X-Git-Url: https://git.creatis.insa-lyon.fr/pubgit/?a=blobdiff_plain;f=tools%2FclitkImageArithmGenericFilter.txx;h=37fa000d3c3e402a1dac421696e070ed8f4f4e90;hb=d4377ec80fd4e6f0156bb0673bb661acbf5b8cec;hp=f3b1d449718abdc68b8c1333d0d9ef85ee56d535;hpb=08d1fd56ac1d08bd228d9e557f5472a395e9b708;p=clitk.git diff --git a/tools/clitkImageArithmGenericFilter.txx b/tools/clitkImageArithmGenericFilter.txx index f3b1d44..37fa000 100644 --- a/tools/clitkImageArithmGenericFilter.txx +++ b/tools/clitkImageArithmGenericFilter.txx @@ -20,6 +20,8 @@ #include "clitkImageCommon.h" +#include "itkMinimumMaximumImageCalculator.h" + namespace clitk { @@ -63,7 +65,7 @@ void ImageArithmGenericFilter::SetArgsInfo(const args_info_type mArgsInfo=a; // Set value - SetIOVerbose(mArgsInfo.verbose_flag); + this->SetIOVerbose(mArgsInfo.verbose_flag); mTypeOfOperation = mArgsInfo.operation_arg; mDefaultPixelValue = mArgsInfo.pixelValue_arg; mScalar = mArgsInfo.scalar_arg; @@ -71,13 +73,13 @@ void ImageArithmGenericFilter::SetArgsInfo(const args_info_type if (mArgsInfo.imagetypes_flag) this->PrintAvailableImageTypes(); - if (mArgsInfo.input1_given) AddInputFilename(mArgsInfo.input1_arg); + if (mArgsInfo.input1_given) this->AddInputFilename(mArgsInfo.input1_arg); if (mArgsInfo.input2_given) { mIsOperationUseASecondImage = true; - AddInputFilename(mArgsInfo.input2_arg); + this->AddInputFilename(mArgsInfo.input2_arg); } - if (mArgsInfo.output_given) SetOutputFilename(mArgsInfo.output_arg); + if (mArgsInfo.output_given) this->SetOutputFilename(mArgsInfo.output_arg); // Check type of operation (with scalar or with other image) if ((mArgsInfo.input2_given) && (mArgsInfo.scalar_given)) { @@ -110,6 +112,15 @@ void ImageArithmGenericFilter::UpdateWithInputImageType() typename ImageType::Pointer input2 = NULL; IteratorType it2; + // Special case for normalisation + if (mTypeOfOperation == 12) { + typedef itk::MinimumMaximumImageCalculator MinMaxFilterType; + typename MinMaxFilterType::Pointer ff = MinMaxFilterType::New(); + ff->SetImage(input1); + ff->ComputeMaximum(); + mScalar = ff->GetMaximum(); + mTypeOfOperation = 11; // divide + } if (mIsOperationUseASecondImage) { // Read input2 @@ -117,9 +128,12 @@ void ImageArithmGenericFilter::UpdateWithInputImageType() // Set input image iterator it2 = IteratorType(input2, input2->GetLargestPossibleRegion()); // Check dimension - if (!clitk::HaveSameSizeAndSpacing(input1, input2)) { - std::cerr << "* ERROR * the images (input and input2) must have the same size & spacing"; - return; + if (!clitk::HaveSameSize(input1, input2)) { + itkExceptionMacro(<< "The images (input and input2) must have the same size"); + } + if(!clitk::HaveSameSpacing(input1, input2)) { + itkWarningMacro(<< "The images (input and input2) do not have the same spacing. " + << "Using first input's information."); } } @@ -370,6 +384,25 @@ void clitk::ImageArithmGenericFilter::ComputeImage(Iter1 it, Ite ++ito; } break; + case 11: // divide + while (!it.IsAtEnd()) { + ito.Set(PixelTypeDownCast((double)it.Get() / mScalar) ); + ++it; + ++ito; + } + break; + case 13: // -ln I/I0 + while (!it.IsAtEnd()) { + if (it.Get() == 0) { // special case for fluence image with 0 value in a pixel -> consider 0.5 + ito.Set(-log(0.5 / mScalar) ); + } + else { + ito.Set(PixelTypeDownCast(-log((double)it.Get() / mScalar)) ); + } + ++it; + ++ito; + } + break; default: // error ? std::cerr << "ERROR : the operation number (" << mTypeOfOperation << ") is not known." << std::endl; exit(-1); @@ -377,6 +410,8 @@ void clitk::ImageArithmGenericFilter::ComputeImage(Iter1 it, Ite } //-------------------------------------------------------------------- + + } // end namespace #endif //#define CLITKIMAGEARITHMGENERICFILTER_TXX