Binary XOR Two Images¶
Synopsis¶
Binary XOR (exclusive OR) two images.
Results¶
![input1.png](../../../../_images/input13.png)
input1.png¶
![input2.png](../../../../_images/input23.png)
input2.png¶
![output.png](../../../../_images/BinaryXORTwoImages.png)
output.png¶
Code¶
C++¶
#include "itkImage.h"
#include "itkSimpleFilterWatcher.h"
#include "itkXorImageFilter.h"
#include "itkImageRegionIterator.h"
#include "itkImageFileWriter.h"
using ImageType = itk::Image<unsigned char, 2>;
static void
CreateImage1(ImageType::Pointer image);
static void
CreateImage2(ImageType::Pointer image);
int
main(int, char *[])
{
ImageType::Pointer image1 = ImageType::New();
CreateImage1(image1);
ImageType::Pointer image2 = ImageType::New();
CreateImage2(image2);
using XorImageFilterType = itk::XorImageFilter<ImageType>;
XorImageFilterType::Pointer xorFilter = XorImageFilterType::New();
xorFilter->SetInput1(image1);
xorFilter->SetInput2(image2);
xorFilter->Update();
using WriterType = itk::ImageFileWriter<ImageType>;
WriterType::Pointer writer = WriterType::New();
writer->SetFileName("output.png");
writer->SetInput(xorFilter->GetOutput());
writer->Update();
return EXIT_SUCCESS;
}
void
CreateImage1(ImageType::Pointer image)
{
ImageType::IndexType start;
start.Fill(0);
ImageType::SizeType size;
size.Fill(100);
ImageType::RegionType region;
region.SetSize(size);
region.SetIndex(start);
image->SetRegions(region);
image->Allocate();
itk::ImageRegionIterator<ImageType> imageIterator(image, region);
while (!imageIterator.IsAtEnd())
{
if (imageIterator.GetIndex()[0] < 70)
{
imageIterator.Set(255);
}
else
{
imageIterator.Set(0);
}
++imageIterator;
}
}
void
CreateImage2(ImageType::Pointer image)
{
ImageType::IndexType start;
start.Fill(0);
ImageType::SizeType size;
size.Fill(100);
ImageType::RegionType region;
region.SetSize(size);
region.SetIndex(start);
image->SetRegions(region);
image->Allocate();
itk::ImageRegionIterator<ImageType> imageIterator(image, region);
while (!imageIterator.IsAtEnd())
{
if (imageIterator.GetIndex()[0] > 30)
{
imageIterator.Set(255);
}
else
{
imageIterator.Set(0);
}
++imageIterator;
}
}
Classes demonstrated¶
-
template<typename
TInputImage1
, typenameTInputImage2
= TInputImage1, typenameTOutputImage
= TInputImage1>
classXorImageFilter
: public itk::BinaryGeneratorImageFilter<TInputImage1, TInputImage2, TOutputImage> Computes the XOR bitwise operator pixel-wise between two images.
This class is templated over the types of the two input images and the type of the output image. Numeric conversions (castings) are done by the C++ defaults.
Since the bitwise XOR operation is only defined in C++ for integer types, the images passed to this filter must comply with the requirement of using integer pixel type.
The total operation over one pixel will be
output_pixel = static_cast<OutputPixelType>( input1_pixel ^ input2_pixel )
Where “^” is the boolean XOR operator in C++.
- ITK Sphinx Examples: