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b4c1d175
编写于
1月 26, 2017
作者:
H
Haonan
浏览文件
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差异文件
remove flip_layer
上级
55eb2fcf
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2
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2 changed file
with
1 addition
and
43 deletion
+1
-43
python/paddle/trainer_config_helpers/layers.py
python/paddle/trainer_config_helpers/layers.py
+0
-41
python/paddle/trainer_config_helpers/tests/layers_test_config.py
...paddle/trainer_config_helpers/tests/layers_test_config.py
+1
-2
未找到文件。
python/paddle/trainer_config_helpers/layers.py
浏览文件 @
b4c1d175
...
...
@@ -71,7 +71,6 @@ __all__ = [
'bilinear_interp_layer'
,
'trans_layer'
,
'rotate_layer'
,
'flip_layer'
,
'sum_to_one_norm_layer'
,
'get_output_layer'
,
'LayerType'
,
...
...
@@ -1720,46 +1719,6 @@ def rotate_layer(input, height, name=None, layer_attr=None):
size
=
l
.
config
.
size
)
@
wrap_name_default
()
@
layer_support
()
def
flip_layer
(
input
,
height
,
name
=
None
,
layer_attr
=
None
):
"""
A layer for flipping the matrix w.r.t the matrix center.
It's essentially rotating the matrix twice.
Used for input as image or map.
.. math::
y(i,j) = x(M-i-1, N-j-1)
where :math:`x` is (M x N) input, and :math:`y` is (M x N) output.
The example usage is:
.. code-block:: python
flip = flip_layer(input=layer,
height=100)
:param input: Input layer.
:type input: LayerOutput
:param height: The height of the sample matrix
:type height: int
:param name: Layer name.
:type name: basestring
:param layer_attr: extra layer attributes.
:type layer_attr: ExtraLayerAttribute.
:return: LayerOutput object.
:rtype: LayerOutput
"""
assert
isinstance
(
input
,
LayerOutput
)
return
rotate_layer
(
input
=
rotate_layer
(
input
=
input
,
height
=
height
),
height
=
height
,
name
=
name
,
layer_attr
=
layer_attr
)
@
wrap_name_default
()
@
layer_support
()
def
cos_sim
(
a
,
b
,
scale
=
1
,
size
=
1
,
name
=
None
,
layer_attr
=
None
):
...
...
python/paddle/trainer_config_helpers/tests/layers_test_config.py
浏览文件 @
b4c1d175
...
...
@@ -40,7 +40,6 @@ assert z1.size > 0
y2
=
fc_layer
(
input
=
y
,
size
=
15
)
z2
=
rotate_layer
(
input
=
y2
,
height
=
5
)
z3
=
flip_layer
(
input
=
y2
,
height
=
3
)
cos1
=
cos_sim
(
a
=
x1
,
b
=
y1
)
cos3
=
cos_sim
(
a
=
x1
,
b
=
y2
,
size
=
3
)
...
...
@@ -48,7 +47,7 @@ cos3 = cos_sim(a=x1, b=y2, size=3)
linear_comb
=
linear_comb_layer
(
weights
=
x1
,
vectors
=
y2
,
size
=
3
)
out
=
fc_layer
(
input
=
[
cos1
,
cos3
,
linear_comb
,
z
,
z1
,
z2
,
z3
],
input
=
[
cos1
,
cos3
,
linear_comb
,
z
,
z1
,
z2
],
size
=
num_classes
,
act
=
SoftmaxActivation
())
...
...
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