IntegerOrientationChannel.C

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00001 /*!@file Channels/IntegerOrientationChannel.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.       //
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00030 // Boston, MA 02111-1307 USA.                                           //
00031 // //////////////////////////////////////////////////////////////////// //
00032 //
00033 // Primary maintainer for this file: Rob Peters <rjpeters at usc dot edu>
00034 // $HeadURL: svn://isvn.usc.edu/software/invt/trunk/saliency/src/Channels/IntegerOrientationChannel.C $
00035 // $Id: IntegerOrientationChannel.C 8199 2007-03-30 17:58:46Z rjpeters $
00036 //
00037 
00038 #ifndef CHANNELS_INTEGERORIENTATIONCHANNEL_C_DEFINED
00039 #define CHANNELS_INTEGERORIENTATIONCHANNEL_C_DEFINED
00040 
00041 #include "Channels/IntegerOrientationChannel.H"
00042 
00043 #include "Channels/ChannelOpts.H"
00044 #include "Channels/IntegerSimpleChannel.H"
00045 #include "Component/OptionManager.H"
00046 #include "Image/ImageSetOps.H"
00047 #include "Image/IntegerMathOps.H"
00048 #include "Image/PyramidCache.H"
00049 #include "Util/sformat.H"
00050 #include "rutz/mutex.h"
00051 #include "rutz/trace.h"
00052 
00053 // ######################################################################
00054 // IntegerOrientationChannel member definitions:
00055 // ######################################################################
00056 
00057 // ######################################################################
00058 IntegerOrientationChannel::
00059 IntegerOrientationChannel(OptionManager& mgr,
00060                           nub::ref<IntegerMathEngine> eng) :
00061   IntegerComplexChannel(mgr, "Integer Orientation",
00062                         "int-orientation", ORI, eng),
00063   itsNumOrients(&OPT_NumOrientations, this) // see Channels/ChannelOpts.{H,C}
00064 {
00065 GVX_TRACE(__PRETTY_FUNCTION__);
00066   // let's build our channels; we may have to re-build them if
00067   // itsNumOrient get changed on us before we start():
00068   buildSubChans();
00069 }
00070 
00071 // ######################################################################
00072 void IntegerOrientationChannel::buildSubChans()
00073 {
00074 GVX_TRACE(__PRETTY_FUNCTION__);
00075   // kill any subchans we may have had...
00076   this->removeAllSubChans();
00077 
00078   // let's instantiate our Gabor subchannels now that we know how many
00079   // we want. They will inherit the current values (typically
00080   // post-command-line parsing) of all their options as they are
00081   // constructed:
00082   LINFO("Using %d orientations spanning [0..180]deg", itsNumOrients.getVal());
00083   for (uint ori = 0; ori < itsNumOrients.getVal(); ++ori)
00084     {
00085       const double theta =
00086         180.0 * double(ori) / double(itsNumOrients.getVal());
00087 
00088       nub::ref<IntegerSimpleChannel> chan
00089         (new IntegerSimpleChannel
00090          (getManager(),
00091           sformat("Integer Gabor (%d)", int(theta)),
00092           sformat("int-ori_%u", ori), UNKNOWN,
00093           rutz::make_shared(new IntgOrientedPyrBuilder
00094                             (9, theta, this->getImath())),
00095           this->getMathEngine()));
00096 
00097       chan->setNormalizeOutput(true);
00098 
00099       this->addSubChan(chan);
00100 
00101       // let's export options on our newly built channels:
00102       chan->exportOptions(MC_RECURSE);
00103     }
00104 }
00105 
00106 // ######################################################################
00107 void IntegerOrientationChannel::paramChanged(ModelParamBase* const param,
00108                                              const bool valueChanged,
00109                                              ParamClient::ChangeStatus* status)
00110 {
00111 GVX_TRACE(__PRETTY_FUNCTION__);
00112   IntegerComplexChannel::paramChanged(param, valueChanged, status);
00113 
00114   // if the param is our number of orientations and it has become
00115   // different from our number of channels, let's reconfigure:
00116   if (param == &itsNumOrients && valueChanged)
00117     buildSubChans();
00118 }
00119 
00120 // ######################################################################
00121 IntegerOrientationChannel::~IntegerOrientationChannel()
00122 {
00123 GVX_TRACE(__PRETTY_FUNCTION__);
00124 }
00125 
00126 // ######################################################################
00127 IntegerSimpleChannel& IntegerOrientationChannel::gabor(const uint idx) const
00128 {
00129 GVX_TRACE(__PRETTY_FUNCTION__);
00130   // Since we are dynamic_cast'ing a reference, this operation will
00131   // either succeed or throw an exception.
00132   return *(dynCast<IntegerSimpleChannel>(subChan(idx)));
00133 }
00134 
00135 // ######################################################################
00136 void IntegerOrientationChannel::doInputInt(const IntegerInput& inp,
00137                                            const SimTime& t,
00138                                            PyramidCache<int>* cache,
00139                                            const Image<byte>& clipMask)
00140 {
00141 GVX_TRACE(__PRETTY_FUNCTION__);
00142 
00143   ASSERT(inp.grayInt().initialized());
00144 
00145   if (numChans() == 0)
00146     return;
00147 
00148   rutz::mutex_lock_class lock;
00149   if (cache && cache->laplacian9.beginSet(inp.grayInt(), &lock))
00150     {
00151       cache->laplacian9.endSet
00152         (inp.grayInt(),
00153          intgBuildPyrLaplacian
00154          (inp.grayInt(), gabor(0).getMinPyrLevel(),
00155           gabor(0).getMaxPyrLevel(), 9,
00156           this->getImath()),
00157          &lock);
00158     }
00159 
00160   for (uint i = 0; i < numChans(); ++i)
00161     {
00162       gabor(i).inputInt(inp, t, cache, clipMask);
00163       LINFO("Orientation pyramid (%d/%d) ok.", i+1, numChans());
00164     }
00165 }
00166 
00167 // ######################################################################
00168 /* So things look consistent in everyone's emacs... */
00169 /* Local Variables: */
00170 /* mode: c++ */
00171 /* indent-tabs-mode: nil */
00172 /* End: */
00173 
00174 #endif // CHANNELS_INTEGERORIENTATIONCHANNEL_C_DEFINED
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