29{
32
35
37 JRange_t X;
38 JRange_t Y;
39 JRange_t Z;
40 JRange_t C;
41 bool invertX;
42 bool invertY;
43 bool invertZ;
44 bool invertC;
45 int numberOfOutliers;
46 map_type zmap;
48
49 try {
50
51 JParser<> zap(
"Auxiliary program to test contents of 3D histograms.");
52
53 zap[
'f'] =
make_field(inputFile,
"measurement histogram, e.g: <file name>:<object name>");
54 zap[
'x'] =
make_field(X,
"accepted x-range values") = JRange_t();
55 zap[
'y'] =
make_field(Y,
"accepted y-range values") = JRange_t();
56 zap[
'z'] =
make_field(Z,
"accepted z-range values") = JRange_t();
57 zap[
'c'] =
make_field(C,
"accepted codomain values") = JRange_t();
65
66 zap(argc, argv);
67 }
68 catch(const exception &error) {
69 FATAL(error.what() << endl);
70 }
71
72 int number_of_failures = 0;
73
74 for (vector<JRootObjectID>::const_iterator input = inputFile.begin(); input != inputFile.end(); ++input) {
75
76 DEBUG(
"Input: " << *input << endl);
77
79
80 if (dir == NULL) {
81 FATAL(
"File: " << input->getFullFilename() <<
" not opened." << endl);
82 }
83
84 const TRegexp regexp(input->getObjectName());
85
86 TIter iter(dir->GetListOfKeys());
87
88 for (TKey* key; (
key = (TKey*) iter.Next()) != NULL; ) {
89
90 const TString tag(
key->GetName());
91
92 DEBUG(
"Key: " << tag <<
" match = " << tag.Contains(regexp) << endl);
93
94
95
96 if (tag.Contains(regexp) &&
isTObject(key)) {
97
99
100 TH3* h3 = (dynamic_cast<TH3*>(p) != NULL ? dynamic_cast<TH3*>(p) : NULL);
101
102 for (map_type::const_iterator i = zmap.begin(); i != zmap.end(); ++i) {
103
104 const double value =
getResult(i->first, p);
105 const JRange_t& range = i->second;
106
107 DEBUG(
"Global test " << i->first <<
' ' << (range(value) ?
"passed" :
"failed") << endl);
108
110 }
111
112
113 int number_of_events = 0;
114 int number_of_outliers = 0;
115
116 if (h3 != NULL) {
117
118 for (Int_t ix = 1; ix <= h3->GetXaxis()->GetNbins(); ++ix) {
119 for (Int_t iy = 1; iy <= h3->GetYaxis()->GetNbins(); ++iy) {
120 for (Int_t iz = 1; iz <= h3->GetZaxis()->GetNbins(); ++iz) {
121
122 const Double_t
x = h3->GetXaxis()->GetBinCenter(ix);
123 const Double_t
y = h3->GetYaxis()->GetBinCenter(iy);
124 const Double_t z = h3->GetZaxis()->GetBinCenter(iz);
125 const Double_t c = h3->GetBinContent(ix, iy, iz);
126
127 if (X(x) == !invertX &&
128 Y(y) == !invertY &&
129 Z(z) == !invertZ) {
130
131 ++number_of_events;
132
133 const bool ok = (C(c) == !invertC);
134
135 DEBUG(
"Test outlier " << h3->GetName() <<
" bin (" << ix <<
"," << iy <<
',' << iz <<
") (" << h3->GetXaxis()->GetBinLabel(ix) <<
"," << h3->GetYaxis()->GetBinLabel(iy) <<
"," << h3->GetZaxis()->GetBinLabel(iz) <<
") " << c <<
' ' << (ok ?
"passed" :
"failed") << endl);
136
137 if (!ok) {
138 ++number_of_outliers;
139 }
140 }
141 }
142 }
143 }
144
145 } else {
146
147 FATAL(
"Object at " << *input <<
" is not TH3" << endl);
148 }
149
150
151 cout << (number_of_outliers > numberOfOutliers ? RED : GREEN);
152 NOTICE(
"Number of outliers \"" << p->GetName() <<
"\" = " << number_of_outliers <<
"/" << number_of_events << endl);
153 cout << RESET;
154
155 if (number_of_outliers > numberOfOutliers) {
156 ++number_of_failures;
157 }
158 }
159 }
160 }
161
162 ASSERT(number_of_failures == 0);
163
164 return 0;
165}
#define DEBUG(A)
Message macros.
#define ASSERT(A,...)
Assert macro.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Utility class to parse command line options.
TDirectory * getDirectory(const JRootObjectID &id)
Get TDirectory pointer.
bool isTObject(const TKey *key)
Check if given key corresponds to a TObject.
Double_t getResult(const TString &text, TObject *object=NULL)
Get result of given textual formula.
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
Empty structure for specification of parser element that is initialised (i.e. does not require input)...