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afa2a88d
编写于
7月 15, 2017
作者:
F
fengjiayi
浏览文件
操作
浏览文件
下载
电子邮件补丁
差异文件
add conditional compilation for tensor
上级
66cf21c8
变更
2
隐藏空白更改
内联
并排
Showing
2 changed file
with
59 addition
and
54 deletion
+59
-54
paddle/framework/tensor.h
paddle/framework/tensor.h
+5
-0
paddle/framework/tensor_test.cc
paddle/framework/tensor_test.cc
+54
-54
未找到文件。
paddle/framework/tensor.h
浏览文件 @
afa2a88d
...
...
@@ -51,6 +51,7 @@ class Tensor {
!
(
holder_
->
place
()
==
place
)
/* some versions of boost::variant don't have operator!= */
||
holder_
->
size
()
<
numel_
*
sizeof
(
T
)
+
offset_
)
{
#ifdef __CUDACC__
switch
(
place
.
which
())
{
case
0
:
holder_
.
reset
(
new
PlaceholderImpl
<
T
,
platform
::
GPUPlace
>
(
...
...
@@ -62,6 +63,10 @@ class Tensor {
boost
::
get
<
platform
::
CPUPlace
>
(
place
),
numel_
*
sizeof
(
T
)));
break
;
}
#else
holder_
.
reset
(
new
PlaceholderImpl
<
T
,
platform
::
CPUPlace
>
(
boost
::
get
<
platform
::
CPUPlace
>
(
place
),
numel_
*
sizeof
(
T
)));
#endif
offset_
=
0
;
}
...
...
paddle/framework/tensor_test.cc
浏览文件 @
afa2a88d
...
...
@@ -72,29 +72,29 @@ TEST(Tensor, MutableData) {
p2
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
2
,
2
}),
CPUPlace
());
EXPECT_EQ
(
p1
,
p2
);
}
#ifdef __CUDACC__
{
Tensor
src_tensor
;
float
*
p1
=
nullptr
;
float
*
p2
=
nullptr
;
// initialization
p1
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
1
,
2
,
3
}),
GPUPlace
());
EXPECT_NE
(
p1
,
nullptr
);
// set src_tensor a new dim with large size
// momery is supposed to be re-allocated
p2
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
3
,
4
}),
GPUPlace
());
EXPECT_NE
(
p2
,
nullptr
);
EXPECT_NE
(
p1
,
p2
);
// set src_tensor a new dim with same size
// momery block is supposed to be unchanged
p1
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
2
,
2
,
3
}),
GPUPlace
());
EXPECT_EQ
(
p1
,
p2
);
// set src_tensor a new dim with smaller size
// momery block is supposed to be unchanged
p2
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
2
,
2
}),
GPUPlace
());
EXPECT_EQ
(
p1
,
p2
);
}
#endif
#ifdef __CUDACC__
{
Tensor
src_tensor
;
float
*
p1
=
nullptr
;
float
*
p2
=
nullptr
;
// initialization
p1
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
1
,
2
,
3
}),
GPUPlace
());
EXPECT_NE
(
p1
,
nullptr
);
// set src_tensor a new dim with large size
// momery is supposed to be re-allocated
p2
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
3
,
4
}),
GPUPlace
());
EXPECT_NE
(
p2
,
nullptr
);
EXPECT_NE
(
p1
,
p2
);
// set src_tensor a new dim with same size
// momery block is supposed to be unchanged
p1
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
2
,
2
,
3
}),
GPUPlace
());
EXPECT_EQ
(
p1
,
p2
);
// set src_tensor a new dim with smaller size
// momery block is supposed to be unchanged
p2
=
src_tensor
.
mutable_data
<
float
>
(
make_ddim
({
2
,
2
}),
GPUPlace
());
EXPECT_EQ
(
p1
,
p2
);
}
#endif
}
TEST
(
Tensor
,
ShareDataFrom
)
{
...
...
@@ -123,15 +123,15 @@ TEST(Tensor, ShareDataFrom) {
ASSERT_EQ
(
src_tensor
.
data
<
int
>
(),
dst_tensor
.
data
<
int
>
());
}
#ifdef __CUDACC__
{
Tensor
src_tensor
;
Tensor
dst_tensor
;
src_tensor
.
mutable_data
<
int
>
(
make_ddim
({
2
,
3
,
4
}),
GPUPlace
());
dst_tensor
.
ShareDataFrom
<
int
>
(
src_tensor
);
ASSERT_EQ
(
src_tensor
.
data
<
int
>
(),
dst_tensor
.
data
<
int
>
());
}
#endif
#ifdef __CUDACC__
{
Tensor
src_tensor
;
Tensor
dst_tensor
;
src_tensor
.
mutable_data
<
int
>
(
make_ddim
({
2
,
3
,
4
}),
GPUPlace
());
dst_tensor
.
ShareDataFrom
<
int
>
(
src_tensor
);
ASSERT_EQ
(
src_tensor
.
data
<
int
>
(),
dst_tensor
.
data
<
int
>
());
}
#endif
}
TEST
(
Tensor
,
Slice
)
{
...
...
@@ -160,29 +160,29 @@ TEST(Tensor, Slice) {
EXPECT_EQ
(
src_data_address
+
3
*
4
*
1
*
sizeof
(
int
),
slice_data_address
);
}
#ifdef __CUDACC__
{
Tensor
src_tensor
;
src_tensor
.
mutable_data
<
double
>
(
make_ddim
({
6
,
9
}),
GPUPlace
());
Tensor
slice_tensor
=
src_tensor
.
Slice
<
double
>
(
2
,
6
);
DDim
slice_dims
=
slice_tensor
.
dims
();
ASSERT_EQ
(
arity
(
slice_dims
),
2
);
EXPECT_EQ
(
slice_dims
[
0
],
4
);
EXPECT_EQ
(
slice_dims
[
1
],
9
);
#ifdef __CUDACC__
{
Tensor
src_tensor
;
src_tensor
.
mutable_data
<
double
>
(
make_ddim
({
6
,
9
}),
GPUPlace
());
Tensor
slice_tensor
=
src_tensor
.
Slice
<
double
>
(
2
,
6
);
DDim
slice_dims
=
slice_tensor
.
dims
();
ASSERT_EQ
(
arity
(
slice_dims
),
2
);
EXPECT_EQ
(
slice_dims
[
0
],
4
);
EXPECT_EQ
(
slice_dims
[
1
],
9
);
uintptr_t
src_data_address
=
reinterpret_cast
<
uintptr_t
>
(
src_tensor
.
data
<
double
>
());
uintptr_t
src_mutable_data_address
=
reinterpret_cast
<
uintptr_t
>
(
src_tensor
.
mutable_data
<
double
>
(
src_tensor
.
dims
(),
GPUPlace
()));
uintptr_t
slice_data_address
=
reinterpret_cast
<
uintptr_t
>
(
slice_tensor
.
data
<
double
>
());
uintptr_t
slice_mutable_data_address
=
reinterpret_cast
<
uintptr_t
>
(
slice_tensor
.
mutable_data
<
double
>
(
slice_tensor
.
dims
(),
GPUPlace
()));
EXPECT_EQ
(
src_data_address
,
src_mutable_data_address
);
EXPECT_EQ
(
slice_data_address
,
slice_mutable_data_address
);
EXPECT_EQ
(
src_data_address
+
9
*
2
*
sizeof
(
double
),
slice_data_address
);
}
#endif
uintptr_t
src_data_address
=
reinterpret_cast
<
uintptr_t
>
(
src_tensor
.
data
<
double
>
());
uintptr_t
src_mutable_data_address
=
reinterpret_cast
<
uintptr_t
>
(
src_tensor
.
mutable_data
<
double
>
(
src_tensor
.
dims
(),
GPUPlace
()));
uintptr_t
slice_data_address
=
reinterpret_cast
<
uintptr_t
>
(
slice_tensor
.
data
<
double
>
());
uintptr_t
slice_mutable_data_address
=
reinterpret_cast
<
uintptr_t
>
(
slice_tensor
.
mutable_data
<
double
>
(
slice_tensor
.
dims
(),
GPUPlace
()));
EXPECT_EQ
(
src_data_address
,
src_mutable_data_address
);
EXPECT_EQ
(
slice_data_address
,
slice_mutable_data_address
);
EXPECT_EQ
(
src_data_address
+
9
*
2
*
sizeof
(
double
),
slice_data_address
);
}
#endif
}
TEST
(
Tensor
,
CopyFrom
)
{
...
...
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