32 #include "DGtal/base/Common.h"
33 #include "DGtal/helpers/StdDefs.h"
34 #include "DGtal/base/BasicFunctors.h"
35 #include "DGtal/graph/GraphVisitorRange.h"
36 #include "DGtal/io/boards/Board2D.h"
37 #include "DGtal/io/Color.h"
38 #include "DGtal/io/colormaps/GradientColorMap.h"
39 #include "DGtal/shapes/Shapes.h"
40 #include "DGtal/topology/CanonicSCellEmbedder.h"
41 #include "DGtal/graph/DistanceBreadthFirstVisitor.h"
42 #include "DGtal/geometry/volumes/distance/LpMetric.h"
43 #include "DGtal/geometry/surfaces/estimation/LocalEstimatorFromSurfelFunctorAdapter.h"
44 #include "DGtal/geometry/surfaces/estimation/estimationFunctors/BasicEstimatorFromSurfelsFunctors.h"
45 #include "DGtal/topology/LightImplicitDigitalSurface.h"
46 #include "DGtal/geometry/surfaces/estimation/estimationFunctors/TensorVotingFeatureExtraction.h"
48 #include "DGtal/shapes/implicit/ImplicitHyperCube.h"
49 #include "DGtal/shapes/implicit/ImplicitBall.h"
50 #include "DGtal/shapes/GaussDigitizer.h"
54 using namespace DGtal;
64 template<
typename Shape>
67 unsigned int nbok = 0;
81 Point p1( -10, -10, -10 );
82 Point p2( 10, 10, 10 );
84 nbok +=
K.
init( p1, p2,
true ) ? 1 : 0;
86 trace.
info() <<
"(" << nbok <<
"/" << nb <<
") "
87 <<
"K.init() is ok" << std::endl;
90 Shape shape(RealPoint::diagonal(0.0), 6.0 );
93 gauss.init(p1,p2,1.0);
97 SurfaceContainer* surfaceContainer =
new SurfaceContainer
109 FunctorVoting estimator(embedder,1);
111 ConvFunctor convFunc(1.0);
115 reporter.setParams(l2double, estimator , convFunc, 2.0);
119 typename FunctorVoting::Quantity val = reporter.eval(
surface.begin());
122 trace.
info() <<
"Voting = "<<val <<std::endl;
127 nbok +=
true ? 1 : 0;
129 trace.
info() <<
"(" << nbok <<
"/" << nb <<
") "
130 <<
"true == true" << std::endl;
139 unsigned int nbok = 0;
153 Point p1( -10, -10, -10 );
154 Point p2( 10, 10, 10 );
156 nbok +=
K.
init( p1, p2,
true ) ? 1 : 0;
158 trace.
info() <<
"(" << nbok <<
"/" << nb <<
") "
159 <<
"K.init() is ok" << std::endl;
162 Shape shape(RealPoint::diagonal(0.0), 6.0 );
165 gauss.init(p1,p2,1.0);
169 SurfaceContainer* surfaceContainer =
new SurfaceContainer
181 FunctorVoting estimator(embedder,1);
185 ConvFunctor convFunc(1.0);
186 Reporter reporter(
surface, l2, estimator , convFunc);
188 reporter.setParams(l2, estimator , convFunc, 2.0);
198 Reporter::Quantity val = reporter.eval( it );
199 trace.
info() <<
"probing at "<< *it<<std::endl;
200 trace.
info() <<
"Voting = "<<val <<std::endl;
212 int main(
int argc,
char** argv )
216 for (
int i = 0; i < argc; ++i )
220 bool res = testLocalEstimatorFromFunctorAdapter<ImplicitHyperCube<Z3i::Space> >()
223 trace.
emphase() << ( res ?
"Passed." :
"Error." ) << endl;
Aim: Represents a set of n-1-cells in a nD space, together with adjacency relation between these cell...
DigitalSurfaceContainer::Surfel Surfel
DigitalSurfaceContainer::SurfelConstIterator ConstIterator
Aim: A class for computing the Gauss digitization of some Euclidean shape, i.e. its intersection with...
Aim: model of CEuclideanOrientedShape and CEuclideanBoundedShape concepts to create a ball in nD....
Aim: model of CEuclideanOrientedShape and CEuclideanBoundedShape concepts to create an hypercube in n...
Aim: This class is a model of CCellularGridSpaceND. It represents the cubical grid as a cell complex,...
bool init(const Point &lower, const Point &upper, bool isClosed)
Specifies the upper and lower bounds for the maximal cells in this space.
const Point & sKCoords(const SCell &c) const
Return its Khalimsky coordinates.
Aim: A model of CDigitalSurfaceContainer which defines the digital surface as the boundary of an impl...
Aim: this class adapts any local functor on digital surface element to define a local estimator....
Aim: implements l_p metrics.
Aim: A utility class for constructing surfaces (i.e. set of (n-1)-cells).
void beginBlock(const std::string &keyword="")
CountedPtr< SH3::DigitalSurface > surface
SH3::DigitalSurface Surface
DGtal is the top-level namespace which contains all DGtal functions and types.
Represents a signed cell in a cellular grid space by its Khalimsky coordinates and a boolean value.
Aim: defines a functor on double numbers which corresponds to a Gaussian convolution kernel....
int main(int argc, char **argv)
bool testLocalEstimatorFromFunctorAdapter()