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mirror of https://github.com/opencv/opencv.git synced 2026-07-31 00:03:03 +04:00

Merge branch 4.x

This commit is contained in:
Alexander Alekhin
2024-11-22 02:32:17 +00:00
20 changed files with 1381 additions and 1615 deletions
+94 -13
View File
@@ -613,7 +613,7 @@ static bool ocl_arithm_op(InputArray _src1, InputArray _src2, OutputArray _dst,
typedef int (*ScalarFunc)(const uchar* src, size_t step_src,
uchar* dst, size_t step_dst, int width, int height,
void* scalar, bool scalarIsFirst);
void* scalar, bool scalarIsFirst, int nChannels);
typedef int (*ExtendedTypeFunc)(const uchar* src1, size_t step1,
const uchar* src2, size_t step2,
@@ -887,7 +887,6 @@ static void arithm_op(InputArray _src1, InputArray _src2, OutputArray _dst,
for( size_t j = 0; j < total; j += blocksize )
{
int bsz = (int)MIN(total - j, blocksize);
Size bszn(bsz*cn, 1);
const uchar *sptr1 = ptrs[0];
const uchar* sptr2 = buf2;
uchar* dptr = ptrs[1];
@@ -900,17 +899,17 @@ static void arithm_op(InputArray _src1, InputArray _src2, OutputArray _dst,
// try to perform operation in 1 call, fallback to classic way if fail
uchar* opconverted = haveMask ? maskbuf : dptr;
if (!scalarFunc || src2.total() != 1 ||
scalarFunc(extSptr1, 1, opconverted, 1, bszn.width, bszn.height, (void*)extSptr2, swapped12) != 0)
scalarFunc(extSptr1, 1, opconverted, 1, bsz, 1, (void*)extSptr2, swapped12, cn) != 0)
{
// try to perform operation with conversion in one call
// if fail, use converter functions
if (!extendedFunc || extendedFunc(extSptr1, 1, extSptr2, 1, opconverted, 1,
bszn.width, bszn.height, usrdata) != 0)
bsz*cn, 1, usrdata) != 0)
{
if( cvtsrc1 )
{
cvtsrc1( sptr1, 1, 0, 1, buf1, 1, bszn, 0 );
cvtsrc1( sptr1, 1, 0, 1, buf1, 1, Size(bsz*cn, 1), 0 );
sptr1 = buf1;
}
@@ -918,12 +917,12 @@ static void arithm_op(InputArray _src1, InputArray _src2, OutputArray _dst,
std::swap(sptr1, sptr2);
uchar* fdst = ( haveMask || cvtdst ) ? wbuf : dptr;
func( sptr1, 1, sptr2, 1, fdst, 1, bszn.width, bszn.height, usrdata );
func( sptr1, 1, sptr2, 1, fdst, 1, bsz*cn, 1, usrdata );
if (cvtdst)
{
uchar* cdst = haveMask ? maskbuf : dptr;
cvtdst(wbuf, 1, 0, 1, cdst, 1, bszn, 0);
cvtdst(wbuf, 1, 0, 1, cdst, 1, Size(bsz*cn, 1), 0);
}
opconverted = cvtdst ? maskbuf : wbuf;
}
@@ -965,9 +964,9 @@ static BinaryFuncC* getAddTab()
}
static int addScalar32f32fWrapper(const uchar* src, size_t step_src, uchar* dst, size_t step_dst, int width, int height,
void* scalar, bool /*scalarIsFirst*/)
void* scalar, bool /*scalarIsFirst*/, int nChannels)
{
int res = cv_hal_addScalar32f32f((const float*)src, step_src, (float *)dst, step_dst, width, height, (const float*)scalar);
int res = cv_hal_addScalar32f32f((const float*)src, step_src, (float *)dst, step_dst, width, height, (const float*)scalar, nChannels);
if (res == CV_HAL_ERROR_OK || res == CV_HAL_ERROR_NOT_IMPLEMENTED)
return res;
else
@@ -978,9 +977,9 @@ static int addScalar32f32fWrapper(const uchar* src, size_t step_src, uchar* dst,
}
static int addScalar16s16sWrapper(const uchar* src, size_t step_src, uchar* dst, size_t step_dst, int width, int height,
void* scalar, bool /*scalarIsFirst*/)
void* scalar, bool /*scalarIsFirst*/, int nChannels)
{
int res = cv_hal_addScalar16s16s((const int16_t*)src, step_src, (int16_t *)dst, step_dst, width, height, (const int16_t*)scalar);
int res = cv_hal_addScalar16s16s((const int16_t*)src, step_src, (int16_t *)dst, step_dst, width, height, (const int16_t*)scalar, nChannels);
if (res == CV_HAL_ERROR_OK || res == CV_HAL_ERROR_NOT_IMPLEMENTED)
return res;
else
@@ -1094,6 +1093,67 @@ static BinaryFuncC* getAbsDiffTab()
return absDiffTab;
}
static int absDiffScalar32f32fWrapper(const uchar* src, size_t step_src, uchar* dst, size_t step_dst, int width, int height,
void* scalar, bool /*scalarIsFirst*/, int nChannels)
{
int res = cv_hal_absDiffScalar32f32f((const float*)src, step_src, (float *)dst, step_dst, width, height, (const float*)scalar, nChannels);
if (res == CV_HAL_ERROR_OK || res == CV_HAL_ERROR_NOT_IMPLEMENTED)
return res;
else
{
CV_Error_(cv::Error::StsInternal, ("HAL implementation addScalar32f32f ==> " CVAUX_STR(cv_hal_addScalar32f32f)
" returned %d (0x%08x)", res, res));
}
}
static int absDiffScalar32s32uWrapper(const uchar* src, size_t step_src, uchar* dst, size_t step_dst, int width, int height,
void* scalar, bool /*scalarIsFirst*/, int nChannels)
{
int res = cv_hal_absDiffScalar32s32u((const int*)src, step_src, (uint32_t*)dst, step_dst, width, height, (const int*)scalar, nChannels);
if (res == CV_HAL_ERROR_OK || res == CV_HAL_ERROR_NOT_IMPLEMENTED)
return res;
else
{
CV_Error_(cv::Error::StsInternal, ("HAL implementation addScalar32f32f ==> " CVAUX_STR(cv_hal_addScalar32f32f)
" returned %d (0x%08x)", res, res));
}
}
static int absDiffScalar8u8uWrapper(const uchar* src, size_t step_src, uchar* dst, size_t step_dst, int width, int height,
void* scalar, bool /*scalarIsFirst*/, int nChannels)
{
int res = cv_hal_absDiffScalar8u8u((const uchar*)src, step_src, (uchar*)dst, step_dst, width, height, (const uchar*)scalar, nChannels);
if (res == CV_HAL_ERROR_OK || res == CV_HAL_ERROR_NOT_IMPLEMENTED)
return res;
else
{
CV_Error_(cv::Error::StsInternal, ("HAL implementation addScalar32f32f ==> " CVAUX_STR(cv_hal_addScalar32f32f)
" returned %d (0x%08x)", res, res));
}
}
static ScalarFunc getAbsDiffScalarFunc(int srcType, int dstType)
{
if (srcType == CV_32F && dstType == CV_32F)
{
return absDiffScalar32f32fWrapper;
}
// resulting type is 32U in fact
else if (srcType == CV_32S && dstType == CV_32S)
{
return absDiffScalar32s32uWrapper;
}
else if (srcType == CV_8U && dstType == CV_8U)
{
return absDiffScalar8u8uWrapper;
}
else
{
return nullptr;
}
}
}
void cv::add( InputArray src1, InputArray src2, OutputArray dst,
@@ -1108,7 +1168,17 @@ void cv::add( InputArray src1, InputArray src2, OutputArray dst,
return;
}
ScalarFunc scalarFunc = getAddScalarFunc(src1.depth(), dtype < 0 ? dst.depth() : dtype);
int sdepth = src1.depth();
if (checkScalar(src1, src1.type(), src1.kind(), _InputArray::MATX))
{
sdepth = src2.depth();
}
if (checkScalar(src2, src2.type(), src2.kind(), _InputArray::MATX))
{
sdepth = src1.depth();
}
ScalarFunc scalarFunc = getAddScalarFunc(sdepth, dtype < 0 ? dst.depth() : dtype);
arithm_op(src1, src2, dst, mask, dtype, getAddTab(), false, 0, OCL_OP_ADD, nullptr,
/* scalarFunc */ scalarFunc );
}
@@ -1141,7 +1211,18 @@ void cv::absdiff( InputArray src1, InputArray src2, OutputArray dst )
return;
}
arithm_op(src1, src2, dst, noArray(), -1, getAbsDiffTab(), false, 0, OCL_OP_ABSDIFF);
int sdepth = src1.depth();
if (checkScalar(src1, src1.type(), src1.kind(), _InputArray::MATX))
{
sdepth = src2.depth();
}
if (checkScalar(src2, src2.type(), src2.kind(), _InputArray::MATX))
{
sdepth = src1.depth();
}
ScalarFunc scalarFunc = getAbsDiffScalarFunc(sdepth, dst.depth());
arithm_op(src1, src2, dst, noArray(), -1, getAbsDiffTab(), false, 0, OCL_OP_ABSDIFF,
/* extendedFunc */ nullptr, scalarFunc);
}
void cv::copyTo(InputArray _src, OutputArray _dst, InputArray _mask)
+23 -2
View File
@@ -119,9 +119,10 @@ Add scalar: _dst[i] = src[i] + scalar
@param width width of the images
@param height height of the images
@param scalar_data pointer to scalar value
@param nChannels number of channels per element
*/
inline int hal_ni_addScalar32f32f(const float *src_data, size_t src_step, float *dst_data, size_t dst_step, int width, int height, const float* scalar_data) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_addScalar16s16s(const int16_t *src_data, size_t src_step, int16_t *dst_data, size_t dst_step, int width, int height, const int16_t* scalar_data) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_addScalar32f32f(const float* src_data, size_t src_step, float* dst_data, size_t dst_step, int width, int height, const float* scalar_data, int nChannels) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_addScalar16s16s(const int16_t* src_data, size_t src_step, int16_t* dst_data, size_t dst_step, int width, int height, const int16_t* scalar_data, int nChannels) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
//! @}
/**
@@ -190,6 +191,23 @@ inline int hal_ni_absdiff64u(const uint64 *src1_data, size_t src1_step, const ui
inline int hal_ni_absdiff64s(const int64 *src1_data, size_t src1_step, const int64 *src2_data, size_t src2_step, int64 *dst_data, size_t dst_step, int width, int height) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_absdiff16f(const cv_hal_f16 *src1_data, size_t src1_step, const cv_hal_f16 *src2_data, size_t src2_step, cv_hal_f16 *dst_data, size_t dst_step, int width, int height) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_absdiff16bf(const cv_hal_bf16 *src1_data, size_t src1_step, const cv_hal_bf16 *src2_data, size_t src2_step, cv_hal_bf16 *dst_data, size_t dst_step, int width, int height) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
/*
Absolute difference with scalar: _dst[i] = | src[i] - scalar |_
@param src_data source image data
@param src_step source image step
@param dst_data destination image data
@param dst_step destination image step
@param width width of the images
@param height height of the images
@param scalar_data pointer to scalar value
@param nChannels number of channels per element
*/
inline int hal_ni_absDiffScalar32f32f(const float* src_data, size_t src_step, float* dst_data, size_t dst_step, int width, int height, const float* scalar_data, int nChannels) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_absDiffScalar32s32u(const int* src_data, size_t src_step, uint32_t* dst_data, size_t dst_step, int width, int height, const int* scalar_data, int nChannels) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
inline int hal_ni_absDiffScalar8u8u (const uchar* src_data, size_t src_step, uchar* dst_data, size_t dst_step, int width, int height, const uchar* scalar_data, int nChannels) { return CV_HAL_ERROR_NOT_IMPLEMENTED; }
//! @}
/**
@@ -279,6 +297,9 @@ inline int hal_ni_not8u(const uchar *src_data, size_t src_step, uchar *dst_data,
#define cv_hal_absdiff64f hal_ni_absdiff64f
#define cv_hal_absdiff16f hal_ni_absdiff16f
#define cv_hal_absdiff16bf hal_ni_absdiff16bf
#define cv_hal_absDiffScalar32f32f hal_ni_absDiffScalar32f32f
#define cv_hal_absDiffScalar32s32u hal_ni_absDiffScalar32s32u
#define cv_hal_absDiffScalar8u8u hal_ni_absDiffScalar8u8u
#define cv_hal_and8u hal_ni_and8u
#define cv_hal_or8u hal_ni_or8u
#define cv_hal_xor8u hal_ni_xor8u