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main.py
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83
main.py
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import tensorflow as tf
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from tensorflow import keras
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import tensorflow_datasets as tfds
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class DecodeConv(keras.layers.Layer):
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def __init__(self, out_filters, **kwargs):
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super().__init__(**kwargs)
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# Should be depthwise followed by batchnorm and relu.
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self.depthwise = keras.layers.DepthwiseConv2D(5)
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self.batch_norm = keras.layers.BatchNormalization()
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self.relu = keras.layers.ReLU(6.)
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self.pointwise = keras.layers.Conv2D(out_filters, 1)
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self.pointwise_bn = keras.layers.BatchNormalization()
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self.pointwise_rl = keras.layers.ReLU(6.)
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def call(self, inputs, **kwargs):
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inputs = self.depthwise(inputs, **kwargs)
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inputs = self.batch_norm(inputs, **kwargs)
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inputs = self.relu(inputs, **kwargs)
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inputs = self.pointwise(inputs, **kwargs)
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inputs = self.pointwise_bn(inputs, **kwargs)
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return self.pointwise_rl(inputs, **kwargs)
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class FastDepth(keras.Model):
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def get_config(self):
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# TODO: What to put here?
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pass
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def __init__(self, *args, **kwargs):
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super().__init__(*args, **kwargs)
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self.mobile_net = keras.applications.MobileNet(include_top=False)
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# TODO: Try keras.layers.SeparableConv2D as well, should do the same thing if relu is used as activation
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# It probably doesn't, since
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self.decode_conv1 = DecodeConv(512)
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self.decode_conv2 = DecodeConv(256)
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self.decode_conv3 = DecodeConv(128)
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self.decode_conv4 = DecodeConv(64)
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self.decode_conv5 = DecodeConv(32)
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self.final_pointwise = keras.layers.Conv2D(1, 1)
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self.final_pointwise_bn = keras.layers.BatchNormalization()
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self.final_pointwise_relu = keras.layers.ReLU()
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def call(self, inputs, is_training=False, **kwargs):
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# Go through mobilenet, then each decode layer, including skip connections using:
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# keras.layers.Add()
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inputs = self.mobile_net(inputs, is_training=is_training, **kwargs)
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# FastDepth Additive Decoder
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inputs = self.decode_conv1(inputs, is_training=is_training, **kwargs)
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inputs = self.decode_conv2(inputs, is_training=is_training, **kwargs)
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inputs = inputs + self.mobile_net.get_layer('conv_pw_5_relu').output
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inputs = self.decode_conv3(inputs, is_training=is_training, **kwargs)
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inputs = inputs + self.mobile_net.get_layer('conv_pw_3_relu').output
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inputs = self.decode_conv4(inputs, is_training=is_training, **kwargs)
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inputs = inputs + self.mobile_net.get_layer('conv_pw_1_relu').output
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inputs = self.decode_conv5(inputs, is_training=is_training, **kwargs)
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inputs = self.final_pointwise(inputs, is_training=is_training, **kwargs)
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inputs = self.final_pointwise_bn(inputs, is_training=is_training, **kwargs)
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return self.final_pointwise_relu(inputs, is_training=is_training, **kwargs)
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def load_nyu():
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builder = tfds.builder('nyu_depth_v2')
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builder.download_and_prepare(download_dir='../nyu')
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return builder.as_dataset(split='train', shuffle_files=True)
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def print_hi(name):
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# Use a breakpoint in the code line below to debug your script.
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print(f'Hi, {name}') # Press Ctrl+F8 to toggle the breakpoint.
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# Press the green button in the gutter to run the script.
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if __name__ == '__main__':
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load_nyu()
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# See PyCharm help at https://www.jetbrains.com/help/pycharm/
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