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1fd95f6f
编写于
5月 15, 2017
作者:
H
helinwang
提交者:
GitHub
5月 15, 2017
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Merge pull request
#1286
from zchen0211/light_mnist
light version of cnn for MNIST
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demo/mnist/light_mnist.py
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# Copyright (c) 2016 PaddlePaddle Authors. All Rights Reserved
#
# Licensed under the Apache License, Version 2.0 (the "License");
# you may not use this file except in compliance with the License.
# You may obtain a copy of the License at
#
# http://www.apache.org/licenses/LICENSE-2.0
#
# Unless required by applicable law or agreed to in writing, software
# distributed under the License is distributed on an "AS IS" BASIS,
# WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
# See the License for the specific language governing permissions and
# limitations under the License.
from
paddle.trainer_config_helpers
import
*
is_predict
=
get_config_arg
(
"is_predict"
,
bool
,
False
)
####################Data Configuration ##################
if
not
is_predict
:
data_dir
=
'./data/'
define_py_data_sources2
(
train_list
=
data_dir
+
'train.list'
,
test_list
=
data_dir
+
'test.list'
,
module
=
'mnist_provider'
,
obj
=
'process'
)
######################Algorithm Configuration #############
settings
(
batch_size
=
50
,
learning_rate
=
0.001
,
learning_method
=
AdamOptimizer
())
#######################Network Configuration #############
data_size
=
1
*
28
*
28
label_size
=
10
img
=
data_layer
(
name
=
'pixel'
,
size
=
data_size
)
# light cnn
# A shallower cnn model: [CNN, BN, ReLU, Max-Pooling] x4 + FC x1
# Easier to train for mnist dataset and quite efficient
# Final performance is close to deeper ones on tasks such as digital and character classification
def
light_cnn
(
input_image
,
num_channels
,
num_classes
):
def
__light__
(
ipt
,
num_filter
=
128
,
times
=
1
,
conv_filter_size
=
3
,
dropouts
=
0
,
num_channels_
=
None
):
return
img_conv_group
(
input
=
ipt
,
num_channels
=
num_channels_
,
pool_size
=
2
,
pool_stride
=
2
,
conv_padding
=
0
,
conv_num_filter
=
[
num_filter
]
*
times
,
conv_filter_size
=
conv_filter_size
,
conv_act
=
ReluActivation
(),
conv_with_batchnorm
=
True
,
conv_batchnorm_drop_rate
=
dropouts
,
pool_type
=
MaxPooling
())
tmp
=
__light__
(
input_image
,
num_filter
=
128
,
num_channels_
=
num_channels
)
tmp
=
__light__
(
tmp
,
num_filter
=
128
)
tmp
=
__light__
(
tmp
,
num_filter
=
128
)
tmp
=
__light__
(
tmp
,
num_filter
=
128
,
conv_filter_size
=
1
)
tmp
=
fc_layer
(
input
=
tmp
,
size
=
num_classes
,
act
=
SoftmaxActivation
())
return
tmp
predict
=
light_cnn
(
input_image
=
img
,
num_channels
=
1
,
num_classes
=
label_size
)
if
not
is_predict
:
lbl
=
data_layer
(
name
=
"label"
,
size
=
label_size
)
inputs
(
img
,
lbl
)
outputs
(
classification_cost
(
input
=
predict
,
label
=
lbl
))
else
:
outputs
(
predict
)
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