source: trunk/src/ATrous/ReconSearch.cc @ 686

Last change on this file since 686 was 686, checked in by MatthewWhiting, 14 years ago

Solving ticket #78, along with full documentation of the changes and the new parameters.

File size: 13.4 KB
Line 
1// -----------------------------------------------------------------------
2// ReconSearch.cc: Searching a wavelet-reconstructed cube.
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 <fstream>
29#include <iostream>
30#include <iomanip>
31#include <vector>
32#include <duchamp/duchamp.hh>
33#include <duchamp/PixelMap/Object3D.hh>
34#include <duchamp/Cubes/cubes.hh>
35#include <duchamp/Detection/detection.hh>
36#include <duchamp/ATrous/atrous.hh>
37#include <duchamp/Utils/utils.hh>
38#include <duchamp/Utils/feedback.hh>
39#include <duchamp/Utils/Statistics.hh>
40
41using namespace PixelInfo;
42using namespace Statistics;
43
44namespace duchamp
45{
46
47  void Cube::ReconSearch()
48  {
49    /// The Cube is first reconstructed, using Cube::ReconCube().
50    /// The statistics of the cube are calculated next.
51    /// It is then searched, using searchReconArray.
52    /// The resulting object list is stored in the Cube, and outputted
53    ///  to the log file if the user so requests.
54
55    if(!this->par.getFlagATrous()){
56      duchampWarning("ReconSearch",
57                     "You've requested a reconSearch, but not allocated space for the reconstructed array.\nDoing the basic CubicSearch.\n");
58      this->CubicSearch();
59    }
60    else {
61 
62      this->ReconCube();
63
64      if(this->par.isVerbose()) std::cout << "  ";
65
66      this->setCubeStats();
67   
68      if(this->par.isVerbose()) std::cout << "  Searching... " << std::flush;
69 
70      *this->objectList = searchReconArray(this->axisDim,this->array,
71                                           this->recon,this->par,this->Stats);
72
73      if(this->par.isVerbose()) std::cout << "  Updating detection map... "
74                                          << std::flush;
75      this->updateDetectMap();
76      if(this->par.isVerbose()) std::cout << "Done.\n";
77
78      if(this->par.getFlagLog()){
79        if(this->par.isVerbose())
80          std::cout << "  Logging intermediate detections... " << std::flush;
81        this->logDetectionList();
82        if(this->par.isVerbose()) std::cout << "Done.\n";
83      }
84
85    }
86  }
87
88  /////////////////////////////////////////////////////////////////////////////
89  void Cube::ReconCube()
90  {
91    /// A front-end to the various reconstruction functions, the choice of
92    ///  which is determined by the use of the reconDim parameter.
93    /// Differs from ReconSearch only in that no searching is done.
94
95    int dimRecon = this->par.getReconDim();
96    // Test whether we have eg. an image, but have requested a 3-d
97    //  reconstruction.
98    // If dimension of data array is less than dimRecon, change dimRecon
99    //  to the dimension of the array.
100    int numGoodDim = this->head.getNumAxes();
101    if(numGoodDim<dimRecon){
102      dimRecon = numGoodDim;
103      this->par.setReconDim(dimRecon);
104      std::stringstream errmsg;
105      errmsg << "You requested a " << dimRecon << "-dimensional reconstruction,"
106             << " but the FITS file is only " << numGoodDim << "-dimensional.\n"
107             << "Changing reconDim to " << numGoodDim << ".\n";
108      duchampWarning("Reconstruction",errmsg.str());
109    }
110
111    switch(dimRecon)
112      {
113      case 1: this->ReconCube1D(); break;
114      case 2: this->ReconCube2D(); break;
115      case 3: this->ReconCube3D(); break;
116      default:
117        if(dimRecon<=0){
118          std::stringstream errmsg;
119          errmsg << "reconDim (" << dimRecon
120                 << ") is less than 1. Performing 1-D reconstruction.\n";
121          duchampWarning("Reconstruction", errmsg.str());
122          this->par.setReconDim(1);
123          this->ReconCube1D();
124        }
125        else if(dimRecon>3){
126          //this probably won't happen with new code above, but just in case...
127          std::stringstream errmsg;
128          errmsg << "reconDim (" << dimRecon
129                 << ") is more than 3. Performing 3-D reconstruction.\n";
130          duchampWarning("Reconstruction", errmsg.str());
131          this->par.setReconDim(3);
132          this->ReconCube3D();
133        }
134        break;
135      }
136  }
137
138  /////////////////////////////////////////////////////////////////////////////
139  void Cube::ReconCube1D()
140  {
141    /// This reconstructs a cube by performing a 1D a trous reconstruction
142    ///  in the spectrum of each spatial pixel.
143
144    long xySize = this->axisDim[0] * this->axisDim[1];
145
146    long zdim = this->axisDim[2];
147
148    ProgressBar bar;
149    if(!this->reconExists){
150      std::cout<<"  Reconstructing... ";
151      if(par.isVerbose()) bar.init(xySize);
152      for(int npix=0; npix<xySize; npix++){
153
154        if( par.isVerbose() ) bar.update(npix+1);
155
156        float *spec = new float[zdim];
157        float *newSpec = new float[zdim];
158        for(int z=0;z<zdim;z++) spec[z] = this->array[z*xySize + npix];
159        bool verboseFlag = this->par.isVerbose();
160        this->par.setVerbosity(false);
161        atrous1DReconstruct(this->axisDim[2],spec,newSpec,this->par);
162        this->par.setVerbosity(verboseFlag);
163        for(int z=0;z<zdim;z++) this->recon[z*xySize+npix] = newSpec[z];
164        delete [] spec;
165        delete [] newSpec;
166      }
167      this->reconExists = true;
168      bar.fillSpace(" All Done.");
169      printSpace(22);
170      std::cout << "\n";
171    }
172
173  }
174
175  /////////////////////////////////////////////////////////////////////////////
176  void Cube::ReconCube2D()
177  {
178    /// This reconstructs a cube by performing a 2D a trous reconstruction
179    ///  in each spatial image (ie. each channel map) of the cube.
180
181    long xySize = this->axisDim[0] * this->axisDim[1];
182    ProgressBar bar;
183    bool useBar = (this->axisDim[2]>1);
184
185    if(!this->reconExists){
186      std::cout<<"  Reconstructing... ";
187      if(useBar&&par.isVerbose()) bar.init(this->axisDim[2]);
188      for(int z=0;z<this->axisDim[2];z++){
189
190        if( par.isVerbose() && useBar ) bar.update((z+1));
191
192        if(!this->par.isInMW(z)){
193          float *im = new float[xySize];
194          float *newIm = new float[xySize];
195          for(int npix=0; npix<xySize; npix++)
196            im[npix] = this->array[z*xySize+npix];
197          bool verboseFlag = this->par.isVerbose();
198          this->par.setVerbosity(false);
199          atrous2DReconstruct(this->axisDim[0],this->axisDim[1],
200                              im,newIm,this->par);
201          this->par.setVerbosity(verboseFlag);
202          for(int npix=0; npix<xySize; npix++)
203            this->recon[z*xySize+npix] = newIm[npix];
204          delete [] im;
205          delete [] newIm;
206        }
207        else {
208          for(int i=z*xySize; i<(z+1)*xySize; i++)
209            this->recon[i] = this->array[i];
210        }
211      }
212      this->reconExists = true;
213      if(useBar) bar.fillSpace(" All Done.");
214      printSpace(22);
215      std::cout << "\n";
216    }
217  }
218
219  /////////////////////////////////////////////////////////////////////////////
220  void Cube::ReconCube3D()
221  {
222    /// This performs a full 3D a trous reconstruction of the cube
223
224    if(this->axisDim[2]==1) this->ReconCube2D();
225    else {
226
227      if(!this->reconExists){
228        std::cout<<"  Reconstructing... "<<std::flush;
229        atrous3DReconstruct(this->axisDim[0],this->axisDim[1],this->axisDim[2],
230                            this->array,this->recon,this->par);
231        this->reconExists = true;
232        std::cout << "  All Done.";
233        printSpace(22);
234        std::cout << "\n";
235      }
236
237    }
238  }
239
240  /////////////////////////////////////////////////////////////////////////////
241  std::vector <Detection> searchReconArray(long *dim, float *originalArray,
242                                           float *reconArray, Param &par,
243                                           StatsContainer<float> &stats)
244  {
245
246  if(par.getSearchType()=="spectral")
247    return searchReconArraySpectral(dim,originalArray,reconArray,par,stats);
248  else if(par.getSearchType()=="spatial")
249    return searchReconArraySpatial(dim,originalArray,reconArray,par,stats);
250  else{
251    std::stringstream ss;
252    ss << "Unknown search type : " << par.getSearchType();
253    duchampError("searchReconArray",ss.str());
254    return std::vector<Detection>(0);
255  }
256  }
257  /////////////////////////////////////////////////////////////////////////////
258  std::vector <Detection> searchReconArraySpectral(long *dim, float *originalArray,
259                                                   float *reconArray, Param &par,
260                                                   StatsContainer<float> &stats)
261  {
262    ///  This searches for objects in a cube that has been reconstructed.
263    ///
264    ///  The search is conducted just in each spatial pixel (xdim*ydim 1D
265    ///   searches).
266    ///  The searches are done on the reconstructed array, although the detected
267    ///   objects have fluxes drawn from the corresponding pixels of the original
268    ///   array.
269    ///
270    ///  \param dim Array of dimension sizes
271    ///  \param originalArray Original, un-reconstructed image array.
272    ///  \param reconArray Reconstructed image array
273    ///  \param par The Param set.
274    ///  \param stats The StatsContainer that defines what a detection is.
275    ///
276    ///  \return A vector of Detections resulting from the search.
277
278    std::vector <Detection> outputList;
279    long zdim = dim[2];
280    long xySize = dim[0] * dim[1];
281    int num=0;
282    ProgressBar bar;
283
284    // First search --  in each spectrum.
285    if(zdim > 1){
286      if(par.isVerbose()){
287        std::cout << "1D: ";
288        bar.init(xySize);
289      }
290
291      bool *doPixel = new bool[xySize];
292      // doPixel is a bool array to say whether to look in a given spectrum
293      for(int npix=0; npix<xySize; npix++){
294        doPixel[npix] = false;
295        for(int z=0;z<zdim;z++) {
296          doPixel[npix] = doPixel[npix] ||
297            (!par.isBlank(originalArray[npix]) && !par.isInMW(z));
298        }
299        // doPixel[i] is false only when there are no good pixels in spectrum
300        //  of pixel #i.
301      }
302
303      long *specdim = new long[2];
304      specdim[0] = zdim; specdim[1]=1;
305      Image *spectrum = new Image(specdim);
306      delete [] specdim;
307      spectrum->saveParam(par);
308      spectrum->saveStats(stats);
309      spectrum->setMinSize(par.getMinChannels());
310      spectrum->pars().setBeamSize(2.);
311      // beam size: for spectrum, only neighbouring channels correlated
312
313      for(int y=0; y<dim[1]; y++){
314        for(int x=0; x<dim[0]; x++){
315
316          int npix = y*dim[0] + x;
317          if( par.isVerbose() ) bar.update(npix+1);
318
319          if(doPixel[npix]){
320
321            spectrum->extractSpectrum(reconArray,dim,npix);
322            spectrum->removeMW(); // only works if flagMW is true
323            std::vector<Scan> objlist = spectrum->findSources1D();
324            std::vector<Scan>::iterator obj;
325            num += objlist.size();
326            for(obj=objlist.begin();obj!=objlist.end();obj++){
327              Detection newObject;
328              // Fix up coordinates of each pixel to match original array
329              for(int z=obj->getX();z<=obj->getXmax();z++) {
330                newObject.addPixel(x,y,z);
331              }
332              newObject.setOffsets(par);
333              mergeIntoList(newObject,outputList,par);
334            }
335          }
336
337        }
338      }
339
340      delete spectrum;
341      delete [] doPixel;
342
343      if(par.isVerbose()) {
344        bar.fillSpace("Found ");
345        std::cout << num <<";" << std::flush;
346      }
347    }
348
349    return outputList;
350  }
351
352  /////////////////////////////////////////////////////////////////////////////
353  std::vector <Detection> searchReconArraySpatial(long *dim, float *originalArray,
354                                                  float *reconArray, Param &par,
355                                                  StatsContainer<float> &stats)
356  {
357    ///  This searches for objects in a cube that has been reconstructed.
358    ///
359    ///  The search is conducted only in each channel image (zdim 2D
360    ///  searches).
361    ///
362    ///  The searches are done on the reconstructed array, although the detected
363    ///   objects have fluxes drawn from the corresponding pixels of the original
364    ///   array.
365    ///
366    ///  \param dim Array of dimension sizes
367    ///  \param originalArray Original, un-reconstructed image array.
368    ///  \param reconArray Reconstructed image array
369    ///  \param par The Param set.
370    ///  \param stats The StatsContainer that defines what a detection is.
371    ///
372    ///  \return A vector of Detections resulting from the search.
373
374    std::vector <Detection> outputList;
375    long zdim = dim[2];
376    int num=0;
377    ProgressBar bar;
378    bool useBar = (zdim>1);
379    if(useBar&&par.isVerbose()) bar.init(zdim);
380 
381    long *imdim = new long[2];
382    imdim[0] = dim[0]; imdim[1] = dim[1];
383    Image *channelImage = new Image(imdim);
384    delete [] imdim;
385    channelImage->saveParam(par);
386    channelImage->saveStats(stats);
387    channelImage->setMinSize(1);
388
389    for(int z=0; z<zdim; z++){  // loop over all channels
390
391      if( par.isVerbose() && useBar ) bar.update(z+1);
392
393      if(!par.isInMW(z)){
394        // purpose of this is to ignore the Milky Way channels
395        //  if we are flagging them
396
397        channelImage->extractImage(reconArray,dim,z);
398        std::vector<Object2D> objlist = channelImage->findSources2D();
399        std::vector<Object2D>::iterator obj;
400        num += objlist.size();
401        for(obj=objlist.begin();obj!=objlist.end();obj++){
402          Detection newObject;
403          newObject.addChannel(z,*obj);
404          newObject.setOffsets(par);
405          mergeIntoList(newObject,outputList,par);
406        }
407      }
408   
409    }
410
411    delete channelImage;
412
413    if(par.isVerbose()){
414      if(useBar) bar.remove();
415      std::cout << "Found " << num << ".\n";
416    }
417
418
419    return outputList;
420  }
421
422}
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