118   typedef JRange<TTimeStamp>  JRange_t;
 
  134     JParser<> zap(
"Example program to plot quality data from data base.");
 
  140     zap[
'f'] = 
make_field(inputFile,  
"Optional input file instead of database.")       = 
"";
 
  141     zap[
'o'] = 
make_field(
outputFile, 
"ROOT file with histograms and n-tuple or ASCII file with QA/QC data.") = 
"monitor.root";
 
  142     zap[
'D'] = 
make_field(detid,      
"detector identifier");
 
  143     zap[
'S'] = 
make_field(source,     
"GIT versions")               = 
getGITTags(TRegexp(
"v[0-9]*\\.[0-9]*\\.[0-9]*$"), JGITTags_t::key_type(
"2019-04-12"));
 
  144     zap[
'U'] = 
make_field(UTC,        
"UTC time range" )            = JRange<TTimeStamp>();
 
  145     zap[
'T'] = 
make_field(Tmin_s,     
"minimal run duration [s]")   = 60;
 
  150   catch(
const exception &error) {
 
  151     FATAL(error.what() << endl);
 
  162     const int ID = getDetector<int   >(detid);
 
  163     detid        = getDetector<string>(detid);
 
  167     NOTICE(
"Extracting run information from database... " << flush);
 
  169     ResultSet& rs  = 
getResultSet(getTable<JRuns>(), getSelector<JRuns>(ID));
 
  173       parameters.DETID = 
ID;
 
  175       if (UTC(parameters.getRunStartTime())) {
 
  176         runs.insert(parameters);
 
  185       FATAL(
"No runs for detector " << detid << endl);
 
  188     NOTICE(
"Run range " << runs.begin()->RUN << 
' ' << runs.rbegin()->RUN << endl);
 
  190     if (inputFile == 
"") {                    
 
  201         JSelector selector = getSelector<JRunSummaryNumbers>(detid, runs.begin()->RUN, runs.rbegin()->RUN);
 
  203         selector.add(&JRunSummaryNumbers::SOURCE_NAME, *git);
 
  207           NOTICE(
"Extracting run summmary information with source " << *git << 
" from database... " << flush);
 
  209           ResultSet& rs  = 
getResultSet(getTable<JRunSummaryNumbers>(), selector);
 
  211           for (JRunSummaryNumbers parameters; rs >> 
parameters; ) {
 
  212             zmap[parameters.RUN].insert(make_pair(parameters.PARAMETER_NAME, parameters.DATA_VALUE));
 
  219         catch(
const exception& error) { 
NOTICE(endl); }
 
  221         for (map_type::const_iterator run = zmap.begin(); run != zmap.end(); ++run) {
 
  226           quality.detector = 
ID;
 
  227           quality.run      = run->first;
 
  229           for (data_type::const_iterator p = run->second.begin(); p != run->second.end(); ++p) {
 
  230             quality.put(p->first, p->second);
 
  233           if (UTC(TTimeStamp(quality.UTCMin_s, 0)) &&
 
  234               UTC(TTimeStamp(quality.UTCMax_s, 0))) {
 
  235             buffer.insert(quality);
 
  248       for (JRunQuality quality; 
in >> quality; ) {
 
  249         if (UTC(TTimeStamp(quality.UTCMin_s, 0)) &&
 
  250             UTC(TTimeStamp(quality.UTCMax_s, 0))) {
 
  251           buffer.insert(quality);
 
  258   catch(
const exception& error) {
 
  259     FATAL(error.what() << endl);
 
  269     X.push_back(runs. begin()->getRunStartTime());    
 
  272       X.push_back(quality->UTCMin_s);
 
  273       X.push_back(quality->UTCMax_s);
 
  276     X.push_back(runs.rbegin()->getRunStartTime());    
 
  278     sort(X.begin(), X.end());
 
  285       bool operator()(
const double x1, 
const double x2) 
 
  287         return x2 - x1 <= 
xmin;
 
  293     X.erase(unique(X.begin(), X.end(), Xmin(Tmin_s)), X.end());
 
  295     TH1D h0(
"livetime_s", NULL, X.size() - 1, X.data());
 
  296     TH1D 
h1(
"QAQC",       NULL, X.size() - 1, X.data());
 
  305              << setw(8) << i->RUN                                        << 
' '  
  306              << TTimeStamp((time_t) i->UNIXSTARTTIME/1000).AsString(
"c") << 
' ';
 
  308         if (quality != buffer.end())
 
  309           cout << 
"[" << TTimeStamp((time_t) quality->UTCMin_s).AsString(
"c") << 
"," << TTimeStamp((time_t) quality->UTCMax_s).AsString(
"c") << 
"]";
 
  311           cout << 
"missing QA/QC data";
 
  316       h1.Fill(i->getRunStartTime() + Tmin_s, (quality != buffer.end() ? 1.0 : -1.0));
 
  319     JManager<string, TH1D> H1(
new TH1D(
"H[%]", NULL, X.size() - 1, X.data()));  
 
  320     JManager<string, TH1D> 
R1(
new TH1D(
"R[%]", NULL, X.size() - 1, X.data()));  
 
  324       const double x = 0.5 * (quality->UTCMin_s + quality->UTCMax_s);
 
  326       h0.Fill(x, 100.0 * quality->livetime_s / (quality->UTCMax_s - quality->UTCMin_s));
 
  328       H1[
"JDAQEvent"]        -> Fill(x, quality->JDAQEvent);
 
  329       H1[
"JTrigger3DShower"] -> Fill(x, quality->JTrigger3DShower);
 
  330       H1[
"JTrigger3DMuon"]   -> Fill(x, quality->JTrigger3DMuon);
 
  331       H1[
"JTriggerMXShower"] -> Fill(x, quality->JTriggerMXShower);
 
  333       if (quality->livetime_s > 0.0) {
 
  334         R1[
"JDAQEvent"]        -> Fill(x, quality->JDAQEvent        / quality->livetime_s);
 
  335         R1[
"JTrigger3DShower"] -> Fill(x, quality->JTrigger3DShower / quality->livetime_s);
 
  336         R1[
"JTrigger3DMuon"]   -> Fill(x, quality->JTrigger3DMuon   / quality->livetime_s);
 
  337         R1[
"JTriggerMXShower"] -> Fill(x, quality->JTriggerMXShower / quality->livetime_s);
 
  342     Double_t W[2] = { 0.0 };
 
  344     W[0] = *X.rbegin() - *X.begin();
 
  347       W[1] += quality->livetime_s;
 
  350     NOTICE(
"Average data taking efficiency  " << 
FIXED(5,1) << 100.0*W[1]/W[0] << 
" %." << endl);
 
  353     for (TH1* p : { &h0, &
h1 }) {
 
  354       p->GetXaxis()->SetTimeDisplay(1);
 
  359     for (JManager<string, TH1D>::iterator p = H1.begin(); p != H1.end(); ++p) {
 
  363       for (Int_t i = 1; i <= p->second->GetXaxis()->GetNbins(); ++i) {
 
  364         p->second->SetBinContent(i, (W += p->second->GetBinContent(i)));
 
  367       p->second->GetXaxis()->SetTimeDisplay(1);
 
  368       p->second->GetXaxis()->SetTimeFormat(
TIMESTAMP);
 
  369       p->second->Sumw2(
false);
 
  372     for (JManager<string, TH1D>::iterator p = 
R1.begin(); p != 
R1.end(); ++p) {
 
  374       p->second->GetXaxis()->SetTimeDisplay(1);
 
  375       p->second->GetXaxis()->SetTimeFormat(
TIMESTAMP);
 
  376       p->second->Sumw2(
false);
 
  381     out << h0 << 
h1 << H1 << 
R1;
 
  394     out.setf(ios::fixed);
 
  398     comment.add(JMeta(argc, argv));
 
Utility class to parse command line options. 
 
*fatal Wrong number of arguments esac JCookie sh typeset Z DETECTOR typeset Z SOURCE_RUN typeset Z TARGET_RUN set_variable PARAMETERS_FILE $WORKDIR parameters
 
then for HISTOGRAM in h0 h1
 
Auxiliary data structure for floating point format specification. 
 
static const char *const ASCII_FILE_FORMAT
file name extension ASCII format 
 
std::vector< std::string > getGITTags(const TRegexp ®exp, const JGITTags_t::key_type &date)
Get selection of GIT tags. 
 
T & getInstance(const T &object)
Get static instance from temporary object. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
then echo Variable JPP_DIR undefined exit fi source $JPP_DIR setenv sh $JPP_DIR &dev null set_variable DETECTOR $JPP_DATA km3net_reference detx set_variable NUMBER_OF_STRINGS set_variable ID if do_usage *then usage $script[detector file[variant[identifier]]] fi case set_variable ID
 
std::string getFilenameExtension(const std::string &file_name)
Get file name extension, i.e. part after last JEEP::FILENAME_SEPARATOR if any. 
 
ResultSet & getResultSet(const std::string &query)
Get result set. 
 
std::vector< JServer > getServernames()
Get list of names of available database servers. 
 
no fit printf nominal n $STRING awk v X
 
then fatal Wrong number of arguments fi set_variable DETECTOR $argv[1] set_variable INPUT_FILE $argv[2] eval JPrintDetector a $DETECTOR O IDENTIFIER eval JPrintDetector a $DETECTOR O SUMMARY JAcoustics sh $DETECTOR_ID source JAcousticsToolkit sh CHECK_EXIT_CODE typeset A EMITTERS get_tripods $WORKDIR tripod txt EMITTERS get_transmitters $WORKDIR transmitter txt EMITTERS for EMITTER in
 
static const char *const TIMESTAMP
Time stamp of earliest UTC time. 
 
static const char *const ROOT_FILE_FORMAT
file name extension ROOT format