12 #include "TApplication.h" 
   16 #include "TAttMarker.h" 
   25 #include "TGraphErrors.h" 
   26 #include "TMultiGraph.h" 
   62   inline bool setLogX(
TObject* 
object)
 
   66     T* p = 
dynamic_cast<T*
>(object);
 
   82     public JEquals<JLegend>
 
   99             const Double_t     factor = 1.0) :
 
  111       return (location != 
"" && factor != 0.0);
 
  120     bool equals(
const JLegend& legend)
 const 
  122       return (this->location == legend.location);
 
  132     friend inline std::istream& 
operator>>(std::istream& 
in, JLegend& legend)
 
  134       in >> legend.location;
 
  136       if (!(in >> legend.factor)) {
 
  153     friend inline std::ostream& 
operator<<(std::ostream& out, 
const JLegend& legend)
 
  155       return out << legend.location << 
' ' << legend.factor;
 
  169   inline Ssiz_t getWidth(
const TString& buffer)
 
  173     for (Ssiz_t 
i = 0; 
i != buffer.Length(); ++
i) {
 
  175       if (buffer(
i) == 
' ')
 
  177       else if (buffer(
i) >= 
'A' && buffer(
i) <= 
'Z')
 
  179       else if (buffer(
i) >= 
'a' && buffer(
i) <= 
'z')
 
  181       else if (buffer(
i) == 
'.' || buffer(
i) == 
':' || buffer(
i) == 
';' || buffer(
i) == 
',' || buffer(
i) == 
'\'')
 
  193   const char* 
const JName_t  = 
"?";     
 
  194   const char* 
const JTitle_t = 
"%";     
 
  204 int main(
int argc, 
char **argv)
 
  209   typedef JRange<double>  JRange_t;
 
  240     JParser<> zap(
"General purpose plot program for 1D ROOT objects.");
 
  242     zap[
'f'] = 
make_field(inputFile,  
"<input file>:<object name>");
 
  244     zap[
'w'] = 
make_field(canvas,     
"size of canvas <nx>x<ny> [pixels]")  = JCanvas(500, 500);
 
  246     zap[
'L'] = 
make_field(legend,     
"position legend e.g. TR [factor]")   = JLegend(), JLegend(
"TL"), JLegend(
"TR"), JLegend(
"BR"), JLegend(
"BL");
 
  247     zap[
'x'] = 
make_field(
X,          
"abscissa range")                     = JRange_t::DEFAULT_RANGE();
 
  248     zap[
'y'] = 
make_field(
Y,          
"ordinate range")                     = JRange_t::DEFAULT_RANGE();
 
  249     zap[
'z'] = 
make_field(
Z,          
"ordinate range of projection)")      = JRange_t::DEFAULT_RANGE();
 
  250     zap[
'X'] = 
make_field(logx,       
"logarithmic x-axis (-XX log10 axis)");
 
  251     zap[
'Y'] = 
make_field(logy,       
"logarithmic y-axis");
 
  252     zap[
'Z'] = 
make_field(logz,       
"logarithmic y-axis; after projection");
 
  254     zap[
'>'] = 
make_field(xLabel,     
"x-axis label")                       = 
"";
 
  255     zap[
'^'] = 
make_field(yLabel,     
"y-axis label")                       = 
"";
 
  256     zap[
'C'] = 
make_field(drawLine,   
"draw line (-C black-and-white -CC colour)");
 
  258     zap[
'l'] = 
make_field(lineWidth,  
"line width")                         = 2;
 
  259     zap[
'S'] = 
make_field(markerSize, 
"marker size")                        = 1.0;
 
  260     zap[
'O'] = 
make_field(option,     
"plotting option")                    = 
"";
 
  262     zap[
'B'] = 
make_field(batch,      
"batch processing");
 
  263     zap[
'T'] = 
make_field(title,      
"graphics title ("  
  264                           << 
"\"" << JName_t  << 
"\" -> ROOT name; " 
  265                           << 
"\"" << JTitle_t << 
"\" -> ROOT title)")      = 
"KM3NeT preliminary";
 
  267     zap[
'g'] = 
make_field(group,      
"group colour codes of objects")      = 1;
 
  268     zap[
't'] = 
make_field(xTimeFormat, 
"set time format for x-axis, e.g. \%d\\/\%m\\/\\%y%F1970-01-01 00:00:00") = 
"";
 
  273   catch(
const exception &error) {
 
  274     FATAL(error.what() << endl);
 
  278   gROOT->SetBatch(batch);
 
  280   TApplication* tp = 
new TApplication(
"user", NULL, NULL);
 
  281   TCanvas*      cv = 
new TCanvas(
"c1", 
"c1", canvas.x, canvas.y);
 
  283   unique_ptr<TStyle> gStyle(
new JStyle(
"gplot", cv->GetWw(), cv->GetWh()));
 
  285   gROOT->SetStyle(
"gplot");
 
  289   cv->SetFillStyle(4000);
 
  290   cv->SetFillColor(kWhite);
 
  299   Double_t 
xmin = numeric_limits<double>::max();
 
  300   Double_t 
xmax = numeric_limits<double>::lowest();
 
  302   Double_t ymin = numeric_limits<double>::max();
 
  303   Double_t ymax = numeric_limits<double>::lowest();
 
  312   logy = (logy || logz);
 
  327     DEBUG(
"Input: " << *input << endl);
 
  332       ERROR(
"File: " << input->getFullFilename() << 
" not opened." << endl);
 
  336     const TRegexp regexp(input->getObjectName());
 
  338     TIter iter(dir->GetListOfKeys());
 
  340     for (TKey* key; (key = (TKey*) iter.Next()) != NULL; ) {
 
  342       const TString tag(key->GetName());
 
  344       DEBUG(
"Key: " << tag << 
" match = " << tag.Contains(regexp) << endl);
 
  348       if (tag.Contains(regexp) && 
isTObject(key)) {
 
  350         if        (title == JName_t) {
 
  351           title = key->GetName();
 
  352         } 
else if (title == JTitle_t) {
 
  353           title = key->GetTitle();
 
  356         JRootObject object(key->ReadObj());
 
  368           line.SetLineColor(marker.GetMarkerColor());
 
  374           TProfile& h1 = 
dynamic_cast<TProfile&
>(*object);
 
  376           object = h1.ProjectionX();
 
  382           TH2& h2 = 
dynamic_cast<TH2&
>(*object);
 
  388                                       h2.GetYaxis()->FindBin(
Z.getLowerLimit()),
 
  389                                       h2.GetYaxis()->FindBin(
Z.getUpperLimit()) - 1);
 
  393                                       h2.GetYaxis()->GetNbins());
 
  399                                       h2.GetXaxis()->FindBin(
Z.getLowerLimit()),
 
  400                                       h2.GetXaxis()->FindBin(
Z.getUpperLimit()) - 1);
 
  404                                       h2.GetXaxis()->GetNbins());
 
  408             ERROR(
"For 2D histograms, use option option -P for projections or use JPlot2D" << endl);
 
  417           TH3& h3 = 
dynamic_cast<TH3&
>(*object);
 
  433             ERROR(
"For 3D histograms, use option option -P for projections or use JPlot2D -P <projection>" << endl);
 
  443           if (dynamic_cast<TMarker*>(
object.
get()) == NULL) {
 
  444             dynamic_cast<TAttMarker&
>(*object) = marker; 
 
  450           if (dynamic_cast<TLine*>(
object.
get())   == NULL) {
 
  451             dynamic_cast<TAttLine&
>  (*object) = line;
 
  460             TAttFill& fill = 
dynamic_cast<TAttFill&
>(*object);
 
  462             fill.SetFillColor(marker.GetMarkerColor()); 
 
  473             TH1& h1 = 
dynamic_cast<TH1&
>(*object);
 
  475             for (
int i = 1; 
i <= h1.GetNbinsX(); ++
i) {
 
  476               h1.SetBinError(
i, 0.0);
 
  483             TGraphErrors& 
g1 = 
dynamic_cast<TGraphErrors&
>(*object);
 
  485             for (Int_t 
i = 0; 
i != g1.GetN(); ++
i) {
 
  497           TH1& h1 = 
dynamic_cast<TH1&
>(*object);
 
  499           h1.SetStats(stats != -1);
 
  501           xmin = min(
xmin, h1.GetXaxis()->GetXmin());
 
  502           xmax = max(xmax, h1.GetXaxis()->GetXmax());       
 
  503           ymin = min(ymin, logy ? h1.GetMinimum(0.0) : h1.GetMinimum());
 
  504           ymax = max(ymax, h1.GetMaximum());
 
  506           if (!logy && h1.GetListOfFunctions() != NULL) {
 
  507             for (unique_ptr<TIterator> 
iterator(h1.GetListOfFunctions()->MakeIterator()); TF1* 
f1 = (TF1*) 
iterator->Next(); ) {
 
  508               ymin = min(ymin, f1->GetMinimum(h1.GetXaxis()->GetXmin(), h1.GetXaxis()->GetXmax()));
 
  509               ymax = max(ymax, f1->GetMaximum(h1.GetXaxis()->GetXmin(), h1.GetXaxis()->GetXmax()));
 
  517           TGraph& 
g1 = 
dynamic_cast<TGraph&
>(*object);
 
  519           for (Int_t 
i = 0; 
i != g1.GetN(); ++
i) {
 
  522             xmax = max(xmax, g1.GetX()[
i]);
 
  524             if (!logy || g1.GetY()[
i] > 0.0) {
 
  525               ymin = min(ymin, g1.GetY()[
i]);
 
  526               ymax = max(ymax, g1.GetY()[
i]);
 
  534           TGraphErrors& 
g1 = 
dynamic_cast<TGraphErrors&
>(*object);
 
  536           for (Int_t 
i = 0; 
i != g1.GetN(); ++
i) {
 
  537             if (!logy || g1.GetY()[
i] - g1.GetEY()[
i] > 0.0) { ymin = min(ymin, g1.GetY()[
i] - g1.GetEY()[
i]); }
 
  538             if (!logy || g1.GetY()[
i] + g1.GetEY()[
i] > 0.0) { ymax = max(ymax, g1.GetY()[
i] + g1.GetEY()[
i]); }
 
  545           TMultiGraph& m1 = 
dynamic_cast<TMultiGraph&
>(*object);
 
  547           for (TIter i1(m1.GetListOfGraphs()); TGraph* 
g1 = 
dynamic_cast<TGraph*
>(i1()); ) {
 
  549             for (Int_t 
i = 0; 
i != g1->GetN(); ++
i) {
 
  552               xmax = max(xmax, g1->GetX()[
i]);
 
  554               if (!logy || g1->GetY()[
i] > 0.0) {
 
  555                 ymin = min(ymin, g1->GetY()[
i]);
 
  556                 ymax = max(ymax, g1->GetY()[
i]);
 
  565           TF2& f2 = 
dynamic_cast<TF2&
>(*object);
 
  568           TString formula = f2.GetExpFormula();
 
  569           TString _z_     = TString::Format(
"%f", 0.5 * (
Z.getLowerLimit() + 
Z.getUpperLimit()));
 
  576           f2.GetRange(__xmin, __ymin, __xmax, __ymax);
 
  580             formula.ReplaceAll(
"y", _z_);
 
  584             f1->SetRange(__xmin, __xmax);
 
  588             formula.ReplaceAll(
"x", _z_);
 
  589             formula.ReplaceAll(
"y", 
"x");
 
  593             f1->SetRange(__ymin, __ymax);
 
  597             ERROR(
"For 2D functions, use option option -P for projections or use JPlot2D" << endl);
 
  602           DEBUG(
"TF1: " << f1->GetExpFormula() << endl);
 
  604           f1->SetParameters(f2.GetParameters());
 
  612           TF1& 
f1 = 
dynamic_cast<TF1&
>(*object);
 
  617           f1.GetRange(__xmin, __xmax);
 
  621           ymin = min(ymin, f1.GetMinimum());
 
  622           ymax = max(ymax, f1.GetMaximum());
 
  628           THStack& hs = 
dynamic_cast<THStack&
>(*object);
 
  630           NOTICE(
"THStack" << endl);
 
  632           unique_ptr<TIterator> 
iterator(hs.GetHists()->MakeIterator());
 
  636             TH1& h1 = 
dynamic_cast<TH1&
>(*i);
 
  638             NOTICE(
"TH1[" << index << 
"] " << h1.GetName() << endl);
 
  640             xmin = min(xmin, h1.GetXaxis()->GetXmin());
 
  641             xmax = max(xmax, h1.GetXaxis()->GetXmax());
 
  643             ymin = min(ymin, logy ? h1.GetMinimum(0.0) : h1.GetMinimum());
 
  644             ymax = max(ymax, h1.GetMaximum());
 
  647             h1.SetLineColor(kBlack);
 
  656           TLine& h1 = 
dynamic_cast<TLine&
>(*object);
 
  659           xmax = max(xmax, h1.GetX2());
 
  660           ymin = min(ymin, h1.GetY1());
 
  661           ymax = max(ymax, h1.GetY2());
 
  667         for (TString buffer[] = { 
object.getLabel(), input->getFilename().c_str(), 
"" }, *
i = buffer; *
i != 
""; ++
i) {
 
  669           *
i = (*i)(TRegexp(
"\\[.*\\]"));
 
  671           if (
i->Length() > 2) {
 
  672             object.setLabel((*
i)(1, 
i->Length() - 2));
 
  676         DEBUG(
"Add object: " << tag << 
" with label <" << 
object.
getLabel() << 
">" << endl);
 
  679           master = 
dynamic_cast<TH1*
>(
object.get());
 
  682         listOfObjects.push_back(
object);
 
  687   if (listOfObjects.empty()) {
 
  688     ERROR(
"Nothing to draw." << endl);
 
  697     TH1*         h1 = 
dynamic_cast<TH1*
>        (
i->get());
 
  698     TGraph*      
g1 = 
dynamic_cast<TGraph*
>     (
i->get());
 
  699     TMultiGraph* m1 = 
dynamic_cast<TMultiGraph*
>(
i->get());
 
  700     TAttLine*    ls = 
dynamic_cast<TAttLine*
>   (
i->get());
 
  708       iterator.reset(h1->GetListOfFunctions()->MakeIterator());
 
  710     } 
else if (g1 != NULL) {
 
  712       iterator.reset(g1->GetListOfFunctions()->MakeIterator());
 
  714     } 
else if (m1 != NULL) {
 
  716       for (TIter i1(m1->GetListOfGraphs()); TGraph* gi = 
dynamic_cast<TGraph*
>(i1()); ) {
 
  717         for (TIter i2(gi->GetListOfFunctions()); TF1* 
fi = 
dynamic_cast<TF1*
>(i2()); ) {
 
  722       iterator.reset(list.MakeIterator());
 
  725     if (iterator != NULL) {
 
  727       Double_t x1[] = { numeric_limits<Double_t>::max(),    numeric_limits<Double_t>::max() };
 
  728       Double_t x2[] = { numeric_limits<Double_t>::lowest(), numeric_limits<Double_t>::lowest() };
 
  730       for (
int nf = 0, 
ns = 0, nc = 1; TF1* 
f1 = (TF1*) iterator->Next(); ++nf) {
 
  732         f1->GetRange(x1[1], x2[1]);
 
  737         if (listOfObjects.size() == 1) {
 
  739           if      (x1[0] == x1[1] && 
 
  752           f1->SetLineColor(ls->GetLineColor());
 
  776     xmin = 
X.getLowerLimit();
 
  777     xmax = 
X.getUpperLimit();
 
  781     ymin = 
Y.getLowerLimit();
 
  782     ymax = 
Y.getUpperLimit();
 
  783   } 
else if (ymax > ymin) {
 
  789   if (!listOfObjects.empty()) {
 
  797       for (Int_t 
i = 1; 
i <= 
master->GetXaxis()->GetNbins(); ++
i) {
 
  798         master->SetBinContent(
i, ymin);
 
  805     TText* p = 
new TText(0.5, 0.5, 
MAKE_CSTRING(
"No data"));
 
  813     if (logx) { gPad->SetLogx(); }
 
  814     if (logy) { gPad->SetLogy(); }
 
  817     master->SetTitle(title.c_str());
 
  826     if (xLabel != 
"") { 
master->GetXaxis()->SetTitle(xLabel.c_str()); 
master->GetXaxis()->CenterTitle(
true); }
 
  827     if (yLabel != 
"") { 
master->GetYaxis()->SetTitle(yLabel.c_str()); 
master->GetYaxis()->CenterTitle(
true); }
 
  832     master->GetYaxis()->SetMoreLogLabels( logy      && 
log10(ymax/ymin) < 2);
 
  833     master->GetYaxis()->SetNoExponent   ( logy      && 
log10(ymax/ymin) < 2);
 
  836       master->SetNdivisions(
i->second, 
i->first.c_str());
 
  839     if (xTimeFormat != 
"") {
 
  841       master->GetXaxis()->SetTimeDisplay(1);
 
  843       if        (xTimeFormat == 
"utc") {
 
  844         master->GetXaxis()->SetTimeFormat(
"#splitline{}{#splitline{%d-%m-%y}{ %H:%M}}");
 
  845         master->GetXaxis()->SetTimeOffset(0.0, 
"gmt");
 
  846       } 
else if (xTimeFormat == 
"UTC") {
 
  847         master->GetXaxis()->SetTimeFormat(
"%d-%m-%y");
 
  848         master->GetXaxis()->SetTimeOffset(0.0, 
"gmt");
 
  850         master->GetXaxis()->SetTimeFormat(xTimeFormat.c_str());
 
  854     master->Draw(option.c_str());
 
  859       if (dynamic_cast<TH1*>(
i->get()) != 
master) {
 
  860         if      (setLogX<TH1>         (
i->get())) {}
 
  861         else if (setLogX<TF1>         (
i->get())) {}
 
  862         else if (setLogX<TGraphErrors>(
i->get())) {}
 
  863         else if (setLogX<TGraph>      (
i->get())) {}
 
  864         else if (setLogX<TMultiGraph> (
i->get())) {}
 
  865         else if (setLogX<TLine>       (
i->get())) {}
 
  866         else if (setLogX<TEllipse>    (
i->get())) {}
 
  871   if (grid.count(
'x') || grid.count(
'X')) { gPad->SetGridx(); }
 
  872   if (grid.count(
'y') || grid.count(
'Y')) { gPad->SetGridy(); }
 
  875     gStyle->SetOptStat(stats);
 
  877     gStyle->SetOptFit(kFALSE);
 
  882     DEBUG(
"Draw " << (*i)->GetName() << 
' ' << (*i)->GetTitle() << endl);
 
  884     string buffer(option);
 
  892     TF1*         
f1 = 
dynamic_cast<TF1*
>        (
i->get());
 
  893     TGraph*      
g1 = 
dynamic_cast<TGraph*
>     (
i->get());
 
  894     TMultiGraph* q1 = 
dynamic_cast<TMultiGraph*
>(
i->get());
 
  901       if (g1->GetN() > 1 && drawLine)
 
  909       for (TIter i1(q1->GetListOfGraphs()); TGraph* gi = 
dynamic_cast<TGraph*
>(i1()); ) {
 
  911         string zbuf = buffer;
 
  913         if (gi->GetN() > 1 && drawLine)
 
  918         gi->Draw(zbuf.c_str());
 
  923       (*i).Draw(buffer.c_str());
 
  929   if (legend.is_valid()) {
 
  932       group = listOfObjects.size();
 
  935     Ssiz_t height = listOfObjects.size()/group;
 
  939       width = max(width, getWidth(
i->getLabel()));
 
  942     TLegend* lg = 
getLegend(width, height, legend.location, legend.factor);
 
  944     for (
size_t i = 0; 
i < listOfObjects.size(); 
i += group) {
 
  946       const JRootObject& 
object = listOfObjects[
i];
 
  948       if (dynamic_cast<TMarker*>(
object.
get()) == NULL  &&
 
  949           dynamic_cast<TLine*
>  (
object.get()) == NULL  &&
 
  950           dynamic_cast<TText*>  (
object.
get()) == NULL) {
 
  968   return (
master != NULL ? 0 : 1);
 
Utility class to parse command line options. 
 
then echo Test string reversed by master(hit< return > to continue)." $DIR/JProcess -c "$DIR/JEcho" -rC fi if (( 1 ))
 
int main(int argc, char *argv[])
 
std::string getLabel(const JLocation &location)
Get module label for monitoring and other applications. 
 
bool is_valid(const json &js)
Check validity of JSon data. 
 
#define MAKE_CSTRING(A)
Make C-string. 
 
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
 
const JPolynome f1(1.0, 2.0, 3.0)
Function. 
 
bool isTAttLine(const TObject *object)
Get drawing option of TH1. 
 
I/O formatting auxiliaries. 
 
void setLogarithmicX(TList *list)
Make x-axis of objects in list logarithmic (e.g. after using log10()). 
 
T & getInstance(const T &object)
Get static instance from temporary object. 
 
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object 
 
set_variable E_E log10(E_{fit}/E_{#mu})"
 
do set_variable OUTPUT_DIRECTORY $WORKDIR T
 
Template definition of auxiliary base class for comparison of data structures. 
 
TLegend * getLegend(const Int_t width, const Int_t height, const std::string option, const Double_t factor=1.0)
Get legend. 
 
General purpose messaging. 
 
static const char LABEL_TERMINATOR
label terminator 
 
void setRange(double &xmin, double &xmax, const bool logx)
Set axis range. 
 
std::istream & operator>>(std::istream &in, JAANET::JHead &header)
Read header from input. 
 
Auxiliary class to define a range between two values. 
 
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
 
Utility class to parse command line options. 
 
Auxiliary class to handle multiple boolean-like I/O. 
 
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. 
 
do set_variable MODULE getModule a $WORKDIR detector_a datx L $STRING JEditDetector a $WORKDIR detector_a datx M $MODULE setz o $WORKDIR detector_a datx JEditDetector a $WORKDIR detector_b datx M $MODULE setz o $WORKDIR detector_b datx done echo Output stored at $WORKDIR detector_a datx and $WORKDIR tripod_a txt JDrawDetector2D a $WORKDIR detector_a datx a $WORKDIR detector_b datx L BL o detector $FORMAT $BATCH JDrawDetector2D T $WORKDIR tripod_a txt T $WORKDIR tripod_b txt L BL o tripod $FORMAT $BATCH JCompareDetector a $WORKDIR detector_a datx b $WORKDIR detector_b datx o $WORKDIR abc root &dev null for KEY in X Y Z
 
bool equals(const JFirst_t &first, const JSecond_t &second, const double precision=std::numeric_limits< double >::min())
Check equality. 
 
#define DEBUG(A)
Message macros. 
 
Double_t g1(const Double_t x)
Function.