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			278 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			C++
		
	
		
		
			
		
	
	
			278 lines
		
	
	
		
			9.1 KiB
		
	
	
	
		
			C++
		
	
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											3 years ago
										 
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								#ifndef OPENCV_STITCHING_WARPER_CREATORS_HPP
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								#define OPENCV_STITCHING_WARPER_CREATORS_HPP
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								#include "opencv2/stitching/detail/warpers.hpp"
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								#include <string>
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								namespace cv {
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								    class CV_EXPORTS_W PyRotationWarper
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								    {
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								        Ptr<detail::RotationWarper> rw;
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								    public:
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								        CV_WRAP PyRotationWarper(String type, float scale);
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								        CV_WRAP PyRotationWarper() {};
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								        ~PyRotationWarper() {}
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								        /** @brief Projects the image point.
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								        @param pt Source point
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								        @param K Camera intrinsic parameters
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								        @param R Camera rotation matrix
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								        @return Projected point
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								        */
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								        CV_WRAP Point2f warpPoint(const Point2f &pt, InputArray K, InputArray R);
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								        /** @brief Projects the image point backward.
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								        @param pt Projected point
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								        @param K Camera intrinsic parameters
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								        @param R Camera rotation matrix
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								        @return Backward-projected point
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								        */
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								#if CV_VERSION_MAJOR == 4
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								        CV_WRAP Point2f warpPointBackward(const Point2f& pt, InputArray K, InputArray R)
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								        {
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								            CV_UNUSED(pt); CV_UNUSED(K); CV_UNUSED(R);
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								            CV_Error(Error::StsNotImplemented, "");
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								        }
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								#else
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								        CV_WRAP Point2f warpPointBackward(const Point2f &pt, InputArray K, InputArray R);
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								#endif
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								        /** @brief Builds the projection maps according to the given camera data.
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								        @param src_size Source image size
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								        @param K Camera intrinsic parameters
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								        @param R Camera rotation matrix
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								        @param xmap Projection map for the x axis
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								        @param ymap Projection map for the y axis
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								        @return Projected image minimum bounding box
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								        */
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								        CV_WRAP Rect buildMaps(Size src_size, InputArray K, InputArray R, OutputArray xmap, OutputArray ymap);
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								        /** @brief Projects the image.
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								        @param src Source image
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								        @param K Camera intrinsic parameters
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								        @param R Camera rotation matrix
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								        @param interp_mode Interpolation mode
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								        @param border_mode Border extrapolation mode
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								        @param dst Projected image
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								        @return Project image top-left corner
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								        */
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								        CV_WRAP Point warp(InputArray src, InputArray K, InputArray R, int interp_mode, int border_mode,
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								            CV_OUT OutputArray dst);
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								        /** @brief Projects the image backward.
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								        @param src Projected image
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								        @param K Camera intrinsic parameters
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								        @param R Camera rotation matrix
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								        @param interp_mode Interpolation mode
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								        @param border_mode Border extrapolation mode
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								        @param dst_size Backward-projected image size
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								        @param dst Backward-projected image
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								        */
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								        CV_WRAP void warpBackward(InputArray src, InputArray K, InputArray R, int interp_mode, int border_mode,
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								            Size dst_size, CV_OUT OutputArray dst);
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								        /**
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								        @param src_size Source image bounding box
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								        @param K Camera intrinsic parameters
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								        @param R Camera rotation matrix
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								        @return Projected image minimum bounding box
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								        */
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								        CV_WRAP Rect warpRoi(Size src_size, InputArray K, InputArray R);
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								        CV_WRAP float getScale() const { return 1.f; }
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								        CV_WRAP void setScale(float) {}
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								    };
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								//! @addtogroup stitching_warp
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								//! @{
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								/** @brief Image warper factories base class.
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								 */
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								class CV_EXPORTS_W WarperCreator
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								{
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								public:
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								    CV_WRAP virtual ~WarperCreator() {}
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								    virtual Ptr<detail::RotationWarper> create(float scale) const = 0;
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								};
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								/** @brief Plane warper factory class.
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								  @sa detail::PlaneWarper
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								 */
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								class CV_EXPORTS  PlaneWarper : public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::PlaneWarper>(scale); }
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								};
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								/** @brief Affine warper factory class.
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								  @sa detail::AffineWarper
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								 */
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								class CV_EXPORTS  AffineWarper : public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::AffineWarper>(scale); }
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								};
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								/** @brief Cylindrical warper factory class.
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								@sa detail::CylindricalWarper
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								*/
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								class CV_EXPORTS CylindricalWarper: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::CylindricalWarper>(scale); }
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								};
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								/** @brief Spherical warper factory class */
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								class CV_EXPORTS SphericalWarper: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::SphericalWarper>(scale); }
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								};
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								class CV_EXPORTS FisheyeWarper : public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::FisheyeWarper>(scale); }
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								};
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								class CV_EXPORTS StereographicWarper: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::StereographicWarper>(scale); }
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								};
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								class CV_EXPORTS CompressedRectilinearWarper: public WarperCreator
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								{
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								    float a, b;
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								public:
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								    CompressedRectilinearWarper(float A = 1, float B = 1)
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								    {
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								        a = A; b = B;
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								    }
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::CompressedRectilinearWarper>(scale, a, b); }
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								};
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								class CV_EXPORTS CompressedRectilinearPortraitWarper: public WarperCreator
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								{
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								    float a, b;
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								public:
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								    CompressedRectilinearPortraitWarper(float A = 1, float B = 1)
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								    {
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								        a = A; b = B;
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								    }
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::CompressedRectilinearPortraitWarper>(scale, a, b); }
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								};
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								class CV_EXPORTS PaniniWarper: public WarperCreator
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								{
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								    float a, b;
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								public:
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								    PaniniWarper(float A = 1, float B = 1)
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								    {
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								        a = A; b = B;
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								    }
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::PaniniWarper>(scale, a, b); }
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								};
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								class CV_EXPORTS PaniniPortraitWarper: public WarperCreator
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								{
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								    float a, b;
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								public:
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								    PaniniPortraitWarper(float A = 1, float B = 1)
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								    {
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								        a = A; b = B;
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								    }
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::PaniniPortraitWarper>(scale, a, b); }
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								};
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								class CV_EXPORTS MercatorWarper: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::MercatorWarper>(scale); }
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								};
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								class CV_EXPORTS TransverseMercatorWarper: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::TransverseMercatorWarper>(scale); }
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								};
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								#ifdef HAVE_OPENCV_CUDAWARPING
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								class PlaneWarperGpu: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::PlaneWarperGpu>(scale); }
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								};
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								class CylindricalWarperGpu: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::CylindricalWarperGpu>(scale); }
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								};
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								class SphericalWarperGpu: public WarperCreator
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								{
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								public:
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								    Ptr<detail::RotationWarper> create(float scale) const CV_OVERRIDE { return makePtr<detail::SphericalWarperGpu>(scale); }
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								};
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								#endif
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								//! @} stitching_warp
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								} // namespace cv
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								#endif // OPENCV_STITCHING_WARPER_CREATORS_HPP
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