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890d6bc0
编写于
4月 22, 2021
作者:
Z
Zhang Zheng
提交者:
GitHub
4月 22, 2021
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电子邮件补丁
差异文件
Modify some contents for elementwise op impl (#32414)
上级
1064f2b8
变更
2
显示空白变更内容
内联
并排
Showing
2 changed file
with
23 addition
and
14 deletion
+23
-14
paddle/fluid/operators/elementwise/elementwise_add_op.cu
paddle/fluid/operators/elementwise/elementwise_add_op.cu
+3
-2
paddle/fluid/operators/elementwise/elementwise_op_impl.cu.h
paddle/fluid/operators/elementwise/elementwise_op_impl.cu.h
+20
-12
未找到文件。
paddle/fluid/operators/elementwise/elementwise_add_op.cu
浏览文件 @
890d6bc0
...
@@ -12,7 +12,6 @@ WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
...
@@ -12,7 +12,6 @@ WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
See the License for the specific language governing permissions and
See the License for the specific language governing permissions and
limitations under the License. */
limitations under the License. */
#include "paddle/fluid/operators/elementwise/elementwise_add_op.h"
#include "paddle/fluid/operators/elementwise/elementwise_add_op.h"
#include "paddle/fluid/operators/elementwise/elementwise_op_function.cu.h"
#include "paddle/fluid/operators/elementwise/elementwise_op_impl.cu.h"
#include "paddle/fluid/operators/elementwise/elementwise_op_impl.cu.h"
#include "paddle/fluid/platform/complex128.h"
#include "paddle/fluid/platform/complex128.h"
#include "paddle/fluid/platform/complex64.h"
#include "paddle/fluid/platform/complex64.h"
...
@@ -34,7 +33,9 @@ namespace operators {
...
@@ -34,7 +33,9 @@ namespace operators {
*/
*/
template
<
typename
T
>
template
<
typename
T
>
struct
CudaAddFunctor
{
struct
CudaAddFunctor
{
inline
HOSTDEVICE
T
operator
()(
T
args
[])
const
{
return
args
[
0
]
+
args
[
1
];
}
__device__
__forceinline__
T
operator
()(
const
T
*
args
)
const
{
return
args
[
0
]
+
args
[
1
];
}
};
};
template
<
typename
T
>
template
<
typename
T
>
...
...
paddle/fluid/operators/elementwise/elementwise_op_impl.cu.h
浏览文件 @
890d6bc0
...
@@ -13,6 +13,17 @@ See the License for the specific language governing permissions and
...
@@ -13,6 +13,17 @@ See the License for the specific language governing permissions and
limitations under the License. */
limitations under the License. */
#pragma once
#pragma once
#include "paddle/fluid/framework/tensor.h"
#include "paddle/fluid/platform/device_context.h"
#include "paddle/fluid/platform/enforce.h"
#include "paddle/fluid/platform/float16.h"
#ifdef __HIPCC__
#define ELEMENTWISE_BLOCK_SIZE 256
#else
#define ELEMENTWISE_BLOCK_SIZE 512
#endif
namespace
paddle
{
namespace
paddle
{
namespace
operators
{
namespace
operators
{
...
@@ -90,8 +101,7 @@ struct ElementwiseDataWrapper {
...
@@ -90,8 +101,7 @@ struct ElementwiseDataWrapper {
template
<
ElementwiseType
ET
,
int
VecSize
,
typename
T
,
typename
Functor
>
template
<
ElementwiseType
ET
,
int
VecSize
,
typename
T
,
typename
Functor
>
__device__
void
VectorizedKernelImpl
(
__device__
void
VectorizedKernelImpl
(
ElementwiseDataWrapper
<
ET
,
VecSize
,
T
>
data
,
int
size
,
Functor
func
,
ElementwiseDataWrapper
<
ET
,
VecSize
,
T
>
data
,
Functor
func
,
int
tid
)
{
int
tid
)
{
using
VecType
=
CudaAlignedVector
<
T
,
VecSize
>
;
using
VecType
=
CudaAlignedVector
<
T
,
VecSize
>
;
VecType
ins_vec
[
ET
];
VecType
ins_vec
[
ET
];
VecType
out_vec
;
VecType
out_vec
;
...
@@ -121,10 +131,9 @@ __device__ void VectorizedKernelImpl(
...
@@ -121,10 +131,9 @@ __device__ void VectorizedKernelImpl(
data
.
store_vector
(
out_vec
,
tid
);
data
.
store_vector
(
out_vec
,
tid
);
}
}
template
<
ElementwiseType
ET
,
typename
T
,
typename
Functor
>
template
<
ElementwiseType
ET
,
int
VecSize
,
typename
T
,
typename
Functor
>
__device__
void
ScalarKernelImpl
(
ElementwiseDataWrapper
<
ET
,
1
,
T
>
data
,
__device__
void
ScalarKernelImpl
(
ElementwiseDataWrapper
<
ET
,
VecSize
,
T
>
data
,
int
size
,
Functor
func
,
int
start
,
Functor
func
,
int
start
,
int
remain
)
{
int
remain
)
{
T
ins
[
ET
];
T
ins
[
ET
];
T
out
;
T
out
;
...
@@ -146,12 +155,11 @@ __global__ void VectorizedKernel(const T *__restrict__ in0,
...
@@ -146,12 +155,11 @@ __global__ void VectorizedKernel(const T *__restrict__ in0,
int
tid
=
blockIdx
.
x
*
blockDim
.
x
+
threadIdx
.
x
;
int
tid
=
blockIdx
.
x
*
blockDim
.
x
+
threadIdx
.
x
;
int
remain
=
size
-
VecSize
*
tid
;
int
remain
=
size
-
VecSize
*
tid
;
remain
=
remain
>
0
?
remain
:
0
;
remain
=
remain
>
0
?
remain
:
0
;
if
(
remain
>=
VecSize
)
{
auto
data
=
ElementwiseDataWrapper
<
ET
,
VecSize
,
T
>
(
out
,
in0
,
in1
);
auto
data
=
ElementwiseDataWrapper
<
ET
,
VecSize
,
T
>
(
out
,
in0
,
in1
);
VectorizedKernelImpl
(
data
,
size
,
func
,
tid
);
if
(
remain
>=
VecSize
)
{
VectorizedKernelImpl
(
data
,
func
,
tid
);
}
else
{
}
else
{
auto
data
=
ElementwiseDataWrapper
<
ET
,
1
,
T
>
(
out
,
in0
,
in1
);
ScalarKernelImpl
(
data
,
func
,
tid
*
VecSize
,
remain
);
ScalarKernelImpl
(
data
,
size
,
func
,
tid
*
VecSize
,
remain
);
}
}
}
}
...
@@ -162,7 +170,7 @@ __global__ void ScalarKernel(const T *__restrict__ in0,
...
@@ -162,7 +170,7 @@ __global__ void ScalarKernel(const T *__restrict__ in0,
auto
data
=
ElementwiseDataWrapper
<
ET
,
1
,
T
>
(
out
,
in0
,
in1
);
auto
data
=
ElementwiseDataWrapper
<
ET
,
1
,
T
>
(
out
,
in0
,
in1
);
int
tid
=
blockIdx
.
x
*
blockDim
.
x
+
threadIdx
.
x
;
int
tid
=
blockIdx
.
x
*
blockDim
.
x
+
threadIdx
.
x
;
int
remain
=
tid
<
size
?
1
:
0
;
int
remain
=
tid
<
size
?
1
:
0
;
ScalarKernelImpl
(
data
,
size
,
func
,
tid
,
remain
);
ScalarKernelImpl
(
data
,
func
,
tid
,
remain
);
}
}
template
<
ElementwiseType
ET
,
typename
T
,
typename
Functor
>
template
<
ElementwiseType
ET
,
typename
T
,
typename
Functor
>
...
@@ -173,7 +181,7 @@ void LaunchElementwiseCudaKernel(
...
@@ -173,7 +181,7 @@ void LaunchElementwiseCudaKernel(
// calculate the max vec_size for all ins and outs
// calculate the max vec_size for all ins and outs
auto
size
=
ins
[
0
]
->
numel
();
auto
size
=
ins
[
0
]
->
numel
();
int
vec_size
=
GetVectorizedSize
<
T
>
(
ins
,
*
outs
);
int
vec_size
=
GetVectorizedSize
<
T
>
(
ins
,
*
outs
);
int
block_size
=
PADDLE_CUDA_THREAD
_SIZE
;
int
block_size
=
ELEMENTWISE_BLOCK
_SIZE
;
int
grid_size
=
int
grid_size
=
((
size
+
vec_size
-
1
)
/
vec_size
+
block_size
-
1
)
/
block_size
;
((
size
+
vec_size
-
1
)
/
vec_size
+
block_size
-
1
)
/
block_size
;
const
T
*
in0
=
ins
[
0
]
->
data
<
T
>
();
const
T
*
in0
=
ins
[
0
]
->
data
<
T
>
();
...
...
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