source: tags/release-1.0/src/param.cc @ 1323

Last change on this file since 1323 was 110, checked in by Matthew Whiting, 18 years ago

Final update of config-related files, as well as COPYING and README.
Minor fixes to plotting.cc and plots.hh.
mainDuchamp makes use of header info from config.h.
Added a fix to param.cc to get be able to print true/false even when
boolalpha not defined.
Final update to Guide, included Installation instructions.

File size: 26.6 KB
Line 
1#include <iostream>
2#include <iomanip>
3#include <fstream>
4#include <sstream>
5#include <string>
6#include <math.h>
7#include <wcs.h>
8#include <wcsunits.h>
9#include <duchamp.hh>
10#include <param.hh>
11#include <Utils/utils.hh>
12
13// Define funtion to print bools as words, in case the compiler doesn't recognise
14// the setf(ios::boolalpha) command...
15#ifdef HAVE_STDBOOL_H
16string stringize(bool b){
17  std::stringstream ss;
18  ss.setf(std::ios::boolalpha);
19  ss << b;
20  return ss.str();
21}
22#else
23string stringize(bool b){
24  std::string output;
25  if(b) output="true";
26  else output="false";
27  return output;
28}
29#endif
30
31using std::setw;
32using std::endl;
33
34/****************************************************************/
35///////////////////////////////////////////////////
36//// Functions for FitsHeader class:
37///////////////////////////////////////////////////
38
39FitsHeader::FitsHeader(){
40  this->wcs = new wcsprm;
41  this->wcs->flag=-1;
42  wcsini(true,3,this->wcs);
43  this->wcsIsGood = false;
44  this->nwcs = 0;
45  this->scale=1.;
46  this->offset=0.;
47  this->power=1.;
48  this->fluxUnits="counts";
49}
50
51FitsHeader::FitsHeader(const FitsHeader& h){
52  this->wcs = new wcsprm;
53  this->wcs->flag=-1;
54  wcsini(true,h.wcs->naxis,this->wcs);
55  wcscopy(true,h.wcs,this->wcs);
56  wcsset(this->wcs);
57  nwcs = h.nwcs;
58  wcsIsGood = h.wcsIsGood;
59  spectralUnits = h.spectralUnits;
60  fluxUnits = h.fluxUnits;
61  intFluxUnits = h.intFluxUnits;
62  beamSize = h.beamSize;
63  bmajKeyword = h.bmajKeyword;
64  bminKeyword = h.bminKeyword;
65  blankKeyword = h.blankKeyword;
66  bzeroKeyword = h.bzeroKeyword;
67  bscaleKeyword = h.bscaleKeyword;
68  scale = h.scale;
69  offset = h.offset;
70  power = h.power;
71}
72
73FitsHeader& FitsHeader::operator= (const FitsHeader& h){
74  this->wcs = new wcsprm;
75  this->wcs->flag=-1;
76  wcsini(true,h.wcs->naxis,this->wcs);
77  wcscopy(true,h.wcs,this->wcs);
78  wcsset(this->wcs);
79  nwcs = h.nwcs;
80  wcsIsGood = h.wcsIsGood;
81  spectralUnits = h.spectralUnits;
82  fluxUnits = h.fluxUnits;
83  intFluxUnits = h.intFluxUnits;
84  beamSize = h.beamSize;
85  bmajKeyword = h.bmajKeyword;
86  bminKeyword = h.bminKeyword;
87  blankKeyword = h.blankKeyword;
88  bzeroKeyword = h.bzeroKeyword;
89  bscaleKeyword = h.bscaleKeyword;
90  scale = h.scale;
91  offset = h.offset;
92  power = h.power;
93}
94
95void FitsHeader::setWCS(wcsprm *w)
96{
97  /**
98   * FitsHeader::setWCS(wcsprm *)
99   *  A function that assigns the wcs parameters, and runs
100   *   wcsset to set it up correctly.
101   *  Performs a check to see if the WCS is good (by looking at
102   *   the lng and lat wcsprm parameters), and sets the wcsIsGood
103   *   flag accordingly.
104   */
105  wcscopy(true,w,this->wcs);
106  wcsset(this->wcs);
107  if( (w->lng!=-1) && (w->lat!=-1) ) this->wcsIsGood = true;
108}
109
110wcsprm *FitsHeader::getWCS()
111{
112  /**
113   * FitsHeader::getWCS()
114   *  A function that returns a wcsprm object corresponding to the WCS.
115   */
116  wcsprm *wNew = new wcsprm;
117  wNew->flag=-1;
118  wcsini(true,this->wcs->naxis,wNew);
119  wcscopy(true,this->wcs,wNew);
120  wcsset(wNew);
121  return wNew;
122}
123
124int     FitsHeader::wcsToPix(const double *world, double *pix){
125  return wcsToPixSingle(this->wcs,world,pix);}
126int     FitsHeader::wcsToPix(const double *world, double *pix, const int npts){
127  return wcsToPixMulti(this->wcs,world,pix,npts);}
128int     FitsHeader::pixToWCS(const double *pix, double *world){
129  return pixToWCSSingle(this->wcs,pix,world);}
130int     FitsHeader::pixToWCS(const double *pix, double *world, const int npts){
131  return pixToWCSMulti(this->wcs,pix,world,npts);}
132
133double  FitsHeader::pixToVel(double &x, double &y, double &z)
134{
135//   return pixelToVelocity(this->wcs,x,y,z,this->spectralUnits);};
136  double *pix   = new double[3];
137  double *world = new double[3];
138  pix[0] = x; pix[1] = y; pix[2] = z;
139  pixToWCSSingle(this->wcs,pix,world);
140  double vel = this->specToVel(world[2]);
141  delete [] pix;
142  delete [] world;
143  return vel;
144}
145
146double* FitsHeader::pixToVel(double &x, double &y, double *zarray, int size)
147{
148//   return pixelToVelocity(this->wcs,x,y,z,this->spectralUnits);};
149  double *pix   = new double[size*3];
150  for(int i=0;i<size;i++){
151    pix[3*i] = x; pix[3*i+1] = y; pix[3*i+2] = zarray[i];
152  }
153  double *world = new double[size*3];
154  pixToWCSMulti(this->wcs,pix,world,size);
155  delete [] pix;
156  double *newzarray = new double[size];
157  for(int i=0;i<size;i++) newzarray[i] = this->specToVel(world[3*i+2]);
158  delete [] world;
159  return newzarray;
160}
161
162double  FitsHeader::specToVel(const double &coord)
163{
164//   return coordToVel(this->wcs,coord,this->spectralUnits);};
165  double vel;
166  if(power==1.0){
167//     std::cerr << coord << " --> " << coord*this->scale + this->offset << std::endl;
168    vel =  coord*this->scale + this->offset;
169  }
170  else vel = pow( (coord*this->scale + this->offset), this->power);
171
172  return vel;
173}
174
175double  FitsHeader::velToSpec(const float &velocity)
176{
177//   return velToCoord(this->wcs,velocity,this->spectralUnits);};
178  return (pow(velocity, 1./this->power) - this->offset) / this->scale;}
179
180string  FitsHeader::getIAUName(double ra, double dec)
181{
182  if(strcmp(this->wcs->lngtyp,"RA")==0) return getIAUNameEQ(ra, dec, this->wcs->equinox);
183  else return getIAUNameGAL(ra, dec);
184}
185
186void FitsHeader::fixUnits(Param &par)
187{
188  // define spectral units from the param set
189  this->spectralUnits = par.getSpectralUnits();
190
191  double sc=1.;
192  double of=0.;
193  double po=1.;;
194  if(this->wcsIsGood){
195    int flag = wcsunits( this->wcs->cunit[2], this->spectralUnits.c_str(), &sc, &of, &po);
196    if(flag>0){
197      std::cerr << "ERROR <fixUnits> : WCSUNITS Error Code = " << flag << ": "
198                << wcsunits_errmsg[flag] << std::endl;
199      if(flag==10)
200        std::cerr<<"                   Tried to get conversion from '" << wcs->cunit[2]
201                 << "' to '" << this->spectralUnits.c_str() << "'\n";
202//       std::cerr << "                   Using coordinate value instead\n";
203      this->spectralUnits = this->wcs->cunit[2];
204      if(this->spectralUnits==""){
205        std::cerr << "                   Setting coordinates to 'XX' for clarity.\n";
206        this->spectralUnits = "XX";
207      }
208    }
209  }
210  this->scale = sc;
211  this->offset= of;
212  this->power = po;
213
214  // work out the integrated flux units, based on the spectral units
215  // if flux is per beam, trim the /beam from the flux units and multiply by the spectral units.
216  // otherwise, just muliply by the spectral units.
217  if(this->fluxUnits.size()>0){
218    if(this->fluxUnits.substr(this->fluxUnits.size()-5,this->fluxUnits.size())=="/beam"){
219      this->intFluxUnits = this->fluxUnits.substr(0,this->fluxUnits.size()-5)
220        +" " +this->spectralUnits;
221    }
222    else this->intFluxUnits = fluxUnits + " " + this->spectralUnits;
223  }
224
225}
226
227/****************************************************************/
228///////////////////////////////////////////////////
229//// Accessor Functions for Parameter class:
230///////////////////////////////////////////////////
231Param::Param(){
232  /**
233   * Param()
234   *  Default intial values for the parameters.
235   * imageFile has no default value!
236   */
237  // Input files
238  this->imageFile       = "";
239  this->flagSubsection  = false;
240  this->subsection      = "[*,*,*]";
241  this->flagReconExists = false;
242  this->reconFile       = "";
243  // Output files
244  this->flagLog         = true;
245  this->logFile         = "duchamp-Logfile.txt";
246  this->outFile         = "duchamp-Results.txt";
247  this->spectraFile     = "duchamp-Spectra.ps";
248  this->flagOutputRecon = false;
249  this->flagOutputResid = false;
250  this->flagVOT         = false;
251  this->votFile         = "duchamp-Results.xml";
252  this->flagKarma       = false;
253  this->karmaFile       = "duchamp-Results.ann";
254  this->flagMaps        = true;
255  this->detectionMap    = "duchamp-DetectionMap.ps";
256  this->momentMap       = "duchamp-MomentMap.ps";
257  // Cube related parameters
258  this->flagBlankPix    = true;
259  this->blankPixValue   = -8.00061;
260  this->blankKeyword    = 1;
261  this->bscaleKeyword   = -8.00061;
262  this->bzeroKeyword    = 0.;
263  this->flagUsingBlank  = false;
264  this->nanAsBlank      = false;
265  this->flagMW          = false;
266  this->maxMW           = 112;
267  this->minMW           = 75;
268  this->numPixBeam      = 0.;
269  // Trim-related         
270  this->flagTrimmed     = false;
271  this->borderLeft      = 0;
272  this->borderRight     = 0;
273  this->borderBottom    = 0;
274  this->borderTop       = 0;
275  // Subsection offsets
276  this->xSubOffset      = 0;
277  this->ySubOffset      = 0;
278  this->zSubOffset      = 0;
279  // Baseline related
280  this->flagBaseline    = false;
281  // Detection-related   
282  this->flagNegative    = false;
283  // Object growth       
284  this->flagGrowth      = false;
285  this->growthCut       = 2.;
286  // FDR analysis         
287  this->flagFDR         = false;
288  this->alphaFDR        = 0.01;
289  // Other detection     
290  this->snrCut          = 3.;
291  // A trous reconstruction parameters
292  this->flagATrous      = true;
293  this->reconDim        = 3;
294  this->scaleMin        = 1;
295  this->snrRecon        = 4.;
296  this->filterCode      = 1;
297  // Volume-merging parameters
298  this->flagAdjacent    = true;
299  this->threshSpatial   = 3.;
300  this->threshVelocity  = 7.;
301  this->minChannels     = 3;
302  this->minPix          = 2;
303  // Input-Output related
304  this->spectralMethod  = "peak";
305  this->borders         = true;
306  this->verbose         = true;
307  this->spectralUnits   = "km/s";
308};
309
310/****************************************************************/
311///////////////////////////////////////////////////
312//// Other Functions using the  Parameter class:
313///////////////////////////////////////////////////
314
315string makelower( string s )
316{
317  // "borrowed" from Matt Howlett's 'fred'
318  string out = "";
319  for( int i=0; i<s.size(); ++i ) {
320    out += tolower(s[i]);
321  }
322  return out;
323}
324
325void Param::readParams(string paramfile)
326{
327
328  std::ifstream fin(paramfile.c_str());
329  string line;
330  string sval;
331  float fval;
332  int ival;
333  bool bval;
334  while( !std::getline(fin,line,'\n').eof()){
335
336    if(line[0]!='#'){
337      std::stringstream ss;
338      ss.str(line);
339      string arg;
340      ss >> arg;     
341      if(makelower(arg)=="imagefile"){       ss >> sval; this->imageFile = sval;}
342      if(makelower(arg)=="flagsubsection"){  ss >> bval; this->flagSubsection = bval; }
343      if(makelower(arg)=="subsection"){      ss >> sval; this->subsection = sval; }
344      if(makelower(arg)=="flagreconexists"){ ss >> bval; this->flagReconExists = bval; }
345      if(makelower(arg)=="reconfile"){       ss >> sval; this->reconFile = sval; }
346
347      if(makelower(arg)=="flaglog"){         ss >> bval; this->flagLog = bval; }
348      if(makelower(arg)=="logfile"){         ss >> sval; this->logFile = sval; }
349      if(makelower(arg)=="outfile"){         ss >> sval; this->outFile = sval; }
350      if(makelower(arg)=="spectrafile"){     ss >> sval; this->spectraFile = sval; }
351      if(makelower(arg)=="flagoutputrecon"){ ss >> bval; this->flagOutputRecon = bval; }
352      if(makelower(arg)=="flagoutputresid"){ ss >> bval; this->flagOutputResid = bval; }
353      if(makelower(arg)=="flagvot"){         ss >> bval; this->flagVOT = bval; }
354      if(makelower(arg)=="votfile"){         ss >> sval; this->votFile = sval; }
355      if(makelower(arg)=="flagkarma"){       ss >> bval; this->flagKarma = bval; }
356      if(makelower(arg)=="karmafile"){       ss >> sval; this->karmaFile = sval; }
357      if(makelower(arg)=="flagmaps"){        ss >> bval; this->flagMaps = bval; }
358      if(makelower(arg)=="detectionmap"){    ss >> sval; this->detectionMap = sval; }
359      if(makelower(arg)=="momentmap"){       ss >> sval; this->momentMap = sval; }
360
361      if(makelower(arg)=="flagnegative"){    ss >> bval; this->flagNegative = bval;}
362      if(makelower(arg)=="flagblankpix"){    ss >> bval; this->flagBlankPix = bval; }
363      if(makelower(arg)=="blankpixvalue"){   ss >> fval; this->blankPixValue = fval; }
364      if(makelower(arg)=="flagmw"){          ss >> bval; this->flagMW = bval; }
365      if(makelower(arg)=="maxmw"){           ss >> ival; this->maxMW = ival; }
366      if(makelower(arg)=="minmw"){           ss >> ival; this->minMW = ival; }
367
368      if(makelower(arg)=="flagbaseline"){    ss >> bval; this->flagBaseline = bval; }
369      if(makelower(arg)=="minpix"){          ss >> ival; this->minPix = ival; }
370      if(makelower(arg)=="flaggrowth"){      ss >> bval; this->flagGrowth = bval; }
371      if(makelower(arg)=="growthcut"){       ss >> fval; this->growthCut = fval; }
372
373      if(makelower(arg)=="flagfdr"){         ss >> bval; this->flagFDR = bval; }
374      if(makelower(arg)=="alphafdr"){        ss >> fval; this->alphaFDR = fval; }
375
376      if(makelower(arg)=="snrcut"){          ss >> fval; this->snrCut = fval; }
377
378      if(makelower(arg)=="flagatrous"){      ss >> bval; this->flagATrous = bval; }
379      if(makelower(arg)=="recondim"){        ss >> ival; this->reconDim = ival; }
380      if(makelower(arg)=="scalemin"){        ss >> ival; this->scaleMin = ival; }
381      if(makelower(arg)=="snrrecon"){        ss >> fval; this->snrRecon = fval; }
382      if(makelower(arg)=="filtercode"){      ss >> ival; this->filterCode = ival; }
383
384      if(makelower(arg)=="flagadjacent"){    ss >> bval; this->flagAdjacent = bval; }
385      if(makelower(arg)=="threshspatial"){   ss >> fval; this->threshSpatial = fval; }
386      if(makelower(arg)=="threshvelocity"){  ss >> fval; this->threshVelocity = fval; }
387      if(makelower(arg)=="minchannels"){     ss >> ival; this->minChannels = ival; }
388
389      if(makelower(arg)=="spectralmethod"){  ss >> sval; this->spectralMethod = makelower(sval); }
390      if(makelower(arg)=="spectralunits"){   ss >> sval; this->spectralUnits = makelower(sval); }
391      if(makelower(arg)=="drawborders"){     ss >> bval; this->borders = bval; }
392      if(makelower(arg)=="verbose"){         ss >> bval; this->verbose = bval; }
393    }
394  }
395}
396
397
398std::ostream& operator<< ( std::ostream& theStream, Param& par)
399{
400  // Only show the [blankPixValue] bit if we are using the parameter
401  // otherwise we have read it from the FITS header.
402  string blankParam = "";
403  if(par.getFlagUsingBlank()) blankParam = "[blankPixValue]";
404
405  // BUG -- can get error: `boolalpha' is not a member of type `ios' -- old compilers: gcc 2.95.3?
406//   theStream.setf(std::ios::boolalpha);
407  theStream.setf(std::ios::left);
408  theStream  <<"---- Parameters ----"<<endl;
409  theStream  << std::setfill('.');
410  if(par.getFlagSubsection())
411    theStream<<setw(38)<<"Image to be analysed"                 
412             <<setw(18)<<setiosflags(std::ios::right)  <<"[imageFile]"
413             <<"  =  " <<resetiosflags(std::ios::right)
414             <<(par.getImageFile()+par.getSubsection())   <<endl;
415  else
416    theStream<<setw(38)<<"Image to be analysed"                 
417             <<setw(18)<<setiosflags(std::ios::right)  <<"[imageFile]"
418             <<"  =  " <<resetiosflags(std::ios::right)<<par.getImageFile()      <<endl;
419  if(par.getFlagReconExists() && par.getFlagATrous()){
420    theStream<<setw(38)<<"Reconstructed array exists?"         
421             <<setw(18)<<setiosflags(std::ios::right)  <<"[reconExists]"
422             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagReconExists())<<endl;
423    theStream<<setw(38)<<"FITS file containing reconstruction" 
424             <<setw(18)<<setiosflags(std::ios::right)  <<"[reconFile]"
425             <<"  =  " <<resetiosflags(std::ios::right)<<par.getReconFile()      <<endl;
426  }
427  theStream  <<setw(38)<<"Intermediate Logfile"
428             <<setw(18)<<setiosflags(std::ios::right)  <<"[logFile]"
429             <<"  =  " <<resetiosflags(std::ios::right)<<par.getLogFile()        <<endl;
430  theStream  <<setw(38)<<"Final Results file"                   
431             <<setw(18)<<setiosflags(std::ios::right)  <<"[outFile]"
432             <<"  =  " <<resetiosflags(std::ios::right)<<par.getOutFile()        <<endl;
433  theStream  <<setw(38)<<"Spectrum file"                       
434             <<setw(18)<<setiosflags(std::ios::right)  <<"[spectraFile]"
435             <<"  =  " <<resetiosflags(std::ios::right)<<par.getSpectraFile()    <<endl;
436  if(par.getFlagVOT()){
437    theStream<<setw(38)<<"VOTable file"                         
438             <<setw(18)<<setiosflags(std::ios::right)  <<"[votFile]"
439             <<"  =  " <<resetiosflags(std::ios::right)<<par.getVOTFile()        <<endl;
440  }
441  if(par.getFlagKarma()){
442    theStream<<setw(38)<<"Karma annotation file"               
443             <<setw(18)<<setiosflags(std::ios::right)  <<"[karmaFile]"
444             <<"  =  " <<resetiosflags(std::ios::right)<<par.getKarmaFile()      <<endl;
445  }
446  if(par.getFlagMaps()){
447    theStream<<setw(38)<<"0th Moment Map"                       
448             <<setw(18)<<setiosflags(std::ios::right)  <<"[momentMap]"
449             <<"  =  " <<resetiosflags(std::ios::right)<<par.getMomentMap()      <<endl;
450    theStream<<setw(38)<<"Detection Map"                       
451             <<setw(18)<<setiosflags(std::ios::right)  <<"[detectionMap]"
452             <<"  =  " <<resetiosflags(std::ios::right)<<par.getDetectionMap()   <<endl;
453  }
454  if(par.getFlagATrous()){                             
455    theStream<<setw(38)<<"Saving reconstructed cube?"           
456             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagoutputrecon]"
457             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagOutputRecon())<<endl;
458    theStream<<setw(38)<<"Saving residuals from reconstruction?"
459             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagoutputresid]"
460             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagOutputResid())<<endl;
461  }                                                   
462  theStream  <<"------"<<endl;
463  theStream  <<setw(38)<<"Searching for Negative features?"     
464             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagNegative]"
465             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagNegative())   <<endl;
466  theStream  <<setw(38)<<"Fixing Blank Pixels?"                 
467             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagBlankPix]"
468             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagBlankPix())   <<endl;
469  if(par.getFlagBlankPix()){
470    theStream<<setw(38)<<"Blank Pixel Value"                   
471             <<setw(18)<<setiosflags(std::ios::right)  << blankParam
472             <<"  =  " <<resetiosflags(std::ios::right)<<par.getBlankPixVal()    <<endl;
473  }
474  theStream  <<setw(38)<<"Removing Milky Way channels?"         
475             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagMW]"
476             <<"  =  " <<resetiosflags(std::ios::right)<<par.getFlagMW()         <<endl;
477  if(par.getFlagMW()){
478    theStream<<setw(38)<<"Milky Way Channels"                   
479             <<setw(18)<<setiosflags(std::ios::right)  <<"[minMW - maxMW]"
480             <<"  =  " <<resetiosflags(std::ios::right)<<par.getMinMW()
481             <<"-" <<par.getMaxMW()          <<endl;
482  }
483  theStream  <<setw(38)<<"Beam Size (pixels)"                   
484             <<setw(18)<<setiosflags(std::ios::right)  <<""
485             <<"  =  " <<resetiosflags(std::ios::right)<<par.getBeamSize()       <<endl;
486  theStream  <<setw(38)<<"Removing baselines before search?"   
487             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagBaseline]"
488             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagBaseline())   <<endl;
489  theStream  <<setw(38)<<"Minimum # Pixels in a detection"     
490             <<setw(18)<<setiosflags(std::ios::right)  <<"[minPix]"
491             <<"  =  " <<resetiosflags(std::ios::right)<<par.getMinPix()         <<endl;
492  theStream  <<setw(38)<<"Minimum # Channels in a detection"   
493             <<setw(18)<<setiosflags(std::ios::right)  <<"[minChannels]"
494             <<"  =  " <<resetiosflags(std::ios::right)<<par.getMinChannels()    <<endl;
495  theStream  <<setw(38)<<"Growing objects after detection?"     
496             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagGrowth]"
497             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagGrowth())     <<endl;
498  if(par.getFlagGrowth()) {                           
499    theStream<<setw(38)<<"SNR Threshold for growth"             
500             <<setw(18)<<setiosflags(std::ios::right)  <<"[growthCut]"
501             <<"  =  " <<resetiosflags(std::ios::right)<<par.getGrowthCut()      <<endl;
502  }
503  theStream  <<setw(38)<<"Using A Trous reconstruction?"       
504             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagATrous]"
505             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagATrous())     <<endl;
506  if(par.getFlagATrous()){                             
507    theStream<<setw(38)<<"Number of dimensions in reconstruction"     
508             <<setw(18)<<setiosflags(std::ios::right)  <<"[reconDim]"
509             <<"  =  " <<resetiosflags(std::ios::right)<<par.getReconDim()       <<endl;
510    theStream<<setw(38)<<"Minimum scale in reconstruction"     
511             <<setw(18)<<setiosflags(std::ios::right)  <<"[scaleMin]"
512             <<"  =  " <<resetiosflags(std::ios::right)<<par.getMinScale()       <<endl;
513    theStream<<setw(38)<<"SNR Threshold within reconstruction" 
514             <<setw(18)<<setiosflags(std::ios::right)  <<"[snrRecon]"
515             <<"  =  " <<resetiosflags(std::ios::right)<<par.getAtrousCut()      <<endl;
516    theStream<<setw(38)<<"Filter being used for reconstruction"
517             <<setw(18)<<setiosflags(std::ios::right)  <<"[filterCode]"
518             <<"  =  " <<resetiosflags(std::ios::right)<<par.getFilterCode()
519             << " (" << par.getFilterName()  << ")" <<endl;
520  }                                                   
521  theStream  <<setw(38)<<"Using FDR analysis?"                 
522             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagFDR]"
523             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagFDR())        <<endl;
524  if(par.getFlagFDR()){                               
525    theStream<<setw(38)<<"Alpha value for FDR analysis"         
526             <<setw(18)<<setiosflags(std::ios::right)  <<"[alphaFDR]"
527             <<"  =  " <<resetiosflags(std::ios::right)<<par.getAlpha()          <<endl;
528  }                                                   
529  else {
530    theStream<<setw(38)<<"SNR Threshold"                       
531             <<setw(18)<<setiosflags(std::ios::right)  <<"[snrCut]"
532             <<"  =  " <<resetiosflags(std::ios::right)<<par.getCut()            <<endl;
533  }
534  theStream  <<setw(38)<<"Using Adjacent-pixel criterion?"     
535             <<setw(18)<<setiosflags(std::ios::right)  <<"[flagAdjacent]"
536             <<"  =  " <<resetiosflags(std::ios::right)<<stringize(par.getFlagAdjacent())   <<endl;
537  if(!par.getFlagAdjacent()){
538    theStream<<setw(38)<<"Max. spatial separation for merging" 
539             <<setw(18)<<setiosflags(std::ios::right)  <<"[threshSpatial]"
540             <<"  =  " <<resetiosflags(std::ios::right)<<par.getThreshS()        <<endl;
541  }
542  theStream  <<setw(38)<<"Max. velocity separation for merging"
543             <<setw(18)<<setiosflags(std::ios::right)  <<"[threshVelocity]"
544             <<"  =  " <<resetiosflags(std::ios::right)<<par.getThreshV()        <<endl;
545  theStream  <<setw(38)<<"Method of spectral plotting"         
546             <<setw(18)<<setiosflags(std::ios::right)  <<"[spectralMethod]"
547             <<"  =  " <<resetiosflags(std::ios::right)<<par.getSpectralMethod() <<endl;
548  theStream  <<"--------------------"<<endl;
549  theStream  << std::setfill(' ');
550  theStream.unsetf(std::ios::left);
551  //  theStream.unsetf(std::ios::boolalpha);
552}
553
554void Param::parseSubsection()
555{
556  std::stringstream ss;
557  ss.str(this->subsection);
558  bool removeStep = false;
559  string x,y,z;
560  getline(ss,x,'[');
561  getline(ss,x,',');
562  getline(ss,y,',');
563  getline(ss,z,']');
564  char *end;
565  if(x!="*") {
566    int x1,x2,dx;
567    int a = x.find(':');  // first occurence of ':' in x-subsection string
568    int b = x.find(':',a+1); // location of second ':' -- will be -1 if there is no second occurence.
569    x1 = atoi( x.substr(0,a).c_str() ); // minimum x in subsection
570    this->xSubOffset = x1 - 1;
571    if(b>0){ // there is a dx component
572      x2 = atoi( x.substr(a+1,b-a-1).c_str() ); // maximum x in subsection
573      dx = atoi( x.substr(b+1,x.size()).c_str() ); // delta x in subsection
574      x = x.substr(0,b); // rewrite x without the delta-x part.
575      removeStep = true;
576    }
577  }
578  if(y!="*") {
579    int y1,y2,dy;
580    int a = y.find(':');  // first occurence of ':' in y-subsection string
581    int b = y.find(':',a+1); // location of second ':' -- will be -1 if there is no second occurence.
582    y1 = atoi( y.substr(0,a).c_str() ); // minimum y in subsection
583    this->ySubOffset = y1 - 1;
584    if(b>0){ // there is a dy component
585      y2 = atoi( y.substr(a+1,b-a-1).c_str() ); // maximum y in subsection
586      dy = atoi( y.substr(b+1,y.size()).c_str() ); // delta y in subsection
587      y = y.substr(0,b); // rewrite y without the delta-y part.
588      removeStep = true;
589    }
590  }
591  if(z!="*") {
592    int z1,z2,dz;
593    int a = z.find(':');  // first occurence of ':' in z-subsection string
594    int b = z.find(':',a+1); // location of second ':' -- will be -1 if there is no second occurence.
595    z1 = atoi( z.substr(0,a).c_str() ); // minimum z in subsection
596    this->zSubOffset = z1 - 1;
597    if(b>0){ // there is a dz component
598      z2 = atoi( z.substr(a+1,b-a-1).c_str() ); // maximum z in subsection
599      dz = atoi( z.substr(b+1,z.size()).c_str() ); // delta z in subsection
600      z = z.substr(0,b); // rewrite z without the delta-z part.
601      removeStep = true;
602    }
603  }
604
605  if(removeStep){
606    std::cerr << "\a\tThe subsection given is " << this->subsection <<".\n";
607    std::cerr << "\tDuchamp is currently unable to deal with pixel steps in the subsection.\n";
608    std::cerr << "\tThese have been ignored, and so the subection used is ";   
609    this->subsection = "[" + x + "," + y + "," + z + "]";  // rewrite subsection without any step sizes.
610    std::cerr << this->subsection << std::endl;
611  }
612 
613//   if(x!="*") this->xSubOffset = strtol(x.c_str(),&end,10) - 1;   
614//   if(y!="*") this->ySubOffset = strtol(y.c_str(),&end,10) - 1;   
615//   if(z!="*") this->zSubOffset = strtol(z.c_str(),&end,10) - 1;   
616}
617
618bool Param::isBlank(float &val)
619{
620//   std::cerr << "val = " << val << " " << int((val-this->bzeroKeyword)/this->bscaleKeyword)
621//          <<" " <<this->blankKeyword << std::endl;
622  if(this->flagBlankPix){
623    if(this->nanAsBlank) return bool(isnan(val));
624    else//  return (val == this->blankPixValue);
625      return ( this->blankKeyword == int((val-this->bzeroKeyword)/this->bscaleKeyword) );
626  }
627  else return false;
628}
629
630string Param::outputReconFile()
631{
632  /**
633   *  outputReconFile()
634   *
635   *   This function produces the required filename in which to save
636   *    the reconstructed array. If the input image is image.fits, then
637   *    the output will be eg. image.RECON-3-2-4-1.fits, where the numbers are
638   *    3=reconDim, 2=filterCode, 4=snrRecon, 1=minScale
639   */
640  string inputName = this->imageFile;
641  std::stringstream ss;
642  ss << inputName.substr(0,inputName.size()-5);  // remove the ".fits" on the end.
643  if(this->flagSubsection) ss<<".sub";
644  ss << ".RECON-" << this->reconDim
645     << "-"       << this->filterCode
646     << "-"       << this->snrRecon
647     << "-"       << this->scaleMin
648     << ".fits";
649  return ss.str();
650}
651
652string Param::outputResidFile()
653{
654  /**
655   *  outputResidFile()
656   *
657   *   This function produces the required filename in which to save
658   *    the reconstructed array. If the input image is image.fits, then
659   *    the output will be eg. image.RESID-3-2-4-1.fits, where the numbers are
660   *    3=reconDim, 2=filterCode, 4=snrRecon, 1=scaleMin
661   */
662  string inputName = this->imageFile;
663  std::stringstream ss;
664  ss << inputName.substr(0,inputName.size()-5);  // remove the ".fits" on the end.
665  if(this->flagSubsection) ss<<".sub";
666  ss << ".RESID-" << this->reconDim
667     << "-"       << this->filterCode
668     << "-"       << this->snrRecon
669     << "-"       << this->scaleMin
670     << ".fits";
671  return ss.str();
672}
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