Files renamed, orderd plus ordered prepare_data file
This commit is contained in:
parent
f033638ee9
commit
ac8f0057c5
2
.gitignore
vendored
2
.gitignore
vendored
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@ -90,4 +90,4 @@ ENV/
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# Custom
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# Custom
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data/
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data/
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character_based_ffnn/internal_representations/inputs/
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cnn/internal_representations/inputs/
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7
.idea/dictionaries/luka.xml
Normal file
7
.idea/dictionaries/luka.xml
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@ -0,0 +1,7 @@
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<component name="ProjectDictionaryState">
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<dictionary name="luka">
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<words>
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<w>overfitting</w>
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</words>
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</dictionary>
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</component>
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@ -2,8 +2,20 @@
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<project version="4">
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<project version="4">
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<component name="ChangeListManager">
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<component name="ChangeListManager">
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<list default="true" id="8a8ba9af-e1a4-433a-9968-475192610776" name="Default" comment="">
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<list default="true" id="8a8ba9af-e1a4-433a-9968-475192610776" name="Default" comment="">
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<change type="MODIFICATION" beforePath="$PROJECT_DIR$/character_based_ffnn/character_based_ffnn_theano.ipynb" afterPath="$PROJECT_DIR$/character_based_ffnn/character_based_ffnn_theano.ipynb" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/character_based_ffnn.ipynb" afterPath="" />
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<change type="MODIFICATION" beforePath="$PROJECT_DIR$/character_based_ffnn/word_accetuation/character_based_ffnn_keras.ipynb" afterPath="$PROJECT_DIR$/character_based_ffnn/word_accetuation/character_based_ffnn_keras.ipynb" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/character_based_ffnn_keras.ipynb" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/character_based_ffnn_theano.ipynb" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/cnn_per_vowel_3epoch.h5" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/create_and_save_inputs.py" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/internal_representations/models/cnn_i2_s_c43-3relu_d20_c43-3relu_mp2_f_516relu_d20_121sigmoid_mse_adam_a65.h5" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/internal_representations/models/cnn_i2_s_c43-3relu_d20_c43-3relu_mp2_f_516relu_d20_121sigmoid_mse_adam_a65_10epoch.h5" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/internal_representations/models/cnn_i2_s_c43-3relu_d20_c43-3relu_mp2_f_516relu_d20_121sigmoid_mse_adam_a65_5epoch.h5" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/internal_representations/models/ffnn_i1_s500relu_121sigmoid_mse_adam_a65.h5" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/internal_representations/models/ffnn_i1_s500relu_d20_121sigmoid_mse_adam_a65.h5" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/test.txt" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/word_accetuation/character_based_ffnn_keras.ipynb" afterPath="" />
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<change type="DELETED" beforePath="$PROJECT_DIR$/character_based_ffnn/word_accetuation/cnn_i2_s_c43-3relu_d20_c43-3relu_mp2_f_516relu_d20_121sigmoid_mse_adam_a65_10epoch_no_overfitting.h5" afterPath="" />
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<change type="MODIFICATION" beforePath="$PROJECT_DIR$/.idea/workspace.xml" afterPath="$PROJECT_DIR$/.idea/workspace.xml" />
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<change type="MODIFICATION" beforePath="$PROJECT_DIR$/prepare_data.py" afterPath="$PROJECT_DIR$/prepare_data.py" />
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<change type="MODIFICATION" beforePath="$PROJECT_DIR$/prepare_data.py" afterPath="$PROJECT_DIR$/prepare_data.py" />
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</list>
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</list>
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<option name="EXCLUDED_CONVERTED_TO_IGNORED" value="true" />
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<option name="EXCLUDED_CONVERTED_TO_IGNORED" value="true" />
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@ -34,8 +46,8 @@
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<file leaf-file-name="prepare_data.py" pinned="false" current-in-tab="true">
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<file leaf-file-name="prepare_data.py" pinned="false" current-in-tab="true">
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<entry file="file://$PROJECT_DIR$/prepare_data.py">
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<entry file="file://$PROJECT_DIR$/prepare_data.py">
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<provider selected="true" editor-type-id="text-editor">
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<provider selected="true" editor-type-id="text-editor">
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<state relative-caret-position="630">
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<state relative-caret-position="410">
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<caret line="80" column="13" lean-forward="false" selection-start-line="80" selection-start-column="13" selection-end-line="80" selection-end-column="13" />
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<caret line="545" column="14" lean-forward="true" selection-start-line="545" selection-start-column="14" selection-end-line="545" selection-end-column="14" />
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<folding>
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<folding>
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<element signature="e#24#63#0" expanded="true" />
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<element signature="e#24#63#0" expanded="true" />
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</folding>
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</folding>
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@ -174,8 +186,6 @@
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<foldersAlwaysOnTop value="true" />
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<foldersAlwaysOnTop value="true" />
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</navigator>
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</navigator>
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<panes>
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<panes>
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<pane id="Scratches" />
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<pane id="Scope" />
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<pane id="ProjectPane">
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<pane id="ProjectPane">
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<subPane>
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<subPane>
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<PATH>
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<PATH>
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@ -188,40 +198,10 @@
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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</PATH_ELEMENT>
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</PATH_ELEMENT>
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</PATH>
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</PATH>
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<PATH>
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<PATH_ELEMENT>
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<option name="myItemId" value="accetuation" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.ProjectViewProjectNode" />
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</PATH_ELEMENT>
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<PATH_ELEMENT>
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<option name="myItemId" value="accetuation" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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</PATH_ELEMENT>
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<PATH_ELEMENT>
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<option name="myItemId" value="character_based_ffnn" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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</PATH_ELEMENT>
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</PATH>
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<PATH>
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<PATH_ELEMENT>
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<option name="myItemId" value="accetuation" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.ProjectViewProjectNode" />
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</PATH_ELEMENT>
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<PATH_ELEMENT>
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<option name="myItemId" value="accetuation" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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</PATH_ELEMENT>
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<PATH_ELEMENT>
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<option name="myItemId" value="character_based_ffnn" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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</PATH_ELEMENT>
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<PATH_ELEMENT>
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<option name="myItemId" value="internal_representations" />
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<option name="myItemType" value="com.intellij.ide.projectView.impl.nodes.PsiDirectoryNode" />
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</PATH_ELEMENT>
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</PATH>
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</subPane>
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</subPane>
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</pane>
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</pane>
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<pane id="Scratches" />
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<pane id="Scope" />
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</panes>
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</panes>
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</component>
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</component>
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<component name="PropertiesComponent">
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<component name="PropertiesComponent">
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@ -1010,8 +990,8 @@
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</entry>
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</entry>
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<entry file="file://$PROJECT_DIR$/prepare_data.py">
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<entry file="file://$PROJECT_DIR$/prepare_data.py">
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<provider selected="true" editor-type-id="text-editor">
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<provider selected="true" editor-type-id="text-editor">
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||||||
<state relative-caret-position="630">
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<state relative-caret-position="410">
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||||||
<caret line="80" column="13" lean-forward="false" selection-start-line="80" selection-start-column="13" selection-end-line="80" selection-end-column="13" />
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<caret line="545" column="14" lean-forward="true" selection-start-line="545" selection-start-column="14" selection-end-line="545" selection-end-column="14" />
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<folding>
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<folding>
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||||||
<element signature="e#24#63#0" expanded="true" />
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<element signature="e#24#63#0" expanded="true" />
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</folding>
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</folding>
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150
prepare_data.py
150
prepare_data.py
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@ -6,8 +6,8 @@ import numpy as np
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import h5py
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import h5py
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import gc
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import gc
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import math
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import math
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import copy
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# functions for saving, loading and shuffling whole arrays to ram
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def save_inputs(file_name, X, y):
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def save_inputs(file_name, X, y):
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h5f = h5py.File(file_name, 'w')
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h5f = h5py.File(file_name, 'w')
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adict = dict(X=X, y=y)
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adict = dict(X=X, y=y)
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@ -15,6 +15,27 @@ def save_inputs(file_name, X, y):
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h5f.create_dataset(k,data=v)
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h5f.create_dataset(k,data=v)
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h5f.close()
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h5f.close()
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def load_inputs(file_name):
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h5f = h5py.File(file_name,'r')
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X = h5f['X'][:]
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y = h5f['y'][:]
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h5f.close()
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return X, y
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def shuffle_inputs(X, y, X_pure=False):
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s = np.arange(X.shape[0])
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np.random.shuffle(s)
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X = X[s]
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y = y[s]
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if X_pure:
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X_pure = X_pure[s]
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return X, y, X_pure
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else:
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return X, y
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# functions for saving and loading partial arrays to ram
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def create_and_save_inputs(file_name, part, X, y, X_pure):
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def create_and_save_inputs(file_name, part, X, y, X_pure):
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# X, y, X_pure = generate_full_vowel_matrix_inputs()
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# X, y, X_pure = generate_full_vowel_matrix_inputs()
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h5f = h5py.File(file_name + part + '.h5', 'w')
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h5f = h5py.File(file_name + part + '.h5', 'w')
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@ -23,6 +44,17 @@ def create_and_save_inputs(file_name, part, X, y, X_pure):
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h5f.create_dataset(k,data=v)
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h5f.create_dataset(k,data=v)
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h5f.close()
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h5f.close()
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def load_extended_inputs(file_name, obtain_range):
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h5f = h5py.File(file_name,'r')
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X = h5f['X'][obtain_range[0]:obtain_range[1]]
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y = h5f['y'][obtain_range[0]:obtain_range[1]]
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X_pure = h5f['X_pure'][obtain_range[0]:obtain_range[1]]
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h5f.close()
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return X, y, X_pure
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# functions for creating and loading shuffle vector
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def create_and_save_shuffle_vector(file_name, shuffle_vector):
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def create_and_save_shuffle_vector(file_name, shuffle_vector):
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# X, y, X_pure = generate_full_vowel_matrix_inputs()
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# X, y, X_pure = generate_full_vowel_matrix_inputs()
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h5f = h5py.File(file_name + '_shuffle_vector.h5', 'w')
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h5f = h5py.File(file_name + '_shuffle_vector.h5', 'w')
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@ -38,23 +70,8 @@ def load_shuffle_vector(file_name):
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h5f.close()
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h5f.close()
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return shuffle_vector
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return shuffle_vector
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def load_inputs(file_name):
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h5f = h5py.File(file_name,'r')
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X = h5f['X'][:]
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y = h5f['y'][:]
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h5f.close()
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return X, y
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def load_extended_inputs(file_name, obtain_range):
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h5f = h5py.File(file_name,'r')
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X = h5f['X'][obtain_range[0]:obtain_range[1]]
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y = h5f['y'][obtain_range[0]:obtain_range[1]]
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X_pure = h5f['X_pure'][obtain_range[0]:obtain_range[1]]
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h5f.close()
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return X, y, X_pure
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# functions for saving and loading model - ONLY WHERE KERAS IS NOT NEEDED
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def save_model(model, file_name):
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def save_model(model, file_name):
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h5f = h5py.File(file_name, 'w')
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h5f = h5py.File(file_name, 'w')
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adict = dict(W1=model['W1'], b1=model['b1'], W2=model['W2'], b2=model['b2'])
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adict = dict(W1=model['W1'], b1=model['b1'], W2=model['W2'], b2=model['b2'])
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@ -63,6 +80,7 @@ def save_model(model, file_name):
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h5f.close()
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h5f.close()
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def load_model(file_name):
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def load_model(file_name):
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h5f = h5py.File(file_name,'r')
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h5f = h5py.File(file_name,'r')
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model = {}
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model = {}
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h5f.close()
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h5f.close()
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return model
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return model
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# functions for creating X and y from content
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def read_content():
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def read_content():
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print('READING CONTENT...')
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print('READING CONTENT...')
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with open('../../data/SlovarIJS_BESEDE_utf8.lex') as f:
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with open('../../data/SlovarIJS_BESEDE_utf8.lex') as f:
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@ -88,15 +107,15 @@ def is_vowel(word_list, position, vowels):
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return True
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return True
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return False
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return False
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def is_accetuated_vowel(word_list, position, accetuated_vowels):
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def is_accetuated_vowel(word_list, position, accetuated_vowels):
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if word_list[position] in accetuated_vowels:
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if word_list[position] in accetuated_vowels:
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return True
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return True
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return False
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return False
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def create_dict():
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def create_dict():
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content = read_content()
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content = read_content()
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print('CREATING DICTIONARY...')
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print('CREATING DICTIONARY...')
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# CREATE dictionary AND max_word
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# CREATE dictionary AND max_word
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@ -151,16 +170,6 @@ def generate_presentable_y(accetuations_list, word_list, max_num_vowels):
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final_position = accetuations_list[0] + max_num_vowels * accetuations_list[1]
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final_position = accetuations_list[0] + max_num_vowels * accetuations_list[1]
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return final_position
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return final_position
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def shuffle_inputs(X, y, X_pure=False):
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s = np.arange(X.shape[0])
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np.random.shuffle(s)
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X = X[s]
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y = y[s]
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if X_pure:
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X_pure = X_pure[s]
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return X, y, X_pure
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else:
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return X, y
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# def generate_inputs():
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# def generate_inputs():
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# dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels = create_dict()
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# dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels = create_dict()
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@ -262,29 +271,21 @@ def generate_full_matrix_inputs():
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return X_train, y_train, X_validate, y_validate
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return X_train, y_train, X_validate, y_validate
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def generate_X_and_y(dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels):
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def generate_X_and_y(dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels):
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# X = np.zeros((len(content), max_word*len(dictionary)))
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y = np.zeros((len(content), max_num_vowels * max_num_vowels ))
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y = np.zeros((len(content), max_num_vowels * max_num_vowels ))
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X = np.zeros((len(content), max_word, len(dictionary)))
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X = np.zeros((len(content), max_word, len(dictionary)))
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X_aditional_data = []
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i = 0
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i = 0
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for el in content:
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for el in content:
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j = 0
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j = 0
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# word = []
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for c in list(el[0]):
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for c in list(el[0]):
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index = 0
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index = 0
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# character = np.zeros(len(dictionary))
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for d in dictionary:
|
for d in dictionary:
|
||||||
if c == d:
|
if c == d:
|
||||||
X[i][j][index] = 1
|
X[i][j][index] = 1
|
||||||
# character[index] = 1
|
|
||||||
break
|
break
|
||||||
index += 1
|
index += 1
|
||||||
# word.append(character)
|
|
||||||
j += 1
|
j += 1
|
||||||
j = 0
|
j = 0
|
||||||
# X.append(word)
|
|
||||||
word_accetuations = []
|
word_accetuations = []
|
||||||
num_vowels = 0
|
num_vowels = 0
|
||||||
for c in list(el[3]):
|
for c in list(el[3]):
|
||||||
|
@ -299,13 +300,13 @@ def generate_X_and_y(dictionary, max_word, max_num_vowels, content, vowels, acce
|
||||||
j += 1
|
j += 1
|
||||||
y[i][generate_presentable_y(word_accetuations, list(el[3]), max_num_vowels)] = 1
|
y[i][generate_presentable_y(word_accetuations, list(el[3]), max_num_vowels)] = 1
|
||||||
i += 1
|
i += 1
|
||||||
# X = np.array(X)
|
|
||||||
|
|
||||||
print('SHUFFELING INPUTS...')
|
print('SHUFFELING INPUTS...')
|
||||||
X, y = shuffle_inputs(X, y)
|
X, y = shuffle_inputs(X, y)
|
||||||
print('INPUTS SHUFFELED!')
|
print('INPUTS SHUFFELED!')
|
||||||
return X, y
|
return X, y
|
||||||
|
|
||||||
|
|
||||||
def count_vowels(content, vowels):
|
def count_vowels(content, vowels):
|
||||||
num_all_vowels = 0
|
num_all_vowels = 0
|
||||||
for el in content:
|
for el in content:
|
||||||
|
@ -314,10 +315,8 @@ def count_vowels(content, vowels):
|
||||||
num_all_vowels += 1
|
num_all_vowels += 1
|
||||||
return num_all_vowels
|
return num_all_vowels
|
||||||
|
|
||||||
# def generate_full_vowel_matrix_inputs(name, split_number):
|
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
|
# Data generation for generator inputs
|
||||||
def generate_X_and_y_RAM_efficient(name, split_number):
|
def generate_X_and_y_RAM_efficient(name, split_number):
|
||||||
h5f = h5py.File(name + '.h5', 'w')
|
h5f = h5py.File(name + '.h5', 'w')
|
||||||
dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels = create_dict()
|
dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels = create_dict()
|
||||||
|
@ -332,14 +331,8 @@ def generate_X_and_y_RAM_efficient(name, split_number):
|
||||||
maxshape=(num_all_vowels,),
|
maxshape=(num_all_vowels,),
|
||||||
dtype=np.uint8)
|
dtype=np.uint8)
|
||||||
|
|
||||||
|
|
||||||
|
|
||||||
gc.collect()
|
gc.collect()
|
||||||
# print (2018553 * max_word * len(dictionary) / (2**30.0))
|
|
||||||
print('GENERATING X AND y...')
|
print('GENERATING X AND y...')
|
||||||
# X = np.zeros((len(content), max_word*len(dictionary)))
|
|
||||||
# y = np.zeros((len(content), max_num_vowels * max_num_vowels))
|
|
||||||
# X = np.zeros((2018553, max_word, len(dictionary)))
|
|
||||||
X_pure = []
|
X_pure = []
|
||||||
X = []
|
X = []
|
||||||
y = []
|
y = []
|
||||||
|
@ -373,12 +366,6 @@ def generate_X_and_y_RAM_efficient(name, split_number):
|
||||||
|
|
||||||
if current_part_generation * part_len <= i:
|
if current_part_generation * part_len <= i:
|
||||||
print('Saving part '+ str(current_part_generation))
|
print('Saving part '+ str(current_part_generation))
|
||||||
# create_and_save_inputs(name, str(current_part_generation), np.array(X), np.zeros(len(X)), np.array(X_pure))
|
|
||||||
|
|
||||||
# adict = dict(X=np.array(X), y=np.zeros(len(X)), X_pure=np.array(X_pure))
|
|
||||||
# for k, v in adict.items():
|
|
||||||
# h5f.create_dataset(k, data=v)
|
|
||||||
# print (len(np.array(X)))
|
|
||||||
data_X[old_num_all_vowels:num_all_vowels + 1] = np.array(X)
|
data_X[old_num_all_vowels:num_all_vowels + 1] = np.array(X)
|
||||||
data_y[old_num_all_vowels:num_all_vowels + 1] = np.array(y)
|
data_y[old_num_all_vowels:num_all_vowels + 1] = np.array(y)
|
||||||
data_X_pure[old_num_all_vowels:num_all_vowels + 1] = np.array(X_pure)
|
data_X_pure[old_num_all_vowels:num_all_vowels + 1] = np.array(X_pure)
|
||||||
|
@ -394,39 +381,18 @@ def generate_X_and_y_RAM_efficient(name, split_number):
|
||||||
num_all_vowels += 1
|
num_all_vowels += 1
|
||||||
if i%10000 == 0:
|
if i%10000 == 0:
|
||||||
print(i)
|
print(i)
|
||||||
# text_file.write("Purchase Amount: %s" % TotalAmount)
|
|
||||||
j = 0
|
|
||||||
# X.append(word)
|
|
||||||
# word_accetuations = []
|
|
||||||
# num_vowels = 0
|
|
||||||
# for c in list(el[3]):
|
|
||||||
# index = 0
|
|
||||||
# if is_vowel(el[3], j, vowels):
|
|
||||||
# num_vowels += 1
|
|
||||||
# for d in accetuated_vowels:
|
|
||||||
# if c == d:
|
|
||||||
# word_accetuations.append(num_vowels)
|
|
||||||
# break
|
|
||||||
# index += 1
|
|
||||||
# j += 1
|
|
||||||
# y[i][generate_presentable_y(word_accetuations, list(el[3]), max_num_vowels)] = 1
|
|
||||||
i += 1
|
i += 1
|
||||||
|
|
||||||
print('Saving part ' + str(current_part_generation))
|
print('Saving part ' + str(current_part_generation))
|
||||||
# create_and_save_inputs(name, str(current_part_generation), np.array(X), np.zeros(len(X)), np.array(X_pure))
|
|
||||||
|
|
||||||
data_X[old_num_all_vowels:num_all_vowels] = np.array(X)
|
data_X[old_num_all_vowels:num_all_vowels] = np.array(X)
|
||||||
data_y[old_num_all_vowels:num_all_vowels] = np.array(y)
|
data_y[old_num_all_vowels:num_all_vowels] = np.array(y)
|
||||||
data_X_pure[old_num_all_vowels:num_all_vowels] = np.array(X_pure)
|
data_X_pure[old_num_all_vowels:num_all_vowels] = np.array(X_pure)
|
||||||
|
|
||||||
# adict = dict(X=X, y=y, X_pure=X_pure)
|
|
||||||
# for k, v in adict.items():
|
|
||||||
# h5f.create_dataset(k, data=v)
|
|
||||||
|
|
||||||
|
|
||||||
h5f.close()
|
h5f.close()
|
||||||
|
|
||||||
|
|
||||||
|
# generator for inputs
|
||||||
def generate_arrays_from_file(path, batch_size):
|
def generate_arrays_from_file(path, batch_size):
|
||||||
h5f = h5py.File(path, 'r')
|
h5f = h5py.File(path, 'r')
|
||||||
|
|
||||||
|
@ -446,25 +412,15 @@ def generate_arrays_from_file(path, batch_size):
|
||||||
h5f.close()
|
h5f.close()
|
||||||
|
|
||||||
|
|
||||||
|
# shuffle inputs for generator
|
||||||
|
|
||||||
def shuffle_full_vowel_inputs(name, orderd_name, parts):
|
def shuffle_full_vowel_inputs(name, orderd_name, parts):
|
||||||
# internal_representations/inputs/X_ordered_part
|
|
||||||
dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels = create_dict()
|
dictionary, max_word, max_num_vowels, content, vowels, accetuated_vowels = create_dict()
|
||||||
num_all_vowels = count_vowels(content, vowels)
|
num_all_vowels = count_vowels(content, vowels)
|
||||||
num_all_vowels = 12
|
# num_all_vowels = 12
|
||||||
|
|
||||||
|
|
||||||
s = np.arange(num_all_vowels)
|
s = np.arange(num_all_vowels)
|
||||||
np.random.shuffle(s)
|
np.random.shuffle(s)
|
||||||
# create_and_save_shuffle_vector(name, s)
|
|
||||||
|
|
||||||
# s = load_shuffle_vector('internal_representations/inputs/X_shuffled_part_shuffle_vector.h5')
|
|
||||||
|
|
||||||
# try:
|
|
||||||
# h5f.close()
|
|
||||||
# except Exception, e:
|
|
||||||
# pass
|
|
||||||
|
|
||||||
h5f = h5py.File(name, 'w')
|
h5f = h5py.File(name, 'w')
|
||||||
data_X = h5f.create_dataset('X', (num_all_vowels, max_word, len(dictionary)),
|
data_X = h5f.create_dataset('X', (num_all_vowels, max_word, len(dictionary)),
|
||||||
|
@ -491,9 +447,6 @@ def shuffle_full_vowel_inputs(name, orderd_name, parts):
|
||||||
for i in range(1, parts+1):
|
for i in range(1, parts+1):
|
||||||
X, y, X_pure = load_extended_inputs(orderd_name, targeted_range)
|
X, y, X_pure = load_extended_inputs(orderd_name, targeted_range)
|
||||||
for j in range(X.shape[0]):
|
for j in range(X.shape[0]):
|
||||||
# print targeted_range[0]
|
|
||||||
# print targeted_range[1]
|
|
||||||
# print s[j]
|
|
||||||
if s[j + targeted_range[0]] >= section_range[0] and s[j + targeted_range[0]] < section_range[1]:
|
if s[j + targeted_range[0]] >= section_range[0] and s[j + targeted_range[0]] < section_range[1]:
|
||||||
# print 's[j] ' + str(s[j + targeted_range[0]]) + ' section_range[0] ' + str(section_range[0]) + ' section_range[1] ' + str(section_range[1])
|
# print 's[j] ' + str(s[j + targeted_range[0]]) + ' section_range[0] ' + str(section_range[0]) + ' section_range[1] ' + str(section_range[1])
|
||||||
new_X[s[j + targeted_range[0]] - section_range[0]] = X[j]
|
new_X[s[j + targeted_range[0]] - section_range[0]] = X[j]
|
||||||
|
@ -506,15 +459,6 @@ def shuffle_full_vowel_inputs(name, orderd_name, parts):
|
||||||
targeted_range[1] = num_all_vowels
|
targeted_range[1] = num_all_vowels
|
||||||
del X, y, X_pure
|
del X, y, X_pure
|
||||||
print('CREATED ' + str(h) + '. PART OF SHUFFLED MATRIX')
|
print('CREATED ' + str(h) + '. PART OF SHUFFLED MATRIX')
|
||||||
# create_and_save_inputs(name, str(h), new_X, new_y, new_X_pure)
|
|
||||||
# a =
|
|
||||||
# print (a.shape)
|
|
||||||
# print s
|
|
||||||
# for el in np.array(new_X):
|
|
||||||
# print el
|
|
||||||
# print 'new_X ' + str(new_X) + ' section_range[0] ' + str(section_range[0]) + ' section_range[1] ' + str(section_range[1])
|
|
||||||
# print new_X.shape
|
|
||||||
# print type(new_X)
|
|
||||||
data_X[section_range[0]:section_range[1]] = new_X
|
data_X[section_range[0]:section_range[1]] = new_X
|
||||||
data_y[section_range[0]:section_range[1]] = new_y
|
data_y[section_range[0]:section_range[1]] = new_y
|
||||||
data_X_pure[section_range[0]:section_range[1]] = new_X_pure
|
data_X_pure[section_range[0]:section_range[1]] = new_X_pure
|
||||||
|
@ -528,8 +472,7 @@ def shuffle_full_vowel_inputs(name, orderd_name, parts):
|
||||||
h5f.close()
|
h5f.close()
|
||||||
|
|
||||||
|
|
||||||
|
# Decoders for inputs and outputs
|
||||||
|
|
||||||
def decode_position(y, max_num_vowels):
|
def decode_position(y, max_num_vowels):
|
||||||
max_el = 0
|
max_el = 0
|
||||||
i = 0
|
i = 0
|
||||||
|
@ -541,6 +484,7 @@ def decode_position(y, max_num_vowels):
|
||||||
i += 1
|
i += 1
|
||||||
return [pos % max_num_vowels, pos / max_num_vowels]
|
return [pos % max_num_vowels, pos / max_num_vowels]
|
||||||
|
|
||||||
|
|
||||||
def decode_input(word_encoded, dictionary):
|
def decode_input(word_encoded, dictionary):
|
||||||
word = ''
|
word = ''
|
||||||
for el in word_encoded:
|
for el in word_encoded:
|
||||||
|
@ -570,6 +514,7 @@ def generate_input_from_word(word, max_word, dictionary):
|
||||||
j += 1
|
j += 1
|
||||||
return x
|
return x
|
||||||
|
|
||||||
|
|
||||||
def generate_input_per_vowel_from_word(word, max_word, dictionary, vowels):
|
def generate_input_per_vowel_from_word(word, max_word, dictionary, vowels):
|
||||||
X_el = np.zeros((max_word, len(dictionary)))
|
X_el = np.zeros((max_word, len(dictionary)))
|
||||||
j = 0
|
j = 0
|
||||||
|
@ -592,6 +537,7 @@ def generate_input_per_vowel_from_word(word, max_word, dictionary, vowels):
|
||||||
vowel_i += 1
|
vowel_i += 1
|
||||||
return np.array(X), np.array(X_pure)
|
return np.array(X), np.array(X_pure)
|
||||||
|
|
||||||
|
|
||||||
def decode_position_from_vowel_to_final_number(y):
|
def decode_position_from_vowel_to_final_number(y):
|
||||||
res = []
|
res = []
|
||||||
for i in range(len(y)):
|
for i in range(len(y)):
|
||||||
|
@ -600,6 +546,7 @@ def decode_position_from_vowel_to_final_number(y):
|
||||||
return res
|
return res
|
||||||
|
|
||||||
|
|
||||||
|
# split content so that there is no overfitting
|
||||||
def split_content(content, ratio):
|
def split_content(content, ratio):
|
||||||
expanded_content = [el[1] if el[1] != '=' else el[0] for el in content]
|
expanded_content = [el[1] if el[1] != '=' else el[0] for el in content]
|
||||||
# print(len(content))
|
# print(len(content))
|
||||||
|
@ -609,7 +556,6 @@ def split_content(content, ratio):
|
||||||
np.random.shuffle(s)
|
np.random.shuffle(s)
|
||||||
|
|
||||||
split_num = math.floor(len(unique_content) * ratio)
|
split_num = math.floor(len(unique_content) * ratio)
|
||||||
validate_content = []
|
|
||||||
shuffled_unique_train_content = [unique_content[i] for i in range(len(s)) if s[i] >= split_num]
|
shuffled_unique_train_content = [unique_content[i] for i in range(len(s)) if s[i] >= split_num]
|
||||||
|
|
||||||
shuffled_unique_train_content_set = set(shuffled_unique_train_content)
|
shuffled_unique_train_content_set = set(shuffled_unique_train_content)
|
||||||
|
|
Loading…
Reference in New Issue
Block a user