269{
272
274
279 int stats;
280 JLegend legend;
281 JRange_t X;
282 JRange_t Y;
283 JRange_t Z;
286 bool logz;
288 string xLabel;
289 string yLabel;
291 int fillArea;
292 int lineWidth;
293 double markerSize;
294 string option;
296 bool batch;
297 string title;
299 size_t group;
301 string xTimeFormat;
302
303 try {
304
306
307 JParser<> zap(
"General purpose plot program for 1D ROOT objects.");
308
309 zap[
'f'] =
make_field(inputFile,
"<input file>:<object name>");
311 zap[
'w'] =
make_field(canvas,
"size of canvas <nx>x<ny> [pixels]") =
JCanvas(500, 500);
314 zap[
'L'] =
make_field(legend,
"position legend e.g. TR [factor]") = JLegend(), JLegend(
"TL"), JLegend(
"TR"), JLegend(
"BR"), JLegend(
"BL");
315 zap[
'x'] =
make_field(X,
"abscissa range") = JRange_t::DEFAULT_RANGE();
316 zap[
'y'] =
make_field(Y,
"ordinate range") = JRange_t::DEFAULT_RANGE();
317 zap[
'z'] =
make_field(Z,
"ordinate range of projection)") = JRange_t::DEFAULT_RANGE();
318 zap[
'X'] =
make_field(logx,
"logarithmic x-axis (-XX log10 axis)");
319 zap[
'Y'] =
make_field(logy,
"logarithmic y-axis (-YY log10 axis)");
320 zap[
'Z'] =
make_field(logz,
"logarithmic y-axis; after projection");
321 zap[
'P'] =
make_field(project,
"projection") =
'\0',
'x',
'X',
'y',
'Y';
322 zap[
'>'] =
make_field(xLabel,
"x-axis label") =
"";
323 zap[
'^'] =
make_field(yLabel,
"y-axis label") =
"";
324 zap[
'C'] =
make_field(drawLine,
"draw line (-C black-and-white -CC colour)");
325 zap[
'F'] =
make_field(fillArea,
"fill area") = 0;
326 zap[
'l'] =
make_field(lineWidth,
"line width") = 2;
327 zap[
'S'] =
make_field(markerSize,
"marker size") = 1.0;
328 zap[
'O'] =
make_field(option,
"plotting option") =
"";
330 zap[
'B'] =
make_field(batch,
"batch processing");
331 zap[
'T'] =
make_field(title,
"graphics title ("
332 << "\"" << JName_t << "\" -> ROOT name; "
333 << "\"" << JTitle_t << "\" -> ROOT title)") = "KM3NeT preliminary";
335 zap[
'g'] =
make_field(group,
"group colour codes of objects") = 1;
336 zap[
't'] =
make_field(xTimeFormat,
"set time format for x-axis, e.g. \%d\\/\%m\\/\\%y%F1970-01-01 00:00:00") =
"";
338
339 zap(argc, argv);
340 }
341 catch(const exception &error) {
342 FATAL(error.what() << endl);
343 }
344
345
346 gROOT->SetBatch(batch);
347
348 TApplication* tp = new TApplication("user", NULL, NULL);
349 TCanvas* cv =
new TCanvas(
"c1",
"c1", canvas.
x, canvas.
y);
350
351 if (!batch) {
352 ((TRootCanvas *) cv->GetCanvasImp())->Connect("CloseWindow()", "TApplication", tp, "Terminate()");
353 }
354
355 unique_ptr<TStyle> gStyle(
new JStyle(
"gplot", cv->GetWw(), cv->GetWh(), parameters));
356
357 if (logy || logz) {
358 gStyle->SetTitleOffset(gStyle->GetTitleOffset() * 1.3, "Y");
359 }
360
361 gROOT->SetStyle("gplot");
362 gROOT->ForceStyle();
363
364 cv->SetFillStyle(4000);
365 cv->SetFillColor(kWhite);
366 cv->Divide(1,1);
367 cv->cd(1);
368
369
370 JMarkerAttributes::getInstance().setMarkerSize(markerSize);
371 JLineAttributes ::getInstance().setLineWidth (lineWidth);
372
373
374 Double_t xmin = numeric_limits<double>::max();
375 Double_t xmax = numeric_limits<double>::lowest();
376
377 Double_t ymin = numeric_limits<double>::max();
378 Double_t ymax = numeric_limits<double>::lowest();
379
380
382
386
387 if (logz) {
388 logy = logz;
389 }
390
391 if (px) {
392 swap(Y, Z);
393 }
394
395 if (py) {
396 swap(X, Z);
397 swap(Y, X);
398 }
399
400 TH1* master = NULL;
401
402 for (vector<JRootObjectID>::const_iterator input = inputFile.begin(); input != inputFile.end(); ++input) {
403
404 DEBUG(
"Input: " << *input << endl);
405
407
408 if (dir == NULL) {
409 ERROR(
"File: " << input->getFullFilename() <<
" not opened." << endl);
410 continue;
411 }
412
413 const TRegexp regexp(input->getObjectName());
414
415 TIter iter(dir->GetListOfKeys());
416
417 for (TKey* key; (
key = (TKey*) iter.Next()) != NULL; ) {
418
419 const TString tag(
key->GetName());
420
421 DEBUG(
"Key: " << tag <<
" match = " << tag.Contains(regexp) << endl);
422
423
424
425 if (tag.Contains(regexp) &&
isTObject(key)) {
426
427 if (title == JName_t) {
428 title =
key->GetName();
429 } else if (title == JTitle_t) {
430 title =
key->GetTitle();
431 }
432
434
435 TAttMarker marker = JMarkerAttributes::getInstance().get(0);
436 TAttLine line = JLineAttributes ::getInstance().get(0);
437
438 if (group > 1)
439 marker.SetMarkerColor(JMarkerAttributes::getInstance().get(
getSize(listOfObjects)/group).GetMarkerColor());
440 else
441 marker = JMarkerAttributes::getInstance().get(
getSize(listOfObjects));
442
443 if (drawLine == 1)
444 line = JLineAttributes::getInstance().get(
getSize(listOfObjects));
445 else
446 line.SetLineColor(marker.GetMarkerColor());
447
448
449
450 try {
451
452 TProfile& h1 = dynamic_cast<TProfile&>(*object);
453
454 object = h1.ProjectionX();
455 }
456 catch(exception&) {}
457
458 try {
459
460 TH2& h2 = dynamic_cast<TH2&>(*object);
461
462 if (px) {
463
464 if (Z.is_valid())
465 object = h2.ProjectionX(
MAKE_CSTRING(h2.GetName() <<
"_px" << LABEL_TERMINATOR << listOfObjects.size()),
466 h2.GetYaxis()->FindBin(Z.getLowerLimit()),
467 h2.GetYaxis()->FindBin(Z.getUpperLimit()) - 1);
468 else
469 object = h2.ProjectionX(
MAKE_CSTRING(h2.GetName() <<
"_px" << LABEL_TERMINATOR << listOfObjects.size()),
470 1,
471 h2.GetYaxis()->GetNbins());
472
473 } else if (py) {
474
475 if (Z.is_valid())
476 object = h2.ProjectionY(
MAKE_CSTRING(h2.GetName() <<
"_py" << LABEL_TERMINATOR << listOfObjects.size()),
477 h2.GetXaxis()->FindBin(Z.getLowerLimit()),
478 h2.GetXaxis()->FindBin(Z.getUpperLimit()) - 1);
479 else
480 object = h2.ProjectionY(
MAKE_CSTRING(h2.GetName() <<
"_py" << LABEL_TERMINATOR << listOfObjects.size()),
481 1,
482 h2.GetXaxis()->GetNbins());
483
484 } else {
485
486 ERROR(
"For 2D histograms, use option option -P for projections or use JPlot2D" << endl);
487
488 continue;
489 }
490 }
491 catch(exception&) {}
492
493 try {
494
495 TH3& h3 = dynamic_cast<TH3&>(*object);
496
497 if (px) {
498
499 object = h3.ProjectionX(
MAKE_CSTRING(h3.GetName() <<
"_px" << LABEL_TERMINATOR << listOfObjects.size()));
500
501 } else if (py) {
502
503 object = h3.ProjectionY(
MAKE_CSTRING(h3.GetName() <<
"_py" << LABEL_TERMINATOR << listOfObjects.size()));
504
505 } else if (pz) {
506
507 object = h3.ProjectionZ(
MAKE_CSTRING(h3.GetName() <<
"_pz" << LABEL_TERMINATOR << listOfObjects.size()));
508
509 } else {
510
511 ERROR(
"For 3D histograms, use option option -P for projections or use JPlot2D -P <projection>" << endl);
512
513 continue;
514 }
515 }
516 catch(exception&) {}
517
518
519
520 try {
521 if (dynamic_cast<TMarker*>(object.get()) == NULL) {
522 dynamic_cast<TAttMarker&>(*object) = marker;
523 }
524 }
525 catch(exception&) {}
526
527 try {
528 if (dynamic_cast<TLine*>(object.get()) == NULL) {
529 dynamic_cast<TAttLine&> (*object) = line;
530 }
531 }
532 catch(exception&) {}
533
534 if (fillArea != 0) {
535
536 try {
537
538 TAttFill& fill = dynamic_cast<TAttFill&>(*object);
539
541 fill.SetFillColor(marker.GetMarkerColor());
542 fill.SetFillStyle(abs(fillArea));
543 }
544 }
545 catch(exception&) {}
546 }
547
548
549
550 if (drawLine) {
551
552 try {
553
554 TH1& h1 = dynamic_cast<TH1&>(*object);
555
556 for (int i = 1; i <= h1.GetNbinsX(); ++i) {
557 h1.SetBinError(i, 0.0);
558 }
559 }
560 catch(exception&) {}
561
562 try {
563
564 TGraphErrors&
g1 =
dynamic_cast<TGraphErrors&
>(*object);
565
566 for (Int_t i = 0; i !=
g1.GetN(); ++i) {
569 }
570 }
571 catch(exception&) {}
572 }
573
574
575
576 try {
577
578 TH1& h1 = dynamic_cast<TH1&>(*object);
579
580 h1.SetStats(stats != -1);
581
582 xmin = min(xmin, h1.GetXaxis()->GetXmin());
583 xmax = max(xmax, h1.GetXaxis()->GetXmax());
584 ymin = min(ymin, logy ? h1.GetMinimum(0.0) : h1.GetMinimum());
585 ymax = max(ymax, h1.GetMaximum());
586
587 if (!logy && h1.GetListOfFunctions() != NULL) {
588 for (unique_ptr<TIterator>
iterator(h1.GetListOfFunctions()->MakeIterator()); TF1* f1 = (TF1*)
iterator->Next(); ) {
589 ymin = min(ymin, f1->GetMinimum(h1.GetXaxis()->GetXmin(), h1.GetXaxis()->GetXmax()));
590 ymax = max(ymax, f1->GetMaximum(h1.GetXaxis()->GetXmin(), h1.GetXaxis()->GetXmax()));
591 }
592 }
593 }
594 catch(exception&) {}
595
596 try {
597
598 TGraph&
g1 =
dynamic_cast<TGraph&
>(*object);
599
600 for (Int_t i = 0; i !=
g1.GetN(); ++i) {
601
602 xmin = min(xmin,
g1.GetX()[i]);
603 xmax = max(xmax,
g1.GetX()[i]);
604
605 if (!logy ||
g1.GetY()[i] > 0.0) {
606 ymin = min(ymin,
g1.GetY()[i]);
607 ymax = max(ymax,
g1.GetY()[i]);
608 }
609 }
610 }
611 catch(exception&) {}
612
613 try {
614
615 TGraphErrors&
g1 =
dynamic_cast<TGraphErrors&
>(*object);
616
617 for (Int_t i = 0; i !=
g1.GetN(); ++i) {
618 if (!logy ||
g1.GetY()[i] -
g1.GetEY()[i] > 0.0) { ymin = min(ymin,
g1.GetY()[i] -
g1.GetEY()[i]); }
619 if (!logy ||
g1.GetY()[i] +
g1.GetEY()[i] > 0.0) { ymax = max(ymax,
g1.GetY()[i] +
g1.GetEY()[i]); }
620 }
621 }
622 catch(exception&) {}
623
624 try {
625
626 TMultiGraph& m1 = dynamic_cast<TMultiGraph&>(*object);
627
628 for (TIter i1(m1.GetListOfGraphs()); TGraph*
g1 =
dynamic_cast<TGraph*
>(i1()); ) {
629
630 for (Int_t i = 0; i !=
g1->GetN(); ++i) {
631
632 xmin = min(xmin,
g1->GetX()[i]);
633 xmax = max(xmax,
g1->GetX()[i]);
634
635 if (!logy ||
g1->GetY()[i] > 0.0) {
636 ymin = min(ymin,
g1->GetY()[i]);
637 ymax = max(ymax,
g1->GetY()[i]);
638 }
639 }
640 }
641 }
642 catch(exception&) {}
643
644 try {
645
646 TF2& f2 = dynamic_cast<TF2&>(*object);
647 TF1* f1 = NULL;
648
649 TString formula = f2.GetExpFormula();
650 TString _z_ = TString::Format("%f", 0.5 * (Z.getLowerLimit() + Z.getUpperLimit()));
651
652 double __xmin;
653 double __xmax;
654 double __ymin;
655 double __ymax;
656
657 f2.GetRange(__xmin, __ymin, __xmax, __ymax);
658
659 if (px) {
660
661 formula.ReplaceAll("y", _z_);
662
663 f1 =
new TF1(
MAKE_CSTRING(f2.GetName() <<
"_px" << LABEL_TERMINATOR << listOfObjects.size()), formula);
664
665 f1->SetRange(__xmin, __xmax);
666
667 } else if (py) {
668
669 formula.ReplaceAll("x", _z_);
670 formula.ReplaceAll("y", "x");
671
672 f1 =
new TF1(
MAKE_CSTRING(f2.GetName() <<
"_py" << LABEL_TERMINATOR << listOfObjects.size()), formula);
673
674 f1->SetRange(__ymin, __ymax);
675
676 } else {
677
678 ERROR(
"For 2D functions, use option option -P for projections or use JPlot2D" << endl);
679
680 continue;
681 }
682
683 DEBUG(
"TF1: " << f1->GetExpFormula() << endl);
684
685 f1->SetParameters(f2.GetParameters());
686
687 object = f1;
688 }
689 catch(exception&) {}
690
691 try {
692
693 TF1& f1 = dynamic_cast<TF1&>(*object);
694
695 double __xmin;
696 double __xmax;
697
698 f1.GetRange(__xmin, __xmax);
699
700 xmin = min(xmin, __xmin);
701 xmax = max(xmax, __xmax);
702 ymin = min(ymin, f1.GetMinimum());
703 ymax = max(ymax, f1.GetMaximum());
704 }
705 catch(exception&) {}
706
707 try {
708
709 THStack& hs = dynamic_cast<THStack&>(*object);
710
711 NOTICE(
"THStack" << endl);
712
713 unique_ptr<TIterator>
iterator(hs.GetHists()->MakeIterator());
714
716
717 TH1& h1 = dynamic_cast<TH1&>(*i);
718
719 NOTICE(
"TH1[" << index <<
"] " << h1.GetName() << endl);
720
721 xmin = min(xmin, h1.GetXaxis()->GetXmin());
722 xmax = max(xmax, h1.GetXaxis()->GetXmax());
723
724 ymin = min(ymin, logy ? h1.GetMinimum(0.0) : h1.GetMinimum());
725 ymax = max(ymax, h1.GetMaximum());
726
727 h1.SetLineWidth(1);
728 h1.SetLineColor(kBlack);
729
730 h1.SetFillColor(JMarkerAttributes::getInstance().get(index).GetMarkerColor());
731 }
732 }
733 catch(exception&) {}
734
735 try {
736
737 TLine& h1 = dynamic_cast<TLine&>(*object);
738
739 xmin = min(xmin, h1.GetX1());
740 xmax = max(xmax, h1.GetX2());
741 ymin = min(ymin, h1.GetY1());
742 ymax = max(ymax, h1.GetY2());
743 }
744 catch(exception&) {}
745
746
747
748 for (TString buffer[] = { object.getLabel(), input->getFilename().c_str(), "" }, *i = buffer; *i != ""; ++i) {
749
750 *i = (*i)(TRegexp("\\[.*\\]"));
751
752 if (i->Length() > 2) {
753 object.setLabel((*i)(1, i->Length() - 2));
754 }
755 }
756
757 DEBUG(
"Add object: " << tag <<
" with label <" <<
object.
getLabel() <<
">" << endl);
758
759 if (master == NULL) {
760 master = dynamic_cast<TH1*>(object.get());
761 }
762
763 listOfObjects.push_back(object);
764 }
765 }
766 }
767
768 if (listOfObjects.empty()) {
769 ERROR(
"Nothing to draw." << endl);
770 }
771
773
774
775
776
777
778 TH1* h1 = dynamic_cast<TH1*> (i->get());
779 TGraph*
g1 =
dynamic_cast<TGraph*
> (i->get());
780 TMultiGraph* m1 = dynamic_cast<TMultiGraph*>(i->get());
781 TAttLine*
ls =
dynamic_cast<TAttLine*
> (i->get());
782
784
786
787 if (h1 != NULL) {
788
789 iterator.reset(h1->GetListOfFunctions()->MakeIterator());
790
791 }
else if (
g1 != NULL) {
792
793 iterator.reset(
g1->GetListOfFunctions()->MakeIterator());
794
795 } else if (m1 != NULL) {
796
797 for (TIter i1(m1->GetListOfGraphs()); TGraph* gi = dynamic_cast<TGraph*>(i1()); ) {
798 for (TIter i2(gi->GetListOfFunctions()); TF1* fi = dynamic_cast<TF1*>(i2()); ) {
800 }
801 }
802
804 }
805
807
808 Double_t x1[] = { numeric_limits<Double_t>::max(), numeric_limits<Double_t>::max() };
809 Double_t x2[] = { numeric_limits<Double_t>::lowest(), numeric_limits<Double_t>::lowest() };
810
811 for (
int nf = 0, ns = 0, nc = 1; TF1* f1 = (TF1*)
iterator->Next(); ++nf) {
812
813 f1->GetRange(x1[1], x2[1]);
814 f1->SetNpx(5000);
815
816 dynamic_cast<TAttLine&>(*f1) = JLineAttributes::getInstance().get(0);
817
818 if (
getSize(listOfObjects) == 1) {
819
820 if (x1[0] == x1[1] &&
821 x2[0] == x2[1])
822 ++nc;
823 else if (nf != 0)
824 ++ns;
825
826 f1->SetLineStyle(JLineAttributes ::getInstance().get(ns).GetLineStyle());
827 f1->SetLineColor(JMarkerAttributes::getInstance().get(nc).GetMarkerColor());
828
829 } else {
830
831
832
833 f1->SetLineColor(
ls->GetLineColor());
834 f1->SetLineStyle(JLineAttributes::getInstance().get(ns++).GetLineStyle());
835 }
836
837 x1[0] = x1[1];
838 x2[0] = x2[1];
839
840
841
842
843
844
845
846
847
848
849
850 }
851 }
852 }
853
854
855
856 if (X.is_valid()) {
857 xmin = X.getLowerLimit();
858 xmax = X.getUpperLimit();
859 }
860
861 if (Y.is_valid()) {
862 ymin = Y.getLowerLimit();
863 ymax = Y.getUpperLimit();
864 } else if (ymax > ymin) {
866 }
867
868 if (logy > 1) {
869 ymin =
pow(10.0, ymin);
870 ymax =
pow(10.0, ymax);
871 }
872
873 DEBUG(
"plot frame " << xmin <<
' ' << xmax <<
' ' << ymin <<
' ' << ymax << endl);
874
875 cv->cd(1);
876
877 if (!listOfObjects.empty()) {
878
879 if (master == NULL) {
880
881 master = new TH1D(MASTER.c_str(), NULL, 1000, xmin, xmax);
882
883 master->SetStats(kFALSE);
884
885 for (Int_t i = 1; i <= master->GetXaxis()->GetNbins(); ++i) {
886 master->SetBinContent(i, ymin);
887 }
888
889 DEBUG(
"Creating master " << MASTER <<
' ' << xmin <<
' ' << xmax <<
' ' << ymin << endl);
890 }
891 }
892
893 if (master == NULL) {
894
895 TText* p =
new TText(0.5, 0.5,
MAKE_CSTRING(
"No data"));
896
897 p->SetTextAlign(21);
898 p->SetTextAngle(45);
899 p->Draw();
900
901 } else {
902
903 if (logx) { gPad->SetLogx(); }
904 if (logy) { gPad->SetLogy(); }
905
906 master->SetTitle(title.c_str());
907
908 master->GetXaxis()->SetRangeUser(max(xmin,master->GetXaxis()->GetXmin()),
909 min(xmax,master->GetXaxis()->GetXmax()));
910
912 if (logx > 2) { master->GetXaxis()->SetNoExponent(); }
913
915 if (logy > 2) { master->GetYaxis()->SetNoExponent(); }
916
917 master->SetMinimum(ymin);
918 master->SetMaximum(ymax);
919
920 if (xLabel != "") { master->GetXaxis()->SetTitle(xLabel.c_str()); master->GetXaxis()->CenterTitle(true); }
921 if (yLabel != "") { master->GetYaxis()->SetTitle(yLabel.c_str()); master->GetYaxis()->CenterTitle(true); }
922
923 master->GetXaxis()->SetMoreLogLabels((logx == 1 && log10(xmax/xmin) < 2) ||
924 (logx > 1 && (xmax-xmin) < 2));
925 master->GetYaxis()->SetMoreLogLabels((logy == 1 && log10(ymax/ymin) < 2) ||
926 (logy > 1 && (ymax-ymin) < 2));
927
929 master->SetNdivisions(i->second, i->first.c_str());
930 }
931
932 if (xTimeFormat != "") {
933
934 master->GetXaxis()->SetTimeDisplay(1);
935
936 if (xTimeFormat == "utc") {
937 master->GetXaxis()->SetTimeFormat("#splitline{}{#splitline{%d-%m-%y}{ %H:%M}}");
938 master->GetXaxis()->SetTimeOffset(0.0, "gmt");
939 } else if (xTimeFormat == "UTC") {
940 master->GetXaxis()->SetTimeFormat("%d-%m-%y");
941 master->GetXaxis()->SetTimeOffset(0.0, "gmt");
942 } else {
943 master->GetXaxis()->SetTimeFormat(xTimeFormat.c_str());
944 }
945 }
946
947 master->Draw(option.c_str());
948 }
949
950 {
952
954 if (dynamic_cast<TH1*>(i->get()) != master) {
955 if (logx > 1) { setLog<typelist> X(i->get(), 'X'); }
956 if (logy > 1) { setLog<typelist> Y(i->get(), 'Y'); }
957 }
958 }
959 }
960
961 if (grid.count('x') || grid.count('X')) { gPad->SetGridx(); }
962 if (grid.count('y') || grid.count('Y')) { gPad->SetGridy(); }
963
964 if (stats != -1)
965 gStyle->SetOptStat(stats);
966 else
967 gStyle->SetOptFit(kFALSE);
968
969
970 for (vector<JRootObject>::const_iterator i = listOfObjects.begin(); i != listOfObjects.end(); ++i) {
971
972 DEBUG(
"Draw " << (*i)->GetName() <<
' ' << (*i)->GetTitle() << endl);
973
974 string buffer(option);
975
976
977
978
979
980 buffer += "SAME";
981
982 TF1* f1 = dynamic_cast<TF1*> (i->get());
983 TGraph*
g1 =
dynamic_cast<TGraph*
> (i->get());
984 TMultiGraph* q1 = dynamic_cast<TMultiGraph*>(i->get());
985
986 if (f1 != NULL) {
987 f1->SetNpx(5000);
988 }
989
991 if (
g1->GetN() > 1 && drawLine)
992 buffer += "L";
993 else if (fillArea == 0 ||
994 (
dynamic_cast<TGraphErrors*
> (
g1) == NULL &&
995 dynamic_cast<TGraphAsymmErrors*
>(
g1) == NULL))
996 buffer += "P";
997 }
998
999 if (q1 != NULL) {
1000
1001 for (TIter i1(q1->GetListOfGraphs()); TGraph* gi = dynamic_cast<TGraph*>(i1()); ) {
1002
1003 string zbuf = buffer;
1004
1005 if (gi->GetN() > 1 && drawLine)
1006 zbuf += "L";
1007 else
1008 zbuf += "P";
1009
1010 gi->Draw(zbuf.c_str());
1011 }
1012
1013 } else {
1014
1015 (*i).Draw(buffer.c_str());
1016 }
1017 }
1018
1019
1020
1021 if (legend.is_valid()) {
1022
1023 if (group == 0) {
1024 group = listOfObjects.size();
1025 }
1026
1027 Ssiz_t height = 0;
1028 Ssiz_t width = 1;
1029
1030 for (size_t i = 0; i < listOfObjects.size(); i += group) {
1031
1033
1034 if (is_legend(object.get())) {
1035 height += 1;
1036 width = max(width, getWidth(
object.
getLabel()));
1037 }
1038 }
1039
1040 TLegend* lg =
getLegend(width, height, legend.location, legend.factor);
1041
1042 for (size_t i = 0; i < listOfObjects.size(); i += group) {
1043
1045
1046 if (is_legend(object.get())) {
1047 lg->AddEntry(
object,
" " +
object.
getLabel(),
isTAttLine(
object) || option.find(
"HIST") != string::npos || option.find(
"hist") != string::npos ?
"L" :
isTAttFill(
object) && fillArea != 0 ?
"F" :
"P");
1048 }
1049 }
1050
1051 lg->Draw();
1052 }
1053
1054 cv->Update();
1055
1058 }
1059
1060 if (!batch) {
1061 tp->Run();
1062 }
1063
1064 return (master != NULL ? 0 : 1);
1065}
#define DEBUG(A)
Message macros.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
#define MAKE_CSTRING(A)
Make C-string.
Double_t g1(const Double_t x)
Function.
Utility class to parse parameter values.
Auxiliary data structure for TObject with a user defined label.
Utility class to parse command line options.
Data structure for size of TCanvas.
int y
number of pixels in Y
int x
number of pixels in X
Wrapper class around ROOT TStyle.
std::string getLabel(const JLocation &location)
Get module label for monitoring and other applications.
void setLogarithmicX(TList *list)
Make x-axis of objects in list logarithmic (e.g. after using log10()).
void setRange(double &xmin, double &xmax, const bool logx)
Set axis range.
bool isTAttFill(const TObject *object)
Get drawing option of object.
TDirectory * getDirectory(const JRootObjectID &id)
Get TDirectory pointer.
void setLogarithmicY(TList *list)
Make y-axis of objects in list logarithmic (e.g. after using log10()).
bool isTObject(const TKey *key)
Check if given key corresponds to a TObject.
bool isTAttLine(const TObject *object)
Get drawing option of object.
size_t getSize(T(&array)[N])
Get size of c-array.
T pow(const T &x, const double y)
Power .
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
TLegend * getLegend(const Int_t width, const Int_t height, const std::string option, const Double_t factor=1.0)
Get legend.
Auxiliary class to handle multiple boolean-like I/O.
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
JProperties getProperties()
Get properties of this class.
Auxiliary data structure to list files in directory.