source: trunk/src/Detection/detection.hh @ 1269

Last change on this file since 1269 was 1269, checked in by MatthewWhiting, 11 years ago

Ticket #198 - Fixing a bug with the velocity-width measurements. The mask is now properly calculated to enable accurate extraction of the integrated spectrum of a detection. Also in this changeset a few alterations to alternative parameter-measurement functions flowing out of the Selavy development.

File size: 17.0 KB
Line 
1// -----------------------------------------------------------------------
2// detection.hh: Definition of the Detection class.
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#ifndef DETECTION_H
29#define DETECTION_H
30
31#include <iostream>
32#include <string>
33#include <vector>
34#include <duchamp/param.hh>
35#include <duchamp/PixelMap/Voxel.hh>
36#include <duchamp/PixelMap/Object3D.hh>
37#include <duchamp/Outputs/columns.hh>
38#include <duchamp/Outputs/CatalogueSpecification.hh>
39
40using namespace PixelInfo;
41
42namespace duchamp
43{
44
45
46  /// Class to represent a contiguous set of detected voxels.
47  ///  This is a detected object, which features:
48  ///   a vector of voxels, average and centroid positions, total & peak fluxes,
49  ///   the possibility of WCS-calculated parameters (RA, Dec, velocity,
50  ///     related widths).
51  ///  Also many functions with which to manipulate the Detections.
52
53  class Detection : public Object3D
54  {
55  public:
56    Detection();
57    Detection(const Object3D& o);
58    Detection(const Detection& d);
59    Detection& operator= (const Detection& d);
60    virtual ~Detection(){};
61    void defaultDetection();
62    //------------------------------
63    // These are functions in detection.cc.
64    //
65
66    friend Detection operator+ (Detection &lhs, Detection &rhs);
67    void addDetection(Detection &other);
68
69    bool canMerge(Detection &other, Param &par);
70    bool isNear(Detection &other, Param &par);
71    bool isClose(Detection &other, Param &par);
72
73    /// @brief Test whether voxel lists match
74    bool voxelListsMatch(std::vector<PixelInfo::Voxel> voxelList);
75
76    /// @brief Test whether a voxel list contains all detected voxels
77    bool voxelListCovered(std::vector<PixelInfo::Voxel> voxelList);
78
79    /// @brief Calculate flux-related parameters of the Detection.
80    void   calcFluxes(float *fluxArray, size_t *dim);
81    /// @brief Calculate flux-related parameters of the Detection.
82    void   calcFluxes(std::vector<PixelInfo::Voxel> voxelList);
83    void   calcFluxes(std::map<Voxel,float> &voxelMap);
84
85      /// @brief Invert the source's flux values
86      void invert();
87
88    /// @brief Calculate parameters related to the World Coordinate System.
89    //    void   calcWCSparams(float *fluxArray, long *dim, FitsHeader &head);
90    void   calcWCSparams(FitsHeader &head);
91
92    /// @brief Calculate the integrated flux over the entire Detection.
93    void   calcIntegFlux(float *fluxArray, size_t *dim, FitsHeader &head, Param &par);
94    /// @brief Calculate the integrated flux over the entire Detection.
95    void   calcIntegFlux(size_t zdim, std::vector<PixelInfo::Voxel> voxelList, FitsHeader &head);
96    void   calcIntegFlux(size_t zdim, std::map<Voxel,float> voxelMap, FitsHeader &head);
97
98    /// @brief Calculate the 20%-/50%-peak-flux widths in a general fashion
99    void calcVelWidths(size_t zdim, float *intSpec, FitsHeader &head);
100    /// @brief Calculate the 20%/50% peak flux widths
101    void calcVelWidths(float *fluxArray, size_t *dim, FitsHeader &head, Param &par);
102    /// @brief Calculate the 20%/50% peak flux widths
103    void calcVelWidths(size_t zdim, std::vector<PixelInfo::Voxel> voxelList, FitsHeader &head);
104    void calcVelWidths(size_t zdim, std::map<Voxel,float> voxelMap, FitsHeader &head);
105
106    /// @brief Calculate the spatial (moment-0) shape
107    void findShape(const float *momentMap, const size_t *dim, FitsHeader &head);
108
109    /// @brief Set the values of the axis offsets from the cube.
110    void   setOffsets(Param &par);
111
112    /// @brief Add the offset values to the pixel locations
113   void   addOffsets(size_t xoff, size_t yoff, size_t zoff){
114       Object3D::addOffsets(xoff,yoff,zoff);
115       xpeak+=xoff; ypeak+=yoff; zpeak+=zoff;
116       xCentroid+=xoff; yCentroid+=yoff; zCentroid+=zoff;
117    };
118
119      void   addOffsets(){ addOffsets(xSubOffset, ySubOffset, zSubOffset);};
120      void   removeOffsets(size_t xoff, size_t yoff, size_t zoff){ addOffsets(-xoff, -yoff, -zoff);};
121      void   removeOffsets(){ addOffsets(-xSubOffset, -ySubOffset, -zSubOffset);};
122      void   addOffsets(Param &par){setOffsets(par); addOffsets();};
123
124    //
125    //---------------------------------
126    // Text Output -- all in Detection/outputDetection.cc
127    //
128    /// @brief The spectral output label that contains info on the WCS position & velocity.
129    std::string outputLabelWCS(); 
130
131    /// @brief The spectral output label that contains info on the pixel location.
132    std::string outputLabelPix();
133
134    /// @brief The spectral output label that contains info on fluxes of the Detection.
135    std::string outputLabelFluxes();
136
137    /// @brief The spectral output label that contains info on widths of the Detection.
138    std::string outputLabelWidths(FitsHeader &head);
139
140    /// @brief Print all required values for the Detection to a table.
141    void printTableRow(std::ostream &stream, Catalogues::CatalogueSpecification columns, Catalogues::DESTINATION tableType);
142
143    /// @brief Print a particular value for the Detection to a table.
144    void printTableEntry(std::ostream &stream, Catalogues::Column column);
145
146    //----------------------------------
147    // For plotting routines... in Cubes/drawMomentCutout.cc
148    //
149    /// @brief Get the location of the spatial borders.
150    std::vector<int> getVertexSet();
151    //
152    /// @brief Draw spatial borders for a particular Detection.
153    void   drawBorders(int xoffset, int yoffset);
154    //
155   
156    //
157    //----------------------------------
158    // Basic functions
159    //
160
161    /// @brief Add a single voxel to the pixel list.
162    void   addPixel(long x, long y, long z){Object3D::addPixel(x,y,z);};
163   
164    /// @brief Add a single voxel to the pixel list.
165    void   addPixel(PixelInfo::Voxel point){
166      /// @brief This one adds the pixel to the pixelArray, and updates the fluxes according to the Voxel's flux information
167      Object3D::addPixel(point.getX(),point.getY(),point.getZ());
168      totalFlux += point.getF();
169      if(point.getF()>peakFlux){
170        peakFlux = point.getF();
171        xpeak = point.getX(); ypeak = point.getY(); zpeak = point.getZ();
172      }
173    };
174
175    /// @brief How many channels does the Detection have?
176    size_t   getNumChannels(){return Object3D::getNumDistinctZ();};
177
178    /// @brief Is there at least the acceptable minimum number of channels in the Detection? 
179    bool   hasEnoughChannels(int minNumber);
180 
181    //-----------------------------------
182    // Basic accessor functions for private members follow...
183    //
184    long        getXOffset(){return xSubOffset;};
185    void        setXOffset(long o){xSubOffset = o;};
186    long        getYOffset(){return ySubOffset;};
187    void        setYOffset(long o){ySubOffset = o;};
188    long        getZOffset(){return zSubOffset;};
189    void        setZOffset(long o){zSubOffset = o;};
190    //       
191    bool        hasParams(){return haveParams;};
192    //
193    float       getXcentre();
194    float       getYcentre();
195    float       getZcentre();
196    float       getTotalFlux(){return totalFlux;};
197    void        setTotalFlux(float f){totalFlux=f;};
198    float       getTotalFluxError(){return eTotalFlux;};
199    void        setTotalFluxError(float f){eTotalFlux=f;};
200    double      getIntegFlux(){return intFlux;};
201    void        setIntegFlux(double f){intFlux=f;};
202    double      getIntegFluxError(){return eIntFlux;};
203    void        setIntegFluxError(double d){eIntFlux=d;};
204    float       getPeakFlux(){return peakFlux;};
205    void        setPeakFlux(float f){peakFlux=f;};
206    long        getXPeak(){return xpeak;};
207    long        getYPeak(){return ypeak;};
208    long        getZPeak(){return zpeak;};
209    float       getPeakSNR(){return peakSNR;};
210    void        setPeakSNR(float f){peakSNR = f;};
211    float       getXCentroid(){return xCentroid;};
212    float       getYCentroid(){return yCentroid;};
213    float       getZCentroid(){return zCentroid;};
214    std::string getCentreType(){return centreType;};
215    void        setCentreType(std::string s){centreType=s;};
216    bool        isNegative(){return negSource;};
217    void        setNegative(bool f){negSource = f;};
218    std::string getFlagText(){return flagText;};
219    void        setFlagText(std::string s){flagText = s;};
220    void        addToFlagText(std::string s){flagText += s;};
221    //       
222    /// @brief Is the WCS good enough to be used?
223    /// \return Detection::flagWCS =  True/False
224    bool        isWCS(){return flagWCS;};
225    bool        isSpecOK(){return specOK;};
226    void        setSpecOK(bool b){specOK=b;};
227    std::string getName(){return name;};
228    void        setName(std::string s){name=s;};
229    std::string getRAs(){return raS;};
230    std::string getDecs(){return decS;};
231    double      getRA(){return ra;};
232    double      getDec(){return dec;};
233    double      getRAWidth(){return raWidth;};
234    double      getDecWidth(){return decWidth;};
235    double      getMajorAxis(){return majorAxis;};
236    double      getMinorAxis(){return minorAxis;};
237    double      getPositionAngle(){return posang;};
238    double      getVel(){return vel;};
239    double      getVelWidth(){return velWidth;};
240    double      getVelMin(){return velMin;};
241    double      getVelMax(){return velMax;};
242    double      getW20(){return w20;};
243    double      getV20Min(){return v20min;};
244    double      getV20Max(){return v20max;};
245    double      getW50(){return w50;};
246    double      getV50Min(){return v50min;};
247    double      getV50Max(){return v50max;};
248    int         getID(){return id;};
249    void        setID(int i){id = i;};
250    //
251    int         getPosPrec(){return posPrec;};
252    void        setPosPrec(int i){posPrec=i;};
253    int         getXYZPrec(){return xyzPrec;};
254    void        setXYZPrec(int i){xyzPrec=i;};
255    int         getFintPrec(){return fintPrec;};
256    void        setFintPrec(int i){fintPrec=i;};
257    int         getFpeakPrec(){return fpeakPrec;};
258    void        setFpeakPrec(int i){fpeakPrec=i;};
259    int         getVelPrec(){return velPrec;};
260    void        setVelPrec(int i){velPrec=i;};
261    int         getSNRPrec(){return snrPrec;};
262    void        setSNRPrec(int i){snrPrec=i;};
263    //
264  protected:
265    // Subsection offsets
266    long           xSubOffset;     ///< The x-offset, from subsectioned cube
267    long           ySubOffset;     ///< The y-offset, from subsectioned cube
268    long           zSubOffset;     ///< The z-offset, from subsectioned cube
269    bool           haveParams;     ///< Have the parameters been calculated?
270    // Flux related
271    float          totalFlux;      ///< sum of the fluxes of all the pixels
272    float          eTotalFlux;     ///< error on the total flux
273    double         intFlux;        ///< integrated flux : involves integration over velocity.
274    double         eIntFlux;       ///< error on the integrated flux
275    float          peakFlux;       ///< maximum flux over all the pixels
276    long           xpeak;          ///< x-pixel location of peak flux
277    long           ypeak;          ///< y-pixel location of peak flux
278    long           zpeak;          ///< z-pixel location of peak flux
279    float          peakSNR;        ///< signal-to-noise ratio at peak
280    float          xCentroid;      ///< x-pixel location of centroid
281    float          yCentroid;      ///< y-pixel location of centroid
282    float          zCentroid;      ///< z-pixel location of centroid
283    std::string    centreType;     ///< which type of pixel centre to report: "average", "centroid", or "peak" (flux)
284    bool           negSource;      ///< is the source a negative feature?
285    std::string    flagText;       ///< any warning flags about the quality of the detection.
286    // WCS related
287    int            id;             ///< ID -- generally number in list
288    std::string    name;           ///< IAU-style name (based on position)
289    bool           flagWCS;        ///< A flag indicating whether the WCS parameters have been set.
290    std::string    raS;            ///< Right Ascension (or Longitude) of pixel centre in form 12:34:23
291    std::string    decS;           ///< Declination (or Latitude) of pixel centre, in form -12:23:34
292    double         ra;             ///< Central Right Ascension in degrees
293    double         dec;            ///< Central Declination in degrees
294    double         raWidth;        ///< Width of detection in RA direction in arcmin
295    double         decWidth;       ///< Width of detection in Dec direction in arcmin
296    double         majorAxis;      ///< Major axis length in arcmin
297    double         minorAxis;      ///< Minor axis length in arcmin
298    double         posang;         ///< Position angle of the major axis, in degrees
299    bool           specOK;         ///< Is the spectral dimension valid?
300    std::string    specUnits;      ///< Units of the spectral dimension
301    std::string    specType;       ///< WCS ctype code for the spectral dimension
302    std::string    fluxUnits;      ///< Units of flux
303    std::string    intFluxUnits;   ///< Units of integrated flux
304    std::string    lngtype;        ///< Type of longitude axis (RA/GLON)
305    std::string    lattype;        ///< Type of latitude axis (DEC/GLAT)
306    double         vel;            ///< Central velocity (from zCentre)
307    double         velWidth;       ///< Full velocity width
308    double         velMin;         ///< Minimum velocity
309    double         velMax;         ///< Maximum velocity
310    double         v20min;         ///< Minimum velocity at 20% of peak flux
311    double         v20max;         ///< Maximum velocity at 20% of peak flux
312    double         w20;            ///< Velocity width at 20% of peak flux 
313    double         v50min;         ///< Minimum velocity at 50% of peak flux
314    double         v50max;         ///< Maximum velocity at 50% of peak flux
315    double         w50;            ///< Velocity width at 50% of peak flux 
316    /// @brief  The next six are the precision of values printed in the headers of the spectral plots
317    /// @name
318    /// @{
319    int            posPrec;        ///< Precision of WCS positional values
320    int            xyzPrec;        ///< Precision of pixel positional values
321    int            fintPrec;       ///< Precision of F_int/F_tot values
322    int            fpeakPrec;      ///< Precision of F_peak values
323    int            velPrec;        ///< Precision of velocity values.
324    int            snrPrec;        ///< Precision of S/N_max values.
325    /// @}
326  };
327
328  //==========================================================================
329
330  //////////////////////////////////////////////////////
331  // Prototypes for functions that use above classes
332  //////////////////////////////////////////////////////
333
334  //----------------
335  // These are in sorting.cc
336  //
337  /// @brief Sort a list of Detections by Z-pixel value.
338  void SortByZ(std::vector <Detection> &inputList);
339
340  /// @brief Sort a list of Detections by Velocity.
341  void SortByVel(std::vector <Detection> &inputList);
342
343  /// @brief Sort a list of Detections by a nominated parameter
344  void SortDetections(std::vector <Detection> &inputList, std::string parameter);
345
346  //----------------
347  // This is in areClose.cc
348  //
349  // /// @brief Determine whether two objects are close according to set parameters.
350  // bool areClose(Detection &object1, Detection &object2, Param &par);
351
352  //----------------
353  // This is in mergeIntoList.cc
354  //
355  /// @brief Add an object into a list, combining with adjacent objects if need be.
356  void mergeIntoList(Detection &object, std::vector <Detection> &objList,
357                     Param &par);
358
359  //----------------
360  // These are in Cubes/Merger.cc
361  //
362  /// @brief Merge a list of Detections so that all adjacent voxels are in the same Detection.
363  void mergeList(std::vector<Detection> &objList, Param &par);   
364  /// @brief Culls a list of Detections that do not meet minimum requirements.
365  void finaliseList(std::vector<Detection> &objList, Param &par);
366  /// @brief Manage both the merging and the cleaning up of the list.
367  void ObjectMerger(std::vector<Detection> &objList, Param &par);
368
369  // /// @brief Print the header information to a particular table
370  // void outputTableHeader(std::ostream &stream, Catalogues::CatalogueSpecification &columns, Catalogues::DESTINATION tableType, bool flagWCS);
371
372}
373
374#endif
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