Conversions.H

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00001 /*!@file Image/Conversions.H convert between Image and other types
00002   (e.g. std::vector) */
00003 
00004 // //////////////////////////////////////////////////////////////////// //
00005 // The iLab Neuromorphic Vision C++ Toolkit - Copyright (C) 2001 by the //
00006 // University of Southern California (USC) and the iLab at USC.         //
00007 // See http://iLab.usc.edu for information about this project.          //
00008 // //////////////////////////////////////////////////////////////////// //
00009 // Major portions of the iLab Neuromorphic Vision Toolkit are protected //
00010 // under the U.S. patent ``Computation of Intrinsic Perceptual Saliency //
00011 // in Visual Environments, and Applications'' by Christof Koch and      //
00012 // Laurent Itti, California Institute of Technology, 2001 (patent       //
00013 // pending; application number 09/912,225 filed July 23, 2001; see      //
00014 // http://pair.uspto.gov/cgi-bin/final/home.pl for current status).     //
00015 // //////////////////////////////////////////////////////////////////// //
00016 // This file is part of the iLab Neuromorphic Vision C++ Toolkit.       //
00017 //                                                                      //
00018 // The iLab Neuromorphic Vision C++ Toolkit is free software; you can   //
00019 // redistribute it and/or modify it under the terms of the GNU General  //
00020 // Public License as published by the Free Software Foundation; either  //
00021 // version 2 of the License, or (at your option) any later version.     //
00022 //                                                                      //
00023 // The iLab Neuromorphic Vision C++ Toolkit is distributed in the hope  //
00024 // that it will be useful, but WITHOUT ANY WARRANTY; without even the   //
00025 // implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR      //
00026 // PURPOSE.  See the GNU General Public License for more details.       //
00027 //                                                                      //
00028 // You should have received a copy of the GNU General Public License    //
00029 // along with the iLab Neuromorphic Vision C++ Toolkit; if not, write   //
00030 // to the Free Software Foundation, Inc., 59 Temple Place, Suite 330,   //
00031 // Boston, MA 02111-1307 USA.                                           //
00032 // //////////////////////////////////////////////////////////////////// //
00033 //
00034 // Primary maintainer for this file: T Nathan Mundhenk <mundhenk@usc.edu>
00035 // $HeadURL: svn://isvn.usc.edu/software/invt/trunk/saliency/src/Image/Conversions.H $
00036 // $Id: Conversions.H 4663 2005-06-23 17:47:28Z rjpeters $
00037 //
00038 
00039 #ifndef IMAGE_CONVERSIONS_H_DEFINED
00040 #define IMAGE_CONVERSIONS_H_DEFINED
00041 
00042 #include "Util/Assert.H"
00043 #include "Image/Image.H"
00044 
00045 #include <vector>
00046 
00047 
00048 //! Conversion assigment operator.
00049 /*! e.g.:
00050   \code
00051   Image<byte> im1; std::vector im2; vectorToImage(im2, im1);
00052   \endcode
00053 
00054 */
00055 
00056 template <class T>
00057 inline Image<T> vectorToImage(const std::vector<std::vector<T> >& A);
00058 
00059 template <class T>
00060 inline Image<T> vectorToImage(const std::vector<std::vector<T>* >& A);
00061 
00062 template <class T>
00063 inline Image<T> vectorToImage(const std::vector<std::vector<T*> >& A);
00064 
00065 //! return a double nested vector that represents data (see also =operator)
00066 template <class T>
00067 inline void getVector(const Image<T>& src,
00068                       std::vector<std::vector<T> > *V);
00069 
00070 //! return a double nested vector that represents data (see also =operator)
00071 template <class T>
00072 inline void getVector(const Image<T>& src,
00073                       std::vector<std::vector<T*> > *V);
00074 
00075 //! return a single row of an image as a vector
00076 template <class T>
00077 inline void getVectorRow(const Image<T>& src,
00078                          std::vector<T> *V, int row);
00079 
00080 //! return a single row of an image as a vector
00081 template <class T>
00082 inline void getVectorRow(const Image<T>& src,
00083                          std::vector<T*> *V, int row);
00084 
00085 //! return a single column of an image as a vector
00086 template <class T>
00087 inline void getVectorColumn(const Image<T>& src,
00088                             std::vector<T> *V, int column);
00089 
00090 //! return a single column of an image as a vector
00091 template <class T>
00092 inline void getVectorColumn(const Image<T>& src,
00093                             std::vector<T*> *V, int column);
00094 
00095 // ######################################################################
00096 // ##### Inline function definitions
00097 // ######################################################################
00098 
00099 // ######################################################################
00100 template <class T> inline
00101 Image<T> vectorToImage(const std::vector<std::vector<T> >& src)
00102 {
00103   Image<T> dst((signed)src[0].size(),(signed)src.size(), NO_INIT);
00104 
00105   typename Image<T>::iterator aptr = dst.beginw();
00106   typename std::vector<std::vector<T> >::const_iterator vptr = src.begin();
00107   typename std::vector<std::vector<T> >::const_iterator vstp = src.end();
00108   while(vptr != vstp)
00109   {
00110     typename std::vector<T>::const_iterator vvptr = vptr->begin();
00111     typename std::vector<T>::const_iterator vvstp = vptr->end();
00112     while(vvptr != vvstp)
00113       *aptr++ = *vvptr++;
00114     ++vptr;
00115   }
00116 
00117   return dst;
00118 }
00119 
00120 // ######################################################################
00121 template <class T> inline
00122 Image<T> vectorToImage(const std::vector<std::vector<T>* >& src)
00123 {
00124   Image<T> dst((signed)src[0]->size(),(signed)src.size(), NO_INIT);
00125 
00126   typename Image<T>::iterator aptr = dst.beginw();
00127   for(int ii = 0; ii < (signed)src.size(); ii++)
00128   {
00129     //std::vector<T>* temp = src[ii];
00130     typename std::vector<T>::iterator vvptr = src[ii]->begin();
00131     typename std::vector<T>::iterator vvstp = src[ii]->end();
00132     while(vvptr != vvstp)
00133       *aptr++ = *vvptr++;
00134   }
00135 
00136   return dst;
00137 }
00138 
00139 // ######################################################################
00140 template <class T> inline
00141 Image<T> vectorToImage(const std::vector<std::vector<T*> >& src)
00142 {
00143   Image<T> dst((signed)src[0].size(),(signed)src.size(), NO_INIT);
00144 
00145   typename Image<T>::iterator aptr = dst.beginw();
00146   typename std::vector<std::vector<T*> >::const_iterator vptr = src.begin();
00147   typename std::vector<std::vector<T*> >::const_iterator vstp = src.end();
00148   while(vptr != vstp)
00149   {
00150     typename std::vector<T*>::iterator vvptr = vptr->begin();
00151     typename std::vector<T*>::iterator vvstp = vptr->end();
00152     while(vvptr != vvstp)
00153       *aptr++ = **vvptr++;
00154     ++vptr;
00155   }
00156 
00157   return dst;
00158 }
00159 
00160 // ######################################################################
00161 template <class T> inline
00162 void getVector(const Image<T>& src, std::vector<std::vector<T> > *V)
00163 {
00164   ASSERT(V->size() >= (unsigned int)src.getHeight());
00165   ASSERT(V->at(0).size() >= (unsigned int)src.getWidth());
00166   typename Image<T>::const_iterator aptr = src.begin();
00167   typename std::vector<std::vector<T> >::iterator vptr = V->begin();
00168   typename std::vector<std::vector<T> >::iterator vstp = V->end();
00169   while(vptr != vstp)
00170     {
00171       typename std::vector<T>::iterator vvptr = vptr->begin();
00172       typename std::vector<T>::iterator vvstp = vptr->end();
00173       while(vvptr != vvstp)
00174         *vvptr++ = *aptr++;
00175     }
00176 }
00177 
00178 // ######################################################################
00179 template <class T> inline
00180 void getVector(const Image<T>& src, std::vector<std::vector<T*> > *V)
00181 {
00182   ASSERT(V->size() >= (unsigned int)src.getHeight());
00183   ASSERT(V->at(0).size() >= (unsigned int)src.getWidth());
00184   typename Image<T>::const_iterator aptr = src.begin();
00185   typename std::vector<std::vector<T*> >::iterator vptr = V->begin();
00186   typename std::vector<std::vector<T*> >::iterator vstp = V->end();
00187   while(vptr != vstp)
00188     {
00189       typename std::vector<T*>::iterator vvptr = vptr->begin();
00190       typename std::vector<T*>::iterator vvstp = vptr->end();
00191       while(vvptr != vvstp)
00192         **vvptr++ = *aptr++;
00193     }
00194 }
00195 
00196 // ######################################################################
00197 template <class T> inline
00198 void getVectorRow(const Image<T>& src, std::vector<T> *V, int row)
00199 {
00200   ASSERT(V->size() >= (unsigned int)src.getWidth());
00201   typename Image<T>::const_iterator aptr =
00202     src.begin() + (row * src.getWidth());
00203   typename std::vector<T>::iterator vptr = V->begin();
00204   typename std::vector<T>::iterator vstp = V->end();
00205   while(vptr != vstp)
00206     {
00207       *vptr++ = *aptr++;
00208     }
00209 }
00210 
00211 // ######################################################################
00212 template <class T> inline
00213 void getVectorRow(const Image<T>& src, std::vector<T*> *V, int row)
00214 {
00215   ASSERT(V->size() >= (unsigned int)src.getWidth());
00216   typename Image<T>::const_iterator aptr =
00217     src.begin() + (row * src.getWidth());
00218 
00219   typename std::vector<T*>::iterator vptr = V->begin();
00220   typename std::vector<T*>::iterator vstp = V->end();
00221   while(vptr != vstp)
00222     {
00223       **vptr++ = *aptr++;
00224     }
00225 }
00226 
00227 // ######################################################################
00228 template <class T> inline
00229 void getVectorColumn(const Image<T>& src, std::vector<T> *V, int column)
00230 {
00231   ASSERT(V->size() >= (unsigned int)src.getHeight());
00232   typename std::vector<T>::iterator vptr = V->begin();
00233   typename std::vector<T>::iterator vstp = V->end();
00234   int current = 0;
00235   while(vptr != vstp)
00236     {
00237       *vptr++ = src.begin()[column + current*src.getWidth()];
00238       current++;
00239     }
00240 }
00241 
00242 // ######################################################################
00243 template <class T> inline
00244 void getVectorColumn(const Image<T>& src, std::vector<T*> *V, int column)
00245 {
00246   ASSERT(V->size() >= (unsigned int)src.getHeight());
00247   typename std::vector<T*>::iterator vptr = V->begin();
00248   typename std::vector<T*>::iterator vstp = V->end();
00249   int current = 0;
00250   while(vptr != vstp)
00251     {
00252       **vptr++ = src.begin()[column + current*src.getWidth()];
00253       current++;
00254     }
00255 }
00256 
00257 
00258 #endif // !IMAGE_CONVERSIONS_H_DEFINED
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