source: trunk/src/ATrous/filter.cc @ 914

Last change on this file since 914 was 914, checked in by MatthewWhiting, 12 years ago

Final bunch of changes for #95, where we remove the old duchampWarning & duchampError from duchamp.hh and get rid of the last references to them.

File size: 8.1 KB
Line 
1// -----------------------------------------------------------------------
2// filter.cc: Defining a filter function for wavelet reconstruction.
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 <duchamp/duchamp.hh>
31#include <duchamp/ATrous/filter.hh>
32#include <math.h>
33#include <vector>
34
35namespace duchamp
36{
37
38  Filter::Filter()
39  {
40    this->sigmaFactors.resize(3);
41    for(int i=0;i<3;i++) this->sigmaFactors[i] = new std::vector<double>(20);
42    this->loadSpline();
43  }
44
45  Filter::Filter(const Filter& f)
46  {
47    operator=(f);
48  }
49
50  Filter& Filter::operator=(const Filter& f)
51  {
52    if(this==&f) return *this;
53    this->name = f.name;
54    this->filter1D = f.filter1D;
55    this->maxNumScales = f.maxNumScales;
56    this->sigmaFactors = f.sigmaFactors;
57    return *this;
58  }
59
60  //-----------------------------------------------------------------------
61
62  Filter::~Filter()
63  {
64    this->filter1D.clear();
65    this->maxNumScales.clear();
66    //for(int i=0;i<3;i++) delete this->sigmaFactors[i];
67    //for(int i=0;i<3;i++) this->sigmaFactors[i]->clear();
68//     for(int i=0;i<3;i++){
69//       std::vector<double>* p = this->sigmaFactors[i];
70//       delete p;
71//     }
72    this->sigmaFactors.clear();
73  }
74  //-----------------------------------------------------------------------
75
76  void Filter::define(int filtercode)
77  {
78    switch(filtercode)
79      {
80      case 2:
81        this->loadTriangle();
82        break;
83      case 3:
84        this->loadHaar();
85        break;
86      case 4:
87        //       this->loadTopHat();
88      case 1:
89      default:
90        if(filtercode!=1){
91          //    if(filtercode==4) {
92          //      std::stringstream errmsg;
93          //      errmsg << "TopHat Wavelet not being used currently."
94          //             << "Using B3 spline instead.\n";
95          //      duchampWarning("Filter::define", errmsg.str());
96          //    }
97          //    else {
98          DUCHAMPWARN("Wavelet Filter", "Filter code " << filtercode << " undefined. Using B3 spline.");
99          //    }
100        }
101        this->loadSpline();
102        break;
103      }
104 
105  }
106  //-----------------------------------------------------------------------
107
108  unsigned int Filter::getNumScales(long length)
109  {
110    unsigned int num;
111    switch(this->filter1D.size()){
112    case 5:
113      num = int(log(double(length-1))/M_LN2) - 1;
114      break;
115    case 3:
116      num = int(log(double(length-1))/M_LN2);
117      break;
118    default:
119      num = 1 + int(log(double(length-1)/double(this->filter1D.size()-1))/M_LN2);
120      break;
121    }
122    return num;
123  }
124  //-----------------------------------------------------------------------
125
126  unsigned int Filter::getMaxSize(int scale)
127  {
128    switch(this->filter1D.size()){
129    case 5:
130      return int(pow(2,scale+1)) + 1;
131      break;
132    case 3:
133      return int(pow(2,scale)) + 1;
134      break;
135    default:
136      return int(pow(2,scale-1))*(this->filter1D.size()-1) + 1;
137      break;
138    }
139  }
140  //-----------------------------------------------------------------------
141
142  void Filter::loadSpline()
143  {
144    double filter[5] = {0.0625, 0.25, 0.375, 0.25, 0.0625};
145    this->name = "B3 spline function";
146    this->filter1D.resize(5);
147    for(int i=0;i<5;i++) this->filter1D[i] = filter[i];
148    this->sigmaFactors.resize(3);
149    this->maxNumScales.resize(3);
150
151    this->maxNumScales[0] = 18;
152    double sigmaFactors1D[19] = {1.00000000000,7.23489806e-1,2.85450405e-1,1.77947535e-1,
153                                 1.22223156e-1,8.58113122e-2,6.05703043e-2,4.28107206e-2,
154                                 3.02684024e-2,2.14024008e-2,1.51336781e-2,1.07011079e-2,
155                                 7.56682272e-3,5.35055108e-3,3.78341085e-3,2.67527545e-3,
156                                 1.89170541e-3,1.33763772e-3,9.45852704e-4};
157    this->sigmaFactors[0]->resize(19);
158    for(int i=0;i<19;i++)(*this->sigmaFactors[0])[i] = sigmaFactors1D[i];
159
160    this->maxNumScales[1] = 12;
161    double sigmaFactors2D[13] = {1.00000000000,8.90796310e-1,2.00663851e-1,8.55075048e-2,
162                                 4.12474444e-2,2.04249666e-2,1.01897592e-2,5.09204670e-3,
163                                 2.54566946e-3,1.27279050e-3,6.36389722e-4,3.18194170e-4,
164                                 1.59096999e-4};
165    this->sigmaFactors[1]->resize(13);
166    for(int i=0;i<13;i++)(*this->sigmaFactors[1])[i] = sigmaFactors2D[i];
167
168    this->maxNumScales[2] = 7;
169    double sigmaFactors3D[8] = {1.00000000000,9.56543592e-1,1.20336499e-1,3.49500154e-2,
170                                1.18164242e-2,4.13233507e-3,1.45703714e-3,5.14791120e-4};
171    this->sigmaFactors[2]->resize(8);
172    for(int i=0;i<12;i++)(*this->sigmaFactors[2])[i] = sigmaFactors3D[i];
173  }
174  //-----------------------------------------------------------------------
175
176  void Filter::loadTriangle()
177  {
178    double filter[3] = {1./4., 1./2., 1./4.};
179    this->filter1D.resize(3);
180    for(int i=0;i<3;i++) this->filter1D[i] = filter[i];
181    this->name = "Triangle function";
182    this->sigmaFactors.resize(3);
183    this->maxNumScales.resize(3);
184
185    this->maxNumScales[0] = 18;
186    double sigmaFactors1D[19] = {1.00000000000,6.12372436e-1,3.30718914e-1,2.11947812e-1,
187                                 1.45740298e-1,1.02310944e-1,7.22128185e-2,5.10388224e-2,
188                                 3.60857673e-2,2.55157615e-2,1.80422389e-2,1.27577667e-2,
189                                 9.02109930e-3,6.37887978e-3,4.51054902e-3,3.18942978e-3,
190                                 2.25527449e-3,1.59471988e-3,1.12763724e-4};
191    this->sigmaFactors[0]->resize(19);
192    for(int i=0;i<19;i++)(*this->sigmaFactors[0])[i] = sigmaFactors1D[i];
193
194    this->maxNumScales[1] = 12;
195    double sigmaFactors2D[13] = {1.00000000000,8.00390530e-1,2.72878894e-1,1.19779282e-1,
196                                 5.77664785e-2,2.86163283e-2,1.42747506e-2,7.13319703e-3,
197                                 3.56607618e-3,1.78297280e-3,8.91478237e-4,4.45738098e-4,
198                                 2.22868922e-4};
199    this->sigmaFactors[1]->resize(13);
200    for(int i=0;i<12;i++)(*this->sigmaFactors[1])[i] = sigmaFactors2D[i];
201
202    this->maxNumScales[2] = 8;
203    double sigmaFactors3D[9] = {1.00000000000,8.959544490e-1,1.92033014e-1,5.76484078e-2,
204                                1.94912393e-2,6.812783870e-3,2.40175885e-3,8.48538128e-4,
205                                2.99949455e-4};
206    this->sigmaFactors[2]->resize(9);
207    for(int i=0;i<12;i++)(*this->sigmaFactors[2])[i] = sigmaFactors3D[i];
208  }
209  //-----------------------------------------------------------------------
210
211  void Filter::loadHaar()
212  {
213    double filter[3] = {0., 1./2., 1./2.};
214    this->name = "Haar wavelet";
215    this->filter1D.resize(3);
216    for(int i=0;i<3;i++) this->filter1D[i] = filter[i];
217    this->sigmaFactors.resize(3);
218    this->maxNumScales.resize(3);
219
220    this->maxNumScales[0] = 6;
221    double sigmaFactors1D[7] = {1.00000000000,7.07167810e-1,5.00000000e-1,3.53553391e-1,
222                                2.50000000e-1,1.76776695e-1,1.25000000e-1};
223    this->sigmaFactors[0]->resize(7);
224    for(int i=0;i<19;i++)(*this->sigmaFactors[0])[i] = sigmaFactors1D[i];
225
226    this->maxNumScales[1] = 6;
227    double sigmaFactors2D[7] = {1.00000000000,4.33012702e-1,2.16506351e-1,1.08253175e-1,
228                                5.41265877e-2,2.70632939e-2,1.35316469e-2};
229    this->sigmaFactors[1]->resize(7);
230    for(int i=0;i<12;i++)(*this->sigmaFactors[1])[i] = sigmaFactors2D[i];
231
232    this->maxNumScales[2] = 8;
233    double sigmaFactors3D[9] = {1.00000000000,9.35414347e-1,3.30718914e-1,1.16926793e-1,
234                                4.13398642e-2,1.46158492e-2,5.16748303e-3,1.82698115e-3,
235                                6.45935379e-4};
236    this->sigmaFactors[2]->resize(9);
237    for(int i=0;i<12;i++)(*this->sigmaFactors[2])[i] = sigmaFactors3D[i];
238  }
239
240}
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