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haddnano.py
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1 #!/bin/env python
2 import ROOT
3 import numpy
4 import sys
5 
6 if len(sys.argv) < 3:
7  print("Syntax: haddnano.py out.root input1.root input2.root ...")
8 ofname = sys.argv[1]
9 files = sys.argv[2:]
10 
11 
12 def zeroFill(tree, brName, brObj, allowNonBool=False):
13  # typename: (numpy type code, root type code)
14  branch_type_dict = {'Bool_t': ('?', 'O'), 'Float_t': ('f4', 'F'), 'UInt_t': (
15  'u4', 'i'), 'Long64_t': ('i8', 'L'), 'Double_t': ('f8', 'D')}
16  brType = brObj.GetLeaf(brName).GetTypeName()
17  if (not allowNonBool) and (brType != "Bool_t"):
18  print(("Did not expect to back fill non-boolean branches", tree, brName, brObj.GetLeaf(br).GetTypeName()))
19  else:
20  if brType not in branch_type_dict:
21  raise RuntimeError('Impossible to backfill branch of type %s' % brType)
22  buff = numpy.zeros(1, dtype=numpy.dtype(branch_type_dict[brType][0]))
23  b = tree.Branch(brName, buff, brName + "/" +
24  branch_type_dict[brType][1])
25  # be sure we do not trigger flushing
26  b.SetBasketSize(tree.GetEntries() * 2)
27  for x in range(0, tree.GetEntries()):
28  b.Fill()
29  b.ResetAddress()
30 
31 
32 fileHandles = []
33 goFast = True
34 for fn in files:
35  print("Adding file" + str(fn))
36  fileHandles.append(ROOT.TFile.Open(fn))
37  if fileHandles[-1].GetCompressionSettings() != fileHandles[0].GetCompressionSettings():
38  goFast = False
39  print("Disabling fast merging as inputs have different compressions")
40 of = ROOT.TFile(ofname, "recreate")
41 if goFast:
42  of.SetCompressionSettings(fileHandles[0].GetCompressionSettings())
43 of.cd()
44 
45 for e in fileHandles[0].GetListOfKeys():
46  name = e.GetName()
47  print("Merging" + str(name))
48  obj = e.ReadObj()
49  cl = ROOT.TClass.GetClass(e.GetClassName())
50  inputs = ROOT.TList()
51  isTree = obj.IsA().InheritsFrom(ROOT.TTree.Class())
52  if isTree:
53  obj = obj.CloneTree(-1, "fast" if goFast else "")
54  branchNames = set([x.GetName() for x in obj.GetListOfBranches()])
55  for fh in fileHandles[1:]:
56  otherObj = fh.GetListOfKeys().FindObject(name).ReadObj()
57  inputs.Add(otherObj)
58  if isTree and obj.GetName() == 'Events':
59  otherObj.SetAutoFlush(0)
60  otherBranches = set([x.GetName()
61  for x in otherObj.GetListOfBranches()])
62  missingBranches = list(branchNames - otherBranches)
63  additionalBranches = list(otherBranches - branchNames)
64  print("missing: " + str(missingBranches) + "\n Additional:" + str(additionalBranches))
65  for br in missingBranches:
66  # fill "Other"
67  zeroFill(otherObj, br, obj.GetListOfBranches().FindObject(br))
68  for br in additionalBranches:
69  # fill main
70  branchNames.add(br)
71  zeroFill(obj, br, otherObj.GetListOfBranches().FindObject(br))
72  # merge immediately for trees
73  if isTree and obj.GetName() == 'Runs':
74  otherObj.SetAutoFlush(0)
75  otherBranches = set([x.GetName()
76  for x in otherObj.GetListOfBranches()])
77  missingBranches = list(branchNames - otherBranches)
78  additionalBranches = list(otherBranches - branchNames)
79  print("missing: " + str(missingBranches) + "\n Additional:" + str(additionalBranches))
80  for br in missingBranches:
81  # fill "Other"
82  zeroFill(otherObj, br, obj.GetListOfBranches(
83  ).FindObject(br), allowNonBool=True)
84  for br in additionalBranches:
85  # fill main
86  branchNames.add(br)
87  zeroFill(obj, br, otherObj.GetListOfBranches(
88  ).FindObject(br), allowNonBool=True)
89  # merge immediately for trees
90  if isTree:
91  obj.Merge(inputs, "fast" if goFast else "")
92  inputs.Clear()
93 
94  if isTree:
95  obj.Write()
96  elif obj.IsA().InheritsFrom(ROOT.TH1.Class()):
97  obj.Merge(inputs)
98  obj.Write()
99  elif obj.IsA().InheritsFrom(ROOT.TObjString.Class()):
100  for st in inputs:
101  if st.GetString() != obj.GetString():
102  print("Strings are not matching")
103  obj.Write()
104  else:
105  print("Cannot handle " + str(obj.IsA().GetName()))
def zeroFill(tree, brName, brObj, allowNonBool=False)
Definition: haddnano.py:12
S & print(S &os, JobReport::InputFile const &f)
Definition: JobReport.cc:66
#define str(s)
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