30 int main(
int argc,
char **argv)
35 typedef JRange<Double_t> JRange_t;
49 JParser<> zap(
"Auxiliary program to test contents of 1D histograms.");
51 zap[
'f'] =
make_field(inputFile,
"measurement histogram, e.g: <file name>:<object name>");
52 zap[
'x'] =
make_field(
X,
"accepted x-range values") = JRange_t();
53 zap[
'y'] =
make_field(
Y,
"accepted y-range values") = JRange_t();
62 catch(
const exception &error) {
63 FATAL(error.what() << endl);
67 int number_of_failures = 0;
71 DEBUG(
"Input: " << *input << endl);
76 FATAL(
"File: " << input->getFullFilename() <<
" not opened." << endl);
79 const TRegexp regexp(input->getObjectName());
81 TIter iter(dir->GetListOfKeys());
83 for (TKey* key; (key = (TKey*) iter.Next()) != NULL; ) {
85 const TString tag(key->GetName());
87 DEBUG(
"Key: " << tag <<
" match = " << tag.Contains(regexp) << endl);
91 if (tag.Contains(regexp) &&
isTObject(key)) {
95 const TH1* h1 = (
dynamic_cast<TProfile*
>(p) != NULL ? dynamic_cast<TProfile*>(p) :
96 (
dynamic_cast<TH1*
>(p) != NULL ? dynamic_cast<TH1*>(p) : NULL) );
97 const TGraph*
g1 = (
dynamic_cast<TGraph*
>(p) != NULL ? dynamic_cast<TGraph*>(p) : NULL );
99 for (map_type::const_iterator
i = zmap.begin();
i != zmap.end(); ++
i) {
102 const JRange_t&
range =
i->second;
104 DEBUG(
"Global test " <<
i->first <<
' ' << (range(value) ?
"passed" :
"failed") << endl);
110 int number_of_events = 0;
111 int number_of_outliers = 0;
115 for (Int_t
i = 1;
i <= h1->GetNbinsX(); ++
i) {
117 const Double_t
x = h1->GetBinCenter (
i);
118 const Double_t
y = h1->GetBinContent(
i);
120 if (
X(x) == !invertX) {
124 const bool ok = (
Y(y) == !invertY);
126 DEBUG(
"Test outlier " << h1->GetName() <<
" bin (" <<
i <<
") (" << h1->GetXaxis()->GetBinLabel(
i) <<
") " << y <<
' ' << (ok ?
"passed" :
"failed") << endl);
129 ++number_of_outliers;
134 }
else if (g1 != NULL) {
136 for (Int_t
i = 0;
i != g1->GetN(); ++
i) {
138 const Double_t
x = g1->GetX()[
i];
139 const Double_t
y = g1->GetY()[
i];
141 if (
X(x) == !invertX) {
145 const bool ok = (
Y(y) == !invertY);
147 DEBUG(
"Test outlier " << g1->GetName() <<
" bin (" <<
i <<
") " << y <<
' ' << (ok ?
"passed" :
"failed") << endl);
150 ++number_of_outliers;
157 FATAL(
"Object at " << *input <<
" is not TH1 nor TGraph." << endl);
161 cout << (number_of_outliers > numberOfOutliers ?
RED :
GREEN);
162 NOTICE(
"Number of outliers \"" << p->GetName() <<
"\" = " << number_of_outliers <<
"/" << number_of_events << endl);
165 if (number_of_outliers > numberOfOutliers) {
166 ++number_of_failures;
172 ASSERT(number_of_failures == 0);
Utility class to parse command line options.
int main(int argc, char *argv[])
std::map< int, buffer_type > map_type
string -> hits
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
then fatal Wrong number of arguments fi set_variable STRING $argv[1] set_variable DETECTORXY_TXT $WORKDIR $DETECTORXY_TXT tail read X Y CHI2 RMS printf optimum n $X $Y $CHI2 $RMS awk v Y
#define ASSERT(A,...)
Assert macro.
I/O coloring auxiliaries.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Double_t getResult(const TString &text, TObject *object=NULL)
Get result of given textual formula.
General purpose messaging.
z range($ZMAX-$ZMIN)< $MINIMAL_DZ." fi fi typeset -Z 4 STRING typeset -Z 2 FLOOR JPlot1D -f $
Auxiliary class to define a range between two values.
Utility class to parse command line options.
bool isTObject(const TKey *key)
Check if given key corresponds to a TObject.
no fit printf nominal n $STRING awk v X
TDirectory * getDirectory(const JRootObjectID &id)
Get TDirectory pointer.
#define DEBUG(A)
Message macros.
Double_t g1(const Double_t x)
Function.