int
main(int argc, char * argv[])
{
if (argc != 3)
{
std::cerr << "Usage: " << argv[0] << " input output" << std::endl;
return EXIT_FAILURE;
}
constexpr unsigned int Dimension = 2;
using IOPixelType = unsigned short;
using WorkPixelType = float;
auto inputreader = ReaderType::New();
auto writer = WriterType::New();
inputreader->SetFileName(argv[1]);
writer->SetFileName(argv[2]);
auto inputresampler = ResamplerType::New();
inputresampler->SetDefaultPixelValue(0);
inputreader->Update();
IOImageType::SizeType inputsize;
IOImageType::SizeType worksize;
inputsize = inputreader->GetOutput()->GetLargestPossibleRegion().GetSize();
for (unsigned int i = 0; i < 2; ++i)
{
unsigned int n = 0;
worksize[i] = inputsize[i];
while (worksize[i] >>= 1)
{
n++;
}
worksize[i] = static_cast<IOImageType::SizeValueType>(1)
<< static_cast<IOImageType::SizeValueType>(n + 1);
std::cout << "inputsize[" << i << "]=" << inputsize[i] << std::endl;
std::cout << "worksize[" << i << "]=" << worksize[i] << std::endl;
}
inputresampler->SetSize(worksize);
inputresampler->SetInput(inputreader->GetOutput());
auto fftinput = FFTFilterType::New();
fftinput->SetInput(inputresampler->GetOutput());
using ComplexImageType = FFTFilterType::OutputImageType;
auto fftoutput = invFFTFilterType::New();
fftoutput->SetInput(
fftinput->GetOutput());
using ResampleOutType =
auto outputResampler = ResampleOutType::New();
outputResampler->SetDefaultPixelValue(0);
outputResampler->SetSize(inputsize);
outputResampler->SetInput(fftoutput->GetOutput());
writer->SetInput(outputResampler->GetOutput());
writer->Update();
return EXIT_SUCCESS;
}
Data source that reads image data from a single file.
Writes image data to a single file.
Templated n-dimensional image class.
Resample an image via a coordinate transform.
VNL based forward Fast Fourier Transform.
VNL-based reverse Fast Fourier Transform.