source: tags/release-1.3/src/Outputs/columns.cc @ 1391

Last change on this file since 1391 was 1153, checked in by MatthewWhiting, 11 years ago

Ticket #173 - Doing the same for the error on the total flux. Also fixing the interface with the VOTable output, and improving the way the catalogue specification handles deleted columns.

File size: 35.3 KB
Line 
1// -----------------------------------------------------------------------
2// columns.cc: Define a set of columns for Duchamp output.
3// -----------------------------------------------------------------------
4// Copyright (C) 2006, Matthew Whiting, ATNF
5//
6// This program is free software; you can redistribute it and/or modify it
7// under the terms of the GNU General Public License as published by the
8// Free Software Foundation; either version 2 of the License, or (at your
9// option) any later version.
10//
11// Duchamp is distributed in the hope that it will be useful, but WITHOUT
12// ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
13// FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License
14// for more details.
15//
16// You should have received a copy of the GNU General Public License
17// along with Duchamp; if not, write to the Free Software Foundation,
18// Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307, USA
19//
20// Correspondence concerning Duchamp may be directed to:
21//    Internet email: Matthew.Whiting [at] atnf.csiro.au
22//    Postal address: Dr. Matthew Whiting
23//                    Australia Telescope National Facility, CSIRO
24//                    PO Box 76
25//                    Epping NSW 1710
26//                    AUSTRALIA
27// -----------------------------------------------------------------------
28#include <iostream>
29#include <sstream>
30
31#include <math.h>
32#include <duchamp/duchamp.hh>
33#include <duchamp/fitsHeader.hh>
34#include <vector>
35#include <string>
36#include <duchamp/Detection/detection.hh>
37#include <duchamp/Outputs/columns.hh>
38
39namespace duchamp
40{
41
42  namespace Catalogues
43  {
44
45
46    Column::Column()
47    {
48      /// @brief Set the default values for the parameters.
49      this->itsWidth=1;
50      this->itsPrecision=0;
51      this->itsName=" ";
52      this->itsUnits=" ";
53      this->itsType="";
54      this->itsUCD = "";
55      this->itsDatatype = "";
56      this->itsExtraInfo="";
57      this->itsColID="";
58    }
59
60    Column::Column(std::string type)
61    {
62      operator=(defaultColumn(type));
63    }
64
65    Column::Column(const Column& c)
66    {
67      operator=(c);
68    }
69
70    Column& Column::operator=(const Column& c)
71    {
72      if(this==&c) return *this;
73      this->itsWidth = c.itsWidth;
74      this->itsPrecision = c.itsPrecision;
75      this->itsName = c.itsName;
76      this->itsUnits = c.itsUnits;
77      this->itsUCD = c.itsUCD;
78      this->itsDatatype = c.itsDatatype;
79      this->itsExtraInfo = c.itsExtraInfo;
80      this->itsColID = c.itsColID;
81      this->itsType = c.itsType;
82      return *this;
83    }
84
85    Column::Column(std::string type, std::string name, std::string units, int width, int prec, std::string ucd, std::string datatype, std::string colID, std::string extraInfo):
86      itsType(type), itsName(name), itsUnits(units), itsWidth(width), itsPrecision(prec), itsUCD(ucd), itsDatatype(datatype), itsColID(colID), itsExtraInfo(extraInfo)
87    {
88      /// A generic constructor designed to make a Column other than
89      /// the predefined ones listed in the Column namespace
90      /// \param name The title of the column
91      /// \param units What units the column takes
92      /// \param width The starting width
93      /// \param prec The starting precision
94      /// \param ucd The UCD relating to the quantity (VOTable use only)
95      /// \param datatype The datatype (float/char/int/etc) of the quantity (VOTable)
96      /// \param colID The column ID string used in the FIELD entry of a VOTable
97      /// \param extraInfo Other information used in the VOTable (eg. a reference to a COOSYS)
98   }
99
100    //------------------------------------------------------------
101
102    void Column::changePrec(int p)
103    {
104      /// A direct way to alter the precision without having to use
105      /// Column::upPrec(). If the precision increases, the width will
106      /// increase by the same amount. If it decreases, no change is
107      /// made to the width.
108      /// \param p The new precision value.
109
110      if(p > this->itsPrecision) this->itsWidth += (p-this->itsPrecision);
111      this->itsPrecision = p;
112
113    }
114   
115    //------------------------------------------------------------
116    void Column::printTitle(std::ostream &stream)
117    {
118      stream << std::setw(this->itsWidth)
119             << std::setfill(' ')
120             << this->itsName;
121    }
122
123    void Column::printUnits(std::ostream &stream)
124    {
125      stream << std::setw(this->itsWidth)
126             << std::setfill(' ')
127             << this->itsUnits;
128    }
129 
130    void Column::printDash (std::ostream &stream)
131    {
132      stream << std::setw(this->itsWidth)
133             << std::setfill('-')
134             << ""
135             << std::setfill(' ');
136    }
137
138    void Column::printBlank(std::ostream &stream)
139    {
140      stream << std::setw(this->itsWidth)
141             << std::setfill(' ')
142             << "";
143    }
144 
145    template <class T> void Column::printEntry(std::ostream &stream, T value)
146    {
147      ///  \param stream Where the printing is done.
148      ///  \param value  The value to be printed.
149
150      stream << std::setprecision(this->itsPrecision)
151             << std::setw(this->itsWidth)
152             << std::setfill(' ')
153             << value;
154    }
155    template void Column::printEntry<int>(std::ostream &stream, int value);
156    template void Column::printEntry<long>(std::ostream &stream, long value);
157    template void Column::printEntry<unsigned int>(std::ostream &stream, unsigned int value);
158    template void Column::printEntry<unsigned long>(std::ostream &stream, unsigned long value);
159    template void Column::printEntry<float>(std::ostream &stream, float value);
160    template void Column::printEntry<double>(std::ostream &stream, double value);
161    template void Column::printEntry<std::string>(std::ostream &stream, std::string value);
162
163 
164    bool Column::doCol(DESTINATION tableType, bool flagFint)
165    {
166      ///  @details Determines whether a given column is used for a
167      ///  given table type, based on the Column::type string.
168      /// \param tableType The type of table: one of FILE, SCREEN, LOG, VOTABLE.
169      /// \param flagFint Whether to use FINT (true) or FTOT
170      /// (false). This defaults to true, so need not be given. It only
171      /// applies to the screen and votable cases -- both are written for the
172      /// results file case.
173      /// \return True if column is used for given table type. False
174      /// otherwise. False if tableType not one of four listed.
175     
176 
177      std::string FileList[39]={"NUM","NAME","X","Y","Z","RA","DEC","VEL","MAJ","MIN","PA","WRA","WDEC",
178                                "W50","W20","WVEL","FINT", "FINTERR", "FTOT", "FTOTERR", "FPEAK","SNRPEAK",
179                                "X1","X2","Y1","Y2","Z1","Z2","NPIX","FLAG","XAV","YAV",
180                                "ZAV","XCENT","YCENT","ZCENT","XPEAK","YPEAK","ZPEAK"};
181      std::string ScreenList[22]={"NUM","NAME","X","Y","Z","RA","DEC","VEL","MAJ","MIN","PA",
182                                  "W50","FPEAK","SNRPEAK","X1","X2","Y1",
183                                  "Y2","Z1","Z2","NPIX","FLAG"};
184      std::string LogList[16]={"NUM","X","Y","Z","FTOT","FPEAK","SNRPEAK",
185                               "X1","X2","Y1","Y2","Z1","Z2","NPIX","NUMCH","SPATSIZE"};
186      std::string VOList[23]={"NUM","NAME","RAJD","DECJD","VEL","MAJ","MIN","PA",
187                            "W50","W20","WVEL","FPEAK","SNRPEAK","FLAG","XAV","YAV",
188                            "ZAV","XCENT","YCENT","ZCENT","XPEAK","YPEAK","ZPEAK"};
189
190      bool doIt=false;
191      if(tableType == FILE){
192        for(int i=0;i<38 && !doIt;i++) doIt = doIt || (this->itsType==FileList[i]);
193      }
194      else if(tableType == SCREEN){
195        if(this->itsType=="FTOT") doIt = !flagFint;
196        else if(this->itsType == "FINT") doIt = flagFint;
197        else for(int i=0;i<22 && !doIt;i++) doIt = doIt || (this->itsType==ScreenList[i]);
198      }
199      else if(tableType == LOG){
200        for(int i=0;i<16 && !doIt;i++) doIt = doIt || (this->itsType==LogList[i]);
201      }
202      else if(tableType == VOTABLE){
203        if(this->itsType=="FTOT" || this->itsType=="FTOTERR") doIt = !flagFint;
204        else if(this->itsType == "FINT" || this->itsType=="FINTERR") doIt = flagFint;
205        else for(int i=0;i<23 && !doIt;i++) doIt = doIt || (this->itsType==VOList[i]);
206      }
207      return doIt;
208       
209    }
210
211    Column defaultColumn(std::string type)
212    {
213      // type|name|units|width|prec|ucd|datatype|extraInfo
214      if (type == "NUM") return Column(type,"ObjID","",6,0,"meta.id","int","col_objnum","");
215      else if(type=="NAME") return Column(type,"Name","",8,0,"meta.id;meta.main","char","col_name","");
216      else if(type=="X") return Column(type,"X","",6,prXYZ,"pos.cartesian.x","float","col_x","");
217      else if(type=="Y") return Column(type,"Y","",6,prXYZ,"pos.cartesian.y","float","col_y","");
218      else if(type=="Z") return Column(type,"Z","",6,prXYZ,"pos.cartesian.z","float","col_z","");
219      else if(type=="RA") return Column(type,"RA","",11,0,"","char","col_ra",coordRef);
220      else if(type=="DEC") return Column(type,"DEC","",10,0,"","char","col_dec",coordRef);
221      else if(type=="RAJD") return Column(type,"RAJD","[deg]",11,prPOS,"","float","col_rajd",coordRef);
222      else if(type=="DECJD") return Column(type,"DECJD","[deg]",11,prPOS,"","float","col_decjd",coordRef);
223      else if(type=="VEL") return Column(type,"VEL","",7,prVEL,"","float","col_vel","");
224      else if(type=="MAJ") return Column(type,"MAJ","[deg]",6,prWPOS,"phys.angSize.smajAxis","float","col_maj",coordRef);
225      else if(type=="MIN") return Column(type,"MIN","[deg]",6,prWPOS,"phys.angSize.sminAxis","float","col_min",coordRef);
226      else if(type=="PA") return Column(type,"PA","[deg]",7,prWPOS,"pos.posAng;phys.angSize","float","col_pa",coordRef);
227      else if(type=="WRA") return Column(type,"w_RA","[arcmin]",9,prWPOS,"","float","col_wra",coordRef);
228      else if(type=="WDEC") return Column(type,"w_DEC","[arcmin]",9,prWPOS,"","float","col_wdec",coordRef);
229      else if(type=="W50") return Column(type,"w_50","",7,prVEL,"","float","col_w50","");
230      else if(type=="W20") return Column(type,"w_20","",7,prVEL,"","float","col_w20","");
231      else if(type=="WVEL") return Column(type,"w_VEL","",7,prVEL,"","float","col_wvel","");
232      else if(type=="FINT") return Column(type,"F_int","",10,prFLUX,"phot.flux.density.integrated","float","col_fint","");
233      else if(type=="FINTERR") return Column(type,"eF_int","",10,prFLUX,"phot.flux.density.integrated;stat.err","float","col_efint","");
234      else if(type=="FTOT") return Column(type,"F_tot","",10,prFLUX,"phot.flux.density","float","col_ftot","");
235      else if(type=="FTOTERR") return Column(type,"eF_tot","",10,prFLUX,"phot.flux.density;stat.err","float","col_eftot","");
236      else if(type=="FPEAK") return Column(type,"F_peak","",9,prFLUX,"phot.flux;stat.max","float","col_fpeak","");
237      else if(type=="SNRPEAK") return Column(type,"S/Nmax","",7,prSNR,"stat.snr;phot.flux","float","col_snrmax","");
238      else if(type=="X1") return Column(type,"X1","",4,0,"pos.cartesian.x;stat.min","int","col_x1","");
239      else if(type=="Y1") return Column(type,"Y1","",4,0,"pos.cartesian.y;stat.min","int","col_y1","");
240      else if(type=="Z1") return Column(type,"Z1","",4,0,"pos.cartesian.z;stat.min","int","col_z1","");
241      else if(type=="X2") return Column(type,"X2","",4,0,"pos.cartesian.x;stat.max","int","col_x2","");
242      else if(type=="Y2") return Column(type,"Y2","",4,0,"pos.cartesian.y;stat.max","int","col_y2","");
243      else if(type=="Z2") return Column(type,"Z2","",4,0,"pos.cartesian.z;stat.max","int","col_z2","");
244      else if(type=="NPIX") return Column(type,"Npix","[pix]",6,0,"","int","col_npix","");
245      else if(type=="FLAG") return Column(type,"Flag","",5,0,"meta.code.qual","char","col_flag","");
246      else if(type=="XAV") return Column(type,"X_av","",6,prXYZ,"pos.cartesian.x;stat.mean","float","col_xav","");
247      else if(type=="YAV") return Column(type,"Y_av","",6,prXYZ,"pos.cartesian.y;stat.mean","float","col_yav","");
248      else if(type=="ZAV") return Column(type,"Z_av","",6,prXYZ,"pos.cartesian.z;stat.mean","float","col_zav","");
249      else if(type=="XCENT") return Column(type,"X_cent","",7,prXYZ,"pos.cartesian.x;stat.centroid","float","col_xcent","");
250      else if(type=="YCENT") return Column(type,"Y_cent","",7,prXYZ,"pos.cartesian.y;stat.centroid","float","col_ycent","");
251      else if(type=="ZCENT") return Column(type,"Z_cent","",7,prXYZ,"pos.cartesian.z;stat.centroid","float","col_zcent","");
252      else if(type=="XPEAK") return Column(type,"X_peak","",7,prXYZ,"pos.cartesian.x;phot.flux;stat.max","int","col_xpeak","");
253      else if(type=="YPEAK") return Column(type,"Y_peak","",7,prXYZ,"pos.cartesian.y;phot.flux;stat.max","int","col_ypeak","");
254      else if(type=="ZPEAK") return Column(type,"Z_peak","",7,prXYZ,"pos.cartesian.z;phot.flux;stat.max","int","col_zpeak","");
255      else if(type=="NUMCH") return Column(type,"Nch","",6,0,"em.bin;stat.sum","int","col_nch","");
256      else if(type=="SPATSIZE") return Column(type,"Sp_size","",8,0,"instr.pixel;stat.sum","int","col_spsize","");
257      else {
258        Column col;
259        col.setType(type);
260        return col;
261      }
262
263    }
264
265    CatalogueSpecification getFullColSet(std::vector<Detection> &objectList, FitsHeader &head)
266    {
267      ///  @details A function that returns a catalogue specification
268      ///  containing information on the columns necessary for output
269      ///  to the results file:
270      ///  Obj#,NAME,X,Y,Z,RA,DEC,VEL,w_RA,w_DEC,w_VEL,F_tot,F_int,F_peak,
271      ///  X1,X2,Y1,Y2,Z1,Z2,Npix,Flag,
272      ///  XAV,YAV,ZAV,XCENT,YCENT,ZCENT,XPEAK,YPEAK,ZPEAK
273      ///
274      ///   Each object in the provided objectList is checked to see if it
275      ///   requires any column to be widened, or for that column to have
276      ///   its precision increased.
277      ///
278      ///   Both Ftot and Fint are provided -- it is up to the calling
279      ///   function to determine which to use.
280      ///
281      /// \param objectList A std::vector list of Detection objects that the
282      /// columns need to fit.
283      /// \param head The FitsHeader object defining the World Coordinate
284      /// System.
285      /// \return A CatalogueSpecification
286
287      CatalogueSpecification newset;
288
289      // desired precisions for fluxes, velocities and SNR value
290      int precVel,precFlux,precSNR;
291      if(objectList.size()>0){
292        precVel=objectList[0].getVelPrec();
293        precFlux=objectList[0].getFpeakPrec(); // same as FintPrec at this point.
294        precSNR=objectList[0].getSNRPrec();
295      }
296      else {
297        precVel = prVEL;
298        precFlux = prFLUX;
299        precSNR = prSNR;
300      }
301
302      // set up the default columns
303      newset.addColumn( Column("NUM") );
304      newset.addColumn( Column("NAME") );
305      newset.addColumn( Column("X") );
306      newset.addColumn( Column("Y") );
307      newset.addColumn( Column("Z") );
308      newset.addColumn( Column("RA") );
309      newset.addColumn( Column("DEC") );
310      newset.addColumn( Column("RAJD") );
311      newset.addColumn( Column("DECJD") );
312      newset.addColumn( Column("VEL") );
313      newset.addColumn( Column("MAJ") );
314      newset.addColumn( Column("MIN") );
315      newset.addColumn( Column("PA") );
316      newset.addColumn( Column("WRA") );
317      newset.addColumn( Column("WDEC") );
318      newset.addColumn( Column("W50") );
319      newset.addColumn( Column("W20") );
320      newset.addColumn( Column("WVEL") );
321      newset.addColumn( Column("FINT") );
322      newset.addColumn( Column("FINTERR") );
323      newset.addColumn( Column("FTOT") );
324      newset.addColumn( Column("FTOTERR") );
325      newset.addColumn( Column("FPEAK") );
326      newset.addColumn( Column("SNRPEAK") );
327      newset.addColumn( Column("X1") );
328      newset.addColumn( Column("X2") );
329      newset.addColumn( Column("Y1") );
330      newset.addColumn( Column("Y2") );
331      newset.addColumn( Column("Z1") );
332      newset.addColumn( Column("Z2") );
333      newset.addColumn( Column("NPIX") );
334      newset.addColumn( Column("FLAG") );
335      newset.addColumn( Column("XAV") );
336      newset.addColumn( Column("YAV") );
337      newset.addColumn( Column("ZAV") );
338      newset.addColumn( Column("XCENT") );
339      newset.addColumn( Column("YCENT") );
340      newset.addColumn( Column("ZCENT") );
341      newset.addColumn( Column("XPEAK") );
342      newset.addColumn( Column("YPEAK") );
343      newset.addColumn( Column("ZPEAK") );
344      newset.addColumn( Column("NUMCH") );
345      newset.addColumn( Column("SPATSIZE") );
346
347
348      // Now test each object against each new column
349      std::vector<Detection>::iterator obj;
350      for(obj = objectList.begin(); obj < objectList.end(); obj++){
351        std::string tempstr;
352        int tempwidth;
353        float val,minval;
354        double valD,minvalD;
355
356        // Obj#
357        tempwidth = int( log10(obj->getID()) + 1) + 1;
358        for(int i=newset.column("NUM").getWidth();i<tempwidth;i++) newset.column("NUM").widen();
359
360        // Name
361        tempwidth = obj->getName().size() + 1;
362        for(int i=newset.column("NAME").getWidth();i<tempwidth;i++) newset.column("NAME").widen();
363
364        // X position
365        val = obj->getXcentre() + obj->getXOffset();
366        if((val<1.)&&(val>0.)){
367          minval = pow(10, -1. * (newset.column("X").getPrecision()+1));
368          if(val < minval) newset.column("X").upPrec();
369        }
370        tempwidth = int( log10(val) + 1) + newset.column("X").getPrecision() + 2;
371        for(int i=newset.column("X").getWidth();i<tempwidth;i++) newset.column("X").widen();
372        // Y position
373        val = obj->getYcentre() + obj->getYOffset();
374        if((val<1.)&&(val>0.)){
375          minval = pow(10, -1. * (newset.column("Y").getPrecision()+1));
376          if(val < minval) newset.column("Y").upPrec();
377        }
378        tempwidth = int( log10(val) + 1) + newset.column("Y").getPrecision() + 2;
379        for(int i=newset.column("Y").getWidth();i<tempwidth;i++) newset.column("Y").widen();
380        // Z position
381        val = obj->getZcentre() + obj->getZOffset();
382        if((val<1.)&&(val>0.)){
383          minval = pow(10, -1. * (newset.column("Z").getPrecision()+1));
384          if((val>0.)&&(val < minval)) newset.column("Z").upPrec();
385        }
386        tempwidth = int( log10(val) + 1) + newset.column("Z").getPrecision() + 2;
387        for(int i=newset.column("Z").getWidth();i<tempwidth;i++) newset.column("Z").widen();
388
389        if(head.isWCS()){ 
390          // RA -- assign correct title. Check width but should be ok by definition
391          tempstr = head.lngtype();
392          newset.column("RA").setName(tempstr);
393          tempwidth = obj->getRAs().size() + 1;
394          for(int i=newset.column("RA").getWidth();i<tempwidth;i++) newset.column("RA").widen();
395     
396          // Dec -- assign correct title. Check width, should be ok by definition
397          tempstr = head.lattype();
398          newset.column("DEC").setName(tempstr);
399          tempwidth = obj->getDecs().size() + 1;
400          for(int i=newset.column("DEC").getWidth();i<tempwidth;i++) newset.column("DEC").widen();
401
402          // RA decimal degrees -- assign correct title. Check width but should be OK
403          tempstr = head.lngtype();
404          newset.column("RAJD").setName(tempstr);
405          valD = obj->getRA();
406          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("RAJD").getPrecision() + 2;
407          for(int i=newset.column("RAJD").getWidth();i<tempwidth;i++) newset.column("RAJD").widen();
408     
409          // Dec decimal degrees -- assign correct title. Check width but should be OK
410          tempstr = head.lattype();
411          newset.column("DECJD").setName(tempstr);
412          valD = obj->getDec();
413          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("DECJD").getPrecision() + 2;
414          for(int i=newset.column("DECJD").getWidth();i<tempwidth;i++) newset.column("DECJD").widen();
415
416          // Vel -- check width, title and units.
417          if(head.canUseThirdAxis()){
418            if(head.WCS().spec < 0)  // if it's not a spectral axis
419              newset.column("VEL").setName( head.WCS().ctype[2] );
420            else
421              newset.column("VEL").setName(head.getSpectralType());
422            tempwidth = newset.column("VEL").getName().size() + 1;
423            for(int i=newset.column("VEL").getWidth();i<tempwidth;i++) newset.column("VEL").widen();
424            if(head.getSpectralUnits().size()>0)
425              newset.column("VEL").setUnits("[" + head.getSpectralUnits() + "]");
426            tempwidth = newset.column("VEL").getUnits().size() + 1;
427            for(int i=newset.column("VEL").getWidth();i<tempwidth;i++) newset.column("VEL").widen();
428       
429            valD = obj->getVel();
430            if((fabs(valD) < 1.)&&(valD>0.)){
431              minvalD = pow(10, -1. * (newset.column("VEL").getPrecision()+1));
432              if(valD < minvalD) newset.column("VEL").upPrec();
433            }
434            tempwidth = int(log10(fabs(valD)) + 1) + newset.column("VEL").getPrecision() + 2;
435            if(valD<0) tempwidth++;
436            for(int i=newset.column("VEL").getWidth();i<tempwidth;i++) newset.column("VEL").widen();
437          }
438
439          // MAJ -- check width & title. leave units for the moment.
440          newset.column("MAJ").setUnits("["+head.getShapeUnits()+"]");
441          tempwidth = newset.column("MAJ").getUnits().size() + 1;
442          for(int i=newset.column("MAJ").getWidth();i<tempwidth;i++) newset.column("MAJ").widen();
443          valD = obj->getMajorAxis();
444          if((fabs(valD) < 1.)&&(valD>0.)){
445            minvalD = pow(10, -1. * (newset.column("MAJ").getPrecision()));
446            if(valD < minvalD) newset.column("MAJ").upPrec();
447          }
448          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("MAJ").getPrecision() + 2;
449          if(valD<0) tempwidth++;
450          for(int i=newset.column("MAJ").getWidth();i<tempwidth;i++) newset.column("MAJ").widen();
451
452          // MIN -- check width & title. leave units for the moment.
453          newset.column("MIN").setUnits("["+head.getShapeUnits()+"]");
454          tempwidth = newset.column("MIN").getUnits().size() + 1;
455          for(int i=newset.column("MIN").getWidth();i<tempwidth;i++) newset.column("MIN").widen();
456          valD = obj->getMinorAxis();
457          if((fabs(valD) < 1.)&&(valD>0.)){
458            minvalD = pow(10, -1. * (newset.column("MIN").getPrecision()));
459            if(valD < minvalD) newset.column("MIN").upPrec();
460          }
461          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("MIN").getPrecision() + 2;
462          if(valD<0) tempwidth++;
463          for(int i=newset.column("MIN").getWidth();i<tempwidth;i++) newset.column("MIN").widen();
464
465          // PA -- check width & title. leave units for the moment.
466          tempwidth = newset.column("PA").getUnits().size() + 1;
467          for(int i=newset.column("PA").getWidth();i<tempwidth;i++) newset.column("PA").widen();
468          valD = obj->getPositionAngle();
469          if((fabs(valD) < 1.)&&(valD>0.)){
470            minvalD = pow(10, -1. * (newset.column("PA").getPrecision()+1));
471            if(valD < minvalD) newset.column("PA").upPrec();
472          }
473          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("PA").getPrecision() + 2;
474          if(valD<0) tempwidth++;
475          for(int i=newset.column("PA").getWidth();i<tempwidth;i++) newset.column("PA").widen();
476
477          // w_RA -- check width & title. leave units for the moment.
478          tempstr = "w_" + head.lngtype();
479          newset.column("WRA").setName(tempstr);
480          tempwidth = newset.column("RA").getUnits().size() + 1;
481          for(int i=newset.column("WRA").getWidth();i<tempwidth;i++) newset.column("WRA").widen();
482          valD = obj->getRAWidth();
483          if((fabs(valD) < 1.)&&(valD>0.)){
484            minvalD = pow(10, -1. * (newset.column("WRA").getPrecision()+1));
485            if(valD < minvalD) newset.column("WRA").upPrec();
486          }
487          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("WRA").getPrecision() + 2;
488          if(valD<0) tempwidth++;
489          for(int i=newset.column("WRA").getWidth();i<tempwidth;i++) newset.column("WRA").widen();
490
491          // w_DEC -- check width & title. leave units for the moment.
492          tempstr = "w_" + head.lattype();
493          newset.column("WDEC").setName(tempstr);
494          tempwidth = newset.column("DEC").getUnits().size() + 1;
495          for(int i=newset.column("WDEC").getWidth();i<tempwidth;i++) newset.column("WDEC").widen();
496          valD = obj->getDecWidth();
497          if((fabs(valD) < 1.)&&(valD>0.)){
498            minvalD = pow(10, -1. * (newset.column("WDEC").getPrecision()+1));
499            if(valD < minvalD) newset.column("WDEC").upPrec();
500          }
501          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("WDEC").getPrecision() + 2;
502          if(valD<0) tempwidth++;
503          for(int i=newset.column("WDEC").getWidth();i<tempwidth;i++) newset.column("WDEC").widen();
504
505          // w_50 -- check width, title and units.
506          if(head.canUseThirdAxis()){
507            if(head.getSpectralUnits().size()>0)
508              newset.column("W50").setUnits("[" + head.getSpectralUnits() + "]");
509            tempwidth = newset.column("W50").getUnits().size() + 1;
510            for(int i=newset.column("W50").getWidth();i<tempwidth;i++) newset.column("W50").widen();
511            valD = obj->getW50();
512            if((fabs(valD) < 1.)&&(valD>0.)){
513              minvalD = pow(10, -1. * (newset.column("W50").getPrecision()+1));
514              if(valD < minvalD) newset.column("W50").upPrec();
515            }
516            tempwidth = int( log10(fabs(valD)) + 1) + newset.column("W50").getPrecision() + 2;
517            if(valD<0) tempwidth++;
518            for(int i=newset.column("W50").getWidth();i<tempwidth;i++) newset.column("W50").widen();
519          }
520
521          // w_20 -- check width, title and units.
522          if(head.canUseThirdAxis()){
523            if(head.getSpectralUnits().size()>0)
524              newset.column("W20").setUnits("[" + head.getSpectralUnits() + "]");
525            tempwidth = newset.column("W20").getUnits().size() + 1;
526            for(int i=newset.column("W20").getWidth();i<tempwidth;i++)newset.column("W20").widen();
527            valD = obj->getW20();
528            if((fabs(valD) < 1.)&&(valD>0.)){
529              minvalD = pow(10, -1. * (newset.column("W20").getPrecision()+1));
530              if(valD < minvalD) newset.column("W20").upPrec();
531            }
532            tempwidth = int( log10(fabs(valD)) + 1) + newset.column("W20").getPrecision() + 2;
533            if(valD<0) tempwidth++;
534            for(int i=newset.column("W20").getWidth();i<tempwidth;i++) newset.column("W20").widen();
535          }
536
537          // w_Vel -- check width, title and units.
538          if(head.canUseThirdAxis()){
539            if(head.WCS().spec < 0) // if it's not a spectral axis
540              newset.column("WVEL").setName( std::string("w_") + head.WCS().ctype[2] );
541            else
542              newset.column("WVEL").setName(std::string("w_")+head.getSpectralType());
543            if(head.getSpectralUnits().size()>0)
544              newset.column("WVEL").setUnits("[" + head.getSpectralUnits() + "]");
545            tempwidth = newset.column("WVEL").getUnits().size() + 1;
546            for(int i=newset.column("WVEL").getWidth();i<tempwidth;i++)newset.column("WVEL").widen();
547            tempwidth = newset.column("WVEL").getName().size() + 1;
548            for(int i=newset.column("WVEL").getWidth();i<tempwidth;i++) newset.column("WVEL").widen();
549            valD = obj->getVelWidth();
550            if((fabs(valD) < 1.)&&(valD>0.)){
551              minvalD = pow(10, -1. * (newset.column("WVEL").getPrecision()+1));
552              if(valD < minvalD) newset.column("WVEL").upPrec();
553            }
554            tempwidth = int( log10(fabs(valD)) + 1) + newset.column("WVEL").getPrecision() + 2;
555            if(valD<0) tempwidth++;
556            for(int i=newset.column("WVEL").getWidth();i<tempwidth;i++) newset.column("WVEL").widen();
557          }
558
559          // F_int -- check width & units
560          if(head.getIntFluxUnits().size()>0)
561            newset.column("FINT").setUnits("[" + head.getIntFluxUnits() + "]");
562          tempwidth = newset.column("FINT").getUnits().size() + 1;
563          for(int i=newset.column("FINT").getWidth();i<tempwidth;i++) newset.column("FINT").widen();
564          valD = obj->getIntegFlux();
565          if((fabs(valD) < 1.)// &&(valD>0.)
566             ){
567            int minprec = int(fabs(log10(fabs(valD))))+2;
568            for(int i=newset.column("FINT").getPrecision();i<minprec;i++) newset.column("FINT").upPrec();
569          }
570          tempwidth = int( log10(fabs(valD)) + 1) + newset.column("FINT").getPrecision() + 2;
571          if(valD<0) tempwidth++;
572          for(int i=newset.column("FINT").getWidth();i<tempwidth;i++) newset.column("FINT").widen();
573     
574          // eF_int -- check width & units
575          if(obj->getIntegFluxError()>0.){
576              if(head.getIntFluxUnits().size()>0)
577                  newset.column("FINTERR").setUnits("[" + head.getIntFluxUnits() + "]");
578              tempwidth = newset.column("FINTERR").getUnits().size() + 1;
579              for(int i=newset.column("FINTERR").getWidth();i<tempwidth;i++) newset.column("FINTERR").widen();
580              valD = obj->getIntegFluxError();
581              if((fabs(valD) < 1.)// &&(valD>0.)
582                  ){
583                  int minprec = int(fabs(log10(fabs(valD))))+2;
584                  for(int i=newset.column("FINTERR").getPrecision();i<minprec;i++) newset.column("FINTERR").upPrec();
585              }
586              tempwidth = int( log10(fabs(valD)) + 1) + newset.column("FINTERR").getPrecision() + 2;
587              if(valD<0) tempwidth++;
588              for(int i=newset.column("FINTERR").getWidth();i<tempwidth;i++) newset.column("FINTERR").widen();
589          }
590
591        }
592
593        // F_tot
594        newset.column("FTOT").setUnits("[" + head.getFluxUnits() + "]");
595        tempwidth = newset.column("FTOT").getUnits().size() + 1;
596        for(int i=newset.column("FTOT").getWidth();i<tempwidth;i++) newset.column("FTOT").widen();
597        val = obj->getTotalFlux();
598        //     std::cerr << val << "\n";
599        if((fabs(val) < 1.)// &&(val>0.)
600           ){
601          int minprec = int(fabs(log10(fabs(val))))+2;
602          for(int i=newset.column("FTOT").getPrecision();i<minprec;i++) newset.column("FTOT").upPrec();
603        }
604        tempwidth = int( log10(fabs(val)) + 1) + newset.column("FTOT").getPrecision() + 2;
605        if(val<0) tempwidth++;
606        for(int i=newset.column("FTOT").getWidth();i<tempwidth;i++) newset.column("FTOT").widen();
607
608        // eF_tot -- check width & units
609        if(obj->getIntegFluxError()>0.){
610            newset.column("FTOTERR").setUnits("[" + head.getFluxUnits() + "]");
611            tempwidth = newset.column("FTOTERR").getUnits().size() + 1;
612            for(int i=newset.column("FTOTERR").getWidth();i<tempwidth;i++) newset.column("FTOTERR").widen();
613            valD = obj->getTotalFluxError();
614            if((fabs(valD) < 1.)// &&(valD>0.)
615                ){
616                int minprec = int(fabs(log10(fabs(valD))))+2;
617                for(int i=newset.column("FTOTERR").getPrecision();i<minprec;i++) newset.column("FTOTERR").upPrec();
618              }
619            tempwidth = int( log10(fabs(valD)) + 1) + newset.column("FTOTERR").getPrecision() + 2;
620            if(valD<0) tempwidth++;
621            for(int i=newset.column("FTOTERR").getWidth();i<tempwidth;i++) newset.column("FTOTERR").widen();
622        }
623
624        // F_peak
625        newset.column("FPEAK").setUnits("[" + head.getFluxUnits() + "]");
626        tempwidth = newset.column("FPEAK").getUnits().size() + 1;
627        for(int i=newset.column("FPEAK").getWidth();i<tempwidth;i++) newset.column("FPEAK").widen();
628        val = obj->getPeakFlux();
629        if((fabs(val) < 1.)// &&(val>0.)
630           ){
631          int minprec = int(fabs(log10(fabs(val))))+2;
632          for(int i=newset.column("FPEAK").getPrecision();i<minprec;i++) newset.column("FPEAK").upPrec();
633        }
634        tempwidth = int( log10(fabs(val)) + 1) + newset.column("FPEAK").getPrecision() + 2;
635        if(val<0) tempwidth++;
636        for(int i=newset.column("FPEAK").getWidth();i<tempwidth;i++) newset.column("FPEAK").widen();
637
638        // S/N_peak
639        if(obj->getPeakSNR()>0.){
640            val = obj->getPeakSNR();
641            if((fabs(val) < 1.)&&(val>0.)){
642                minval = pow(10, -1. * (newset.column("SNRPEAK").getPrecision()+1));
643                if(val < minval) newset.column("SNRPEAK").upPrec();
644            }
645            tempwidth = int( log10(fabs(val)) + 1) + newset.column("SNRPEAK").getPrecision() +2;
646            if(val<0) tempwidth++;
647            for(int i=newset.column("SNRPEAK").getWidth();i<tempwidth;i++) newset.column("SNRPEAK").widen();
648        }
649
650        // X1 position
651        val = obj->getXmin() + obj->getXOffset();
652        tempwidth = int( log10(val) + 1) + newset.column("X1").getPrecision() + 1;
653        for(int i=newset.column("X1").getWidth();i<tempwidth;i++) newset.column("X1").widen();
654        // X2 position
655        val = obj->getXmax() + obj->getXOffset();
656        tempwidth = int( log10(val) + 1) + newset.column("X2").getPrecision() + 1;
657        for(int i=newset.column("X2").getWidth();i<tempwidth;i++) newset.column("X2").widen();
658        // Y1 position
659        val = obj->getYmin() + obj->getYOffset();
660        tempwidth = int( log10(val) + 1) + newset.column("Y1").getPrecision() + 1;
661        for(int i=newset.column("Y1").getWidth();i<tempwidth;i++) newset.column("Y1").widen();
662        // Y2 position
663        val = obj->getYmax() + obj->getYOffset();
664        tempwidth = int( log10(val) + 1) + newset.column("Y2").getPrecision() + 1;
665        for(int i=newset.column("Y2").getWidth();i<tempwidth;i++) newset.column("Y2").widen();
666        // Z1 position
667        val = obj->getZmin() + obj->getZOffset();
668        tempwidth = int( log10(val) + 1) + newset.column("Z1").getPrecision() + 1;
669        for(int i=newset.column("Z1").getWidth();i<tempwidth;i++) newset.column("Z1").widen();
670        // Z2 position
671        val = obj->getZmax() + obj->getZOffset();
672        tempwidth = int( log10(val) + 1) + newset.column("Z2").getPrecision() + 1;
673        for(int i=newset.column("Z2").getWidth();i<tempwidth;i++) newset.column("Z2").widen();
674
675        // Npix
676        tempwidth = int( log10(obj->getSize()) + 1) +
677          newset.column("NPIX").getPrecision() + 1;
678        for(int i=newset.column("NPIX").getWidth();i<tempwidth;i++) newset.column("NPIX").widen();
679   
680        // average X position
681        val = obj->getXaverage() + obj->getXOffset();
682        if((val<1.)&&(val>0.)){
683          minval = pow(10, -1. * (newset.column("XAV").getPrecision()+1));
684          if(val < minval) newset.column("XAV").upPrec();
685        }
686        tempwidth = int( log10(val) + 1) + newset.column("XAV").getPrecision() + 2;
687        for(int i=newset.column("XAV").getWidth();i<tempwidth;i++) newset.column("XAV").widen();
688        // average Y position
689        val = obj->getYaverage() + obj->getYOffset();
690        if((val<1.)&&(val>0.)){
691          minval = pow(10, -1. * (newset.column("YAV").getPrecision()+1));
692          if(val < minval) newset.column("YAV").upPrec();
693        }
694        tempwidth = int( log10(val) + 1) + newset.column("YAV").getPrecision() + 2;
695        for(int i=newset.column("YAV").getWidth();i<tempwidth;i++) newset.column("YAV").widen();
696        // average Z position
697        val = obj->getZaverage() + obj->getZOffset();
698        if((val<1.)&&(val>0.)){
699          minval = pow(10, -1. * (newset.column("ZAV").getPrecision()+1));
700          if((val>0.)&&(val < minval)) newset.column("ZAV").upPrec();
701        }
702        tempwidth = int( log10(val) + 1) + newset.column("ZAV").getPrecision() + 2;
703        for(int i=newset.column("ZAV").getWidth();i<tempwidth;i++) newset.column("ZAV").widen();
704   
705        // X position of centroid
706        val = obj->getXCentroid() + obj->getXOffset();
707        if((val<1.)&&(val>0.)){
708          minval = pow(10, -1. * (newset.column("XCENT").getPrecision()+1));
709          if(val < minval) newset.column("XCENT").upPrec();
710        }
711        tempwidth = int( log10(val) + 1) + newset.column("XCENT").getPrecision() + 2;
712        for(int i=newset.column("XCENT").getWidth();i<tempwidth;i++) newset.column("XCENT").widen();
713        // Y position of centroid
714        val = obj->getYCentroid() + obj->getYOffset();
715        if((val<1.)&&(val>0.)){
716          minval = pow(10, -1. * (newset.column("YCENT").getPrecision()+1));
717          if(val < minval) newset.column("YCENT").upPrec();
718        }
719        tempwidth = int( log10(val) + 1) + newset.column("YCENT").getPrecision() + 2;
720        for(int i=newset.column("YCENT").getWidth();i<tempwidth;i++) newset.column("YCENT").widen();
721        // Z position of centroid
722        val = obj->getZCentroid() + obj->getZOffset();
723        if((val<1.)&&(val>0.)){
724          minval = pow(10, -1. * (newset.column("ZCENT").getPrecision()+1));
725          if((val>0.)&&(val < minval)) newset.column("ZCENT").upPrec();
726        }
727        tempwidth = int( log10(val) + 1) + newset.column("ZCENT").getPrecision() + 2;
728        for(int i=newset.column("ZCENT").getWidth();i<tempwidth;i++) newset.column("ZCENT").widen();
729   
730        // X position of peak flux
731        val = obj->getXPeak() + obj->getXOffset();
732        if((val<1.)&&(val>0.)){
733          minval = pow(10, -1. * (newset.column("XPEAK").getPrecision()+1));
734          if(val < minval) newset.column("XPEAK").upPrec();
735        }
736        tempwidth = int( log10(val) + 1) + newset.column("XPEAK").getPrecision() + 2;
737        for(int i=newset.column("XPEAK").getWidth();i<tempwidth;i++) newset.column("XPEAK").widen();
738        // Y position of peak flux
739        val = obj->getYPeak() + obj->getYOffset();
740        if((val<1.)&&(val>0.)){
741          minval = pow(10, -1. * (newset.column("YPEAK").getPrecision()+1));
742          if(val < minval) newset.column("YPEAK").upPrec();
743        }
744        tempwidth = int( log10(val) + 1) + newset.column("YPEAK").getPrecision() + 2;
745        for(int i=newset.column("YPEAK").getWidth();i<tempwidth;i++) newset.column("YPEAK").widen();
746        // Z position of peak flux
747        val = obj->getZPeak() + obj->getZOffset();
748        if((val<1.)&&(val>0.)){
749          minval = pow(10, -1. * (newset.column("ZPEAK").getPrecision()+1));
750          if((val>0.)&&(val < minval)) newset.column("ZPEAK").upPrec();
751        }
752        tempwidth = int( log10(val) + 1) + newset.column("ZPEAK").getPrecision() + 2;
753        for(int i=newset.column("ZPEAK").getWidth();i<tempwidth;i++) newset.column("ZPEAK").widen();
754
755        //Number of contiguous channels
756        tempwidth = int( log10(obj->getMaxAdjacentChannels()) + 1) +
757          newset.column("NUMCH").getPrecision() + 1;
758        for(int i=newset.column("NUMCH").getWidth();i<tempwidth;i++) newset.column("NUMCH").widen();
759        //Spatial size
760        tempwidth = int( log10(obj->getSpatialSize()) + 1) +
761          newset.column("SPATSIZE").getPrecision() + 1;
762        for(int i=newset.column("SPATSIZE").getWidth();i<tempwidth;i++) newset.column("SPATSIZE").widen();
763       
764      }
765     
766      return newset;
767
768    }
769
770  }
771
772}
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