31{
34
36
42 bool overflow;
43 string format;
44 string option;
46
47 try {
48
49 JParser<> zap(
"Auxiliary program to project 2D histograms.");
50
51 zap[
'f'] =
make_field(inputFile,
"<input file>:<object name>");
52 zap[
'P'] =
make_field(project,
"projection") =
' ',
'x',
'X',
'y',
'Y';
57 zap[
'F'] =
make_field(format,
"format, e.g. \"%s %i\" or \"%s %f %f\"") =
"";
58 zap[
'O'] =
make_field(option,
"option, see TH2::Projection(X|Y)") =
"";
60
61 zap(argc, argv);
62 }
63 catch(const exception &error) {
64 FATAL(error.what() << endl);
65 }
66
69
70 if (px == py) {
71 FATAL(
"Invalid operation: "
72 << (px ? "" : "no") << " X projection " << " and "
73 << (py ? "" : "no") << " Y projection " << endl);
74 }
75
76 if (format == "") {
77
78 format = "%s_";
79
80 if (px) { format += "px"; }
81 if (py) { format += "py"; }
82
83 if (X.empty() && Y.empty())
84 format += "[%i]";
85 else
86 format += "[%f,%f]";
87 }
88
90
91 for (vector<JRootObjectID>::const_iterator input = inputFile.begin(); input != inputFile.end(); ++input) {
92
93 DEBUG(
"Input: " << *input << endl);
94
96
97 if (dir == NULL) {
98 ERROR(
"File: " << input->getFullFilename() <<
" not opened." << endl);
99 continue;
100 }
101
102 const TRegexp regexp(input->getObjectName());
103
104 TIter iter(dir->GetListOfKeys());
105
106 for (TKey* key; (
key = (TKey*) iter.Next()) != NULL; ) {
107
108 const TString tag(
key->GetName());
109
110 DEBUG(
"Key: " << tag <<
" match = " << tag.Contains(regexp) << endl);
111
112
113
114 if (tag.Contains(regexp) &&
isTObject(key)) {
115
116 TH2* h2 =
dynamic_cast<TH2*
>(
key->ReadObj());
117
118 if (h2 != NULL) {
119
120 if (px) {
121
122 if (Y.empty()) {
123
124 for (Int_t i = (overflow ? 0 : 1); i <= h2->GetYaxis()->GetNbins() + (overflow ? 1 : 0); ++i) {
125 listOfObjects.push_back(h2->ProjectionX(TString::Format(format.c_str(), h2->GetName(), i),
126 i,
127 i, option.c_str()));
128 }
129
130 } else {
131
132 for (Int_t i = 0; i != (Int_t) Y.size(); ++i) {
133 listOfObjects.push_back(h2->ProjectionX(TString::Format(format.c_str(), h2->GetName(), Y[i].getLowerLimit(), Y[i].getUpperLimit()),
134 h2->GetYaxis()->FindBin(Y[i].getLowerLimit()),
135 h2->GetYaxis()->FindBin(Y[i].getUpperLimit()) - 1, option.c_str()));
136 }
137 }
138
139 } else if (py) {
140
141 if (X.empty()) {
142
143 for (Int_t i = (overflow ? 0 : 1); i <= h2->GetXaxis()->GetNbins() + (overflow ? 1 : 0); ++i) {
144 listOfObjects.push_back(h2->ProjectionY(TString::Format(format.c_str(), h2->GetName(), i), i, i, option.c_str()));
145 }
146
147 } else {
148
149 for (Int_t i = 0; i != (Int_t) X.size(); ++i) {
150 listOfObjects.push_back(h2->ProjectionY(TString::Format(format.c_str(), h2->GetName(), X[i].getLowerLimit(), X[i].getUpperLimit()),
151 h2->GetXaxis()->FindBin(X[i].getLowerLimit()),
152 h2->GetXaxis()->FindBin(X[i].getUpperLimit()) - 1, option.c_str()));
153 }
154 }
155 }
156 }
157 }
158 }
159 }
160
161 if (!listOfObjects.empty()) {
162
164
165 for (vector<TObject*>::const_iterator i = listOfObjects.begin(); i != listOfObjects.end(); ++i) {
166 (*i)->Write();
167 }
168
169 out.Write();
170 out.Close();
171 }
172}
#define DEBUG(A)
Message macros.
#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.
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)...