/*M/////////////////////////////////////////////////////////////////////////////////////// // // IMPORTANT: READ BEFORE DOWNLOADING, COPYING, INSTALLING OR USING. // // By downloading, copying, installing or using the software you agree to this license. // If you do not agree to this license, do not download, install, // copy or use the software. // // // License Agreement // For Open Source Computer Vision Library // // Copyright (C) 2000-2008, Intel Corporation, all rights reserved. // Copyright (C) 2009, Willow Garage Inc., all rights reserved. // Third party copyrights are property of their respective owners. // // Redistribution and use in source and binary forms, with or without modification, // are permitted provided that the following conditions are met: // // * Redistribution's of source code must retain the above copyright notice, // this list of conditions and the following disclaimer. // // * Redistribution's in binary form must reproduce the above copyright notice, // this list of conditions and the following disclaimer in the documentation // and/or other materials provided with the distribution. // // * The name of the copyright holders may not be used to endorse or promote products // derived from this software without specific prior written permission. // // This software is provided by the copyright holders and contributors "as is" and // any express or implied warranties, including, but not limited to, the implied // warranties of merchantability and fitness for a particular purpose are disclaimed. // In no event shall the Intel Corporation or contributors be liable for any direct, // indirect, incidental, special, exemplary, or consequential damages // (including, but not limited to, procurement of substitute goods or services; // loss of use, data, or profits; or business interruption) however caused // and on any theory of liability, whether in contract, strict liability, // or tort (including negligence or otherwise) arising in any way out of // the use of this software, even if advised of the possibility of such damage. // //M*/ #include "opencv2/opencv_modules.hpp" #ifndef HAVE_OPENCV_CUDEV #error "opencv_cudev is required" #else #include "opencv2/cudev.hpp" using namespace cv::cudev; void divScalar(const GpuMat& src, cv::Scalar val, bool inv, GpuMat& dst, const GpuMat& mask, double scale, Stream& stream, int); namespace { template struct SafeDiv; template <> struct SafeDiv<1> { template __device__ __forceinline__ static T op(T a, T b) { return b != 0 ? a / b : 0; } }; template <> struct SafeDiv<2> { template __device__ __forceinline__ static T op(const T& a, const T& b) { T res; res.x = b.x != 0 ? a.x / b.x : 0; res.y = b.y != 0 ? a.y / b.y : 0; return res; } }; template <> struct SafeDiv<3> { template __device__ __forceinline__ static T op(const T& a, const T& b) { T res; res.x = b.x != 0 ? a.x / b.x : 0; res.y = b.y != 0 ? a.y / b.y : 0; res.z = b.z != 0 ? a.z / b.z : 0; return res; } }; template <> struct SafeDiv<4> { template __device__ __forceinline__ static T op(const T& a, const T& b) { T res; res.x = b.x != 0 ? a.x / b.x : 0; res.y = b.y != 0 ? a.y / b.y : 0; res.z = b.z != 0 ? a.z / b.z : 0; res.w = b.w != 0 ? a.w / b.w : 0; return res; } }; template struct DivScalarOp : unary_function { ScalarType val; __device__ __forceinline__ DstType operator ()(SrcType a) const { return saturate_cast(SafeDiv::cn>::op(saturate_cast(a), val)); } }; template struct DivScalarOpInv : unary_function { ScalarType val; __device__ __forceinline__ DstType operator ()(SrcType a) const { return saturate_cast(SafeDiv::cn>::op(val, saturate_cast(a))); } }; template struct TransformPolicy : DefaultTransformPolicy { }; template <> struct TransformPolicy : DefaultTransformPolicy { enum { shift = 1 }; }; template void divScalarImpl(const GpuMat& src, cv::Scalar value, bool inv, GpuMat& dst, Stream& stream) { typedef typename MakeVec::cn>::type ScalarType; cv::Scalar_ value_ = value; if (inv) { DivScalarOpInv op; op.val = VecTraits::make(value_.val); gridTransformUnary_< TransformPolicy >(globPtr(src), globPtr(dst), op, stream); } else { DivScalarOp op; op.val = VecTraits::make(value_.val); gridTransformUnary_< TransformPolicy >(globPtr(src), globPtr(dst), op, stream); } } } void divScalar(const GpuMat& src, cv::Scalar val, bool inv, GpuMat& dst, const GpuMat&, double scale, Stream& stream, int) { typedef void (*func_t)(const GpuMat& src, cv::Scalar val, bool inv, GpuMat& dst, Stream& stream); static const func_t funcs[7][7][4] = { { {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} }, { {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} }, { {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} }, { {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} }, { {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} }, { {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} }, { {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/, 0 /*divScalarImpl*/}, {divScalarImpl, divScalarImpl, divScalarImpl, divScalarImpl} } }; const int sdepth = src.depth(); const int ddepth = dst.depth(); const int cn = src.channels(); CV_DbgAssert( sdepth < 7 && ddepth < 7 && cn <= 4 ); if (inv) { val[0] *= scale; val[1] *= scale; val[2] *= scale; val[3] *= scale; } else { val[0] /= scale; val[1] /= scale; val[2] /= scale; val[3] /= scale; } const func_t func = funcs[sdepth][ddepth][cn - 1]; if (!func) CV_Error(cv::Error::StsUnsupportedFormat, "Unsupported combination of source and destination types"); func(src, val, inv, dst, stream); } #endif