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Merge pull request #26897 from shyama7004:typos-fix
fix hal_replacement typos
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7eaddb8aa4
@ -189,7 +189,7 @@ inline int hal_ni_absDiffScalar8u8u (const uchar* src_data, size_t src_step, uc
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Bitwise AND: _dst[i] = src1[i] & src2[i]_ @n
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Bitwise OR: _dst[i] = src1[i] | src2[i]_ @n
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Bitwise XOR: _dst[i] = src1[i] ^ src2[i]_ @n
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Bitwise NOT: _dst[i] = !src[i]_
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Bitwise NOT: _dst[i] = ~src[i]_
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@param src1_data first source image data
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@param src1_step first source image step
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@param src2_data second source image data
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@ -263,7 +263,7 @@ For 8s input type 128 is added to LUT index
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Destination should have the same element type and number of channels as lookup table elements
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@param src_data Source image data
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@param src_step Source image step
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@param src_type Sorce image type
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@param src_type Source image type
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@param lut_data Pointer to lookup table
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@param lut_channel_size Size of each channel in bytes
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@param lut_channels Number of channels in lookup table
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@ -454,7 +454,7 @@ inline int hal_ni_div64f(const double *src1_data, size_t src1_step, const double
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//! @}
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/**
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Computes reciprocial: _dst[i] = scale / src[i]_
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Computes reciprocal: _dst[i] = scale / src[i]_
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@param src_data source image data
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@param src_step source image step
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@param dst_data destination image data
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@ -463,7 +463,7 @@ Computes reciprocial: _dst[i] = scale / src[i]_
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@param height height of the images
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@param scale additional multiplier
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*/
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//! @addtogroup core_hal_interface_reciprocial Element-wise reciprocial
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//! @addtogroup core_hal_interface_reciprocal Element-wise reciprocal
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//! @{
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inline int hal_ni_recip8u(const uchar *src_data, size_t src_step, uchar *dst_data, size_t dst_step, int width, int height, double scale) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
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inline int hal_ni_recip8s(const schar *src_data, size_t src_step, schar *dst_data, size_t dst_step, int width, int height, double scale) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
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@ -824,14 +824,14 @@ inline int hal_ni_dctFree2D(cvhalDFT *context) { return CV_HAL_ERROR_NOT_IMPLEME
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Performs \f$LU\f$ decomposition of square matrix \f$A=P*L*U\f$ (where \f$P\f$ is permutation matrix) and solves matrix equation \f$A*X=B\f$.
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Function returns the \f$sign\f$ of permutation \f$P\f$ via parameter info.
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@param src1 pointer to input matrix \f$A\f$ stored in row major order. After finish of work src1 contains at least \f$U\f$ part of \f$LU\f$
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decomposition which is appropriate for determainant calculation: \f$det(A)=sign*\prod_{j=1}^{M}a_{jj}\f$.
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decomposition which is appropriate for determinant calculation: \f$det(A)=sign*\prod_{j=1}^{M}a_{jj}\f$.
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@param src1_step number of bytes between two consequent rows of matrix \f$A\f$.
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@param m size of square matrix \f$A\f$.
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@param src2 pointer to \f$M\times N\f$ matrix \f$B\f$ which is the right-hand side of system \f$A*X=B\f$. \f$B\f$ stored in row major order.
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If src2 is null pointer only \f$LU\f$ decomposition will be performed. After finish of work src2 contains solution \f$X\f$ of system \f$A*X=B\f$.
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@param src2_step number of bytes between two consequent rows of matrix \f$B\f$.
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@param n number of right-hand vectors in \f$M\times N\f$ matrix \f$B\f$.
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@param info indicates success of decomposition. If *info is equals to zero decomposition failed, othervise *info is equals to \f$sign\f$.
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@param info indicates success of decomposition. If *info is equals to zero decomposition failed, otherwise *info is equals to \f$sign\f$.
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*/
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//! @addtogroup core_hal_interface_decomp_lu LU matrix decomposition
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//! @{
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