提交 f4cb25b4 编写于 作者: F frankwhzhang

fix youtube_dnn

上级 8407391f
......@@ -13,37 +13,42 @@
# limitations under the License.
train:
trainer:
# for cluster training
strategy: "async"
workspace: "paddlerec.models.recall.youtube_dnn"
epochs: 3
workspace: "paddlerec.models.recall.youtube_dnn"
device: cpu
dataset:
- name: dataset_train
batch_size: 5
type: DataLoader
#type: QueueDataset
data_path: "{workspace}/data/train"
data_converter: "{workspace}/random_reader.py"
hyper_parameters:
watch_vec_size: 64
search_vec_size: 64
other_feat_size: 64
output_size: 100
layers: [128, 64, 32]
optimizer:
class: adam
learning_rate: 0.001
strategy: async
reader:
batch_size: 2
class: "{workspace}/random_reader.py"
train_data_path: "{workspace}/data/train"
mode: train_runner
model:
models: "{workspace}/model.py"
hyper_parameters:
watch_vec_size: 64
search_vec_size: 64
other_feat_size: 64
output_size: 100
layers: [128, 64, 32]
learning_rate: 0.01
optimizer: sgd
runner:
- name: train_runner
class: single_train
device: cpu
epochs: 3
save_checkpoint_interval: 2
save_inference_interval: 4
save_checkpoint_path: "increment"
save_inference_path: "inference"
print_interval: 10
save:
increment:
dirname: "increment"
epoch_interval: 2
save_last: True
inference:
dirname: "inference"
epoch_interval: 4
save_last: True
phase:
- name: train
model: "{workspace}/model.py"
dataset_name: dataset_train
thread_num: 1
......@@ -13,39 +13,64 @@
# limitations under the License.
import math
import numpy as np
import paddle.fluid as fluid
from paddlerec.core.utils import envs
from paddlerec.core.model import Model as ModelBase
import numpy as np
class Model(ModelBase):
def __init__(self, config):
ModelBase.__init__(self, config)
def input_data(self, is_infer=False):
def _init_hyper_parameters(self):
self.watch_vec_size = envs.get_global_env(
"hyper_parameters.watch_vec_size")
self.search_vec_size = envs.get_global_env(
"hyper_parameters.search_vec_size")
self.other_feat_size = envs.get_global_env(
"hyper_parameters.other_feat_size")
self.output_size = envs.get_global_env("hyper_parameters.output_size")
self.layers = envs.get_global_env("hyper_parameters.layers")
watch_vec_size = envs.get_global_env("hyper_parameters.watch_vec_size",
None, self._namespace)
search_vec_size = envs.get_global_env(
"hyper_parameters.search_vec_size", None, self._namespace)
other_feat_size = envs.get_global_env(
"hyper_parameters.other_feat_size", None, self._namespace)
def input_data(self, is_infer=False, **kwargs):
watch_vec = fluid.data(
name="watch_vec", shape=[None, watch_vec_size], dtype="float32")
name="watch_vec",
shape=[None, self.watch_vec_size],
dtype="float32")
search_vec = fluid.data(
name="search_vec", shape=[None, search_vec_size], dtype="float32")
name="search_vec",
shape=[None, self.search_vec_size],
dtype="float32")
other_feat = fluid.data(
name="other_feat", shape=[None, other_feat_size], dtype="float32")
name="other_feat",
shape=[None, self.other_feat_size],
dtype="float32")
label = fluid.data(name="label", shape=[None, 1], dtype="int64")
inputs = [watch_vec] + [search_vec] + [other_feat] + [label]
self._data_var = inputs
return inputs
def fc(self, tag, data, out_dim, active='relu'):
def net(self, inputs, is_infer=False):
concat_feats = fluid.layers.concat(input=inputs[:-1], axis=-1)
l1 = self._fc('l1', concat_feats, self.layers[0], 'relu')
l2 = self._fc('l2', l1, self.layers[1], 'relu')
l3 = self._fc('l3', l2, self.layers[2], 'relu')
l4 = self._fc('l4', l3, self.output_size, 'softmax')
num_seqs = fluid.layers.create_tensor(dtype='int64')
acc = fluid.layers.accuracy(input=l4, label=inputs[-1], total=num_seqs)
cost = fluid.layers.cross_entropy(input=l4, label=inputs[-1])
avg_cost = fluid.layers.mean(cost)
self._cost = avg_cost
self._metrics["acc"] = acc
def _fc(self, tag, data, out_dim, active='relu'):
init_stddev = 1.0
scales = 1.0 / np.sqrt(data.shape[1])
......@@ -67,31 +92,3 @@ class Model(ModelBase):
bias_attr=b_attr,
name=tag)
return out
def net(self, inputs):
output_size = envs.get_global_env("hyper_parameters.output_size", None,
self._namespace)
layers = envs.get_global_env("hyper_parameters.layers", None,
self._namespace)
concat_feats = fluid.layers.concat(input=inputs[:-1], axis=-1)
l1 = self.fc('l1', concat_feats, layers[0], 'relu')
l2 = self.fc('l2', l1, layers[1], 'relu')
l3 = self.fc('l3', l2, layers[2], 'relu')
l4 = self.fc('l4', l3, output_size, 'softmax')
num_seqs = fluid.layers.create_tensor(dtype='int64')
acc = fluid.layers.accuracy(input=l4, label=inputs[-1], total=num_seqs)
cost = fluid.layers.cross_entropy(input=l4, label=inputs[-1])
avg_cost = fluid.layers.mean(cost)
self._cost = avg_cost
self._metrics["acc"] = acc
def train_net(self):
input_data = self.input_data()
self.net(input_data)
def infer_net(self):
pass
......@@ -13,22 +13,22 @@
# limitations under the License.
from __future__ import print_function
import numpy as np
from paddlerec.core.reader import Reader
from paddlerec.core.utils import envs
from collections import defaultdict
import numpy as np
class TrainReader(Reader):
def init(self):
self.watch_vec_size = envs.get_global_env(
"hyper_parameters.watch_vec_size", None, "train.model")
"hyper_parameters.watch_vec_size")
self.search_vec_size = envs.get_global_env(
"hyper_parameters.search_vec_size", None, "train.model")
"hyper_parameters.search_vec_size")
self.other_feat_size = envs.get_global_env(
"hyper_parameters.other_feat_size", None, "train.model")
self.output_size = envs.get_global_env("hyper_parameters.output_size",
None, "train.model")
"hyper_parameters.other_feat_size")
self.output_size = envs.get_global_env("hyper_parameters.output_size")
def generate_sample(self, line):
"""
......
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