunJet2011A']={'INPUT':InputInfo(dataSet='/Jet/Run2011A-v1/RAW',label='jet2011A',run=Run2011A,events=100000)}
165 
166 Run2011B=[177719]
167 Run2011BSk=[177719,177790,177096,175874]
168 steps['RunMinBias2011B']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2011B-v1/RAW',label='mb2011B',run=Run2011B,events=100000,location='STD')}
169 steps['RunMu2011B']={'INPUT':InputInfo(dataSet='/SingleMu/Run2011B-v1/RAW',label='mu2011B',run=Run2011B,events=100000)}
170 steps['RunElectron2011B']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2011B-v1/RAW',label='electron2011B',run=Run2011B,events=100000)}
171 steps['RunPhoton2011B']={'INPUT':InputInfo(dataSet='/Photon/Run2011B-v1/RAW',label='photon2011B',run=Run2011B,events=100000)}
172 steps['RunJet2011B']={'INPUT':InputInfo(dataSet='/Jet/Run2011B-v1/RAW',label='jet2011B',run=Run2011B,events=100000)}
173 
174 steps['ValSkim2011B']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2011B-ValSkim-19Nov2011-v1/RAW-RECO',label='run2011B',location='STD',run=Run2011BSk)}
175 steps['WMuSkim2011B']={'INPUT':InputInfo(dataSet='/SingleMu/Run2011B-WMu-19Nov2011-v1/RAW-RECO',ib_block='19110c74-1b66-11e1-a98b-003048f02c8a',label='wMu2011B',location='STD',run=Run2011BSk)}
176 steps['WElSkim2011B']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2011B-WElectron-19Nov2011-v1/RAW-RECO',ib_block='d75771a4-1b3f-11e1-aef4-003048f02c8a',label='wEl2011B',location='STD',run=Run2011BSk)}
177 steps['ZMuSkim2011B']={'INPUT':InputInfo(dataSet='/DoubleMu/Run2011B-ZMu-19Nov2011-v1/RAW-RECO',label='zMu2011B',location='STD',run=Run2011BSk)}
178 steps['ZElSkim2011B']={'INPUT':InputInfo(dataSet='/DoubleElectron/Run2011B-ZElectron-19Nov2011-v1/RAW-RECO',label='zEl2011B',run=Run2011BSk)}
179 steps['HighMet2011B']={'INPUT':InputInfo(dataSet='/Jet/Run2011B-HighMET-19Nov2011-v1/RAW-RECO',label='hMet2011B',run=Run2011BSk)}
180 
181 steps['RunHI2010']={'INPUT':InputInfo(dataSet='/HIAllPhysics/HIRun2010-v1/RAW',label='hi2010',run=[152698],events=10000,location='STD')}
182 steps['RunHI2011']={'INPUT':InputInfo(dataSet='/HIMinBiasUPC/HIRun2011-v1/RAW',label='hi2011',run=[182124],events=10000,location='STD')}
183 
184 
185 Run2012A=[191226]
186 Run2012ASk=Run2012A+[]
187 steps['RunMinBias2012A']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2012A-v1/RAW',label='mb2012A',run=Run2012A, events=100000,location='STD')}
188 steps['RunTau2012A']={'INPUT':InputInfo(dataSet='/Tau/Run2012A-v1/RAW',label='tau2012A', run=Run2012A, events=100000,location='STD')}
189 steps['RunMET2012A']={'INPUT':InputInfo(dataSet='/MET/Run2012A-v1/RAW',label='met2012A', run=Run2012A, events=100000,location='STD')}
190 steps['RunMu2012A']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012A-v1/RAW',label='mu2012A', run=Run2012A, events=100000,location='STD')}
191 steps['RunElectron2012A']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012A-v1/RAW',label='electron2012A', run=Run2012A, events=100000,location='STD')}
192 steps['RunJet2012A']={'INPUT':InputInfo(dataSet='/Jet/Run2012A-v1/RAW',label='jet2012A', run=Run2012A, events=100000,location='STD')}
193 
194 steps['WElSkim2012A']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012A-WElectron-13Jul2012-v1/USER',label='wEl2012A',location='STD',run=Run2012ASk)}
195 steps['ZMuSkim2012A']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012A-ZMu-13Jul2012-v1/RAW-RECO',label='zMu2012A',location='STD',run=Run2012ASk)}
196 steps['ZElSkim2012A']={'INPUT':InputInfo(dataSet='/DoubleElectron/Run2012A-ZElectron-13Jul2012-v1/RAW-RECO',label='zEl2012A',run=Run2012ASk)}
197 steps['HighMet2012A']={'INPUT':InputInfo(dataSet='/HT/Run2012A-HighMET-13Jul2012-v1/RAW-RECO',label='hMet2012A',run=Run2012ASk)}
198 
199 
200 Run2012B=[194533]
201 Run2012Bsk=Run2012B+[194912,195016]
202 steps['RunMinBias2012B']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2012B-v1/RAW',label='mb2012B',run=Run2012B, events=100000,location='STD')}
203 steps['RunMu2012B']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012B-v1/RAW',label='mu2012B',location='STD',run=Run2012B)}
204 steps['RunPhoton2012B']={'INPUT':InputInfo(dataSet='/SinglePhoton/Run2012B-v1/RAW',ib_block='28d7fcc8-a2a0-11e1-86c7-003048caaace',label='photon2012B',location='STD',run=Run2012B)}
205 steps['RunEl2012B']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012B-v1/RAW',label='electron2012B',location='STD',run=Run2012B)}
206 steps['RunJet2012B']={'INPUT':InputInfo(dataSet='/JetHT/Run2012B-v1/RAW',label='jet2012B',location='STD',run=Run2012B)}
207 steps['ZMuSkim2012B']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012B-ZMu-13Jul2012-v1/RAW-RECO',label='zMu2012B',location='CAF',run=Run2012Bsk)}
208 steps['WElSkim2012B']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012B-WElectron-13Jul2012-v1/USER',label='wEl2012B',location='STD',run=Run2012Bsk)}
209 steps['ZElSkim2012B']={'INPUT':InputInfo(dataSet='/DoubleElectron/Run2012B-ZElectron-13Jul2012-v1/RAW-RECO',ib_block='0c5092cc-d554-11e1-bb62-00221959e69e',label='zEl2012B',location='STD',run=Run2012Bsk)}
210 
211 Run2012C=[199812]
212 Run2012Csk=Run2012C+[203002]
213 steps['RunMinBias2012C']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2012C-v1/RAW',label='mb2012C',run=Run2012C, events=100000,location='STD')}
214 steps['RunMu2012C']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012C-v1/RAW',label='mu2012C',location='STD',run=Run2012C)}
215 steps['RunPhoton2012C']={'INPUT':InputInfo(dataSet='/SinglePhoton/Run2012C-v1/RAW',label='photon2012C',location='STD',run=Run2012C)}
216 steps['RunEl2012C']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012C-v1/RAW',label='electron2012C',location='STD',run=Run2012C)}
217 steps['RunJet2012C']={'INPUT':InputInfo(dataSet='/JetHT/Run2012C-v1/RAW',label='jet2012C',location='STD',run=Run2012C)}
218 steps['ZMuSkim2012C']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012C-ZMu-PromptSkim-v3/RAW-RECO',label='zMu2012C',location='CAF',run=Run2012Csk)}
219 steps['WElSkim2012C']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012C-WElectron-PromptSkim-v3/USER',label='wEl2012C',location='STD',run=Run2012Csk)}
220 steps['ZElSkim2012C']={'INPUT':InputInfo(dataSet='/DoubleElectron/Run2012C-ZElectron-PromptSkim-v3/RAW-RECO',label='zEl2012C',location='STD',run=Run2012Csk)}
221 
222 # needed but can't be tested because of DBS => das hanging forever
223 #RunHighPU2012C=[198588]
224 #steps['RunZBias2012C']={'INPUT':InputInfo(dataSet='/ZeroBias/Run2012C-v1/RAW',label='zb2012C',location='STD',run=RunHighPU2012C,events=100000)}
225 
226 
227 Run2012D=[208307]
228 Run2012Dsk=Run2012D+[207454]
229 steps['RunMinBias2012D']={'INPUT':InputInfo(dataSet='/MinimumBias/Run2012D-v1/RAW',label='mb2012D',run=Run2012D, events=100000,location='STD')}
230 steps['RunMu2012D']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012D-v1/RAW',label='mu2012D',location='STD',run=Run2012D)}
231 steps['RunPhoton2012D']={'INPUT':InputInfo(dataSet='/SinglePhoton/Run2012D-v1/RAW',label='photon2012D',location='STD',run=Run2012D)}
232 steps['RunEl2012D']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012D-v1/RAW',label='electron2012D',location='STD',run=Run2012D)}
233 steps['RunJet2012D']={'INPUT':InputInfo(dataSet='/JetHT/Run2012D-v1/RAW',label='jet2012D',location='STD',run=Run2012D)}
234 steps['ZMuSkim2012D']={'INPUT':InputInfo(dataSet='/SingleMu/Run2012D-ZMu-PromptSkim-v1/RAW-RECO',label='zMu2012D',location='STD',run=Run2012Dsk)}
235 steps['WElSkim2012D']={'INPUT':InputInfo(dataSet='/SingleElectron/Run2012D-WElectron-PromptSkim-v1/USER',label='wEl2012D',location='STD',run=Run2012Dsk)}
236 steps['ZElSkim2012D']={'INPUT':InputInfo(dataSet='/DoubleElectron/Run2012D-ZElectron-PromptSkim-v1/RAW-RECO',label='zEl2012D',location='STD',run=Run2012Dsk)}
237 
238 #### Standard release validation samples ####
239 
240 stCond={'--conditions':'auto:startup'}
241 def Kby(N,s):
242  return {'--relval':'%s000,%s'%(N,s)}
243 def Mby(N,s):
244  return {'--relval':'%s000000,%s'%(N,s)}
245 
246 def gen(fragment,howMuch):
247  global step1Defaults
248  return merge([{'cfg':fragment},howMuch,step1Defaults])
249 
250 def gen2015(fragment,howMuch):
251  global step1Up2015Defaults
252  return merge([{'cfg':fragment},howMuch,step1Up2015Defaults])
253 
254 ### Production test: 13 TeV equivalents
255 steps['ProdMinBias_13']=gen2015('MinBias_13TeV_cfi',Kby(9,100))
256 steps['ProdTTbar_13']=gen2015('TTbar_Tauola_13TeV_cfi',Kby(9,100))
257 steps['ProdQCD_Pt_3000_3500_13']=gen2015('QCD_Pt_3000_3500_13TeV_cfi',Kby(9,100))
258 # GF include branched wf comparing relVal and prod
259 
260 steps['MinBias']=gen('MinBias_8TeV_cfi',Kby(9,300))
261 steps['QCD_Pt_3000_3500']=gen('QCD_Pt_3000_3500_8TeV_cfi',Kby(9,25))
262 steps['QCD_Pt_600_800']=gen('QCD_Pt_600_800_8TeV_cfi',Kby(9,50))
263 steps['QCD_Pt_80_120']=gen('QCD_Pt_80_120_8TeV_cfi',Kby(9,100))
264 steps['MinBias_13']=gen2015('MinBias_13TeV_cfi',Kby(100,300)) # set HS to provide adequate pool for PU
265 steps['QCD_Pt_3000_3500_13']=gen2015('QCD_Pt_3000_3500_13TeV_cfi',Kby(9,25))
266 steps['QCD_Pt_600_800_13']=gen2015('QCD_Pt_600_800_13TeV_cfi',Kby(9,50))
267 steps['QCD_Pt_80_120_13']=gen2015('QCD_Pt_80_120_13TeV_cfi',Kby(9,100))
268 
269 steps['QCD_Pt_30_80_BCtoE_8TeV']=gen('QCD_Pt_30_80_BCtoE_8TeV',Kby(9000,100))
270 steps['QCD_Pt_80_170_BCtoE_8TeV']=gen('QCD_Pt_80_170_BCtoE_8TeV',Kby(9000,100))
271 steps['SingleElectronPt10']=gen('SingleElectronPt10_cfi',Kby(9,3000))
272 steps['SingleElectronPt35']=gen('SingleElectronPt35_cfi',Kby(9,500))
273 steps['SingleElectronPt1000']=gen('SingleElectronPt1000_cfi',Kby(9,50))
274 steps['SingleElectronFlatPt1To100']=gen('SingleElectronFlatPt1To100_cfi',Mby(2,100))
275 steps['SingleGammaPt10']=gen('SingleGammaPt10_cfi',Kby(9,3000))
276 steps['SingleGammaPt35']=gen('SingleGammaPt35_cfi',Kby(9,500))
277 steps['SingleMuPt1']=gen('SingleMuPt1_cfi',Kby(25,1000))
278 steps['SingleMuPt10']=gen('SingleMuPt10_cfi',Kby(25,500))
279 steps['SingleMuPt100']=gen('SingleMuPt100_cfi',Kby(9,500))
280 steps['SingleMuPt1000']=gen('SingleMuPt1000_cfi',Kby(9,500))
281 steps['SingleElectronPt10_UP15']=gen2015('SingleElectronPt10_cfi',Kby(9,3000))
282 steps['SingleElectronPt35_UP15']=gen2015('SingleElectronPt35_cfi',Kby(9,500))
283 steps['SingleElectronPt1000_UP15']=gen2015('SingleElectronPt1000_cfi',Kby(9,50))
284 steps['SingleElectronFlatPt1To100_UP15']=gen2015('SingleElectronFlatPt1To100_cfi',Mby(2,100))
285 steps['SingleGammaPt10_UP15']=gen2015('SingleGammaPt10_cfi',Kby(9,3000))
286 steps['SingleGammaPt35_UP15']=gen2015('SingleGammaPt35_cfi',Kby(9,500))
287 steps['SingleMuPt1_UP15']=gen2015('SingleMuPt1_cfi',Kby(25,1000))
288 steps['SingleMuPt10_UP15']=gen2015('SingleMuPt10_cfi',Kby(25,500))
289 steps['SingleMuPt100_UP15']=gen2015('SingleMuPt100_cfi',Kby(9,500))
290 steps['SingleMuPt1000_UP15']=gen2015('SingleMuPt1000_cfi',Kby(9,500))
291 steps['TTbar']=gen('TTbar_Tauola_8TeV_cfi',Kby(9,100))
292 steps['TTbarLepton']=gen('TTbarLepton_Tauola_8TeV_cfi',Kby(9,100))
293 steps['ZEE']=gen('ZEE_8TeV_cfi',Kby(9,100))
294 steps['Wjet_Pt_80_120']=gen('Wjet_Pt_80_120_8TeV_cfi',Kby(9,100))
295 steps['Wjet_Pt_3000_3500']=gen('Wjet_Pt_3000_3500_8TeV_cfi',Kby(9,50))
296 steps['LM1_sfts']=gen('LM1_sfts_8TeV_cfi',Kby(9,100))
297 steps['QCD_FlatPt_15_3000']=gen('QCDForPF_8TeV_cfi',Kby(5,100))
298 steps['QCD_FlatPt_15_3000HS']=gen('QCDForPF_8TeV_cfi',Kby(50,100))
299 steps['TTbar_13']=gen2015('TTbar_Tauola_13TeV_cfi',Kby(9,100))
300 steps['TTbarLepton_13']=gen2015('TTbarLepton_Tauola_13TeV_cfi',Kby(9,100))
301 steps['ZEE_13']=gen2015('ZEE_13TeV_cfi',Kby(9,100))
302 steps['Wjet_Pt_80_120_13']=gen2015('Wjet_Pt_80_120_13TeV_cfi',Kby(9,100))
303 steps['Wjet_Pt_3000_3500_13']=gen2015('Wjet_Pt_3000_3500_13TeV_cfi',Kby(9,50))
304 steps['LM1_sfts_13']=gen2015('LM1_sfts_13TeV_cfi',Kby(9,100))
305 steps['QCD_FlatPt_15_3000_13']=gen2015('QCDForPF_13TeV_cfi',Kby(9,100))
306 steps['QCD_FlatPt_15_3000HS_13']=gen2015('QCDForPF_13TeV_cfi',Kby(50,100))
307 
308 steps['ZpMM_2250_8TeV_Tauola']=gen('ZpMM_2250_8TeV_Tauola_cfi',Kby(9,100))
309 steps['ZpEE_2250_8TeV_Tauola']=gen('ZpEE_2250_8TeV_Tauola_cfi',Kby(9,100))
310 steps['ZpTT_1500_8TeV_Tauola']=gen('ZpTT_1500_8TeV_Tauola_cfi',Kby(9,100))
311 steps['ZpMM_2250_13TeV_Tauola']=gen2015('ZpMM_2250_13TeV_Tauola_cfi',Kby(9,100))
312 steps['ZpEE_2250_13TeV_Tauola']=gen2015('ZpEE_2250_13TeV_Tauola_cfi',Kby(9,100))
313 steps['ZpTT_1500_13TeV_Tauola']=gen2015('ZpTT_1500_13TeV_Tauola_cfi',Kby(9,100))
314 
315 def identitySim(wf):
316  return merge([{'--restoreRND':'SIM','--process':'SIM2'},wf])
317 
318 steps['SingleMuPt10_ID']=identitySim(steps['SingleMuPt10'])
319 steps['TTbar_ID']=identitySim(steps['TTbar'])
320 
321 baseDataSetRelease=[
322  'CMSSW_6_2_0_pre8-PRE_ST62_V8-v1',
323  'CMSSW_6_2_0_pre8-PRE_SH62_V15-v1',
324  'CMSSW_6_2_0_pre8-PRE_ST62_V8_FastSim-v1',
325  'CMSSW_6_2_0_pre8-PRE_SH62_V15-v2',
326  'CMSSW_6_1_0_pre6-STARTHI61_V6-v1',
327  'CMSSW_6_2_0_pre8-PRE_ST62_V8-v3',
328  'CMSSW_6_2_0_patch1-POSTLS162_V1_30Aug2013-v2', # for _13 TeV samples with postLs1 geometry and updated mag field
329  'CMSSW_6_2_0_patch1-POSTLS162_V1_30Aug2013HS-v3',# only for MB, to go away once GEN-SIM will be remade
330  'CMSSW_6_2_0_patch1-POSTLS162_V1_30Aug2013-v3' # for _13 RelValZmumuJets_Pt_20_300_GEN_13 and two others
331  ]
332 
333 # note: INPUT commands to be added once GEN-SIM w/ 13TeV+PostLS1Geo will be available
334 steps['MinBiasINPUT']={'INPUT':InputInfo(dataSet='/RelValMinBias/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
335 steps['QCD_Pt_3000_3500INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_3000_3500/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
336 steps['QCD_Pt_600_800INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_600_800/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
337 steps['QCD_Pt_80_120INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
338 steps['SingleElectronPt10INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
339 steps['SingleElectronPt1000INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt1000/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
340 steps['SingleElectronPt35INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt35/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
341 steps['SingleGammaPt10INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleGammaPt10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
342 steps['SingleGammaPt35INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleGammaPt35/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
343 steps['SingleMuPt1INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt1/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
344 steps['SingleMuPt10INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
345 steps['SingleMuPt10IdINPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10/%s/GEN-SIM-DIGI-RAW-HLTDEBUG'%(baseDataSetRelease[0],),location='STD',split=1)}
346 steps['SingleMuPt10FSIdINPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10/%s/GEN-SIM-DIGI-RECO'%(baseDataSetRelease[2],),location='STD',split=1)}
347 steps['SingleMuPt100INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt100/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
348 steps['SingleMuPt1000INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt1000/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
349 steps['TTbarINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
350 steps['TTbarIdINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/%s/GEN-SIM-DIGI-RAW-HLTDEBUG'%(baseDataSetRelease[0],),location='STD',split=1)}
351 steps['TTbarFSIdINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/%s/GEN-SIM-DIGI-RECO'%(baseDataSetRelease[2],),location='STD',split=1)}
352 steps['TTbarLeptonINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbarLepton/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
353 steps['OldTTbarINPUT']={'INPUT':InputInfo(dataSet='/RelValProdTTbar/CMSSW_5_0_0_pre6-START50_V5-v1/GEN-SIM-RECO',location='STD')}
354 steps['OldGenSimINPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/CMSSW_4_4_2-START44_V7-v1/GEN-SIM-DIGI-RAW-HLTDEBUG',location='STD')}
355 steps['Wjet_Pt_80_120INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_80_120/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
356 steps['Wjet_Pt_3000_3500INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_3000_3500/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
357 steps['LM1_sftsINPUT']={'INPUT':InputInfo(dataSet='/RelValLM1_sfts/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
358 steps['QCD_FlatPt_15_3000INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
359 
360 steps['QCD_FlatPt_15_3000HSINPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000HS/CMSSW_6_2_0_pre8-PRE_ST62_V8-v1/GEN-SIM',location='STD')}
361 #the following dataset used to be in input but is currently not valid dbs datasets
362 steps['QCD_FlatPt_15_3000HS__DIGIPU1INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000/CMSSW_5_2_2-PU_START52_V4_special_120326-v1/GEN-SIM-DIGI-RAW-HLTDEBUG',location='STD')}
363 steps['TTbar__DIGIPU1INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/CMSSW_5_2_2-PU_START52_V4_special_120326-v1/GEN-SIM-DIGI-RAW-HLTDEBUG',location='STD')}
364 
365 # 13 TeV recycle GEN-SIM input
366 steps['MinBias_13INPUT']={'INPUT':InputInfo(dataSet='/RelValMinBias_13/%s/GEN-SIM'%(baseDataSetRelease[7],),location='STD')}
367 steps['QCD_Pt_3000_3500_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_3000_3500_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
368 steps['QCD_Pt_600_800_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_600_800_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
369 steps['QCD_Pt_80_120_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
370 steps['TTbar_13INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
371 steps['TTbarLepton_13INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbarLepton_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
372 steps['ZEE_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZEE_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
373 steps['Wjet_Pt_80_120_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_80_120_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
374 steps['Wjet_Pt_3000_3500_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWjet_Pt_3000_3500_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
375 steps['LM1_sfts_13INPUT']={'INPUT':InputInfo(dataSet='/RelValLM1_sfts_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
376 steps['QCD_FlatPt_15_3000_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
377 steps['QCD_FlatPt_15_3000HS_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_FlatPt_15_3000HS_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
378 steps['ZpMM_2250_13TeV_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM_2250_13TeV_Tauola/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
379 steps['ZpEE_2250_13TeV_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValZpEE_2250_13TeV_Tauola/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
380 steps['ZpTT_1500_13TeV_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValZpTT_1500_13TeV_Tauola/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
381 steps['MinBiasHS_13INPUT']={'INPUT':InputInfo(dataSet='/RelValMinBiasHS_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
382 steps['Higgs200ChargedTaus_13INPUT']={'INPUT':InputInfo(dataSet='/RelValHiggs200ChargedTaus_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
383 steps['JpsiMM_13INPUT']={'INPUT':InputInfo(dataSet='/RelValJpsiMM_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
384 steps['WE_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWE_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
385 steps['WM_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWM_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
386 steps['WpM_13INPUT']={'INPUT':InputInfo(dataSet='/RelValWpM_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
387 steps['ZMM_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZMM_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
388 steps['ZpMM_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
389 steps['ZTT_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZTT_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
390 steps['H130GGgluonfusion_13INPUT']={'INPUT':InputInfo(dataSet='/RelValH130GGgluonfusion_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
391 steps['PhotonJets_Pt_10_13INPUT']={'INPUT':InputInfo(dataSet='/RelValPhotonJets_Pt_10_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
392 steps['QQH1352T_Tauola_13INPUT']={'INPUT':InputInfo(dataSet='/RelValQQH1352T_Tauola_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
393 steps['ZmumuJets_Pt_20_300_13INPUT']={'INPUT':InputInfo(dataSet='/RelValZmumuJets_Pt_20_300_GEN_13/%s/GEN-SIM'%(baseDataSetRelease[8],),location='STD')}
394 steps['ADDMonoJet_d3MD3_13INPUT']={'INPUT':InputInfo(dataSet='/RelValADDMonoJet_d3MD3_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
395 steps['RelValRSKKGluon_m3000GeV_13INPUT']={'INPUT':InputInfo(dataSet='/RelValRSKKGluon_m3000GeV_13/%s/GEN-SIM'%(baseDataSetRelease[8],),location='STD')}
396 steps['RelValPythia6_BuJpsiK_TuneZ2star_13INPUT']={'INPUT':InputInfo(dataSet='/RelValPythia6_BuJpsiK_TuneZ2star_13/%s/GEN-SIM'%(baseDataSetRelease[8],),location='STD')}
397 steps['BeamHalo_13INPUT']={'INPUT':InputInfo(dataSet='/RelValBeamHalo_13/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
398 # particle guns with postLS1 geometry recycle GEN-SIM input
399 steps['SingleElectronPt10_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt10_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
400 steps['SingleElectronPt35_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt35_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
401 steps['SingleElectronPt1000_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronPt1000_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
402 steps['SingleElectronFlatPt1To100_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleElectronFlatPt1To100_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
403 steps['SingleGammaPt10_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleGammaPt10_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
404 steps['SingleGammaPt35_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleGammaPt35_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
405 steps['SingleMuPt1_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt1_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
406 steps['SingleMuPt10_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt10_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
407 steps['SingleMuPt100_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt100_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
408 steps['SingleMuPt1000_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValSingleMuPt1000_UP15/%s/GEN-SIM'%(baseDataSetRelease[6],),location='STD')}
409 
410 #input for fast sim workflows to be added - TODO
411 
412 
413 ## high stat step1
414 ecalHcal={
415  '-s':'GEN,SIM,DIGI,DIGI2RAW,RAW2DIGI,L1Reco,RECO,EI',
416  '--datatier':'GEN-SIM-DIGI-RAW-RECO',
417  #'--geometry':'ECALHCAL',
418  '--eventcontent':'FEVTDEBUG',
419  '--customise':'Validation/Configuration/ECALHCAL.customise,SimGeneral/MixingModule/fullMixCustomize_cff.setCrossingFrameOn',
420  '--beamspot':'NoSmear'}
421 
422 steps['SingleElectronE120EHCAL']=merge([{'cfg':'SingleElectronE120EHCAL_cfi'},ecalHcal,Kby(25,250),step1Defaults])
423 steps['SinglePiE50HCAL']=merge([{'cfg':'SinglePiE50HCAL_cfi'},ecalHcal,Kby(25,250),step1Defaults])
424 
425 steps['MinBiasHS']=gen('MinBias_8TeV_cfi',Kby(25,300))
426 steps['InclusiveppMuX']=gen('InclusiveppMuX_8TeV_cfi',Mby(11,45000))
427 steps['SingleElectronFlatPt5To100']=gen('SingleElectronFlatPt5To100_cfi',Kby(25,250))
428 steps['SinglePiPt1']=gen('SinglePiPt1_cfi',Kby(25,250))
429 steps['SingleMuPt1HS']=gen('SingleMuPt1_cfi',Kby(25,1000))
430 steps['ZPrime5000Dijet']=gen('ZPrime5000JJ_8TeV_cfi',Kby(25,100))
431 steps['SinglePi0E10']=gen('SinglePi0E10_cfi',Kby(25,100))
432 steps['SinglePiPt10']=gen('SinglePiPt10_cfi',Kby(25,250))
433 steps['SingleGammaFlatPt10To100']=gen('SingleGammaFlatPt10To100_cfi',Kby(25,250))
434 steps['SingleTauPt50Pythia']=gen('SingleTaupt_50_cfi',Kby(25,100))
435 steps['SinglePiPt100']=gen('SinglePiPt100_cfi',Kby(25,250))
436 
437 
438 def genS(fragment,howMuch):
439  global step1Defaults,stCond
440  return merge([{'cfg':fragment},stCond,howMuch,step1Defaults])
441 
442 steps['Higgs200ChargedTaus']=genS('H200ChargedTaus_Tauola_8TeV_cfi',Kby(9,100))
443 steps['JpsiMM']=genS('JpsiMM_8TeV_cfi',Kby(66,1000))
444 steps['WE']=genS('WE_8TeV_cfi',Kby(9,100))
445 steps['WM']=genS('WM_8TeV_cfi',Kby(9,200))
446 steps['WpM']=genS('WpM_8TeV_cfi',Kby(9,200))
447 steps['ZMM']=genS('ZMM_8TeV_cfi',Kby(18,300))
448 steps['ZpMM']=genS('ZpMM_8TeV_cfi',Kby(9,200))
449 steps['Higgs200ChargedTaus_13']=gen2015('H200ChargedTaus_Tauola_13TeV_cfi',Kby(9,100))
450 steps['JpsiMM_13']=gen2015('JpsiMM_13TeV_cfi',Kby(66,1000))
451 steps['WE_13']=gen2015('WE_13TeV_cfi',Kby(9,100))
452 steps['WM_13']=gen2015('WM_13TeV_cfi',Kby(9,200))
453 steps['WpM_13']=gen2015('WpM_13TeV_cfi',Kby(9,200))
454 steps['ZMM_13']=gen2015('ZMM_13TeV_cfi',Kby(18,300))
455 steps['ZpMM_13']=gen2015('ZpMM_13TeV_cfi',Kby(9,200))
456 
457 steps['ZTT']=genS('ZTT_Tauola_All_hadronic_8TeV_cfi',Kby(9,150))
458 steps['H130GGgluonfusion']=genS('H130GGgluonfusion_8TeV_cfi',Kby(9,100))
459 steps['PhotonJets_Pt_10']=genS('PhotonJet_Pt_10_8TeV_cfi',Kby(9,150))
460 steps['QQH1352T_Tauola']=genS('QQH1352T_Tauola_8TeV_cfi',Kby(9,100))
461 steps['ZTT_13']=gen2015('ZTT_Tauola_All_hadronic_13TeV_cfi',Kby(9,150))
462 steps['H130GGgluonfusion_13']=gen2015('H130GGgluonfusion_13TeV_cfi',Kby(9,100))
463 steps['PhotonJets_Pt_10_13']=gen2015('PhotonJet_Pt_10_13TeV_cfi',Kby(9,150))
464 steps['QQH1352T_Tauola_13']=gen2015('QQH1352T_Tauola_13TeV_cfi',Kby(9,100))
465 steps['ZmumuJets_Pt_20_300']=gen('ZmumuJets_Pt_20_300_GEN_8TeV_cfg',Kby(25,100))
466 steps['ZmumuJets_Pt_20_300_13']=gen('ZmumuJets_Pt_20_300_GEN_13TeV_cfg',Kby(25,100))
467 steps['ADDMonoJet_d3MD3']=genS('ADDMonoJet_8TeV_d3MD3_cfi',Kby(9,100))
468 steps['ADDMonoJet_d3MD3_13']=gen2015('ADDMonoJet_13TeV_d3MD3_cfi',Kby(9,100))
469 steps['RelValRSKKGluon_m3000GeV_13']=gen2015('RSKKGluon_m3000GeV_13TeV_cff',Kby(9,100)) # GF GEN-SIM tb tested when card available
470 steps['RelValPythia6_BuJpsiK_TuneZ2star_13']=gen2015('Pythia6_BuJpsiK_TuneZ2star_13TeV_cfi',Kby(9,100)) # GF GEN-SIM tb tested when card available
471 
472 steps['MinBias2INPUT']={'INPUT':InputInfo(dataSet='/RelValMinBias/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
473 steps['Higgs200ChargedTausINPUT']={'INPUT':InputInfo(dataSet='/RelValHiggs200ChargedTaus/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
474 steps['QCD_Pt_3000_3500_2INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_3000_3500/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
475 steps['QCD_Pt_80_120_2INPUT']={'INPUT':InputInfo(dataSet='/RelValQCD_Pt_80_120/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
476 steps['JpsiMMINPUT']={'INPUT':InputInfo(dataSet='/RelValJpsiMM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
477 steps['TTbar2INPUT']={'INPUT':InputInfo(dataSet='/RelValTTbar/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
478 steps['WEINPUT']={'INPUT':InputInfo(dataSet='/RelValWE/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
479 steps['WMINPUT']={'INPUT':InputInfo(dataSet='/RelValWM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
480 steps['ZEEINPUT']={'INPUT':InputInfo(dataSet='/RelValZEE/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
481 steps['ZMMINPUT']={'INPUT':InputInfo(dataSet='/RelValZMM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
482 steps['ZTTINPUT']={'INPUT':InputInfo(dataSet='/RelValZTT/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
483 steps['H130GGgluonfusionINPUT']={'INPUT':InputInfo(dataSet='/RelValH130GGgluonfusion/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
484 steps['PhotonJets_Pt_10INPUT']={'INPUT':InputInfo(dataSet='/RelValPhotonJets_Pt_10/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
485 steps['QQH1352T_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValQQH1352T_Tauola/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
486 steps['ADDMonoJet_d3MD3INPUT']={'INPUT':InputInfo(dataSet='/RelValADDMonoJet_d3MD3/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
487 steps['WpMINPUT']={'INPUT':InputInfo(dataSet='/RelValWpM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
488 steps['ZpMMINPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
489 steps['ZpMM_2250_8TeV_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValZpMM_2250_8TeV_Tauola/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
490 steps['ZpEE_2250_8TeV_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValZpEE_2250_8TeV_Tauola/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
491 steps['ZpTT_1500_8TeV_TauolaINPUT']={'INPUT':InputInfo(dataSet='/RelValZpTT_1500_8TeV_Tauola/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
492 
493 
494 steps['ZmumuJets_Pt_20_300INPUT']={'INPUT':InputInfo(dataSet='/RelValZmumuJets_Pt_20_300/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
495 
496 
497 steps['Cosmics']=merge([{'cfg':'UndergroundCosmicMu_cfi.py','--scenario':'cosmics'},Kby(666,100000),step1Defaults])
498 steps['BeamHalo']=merge([{'cfg':'BeamHalo_cfi.py','--scenario':'cosmics'},Kby(9,100),step1Defaults])
499 steps['BeamHalo_13']=merge([{'cfg':'BeamHalo_13TeV_cfi.py','--scenario':'cosmics'},Kby(9,100),step1Up2015Defaults])
500 
501 steps['CosmicsINPUT']={'INPUT':InputInfo(dataSet='/RelValCosmics/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
502 steps['BeamHaloINPUT']={'INPUT':InputInfo(dataSet='/RelValBeamHalo/%s/GEN-SIM'%(baseDataSetRelease[0],),location='STD')}
503 
504 steps['QCD_Pt_50_80']=genS('QCD_Pt_50_80_8TeV_cfi',Kby(25,100))
505 steps['QCD_Pt_15_20']=genS('QCD_Pt_15_20_8TeV_cfi',Kby(25,100))
506 steps['ZTTHS']=merge([Kby(25,100),steps['ZTT']])
507 steps['QQH120Inv']=genS('QQH120Inv_8TeV_cfi',Kby(25,100))
508 steps['TTbar2HS']=merge([Kby(25,100),steps['TTbar']])
509 steps['JpsiMM_Pt_20_inf']=genS('JpsiMM_Pt_20_inf_8TeV_cfi',Kby(70,280))
510 steps['QCD_Pt_120_170']=genS('QCD_Pt_120_170_8TeV_cfi',Kby(25,100))
511 steps['H165WW2L']=genS('H165WW2L_Tauola_8TeV_cfi',Kby(25,100))
512 steps['UpsMM']=genS('UpsMM_8TeV_cfi',Kby(56250,225))
513 steps['RSGrav']=genS('RS750_quarks_and_leptons_8TeV_cff',Kby(25,100))
514 steps['QCD_Pt_80_120_2HS']=merge([Kby(25,100),steps['QCD_Pt_80_120']])
515 steps['bJpsiX']=genS('bJpsiX_8TeV_cfi',Mby(325,1300000))
516 steps['QCD_Pt_30_50']=genS('QCD_Pt_30_50_8TeV_cfi',Kby(25,100))
517 steps['H200ZZ4L']=genS('H200ZZ4L_Tauola_8TeV_cfi',Kby(25,100))
518 steps['LM9p']=genS('LM9p_8TeV_cff',Kby(25,100))
519 steps['QCD_Pt_20_30']=genS('QCD_Pt_20_30_8TeV_cfi',Kby(25,100))
520 steps['QCD_Pt_170_230']=genS('QCD_Pt_170_230_8TeV_cfi',Kby(25,100))
521 
522 
523 ## upgrade dedicated wf
524 ## extendedPhase1
525 step1UpepiDefaults = {'-s' : 'GEN,SIM',
526  '-n' : 10,
527  '--conditions' : 'DESIGN61_V10::All', #should be updated with autocond
528  '--beamspot' : 'Gauss',
529  '--datatier' : 'GEN-SIM',
530  '--eventcontent': 'FEVTDEBUG',
531  '--geometry' : 'ExtendedPhaseIPixel',
532  '--customise' : 'SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise'
533  }
534 def genepi(fragment,howMuch):
535  global step1UpepiDefaults
536  return merge([{'cfg':fragment},howMuch,step1UpepiDefaults])
537 
538 steps['FourMuPt1_200_UPGPhase1']=genepi('FourMuPt_1_200_cfi',Kby(10,100))
539 steps['SingleElectronPt10_UPGPhase1']=genepi('SingleElectronPt10_cfi',Kby(9,3000))
540 steps['SingleElectronPt35_UPGPhase1']=genepi('SingleElectronPt35_cfi',Kby(9,500))
541 steps['SingleElectronPt1000_UPGPhase1']=genepi('SingleElectronPt1000_cfi',Kby(9,50))
542 steps['SingleGammaPt10_UPGPhase1']=genepi('SingleGammaPt10_cfi',Kby(9,3000))
543 steps['SingleGammaPt35_UPGPhase1']=genepi('SingleGammaPt35_cfi',Kby(9,500))
544 steps['SingleMuPt1_UPGPhase1']=genepi('SingleMuPt1_cfi',Kby(25,1000))
545 steps['SingleMuPt10_UPGPhase1']=genepi('SingleMuPt10_cfi',Kby(25,500))
546 steps['SingleMuPt100_UPGPhase1']=genepi('SingleMuPt100_cfi',Kby(9,500))
547 steps['SingleMuPt1000_UPGPhase1']=genepi('SingleMuPt1000_cfi',Kby(9,500))
548 
549 steps['TTbarLepton_UPGPhase1_8']=genepi('TTbarLepton_Tauola_8TeV_cfi',Kby(9,100))
550 steps['Wjet_Pt_80_120_UPGPhase1_8']=genepi('Wjet_Pt_80_120_8TeV_cfi',Kby(9,100))
551 steps['Wjet_Pt_3000_3500_UPGPhase1_8']=genepi('Wjet_Pt_3000_3500_8TeV_cfi',Kby(9,50))
552 steps['LM1_sfts_UPGPhase1_8']=genepi('LM1_sfts_8TeV_cfi',Kby(9,100))
553 
554 steps['QCD_Pt_3000_3500_UPGPhase1_8']=genepi('QCD_Pt_3000_3500_8TeV_cfi',Kby(9,25))
555 steps['QCD_Pt_600_800_UPGPhase1_8']=genepi('QCD_Pt_600_800_8TeV_cfi',Kby(9,50))
556 steps['QCD_Pt_80_120_UPGPhase1_8']=genepi('QCD_Pt_80_120_8TeV_cfi',Kby(9,100))
557 
558 steps['Higgs200ChargedTaus_UPGPhase1_8']=genepi('H200ChargedTaus_Tauola_8TeV_cfi',Kby(9,100))
559 steps['JpsiMM_UPGPhase1_8']=genepi('JpsiMM_8TeV_cfi',Kby(66,1000))
560 steps['TTbar_UPGPhase1_8']=genepi('TTbar_Tauola_8TeV_cfi',Kby(9,100))
561 steps['WE_UPGPhase1_8']=genepi('WE_8TeV_cfi',Kby(9,100))
562 steps['ZEE_UPGPhase1_8']=genepi('ZEE_8TeV_cfi',Kby(9,100))
563 steps['ZTT_UPGPhase1_8']=genepi('ZTT_Tauola_All_hadronic_8TeV_cfi',Kby(9,150))
564 steps['H130GGgluonfusion_UPGPhase1_8']=genepi('H130GGgluonfusion_8TeV_cfi',Kby(9,100))
565 steps['PhotonJets_Pt_10_UPGPhase1_8']=genepi('PhotonJet_Pt_10_8TeV_cfi',Kby(9,150))
566 steps['QQH1352T_Tauola_UPGPhase1_8']=genepi('QQH1352T_Tauola_8TeV_cfi',Kby(9,100))
567 
568 steps['MinBias_TuneZ2star_UPGPhase1_8']=genepi('MinBias_TuneZ2star_8TeV_pythia6_cff',Kby(9,300))
569 steps['WM_UPGPhase1_8']=genepi('WM_8TeV_cfi',Kby(9,200))
570 steps['ZMM_UPGPhase1_8']=genepi('ZMM_8TeV_cfi',Kby(18,300))
571 
572 steps['ADDMonoJet_d3MD3_UPGPhase1_8']=genepi('ADDMonoJet_8TeV_d3MD3_cfi',Kby(9,100))
573 steps['ZpMM_UPGPhase1_8']=genepi('ZpMM_8TeV_cfi',Kby(9,200))
574 steps['WpM_UPGPhase1_8']=genepi('WpM_8TeV_cfi',Kby(9,200))
575 
576 
577 
578 
579 
580 #14TeV
581 #steps['TTbarLepton_UPGPhase1_14']=genepi('TTbarLepton_Tauola_14TeV_cfi',Kby(9,100))
582 steps['Wjet_Pt_80_120_UPGPhase1_14']=genepi('Wjet_Pt_80_120_14TeV_cfi',Kby(9,100))
583 steps['Wjet_Pt_3000_3500_UPGPhase1_14']=genepi('Wjet_Pt_3000_3500_14TeV_cfi',Kby(9,50))
584 steps['LM1_sfts_UPGPhase1_14']=genepi('LM1_sfts_14TeV_cfi',Kby(9,100))
585 
586 steps['QCD_Pt_3000_3500_UPGPhase1_14']=genepi('QCD_Pt_3000_3500_14TeV_cfi',Kby(9,25))
587 #steps['QCD_Pt_600_800_UPGPhase1_14']=genepi('QCD_Pt_600_800_14TeV_cfi',Kby(9,50))
588 steps['QCD_Pt_80_120_UPGPhase1_14']=genepi('QCD_Pt_80_120_14TeV_cfi',Kby(9,100))
589 
590 steps['Higgs200ChargedTaus_UPGPhase1_14']=genepi('H200ChargedTaus_Tauola_14TeV_cfi',Kby(9,100))
591 steps['JpsiMM_UPGPhase1_14']=genepi('JpsiMM_14TeV_cfi',Kby(66,1000))
592 steps['TTbar_UPGPhase1_14']=genepi('TTbar_Tauola_14TeV_cfi',Kby(9,100))
593 steps['WE_UPGPhase1_14']=genepi('WE_14TeV_cfi',Kby(9,100))
594 steps['ZEE_UPGPhase1_14']=genepi('ZEE_14TeV_cfi',Kby(9,100))
595 steps['ZTT_UPGPhase1_14']=genepi('ZTT_Tauola_All_hadronic_14TeV_cfi',Kby(9,150))
596 steps['H130GGgluonfusion_UPGPhase1_14']=genepi('H130GGgluonfusion_14TeV_cfi',Kby(9,100))
597 steps['PhotonJets_Pt_10_UPGPhase1_14']=genepi('PhotonJet_Pt_10_14TeV_cfi',Kby(9,150))
598 steps['QQH1352T_Tauola_UPGPhase1_14']=genepi('QQH1352T_Tauola_14TeV_cfi',Kby(9,100))
599 
600 steps['MinBias_TuneZ2star_UPGPhase1_14']=genepi('MinBias_TuneZ2star_14TeV_pythia6_cff',Kby(9,300))
601 steps['WM_UPGPhase1_14']=genepi('WM_14TeV_cfi',Kby(9,200))
602 steps['ZMM_UPGPhase1_14']=genepi('ZMM_14TeV_cfi',Kby(18,300))
603 
604 #steps['ADDMonoJet_d3MD3_UPGPhase1_14']=genepi('ADDMonoJet_14TeV_d3MD3_cfi',Kby(9,100))
605 #steps['ZpMM_UPGPhase1_14']=genepi('ZpMM_14TeV_cfi',Kby(9,200))
606 #steps['WpM_UPGPhase1_14']=genepi('WpM_14TeV_cfi',Kby(9,200))
607 
608 
609 ## 2015
610 steps['FourMuPt1_200_UPG2015']=gen2015('FourMuPt_1_200_cfi',Kby(10,100))
611 steps['SingleElectronPt10_UPG2015']=gen2015('SingleElectronPt10_cfi',Kby(9,3000))
612 steps['SingleElectronPt35_UPG2015']=gen2015('SingleElectronPt35_cfi',Kby(9,500))
613 steps['SingleElectronPt1000_UPG2015']=gen2015('SingleElectronPt1000_cfi',Kby(9,50))
614 steps['SingleGammaPt10_UPG2015']=gen2015('SingleGammaPt10_cfi',Kby(9,3000))
615 steps['SingleGammaPt35_UPG2015']=gen2015('SingleGammaPt35_cfi',Kby(9,500))
616 steps['SingleMuPt1_UPG2015']=gen2015('SingleMuPt1_cfi',Kby(25,1000))
617 steps['SingleMuPt10_UPG2015']=gen2015('SingleMuPt10_cfi',Kby(25,500))
618 steps['SingleMuPt100_UPG2015']=gen2015('SingleMuPt100_cfi',Kby(9,500))
619 steps['SingleMuPt1000_UPG2015']=gen2015('SingleMuPt1000_cfi',Kby(9,500))
620 
621 steps['TTbarLepton_UPG2015_8']=gen2015('TTbarLepton_Tauola_8TeV_cfi',Kby(9,100))
622 steps['Wjet_Pt_80_120_UPG2015_8']=gen2015('Wjet_Pt_80_120_8TeV_cfi',Kby(9,100))
623 steps['Wjet_Pt_3000_3500_UPG2015_8']=gen2015('Wjet_Pt_3000_3500_8TeV_cfi',Kby(9,50))
624 steps['LM1_sfts_UPG2015_8']=gen2015('LM1_sfts_8TeV_cfi',Kby(9,100))
625 
626 steps['QCD_Pt_3000_3500_UPG2015_8']=gen2015('QCD_Pt_3000_3500_8TeV_cfi',Kby(9,25))
627 steps['QCD_Pt_600_800_UPG2015_8']=gen2015('QCD_Pt_600_800_8TeV_cfi',Kby(9,50))
628 steps['QCD_Pt_80_120_UPG2015_8']=gen2015('QCD_Pt_80_120_8TeV_cfi',Kby(9,100))
629 
630 steps['Higgs200ChargedTaus_UPG2015_8']=gen2015('H200ChargedTaus_Tauola_8TeV_cfi',Kby(9,100))
631 steps['JpsiMM_UPG2015_8']=gen2015('JpsiMM_8TeV_cfi',Kby(66,1000))
632 steps['TTbar_UPG2015_8']=gen2015('TTbar_Tauola_8TeV_cfi',Kby(9,100))
633 steps['WE_UPG2015_8']=gen2015('WE_8TeV_cfi',Kby(9,100))
634 steps['ZEE_UPG2015_8']=gen2015('ZEE_8TeV_cfi',Kby(9,100))
635 steps['ZTT_UPG2015_8']=gen2015('ZTT_Tauola_All_hadronic_8TeV_cfi',Kby(9,150))
636 steps['H130GGgluonfusion_UPG2015_8']=gen2015('H130GGgluonfusion_8TeV_cfi',Kby(9,100))
637 steps['PhotonJets_Pt_10_UPG2015_8']=gen2015('PhotonJet_Pt_10_8TeV_cfi',Kby(9,150))
638 steps['QQH1352T_Tauola_UPG2015_8']=gen2015('QQH1352T_Tauola_8TeV_cfi',Kby(9,100))
639 
640 steps['MinBias_TuneZ2star_UPG2015_8']=gen2015('MinBias_TuneZ2star_8TeV_pythia6_cff',Kby(9,300))
641 steps['WM_UPG2015_8']=gen2015('WM_8TeV_cfi',Kby(9,200))
642 steps['ZMM_UPG2015_8']=gen2015('ZMM_8TeV_cfi',Kby(18,300))
643 
644 steps['ADDMonoJet_d3MD3_UPG2015_8']=gen2015('ADDMonoJet_8TeV_d3MD3_cfi',Kby(9,100))
645 steps['ZpMM_UPG2015_8']=gen2015('ZpMM_8TeV_cfi',Kby(9,200))
646 steps['WpM_UPG2015_8']=gen2015('WpM_8TeV_cfi',Kby(9,200))
647 
648 
649 
650 #14TeV
651 #steps['TTbarLepton_UPG2015_14']=gen2015('TTbarLepton_Tauola_14TeV_cfi',Kby(9,100))
652 steps['Wjet_Pt_80_120_UPG2015_14']=gen2015('Wjet_Pt_80_120_14TeV_cfi',Kby(9,100))
653 steps['Wjet_Pt_3000_3500_UPG2015_14']=gen2015('Wjet_Pt_3000_3500_14TeV_cfi',Kby(9,50))
654 steps['LM1_sfts_UPG2015_14']=gen2015('LM1_sfts_14TeV_cfi',Kby(9,100))
655 
656 steps['QCD_Pt_3000_3500_UPG2015_14']=gen2015('QCD_Pt_3000_3500_14TeV_cfi',Kby(9,25))
657 #steps['QCD_Pt_600_800_UPG2015_14']=gen2015('QCD_Pt_600_800_14TeV_cfi',Kby(9,50))
658 steps['QCD_Pt_80_120_UPG2015_14']=gen2015('QCD_Pt_80_120_14TeV_cfi',Kby(9,100))
659 
660 steps['Higgs200ChargedTaus_UPG2015_14']=gen2015('H200ChargedTaus_Tauola_14TeV_cfi',Kby(9,100))
661 steps['JpsiMM_UPG2015_14']=gen2015('JpsiMM_14TeV_cfi',Kby(66,1000))
662 steps['TTbar_UPG2015_14']=gen2015('TTbar_Tauola_14TeV_cfi',Kby(9,100))
663 steps['WE_UPG2015_14']=gen2015('WE_14TeV_cfi',Kby(9,100))
664 steps['ZEE_UPG2015_14']=gen2015('ZEE_14TeV_cfi',Kby(9,100))
665 steps['ZTT_UPG2015_14']=gen2015('ZTT_Tauola_All_hadronic_14TeV_cfi',Kby(9,150))
666 steps['H130GGgluonfusion_UPG2015_14']=gen2015('H130GGgluonfusion_14TeV_cfi',Kby(9,100))
667 steps['PhotonJets_Pt_10_UPG2015_14']=gen2015('PhotonJet_Pt_10_14TeV_cfi',Kby(9,150))
668 steps['QQH1352T_Tauola_UPG2015_14']=gen2015('QQH1352T_Tauola_14TeV_cfi',Kby(9,100))
669 
670 steps['MinBias_TuneZ2star_UPG2015_14']=gen2015('MinBias_TuneZ2star_14TeV_pythia6_cff',Kby(9,300))
671 steps['WM_UPG2015_14']=gen2015('WM_14TeV_cfi',Kby(9,200))
672 steps['ZMM_UPG2015_14']=gen2015('ZMM_14TeV_cfi',Kby(18,300))
673 
674 #steps['ADDMonoJet_d3MD3_UPG2015_14']=gen2015('ADDMonoJet_14TeV_d3MD3_cfi',Kby(9,100))
675 #steps['ZpMM_UPG2015_14']=gen2015('ZpMM_14TeV_cfi',Kby(9,200))
676 #steps['WpM_UPG2015_14']=gen2015('WpM_14TeV_cfi',Kby(9,200))
677 
678 
679 
680 step1Up2017Defaults = {'-s' : 'GEN,SIM',
681  '-n' : 10,
682  '--conditions' : 'auto:upgradePLS1',
683  '--beamspot' : 'Gauss',
684  '--datatier' : 'GEN-SIM',
685  '--eventcontent': 'FEVTDEBUG',
686  '--geometry' : 'Extended2017',
687  '--customise' : 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1,SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise'
688  }
689 def gen2017(fragment,howMuch):
690  global step1Up2017Defaults
691  return merge([{'cfg':fragment},howMuch,step1Up2017Defaults])
692 
693 steps['FourMuPt1_200_UPG2017']=gen2017('FourMuPt_1_200_cfi',Kby(10,100))
694 steps['SingleElectronPt10_UPG2017']=gen2017('SingleElectronPt10_cfi',Kby(9,3000))
695 steps['SingleElectronPt35_UPG2017']=gen2017('SingleElectronPt35_cfi',Kby(9,500))
696 steps['SingleElectronPt1000_UPG2017']=gen2017('SingleElectronPt1000_cfi',Kby(9,50))
697 steps['SingleGammaPt10_UPG2017']=gen2017('SingleGammaPt10_cfi',Kby(9,3000))
698 steps['SingleGammaPt35_UPG2017']=gen2017('SingleGammaPt35_cfi',Kby(9,500))
699 steps['SingleMuPt1_UPG2017']=gen2017('SingleMuPt1_cfi',Kby(25,1000))
700 steps['SingleMuPt10_UPG2017']=gen2017('SingleMuPt10_cfi',Kby(25,500))
701 steps['SingleMuPt100_UPG2017']=gen2017('SingleMuPt100_cfi',Kby(9,500))
702 steps['SingleMuPt1000_UPG2017']=gen2017('SingleMuPt1000_cfi',Kby(9,500))
703 
704 steps['TTbarLepton_UPG2017_8']=gen2017('TTbarLepton_Tauola_8TeV_cfi',Kby(9,100))
705 steps['Wjet_Pt_80_120_UPG2017_8']=gen2017('Wjet_Pt_80_120_8TeV_cfi',Kby(9,100))
706 steps['Wjet_Pt_3000_3500_UPG2017_8']=gen2017('Wjet_Pt_3000_3500_8TeV_cfi',Kby(9,50))
707 steps['LM1_sfts_UPG2017_8']=gen2017('LM1_sfts_8TeV_cfi',Kby(9,100))
708 
709 steps['QCD_Pt_3000_3500_UPG2017_8']=gen2017('QCD_Pt_3000_3500_8TeV_cfi',Kby(9,25))
710 steps['QCD_Pt_600_800_UPG2017_8']=gen2017('QCD_Pt_600_800_8TeV_cfi',Kby(9,50))
711 steps['QCD_Pt_80_120_UPG2017_8']=gen2017('QCD_Pt_80_120_8TeV_cfi',Kby(9,100))
712 
713 steps['Higgs200ChargedTaus_UPG2017_8']=gen2017('H200ChargedTaus_Tauola_8TeV_cfi',Kby(9,100))
714 steps['JpsiMM_UPG2017_8']=gen2017('JpsiMM_8TeV_cfi',Kby(66,1000))
715 steps['TTbar_UPG2017_8']=gen2017('TTbar_Tauola_8TeV_cfi',Kby(9,100))
716 steps['WE_UPG2017_8']=gen2017('WE_8TeV_cfi',Kby(9,100))
717 steps['ZEE_UPG2017_8']=gen2017('ZEE_8TeV_cfi',Kby(9,100))
718 steps['ZTT_UPG2017_8']=gen2017('ZTT_Tauola_All_hadronic_8TeV_cfi',Kby(9,150))
719 steps['H130GGgluonfusion_UPG2017_8']=gen2017('H130GGgluonfusion_8TeV_cfi',Kby(9,100))
720 steps['PhotonJets_Pt_10_UPG2017_8']=gen2017('PhotonJet_Pt_10_8TeV_cfi',Kby(9,150))
721 steps['QQH1352T_Tauola_UPG2017_8']=gen2017('QQH1352T_Tauola_8TeV_cfi',Kby(9,100))
722 
723 steps['MinBias_TuneZ2star_UPG2017_8']=gen2017('MinBias_TuneZ2star_8TeV_pythia6_cff',Kby(9,300))
724 steps['WM_UPG2017_8']=gen2017('WM_8TeV_cfi',Kby(9,200))
725 steps['ZMM_UPG2017_8']=gen2017('ZMM_8TeV_cfi',Kby(18,300))
726 
727 steps['ADDMonoJet_d3MD3_UPG2017_8']=gen2017('ADDMonoJet_8TeV_d3MD3_cfi',Kby(9,100))
728 steps['ZpMM_UPG2017_8']=gen2017('ZpMM_8TeV_cfi',Kby(9,200))
729 steps['WpM_UPG2017_8']=gen2017('WpM_8TeV_cfi',Kby(9,200))
730 
731 
732 
733 #14TeV
734 #steps['TTbarLepton_UPG2017_14']=gen2017('TTbarLepton_Tauola_14TeV_cfi',Kby(9,100))
735 steps['Wjet_Pt_80_120_UPG2017_14']=gen2017('Wjet_Pt_80_120_14TeV_cfi',Kby(9,100))
736 steps['Wjet_Pt_3000_3500_UPG2017_14']=gen2017('Wjet_Pt_3000_3500_14TeV_cfi',Kby(9,50))
737 steps['LM1_sfts_UPG2017_14']=gen2017('LM1_sfts_14TeV_cfi',Kby(9,100))
738 
739 steps['QCD_Pt_3000_3500_UPG2017_14']=gen2017('QCD_Pt_3000_3500_14TeV_cfi',Kby(9,25))
740 #steps['QCD_Pt_600_800_UPG2017_14']=gen2017('QCD_Pt_600_800_14TeV_cfi',Kby(9,50))
741 steps['QCD_Pt_80_120_UPG2017_14']=gen2017('QCD_Pt_80_120_14TeV_cfi',Kby(9,100))
742 
743 steps['Higgs200ChargedTaus_UPG2017_14']=gen2017('H200ChargedTaus_Tauola_14TeV_cfi',Kby(9,100))
744 steps['JpsiMM_UPG2017_14']=gen2017('JpsiMM_14TeV_cfi',Kby(66,1000))
745 steps['TTbar_UPG2017_14']=gen2017('TTbar_Tauola_14TeV_cfi',Kby(9,100))
746 steps['WE_UPG2017_14']=gen2017('WE_14TeV_cfi',Kby(9,100))
747 steps['ZEE_UPG2017_14']=gen2017('ZEE_14TeV_cfi',Kby(9,100))
748 steps['ZTT_UPG2017_14']=gen2017('ZTT_Tauola_All_hadronic_14TeV_cfi',Kby(9,150))
749 steps['H130GGgluonfusion_UPG2017_14']=gen2017('H130GGgluonfusion_14TeV_cfi',Kby(9,100))
750 steps['PhotonJets_Pt_10_UPG2017_14']=gen2017('PhotonJet_Pt_10_14TeV_cfi',Kby(9,150))
751 steps['QQH1352T_Tauola_UPG2017_14']=gen2017('QQH1352T_Tauola_14TeV_cfi',Kby(9,100))
752 
753 steps['MinBias_TuneZ2star_UPG2017_14']=gen2017('MinBias_TuneZ2star_14TeV_pythia6_cff',Kby(9,300))
754 steps['WM_UPG2017_14']=gen2017('WM_14TeV_cfi',Kby(9,200))
755 steps['ZMM_UPG2017_14']=gen2017('ZMM_14TeV_cfi',Kby(18,300))
756 
757 #steps['ADDMonoJet_d3MD3_UPG2017_14']=gen2017('ADDMonoJet_14TeV_d3MD3_cfi',Kby(9,100))
758 #steps['ZpMM_UPG2017_14']=gen2017('ZpMM_14TeV_cfi',Kby(9,200))
759 #steps['WpM_UPG2017_14']=gen2017('WpM_14TeV_cfi',Kby(9,200))
760 
761 
762 
763 ## pPb tests
764 step1PPbDefaults={'--beamspot':'Realistic8TeVCollisionPPbBoost'}
765 steps['AMPT_PPb_5020GeV_MinimumBias']=merge([{'-n':10},step1PPbDefaults,genS('AMPT_PPb_5020GeV_MinimumBias_cfi',Kby(9,100))])
766 steps['AMPT_PPb_5020GeV_MinimumBiasINPUT']={'INPUT':InputInfo(dataSet='/RelValAMPT_PPb_5020GeV_MinimumBias/%s/GEN-SIM'%(baseDataSetRelease[5],),location='STD')}
767 
768 ## heavy ions tests
769 U500by1={'--relval': '500,1'}
770 U80by1={'--relval': '80,1'}
771 
772 hiDefaults={'--conditions':'auto:starthi_HIon',
773  '--scenario':'HeavyIons'}
774 
775 steps['HydjetQ_MinBias_2760GeV']=merge([{'-n':1},hiDefaults,genS('Hydjet_Quenched_MinBias_2760GeV_cfi',U500by1)])
776 steps['HydjetQ_MinBias_2760GeVINPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_MinBias_2760GeV/%s/GEN-SIM'%(baseDataSetRelease[1],),location='STD',split=5)}
777 steps['HydjetQ_MinBias_2760GeV_UP15']=merge([{'-n':1},hiDefaults,genS('Hydjet_Quenched_MinBias_2760GeV_cfi',U500by1)])
778 steps['HydjetQ_MinBias_2760GeV_UP15INPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_MinBias_2760GeV/%s/GEN-SIM'%(baseDataSetRelease[1],),location='STD',split=5)}
779 steps['HydjetQ_B0_2760GeV']=merge([{'-n':1},hiDefaults,genS('Hydjet_Quenched_B0_2760GeV_cfi',U80by1)])
780 steps['HydjetQ_B0_2760GeVINPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B0_2760GeV/%s/GEN-SIM'%(baseDataSetRelease[4],),location='STD')}
781 steps['HydjetQ_B3_2760GeV']=merge([{'-n':1},hiDefaults,genS('Hydjet_Quenched_B3_2760GeV_cfi',U80by1)])
782 steps['HydjetQ_B3_2760GeVINPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B3_2760GeV/%s/GEN-SIM'%(baseDataSetRelease[3],),location='STD')}
783 #steps['HydjetQ_B5_2760GeV']=merge([{'-n':1},hiDefaults,genS('Hydjet_Quenched_B5_2760GeV_cfi',U80by1)])
784 #steps['HydjetQ_B5_2760GeVINPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B5_2760GeV/%s/GEN-SIM'%(baseDataSetRelease[],),location='STD')}
785 steps['HydjetQ_B8_2760GeV']=merge([{'-n':1},hiDefaults,genS('Hydjet_Quenched_B8_2760GeV_cfi',U80by1)])
786 steps['HydjetQ_B8_2760GeVINPUT']={'INPUT':InputInfo(dataSet='/RelValHydjetQ_B8_2760GeV/%s/GEN-SIM'%(baseDataSetRelease[1],),location='CAF')}
787 
788 
789 
790 def changeRefRelease(steps,listOfPairs):
791  for s in steps:
792  if ('INPUT' in steps[s]):
793  oldD=steps[s]['INPUT'].dataSet
794  for (ref,newRef) in listOfPairs:
795  if ref in oldD:
796  steps[s]['INPUT'].dataSet=oldD.replace(ref,newRef)
797  if '--pileup_input' in steps[s]:
798  for (ref,newRef) in listOfPairs:
799  if ref in steps[s]['--pileup_input']:
800  steps[s]['--pileup_input']=steps[s]['--pileup_input'].replace(ref,newRef)
801 
802 def addForAll(steps,d):
803  for s in steps:
804  steps[s].update(d)
805 
806 
807 
808 #### fastsim section ####
809 ##no forseen to do things in two steps GEN-SIM then FASTIM->end: maybe later
810 step1FastDefaults =merge([{'-s':'GEN,SIM,RECO,EI,HLT:@relval,VALIDATION',
811  '--fast':'',
812  '--eventcontent':'FEVTDEBUGHLT,DQM',
813  '--datatier':'GEN-SIM-DIGI-RECO,DQMROOT',
814  '--relval':'27000,3000'},
815  step1Defaults])
816 step1FastUpg2015Defaults =merge([{'-s':'GEN,SIM,RECO,EI,HLT:@relval,VALIDATION',
817  '--fast':'',
818  '--conditions' :'auto:upgradePLS1', # this is the 25ns GT
819  '--magField' :'38T_PostLS1',
820  '--customise' :'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1',
821  '--geometry' :'Extended2015',
822  '--eventcontent':'FEVTDEBUGHLT,DQM',
823  '--datatier':'GEN-SIM-DIGI-RECO,DQMROOT',
824  '--relval':'27000,3000'},
825  step1Defaults])
826 
827 steps['TTbarFS']=merge([{'cfg':'TTbar_Tauola_8TeV_cfi'},Kby(100,1000),step1FastDefaults])
828 steps['TTbarFS_13']=merge([{'cfg':'TTbar_Tauola_13TeV_cfi'},Kby(100,1000),step1FastUpg2015Defaults])
829 steps['SingleMuPt1FS']=merge([{'cfg':'SingleMuPt1_cfi'},step1FastDefaults])
830 steps['SingleMuPt10FS']=merge([{'cfg':'SingleMuPt10_cfi'},step1FastDefaults])
831 steps['SingleMuPt100FS']=merge([{'cfg':'SingleMuPt100_cfi'},step1FastDefaults])
832 steps['SinglePiPt1FS']=merge([{'cfg':'SinglePiPt1_cfi'},step1FastDefaults])
833 steps['SinglePiPt10FS']=merge([{'cfg':'SinglePiPt10_cfi'},step1FastDefaults])
834 steps['SinglePiPt100FS']=merge([{'cfg':'SinglePiPt100_cfi'},step1FastDefaults])
835 steps['ZEEFS']=merge([{'cfg':'ZEE_8TeV_cfi'},Kby(100,2000),step1FastDefaults])
836 steps['ZTTFS']=merge([{'cfg':'ZTT_Tauola_OneLepton_OtherHadrons_8TeV_cfi'},Kby(100,2000),step1FastDefaults])
837 steps['QCDFlatPt153000FS']=merge([{'cfg':'QCDForPF_8TeV_cfi'},Kby(27,2000),step1FastDefaults])
838 steps['QCD_Pt_80_120FS']=merge([{'cfg':'QCD_Pt_80_120_8TeV_cfi'},Kby(100,500),stCond,step1FastDefaults])
839 steps['QCD_Pt_3000_3500FS']=merge([{'cfg':'QCD_Pt_3000_3500_8TeV_cfi'},Kby(100,500),stCond,step1FastDefaults])
840 steps['H130GGgluonfusionFS']=merge([{'cfg':'H130GGgluonfusion_8TeV_cfi'},step1FastDefaults])
841 steps['SingleGammaFlatPt10To10FS']=merge([{'cfg':'SingleGammaFlatPt10To100_cfi'},Kby(100,500),step1FastDefaults])
842 steps['ZEEFS_13']=merge([{'cfg':'ZEE_13TeV_cfi'},Kby(100,2000),step1FastUpg2015Defaults])
843 steps['ZTTFS_13']=merge([{'cfg':'ZTT_Tauola_OneLepton_OtherHadrons_13TeV_cfi'},Kby(100,2000),step1FastUpg2015Defaults])
844 steps['QCDFlatPt153000FS_13']=merge([{'cfg':'QCDForPF_13TeV_cfi'},Kby(27,2000),step1FastUpg2015Defaults])
845 steps['QCD_Pt_80_120FS_13']=merge([{'cfg':'QCD_Pt_80_120_13TeV_cfi'},Kby(100,500),step1FastUpg2015Defaults])
846 steps['QCD_Pt_3000_3500FS_13']=merge([{'cfg':'QCD_Pt_3000_3500_13TeV_cfi'},Kby(100,500),step1FastUpg2015Defaults])
847 steps['H130GGgluonfusionFS_13']=merge([{'cfg':'H130GGgluonfusion_13TeV_cfi'},step1FastUpg2015Defaults])
848 
849 steps['TTbarSFS']=merge([{'cfg':'TTbar_Tauola_8TeV_cfi'},
850  {'-s':'GEN,SIM',
851  '--eventcontent':'FEVTDEBUG',
852  '--datatier':'GEN-SIM',
853  '--fast':''},
854  step1Defaults])
855 steps['TTbarSFSA']=merge([{'cfg':'TTbar_Tauola_8TeV_cfi',
856  '-s':'GEN,SIM,RECO,EI,HLT,VALIDATION',
857  '--fast':''},
858  step1FastDefaults])
859 
860 def identityFS(wf):
861  return merge([{'--restoreRND':'HLT','--process':'HLT2','--hltProcess':'HLT2'},wf])
862 
863 steps['SingleMuPt10FS_ID']=identityFS(steps['SingleMuPt10FS'])
864 steps['TTbarFS_ID']=identityFS(steps['TTbarFS'])
865 
866 #### generator test section ####
867 step1GenDefaults=merge([{'-s':'GEN,VALIDATION:genvalid',
868  '--relval':'1000000,20000',
869  '--eventcontent':'RAWSIM',
870  '--datatier':'GEN'},
871  step1Defaults])
872 def genvalid(fragment,d,suffix='all',fi=''):
873  import copy
874  c=copy.copy(d)
875  if suffix:
876  c['-s']=c['-s'].replace('genvalid','genvalid_'+suffix)
877  if fi:
878  c['--filein']='lhe:%d'%(fi,)
879  c['cfg']=fragment
880  return c
881 
882 steps['QCD_Pt-30_8TeV_herwigpp']=genvalid('QCD_Pt_30_8TeV_herwigpp_cff',step1GenDefaults)
883 steps['DYToLL_M-50_TuneZ2star_8TeV_pythia6-tauola']=genvalid('DYToLL_M_50_TuneZ2star_8TeV_pythia6_tauola_cff',step1GenDefaults)
884 steps['QCD_Pt-30_TuneZ2star_8TeV_pythia6']=genvalid('QCD_Pt_30_TuneZ2star_8TeV_pythia6_cff',step1GenDefaults)
885 steps['QCD_Pt-30_8TeV_pythia8']=genvalid('QCD_Pt_30_8TeV_pythia8_cff',step1GenDefaults)
886 steps['GluGluTo2Jets_M-100_8TeV_exhume']=genvalid('GluGluTo2Jets_M_100_8TeV_exhume_cff',step1GenDefaults)
887 steps['TT_TuneZ2star_8TeV_pythia6-evtgen']=genvalid('TT_TuneZ2star_8TeV_pythia6_evtgen_cff',step1GenDefaults)
888 steps['MinBias_TuneZ2star_8TeV_pythia6']=genvalid('MinBias_TuneZ2star_8TeV_pythia6_cff',step1GenDefaults)
889 steps['WToLNu_TuneZ2star_8TeV_pythia6-tauola']=genvalid('WToLNu_TuneZ2star_8TeV_pythia6_tauola_cff',step1GenDefaults)
890 steps['QCD_Pt-30_8TeV_herwig6']=genvalid('QCD_Pt_30_8TeV_herwig6_cff',step1GenDefaults)
891 steps['MinBias_8TeV_pythia8']=genvalid('MinBias_8TeV_pythia8_cff',step1GenDefaults)
892 
893 
894 steps['QCD_Ht-100To250_TuneZ2star_8TeV_madgraph-tauola']=genvalid('Hadronizer_MgmMatchTuneZ2star_8TeV_madgraph_tauola_cff',step1GenDefaults,fi=5475)
895 steps['QCD_Ht-250To500_TuneZ2star_8TeV_madgraph-tauola']=genvalid('Hadronizer_MgmMatchTuneZ2star_8TeV_madgraph_tauola_cff',step1GenDefaults,fi=5476)
896 steps['QCD_Ht-500To1000_TuneZ2star_8TeV_madgraph-tauola']=genvalid('Hadronizer_MgmMatchTuneZ2star_8TeV_madgraph_tauola_cff',step1GenDefaults,fi=5481)
897 steps['TTJets_TuneZ2star_8TeV_madgraph-tauola']=genvalid('Hadronizer_MgmMatchTuneZ2star_8TeV_madgraph_tauola_cff',step1GenDefaults,fi=5502)
898 steps['WJetsLNu_TuneZ2star_8TeV_madgraph-tauola']=genvalid('Hadronizer_MgmMatchTuneZ2star_8TeV_madgraph_tauola_cff',step1GenDefaults,fi=5607)
899 steps['ZJetsLNu_TuneZ2star_8TeV_madgraph-tauola']=genvalid('Hadronizer_MgmMatchTuneZ2star_8TeV_madgraph_tauola_cff',step1GenDefaults,fi=5591)
900 steps['ZJetsLNu_Tune4C_8TeV_madgraph-pythia8']=genvalid('Hadronizer_MgmMatchTune4C_8TeV_madgraph_pythia8_cff',step1GenDefaults,fi=5591)
901 steps['ReggeGribovPartonMC_EposLHC_5TeV_pPb']=genvalid('GeneratorInterface/ReggeGribovPartonMCInterface/ReggeGribovPartonMC_EposLHC_5TeV_pPb_cfi',step1GenDefaults)
902 
903 PU={'-n':10,'--pileup':'default','--pileup_input':'das:/RelValMinBias/%s/GEN-SIM'%(baseDataSetRelease[0],)}
904 PU25={'-n':10,'--pileup':'AVE_10_BX_25ns_m8','--pileup_input':'das:/RelValMinBias_13/%s/GEN-SIM'%(baseDataSetRelease[7],)}
905 PU50={'-n':10,'--pileup':'AVE_20_BX_50ns_m8','--pileup_input':'das:/RelValMinBias_13/%s/GEN-SIM'%(baseDataSetRelease[7],)}
906 PUFS={'--pileup':'default'}
907 PUFS2={'--pileup':'mix_2012_Startup_inTimeOnly'}
908 steps['TTbarFSPU']=merge([PUFS,Kby(100,500),steps['TTbarFS']] )
909 steps['TTbarFSPU2']=merge([PUFS2,Kby(100,500),steps['TTbarFS']])
910 ##########################
911 
912 
913 
914 # step2
915 step2Defaults = { '-s' : 'DIGI:pdigi_valid,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco',
916  '--datatier' : 'GEN-SIM-DIGI-RAW-HLTDEBUG',
917  '--eventcontent': 'FEVTDEBUGHLT',
918  '--conditions' : 'auto:startup',
919  }
920 #for 2015
921 step2Upg2015Defaults = {'-s' :'DIGI:pdigi_valid,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco',
922  '--conditions' :'auto:upgradePLS1', # this is the 25ns GT
923  '--magField' :'38T_PostLS1',
924  '--datatier' :'GEN-SIM-DIGI-RAW-HLTDEBUG',
925  '--eventcontent':'FEVTDEBUGHLT',
926  '--customise' :'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1',
927  '--geometry' :'Extended2015',
928  '-n' :'10'
929  }
930 step2Upg2015Defaults50ns = merge([{'--conditions':'auto:upgradePLS150ns'},step2Upg2015Defaults])
931 
932 steps['DIGIUP15']=merge([step2Upg2015Defaults])
933 steps['DIGIUP15PROD1']=merge([{'-s':'DIGI,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco','--eventcontent':'RAWSIM','--datatier':'GEN-SIM-RAW'},step2Upg2015Defaults])
934 steps['DIGIUP15_PU25']=merge([PU25,step2Upg2015Defaults])
935 steps['DIGIUP15_PU50']=merge([PU50,step2Upg2015Defaults50ns])
936 
937 steps['DIGIPROD1']=merge([{'-s':'DIGI,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco','--eventcontent':'RAWSIM','--datatier':'GEN-SIM-RAW'},step2Defaults])
938 steps['DIGI']=merge([step2Defaults])
939 #steps['DIGI2']=merge([stCond,step2Defaults])
940 steps['DIGICOS']=merge([{'--scenario':'cosmics','--eventcontent':'FEVTDEBUG','--datatier':'GEN-SIM-DIGI-RAW'},stCond,step2Defaults])
941 steps['DIGIHAL']=merge([{'--scenario':'cosmics','--eventcontent':'FEVTDEBUG','--datatier':'GEN-SIM-DIGI-RAW'},step2Upg2015Defaults])
942 
943 steps['DIGIPU1']=merge([PU,step2Defaults])
944 steps['REDIGIPU']=merge([{'-s':'reGEN,reDIGI,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco'},steps['DIGIPU1']])
945 
946 steps['DIGI_ID']=merge([{'--restoreRND':'HLT','--process':'HLT2'},steps['DIGI']])
947 
948 steps['RESIM']=merge([{'-s':'reGEN,reSIM','-n':10},steps['DIGI']])
949 steps['RESIMDIGI']=merge([{'-s':'reGEN,reSIM,DIGI,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco','-n':10,'--restoreRNDSeeds':'','--process':'HLT'},steps['DIGI']])
950 
951 
952 steps['DIGIHI']=merge([{'--conditions':'auto:starthi_HIon', '-s':'DIGI:pdigi_valid,L1,DIGI2RAW,HLT:HIon,RAW2DIGI,L1Reco', '--inputCommands':'"keep *","drop *_simEcalPreshowerDigis_*_*"', '-n':10}, hiDefaults, step2Defaults])
953 
954 #wmsplit['DIGIHI']=5
955 
956 #for pix phase1
957 step2Upgpixphase1Defaults = {'-s':'DIGI:pdigi_valid,L1,DIGI2RAW',
958  '--conditions':'DESIGN61_V10::All', #to be updtaed with autocond
959  '--datatier':'GEN-SIM-DIGI-RAW',
960  '-n':'10',
961  '--eventcontent':'FEVTDEBUGHLT',
962  '--customise': 'SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise',
963  '--geometry' : 'ExtendedPhaseIPixel'
964  }
965 steps['DIGIUP']=merge([step2Upgpixphase1Defaults])
966 
967 #for 2017
968 step2Upg2017Defaults = {'-s':'DIGI:pdigi_valid,L1,DIGI2RAW',
969  '--conditions':'auto:upgradePLS1',
970  '--datatier':'GEN-SIM-DIGI-RAW',
971  '-n':'10',
972  '--eventcontent':'FEVTDEBUGHLT',
973  '--customise': 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1,SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise',
974  '--geometry' : 'Extended2017'
975  }
976 steps['DIGIUP17']=merge([step2Upg2017Defaults])
977 #add this line when testing from an input file that is not strictly GEN-SIM
978 #addForAll(step2,{'--process':'DIGI'})
979 
980 dataReco={'--conditions':'auto:com10',
981  '-s':'RAW2DIGI,L1Reco,RECO,EI,ALCA:SiStripCalZeroBias+SiStripCalMinBias+TkAlMinBias,DQM',
982  '--datatier':'RECO,DQMROOT',
983  '--eventcontent':'RECO,DQM',
984  '--data':'',
985  '--process':'reRECO',
986  '--scenario':'pp',
987  }
988 
989 hltKey='relval'
990 from Configuration.HLT.autoHLT import autoHLT
991 menu = autoHLT[hltKey]
992 steps['HLTD']=merge([{'--process':'reHLT',
993  '-s':'L1REPACK,HLT:@%s'%hltKey,
994  '--conditions':'auto:hltonline_%s'%menu,
995  '--data':'',
996  '--output':'\'[{"e":"RAW","t":"RAW","o":["drop FEDRawDataCollection_rawDataCollector__LHC"]}]\'',
997  },])
998 #wmsplit['HLTD']=5
999 
1000 steps['RECOD']=merge([{'--scenario':'pp',},dataReco])
1001 steps['RECODSplit']=steps['RECOD'] # finer job splitting
1002 steps['RECOSKIMALCA']=merge([{'--inputCommands':'"keep *","drop *_*_*_RECO"'
1003  },steps['RECOD']])
1004 steps['RECOSKIM']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,EI,DQM',
1005  },steps['RECOSKIMALCA']])
1006 
1007 steps['REPACKHID']=merge([{'--scenario':'HeavyIons',
1008  '-s':'RAW2DIGI,REPACK',
1009  '--datatier':'RAW',
1010  '--eventcontent':'REPACKRAW'},
1011  steps['RECOD']])
1012 steps['RECOHID10']=merge([{'--scenario':'HeavyIons',
1013  '-s':'RAW2DIGI,L1Reco,RECO,ALCA:SiStripCalZeroBias+SiStripCalMinBias+TkAlMinBiasHI+HcalCalMinBias,DQM',
1014  '--datatier':'RECO,DQMROOT',
1015  '--eventcontent':'RECO,DQM'},
1016  steps['RECOD']])
1017 steps['RECOHID11']=merge([{'--repacked':''},
1018  steps['RECOHID10']])
1019 steps['RECOHID10']['-s']+=',REPACK'
1020 steps['RECOHID10']['--datatier']+=',RAW'
1021 steps['RECOHID10']['--eventcontent']+=',REPACKRAW'
1022 
1023 steps['TIER0']=merge([{'--customise':'Configuration/DataProcessing/RecoTLR.customisePrompt',
1024  '-s':'RAW2DIGI,L1Reco,RECO,EI,ALCAPRODUCER:@allForPrompt,DQM,ENDJOB',
1025  '--datatier':'RECO,AOD,ALCARECO,DQMROOT',
1026  '--eventcontent':'RECO,AOD,ALCARECO,DQM',
1027  '--process':'RECO'
1028  },dataReco])
1029 steps['TIER0EXP']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,EI,ALCAPRODUCER:@allForExpress,DQM,ENDJOB',
1030  '--datatier':'ALCARECO,DQMROOT',
1031  '--eventcontent':'ALCARECO,DQM',
1032  '--customise':'Configuration/DataProcessing/RecoTLR.customiseExpress',
1033  },steps['TIER0']])
1034 
1035 steps['RECOCOSD']=merge([{'--scenario':'cosmics',
1036  '-s':'RAW2DIGI,L1Reco,RECO,DQM,ALCA:MuAlCalIsolatedMu+DtCalib',
1037  '--customise':'Configuration/DataProcessing/RecoTLR.customiseCosmicData'
1038  },dataReco])
1039 
1040 step2HImixDefaults=merge([{'-n':'10',
1041  '--himix':'',
1042  '--filein':'file.root',
1043  '--process':'HISIGNAL'
1044  },hiDefaults,step1Defaults])
1045 steps['Pyquen_GammaJet_pt20_2760GeV']=merge([{'cfg':'Pyquen_GammaJet_pt20_2760GeV_cfi'},step2HImixDefaults])
1046 steps['Pyquen_DiJet_pt80to120_2760GeV']=merge([{'cfg':'Pyquen_DiJet_pt80to120_2760GeV_cfi'},step2HImixDefaults])
1047 steps['Pyquen_ZeemumuJets_pt10_2760GeV']=merge([{'cfg':'Pyquen_ZeemumuJets_pt10_2760GeV_cfi'},step2HImixDefaults])
1048 
1049 # step3
1050 step3Defaults = {
1051  '-s' : 'RAW2DIGI,L1Reco,RECO,EI,VALIDATION,DQM',
1052  '--conditions' : 'auto:startup',
1053  '--no_exec' : '',
1054  '--datatier' : 'GEN-SIM-RECO,DQMROOT',
1055  '--eventcontent': 'RECOSIM,DQM'
1056  }
1057 
1058 steps['DIGIPU']=merge([{'--process':'REDIGI'},steps['DIGIPU1']])
1059 
1060 #for 2015
1061 step3Up2015Defaults = {'-s':'RAW2DIGI,L1Reco,RECO,EI,VALIDATION,DQM',
1062  '--conditions':'auto:upgradePLS1',
1063  '--magField' : '38T_PostLS1',
1064  '-n':'10',
1065  '--datatier':'GEN-SIM-RECO,DQMROOT',
1066  '--eventcontent':'RECOSIM,DQM',
1067  '--customise' : 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1',
1068  '--geometry' : 'Extended2015'
1069  }
1070 step3Up2015Defaults50ns = merge([{'--conditions':'auto:upgradePLS150ns'},step3Up2015Defaults])
1071 
1072 step3Up2015Hal = {'-s' :'RAW2DIGI,L1Reco,RECO,EI,VALIDATION,DQM',
1073  '--conditions' :'auto:upgradePLS1',
1074  '--magField' :'38T_PostLS1',
1075  '--datatier' :'GEN-SIM-RECO,DQMROOT',
1076  '--eventcontent':'RECOSIM,DQM',
1077  '-n' :'10',
1078  '--customise' :'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1',
1079  '--geometry' :'Extended2015'
1080  }
1081 
1082 steps['RECOUP15']=merge([step3Up2015Defaults]) # todo: remove UP from label
1083 steps['RECOUP15PROD1']=merge([{ '-s' : 'RAW2DIGI,L1Reco,RECO,EI', '--datatier' : 'GEN-SIM-RECO,AODSIM', '--eventcontent' : 'RECOSIM,AODSIM'},step3Up2015Defaults])
1084 
1085 steps['RECODreHLT']=merge([{'--hltProcess':'reHLT','--conditions':'auto:com10_%s'%menu},steps['RECOD']])
1086 #wmsplit['RECODreHLT']=2
1087 
1088 steps['RECO']=merge([step3Defaults])
1089 steps['RECODBG']=merge([{'--eventcontent':'RECODEBUG,DQM'},steps['RECO']])
1090 steps['RECOPROD1']=merge([{ '-s' : 'RAW2DIGI,L1Reco,RECO,EI', '--datatier' : 'GEN-SIM-RECO,AODSIM', '--eventcontent' : 'RECOSIM,AODSIM'},step3Defaults])
1091 steps['RECOPRODUP15']=merge([{ '-s' : 'RAW2DIGI,L1Reco,RECO,EI', '--datatier' : 'GEN-SIM-RECO,AODSIM', '--eventcontent' : 'RECOSIM,AODSIM'},step3Up2015Defaults])
1092 steps['RECOCOS']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,ALCA:MuAlCalIsolatedMu,DQM','--scenario':'cosmics'},stCond,step3Defaults])
1093 steps['RECOHAL']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,ALCA:MuAlCalIsolatedMu,DQM','--scenario':'cosmics'},step3Up2015Hal])
1094 steps['RECOMIN']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,EI,ALCA:SiStripCalZeroBias+SiStripCalMinBias+EcalCalPhiSym,VALIDATION,DQM'},stCond,step3Defaults])
1095 steps['RECOMINUP15']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,EI,ALCA:SiStripCalZeroBias+SiStripCalMinBias+EcalCalPhiSym,VALIDATION,DQM'},step3Up2015Defaults])
1096 
1097 steps['RECODDQM']=merge([{'-s':'RAW2DIGI,L1Reco,RECO,EI,DQM:@common+@muon+@hcal+@jetmet+@ecal'},steps['RECOD']])
1098 
1099 steps['RECOPU1']=merge([PU,steps['RECO']])
1100 steps['RECOUP15_PU25']=merge([PU25,step3Up2015Defaults])
1101 steps['RECOUP15_PU50']=merge([PU50,step3Up2015Defaults50ns])
1102 #wmsplit['RECOPU1']=1
1103 steps['RECOPUDBG']=merge([{'--eventcontent':'RECODEBUG,DQM'},steps['RECOPU1']])
1104 steps['RERECOPU1']=merge([{'--hltProcess':'REDIGI'},steps['RECOPU1']])
1105 
1106 steps['RECO_ID']=merge([{'--hltProcess':'HLT2'},steps['RECO']])
1107 
1108 steps['RECOHI']=merge([hiDefaults,{'-s':'RAW2DIGI,L1Reco,RECO,VALIDATION,DQM'},step3Defaults])
1109 #wmsplit['RECOHI']=5
1110 
1111 steps['DIGIHISt3']=steps['DIGIHI']
1112 
1113 steps['RECOHID11St3']=merge([{
1114  '--process':'ZStoRECO'},
1115  steps['RECOHID11']])
1116 steps['RECOHIR10D11']=merge([{'--filein':'file:step2_inREPACKRAW.root',
1117  '--filtername':'reRECO'},
1118  steps['RECOHID11St3']])
1119 steps['RECOFS']=merge([{'--fast':'',
1120  '-s':'RECO,EI,HLT:@relval,VALIDATION'},
1121  steps['RECO']])
1122 #for phase1
1123 step3Upgpixphase1Defaults = {'-s':'RAW2DIGI,L1Reco,RECO,EI,VALIDATION,DQM',
1124  '--conditions':'DESIGN61_V10::All', #to be updtaed with autocond
1125  '--datatier':'GEN-SIM-RECO,DQMROOT',
1126  '-n':'10',
1127  '--eventcontent':'FEVTDEBUGHLT,DQM',
1128  '--customise' : 'SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise',
1129  '--geometry' : 'ExtendedPhaseIPixel'
1130  }
1131 
1132 
1133 steps['RECOUP']=merge([step3Upgpixphase1Defaults])
1134 
1135 #for 2017
1136 step3Up2017Defaults = {'-s':'RAW2DIGI,L1Reco,RECO,EI,VALIDATION,DQM',
1137  '--conditions':'auto:upgradePLS1',
1138  '--datatier':'GEN-SIM-RECO,DQMROOT',
1139  '-n':'10',
1140  '--eventcontent':'FEVTDEBUGHLT,DQM',
1141  '--customise' : 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1,SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise',
1142  '--geometry' : 'Extended2017'
1143  }
1144 
1145 steps['RECOUP17']=merge([step3Up2017Defaults])
1146 
1147 #add this line when testing from an input file that is not strictly GEN-SIM
1148 #addForAll(step3,{'--hltProcess':'DIGI'})
1149 
1150 steps['ALCACOSD']={'--conditions':'auto:com10',
1151  '--datatier':'ALCARECO',
1152  '--eventcontent':'ALCARECO',
1153  '--scenario':'cosmics',
1154  '-s':'ALCA:TkAlCosmics0T+MuAlGlobalCosmics+HcalCalHOCosmics+DQM'
1155  }
1156 steps['ALCAPROMPT']={'-s':'ALCA:PromptCalibProd',
1157  '--filein':'file:TkAlMinBias.root',
1158  '--conditions':'auto:com10',
1159  '--datatier':'ALCARECO',
1160  '--eventcontent':'ALCARECO'}
1161 steps['ALCAEXP']={'-s':'ALCA:PromptCalibProd',
1162  '--conditions':'auto:com10',
1163  '--datatier':'ALCARECO',
1164  '--eventcontent':'ALCARECO'}
1165 
1166 # step4
1167 step4Defaults = {
1168  '-s' : 'ALCA:TkAlMuonIsolated+TkAlMinBias+EcalCalElectron+HcalCalIsoTrk+MuAlOverlaps',
1169  '-n' : 1000,
1170  '--conditions' : 'auto:startup',
1171  '--datatier' : 'ALCARECO',
1172  '--eventcontent': 'ALCARECO',
1173  }
1174 step4Up2015Defaults = {
1175  '-s' : 'ALCA:TkAlMuonIsolated+TkAlMinBias+EcalCalElectron+HcalCalIsoTrk+MuAlOverlaps',
1176  '-n' : 1000,
1177  '--conditions' : 'auto:upgradePLS1',
1178  '--datatier' : 'ALCARECO',
1179  '--eventcontent': 'ALCARECO',
1180  }
1181 
1182 steps['RERECOPU']=steps['RERECOPU1']
1183 
1184 steps['ALCATT']=merge([{'--filein':'file:step3.root'},step4Defaults])
1185 steps['ALCAMIN']=merge([{'-s':'ALCA:TkAlMinBias','--filein':'file:step3.root'},stCond,step4Defaults])
1186 steps['ALCACOS']=merge([{'-s':'ALCA:TkAlCosmics0T+MuAlGlobalCosmics+HcalCalHOCosmics'},stCond,step4Defaults])
1187 steps['ALCABH']=merge([{'-s':'ALCA:TkAlBeamHalo+MuAlBeamHaloOverlaps+MuAlBeamHalo'},stCond,step4Defaults])
1188 steps['ALCAHAL']=merge([{'-s':'ALCA:TkAlBeamHalo+MuAlBeamHaloOverlaps+MuAlBeamHalo'},step4Up2015Defaults])
1189 steps['ALCAELE']=merge([{'-s':'ALCA:EcalCalElectron','--filein':'file:step3.root'},stCond,step4Defaults])
1190 
1191 steps['ALCAHARVD']={'-s':'ALCAHARVEST:BeamSpotByRun+BeamSpotByLumi+SiStripQuality',
1192  '--conditions':'auto:com10',
1193  '--scenario':'pp',
1194  '--data':'',
1195  '--filein':'file:PromptCalibProd.root'}
1196 
1197 steps['RECOHISt4']=steps['RECOHI']
1198 
1199 steps['ALCANZS']=merge([{'-s':'ALCA:HcalCalMinBias','--mc':''},step4Defaults])
1200 steps['HARVGEN']={'-s':'HARVESTING:genHarvesting',
1201  '--harvesting':'AtJobEnd',
1202  '--conditions':'auto:startup',
1203  '--mc':'',
1204  '--filein':'file:step1.root'
1205  }
1206 
1207 #data
1208 steps['HARVESTD']={'-s':'HARVESTING:dqmHarvesting',
1209  '--conditions':'auto:com10',
1210  '--data':'',
1211  '--filetype':'DQM',
1212  '--scenario':'pp'}
1213 
1214 steps['HARVESTDreHLT'] = merge([ {'--conditions':'auto:com10_%s'%menu}, steps['HARVESTD'] ])
1215 
1216 steps['HARVESTDDQM']=merge([{'-s':'HARVESTING:@common+@muon+@hcal+@jetmet+@ecal'},steps['HARVESTD']])
1217 
1218 steps['HARVESTDfst2']=merge([{'--filein':'file:step2_inDQM.root'},steps['HARVESTD']])
1219 
1220 steps['HARVESTDC']={'-s':'HARVESTING:dqmHarvesting',
1221  '--conditions':'auto:com10',
1222  '--filetype':'DQM',
1223  '--data':'',
1224  '--filein':'file:step2_inDQM.root',
1225  '--scenario':'cosmics'}
1226 steps['HARVESTDHI']={'-s':'HARVESTING:dqmHarvesting',
1227  '--conditions':'auto:com10',
1228  '--filetype':'DQM',
1229  '--data':'',
1230  '--scenario':'HeavyIons'}
1231 
1232 #MC
1233 steps['HARVEST']={'-s':'HARVESTING:validationHarvesting+dqmHarvesting',
1234  '--conditions':'auto:startup',
1235  '--mc':'',
1236  '--filetype':'DQM',
1237  '--scenario':'pp'}
1238 steps['HARVESTCOS']={'-s':'HARVESTING:dqmHarvesting',
1239  '--conditions':'auto:startup',
1240  '--mc':'',
1241  '--filein':'file:step3_inDQM.root',
1242  '--filetype':'DQM',
1243  '--scenario':'cosmics'}
1244 steps['HARVESTHAL']={'-s' :'HARVESTING:dqmHarvesting',
1245  '--conditions':'auto:upgradePLS1',
1246  '--magField' :'38T_PostLS1',
1247  '--mc' :'',
1248  '--filein' :'file:step3_inDQM.root',
1249  '--scenario' :'cosmics',
1250  '--filein':'file:step3_inDQM.root',
1251  '--filetype':'DQM',
1252  '--customise' : 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1',
1253  }
1254 steps['HARVESTFS']={'-s':'HARVESTING:validationHarvestingFS',
1255  '--conditions':'auto:startup',
1256  '--mc':'',
1257  '--filetype':'DQM',
1258  '--scenario':'pp'}
1259 steps['HARVESTHI']={'-s':'HARVESTING:validationHarvesting+dqmHarvesting',
1260  '--conditions':'auto:starthi_HIon',
1261  '--mc':'',
1262  '--filetype':'DQM',
1263  '--scenario':'HeavyIons'}
1264 
1265 #for phase1
1266 steps['HARVESTUP']={'-s':'HARVESTING:validationHarvesting+dqmHarvesting',
1267  '--conditions':'DESIGN61_V10::All', #to be updtaed with autocond
1268  '--mc':'',
1269  '--customise' : 'SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise',
1270  '--geometry' : 'ExtendedPhaseIPixel',
1271  '--filetype':'DQM'
1272  }
1273 
1274 steps['HARVESTUP15']={'-s':'HARVESTING:validationHarvesting+dqmHarvesting', # todo: remove UP from label
1275  '--conditions':'auto:upgradePLS1',
1276  '--magField' : '38T_PostLS1',
1277  '--mc':'',
1278  '--customise' : 'SLHCUpgradeSimulations/Configuration/postLS1Customs.customisePostLS1',
1279  '--geometry' : 'Extended2015',
1280  '--filetype':'DQM',
1281  }
1282 steps['HARVESTUP15FS']={'-s':'HARVESTING:validationHarvestingFS',
1283  '--conditions':'auto:upgradePLS1',
1284  '--mc':'',
1285  '--filetype':'DQM',
1286  '--scenario':'pp'}
1287 steps['HARVESTUP17']={'-s':'HARVESTING:validationHarvesting+dqmHarvesting',
1288  '--conditions':'auto:upgradePLS1',
1289  '--mc':'',
1290  '--customise' : 'SLHCUpgradeSimulations/Configuration/phase1TkCustoms.customise',
1291  '--filetype':'DQM',
1292  '--geometry' : 'Extended2017'
1293  }
1294 steps['ALCASPLIT']={'-s':'ALCAOUTPUT:@allForPrompt',
1295  '--conditions':'auto:com10',
1296  '--scenario':'pp',
1297  '--data':'',
1298  '--triggerResultsProcess':'RECO',
1299  '--filein':'file:step2_inALCARECO.root'}
1300 
1301 steps['SKIMD']={'-s':'SKIM:all',
1302  '--conditions':'auto:com10',
1303  '--data':'',
1304  '--scenario':'pp',
1305  '--filein':'file:step2.root',
1306  '--secondfilein':'filelist:step1_dasquery.log'}
1307 
1308 steps['SKIMDreHLT'] = merge([ {'--conditions':'auto:com10_%s'%menu,'--filein':'file:step3.root'}, steps['SKIMD'] ])
1309 
1310 steps['SKIMCOSD']={'-s':'SKIM:all',
1311  '--conditions':'auto:com10',
1312  '--data':'',
1313  '--scenario':'cosmics',
1314  '--filein':'file:step2.root',
1315  '--secondfilein':'filelist:step1_dasquery.log'}
1316 
1317 
1318 #### for special wfs ###
1319 #steps['TTbar_REDIGI_RERECO']=merge([{'cfg':'TTbar_Tauola_8TeV_cfi',
1320 # '-s':'GEN,SIM,DIGI,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco,RECO,EI,ALCA:MuAlCalIsolatedMu+DtCalib,VALIDATION,DQM',
1321 # '--datatier':'GEN-SIM-DIGI-RAW-HLTDEBUG-RECO,DQMROOT',
1322 # '--eventcontent':'FEVTDEBUGHLT,DQM'},
1323 # K9by50,stCond,step1Defaults])
1324 #steps['DIGI2RECO']=merge([{'-s':'DIGI,L1,DIGI2RAW,HLT:@relval,RAW2DIGI,L1Reco,RECO,EI,VALIDATION,DQM',
1325 # '--filtername':'DIGItoRECO',
1326 # '--process':'RECO',
1327 # '--eventcontent':'RECOSIM,DQM',
1328 # '--datatier':'GEN-SIM-RECO,DQMROOT',
1329 # },
1330 # stCond,step3Defaults])
1331 steps['RECOFROMRECO']=merge([{'-s':'RECO,EI',
1332  '--filtername':'RECOfromRECO',
1333  '--process':'reRECO',
1334  '--datatier':'AODSIM',
1335  '--eventcontent':'AODSIM',
1336  },
1337  stCond,step3Defaults])
1338 
1339 
1340 steps['RECOFROMRECOSt2']=steps['RECOFROMRECO']
1341 
1342 steps['RECODFROMRAWRECO']=merge([{'-s':'RAW2DIGI:RawToDigi_noTk,L1Reco,RECO:reconstruction_noTracking,EI',
1343  '--filtername':'RECOfromRAWRECO',
1344  '--process':'rereRECO',
1345  '--datatier':'AOD',
1346  '--eventcontent':'AOD',
1347  '--secondfilein':'filelist:step1_dasquery.log',
1348  },
1349  steps['RECOD']])
1350 
1351 
1352 steps['COPYPASTE']={'-s':'NONE',
1353  '--conditions':'auto:startup',
1354  '--output':'\'[{"t":"RAW","e":"ALL"}]\'',
1355  '--customise_commands':'"process.ALLRAWoutput.fastCloning=cms.untracked.bool(False)"'}
Definition: merge.py:1
def changeRefRelease
def identitySim
Production test: 13 TeV equivalents.
const T & max(const T &a, const T &b)
static std::string join(char **cmd)
Definition: RemoteFile.cc:18
list object
Definition: dbtoconf.py:77
#define update(a, b)
How EventSelector::AcceptEvent() decides whether to accept an event for output otherwise it is excluding the probing of A single or multiple positive and the trigger will pass if any such matching triggers are PASS or EXCEPTION[A criterion thatmatches no triggers at all is detected and causes a throw.] A single negative with an expectation of appropriate bit checking in the decision and the trigger will pass if any such matching triggers are FAIL or EXCEPTION A wildcarded negative criterion that matches more than one trigger in the trigger list("!*","!HLTx*"if it matches 2 triggers or more) will accept the event if all the matching triggers are FAIL.It will reject the event if any of the triggers are PASS or EXCEPTION(this matches the behavior of"!*"before the partial wildcard feature was incorporated).Triggers which are in the READY state are completely ignored.(READY should never be returned since the trigger paths have been run