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submodule
opencv
Commits
c87d2d41
Commit
c87d2d41
authored
Sep 24, 2013
by
Ilya Lavrenov
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/*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
)
2010-2012,
Institute
Of
Software
Chinese
Academy
Of
Science,
all
rights
reserved.
//
Copyright
(
C
)
2010-2012,
Advanced
Micro
Devices,
Inc.,
all
rights
reserved.
//
Third
party
copyrights
are
property
of
their
respective
owners.
//
//
@Authors
//
Jia
Haipeng,
jiahaipeng95@gmail.com
//
//
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
oclMaterials
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*/
#
if
defined
(
DOUBLE_SUPPORT
)
#
ifdef
cl_khr_fp64
#
pragma
OPENCL
EXTENSION
cl_khr_fp64:enable
#
elif
defined
(
cl_amd_fp64
)
#
pragma
OPENCL
EXTENSION
cl_amd_fp64:enable
#
endif
#
endif
//////////////////////////////////////////////////////////////////////////////////////////////////////
/////////////////////////////////////////////absdiff////////////////////////////////////////////////////
///////////////////////////////////////////////////////////////////////////////////////////////////////
/**************************************adddiff
*************************************
/
__kernel
void
arithm_absdiff_D0
(
__global
uchar
*src1,
int
src1_step,
int
src1_offset,
__global
uchar
*src2,
int
src2_step,
int
src2_offset,
__global
uchar
*dst,
int
dst_step,
int
dst_offset,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
2
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
(
dst_offset
&
3
)
int
src1_index
=
mad24
(
y,
src1_step,
x
+
src1_offset
-
dst_align
)
;
int
src2_index
=
mad24
(
y,
src2_step,
x
+
src2_offset
-
dst_align
)
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
x
&
(
int
)
0xfffffffc
)
;
int
src1_index_fix
=
src1_index
<
0
?
0
:
src1_index
;
int
src2_index_fix
=
src2_index
<
0
?
0
:
src2_index
;
uchar4
src1_data
=
vload4
(
0
,
src1
+
src1_index_fix
)
;
uchar4
src2_data
=
vload4
(
0
,
src2
+
src2_index_fix
)
;
if
(
src1_index
<
0
)
{
uchar4
tmp
;
tmp.xyzw
=
(
src1_index
==
-2
)
?
src1_data.zwxy:src1_data.yzwx
;
src1_data.xyzw
=
(
src1_index
==
-1
)
?
src1_data.wxyz:tmp.xyzw
;
}
if
(
src2_index
<
0
)
{
uchar4
tmp
;
tmp.xyzw
=
(
src2_index
==
-2
)
?
src2_data.zwxy:src2_data.yzwx
;
src2_data.xyzw
=
(
src2_index
==
-1
)
?
src2_data.wxyz:tmp.xyzw
;
}
uchar4
dst_data
=
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
;
uchar4
tmp_data
=
abs_diff
(
src1_data,
src2_data
)
;
dst_data.x
=
((
dst_index
+
0
>=
dst_start
)
&&
(
dst_index
+
0
<
dst_end
))
?
tmp_data.x
:
dst_data.x
;
dst_data.y
=
((
dst_index
+
1
>=
dst_start
)
&&
(
dst_index
+
1
<
dst_end
))
?
tmp_data.y
:
dst_data.y
;
dst_data.z
=
((
dst_index
+
2
>=
dst_start
)
&&
(
dst_index
+
2
<
dst_end
))
?
tmp_data.z
:
dst_data.z
;
dst_data.w
=
((
dst_index
+
3
>=
dst_start
)
&&
(
dst_index
+
3
<
dst_end
))
?
tmp_data.w
:
dst_data.w
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
=
dst_data
;
}
}
__kernel
void
arithm_absdiff_D2
(
__global
ushort
*src1,
int
src1_step,
int
src1_offset,
__global
ushort
*src2,
int
src2_step,
int
src2_offset,
__global
ushort
*dst,
int
dst_step,
int
dst_offset,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
2
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
((
dst_offset
>>
1
)
&
3
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
1
)
+
src1_offset
-
(
dst_align
<<
1
))
;
int
src2_index
=
mad24
(
y,
src2_step,
(
x
<<
1
)
+
src2_offset
-
(
dst_align
<<
1
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
<<
1
)
&
(
int
)
0xfffffff8
)
;
ushort4
src1_data
=
vload4
(
0
,
(
__global
ushort
*
)((
__global
char
*
)
src1
+
src1_index
))
;
ushort4
src2_data
=
vload4
(
0
,
(
__global
ushort
*
)((
__global
char
*
)
src2
+
src2_index
))
;
ushort4
dst_data
=
*
((
__global
ushort4
*
)((
__global
char
*
)
dst
+
dst_index
))
;
ushort4
tmp_data
=
abs_diff
(
src1_data,
src2_data
)
;
dst_data.x
=
((
dst_index
+
0
>=
dst_start
)
&&
(
dst_index
+
0
<
dst_end
))
?
tmp_data.x
:
dst_data.x
;
dst_data.y
=
((
dst_index
+
2
>=
dst_start
)
&&
(
dst_index
+
2
<
dst_end
))
?
tmp_data.y
:
dst_data.y
;
dst_data.z
=
((
dst_index
+
4
>=
dst_start
)
&&
(
dst_index
+
4
<
dst_end
))
?
tmp_data.z
:
dst_data.z
;
dst_data.w
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data.w
:
dst_data.w
;
*
((
__global
ushort4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
dst_data
;
}
}
__kernel
void
arithm_absdiff_D3
(
__global
short
*src1,
int
src1_step,
int
src1_offset,
__global
short
*src2,
int
src2_step,
int
src2_offset,
__global
short
*dst,
int
dst_step,
int
dst_offset,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
2
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
((
dst_offset
>>
1
)
&
3
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
1
)
+
src1_offset
-
(
dst_align
<<
1
))
;
int
src2_index
=
mad24
(
y,
src2_step,
(
x
<<
1
)
+
src2_offset
-
(
dst_align
<<
1
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
<<
1
)
&
(
int
)
0xfffffff8
)
;
short4
src1_data
=
vload4
(
0
,
(
__global
short
*
)((
__global
char
*
)
src1
+
src1_index
))
;
short4
src2_data
=
vload4
(
0
,
(
__global
short
*
)((
__global
char
*
)
src2
+
src2_index
))
;
short4
dst_data
=
*
((
__global
short4
*
)((
__global
char
*
)
dst
+
dst_index
))
;
ushort4
tmp
=
abs_diff
(
src1_data,
src2_data
)
;
short4
tmp_data
=
convert_short4_sat
(
tmp
)
;
dst_data.x
=
((
dst_index
+
0
>=
dst_start
)
&&
(
dst_index
+
0
<
dst_end
))
?
tmp_data.x
:
dst_data.x
;
dst_data.y
=
((
dst_index
+
2
>=
dst_start
)
&&
(
dst_index
+
2
<
dst_end
))
?
tmp_data.y
:
dst_data.y
;
dst_data.z
=
((
dst_index
+
4
>=
dst_start
)
&&
(
dst_index
+
4
<
dst_end
))
?
tmp_data.z
:
dst_data.z
;
dst_data.w
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data.w
:
dst_data.w
;
*
((
__global
short4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
dst_data
;
}
}
__kernel
void
arithm_absdiff_D4
(
__global
int
*src1,
int
src1_step,
int
src1_offset,
__global
int
*src2,
int
src2_step,
int
src2_offset,
__global
int
*dst,
int
dst_step,
int
dst_offset,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
src2_index
=
mad24
(
y,
src2_step,
(
x
<<
2
)
+
src2_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
int
data1
=
*
((
__global
int
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int
data2
=
*
((
__global
int
*
)((
__global
char
*
)
src2
+
src2_index
))
;
uint
tmp
=
abs_diff
(
data1,
data2
)
;
int
tmp_data
=
convert_int_sat
(
tmp
)
;
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
))
=
tmp_data
;
}
}
__kernel
void
arithm_absdiff_D5
(
__global
float
*src1,
int
src1_step,
int
src1_offset,
__global
float
*src2,
int
src2_step,
int
src2_offset,
__global
float
*dst,
int
dst_step,
int
dst_offset,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
src2_index
=
mad24
(
y,
src2_step,
(
x
<<
2
)
+
src2_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
float
data1
=
*
((
__global
float
*
)((
__global
char
*
)
src1
+
src1_index
))
;
float
data2
=
*
((
__global
float
*
)((
__global
char
*
)
src2
+
src2_index
))
;
float
tmp
=
fabs
(
data1
-
data2
)
;
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
))
=
tmp
;
}
}
#
if
defined
(
DOUBLE_SUPPORT
)
__kernel
void
arithm_absdiff_D6
(
__global
double
*src1,
int
src1_step,
int
src1_offset,
__global
double
*src2,
int
src2_step,
int
src2_offset,
__global
double
*dst,
int
dst_step,
int
dst_offset,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
3
)
+
src1_offset
)
;
int
src2_index
=
mad24
(
y,
src2_step,
(
x
<<
3
)
+
src2_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
3
)
+
dst_offset
)
;
double
data1
=
*
((
__global
double
*
)((
__global
char
*
)
src1
+
src1_index
))
;
double
data2
=
*
((
__global
double
*
)((
__global
char
*
)
src2
+
src2_index
))
;
double
tmp
=
fabs
(
data1-data2
)
;
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
))
=
tmp
;
}
}
#
endif
/**************************************absdiff
with
scalar**************************************/
__kernel
void
arithm_s_absdiff_C1_D0
(
__global
uchar
*src1,
int
src1_step,
int
src1_offset,
__global
uchar
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
2
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
(
dst_offset
&
3
)
int
src1_index
=
mad24
(
y,
src1_step,
x
+
src1_offset
-
dst_align
)
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
x
&
(
int
)
0xfffffffc
)
;
int
src1_index_fix
=
src1_index
<
0
?
0
:
src1_index
;
uchar4
src1_data
=
vload4
(
0
,
src1
+
src1_index_fix
)
;
int4
src2_data
=
(
int4
)(
src2.x,
src2.x,
src2.x,
src2.x
)
;
if
(
src1_index
<
0
)
{
uchar4
tmp
;
tmp.xyzw
=
(
src1_index
==
-2
)
?
src1_data.zwxy:src1_data.yzwx
;
src1_data.xyzw
=
(
src1_index
==
-1
)
?
src1_data.wxyz:tmp.xyzw
;
}
uchar4
data
=
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
;
uchar4
tmp_data
=
convert_uchar4_sat
(
abs_diff
(
convert_int4_sat
(
src1_data
)
,
src2_data
))
;
data.x
=
((
dst_index
+
0
>=
dst_start
)
&&
(
dst_index
+
0
<
dst_end
))
?
tmp_data.x
:
data.x
;
data.y
=
((
dst_index
+
1
>=
dst_start
)
&&
(
dst_index
+
1
<
dst_end
))
?
tmp_data.y
:
data.y
;
data.z
=
((
dst_index
+
2
>=
dst_start
)
&&
(
dst_index
+
2
<
dst_end
))
?
tmp_data.z
:
data.z
;
data.w
=
((
dst_index
+
3
>=
dst_start
)
&&
(
dst_index
+
3
<
dst_end
))
?
tmp_data.w
:
data.w
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C1_D2
(
__global
ushort
*src1,
int
src1_step,
int
src1_offset,
__global
ushort
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
1
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
((
dst_offset
>>
1
)
&
1
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
1
)
+
src1_offset
-
(
dst_align
<<
1
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
<<
1
)
&
(
int
)
0xfffffffc
)
;
ushort2
src1_data
=
vload2
(
0
,
(
__global
ushort
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int2
src2_data
=
(
int2
)(
src2.x,
src2.x
)
;
ushort2
data
=
*
((
__global
ushort2
*
)((
__global
uchar
*
)
dst
+
dst_index
))
;
ushort2
tmp_data
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data
)
,
src2_data
))
;
data.x
=
(
dst_index
+
0
>=
dst_start
)
?
tmp_data.x
:
data.x
;
data.y
=
(
dst_index
+
2
<
dst_end
)
?
tmp_data.y
:
data.y
;
*
((
__global
ushort2
*
)((
__global
uchar
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C1_D3
(
__global
short
*src1,
int
src1_step,
int
src1_offset,
__global
short
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
1
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
((
dst_offset
>>
1
)
&
1
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
1
)
+
src1_offset
-
(
dst_align
<<
1
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
<<
1
)
&
(
int
)
0xfffffffc
)
;
short2
src1_data
=
vload2
(
0
,
(
__global
short
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int2
src2_data
=
(
int2
)(
src2.x,
src2.x
)
;
short2
data
=
*
((
__global
short2
*
)((
__global
uchar
*
)
dst
+
dst_index
))
;
ushort2
tmp
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data
)
,
src2_data
))
;
short2
tmp_data
=
convert_short2_sat
(
tmp
)
;
data.x
=
(
dst_index
+
0
>=
dst_start
)
?
tmp_data.x
:
data.x
;
data.y
=
(
dst_index
+
2
<
dst_end
)
?
tmp_data.y
:
data.y
;
*
((
__global
short2
*
)((
__global
uchar
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C1_D4
(
__global
int
*src1,
int
src1_step,
int
src1_offset,
__global
int
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
int
src_data1
=
*
((
__global
int
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int
src_data2
=
src2.x
;
int
dst_data
=
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
))
;
uint
tmp_data
=
abs_diff
(
src_data1,
src_data2
)
;
int
data
=
convert_int_sat
(
tmp_data
)
;
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C1_D5
(
__global
float
*src1,
int
src1_step,
int
src1_offset,
__global
float
*dst,
int
dst_step,
int
dst_offset,
float4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
float
src_data1
=
*
((
__global
float
*
)((
__global
char
*
)
src1
+
src1_index
))
;
float
src_data2
=
src2.x
;
float
dst_data
=
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
))
;
float
data
=
fabs
(
src_data1
-
src_data2
)
;
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
#
if
defined
(
DOUBLE_SUPPORT
)
__kernel
void
arithm_s_absdiff_C1_D6
(
__global
double
*src1,
int
src1_step,
int
src1_offset,
__global
double
*dst,
int
dst_step,
int
dst_offset,
double4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
3
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
3
)
+
dst_offset
)
;
double
src_data1
=
*
((
__global
double
*
)((
__global
char
*
)
src1
+
src1_index
))
;
double
src2_data
=
src2.x
;
double
dst_data
=
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
))
;
double
data
=
fabs
(
src_data1
-
src2_data
)
;
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
#
endif
__kernel
void
arithm_s_absdiff_C2_D0
(
__global
uchar
*src1,
int
src1_step,
int
src1_offset,
__global
uchar
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
1
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
((
dst_offset
>>
1
)
&
1
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
1
)
+
src1_offset
-
(
dst_align
<<
1
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
<<
1
)
&
(
int
)
0xfffffffc
)
;
uchar4
src1_data
=
vload4
(
0
,
src1
+
src1_index
)
;
int4
src2_data
=
(
int4
)(
src2.x,
src2.y,
src2.x,
src2.y
)
;
uchar4
data
=
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
;
uchar4
tmp_data
=
convert_uchar4_sat
(
abs_diff
(
convert_int4_sat
(
src1_data
)
,
src2_data
))
;
data.xy
=
(
dst_index
+
0
>=
dst_start
)
?
tmp_data.xy
:
data.xy
;
data.zw
=
(
dst_index
+
2
<
dst_end
)
?
tmp_data.zw
:
data.zw
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C2_D2
(
__global
ushort
*src1,
int
src1_step,
int
src1_offset,
__global
ushort
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
ushort2
src_data1
=
*
((
__global
ushort2
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int2
src_data2
=
(
int2
)(
src2.x,
src2.y
)
;
ushort2
dst_data
=
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
))
;
ushort2
data
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src_data1
)
,
src_data2
))
;
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C2_D3
(
__global
short
*src1,
int
src1_step,
int
src1_offset,
__global
short
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
short2
src_data1
=
*
((
__global
short2
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int2
src_data2
=
(
int2
)(
src2.x,
src2.y
)
;
short2
dst_data
=
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
))
;
ushort2
tmp
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src_data1
)
,
src_data2
))
;
short2
data
=
convert_short2_sat
(
tmp
)
;
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C2_D4
(
__global
int
*src1,
int
src1_step,
int
src1_offset,
__global
int
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
3
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
3
)
+
dst_offset
)
;
int2
src_data1
=
*
((
__global
int2
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int2
src_data2
=
(
int2
)(
src2.x,
src2.y
)
;
int2
dst_data
=
*
((
__global
int2
*
)((
__global
char
*
)
dst
+
dst_index
))
;
int2
data
=
convert_int2_sat
(
abs_diff
(
src_data1,
src_data2
))
;
*
((
__global
int2
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C2_D5
(
__global
float
*src1,
int
src1_step,
int
src1_offset,
__global
float
*dst,
int
dst_step,
int
dst_offset,
float4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
3
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
3
)
+
dst_offset
)
;
float2
src_data1
=
*
((
__global
float2
*
)((
__global
char
*
)
src1
+
src1_index
))
;
float2
src_data2
=
(
float2
)(
src2.x,
src2.y
)
;
float2
dst_data
=
*
((
__global
float2
*
)((
__global
char
*
)
dst
+
dst_index
))
;
float2
data
=
fabs
(
src_data1
-
src_data2
)
;
*
((
__global
float2
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
#
if
defined
(
DOUBLE_SUPPORT
)
__kernel
void
arithm_s_absdiff_C2_D6
(
__global
double
*src1,
int
src1_step,
int
src1_offset,
__global
double
*dst,
int
dst_step,
int
dst_offset,
double4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
4
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
4
)
+
dst_offset
)
;
double2
src_data1
=
*
((
__global
double2
*
)((
__global
char
*
)
src1
+
src1_index
))
;
double2
src_data2
=
(
double2
)(
src2.x,
src2.y
)
;
double2
dst_data
=
*
((
__global
double2
*
)((
__global
char
*
)
dst
+
dst_index
))
;
double2
data
=
fabs
(
src_data1
-
src_data2
)
;
*
((
__global
double2
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
#
endif
__kernel
void
arithm_s_absdiff_C3_D0
(
__global
uchar
*src1,
int
src1_step,
int
src1_offset,
__global
uchar
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
2
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
(((
dst_offset
%
dst_step
)
/
3
)
&
3
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
*
3
)
+
src1_offset
-
(
dst_align
*
3
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
*
3
)
-
(
dst_align
*
3
))
;
uchar4
src1_data_0
=
vload4
(
0
,
src1
+
src1_index
+
0
)
;
uchar4
src1_data_1
=
vload4
(
0
,
src1
+
src1_index
+
4
)
;
uchar4
src1_data_2
=
vload4
(
0
,
src1
+
src1_index
+
8
)
;
int4
src2_data_0
=
(
int4
)(
src2.x,
src2.y,
src2.z,
src2.x
)
;
int4
src2_data_1
=
(
int4
)(
src2.y,
src2.z,
src2.x,
src2.y
)
;
int4
src2_data_2
=
(
int4
)(
src2.z,
src2.x,
src2.y,
src2.z
)
;
uchar4
data_0
=
*
((
__global
uchar4
*
)(
dst
+
dst_index
+
0
))
;
uchar4
data_1
=
*
((
__global
uchar4
*
)(
dst
+
dst_index
+
4
))
;
uchar4
data_2
=
*
((
__global
uchar4
*
)(
dst
+
dst_index
+
8
))
;
uchar4
tmp_data_0
=
convert_uchar4_sat
(
abs_diff
(
convert_int4_sat
(
src1_data_0
)
,
src2_data_0
))
;
uchar4
tmp_data_1
=
convert_uchar4_sat
(
abs_diff
(
convert_int4_sat
(
src1_data_1
)
,
src2_data_1
))
;
uchar4
tmp_data_2
=
convert_uchar4_sat
(
abs_diff
(
convert_int4_sat
(
src1_data_2
)
,
src2_data_2
))
;
data_0.xyz
=
((
dst_index
+
0
>=
dst_start
))
?
tmp_data_0.xyz
:
data_0.xyz
;
data_0.w
=
((
dst_index
+
3
>=
dst_start
)
&&
(
dst_index
+
3
<
dst_end
))
?
tmp_data_0.w
:
data_0.w
;
data_1.xy
=
((
dst_index
+
3
>=
dst_start
)
&&
(
dst_index
+
3
<
dst_end
))
?
tmp_data_1.xy
:
data_1.xy
;
data_1.zw
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data_1.zw
:
data_1.zw
;
data_2.x
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data_2.x
:
data_2.x
;
data_2.yzw
=
((
dst_index
+
9
>=
dst_start
)
&&
(
dst_index
+
9
<
dst_end
))
?
tmp_data_2.yzw
:
data_2.yzw
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
+
0
))
=
data_0
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
+
4
))
=
data_1
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
+
8
))
=
data_2
;
}
}
__kernel
void
arithm_s_absdiff_C3_D2
(
__global
ushort
*src1,
int
src1_step,
int
src1_offset,
__global
ushort
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
1
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
(((
dst_offset
%
dst_step
)
/
6
)
&
1
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
*
6
)
+
src1_offset
-
(
dst_align
*
6
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
*
6
)
-
(
dst_align
*
6
))
;
ushort2
src1_data_0
=
vload2
(
0
,
(
__global
ushort
*
)((
__global
char
*
)
src1
+
src1_index
+
0
))
;
ushort2
src1_data_1
=
vload2
(
0
,
(
__global
ushort
*
)((
__global
char
*
)
src1
+
src1_index
+
4
))
;
ushort2
src1_data_2
=
vload2
(
0
,
(
__global
ushort
*
)((
__global
char
*
)
src1
+
src1_index
+
8
))
;
int2
src2_data_0
=
(
int2
)(
src2.x,
src2.y
)
;
int2
src2_data_1
=
(
int2
)(
src2.z,
src2.x
)
;
int2
src2_data_2
=
(
int2
)(
src2.y,
src2.z
)
;
ushort2
data_0
=
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
;
ushort2
data_1
=
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
;
ushort2
data_2
=
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
;
ushort2
tmp_data_0
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data_0
)
,
src2_data_0
))
;
ushort2
tmp_data_1
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data_1
)
,
src2_data_1
))
;
ushort2
tmp_data_2
=
convert_ushort2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data_2
)
,
src2_data_2
))
;
data_0.xy
=
((
dst_index
+
0
>=
dst_start
))
?
tmp_data_0.xy
:
data_0.xy
;
data_1.x
=
((
dst_index
+
0
>=
dst_start
)
&&
(
dst_index
+
0
<
dst_end
))
?
tmp_data_1.x
:
data_1.x
;
data_1.y
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data_1.y
:
data_1.y
;
data_2.xy
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data_2.xy
:
data_2.xy
;
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
=
data_0
;
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
=
data_1
;
*
((
__global
ushort2
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
=
data_2
;
}
}
__kernel
void
arithm_s_absdiff_C3_D3
(
__global
short
*src1,
int
src1_step,
int
src1_offset,
__global
short
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
x
=
x
<<
1
;
#
ifdef
dst_align
#
undef
dst_align
#
endif
#
define
dst_align
(((
dst_offset
%
dst_step
)
/
6
)
&
1
)
int
src1_index
=
mad24
(
y,
src1_step,
(
x
*
6
)
+
src1_offset
-
(
dst_align
*
6
))
;
int
dst_start
=
mad24
(
y,
dst_step,
dst_offset
)
;
int
dst_end
=
mad24
(
y,
dst_step,
dst_offset
+
dst_step1
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
*
6
)
-
(
dst_align
*
6
))
;
short2
src1_data_0
=
vload2
(
0
,
(
__global
short
*
)((
__global
char
*
)
src1
+
src1_index
+
0
))
;
short2
src1_data_1
=
vload2
(
0
,
(
__global
short
*
)((
__global
char
*
)
src1
+
src1_index
+
4
))
;
short2
src1_data_2
=
vload2
(
0
,
(
__global
short
*
)((
__global
char
*
)
src1
+
src1_index
+
8
))
;
int2
src2_data_0
=
(
int2
)(
src2.x,
src2.y
)
;
int2
src2_data_1
=
(
int2
)(
src2.z,
src2.x
)
;
int2
src2_data_2
=
(
int2
)(
src2.y,
src2.z
)
;
short2
data_0
=
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
;
short2
data_1
=
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
;
short2
data_2
=
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
;
short2
tmp_data_0
=
convert_short2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data_0
)
,
src2_data_0
))
;
short2
tmp_data_1
=
convert_short2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data_1
)
,
src2_data_1
))
;
short2
tmp_data_2
=
convert_short2_sat
(
abs_diff
(
convert_int2_sat
(
src1_data_2
)
,
src2_data_2
))
;
data_0.xy
=
((
dst_index
+
0
>=
dst_start
))
?
tmp_data_0.xy
:
data_0.xy
;
data_1.x
=
((
dst_index
+
0
>=
dst_start
)
&&
(
dst_index
+
0
<
dst_end
))
?
tmp_data_1.x
:
data_1.x
;
data_1.y
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data_1.y
:
data_1.y
;
data_2.xy
=
((
dst_index
+
6
>=
dst_start
)
&&
(
dst_index
+
6
<
dst_end
))
?
tmp_data_2.xy
:
data_2.xy
;
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
=
data_0
;
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
=
data_1
;
*
((
__global
short2
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
=
data_2
;
}
}
__kernel
void
arithm_s_absdiff_C3_D4
(
__global
int
*src1,
int
src1_step,
int
src1_offset,
__global
int
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
*
12
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
*
12
))
;
int
src1_data_0
=
*
((
__global
int
*
)((
__global
char
*
)
src1
+
src1_index
+
0
))
;
int
src1_data_1
=
*
((
__global
int
*
)((
__global
char
*
)
src1
+
src1_index
+
4
))
;
int
src1_data_2
=
*
((
__global
int
*
)((
__global
char
*
)
src1
+
src1_index
+
8
))
;
int
src2_data_0
=
src2.x
;
int
src2_data_1
=
src2.y
;
int
src2_data_2
=
src2.z
;
int
data_0
=
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
;
int
data_1
=
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
;
int
data_2
=
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
;
int
tmp_data_0
=
convert_int_sat
(
abs_diff
(
src1_data_0,
src2_data_0
))
;
int
tmp_data_1
=
convert_int_sat
(
abs_diff
(
src1_data_1,
src2_data_1
))
;
int
tmp_data_2
=
convert_int_sat
(
abs_diff
(
src1_data_2,
src2_data_2
))
;
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
=
tmp_data_0
;
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
=
tmp_data_1
;
*
((
__global
int
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
=
tmp_data_2
;
}
}
__kernel
void
arithm_s_absdiff_C3_D5
(
__global
float
*src1,
int
src1_step,
int
src1_offset,
__global
float
*dst,
int
dst_step,
int
dst_offset,
float4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
*
12
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
*
12
))
;
float
src1_data_0
=
*
((
__global
float
*
)((
__global
char
*
)
src1
+
src1_index
+
0
))
;
float
src1_data_1
=
*
((
__global
float
*
)((
__global
char
*
)
src1
+
src1_index
+
4
))
;
float
src1_data_2
=
*
((
__global
float
*
)((
__global
char
*
)
src1
+
src1_index
+
8
))
;
float
src2_data_0
=
src2.x
;
float
src2_data_1
=
src2.y
;
float
src2_data_2
=
src2.z
;
float
data_0
=
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
;
float
data_1
=
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
;
float
data_2
=
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
;
float
tmp_data_0
=
fabs
(
src1_data_0
-
src2_data_0
)
;
float
tmp_data_1
=
fabs
(
src1_data_1
-
src2_data_1
)
;
float
tmp_data_2
=
fabs
(
src1_data_2
-
src2_data_2
)
;
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
=
tmp_data_0
;
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
+
4
))
=
tmp_data_1
;
*
((
__global
float
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
=
tmp_data_2
;
}
}
#
if
defined
(
DOUBLE_SUPPORT
)
__kernel
void
arithm_s_absdiff_C3_D6
(
__global
double
*src1,
int
src1_step,
int
src1_offset,
__global
double
*dst,
int
dst_step,
int
dst_offset,
double4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
*
24
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
dst_offset
+
(
x
*
24
))
;
double
src1_data_0
=
*
((
__global
double
*
)((
__global
char
*
)
src1
+
src1_index
+
0
))
;
double
src1_data_1
=
*
((
__global
double
*
)((
__global
char
*
)
src1
+
src1_index
+
8
))
;
double
src1_data_2
=
*
((
__global
double
*
)((
__global
char
*
)
src1
+
src1_index
+
16
))
;
double
src2_data_0
=
src2.x
;
double
src2_data_1
=
src2.y
;
double
src2_data_2
=
src2.z
;
double
data_0
=
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
;
double
data_1
=
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
;
double
data_2
=
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
+
16
))
;
double
tmp_data_0
=
fabs
(
src1_data_0
-
src2_data_0
)
;
double
tmp_data_1
=
fabs
(
src1_data_1
-
src2_data_1
)
;
double
tmp_data_2
=
fabs
(
src1_data_2
-
src2_data_2
)
;
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
+
0
))
=
tmp_data_0
;
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
+
8
))
=
tmp_data_1
;
*
((
__global
double
*
)((
__global
char
*
)
dst
+
dst_index
+
16
))
=
tmp_data_2
;
}
}
#
endif
__kernel
void
arithm_s_absdiff_C4_D0
(
__global
uchar
*src1,
int
src1_step,
int
src1_offset,
__global
uchar
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
2
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
2
)
+
dst_offset
)
;
uchar4
src_data1
=
*
((
__global
uchar4
*
)(
src1
+
src1_index
))
;
uchar4
data
=
convert_uchar4_sat
(
abs_diff
(
convert_int4_sat
(
src_data1
)
,
src2
))
;
*
((
__global
uchar4
*
)(
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C4_D2
(
__global
ushort
*src1,
int
src1_step,
int
src1_offset,
__global
ushort
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
3
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
3
)
+
dst_offset
)
;
ushort4
src_data1
=
*
((
__global
ushort4
*
)((
__global
char
*
)
src1
+
src1_index
))
;
ushort4
data
=
convert_ushort4_sat
(
abs_diff
(
convert_int4_sat
(
src_data1
)
,
src2
))
;
*
((
__global
ushort4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C4_D3
(
__global
short
*src1,
int
src1_step,
int
src1_offset,
__global
short
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
3
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
3
)
+
dst_offset
)
;
short4
src_data1
=
*
((
__global
short4
*
)((
__global
char
*
)
src1
+
src1_index
))
;
short4
data
=
convert_short4_sat
(
abs_diff
(
convert_int4_sat
(
src_data1
)
,
src2
))
;
*
((
__global
short4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C4_D4
(
__global
int
*src1,
int
src1_step,
int
src1_offset,
__global
int
*dst,
int
dst_step,
int
dst_offset,
int4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
4
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
4
)
+
dst_offset
)
;
int4
src_data1
=
*
((
__global
int4
*
)((
__global
char
*
)
src1
+
src1_index
))
;
int4
data
=
convert_int4_sat
(
abs_diff
(
src_data1,
src2
))
;
*
((
__global
int4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
__kernel
void
arithm_s_absdiff_C4_D5
(
__global
float
*src1,
int
src1_step,
int
src1_offset,
__global
float
*dst,
int
dst_step,
int
dst_offset,
float4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
4
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
4
)
+
dst_offset
)
;
float4
src_data1
=
*
((
__global
float4
*
)((
__global
char
*
)
src1
+
src1_index
))
;
float4
data
=
fabs
(
src_data1
-
src2
)
;
*
((
__global
float4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
#
if
defined
(
DOUBLE_SUPPORT
)
__kernel
void
arithm_s_absdiff_C4_D6
(
__global
double
*src1,
int
src1_step,
int
src1_offset,
__global
double
*dst,
int
dst_step,
int
dst_offset,
double4
src2,
int
rows,
int
cols,
int
dst_step1
)
{
int
x
=
get_global_id
(
0
)
;
int
y
=
get_global_id
(
1
)
;
if
(
x
<
cols
&&
y
<
rows
)
{
int
src1_index
=
mad24
(
y,
src1_step,
(
x
<<
5
)
+
src1_offset
)
;
int
dst_index
=
mad24
(
y,
dst_step,
(
x
<<
5
)
+
dst_offset
)
;
double4
src_data1
=
*
((
__global
double4
*
)((
__global
char
*
)
src1
+
src1_index
))
;
double4
data
=
fabs
(
src_data1
-
src2
)
;
*
((
__global
double4
*
)((
__global
char
*
)
dst
+
dst_index
))
=
data
;
}
}
#
endif
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