00001 /*!@file Channels/ColorChannel.C */ 00002 00003 // //////////////////////////////////////////////////////////////////// // 00004 // The iLab Neuromorphic Vision C++ Toolkit - Copyright (C) 2000-2005 // 00005 // by the University of Southern California (USC) and the iLab at USC. // 00006 // See http://iLab.usc.edu for information about this project. // 00007 // //////////////////////////////////////////////////////////////////// // 00008 // Major portions of the iLab Neuromorphic Vision Toolkit are protected // 00009 // under the U.S. patent ``Computation of Intrinsic Perceptual Saliency // 00010 // in Visual Environments, and Applications'' by Christof Koch and // 00011 // Laurent Itti, California Institute of Technology, 2001 (patent // 00012 // pending; application number 09/912,225 filed July 23, 2001; see // 00013 // http://pair.uspto.gov/cgi-bin/final/home.pl for current status). // 00014 // //////////////////////////////////////////////////////////////////// // 00015 // This file is part of the iLab Neuromorphic Vision C++ Toolkit. // 00016 // // 00017 // The iLab Neuromorphic Vision C++ Toolkit is free software; you can // 00018 // redistribute it and/or modify it under the terms of the GNU General // 00019 // Public License as published by the Free Software Foundation; either // 00020 // version 2 of the License, or (at your option) any later version. // 00021 // // 00022 // The iLab Neuromorphic Vision C++ Toolkit is distributed in the hope // 00023 // that it will be useful, but WITHOUT ANY WARRANTY; without even the // 00024 // implied warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR // 00025 // PURPOSE. See the GNU General Public License for more details. // 00026 // // 00027 // You should have received a copy of the GNU General Public License // 00028 // along with the iLab Neuromorphic Vision C++ Toolkit; if not, write // 00029 // to the Free Software Foundation, Inc., 59 Temple Place, Suite 330, // 00030 // Boston, MA 02111-1307 USA. // 00031 // //////////////////////////////////////////////////////////////////// // 00032 // 00033 // Primary maintainer for this file: 00034 // $HeadURL: svn://isvn.usc.edu/software/invt/trunk/saliency/src/Channels/ColorChannel.C $ 00035 // $Id: ColorChannel.C 8210 2007-03-31 00:21:06Z rjpeters $ 00036 // 00037 00038 #ifndef COLORCHANNEL_C_DEFINED 00039 #define COLORCHANNEL_C_DEFINED 00040 00041 #include "Channels/ColorChannel.H" 00042 00043 #include "Channels/BlueYellowChannel.H" 00044 #include "Channels/YellowBlueChannel.H" 00045 #include "Channels/ChannelOpts.H" 00046 #include "Channels/RedGreenChannel.H" 00047 #include "Channels/GreenRedChannel.H" 00048 #include "Component/OptionManager.H" 00049 #include "Image/ColorOps.H" 00050 #include "rutz/trace.h" 00051 00052 // ###################################################################### 00053 // Double Opponent ColorChannel member definitions: 00054 // ###################################################################### 00055 00056 ColorChannel::ColorChannel(OptionManager& mgr) : 00057 ComplexChannel(mgr, "Color", "color", COLOR), 00058 itsLumThresh("ColorChannelLuminanceThreshold", this, 25.5F), 00059 itsMethod(&OPT_ColorComputeType, this) 00060 { 00061 GVX_TRACE(__PRETTY_FUNCTION__); 00062 00063 itsRG = nub::soft_ref<RedGreenChannel>(new RedGreenChannel(getManager(), true)); 00064 itsBY = nub::soft_ref<BlueYellowChannel>(new BlueYellowChannel(getManager(), true)); 00065 00066 this->addSubChan(itsRG); 00067 this->addSubChan(itsBY); 00068 } 00069 00070 // ###################################################################### 00071 void ColorChannel::paramChanged(ModelParamBase* const param, 00072 const bool valueChanged, 00073 ParamClient::ChangeStatus* status) 00074 { 00075 ComplexChannel::paramChanged(param, valueChanged, status); 00076 00077 // if the param has become different from our number of channels, 00078 // let's reconfigure: 00079 if (param == &itsMethod && valueChanged) 00080 { 00081 switch(itsMethod.getVal()) 00082 { 00083 case COLstandardFull: 00084 { 00085 LINFO("Rebuilding Color Channels"); 00086 //remove the old channels 00087 this->removeAllSubChans(); 00088 00089 //rebuild the channels without taking the abs value 00090 itsRG = nub::soft_ref<RedGreenChannel>(new RedGreenChannel(getManager(), false)); 00091 itsGR = nub::soft_ref<GreenRedChannel>(new GreenRedChannel(getManager(), false)); 00092 itsBY = nub::soft_ref<BlueYellowChannel>(new BlueYellowChannel(getManager(), false)); 00093 itsYB = nub::soft_ref<YellowBlueChannel>(new YellowBlueChannel(getManager(), false)); 00094 00095 this->addSubChan(itsRG); 00096 this->addSubChan(itsGR); 00097 this->addSubChan(itsBY); 00098 this->addSubChan(itsYB); 00099 } 00100 default: 00101 break; 00102 } 00103 00104 } 00105 00106 } 00107 00108 // ###################################################################### 00109 RedGreenChannel& ColorChannel::rg() const 00110 { 00111 GVX_TRACE(__PRETTY_FUNCTION__); 00112 return *itsRG; 00113 } 00114 00115 // ###################################################################### 00116 BlueYellowChannel& ColorChannel::by() const 00117 { 00118 GVX_TRACE(__PRETTY_FUNCTION__); 00119 return *itsBY; 00120 } 00121 00122 // ###################################################################### 00123 GreenRedChannel& ColorChannel::gr() const 00124 { 00125 GVX_TRACE(__PRETTY_FUNCTION__); 00126 return *itsGR; 00127 } 00128 00129 // ###################################################################### 00130 YellowBlueChannel& ColorChannel::yb() const 00131 { 00132 GVX_TRACE(__PRETTY_FUNCTION__); 00133 return *itsYB; 00134 } 00135 00136 // ###################################################################### 00137 ColorChannel::~ColorChannel() 00138 { 00139 GVX_TRACE(__PRETTY_FUNCTION__); 00140 } 00141 00142 // ###################################################################### 00143 void ColorChannel::doInput(const InputFrame& inframe) 00144 { 00145 GVX_TRACE(__PRETTY_FUNCTION__); 00146 Image<float> rgimg, byimg; 00147 00148 switch(itsMethod.getVal()) 00149 { 00150 case COLstandard: 00151 ASSERT(inframe.colorByte().initialized()); 00152 LINFO("Using 'standard' method to compute color opponencies."); 00153 getRGBY(inframe.colorByte(), rgimg, byimg, itsLumThresh.getVal()); 00154 break; 00155 00156 case COLstandardFull: 00157 { 00158 ASSERT(inframe.colorFloat().initialized()); 00159 00160 LINFO("Using 'standard Full' method to compute color opponencies."); 00161 Image<float> grimg, ybimg; 00162 Image<float> r,g,b,y; 00163 getRGBY(inframe.colorFloat(), r, g, b, y, itsLumThresh.getVal()); 00164 rgimg = r-g; grimg = g - r; 00165 byimg = b-y; ybimg = y - b; 00166 itsGR->input(InputFrame::fromGrayFloat 00167 (&grimg, inframe.time(), &inframe.clipMask(), inframe.pyrCache())); 00168 itsYB->input(InputFrame::fromGrayFloat 00169 (&ybimg, inframe.time(), &inframe.clipMask(), inframe.pyrCache())); 00170 } 00171 break; 00172 00173 case COLsimple: 00174 ASSERT(inframe.colorByte().initialized()); 00175 LINFO("Using 'simple' method to compute color opponencies."); 00176 getRGBYsimple(inframe.colorByte(), rgimg, byimg, itsLumThresh.getVal()); 00177 break; 00178 00179 default: 00180 LFATAL("Unknown ColorComputeType!"); 00181 break; 00182 } 00183 00184 00185 itsRG->input(InputFrame::fromGrayFloat(&rgimg, inframe.time(), &inframe.clipMask(), inframe.pyrCache())); 00186 itsBY->input(InputFrame::fromGrayFloat(&byimg, inframe.time(), &inframe.clipMask(), inframe.pyrCache())); 00187 LINFO("Double Opponent Color channel ok."); 00188 } 00189 00190 // ###################################################################### 00191 void ColorChannel::setRG(nub::ref<RedGreenChannel> rg) 00192 { 00193 this->removeSubChan(itsRG); 00194 itsRG = rg; 00195 this->addSubChan(itsRG); 00196 } 00197 00198 // ###################################################################### 00199 void ColorChannel::setBY(nub::ref<BlueYellowChannel> by) 00200 { 00201 this->removeSubChan(itsBY); 00202 itsBY = by; 00203 this->addSubChan(itsBY); 00204 } 00205 00206 // ###################################################################### 00207 void ColorChannel::setGR(nub::ref<GreenRedChannel> gr) 00208 { 00209 this->removeSubChan(itsGR); 00210 itsGR = gr; 00211 this->addSubChan(itsGR); 00212 } 00213 00214 // ###################################################################### 00215 void ColorChannel::setYB(nub::ref<YellowBlueChannel> yb) 00216 { 00217 this->removeSubChan(itsYB); 00218 itsYB = yb; 00219 this->addSubChan(itsYB); 00220 } 00221 00222 // ###################################################################### 00223 /* So things look consistent in everyone's emacs... */ 00224 /* Local Variables: */ 00225 /* indent-tabs-mode: nil */ 00226 /* End: */ 00227 00228 #endif // COLORCHANNEL_C_DEFINED