source: trunk/src/Cubes/detectionIO.cc @ 482

Last change on this file since 482 was 468, checked in by MatthewWhiting, 16 years ago

Fixing some memory leaks.

File size: 13.5 KB
Line 
1// -----------------------------------------------------------------------
2// detectionIO.cc: Screen and File output of the detected objects.
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 <fstream>
31#include <iomanip>
32#include <string>
33#include <vector>
34#include <time.h>
35#include <duchamp/param.hh>
36#include <duchamp/fitsHeader.hh>
37#include <duchamp/Cubes/cubes.hh>
38#include <duchamp/PixelMap/Object3D.hh>
39#include <duchamp/Detection/detection.hh>
40#include <duchamp/Detection/columns.hh>
41#include <duchamp/Utils/utils.hh>
42#include <duchamp/Utils/Statistics.hh>
43 
44using std::endl;
45using std::setw;
46using std::setprecision;
47using namespace PixelInfo;
48using namespace Statistics;
49
50namespace duchamp
51{
52
53  void Cube::outputDetectionsKarma(std::ostream &stream)
54  {
55    /**
56     *  Prints to a stream (provided) the list of detected objects in the cube
57     *   in the format of an annotation file for the Karma suite of programs.
58     *  Annotation file draws a box enclosing the detection, and writes the
59     *   ID number of the detection to the right of the box.
60     */
61
62    std::string fname = this->par.getImageFile();
63    if(this->par.getFlagSubsection()) fname+=this->par.getSubsection();
64    stream << "# Duchamp Source Finder results for FITS file: " << fname << endl;
65    if(this->par.getFlagFDR())
66      stream<<"# FDR Significance = " << this->par.getAlpha() << endl;
67    else
68      stream<<"# Threshold = " << this->par.getCut() << endl;
69    if(this->par.getFlagATrous()){
70      stream<<"# The a trous reconstruction method was used, with the following parameters." << endl;
71      stream<<"#  ATrous Dimension = " << this->par.getReconDim() << endl;
72      stream<<"#  ATrous Threshold = " << this->par.getAtrousCut() << endl;
73      stream<<"#  ATrous Minimum Scale =" << this->par.getMinScale() << endl;
74      stream<<"#  ATrous Filter = " << this->par.getFilterName() << endl;
75    }
76    else if(this->par.getFlagSmooth()){
77      stream<<"# The data was smoothed prior to searching, with the following parameters." << endl;
78      stream<<"#  Smoothing type = " << this->par.getSmoothType() << endl;
79      if(this->par.getSmoothType()=="spectral"){
80        stream << "#  Hanning width = " << this->par.getHanningWidth() << endl;
81      }
82      else{
83        stream << "#  Kernel Major axis = " << this->par.getKernMaj() << endl;
84        if(this->par.getKernMin()>0)
85          stream << "#  Kernel Minor axis = " << this->par.getKernMin() << endl;
86        else
87          stream << "#  Kernel Minor axis = " << this->par.getKernMaj() << endl;
88        stream << "#  Kernel Major axis = " << this->par.getKernPA() << endl;
89      }
90    }
91    else stream << "# No ATrous reconstruction done." << endl;
92    stream << "#\n";
93    stream << "COLOR RED" << endl;
94    stream << "COORD W" << endl;
95    stream << std::setprecision(6);
96    stream.setf(std::ios::fixed);
97    double *pix = new double[3];
98    double *wld = new double[3];
99    std::vector<Detection>::iterator obj;
100    for(obj=this->objectList->begin();obj<this->objectList->end();obj++){
101
102      if(this->par.getAnnotationType()=="borders"){
103        std::vector<int> vertexSet = obj->getVertexSet();
104        for(int i=0;i<vertexSet.size()/4;i++){
105          pix[0] = vertexSet[i*4]-0.5;
106          pix[1] = vertexSet[i*4+1]-0.5;
107          pix[2] = obj->getZcentre();
108          this->head.pixToWCS(pix,wld);
109          stream << "LINE " << wld[0] << " " << wld[1];
110          pix[0] = vertexSet[i*4+2]-0.5;
111          pix[1] = vertexSet[i*4+3]-0.5;
112          this->head.pixToWCS(pix,wld);
113          stream << " " << wld[0] << " " << wld[1] << "\n";
114        }
115      }
116      else if(this->par.getAnnotationType()=="circles"){
117        float radius = obj->getRAWidth()/120.;
118        if(obj->getDecWidth()/120.>radius)
119          radius = obj->getDecWidth()/120.;
120        stream << "CIRCLE "
121               << obj->getRA() << " "
122               << obj->getDec() << " "
123               << radius << "\n";
124      }
125
126      stream << "TEXT "
127             << obj->getRA() << " "
128             << obj->getDec() << " "
129             << obj->getID() << "\n\n";
130    }
131
132    delete [] pix;
133    delete [] wld;
134
135  }
136
137  void Cube::prepareOutputFile()
138  {
139    /**
140     *  A function to write the paramters, time of execution, and
141     *  statistical information to the output file.
142     */
143
144    std::string outfile;
145    if(this->par.getFlagSeparateHeader()) outfile = this->par.getHeaderFile();
146    else outfile = this->par.getOutFile();
147    std::ofstream output(outfile.c_str());
148    output<<"Results of the Duchamp source finder: ";
149    time_t now = time(NULL);
150    output << asctime( localtime(&now) );
151    this->showParam(output);
152    output<<"--------------------\n";
153    output.close();
154    this->outputStats();
155 
156  }
157
158  void Cube::outputStats()
159  {
160    /**
161     *  A function to write the statistical information to the output
162     *  file. This writes the threshold, its equivalent S/N ratio, and
163     *  the noise level and spread.
164     *
165     *  If smoothing has been done, the noise level & spread for the
166     *  original array are calculated and printed as well.
167     */
168
169    std::string outfile;
170    if(this->par.getFlagSeparateHeader()) outfile = this->par.getHeaderFile();
171    else outfile = this->par.getOutFile();
172    std::ofstream output(outfile.c_str(),std::ios::app);
173    output<<"Summary of statistics:\n";
174    output<<"Detection threshold = " << this->Stats.getThreshold()
175          <<" " << this->head.getFluxUnits();
176    if(this->par.getFlagFDR())
177      output<<" (or S/N=" << this->Stats.getThresholdSNR()<<")";
178    if(this->par.getFlagSmooth()){
179      output << " in smoothed cube.";
180      if(!this->par.getFlagUserThreshold())
181        output<<"\nNoise level = " << this->Stats.getMiddle()
182              <<", Noise spread = " << this->Stats.getSpread()
183              <<" in smoothed cube.";
184   
185      // calculate the stats for the original array, so that we can
186      // quote S/N values correctly.
187      this->par.setFlagSmooth(false);
188      bool verb=this->par.isVerbose();
189      bool fdrflag=this->par.getFlagFDR();
190      this->par.setVerbosity(false);
191      this->par.setFlagFDR(false);
192      this->setCubeStats();
193      this->par.setVerbosity(verb);
194      this->par.setFlagFDR(fdrflag);
195      this->par.setFlagSmooth(true);
196     
197      output << "\nNoise properties for the original cube are:";
198    }
199     
200    if(!this->par.getFlagUserThreshold())
201      output<<"\nNoise level = " << this->Stats.getMiddle()
202            <<", Noise spread = " << this->Stats.getSpread();
203
204    if(this->par.getFlagGrowth()){
205      StatsContainer<float> growthStats = this->Stats;
206      if(this->par.getFlagUserGrowthThreshold())
207        growthStats.setThreshold(this->par.getGrowthThreshold());
208      else
209        growthStats.setThresholdSNR(this->par.getGrowthCut());
210      growthStats.setUseFDR(false);
211      output<<"\nDetections grown down to threshold of "
212            << growthStats.getThreshold() << " "
213            << this->head.getFluxUnits();
214    }
215
216    if(!this->par.getFlagUserThreshold())
217      output << "\nFull stats:\n" << this->Stats;
218    else
219      output << "\n\nNot calculating full stats since threshold was provided directly.\n";
220
221    output<<"--------------------\n";
222    output.close();
223  }
224
225  void Cube::outputDetectionList()
226  {
227    /**
228     *  A front-end to writing the full list of detected objects to a results
229     *   file and to cout.
230     *  Leaves the testing of whether the WCS parameters for each object
231     *   have been calculated to the printing function.
232     */
233
234    std::string outfile;
235    if(this->par.getFlagSeparateHeader()) outfile = this->par.getHeaderFile();
236    else outfile = this->par.getOutFile();
237    std::ofstream output(outfile.c_str(),std::ios::app);
238    output<<"Total number of detections = "<<this->objectList->size()<<endl;
239    output<<"--------------------\n";
240    output.close();
241
242    if(this->par.getFlagSeparateHeader())
243      output.open(this->par.getOutFile().c_str());
244    else
245      output.open(this->par.getOutFile().c_str(),std::ios::app);
246
247    if(this->objectList->size()>0){
248      this->setupColumns();
249      outputTableHeader(output,this->fullCols,"file",this->head.isWCS());
250      outputTableHeader(std::cout,this->fullCols,"screen",this->head.isWCS());
251      std::vector<Detection>::iterator obj;
252      for(obj=this->objectList->begin();obj<this->objectList->end();obj++){
253        obj->printTableRow(output,this->fullCols,"file");
254        obj->printTableRow(std::cout,this->fullCols,"screen");
255      }
256    }
257
258    output.close();
259  }
260
261  void Cube::prepareLogFile(int argc, char *argv[])
262  {
263    /**
264     *  Opens the log file so that it can be written to, and writes
265     *  the parameter summary as well as the time of execution to the
266     *  file.
267     *
268     *  It also writes the command-line statement, hence the need for
269     *  argv and argc.
270     */
271    // Open the logfile and write the time on the first line
272    std::ofstream logfile(this->par.getLogFile().c_str());
273    logfile << "New run of the Duchamp sourcefinder: ";
274    time_t now = time(NULL);
275    logfile << asctime( localtime(&now) );
276    // Write out the command-line statement
277    logfile << "Executing statement : ";
278    for(int i=0;i<argc;i++) logfile << argv[i] << " ";
279    logfile << std::endl;
280    logfile << this->par;
281    logfile.close();
282
283  }
284
285
286  void Cube::logDetectionList()
287  {
288    /**
289     *  A front-end to writing a list of detected objects to the log file.
290     *  Does not assume WCS is present.
291     *  Designed to be used by searching routines before returning their
292     *   final list.
293     */
294
295    if(this->objectList->size()>0){
296
297      long left = this->par.getBorderLeft();
298      long bottom = this->par.getBorderBottom();
299
300      std::ofstream fout(this->par.getLogFile().c_str(),std::ios::app);
301      this->calcObjectFluxes();
302      this->setupColumns();
303      outputTableHeader(fout,this->fullCols,"log",this->head.isWCS());
304
305      if(this->par.getFlagBaseline()){
306        for(int i=0;i<this->axisDim[0]*this->axisDim[1]*this->axisDim[2];i++)
307          this->array[i] += this->baseline[i];
308      }
309
310      for(int objCtr=0;objCtr<this->objectList->size();objCtr++){
311        Detection *obj = new Detection;
312        *obj = objectList->at(objCtr);
313        obj->setOffsets(par);
314        if(this->par.getFlagCubeTrimmed()){
315          obj->pixels().addOffsets(left,bottom,0);
316        }
317        obj->calcFluxes(this->array, this->axisDim);
318        obj->setID(objCtr+1);
319        obj->printTableRow(fout,this->fullCols,"log");
320        delete obj;
321      }
322
323      if(this->par.getFlagBaseline()){
324        for(int i=0;i<this->axisDim[0]*this->axisDim[1]*this->axisDim[2];i++)
325          this->array[i] -= this->baseline[i];
326      }
327      fout.close();
328 
329    }
330
331  }
332
333  void Cube::logDetection(Detection obj, int counter)
334  {
335    /**
336     *  A front-end to writing a detected object to the log file.
337     *  Does not assume WCS is present.
338     *  Corrects for changes to positions of pixels and removal of baselines.
339     *  Designed to be used by searching routines before returning their final
340     *   list.
341     *  \param obj Detection object to be written : passed by value, as we want
342     *    to potentially change positions etc, but not for the object in the
343     *    calling function.
344     *  \param counter The number to assign to the object : ideally its number
345     *    in a list of some kind.
346     */
347
348    std::ofstream fout(this->par.getLogFile().c_str(),std::ios::app);
349    // Need to deal with possibility of trimmed array
350    long left = this->par.getBorderLeft();
351    long right = this->par.getBorderRight();
352    long top = this->par.getBorderTop();
353    long bottom = this->par.getBorderBottom();
354    long *tempDim = new long[3];
355    tempDim[0] = (this->axisDim[0] + left + right);
356    tempDim[1] = (this->axisDim[1] + bottom + top);
357    tempDim[2] = this->axisDim[2];
358    long tempsize = tempDim[0] * tempDim[1] * tempDim[2];
359    float *temparray = new float[tempsize];
360    //  for(int i=0;i<this->numPixels;i++){ // loop over this->array
361    for(int z=0;z<tempDim[2];z++){
362      for(int y=0;y<tempDim[1];y++){
363        for(int x=0;x<tempDim[0];x++){
364
365          bool isDud = (x<left) || (x>=this->axisDim[0]+left) ||
366            (y<bottom) || (y>=this->axisDim[1]+bottom);
367       
368          int temppos = x + tempDim[0]*y + tempDim[1]*tempDim[0]*z;
369
370          int pos = (x-left) + (y-bottom)*this->axisDim[0] +
371            z*this->axisDim[0]*this->axisDim[1];
372
373          if(isDud) temparray[temppos] = this->par.getBlankPixVal();
374          else temparray[temppos] = this->array[pos];
375 
376          if(this->par.getFlagBaseline() && !isDud)
377            temparray[temppos] += this->baseline[pos];
378
379        }
380      }
381    }
382
383    if(this->par.getFlagCubeTrimmed()){
384      obj.pixels().addOffsets(left,bottom,0);
385    }
386    obj.calcFluxes(temparray, this->axisDim);
387    obj.printTableRow(fout,this->fullCols,"log");
388    delete [] temparray;
389    delete [] tempDim;
390    fout.close();
391  }
392
393}
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