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e691f022
编写于
6月 19, 2018
作者:
R
Ruilong Liu
提交者:
GitHub
6月 19, 2018
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差异文件
Merge pull request #434 from cocodark/develop
optimize conv-add kernel with neon intrinsics
上级
4da4e9c7
9df825b7
变更
2
显示空白变更内容
内联
并排
Showing
2 changed file
with
51 addition
and
21 deletion
+51
-21
src/operators/kernel/arm/conv_add_kernel.cpp
src/operators/kernel/arm/conv_add_kernel.cpp
+0
-21
src/operators/kernel/conv_add_kernel.h
src/operators/kernel/conv_add_kernel.h
+51
-0
未找到文件。
src/operators/kernel/arm/conv_add_kernel.cpp
浏览文件 @
e691f022
...
...
@@ -18,27 +18,6 @@ limitations under the License. */
namespace
paddle_mobile
{
namespace
operators
{
void
expand_bias
(
Tensor
&
bias
,
int
axis
,
const
DDim
&
dDim
)
{
auto
bias_ptr
=
bias
.
data
<
float
>
();
const
DDim
bias_ddim
=
bias
.
dims
();
PADDLE_MOBILE_ENFORCE
(
bias
.
dims
().
size
()
==
1
,
"the bias tensor's dims size != 1"
)
DDim
outer_ddim
=
paddle_mobile
::
framework
::
slice_ddim
(
dDim
,
0
,
axis
+
1
);
DDim
inner_ddim
=
paddle_mobile
::
framework
::
slice_ddim
(
dDim
,
axis
+
1
,
dDim
.
size
());
int
outer_size
=
paddle_mobile
::
framework
::
product
(
outer_ddim
);
int
inner_size
=
paddle_mobile
::
framework
::
product
(
inner_ddim
);
bias
.
Resize
(
dDim
);
auto
new_ptr
=
bias
.
mutable_data
<
float
>
();
int
axis_size
=
dDim
[
axis
];
for
(
int
i
=
0
;
i
<
outer_size
;
++
i
)
{
float
v_bias
=
bias_ptr
[
i
*
axis_size
/
outer_size
];
for
(
int
j
=
0
;
j
<
inner_size
;
++
j
)
{
new_ptr
[
i
*
inner_size
+
j
]
=
v_bias
;
}
}
}
template
<
>
void
ConvAddKernel
<
CPU
,
float
>::
Compute
(
const
FushionConvAddParam
&
param
)
const
{
...
...
src/operators/kernel/conv_add_kernel.h
浏览文件 @
e691f022
...
...
@@ -17,6 +17,9 @@ limitations under the License. */
#pragma once
#include <vector>
#if __ARM_NEON
#include <arm_neon.h>
#endif
#include "framework/ddim.h"
#include "framework/operator.h"
#include "operators/math/im2col.h"
...
...
@@ -36,6 +39,54 @@ class ConvAddKernel : public OpKernelBase<DeviceType, FushionConvAddParam> {
void
Compute
(
const
FushionConvAddParam
&
param
)
const
;
};
inline
void
expand_bias
(
Tensor
&
bias
,
int
axis
,
const
DDim
&
dDim
)
{
auto
bias_ptr
=
bias
.
data
<
float
>
();
const
DDim
bias_ddim
=
bias
.
dims
();
PADDLE_MOBILE_ENFORCE
(
bias
.
dims
().
size
()
==
1
,
"the bias tensor's dims size != 1"
)
DDim
outer_ddim
=
paddle_mobile
::
framework
::
slice_ddim
(
dDim
,
0
,
axis
+
1
);
DDim
inner_ddim
=
paddle_mobile
::
framework
::
slice_ddim
(
dDim
,
axis
+
1
,
dDim
.
size
());
int
outer_size
=
paddle_mobile
::
framework
::
product
(
outer_ddim
);
int
inner_size
=
paddle_mobile
::
framework
::
product
(
inner_ddim
);
bias
.
Resize
(
dDim
);
auto
new_ptr
=
bias
.
mutable_data
<
float
>
();
int
axis_size
=
dDim
[
axis
];
#if __ARM_NEON
for
(
int
i
=
0
;
i
<
outer_size
;
++
i
)
{
int
inner_num
=
inner_size
>>
4
;
int
remain
=
inner_size
-
(
inner_num
<<
4
);
float
v_bias
=
bias_ptr
[
i
*
axis_size
/
outer_size
];
for
(;
inner_num
>
0
;
inner_num
--
)
{
float32x4_t
v_newptr1
=
vdupq_n_f32
(
v_bias
);
float32x4_t
v_newptr2
=
vdupq_n_f32
(
v_bias
);
float32x4_t
v_newptr3
=
vdupq_n_f32
(
v_bias
);
float32x4_t
v_newptr4
=
vdupq_n_f32
(
v_bias
);
vst1q_f32
(
new_ptr
,
v_newptr1
);
new_ptr
+=
4
;
vst1q_f32
(
new_ptr
,
v_newptr2
);
new_ptr
+=
4
;
vst1q_f32
(
new_ptr
,
v_newptr3
);
new_ptr
+=
4
;
vst1q_f32
(
new_ptr
,
v_newptr4
);
new_ptr
+=
4
;
}
for
(;
remain
>
0
;
remain
--
)
{
*
new_ptr
=
v_bias
;
new_ptr
++
;
}
}
#else
for
(
int
i
=
0
;
i
<
outer_size
;
++
i
)
{
float
v_bias
=
bias_ptr
[
i
*
axis_size
/
outer_size
];
for
(
int
j
=
0
;
j
<
inner_size
;
++
j
)
{
new_ptr
[
i
*
inner_size
+
j
]
=
v_bias
;
}
}
#endif
}
inline
bool
IsExpand
(
const
std
::
vector
<
int64_t
>
&
filter_dim
,
const
std
::
vector
<
int
>
&
strides
,
const
std
::
vector
<
int
>
&
paddings
,
...
...
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