File: itkFEMLoadNoisyLandmark.h

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/*=========================================================================
 *
 *  Copyright NumFOCUS
 *
 *  Licensed under the Apache License, Version 2.0 (the "License");
 *  you may not use this file except in compliance with the License.
 *  You may obtain a copy of the License at
 *
 *         https://www.apache.org/licenses/LICENSE-2.0.txt
 *
 *  Unless required by applicable law or agreed to in writing, software
 *  distributed under the License is distributed on an "AS IS" BASIS,
 *  WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
 *  See the License for the specific language governing permissions and
 *  limitations under the License.
 *
 *=========================================================================*/

#ifndef itkFEMLoadNoisyLandmark_h
#define itkFEMLoadNoisyLandmark_h

#include "itkFEMLoadLandmark.h"
#include "ITKFEMExport.h"

namespace itk
{
namespace fem
{
/**
 * \class FEMLoadNoisyLandmark
 * \brief This landmark is derived from the motion of a specific landmark, but
 * allows the existence of noise or outliers
 *
 * \author Yixun Liu
 *
 * \ingroup ITKFEM
 */
class ITKFEM_EXPORT LoadNoisyLandmark : public LoadLandmark
{
public:
  /** Standard class type aliases. */
  using Self = LoadNoisyLandmark;
  using Superclass = LoadLandmark;
  using Pointer = SmartPointer<Self>;
  using ConstPointer = SmartPointer<const Self>;

  /** Some convenient type alias */
  using VectorType = Element::VectorType;
  using MatrixType = Element::MatrixType;

  /** Method for creation through the object factory. */
  itkSimpleNewMacro(Self);

  /** \see LightObject::GetNameOfClass() */
  itkOverrideGetNameOfClassMacro(LoadNoisyLandmark);

  /** Outlier or not */
  void
  SetOutlier(bool outlier)
  {
    m_IsOutlier = outlier;
  }

  bool
  IsOutlier() const
  {
    return m_IsOutlier;
  }

  /** Set/Get Error norm */
  void
  SetErrorNorm(float errorNorm)
  {
    m_ErrorNorm = errorNorm;
  }

  float
  GetErrorNorm() const
  {
    return m_ErrorNorm;
  }

  /** Set/Get Confidence */
  void
  SetConfidence(float confidence)
  {
    m_Confidence = confidence;
  }

  float
  GetConfidence() const
  {
    return m_Confidence;
  }

  /** Set/Get real displacement */
  void
  SetRealDisplacement(const VectorType & displacement)
  {
    m_RealDisplacement = displacement;
  }

  const VectorType &
  GetRealDisplacement() const
  {
    return m_RealDisplacement;
  }

  /** Set/Get simulated displacement */
  void
  SetSimulatedDisplacement(const VectorType & displacement)
  {
    m_SimulatedDisplacement = displacement;
  }

  const VectorType &
  GetSimulatedDisplacement() const
  {
    return m_SimulatedDisplacement;
  }

  /** Set/Get Shape function */
  void
  SetShape(const VectorType & shape)
  {
    m_Shape = shape;
  }

  const VectorType &
  GetShape() const
  {
    return m_Shape;
  }

  /** Set/Get flag for outside of the mesh */
  void
  SetIsOutOfMesh(bool out)
  {
    m_IsOutOfMesh = out;
  }

  bool
  IsOutOfMesh() const
  {
    return m_IsOutOfMesh;
  }

  /** Set/Get Structure tensor */
  void
  SetStructureTensor(const MatrixType & structureTensor)
  {
    m_StructureTensor = structureTensor;
    m_HasStructureTensor = true;
  }

  const MatrixType &
  GetStructureTensor() const
  {
    return m_StructureTensor;
  }

  bool
  HasStructureTensor() const
  {
    return m_HasStructureTensor;
  }

  /** Set/Get Landmark tensor */
  void
  SetLandmarkTensor(const MatrixType & landmarkTensor)
  {
    m_LandmarkTensor = landmarkTensor;
  }

  const MatrixType &
  GetLandmarkTensor() const
  {
    return m_LandmarkTensor;
  }

protected:
  /**
   * Default constructors
   */
  LoadNoisyLandmark() { this->m_Element.resize(1); }

  void
  PrintSelf(std::ostream & os, Indent indent) const override;

private:
  /**
   * Confidence of the landmark
   */
  float m_Confidence{ 1.0 };

  /**
   * Real displacement of the landmark
   */
  VectorType m_RealDisplacement{};

  /**
   * Simulated displacement of the landmark
   */
  VectorType m_SimulatedDisplacement{};

  /**
   * Shape function vector
   */
  VectorType m_Shape{};

  /**
   * Magnitude of the error
   */
  float m_ErrorNorm{ 0.0 };

  /**
   * Outlier or not
   */
  bool m_IsOutlier{ false };

  /**
   * Outside of mesh
   */
  bool m_IsOutOfMesh{ false };

  /**
   * Has structure tensor or not
   */
  bool m_HasStructureTensor{ false };

  /**
   * Structure tensor
   */
  MatrixType m_StructureTensor{};

  /**
   * Landmark tensor, which can be the stiffness tensor or the product
   * of the stiffness tensor and the structure tensor
   */
  MatrixType m_LandmarkTensor{};
};
} // end namespace fem
} // end namespace itk

#endif // itkFEMLoadNoisyLandmark_h