3 # \author mdejong, bofearraigh 
    7 # ------------------------------------------------------------------------------------------ 
    9 #                         Utility script to plot fit results of track reconstruction chain. 
   11 # ------------------------------------------------------------------------------------------ 
   14 if [ -z $JPP_DIR ]; 
then 
   15     echo "Variable JPP_DIR undefined." 
   20 source $JPP_DIR/setenv.sh $JPP_DIR
 
   23 # list of applications in the processing chain 
   32 #set_variable  BACKGROUND          -B 
   35 if ( do_usage $* ); 
then 
   36     usage "$script [input file [working directory [option]]]"\
 
   37           "\nWhere option can be N, E, LINE, LOGE." 
   47 # Number of prefits as a function of application (0 = all) 
   59 # Fit application identifier
 
   61 typeset -
A ENUMERATION
 
   79 LABEL[
N]=
"number of modules" 
  114     if [[ ! -
f $OUTPUT_FILE ]]; 
then 
  120         -
A ${ENUMERATION[${
APP}]}     \
 
  134         -\^ 
"number of events [a.u]"                   \
 
  145     for APP in prefit simplex gandalf; 
do 
  154         -
f $WORKDIR/quantiles\[prefit\].root:h21       \
 
  155         -
f $WORKDIR/quantiles\[simplex\].root:h21      \
 
  156         -
f $WORKDIR/quantiles\[gandalf\].root:h21      \
 
  157         -\> 
"$LABEL[${OPTION}]" $LOG[${
OPTION}]        \
 
  158         -\^ 
"resolution (reco muon) [deg]"             \
 
  162         -o 
$WORKDIR/resolution.gif                     $BACKGROUND
 
  172         -\^ 
"number of events [a.u.]"                  \
 
  173         -\> 
"E_{#mu} [GeV]"   $LOGX[${
OPTION}]         \
 
  189         -\> 
"E_{#mu} [GeV]"   $LOGX[${
OPTION}]         \
 
  190         -\< 
"E_{fit} [GeV]"   $LOGY[${
OPTION}]         \
 
  201         -
F "[0]*exp(-0.5*(x-[1])*(x-[1])/([2]*[2]))"   \
 
  202         -@ 
"p0 = 0.8*GetMaximum"                       \
 
  208         -\> 
"log10(E_{fit}/E_{true}) muon"             \
 
  217         -\> 
"R^{2} [m^{2}]"                            \
 
  229         -\> 
"R^{2} [m^{2}]"                            \
 
  241         -\^ 
"number of events [a.u]"                   \
 
void set_variable(const std::string &name, const std::string &value)
Set environment variable. 
 
esac typeset A NUMBER_OF_FIT NUMBER_OF_FIT
 
then check_input_file $DETECTOR $INPUT_FILE for OPTION in A B C D E F
 
then echo Variable JPP_DIR undefined exit fi source $JPP_DIR setenv sh $JPP_DIR APPLICATIONS
 
esac print_variable DETECTOR INPUT_FILE OUTPUT_FILE CDF for TYPE in
 
do set_variable OUTPUT_DIRECTORY $WORKDIR T
 
then print_variable DETECTOR INPUT_FILE INTERMEDIATE_FILE check_input_file $DETECTOR $INPUT_FILE check_output_file $INTERMEDIATE_FILE $OUTPUT_FILE JMCEvt f $INPUT_FILE o $INTERMEDIATE_FILE d
 
then usage $script[input file[working directory[option]]] nWhere option can be LINE
 
then JFileTuna f $INPUT_FILE
 
then for APP in event gandalf start energy
 
then usage $script< detector >< run >< outputfile > fi case set_variable OPTION
 
then usage $script[input file[working directory[option]]] nWhere option can be N
 
then usage $script< detector file >< inputfile > fi case set_variable WORKDIR
 
source $JPP_DIR setenv csh $JPP_DIR eval JShellParser o a A
 
then usage $script[input file[working directory[option]]] nWhere option can be E
 
#define DEBUG(A)
Message macros. 
 
then rm i $OUTPUT_FILE fi done for APP in $APPLICATIONS[*]