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c42d662e
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c42d662e
编写于
7月 13, 2020
作者:
Y
yaoxuefeng
提交者:
GitHub
7月 13, 2020
浏览文件
操作
浏览文件
下载
电子邮件补丁
差异文件
modify roll test=develop (#25321)
上级
bdc2c2db
变更
4
显示空白变更内容
内联
并排
Showing
4 changed file
with
70 addition
and
47 deletion
+70
-47
paddle/fluid/operators/roll_op.cc
paddle/fluid/operators/roll_op.cc
+2
-2
paddle/fluid/operators/roll_op.h
paddle/fluid/operators/roll_op.h
+4
-4
python/paddle/fluid/tests/unittests/test_roll_op.py
python/paddle/fluid/tests/unittests/test_roll_op.py
+20
-6
python/paddle/tensor/manipulation.py
python/paddle/tensor/manipulation.py
+44
-35
未找到文件。
paddle/fluid/operators/roll_op.cc
浏览文件 @
c42d662e
...
@@ -33,7 +33,7 @@ class RollOp : public framework::OperatorWithKernel {
...
@@ -33,7 +33,7 @@ class RollOp : public framework::OperatorWithKernel {
platform
::
errors
::
InvalidArgument
(
platform
::
errors
::
InvalidArgument
(
"Output(Out) of RollOp should not be null."
));
"Output(Out) of RollOp should not be null."
));
auto
dims
=
ctx
->
Attrs
().
Get
<
std
::
vector
<
int64_t
>>
(
"
dim
s"
);
auto
dims
=
ctx
->
Attrs
().
Get
<
std
::
vector
<
int64_t
>>
(
"
axi
s"
);
auto
shifts
=
ctx
->
Attrs
().
Get
<
std
::
vector
<
int64_t
>>
(
"shifts"
);
auto
shifts
=
ctx
->
Attrs
().
Get
<
std
::
vector
<
int64_t
>>
(
"shifts"
);
PADDLE_ENFORCE_EQ
(
dims
.
size
(),
shifts
.
size
(),
PADDLE_ENFORCE_EQ
(
dims
.
size
(),
shifts
.
size
(),
...
@@ -92,7 +92,7 @@ class RollOpMaker : public framework::OpProtoAndCheckerMaker {
...
@@ -92,7 +92,7 @@ class RollOpMaker : public framework::OpProtoAndCheckerMaker {
"of the tensor are shifted."
)
"of the tensor are shifted."
)
.
SetDefault
({});
.
SetDefault
({});
AddAttr
<
std
::
vector
<
int64_t
>>
(
AddAttr
<
std
::
vector
<
int64_t
>>
(
"
dim
s"
,
"
axi
s"
,
"Axis along which to roll. It must have the same size "
"Axis along which to roll. It must have the same size "
"with shifts."
)
"with shifts."
)
.
SetDefault
({});
.
SetDefault
({});
...
...
paddle/fluid/operators/roll_op.h
浏览文件 @
c42d662e
...
@@ -82,7 +82,7 @@ class RollKernel : public framework::OpKernel<T> {
...
@@ -82,7 +82,7 @@ class RollKernel : public framework::OpKernel<T> {
auto
&
input
=
input_var
->
Get
<
LoDTensor
>
();
auto
&
input
=
input_var
->
Get
<
LoDTensor
>
();
auto
*
output
=
output_var
->
GetMutable
<
LoDTensor
>
();
auto
*
output
=
output_var
->
GetMutable
<
LoDTensor
>
();
std
::
vector
<
int64_t
>
shifts
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"shifts"
);
std
::
vector
<
int64_t
>
shifts
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"shifts"
);
std
::
vector
<
int64_t
>
dims
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"
dim
s"
);
std
::
vector
<
int64_t
>
dims
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"
axi
s"
);
std
::
vector
<
T
>
out_vec
;
std
::
vector
<
T
>
out_vec
;
TensorToVector
(
input
,
context
.
device_context
(),
&
out_vec
);
TensorToVector
(
input
,
context
.
device_context
(),
&
out_vec
);
...
@@ -94,8 +94,8 @@ class RollKernel : public framework::OpKernel<T> {
...
@@ -94,8 +94,8 @@ class RollKernel : public framework::OpKernel<T> {
PADDLE_ENFORCE_EQ
(
PADDLE_ENFORCE_EQ
(
dims
[
i
]
<
input_dim
.
size
()
&&
dims
[
i
]
>=
(
0
-
input_dim
.
size
()),
true
,
dims
[
i
]
<
input_dim
.
size
()
&&
dims
[
i
]
>=
(
0
-
input_dim
.
size
()),
true
,
platform
::
errors
::
OutOfRange
(
platform
::
errors
::
OutOfRange
(
"Attr(
dim
s[%d]) is out of range, It's expected "
"Attr(
axi
s[%d]) is out of range, It's expected "
"to be in range of [-%d, %d]. But received Attr(
dim
s[%d]) = %d."
,
"to be in range of [-%d, %d]. But received Attr(
axi
s[%d]) = %d."
,
i
,
input_dim
.
size
(),
input_dim
.
size
()
-
1
,
i
,
dims
[
i
]));
i
,
input_dim
.
size
(),
input_dim
.
size
()
-
1
,
i
,
dims
[
i
]));
shift_along_dim
(
out_vec
.
data
(),
input_dim
,
dims
[
i
],
shifts
[
i
]);
shift_along_dim
(
out_vec
.
data
(),
input_dim
,
dims
[
i
],
shifts
[
i
]);
}
}
...
@@ -114,7 +114,7 @@ class RollGradKernel : public framework::OpKernel<T> {
...
@@ -114,7 +114,7 @@ class RollGradKernel : public framework::OpKernel<T> {
auto
&
input
=
input_var
->
Get
<
LoDTensor
>
();
auto
&
input
=
input_var
->
Get
<
LoDTensor
>
();
auto
*
output
=
output_var
->
GetMutable
<
LoDTensor
>
();
auto
*
output
=
output_var
->
GetMutable
<
LoDTensor
>
();
std
::
vector
<
int64_t
>
shifts
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"shifts"
);
std
::
vector
<
int64_t
>
shifts
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"shifts"
);
std
::
vector
<
int64_t
>
dims
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"
dim
s"
);
std
::
vector
<
int64_t
>
dims
=
context
.
Attr
<
std
::
vector
<
int64_t
>>
(
"
axi
s"
);
std
::
vector
<
T
>
out_vec
;
std
::
vector
<
T
>
out_vec
;
TensorToVector
(
input
,
context
.
device_context
(),
&
out_vec
);
TensorToVector
(
input
,
context
.
device_context
(),
&
out_vec
);
...
...
python/paddle/fluid/tests/unittests/test_roll_op.py
浏览文件 @
c42d662e
...
@@ -28,17 +28,17 @@ class TestRollOp(OpTest):
...
@@ -28,17 +28,17 @@ class TestRollOp(OpTest):
self
.
op_type
=
"roll"
self
.
op_type
=
"roll"
self
.
init_dtype_type
()
self
.
init_dtype_type
()
self
.
inputs
=
{
'X'
:
np
.
random
.
random
(
self
.
x_shape
).
astype
(
self
.
dtype
)}
self
.
inputs
=
{
'X'
:
np
.
random
.
random
(
self
.
x_shape
).
astype
(
self
.
dtype
)}
self
.
attrs
=
{
'shifts'
:
self
.
shifts
,
'
dims'
:
self
.
dim
s
}
self
.
attrs
=
{
'shifts'
:
self
.
shifts
,
'
axis'
:
self
.
axi
s
}
self
.
outputs
=
{
self
.
outputs
=
{
'Out'
:
np
.
roll
(
self
.
inputs
[
'X'
],
self
.
attrs
[
'shifts'
],
'Out'
:
np
.
roll
(
self
.
inputs
[
'X'
],
self
.
attrs
[
'shifts'
],
self
.
attrs
[
'
dim
s'
])
self
.
attrs
[
'
axi
s'
])
}
}
def
init_dtype_type
(
self
):
def
init_dtype_type
(
self
):
self
.
dtype
=
np
.
float64
self
.
dtype
=
np
.
float64
self
.
x_shape
=
(
100
,
4
,
5
)
self
.
x_shape
=
(
100
,
4
,
5
)
self
.
shifts
=
[
101
,
-
1
]
self
.
shifts
=
[
101
,
-
1
]
self
.
dim
s
=
[
0
,
-
2
]
self
.
axi
s
=
[
0
,
-
2
]
def
test_check_output
(
self
):
def
test_check_output
(
self
):
self
.
check_output
()
self
.
check_output
()
...
@@ -52,7 +52,7 @@ class TestRollOpCase2(TestRollOp):
...
@@ -52,7 +52,7 @@ class TestRollOpCase2(TestRollOp):
self
.
dtype
=
np
.
float32
self
.
dtype
=
np
.
float32
self
.
x_shape
=
(
100
,
10
,
5
)
self
.
x_shape
=
(
100
,
10
,
5
)
self
.
shifts
=
[
8
,
-
1
]
self
.
shifts
=
[
8
,
-
1
]
self
.
dim
s
=
[
-
1
,
-
2
]
self
.
axi
s
=
[
-
1
,
-
2
]
class
TestRollAPI
(
unittest
.
TestCase
):
class
TestRollAPI
(
unittest
.
TestCase
):
...
@@ -78,7 +78,7 @@ class TestRollAPI(unittest.TestCase):
...
@@ -78,7 +78,7 @@ class TestRollAPI(unittest.TestCase):
# case 2:
# case 2:
with
program_guard
(
Program
(),
Program
()):
with
program_guard
(
Program
(),
Program
()):
x
=
fluid
.
layers
.
data
(
name
=
'x'
,
shape
=
[
-
1
,
3
])
x
=
fluid
.
layers
.
data
(
name
=
'x'
,
shape
=
[
-
1
,
3
])
z
=
paddle
.
roll
(
x
,
shifts
=
1
,
dim
s
=
0
)
z
=
paddle
.
roll
(
x
,
shifts
=
1
,
axi
s
=
0
)
exe
=
fluid
.
Executor
(
fluid
.
CPUPlace
())
exe
=
fluid
.
Executor
(
fluid
.
CPUPlace
())
res
,
=
exe
.
run
(
feed
=
{
'x'
:
self
.
data_x
},
res
,
=
exe
.
run
(
feed
=
{
'x'
:
self
.
data_x
},
fetch_list
=
[
z
.
name
],
fetch_list
=
[
z
.
name
],
...
@@ -101,12 +101,26 @@ class TestRollAPI(unittest.TestCase):
...
@@ -101,12 +101,26 @@ class TestRollAPI(unittest.TestCase):
# case 2:
# case 2:
with
fluid
.
dygraph
.
guard
():
with
fluid
.
dygraph
.
guard
():
x
=
fluid
.
dygraph
.
to_variable
(
self
.
data_x
)
x
=
fluid
.
dygraph
.
to_variable
(
self
.
data_x
)
z
=
paddle
.
roll
(
x
,
shifts
=
1
,
dim
s
=
0
)
z
=
paddle
.
roll
(
x
,
shifts
=
1
,
axi
s
=
0
)
np_z
=
z
.
numpy
()
np_z
=
z
.
numpy
()
expect_out
=
np
.
array
([[
7.0
,
8.0
,
9.0
],
[
1.0
,
2.0
,
3.0
],
expect_out
=
np
.
array
([[
7.0
,
8.0
,
9.0
],
[
1.0
,
2.0
,
3.0
],
[
4.0
,
5.0
,
6.0
]])
[
4.0
,
5.0
,
6.0
]])
self
.
assertTrue
(
np
.
allclose
(
expect_out
,
np_z
))
self
.
assertTrue
(
np
.
allclose
(
expect_out
,
np_z
))
def
test_roll_op_false
(
self
):
self
.
input_data
()
def
test_axis_out_range
():
with
program_guard
(
Program
(),
Program
()):
x
=
fluid
.
layers
.
data
(
name
=
'x'
,
shape
=
[
-
1
,
3
])
z
=
paddle
.
roll
(
x
,
shifts
=
1
,
axis
=
10
)
exe
=
fluid
.
Executor
(
fluid
.
CPUPlace
())
res
,
=
exe
.
run
(
feed
=
{
'x'
:
self
.
data_x
},
fetch_list
=
[
z
.
name
],
return_numpy
=
False
)
self
.
assertRaises
(
ValueError
,
test_axis_out_range
)
if
__name__
==
"__main__"
:
if
__name__
==
"__main__"
:
unittest
.
main
()
unittest
.
main
()
python/paddle/tensor/manipulation.py
浏览文件 @
c42d662e
...
@@ -104,23 +104,24 @@ def flip(input, dims, name=None):
...
@@ -104,23 +104,24 @@ def flip(input, dims, name=None):
return
out
return
out
def
roll
(
input
,
shifts
,
dims
=
None
):
def
roll
(
x
,
shifts
,
axis
=
None
,
name
=
None
):
"""
"""
:alias_main: paddle.roll
:alias_main: paddle.roll
:alias: paddle.roll,paddle.tensor.roll,paddle.tensor.manipulation.roll
:alias: paddle.roll,paddle.tensor.roll,paddle.tensor.manipulation.roll
Roll the `input` tensor along the given dimension(s). Elements that are shifted beyond
Roll the `x` tensor along the given axis(axes). With specific 'shifts', Elements that
the last position are re-introduced at the first position. If a dimension is not specified,
roll beyond the last position are re-introduced at the first according to 'shifts'.
If a axis is not specified,
the tensor will be flattened before rolling and then restored to the original shape.
the tensor will be flattened before rolling and then restored to the original shape.
Args:
Args:
input (Variable): The input tensor variable
.
x (Variable): The x tensor variable as input
.
shifts (int|list|tuple): The number of places by which the elements
shifts (int|list|tuple): The number of places by which the elements
of the `
input
` tensor are shifted.
of the `
x
` tensor are shifted.
dims (int|list|tuple|None): Dimentions
along which to roll.
axis (int|list|tuple|None): axis(axes)
along which to roll.
Returns:
Returns:
Variable: A Tensor with same data type as `
input
`.
Variable: A Tensor with same data type as `
x
`.
Examples:
Examples:
.. code-block:: python
.. code-block:: python
...
@@ -131,48 +132,56 @@ def roll(input, shifts, dims=None):
...
@@ -131,48 +132,56 @@ def roll(input, shifts, dims=None):
data = np.array([[1.0, 2.0, 3.0],
data = np.array([[1.0, 2.0, 3.0],
[4.0, 5.0, 6.0],
[4.0, 5.0, 6.0],
[7.0, 8.0, 9.0]])
[7.0, 8.0, 9.0]])
with fluid.dygraph.guard():
paddle.enable_imperative()
x = fluid.dygraph
.to_variable(data)
x = paddle.imperative
.to_variable(data)
out_z1 = paddle.roll(x, shifts=1)
out_z1 = paddle.roll(x, shifts=1)
print(out_z1.numpy())
print(out_z1.numpy())
#[[9. 1. 2.]
#[[9. 1. 2.]
# [3. 4. 5.]
# [3. 4. 5.]
# [6. 7. 8.]]
# [6. 7. 8.]]
out_z2 = paddle.roll(x, shifts=1, dim
s=0)
out_z2 = paddle.roll(x, shifts=1, axi
s=0)
print(out_z2.numpy())
print(out_z2.numpy())
#[[7. 8. 9.]
#[[7. 8. 9.]
# [1. 2. 3.]
# [1. 2. 3.]
# [4. 5. 6.]]
# [4. 5. 6.]]
"""
"""
helper
=
LayerHelper
(
"roll"
,
**
locals
())
helper
=
LayerHelper
(
"roll"
,
**
locals
())
origin_shape
=
input
.
shape
origin_shape
=
x
.
shape
if
type
(
shifts
)
==
int
:
if
type
(
shifts
)
==
int
:
shifts
=
[
shifts
]
shifts
=
[
shifts
]
if
type
(
dims
)
==
int
:
if
type
(
axis
)
==
int
:
dims
=
[
dims
]
axis
=
[
axis
]
if
dims
:
len_origin_shape
=
len
(
origin_shape
)
check_type
(
dims
,
'dims'
,
(
list
,
tuple
),
'roll'
)
if
axis
:
for
i
in
range
(
len
(
axis
)):
if
axis
[
i
]
>=
len_origin_shape
or
axis
[
i
]
<
-
len_origin_shape
:
raise
ValueError
(
"axis is out of range, it should be in range [{}, {}), but received {}"
.
format
(
-
len_origin_shape
,
len_origin_shape
,
axis
))
if
axis
:
check_type
(
axis
,
'axis'
,
(
list
,
tuple
),
'roll'
)
check_type
(
shifts
,
'shifts'
,
(
list
,
tuple
),
'roll'
)
check_type
(
shifts
,
'shifts'
,
(
list
,
tuple
),
'roll'
)
if
in_dygraph_mode
():
if
in_dygraph_mode
():
if
dim
s
is
None
:
if
axi
s
is
None
:
input
=
core
.
ops
.
reshape
(
input
,
'shape'
,
[
-
1
,
1
])
x
=
core
.
ops
.
reshape
(
x
,
'shape'
,
[
-
1
,
1
])
dim
s
=
[
0
]
axi
s
=
[
0
]
out
=
core
.
ops
.
roll
(
input
,
'dims'
,
dim
s
,
'shifts'
,
shifts
)
out
=
core
.
ops
.
roll
(
x
,
'axis'
,
axi
s
,
'shifts'
,
shifts
)
return
core
.
ops
.
reshape
(
out
,
'shape'
,
origin_shape
)
return
core
.
ops
.
reshape
(
out
,
'shape'
,
origin_shape
)
out
=
helper
.
create_variable_for_type_inference
(
input
.
dtype
)
out
=
helper
.
create_variable_for_type_inference
(
x
.
dtype
)
if
dim
s
is
None
:
if
axi
s
is
None
:
input
=
reshape
(
input
,
shape
=
[
-
1
,
1
])
x
=
reshape
(
x
,
shape
=
[
-
1
,
1
])
dim
s
=
[
0
]
axi
s
=
[
0
]
helper
.
append_op
(
helper
.
append_op
(
type
=
'roll'
,
type
=
'roll'
,
inputs
=
{
'X'
:
input
},
inputs
=
{
'X'
:
x
},
outputs
=
{
'Out'
:
out
},
outputs
=
{
'Out'
:
out
},
attrs
=
{
'
dims'
:
dim
s
,
attrs
=
{
'
axis'
:
axi
s
,
'shifts'
:
shifts
})
'shifts'
:
shifts
})
out
=
reshape
(
out
,
shape
=
origin_shape
,
inplace
=
True
)
out
=
reshape
(
out
,
shape
=
origin_shape
,
inplace
=
True
)
return
out
return
out
...
...
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