source: tags/release-1.1.8/src/fitsHeader.cc @ 1391

Last change on this file since 1391 was 598, checked in by MatthewWhiting, 15 years ago

The three bugfixes for changesets [586],[587],[588].

File size: 9.4 KB
Line 
1// -----------------------------------------------------------------------
2// fitsHeader.cc: Information about the FITS file's header.
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#include <string>
31#include <stdlib.h>
32#include <wcslib/wcs.h>
33#include <wcslib/wcsunits.h>
34#include <duchamp/duchamp.hh>
35#include <duchamp/param.hh>
36#include <duchamp/fitsHeader.hh>
37#include <duchamp/Utils/utils.hh>
38
39namespace duchamp
40{
41
42  FitsHeader::FitsHeader()
43  {
44    this->wcs = (struct wcsprm *)calloc(1,sizeof(struct wcsprm));
45    this->wcs->flag=-1;
46    wcsini(true, 3, this->wcs);
47    this->wcsIsGood = false;
48    this->nwcs = 0;
49    this->scale=1.;
50    this->offset=0.;
51    this->power=1.;
52    this->fluxUnits="counts";
53    this->intFluxUnits="counts";
54  }
55
56  FitsHeader::~FitsHeader()
57  {
58    /// @details Uses the WCSLIB function wcsvfree to clear the wcsprm struct.
59    wcsvfree(&nwcs,&wcs);
60  }
61
62  FitsHeader::FitsHeader(const FitsHeader& h)
63  {
64    operator=(h);
65  }
66
67  FitsHeader& FitsHeader::operator= (const FitsHeader& h)
68  {
69    if(this == &h) return *this;
70    this->wcs = (struct wcsprm *)calloc(1,sizeof(struct wcsprm));
71    this->wcs->flag     = -1;
72    wcsini(true, h.wcs->naxis, this->wcs);
73    wcscopy(true, h.wcs, this->wcs);
74    wcsset(this->wcs);
75    this->nwcs          = h.nwcs;
76    this->wcsIsGood     = h.wcsIsGood;
77    this->naxis         = h.naxis;
78    this->spectralUnits = h.spectralUnits;
79    this->fluxUnits     = h.fluxUnits;
80    this->intFluxUnits  = h.intFluxUnits;
81    this->beamSize      = h.beamSize;
82    this->bmajKeyword   = h.bmajKeyword;
83    this->bminKeyword   = h.bminKeyword;
84    this->bpaKeyword    = h.bpaKeyword;
85    this->blankKeyword  = h.blankKeyword;
86    this->bzeroKeyword  = h.bzeroKeyword;
87    this->bscaleKeyword = h.bscaleKeyword;
88    this->scale         = h.scale;
89    this->offset        = h.offset;
90    this->power         = h.power;
91    return *this;
92  }
93
94  void FitsHeader::setWCS(struct wcsprm *w)
95  {
96    ///  A function that assigns the wcs parameters, and runs
97    ///   wcsset to set it up correctly.
98    ///  Performs a check to see if the WCS is good (by looking at
99    ///   the lng and lat wcsprm parameters), and sets the wcsIsGood
100    ///   flag accordingly.
101    /// \param w A WCSLIB wcsprm struct with the correct parameters.
102
103    wcscopy(true, w, this->wcs);
104    wcsset(this->wcs);
105    if( (w->lng!=-1) && (w->lat!=-1) ) this->wcsIsGood = true;
106  }
107
108  struct wcsprm *FitsHeader::getWCS()
109  {
110    ///  A function that returns a properly initilized wcsprm object
111    ///  corresponding to the WCS.
112
113    struct wcsprm *wNew = (struct wcsprm *)calloc(1,sizeof(struct wcsprm));
114    wNew->flag=-1;
115    wcsini(true, this->wcs->naxis, wNew);
116    wcscopy(true, this->wcs, wNew);
117    wcsset(wNew);
118    return wNew;
119  }
120
121  int FitsHeader::wcsToPix(const double *world, double *pix)
122  {     
123    return wcsToPixSingle(this->wcs, world, pix); 
124  }
125  int FitsHeader::wcsToPix(const double *world, double *pix, const int npts)
126  {
127    return wcsToPixMulti(this->wcs, world, pix, npts); 
128  }
129  int FitsHeader::pixToWCS(const double *pix, double *world)
130  {   
131    return pixToWCSSingle(this->wcs, pix, world); 
132  }
133  int FitsHeader::pixToWCS(const double *pix, double *world, const int npts)
134  {
135    return pixToWCSMulti(this->wcs, pix,world, npts); 
136  }
137
138
139  double FitsHeader::pixToVel(double &x, double &y, double &z)
140  {
141    double vel;
142    if(this->wcsIsGood){
143      double *pix   = new double[3];
144      double *world = new double[3];
145      pix[0] = x; pix[1] = y; pix[2] = z;
146      pixToWCSSingle(this->wcs,pix,world);
147      vel = this->specToVel(world[2]);
148      delete [] pix;
149      delete [] world;
150    }
151    else vel = z;
152    return vel;
153  }
154
155  double* FitsHeader::pixToVel(double &x, double &y, double *zarray, int size)
156  {
157    double *newzarray = new double[size];
158    if(this->wcsIsGood){
159      double *pix   = new double[size*3];
160      for(int i=0;i<size;i++){
161        pix[3*i]   = x;
162        pix[3*i+1] = y;
163        pix[3*i+2] = zarray[i];
164      }
165      double *world = new double[size*3];
166      pixToWCSMulti(this->wcs,pix,world,size);
167      delete [] pix;
168      for(int i=0;i<size;i++) newzarray[i] = this->specToVel(world[3*i+2]);
169      delete [] world;
170    }
171    else{
172      for(int i=0;i<size;i++) newzarray[i] = zarray[i];
173    }
174    return newzarray;
175  }
176
177  double FitsHeader::specToVel(const double &coord)
178  {
179    double vel;
180    if(power==1.0) vel =  coord*this->scale + this->offset;
181    else vel = pow( (coord*this->scale + this->offset), this->power);
182    return vel;
183  }
184
185  double FitsHeader::velToSpec(const float &velocity)
186  {
187    //   return velToCoord(this->wcs,velocity,this->spectralUnits);};
188    return (pow(velocity, 1./this->power) - this->offset) / this->scale;
189  }
190
191  std::string FitsHeader::getIAUName(double ra, double dec)
192  {
193    if(strcmp(this->wcs->lngtyp,"RA")==0)
194      return getIAUNameEQ(ra, dec, this->wcs->equinox);
195    else
196      return getIAUNameGAL(ra, dec);
197  }
198
199  bool FitsHeader::needBeamSize()
200  {
201    ///  A function that tells you whether the beam correction is
202    ///  needed. It checks to see whether the flux units string ends in
203    ///  "/beam" (in which case the beam size etc is needed and
204    ///  integrated fluxes need to be corrected).
205    ///  /return True if FitsHeader::fluxUnits ends in "/beam". False
206    ///  otherwise.
207
208    int size = this->fluxUnits.size();
209    if(size<6) return false;
210    else {
211      std::string tailOfFluxUnits = makelower(this->fluxUnits.substr(size-5,size));
212      return (tailOfFluxUnits == "/beam");
213    }
214  }
215
216  void FitsHeader::fixUnits(Param &par)
217  {
218    ///  Put the units for the FITS header into some sort of standard form.
219    ///
220    ///  We first get the desired spectral units from the Parameter set,
221    ///  and then transform the spectral units of the wcsprm struct to
222    ///  those units. If this doesn't work, we leave them as they are. If
223    ///  they are blank, we make them SPC and give an error message --
224    ///  this should hopefully NOT happen.
225    ///
226    ///  We also work out the units for the integrated flux. If there are
227    ///  three axes, we just append the spectral units to the flux units
228    ///  (removing "/beam" if it is present). If there are just two, we
229    ///  simply keep it the same, removing the "/beam".
230    ///
231    ///  \param par The parameter set telling us what the desired
232    ///             spectral units are.
233
234    // define spectral units from the param set
235    this->spectralUnits = par.getSpectralUnits();
236    double sc=1.;
237    double of=0.;
238    double po=1.;
239    //   if((this->wcsIsGood) && (this->naxis>2)){
240    if(this->wcsIsGood){
241      int status = wcsunits( this->wcs->cunit[this->wcs->spec],
242                             (char *)this->spectralUnits.c_str(),
243                             &sc, &of, &po);
244      if(status > 0){
245        std::stringstream errmsg;
246        errmsg << "WCSUNITS Error, Code = " << status
247               << ": " << wcsunits_errmsg[status] << "\n";
248        if(status == 10)
249          errmsg << "Tried to get conversion from \""
250                 << this->wcs->cunit[this->wcs->spec] << "\" to \""
251                 << this->spectralUnits.c_str() << "\".\n";
252        this->spectralUnits = this->wcs->cunit[this->wcs->spec];
253        if(this->spectralUnits==""){
254          errmsg << "Spectral units not specified. "
255                 << "For data presentation, we will use dummy units of \"SPC\"."
256                 << "\n"
257                 << "Please report this occurence -- it should not happen now! "
258                 << "In the meantime, you may want to set the CUNIT"
259                 << this->wcs->spec + 1 <<" keyword to make this work.\n";
260          this->spectralUnits = "SPC";
261        }
262        duchampError("fixUnits", errmsg.str());
263      }
264
265    }
266    this->scale = sc;
267    this->offset= of;
268    this->power = po;
269
270    this->setIntFluxUnits();
271
272  }
273
274  void FitsHeader::setIntFluxUnits()
275  {
276
277    /// Work out the integrated flux units, based on the spectral
278    /// units. If flux is per beam, trim the /beam from the flux
279    /// units. Then, if as long as the image is 3D, multiply by the
280    /// spectral units.
281
282    if(this->fluxUnits.size()>5){
283   
284      if(makelower(this->fluxUnits.substr(this->fluxUnits.size()-5,
285                                          this->fluxUnits.size()   )) == "/beam"){
286        this->intFluxUnits = this->fluxUnits.substr(0,this->fluxUnits.size()-5);
287      }
288      else this->intFluxUnits = this->fluxUnits;
289
290    }
291    else this->intFluxUnits = this->fluxUnits;
292
293    if(!this->flag2D) this->intFluxUnits += " " + this->spectralUnits;
294
295  }
296
297}
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