Merge branch 'develop' of git@gitorious.org:polyvox/polyvox.git
This commit is contained in:
commit
6b4e81e685
@ -36,7 +36,8 @@ if(SPHINXBUILD_EXECUTABLE)
|
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COMMENT "Building PolyVox manual"
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)
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add_dependencies(manual doc)
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SET_PROPERTY(TARGET manual PROPERTY FOLDER "documentation")
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||||
set_target_properties(manual PROPERTIES PROJECT_LABEL "Manual") #Set label seen in IDE
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||||
SET_PROPERTY(TARGET manual PROPERTY FOLDER "Documentation")
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else()
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||||
if(NOT SPHINXBUILD_EXECUTABLE)
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message(STATUS "`sphinx-build` was not found. Try setting SPHINXBUILD_EXECUTABLE to its location.")
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||||
|
@ -59,7 +59,7 @@ IF(MSVC)
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||||
SET_TARGET_PROPERTIES(BasicExample PROPERTIES COMPILE_FLAGS "/W4 /wd4127")
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ENDIF(MSVC)
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TARGET_LINK_LIBRARIES(BasicExample ${QT_LIBRARIES} ${OPENGL_gl_LIBRARY} ${OPENGL_glu_LIBRARY} PolyVoxCore)
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SET_PROPERTY(TARGET BasicExample PROPERTY FOLDER "examples/Basic")
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SET_PROPERTY(TARGET BasicExample PROPERTY FOLDER "Examples")
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#Install - Only install the example in Windows
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IF(WIN32)
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|
@ -65,7 +65,7 @@ IF(MSVC)
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||||
SET_TARGET_PROPERTIES(OpenGLExample PROPERTIES COMPILE_FLAGS "/W4 /wd4127")
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ENDIF(MSVC)
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TARGET_LINK_LIBRARIES(OpenGLExample ${QT_LIBRARIES} ${OPENGL_gl_LIBRARY} ${OPENGL_glu_LIBRARY} PolyVoxCore)
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SET_PROPERTY(TARGET OpenGLExample PROPERTY FOLDER "examples/OpenGL")
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SET_PROPERTY(TARGET OpenGLExample PROPERTY FOLDER "Examples")
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#Install - Only install the example in Windows
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IF(WIN32)
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|
@ -101,12 +101,14 @@ int main(int argc, char *argv[])
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createCubeInVolume(volData, Vector3DInt32(midPos-10, 1, midPos-10), Vector3DInt32(midPos+10, maxPos-1, midPos+10), MaterialDensityPair44::getMaxDensity());
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createCubeInVolume(volData, Vector3DInt32(midPos-10, midPos-10 ,1), Vector3DInt32(midPos+10, midPos+10, maxPos-1), MaterialDensityPair44::getMaxDensity());
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//Smooth part of the volume
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RawVolume<MaterialDensityPair44> tempVolume(PolyVox::Region(0,0,0,128, 128, 128));
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LowPassFilter< LargeVolume<MaterialDensityPair44>, RawVolume<MaterialDensityPair44> > pass1(&volData, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), &tempVolume, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), 3);
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pass1.executeSAT();
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LowPassFilter< RawVolume<MaterialDensityPair44>, LargeVolume<MaterialDensityPair44> > pass2(&tempVolume, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), &volData, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), 3);
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pass2.executeSAT();
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//I've removed this smoothing because it doesn't really make sense to apply a low pass filter to a volume with material values.
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//I could implement the mathematical operators for MaterialDensityPair in such a way that they ignores the materials but this
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//seems to be setting a bad example. Users can add this operators in their own classes if they want smoothing.
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//RawVolume<MaterialDensityPair44> tempVolume(PolyVox::Region(0,0,0,128, 128, 128));
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//LowPassFilter< LargeVolume<MaterialDensityPair44>, RawVolume<MaterialDensityPair44> > pass1(&volData, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), &tempVolume, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), 3);
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//pass1.executeSAT();
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//LowPassFilter< RawVolume<MaterialDensityPair44>, LargeVolume<MaterialDensityPair44> > pass2(&tempVolume, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), &volData, PolyVox::Region(Vector3DInt32(62, 62, 62), Vector3DInt32(126, 126, 126)), 3);
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//pass2.executeSAT();
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QApplication app(argc, argv);
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|
@ -61,7 +61,7 @@ IF(MSVC)
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SET_TARGET_PROPERTIES(PagingExample PROPERTIES COMPILE_FLAGS "/W4 /wd4127")
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ENDIF(MSVC)
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TARGET_LINK_LIBRARIES(PagingExample ${QT_LIBRARIES} ${OPENGL_gl_LIBRARY} ${OPENGL_glu_LIBRARY} PolyVoxCore)
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SET_PROPERTY(TARGET PagingExample PROPERTY FOLDER "examples/Paging")
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SET_PROPERTY(TARGET PagingExample PROPERTY FOLDER "Examples")
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#Install - Only install the example in Windows
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||||
IF(WIN32)
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||||
|
@ -59,7 +59,7 @@ IF(MSVC)
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||||
SET_TARGET_PROPERTIES(SmoothLODExample PROPERTIES COMPILE_FLAGS "/W4 /wd4127") #All warnings
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ENDIF(MSVC)
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TARGET_LINK_LIBRARIES(SmoothLODExample ${QT_LIBRARIES} ${OPENGL_gl_LIBRARY} ${OPENGL_glu_LIBRARY} PolyVoxCore)
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SET_PROPERTY(TARGET SmoothLODExample PROPERTY FOLDER "examples/SmoothLOD")
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SET_PROPERTY(TARGET SmoothLODExample PROPERTY FOLDER "Examples")
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||||
|
||||
#Install - Only install the example in Windows
|
||||
IF(WIN32)
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||||
|
@ -59,8 +59,8 @@ if(DOXYGEN_FOUND)
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||||
SOURCES Doxyfile.in polyvox.qhcp.in Mainpage.dox
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||||
VERBATIM
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)
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set_target_properties(doc PROPERTIES PROJECT_LABEL "Documentation") #Set label seen in IDE
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||||
set_property(TARGET doc PROPERTY FOLDER "library/doc")
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set_target_properties(doc PROPERTIES PROJECT_LABEL "API Reference") #Set label seen in IDE
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set_property(TARGET doc PROPERTY FOLDER "Documentation")
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#If we found qcollectiongenerator then do more processing
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if(QT_QCOLLECTIONGENERATOR_EXECUTABLE)
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|
@ -144,7 +144,7 @@ IF(LIBRARY_TYPE STREQUAL "DYNAMIC")
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ADD_LIBRARY(PolyVoxCore SHARED ${CORE_SRC_FILES} ${CORE_INC_FILES} ${IMPL_SRC_FILES} ${IMPL_INC_FILES})
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SET_TARGET_PROPERTIES(PolyVoxCore PROPERTIES COMPILE_FLAGS "-DPOLYVOX_SHARED_EXPORTS")
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ENDIF()
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SET_PROPERTY(TARGET PolyVoxCore PROPERTY FOLDER "library/PolyVoxCore")
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SET_PROPERTY(TARGET PolyVoxCore PROPERTY FOLDER "Library")
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SET_TARGET_PROPERTIES(PolyVoxCore PROPERTIES VERSION ${POLYVOX_VERSION} SOVERSION ${POLYVOX_VERSION_MAJOR})
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IF(MSVC)
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||||
|
@ -36,17 +36,9 @@ freely, subject to the following restrictions:
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namespace PolyVox
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{
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///This class represents a voxel storing only a density.
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/// This class represents a voxel storing only a density.
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////////////////////////////////////////////////////////////////////////////////
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/// In order to perform a surface extraction on a LargeVolume, PolyVox needs the underlying
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/// voxel type to provide both getDensity() and getMaterial() functions. The getDensity()
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/// function is used to determine if a voxel is 'solid', and if it is then the getMaterial()
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/// funtion is used to determine what material should be assigned to the resulting mesh.
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///
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/// This class meets these requirements, although it only actually stores a density value.
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/// For the getMaterial() function it just returns a constant value of '1'.
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///
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/// \sa Material, MaterialDensityPair
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/// Detailed description...
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||||
////////////////////////////////////////////////////////////////////////////////
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// int32_t template parameter is a dummy, required as the compiler expects to be able to declare an
|
||||
@ -55,15 +47,18 @@ namespace PolyVox
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class Density
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{
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public:
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//We expose DensityType and MaterialType in this way so that, when code is
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//templatised on voxel type, it can determine the underlying storage type
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//using code such as 'VoxelType::DensityType value = voxel.getDensity()'
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//or 'VoxelType::MaterialType value = voxel.getMaterial()'.
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typedef Type DensityType;
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typedef int32_t MaterialType; //Shouldn't define this one...
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/// Constructor
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Density() : m_uDensity(0) {}
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Density(DensityType uDensity) : m_uDensity(uDensity) {}
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||||
|
||||
/// Copy constructor
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Density(Type uDensity) : m_uDensity(uDensity) {}
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||||
|
||||
// The LowPassFilter uses this to convert between normal and accumulated types.
|
||||
/// Copy constructor with cast
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||||
template <typename CastType> explicit Density(const Density<CastType>& density) throw()
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||||
{
|
||||
m_uDensity = static_cast<Type>(density.getDensity());
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||||
}
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||||
|
||||
bool operator==(const Density& rhs) const throw()
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||||
{
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@ -75,31 +70,68 @@ namespace PolyVox
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||||
return !(*this == rhs);
|
||||
}
|
||||
|
||||
// For densities we can supply mathematical operators which behave in an intuitive way.
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||||
// In particular the ability to add and subtract densities is important in order to
|
||||
// apply an averaging filter. The ability to divide by an integer is also needed for
|
||||
// this same purpose.
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||||
Density<Type>& operator+=(const Density<Type>& rhs)
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||||
{
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m_uDensity += rhs.m_uDensity;
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return *this;
|
||||
}
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||||
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||||
Density<Type>& operator-=(const Density<Type>& rhs)
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{
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m_uDensity -= rhs.m_uDensity;
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||||
return *this;
|
||||
}
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Density<Type>& operator/=(uint32_t rhs)
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{
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m_uDensity /= rhs;
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return *this;
|
||||
}
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||||
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DensityType getDensity() const throw() { return m_uDensity; }
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void setDensity(DensityType uDensity) { m_uDensity = uDensity; }
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Type getDensity() const throw() { return m_uDensity; }
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void setDensity(Type uDensity) { m_uDensity = uDensity; }
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|
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static DensityType getMaxDensity() throw() { return (std::numeric_limits<DensityType>::max)(); }
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static DensityType getMinDensity() throw() { return (std::numeric_limits<DensityType>::min)(); }
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static Type getMaxDensity() throw() { return (std::numeric_limits<Type>::max)(); }
|
||||
static Type getMinDensity() throw() { return (std::numeric_limits<Type>::min)(); }
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|
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private:
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DensityType m_uDensity;
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Type m_uDensity;
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};
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template <typename Type>
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Density<Type> operator+(const Density<Type>& lhs, const Density<Type>& rhs) throw()
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{
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Density<Type> result = lhs;
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result += rhs;
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return result;
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||||
}
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template <typename Type>
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Density<Type> operator-(const Density<Type>& lhs, const Density<Type>& rhs) throw()
|
||||
{
|
||||
Density<Type> result = lhs;
|
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result -= rhs;
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return result;
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}
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|
||||
template <typename Type>
|
||||
Density<Type> operator/(const Density<Type>& lhs, uint32_t rhs) throw()
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{
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Density<Type> result = lhs;
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result /= rhs;
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||||
return result;
|
||||
}
|
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||||
// These are the predefined density types. The 8-bit types are sufficient for many purposes (including
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||||
// most games) but 16-bit and float types do have uses particularly in medical/scientific visualisation.
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||||
typedef Density<uint8_t> Density8;
|
||||
typedef Density<uint16_t> Density16;
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typedef Density<uint32_t> Density32;
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typedef Density<float> DensityFloat;
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||||
|
||||
/**
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||||
* This is a specialisation of DefaultMarchingCubesController for the Density voxel type
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|
@ -30,7 +30,7 @@ freely, subject to the following restrictions:
|
||||
|
||||
namespace PolyVox
|
||||
{
|
||||
template< typename SrcVolumeType, typename DstVolumeType>
|
||||
template< typename SrcVolumeType, typename DstVolumeType, typename AccumulationType>
|
||||
class LowPassFilter
|
||||
{
|
||||
public:
|
||||
|
@ -23,8 +23,8 @@ freely, subject to the following restrictions:
|
||||
|
||||
namespace PolyVox
|
||||
{
|
||||
template< typename SrcVolumeType, typename DstVolumeType>
|
||||
LowPassFilter<SrcVolumeType, DstVolumeType>::LowPassFilter(SrcVolumeType* pVolSrc, Region regSrc, DstVolumeType* pVolDst, Region regDst, uint32_t uKernelSize)
|
||||
template< typename SrcVolumeType, typename DstVolumeType, typename AccumulationType>
|
||||
LowPassFilter<SrcVolumeType, DstVolumeType, AccumulationType>::LowPassFilter(SrcVolumeType* pVolSrc, Region regSrc, DstVolumeType* pVolDst, Region regDst, uint32_t uKernelSize)
|
||||
:m_pVolSrc(pVolSrc)
|
||||
,m_regSrc(regSrc)
|
||||
,m_pVolDst(pVolDst)
|
||||
@ -43,8 +43,8 @@ namespace PolyVox
|
||||
}
|
||||
}
|
||||
|
||||
template< typename SrcVolumeType, typename DstVolumeType>
|
||||
void LowPassFilter<SrcVolumeType, DstVolumeType>::execute()
|
||||
template< typename SrcVolumeType, typename DstVolumeType, typename AccumulationType>
|
||||
void LowPassFilter<SrcVolumeType, DstVolumeType, AccumulationType>::execute()
|
||||
{
|
||||
int32_t iSrcMinX = m_regSrc.getLowerCorner().getX();
|
||||
int32_t iSrcMinY = m_regSrc.getLowerCorner().getY();
|
||||
@ -70,52 +70,50 @@ namespace PolyVox
|
||||
{
|
||||
for(int32_t iSrcX = iSrcMinX, iDstX = iDstMinX; iSrcX <= iSrcMaxX; iSrcX++, iDstX++)
|
||||
{
|
||||
//VoxelType tSrcVoxel = m_pVolSrc->getVoxelAt(iSrcX, iSrcY, iSrcZ);
|
||||
AccumulationType tSrcVoxel(0);
|
||||
srcSampler.setPosition(iSrcX, iSrcY, iSrcZ);
|
||||
|
||||
typename SrcVolumeType::VoxelType tSrcVoxel = srcSampler.getVoxel();
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx1ny1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx1ny0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx1ny1pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx0py1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx0py0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx0py1pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx1py1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx1py0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1nx1py1pz());
|
||||
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx1ny1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx1ny0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx1ny1pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx0py1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx0py0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx0py1pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx1py1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx1py0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1nx1py1pz();
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px1ny1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px1ny0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px1ny1pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px0py1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px0py0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px0py1pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px1py1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px1py0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel0px1py1pz());
|
||||
|
||||
tSrcVoxel += srcSampler.peekVoxel0px1ny1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px1ny0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px1ny1pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px0py1nz();
|
||||
//tSrcVoxel += srcSampler.peekVoxel0px0py0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px0py1pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px1py1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px1py0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel0px1py1pz();
|
||||
|
||||
tSrcVoxel += srcSampler.peekVoxel1px1ny1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px1ny0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px1ny1pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px0py1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px0py0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px0py1pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px1py1nz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px1py0pz();
|
||||
tSrcVoxel += srcSampler.peekVoxel1px1py1pz();
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px1ny1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px1ny0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px1ny1pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px0py1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px0py0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px0py1pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px1py1nz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px1py0pz());
|
||||
tSrcVoxel += static_cast<AccumulationType>(srcSampler.peekVoxel1px1py1pz());
|
||||
|
||||
tSrcVoxel /= 27;
|
||||
|
||||
//tSrcVoxel.setDensity(uDensity);
|
||||
m_pVolDst->setVoxelAt(iSrcX, iSrcY, iSrcZ, tSrcVoxel);
|
||||
m_pVolDst->setVoxelAt(iSrcX, iSrcY, iSrcZ, static_cast<DstVolumeType::VoxelType>(tSrcVoxel));
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
template< typename SrcVolumeType, typename DstVolumeType>
|
||||
void LowPassFilter<SrcVolumeType, DstVolumeType>::executeSAT()
|
||||
template< typename SrcVolumeType, typename DstVolumeType, typename AccumulationType>
|
||||
void LowPassFilter<SrcVolumeType, DstVolumeType, AccumulationType>::executeSAT()
|
||||
{
|
||||
const uint32_t border = (m_uKernelSize - 1) / 2;
|
||||
|
||||
@ -124,7 +122,7 @@ namespace PolyVox
|
||||
|
||||
//Use floats for the SAT volume to ensure it works with negative
|
||||
//densities and with both integral and floating point input volumes.
|
||||
RawVolume<float> satVolume(Region(satLowerCorner, satUpperCorner));
|
||||
RawVolume<AccumulationType> satVolume(Region(satLowerCorner, satUpperCorner));
|
||||
|
||||
//Clear to zeros (necessary?)
|
||||
//FIXME - use Volume::fill() method. Implemented in base class as below
|
||||
@ -140,9 +138,9 @@ namespace PolyVox
|
||||
}
|
||||
}
|
||||
|
||||
RawVolume<float>::Sampler satVolumeIter(&satVolume);
|
||||
RawVolume<AccumulationType>::Sampler satVolumeIter(&satVolume);
|
||||
|
||||
IteratorController<RawVolume<float>::Sampler> satIterCont;
|
||||
IteratorController<RawVolume<AccumulationType>::Sampler> satIterCont;
|
||||
satIterCont.m_regValid = Region(satLowerCorner, satUpperCorner);
|
||||
satIterCont.m_Iter = &satVolumeIter;
|
||||
satIterCont.reset();
|
||||
@ -156,9 +154,8 @@ namespace PolyVox
|
||||
|
||||
do
|
||||
{
|
||||
float previousSum = satVolumeIter.peekVoxel1nx0py0pz();
|
||||
|
||||
float currentVal = static_cast<float>(srcVolumeIter.getVoxel().getDensity());
|
||||
AccumulationType previousSum = static_cast<AccumulationType>(satVolumeIter.peekVoxel1nx0py0pz());
|
||||
AccumulationType currentVal = static_cast<AccumulationType>(srcVolumeIter.getVoxel());
|
||||
|
||||
satVolumeIter.setVoxel(previousSum + currentVal);
|
||||
|
||||
@ -173,8 +170,8 @@ namespace PolyVox
|
||||
{
|
||||
for(int32_t x = satLowerCorner.getX(); x <= satUpperCorner.getX(); x++)
|
||||
{
|
||||
uint32_t previousSum = satVolume.getVoxelAt(x-1,y,z);
|
||||
uint32_t currentVal = m_pVolSrc->getVoxelAt(x,y,z).getDensity();
|
||||
AccumulationType previousSum = static_cast<AccumulationType>(satVolume.getVoxelAt(x-1,y,z));
|
||||
AccumulationType currentVal = static_cast<AccumulationType>(m_pVolSrc->getVoxelAt(x,y,z));
|
||||
|
||||
satVolume.setVoxelAt(x,y,z,previousSum + currentVal);
|
||||
}
|
||||
@ -187,8 +184,8 @@ namespace PolyVox
|
||||
{
|
||||
for(int32_t x = satLowerCorner.getX(); x <= satUpperCorner.getX(); x++)
|
||||
{
|
||||
float previousSum = satVolume.getVoxelAt(x,y-1,z);
|
||||
float currentSum = satVolume.getVoxelAt(x,y,z);
|
||||
AccumulationType previousSum = static_cast<AccumulationType>(satVolume.getVoxelAt(x,y-1,z));
|
||||
AccumulationType currentSum = static_cast<AccumulationType>(satVolume.getVoxelAt(x,y,z));
|
||||
|
||||
satVolume.setVoxelAt(x,y,z,previousSum + currentSum);
|
||||
}
|
||||
@ -201,8 +198,8 @@ namespace PolyVox
|
||||
{
|
||||
for(int32_t x = satLowerCorner.getX(); x <= satUpperCorner.getX(); x++)
|
||||
{
|
||||
float previousSum = satVolume.getVoxelAt(x,y,z-1);
|
||||
float currentSum = satVolume.getVoxelAt(x,y,z);
|
||||
AccumulationType previousSum = static_cast<AccumulationType>(satVolume.getVoxelAt(x,y,z-1));
|
||||
AccumulationType currentSum = static_cast<AccumulationType>(satVolume.getVoxelAt(x,y,z));
|
||||
|
||||
satVolume.setVoxelAt(x,y,z,previousSum + currentSum);
|
||||
}
|
||||
@ -229,38 +226,20 @@ namespace PolyVox
|
||||
int32_t satUpperY = iSrcY + border;
|
||||
int32_t satUpperZ = iSrcZ + border;
|
||||
|
||||
float a = satVolume.getVoxelAt(satLowerX,satLowerY,satLowerZ);
|
||||
float b = satVolume.getVoxelAt(satUpperX,satLowerY,satLowerZ);
|
||||
float c = satVolume.getVoxelAt(satLowerX,satUpperY,satLowerZ);
|
||||
float d = satVolume.getVoxelAt(satUpperX,satUpperY,satLowerZ);
|
||||
float e = satVolume.getVoxelAt(satLowerX,satLowerY,satUpperZ);
|
||||
float f = satVolume.getVoxelAt(satUpperX,satLowerY,satUpperZ);
|
||||
float g = satVolume.getVoxelAt(satLowerX,satUpperY,satUpperZ);
|
||||
float h = satVolume.getVoxelAt(satUpperX,satUpperY,satUpperZ);
|
||||
|
||||
float sum = h+c-d-g-f-a+b+e;
|
||||
AccumulationType a = satVolume.getVoxelAt(satLowerX,satLowerY,satLowerZ);
|
||||
AccumulationType b = satVolume.getVoxelAt(satUpperX,satLowerY,satLowerZ);
|
||||
AccumulationType c = satVolume.getVoxelAt(satLowerX,satUpperY,satLowerZ);
|
||||
AccumulationType d = satVolume.getVoxelAt(satUpperX,satUpperY,satLowerZ);
|
||||
AccumulationType e = satVolume.getVoxelAt(satLowerX,satLowerY,satUpperZ);
|
||||
AccumulationType f = satVolume.getVoxelAt(satUpperX,satLowerY,satUpperZ);
|
||||
AccumulationType g = satVolume.getVoxelAt(satLowerX,satUpperY,satUpperZ);
|
||||
AccumulationType h = satVolume.getVoxelAt(satUpperX,satUpperY,satUpperZ);
|
||||
|
||||
AccumulationType sum = h+c-d-g-f-a+b+e;
|
||||
uint32_t sideLength = border * 2 + 1;
|
||||
AccumulationType average = sum / (sideLength*sideLength*sideLength);
|
||||
|
||||
float average = sum / (static_cast<float>(sideLength*sideLength*sideLength));
|
||||
|
||||
//Note: These lines need consideration if src and dest have different voxel types.
|
||||
typename SrcVolumeType::VoxelType voxel = m_pVolSrc->getVoxelAt(iDstX, iDstY, iDstZ);
|
||||
|
||||
voxel.setDensity(static_cast<typename SrcVolumeType::VoxelType::DensityType>(average));
|
||||
|
||||
m_pVolDst->setVoxelAt(iDstX, iDstY, iDstZ, voxel);
|
||||
|
||||
|
||||
//float maxSolid = border * 2/* + 1*/;
|
||||
/*maxSolid = maxSolid * maxSolid * maxSolid;
|
||||
|
||||
float percentSolid = noSolid / maxSolid;
|
||||
float percentEmpty = 1.0f - percentSolid;
|
||||
|
||||
(*mAmbientOcclusionVolume)[ambVolZ][ambVolY][ambVolX] = 255 * percentEmpty;*/
|
||||
|
||||
//(*mAmbientOcclusionVolume)[ambVolZ][ambVolY][ambVolX] = 255 - ((h+c-d-g-f-a+b+e) * 19); //FIXME - should not be 9
|
||||
m_pVolDst->setVoxelAt(iDstX, iDstY, iDstZ, static_cast<DstVolumeType::VoxelType>(average));
|
||||
}
|
||||
}
|
||||
}
|
||||
|
@ -34,14 +34,7 @@ namespace PolyVox
|
||||
{
|
||||
///This class represents a voxel storing only a material.
|
||||
////////////////////////////////////////////////////////////////////////////////
|
||||
/// In order to perform a surface extraction on a LargeVolume, PolyVox needs the underlying
|
||||
/// voxel type to provide both getDensity() and getMaterial() functions. The getDensity()
|
||||
/// function is used to determine if a voxel is 'solid', and if it is then the getMaterial()
|
||||
/// funtion is used to determine what material should be assigned to the resulting mesh.
|
||||
///
|
||||
/// This class meets these requirements, although it only actually stores a material value.
|
||||
/// For the getDensity() function it simply returns the smallest possible density if the
|
||||
/// material is zero and the largest possible density if the material is not zero.
|
||||
/// Detailed description...
|
||||
///
|
||||
/// \sa Density, MaterialDensityPair
|
||||
////////////////////////////////////////////////////////////////////////////////
|
||||
@ -52,15 +45,8 @@ namespace PolyVox
|
||||
class Material
|
||||
{
|
||||
public:
|
||||
//We expose DensityType and MaterialType in this way so that, when code is
|
||||
//templatised on voxel type, it can determine the underlying storage type
|
||||
//using code such as 'VoxelType::DensityType value = voxel.getDensity()'
|
||||
//or 'VoxelType::MaterialType value = voxel.getMaterial()'.
|
||||
typedef int32_t DensityType;
|
||||
typedef Type MaterialType;
|
||||
|
||||
Material() : m_uMaterial(0) {}
|
||||
Material(MaterialType uMaterial) : m_uMaterial(uMaterial) {}
|
||||
Material(Type uMaterial) : m_uMaterial(uMaterial) {}
|
||||
|
||||
bool operator==(const Material& rhs) const throw()
|
||||
{
|
||||
@ -72,11 +58,11 @@ namespace PolyVox
|
||||
return !(*this == rhs);
|
||||
}
|
||||
|
||||
MaterialType getMaterial() const throw() { return m_uMaterial; }
|
||||
void setMaterial(MaterialType uMaterial) { m_uMaterial = uMaterial; }
|
||||
Type getMaterial() const throw() { return m_uMaterial; }
|
||||
void setMaterial(Type uMaterial) { m_uMaterial = uMaterial; }
|
||||
|
||||
private:
|
||||
MaterialType m_uMaterial;
|
||||
Type m_uMaterial;
|
||||
};
|
||||
|
||||
typedef Material<uint8_t> Material8;
|
||||
|
@ -33,15 +33,7 @@ namespace PolyVox
|
||||
{
|
||||
/// This class represents a voxel storing only a density.
|
||||
////////////////////////////////////////////////////////////////////////////////
|
||||
/// In order to perform a surface extraction on a LargeVolume, PolyVox needs the underlying
|
||||
/// voxel type to provide both getDensity() and getMaterial() functions. The getDensity()
|
||||
/// function is used to determine if a voxel is 'solid', and if it is then the getMaterial()
|
||||
/// funtion is used to determine what material should be assigned to the resulting mesh.
|
||||
///
|
||||
/// This class meets these requirements, and does so by storing and returning both a material
|
||||
/// and a density value. Via the template parameters it is possible to control how much
|
||||
/// precision is given to each. For example, if you create a class with 8 bits of storage,
|
||||
/// you might choose to allocate 6 bits for the density and 2 bits for the material.
|
||||
/// Detailed description...
|
||||
///
|
||||
/// \sa Density, Material
|
||||
////////////////////////////////////////////////////////////////////////////////
|
||||
@ -49,13 +41,6 @@ namespace PolyVox
|
||||
class MaterialDensityPair
|
||||
{
|
||||
public:
|
||||
//We expose DensityType and MaterialType in this way so that, when code is
|
||||
//templatised on voxel type, it can determine the underlying storage type
|
||||
//using code such as 'VoxelType::DensityType value = voxel.getDensity()'
|
||||
//or 'VoxelType::MaterialType value = voxel.getMaterial()'.
|
||||
typedef Type DensityType;
|
||||
typedef Type MaterialType;
|
||||
|
||||
MaterialDensityPair() : m_uMaterial(0), m_uDensity(0) {}
|
||||
MaterialDensityPair(Type uMaterial, Type uDensity) : m_uMaterial(uMaterial), m_uDensity(uDensity) {}
|
||||
|
||||
@ -87,18 +72,18 @@ namespace PolyVox
|
||||
return *this;
|
||||
}
|
||||
|
||||
DensityType getDensity() const throw() { return m_uDensity; }
|
||||
MaterialType getMaterial() const throw() { return m_uMaterial; }
|
||||
Type getDensity() const throw() { return m_uDensity; }
|
||||
Type getMaterial() const throw() { return m_uMaterial; }
|
||||
|
||||
void setDensity(DensityType uDensity) { m_uDensity = uDensity; }
|
||||
void setMaterial(MaterialType uMaterial) { m_uMaterial = uMaterial; }
|
||||
void setDensity(Type uDensity) { m_uDensity = uDensity; }
|
||||
void setMaterial(Type uMaterial) { m_uMaterial = uMaterial; }
|
||||
|
||||
static DensityType getMaxDensity() throw() { return (0x01 << NoOfDensityBits) - 1; }
|
||||
static DensityType getMinDensity() throw() { return 0; }
|
||||
static Type getMaxDensity() throw() { return (0x01 << NoOfDensityBits) - 1; }
|
||||
static Type getMinDensity() throw() { return 0; }
|
||||
|
||||
private:
|
||||
MaterialType m_uMaterial : NoOfMaterialBits;
|
||||
DensityType m_uDensity : NoOfDensityBits;
|
||||
Type m_uMaterial : NoOfMaterialBits;
|
||||
Type m_uDensity : NoOfDensityBits;
|
||||
};
|
||||
|
||||
template<typename Type, uint8_t NoOfMaterialBits, uint8_t NoOfDensityBits>
|
||||
|
@ -61,7 +61,7 @@ IF(LIBRARY_TYPE STREQUAL "DYNAMIC")
|
||||
ADD_LIBRARY(PolyVoxUtil SHARED ${UTIL_SRC_FILES} ${UTIL_INC_FILES})
|
||||
SET_TARGET_PROPERTIES(PolyVoxUtil PROPERTIES COMPILE_FLAGS "-DPOLYVOX_SHARED_EXPORTS")
|
||||
ENDIF()
|
||||
SET_PROPERTY(TARGET PolyVoxUtil PROPERTY FOLDER "library/PolyVoxUtil")
|
||||
SET_PROPERTY(TARGET PolyVoxUtil PROPERTY FOLDER "Library")
|
||||
|
||||
TARGET_LINK_LIBRARIES(PolyVoxUtil PolyVoxCore)
|
||||
SET_TARGET_PROPERTIES(PolyVoxUtil PROPERTIES VERSION ${POLYVOX_VERSION} SOVERSION ${POLYVOX_VERSION_MAJOR})
|
||||
|
@ -46,7 +46,7 @@ if(ENABLE_BINDINGS)
|
||||
swig_add_module(PolyVoxCore python PolyVoxCore.i)
|
||||
swig_link_libraries(PolyVoxCore ${PYTHON_LIBRARIES} PolyVoxCore)
|
||||
#set_target_properties(${SWIG_MODULE_PolyVoxCore_REAL_NAME} PROPERTIES SUFFIX ".pyd")
|
||||
SET_PROPERTY(TARGET ${SWIG_MODULE_PolyVoxCore_REAL_NAME} PROPERTY FOLDER "library/bindings")
|
||||
SET_PROPERTY(TARGET ${SWIG_MODULE_PolyVoxCore_REAL_NAME} PROPERTY FOLDER "Bindings")
|
||||
else()
|
||||
set(BUILD_BINDINGS OFF CACHE BOOL "Will the bindings be built" FORCE)
|
||||
endif()
|
||||
|
@ -36,7 +36,7 @@ MACRO(CREATE_TEST headerfile sourcefile executablename)
|
||||
ELSE(WIN32)
|
||||
SET(LATEST_TEST ${CMAKE_CURRENT_BINARY_DIR}/${executablename})
|
||||
ENDIF(WIN32)
|
||||
SET_PROPERTY(TARGET ${executablename} PROPERTY FOLDER "tests")
|
||||
SET_PROPERTY(TARGET ${executablename} PROPERTY FOLDER "Tests")
|
||||
ENDMACRO(CREATE_TEST)
|
||||
|
||||
IF(NOT QT_QTTEST_FOUND)
|
||||
|
@ -58,29 +58,30 @@ void TestLowPassFilter::testExecute()
|
||||
|
||||
RawVolume<Density8> resultVolume(reg);
|
||||
|
||||
LowPassFilter< RawVolume<Density8>, RawVolume<Density8> > pass1(&volData, reg, &resultVolume, reg, 5);
|
||||
LowPassFilter< RawVolume<Density8>, RawVolume<Density8>, Density16 > lowPassfilter(&volData, reg, &resultVolume, reg, 5);
|
||||
|
||||
pass1.execute();
|
||||
//Test the normal implementation
|
||||
lowPassfilter.execute();
|
||||
QCOMPARE(resultVolume.getVoxelAt(0,0,0), Density8(4));
|
||||
QCOMPARE(resultVolume.getVoxelAt(1,1,1), Density8(21));
|
||||
QCOMPARE(resultVolume.getVoxelAt(2,2,2), Density8(10));
|
||||
QCOMPARE(resultVolume.getVoxelAt(3,3,3), Density8(21));
|
||||
QCOMPARE(resultVolume.getVoxelAt(4,4,4), Density8(10));
|
||||
QCOMPARE(resultVolume.getVoxelAt(5,5,5), Density8(21));
|
||||
QCOMPARE(resultVolume.getVoxelAt(6,6,6), Density8(10));
|
||||
QCOMPARE(resultVolume.getVoxelAt(7,7,7), Density8(4));
|
||||
|
||||
std::cout << "Input volume:" << std::endl;
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(0,0,0).getDensity()) << std::endl; // 32
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(1,1,1).getDensity()) << std::endl; // 0
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(2,2,2).getDensity()) << std::endl; // 3
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(3,3,3).getDensity()) << std::endl; // 0
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(4,4,4).getDensity()) << std::endl; // 32
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(5,5,5).getDensity()) << std::endl; // 0
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(6,6,6).getDensity()) << std::endl; // 32
|
||||
std::cout << "Voxel = " << static_cast<int>(volData.getVoxelAt(7,7,7).getDensity()) << std::endl; // 0
|
||||
|
||||
std::cout << std::endl << "Output volume:" << std::endl;
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(0,0,0).getDensity()) << std::endl; // 4
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(1,1,1).getDensity()) << std::endl; // 21
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(2,2,2).getDensity()) << std::endl; // 10
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(3,3,3).getDensity()) << std::endl; // 21
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(4,4,4).getDensity()) << std::endl; // 10
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(5,5,5).getDensity()) << std::endl; // 21
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(6,6,6).getDensity()) << std::endl; // 10
|
||||
std::cout << "Voxel = " << static_cast<int>(resultVolume.getVoxelAt(7,7,7).getDensity()) << std::endl; // 4
|
||||
//Test the SAT implmentation
|
||||
//FIXME - Shouldn't the results be the same as the normal case?
|
||||
lowPassfilter.executeSAT();
|
||||
QCOMPARE(resultVolume.getVoxelAt(0,0,0), Density8(4));
|
||||
QCOMPARE(resultVolume.getVoxelAt(1,1,1), Density8(8));
|
||||
QCOMPARE(resultVolume.getVoxelAt(2,2,2), Density8(19));
|
||||
QCOMPARE(resultVolume.getVoxelAt(3,3,3), Density8(12));
|
||||
QCOMPARE(resultVolume.getVoxelAt(4,4,4), Density8(19));
|
||||
QCOMPARE(resultVolume.getVoxelAt(5,5,5), Density8(12));
|
||||
QCOMPARE(resultVolume.getVoxelAt(6,6,6), Density8(8));
|
||||
QCOMPARE(resultVolume.getVoxelAt(7,7,7), Density8(2));
|
||||
}
|
||||
|
||||
QTEST_MAIN(TestLowPassFilter)
|
||||
|
Loading…
x
Reference in New Issue
Block a user