lab_5 #5

Merged
Arutunyan-Dmitry merged 3 commits from lab_5 into main 2024-12-21 14:38:37 +04:00
42 changed files with 8521 additions and 52 deletions

View File

@ -331,34 +331,6 @@
" frac_test=0.25,\n", " frac_test=0.25,\n",
" random_state=None,\n", " random_state=None,\n",
") -> Tuple[DataFrame, DataFrame, DataFrame, DataFrame, DataFrame, DataFrame]:\n", ") -> Tuple[DataFrame, DataFrame, DataFrame, DataFrame, DataFrame, DataFrame]:\n",
" \"\"\"\n",
" Splits a Pandas dataframe into three subsets (train, val, and test)\n",
" following fractional ratios provided by the user, where each subset is\n",
" stratified by the values in a specific column (that is, each subset has\n",
" the same relative frequency of the values in the column). It performs this\n",
" splitting by running train_test_split() twice.\n",
"\n",
" Parameters\n",
" ----------\n",
" df_input : Pandas dataframe\n",
" Input dataframe to be split.\n",
" stratify_colname : str\n",
" The name of the column that will be used for stratification. Usually\n",
" this column would be for the label.\n",
" frac_train : float\n",
" frac_val : float\n",
" frac_test : float\n",
" The ratios with which the dataframe will be split into train, val, and\n",
" test data. The values should be expressed as float fractions and should\n",
" sum to 1.0.\n",
" random_state : int, None, or RandomStateInstance\n",
" Value to be passed to train_test_split().\n",
"\n",
" Returns\n",
" -------\n",
" df_train, df_val, df_test :\n",
" Dataframes containing the three splits.\n",
" \"\"\"\n",
"\n", "\n",
" if frac_train + frac_val + frac_test != 1.0:\n", " if frac_train + frac_val + frac_test != 1.0:\n",
" raise ValueError(\n", " raise ValueError(\n",
@ -1688,16 +1660,53 @@
}, },
{ {
"cell_type": "code", "cell_type": "code",
"execution_count": 8, "execution_count": 22,
"metadata": {}, "metadata": {},
"outputs": [ "outputs": [
{ {
"name": "stdout", "name": "stdout",
"output_type": "stream", "output_type": "stream",
"text": [ "text": [
"Model: knn\n", "Model: knn\n"
"Model: random_forest\n", ]
"Model: mlp\n" },
{
"ename": "ValueError",
"evalue": "A given column is not a column of the dataframe",
"output_type": "error",
"traceback": [
"\u001b[1;31m---------------------------------------------------------------------------\u001b[0m",
"\u001b[1;31mKeyError\u001b[0m Traceback (most recent call last)",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\pandas\\core\\indexes\\base.py:3805\u001b[0m, in \u001b[0;36mIndex.get_loc\u001b[1;34m(self, key)\u001b[0m\n\u001b[0;32m 3804\u001b[0m \u001b[38;5;28;01mtry\u001b[39;00m:\n\u001b[1;32m-> 3805\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m \u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43m_engine\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mget_loc\u001b[49m\u001b[43m(\u001b[49m\u001b[43mcasted_key\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 3806\u001b[0m \u001b[38;5;28;01mexcept\u001b[39;00m \u001b[38;5;167;01mKeyError\u001b[39;00m \u001b[38;5;28;01mas\u001b[39;00m err:\n",
"File \u001b[1;32mindex.pyx:167\u001b[0m, in \u001b[0;36mpandas._libs.index.IndexEngine.get_loc\u001b[1;34m()\u001b[0m\n",
"File \u001b[1;32mindex.pyx:196\u001b[0m, in \u001b[0;36mpandas._libs.index.IndexEngine.get_loc\u001b[1;34m()\u001b[0m\n",
"File \u001b[1;32mpandas\\\\_libs\\\\hashtable_class_helper.pxi:7081\u001b[0m, in \u001b[0;36mpandas._libs.hashtable.PyObjectHashTable.get_item\u001b[1;34m()\u001b[0m\n",
"File \u001b[1;32mpandas\\\\_libs\\\\hashtable_class_helper.pxi:7089\u001b[0m, in \u001b[0;36mpandas._libs.hashtable.PyObjectHashTable.get_item\u001b[1;34m()\u001b[0m\n",
"\u001b[1;31mKeyError\u001b[0m: 'avg_glucose_level'",
"\nThe above exception was the direct cause of the following exception:\n",
"\u001b[1;31mKeyError\u001b[0m Traceback (most recent call last)",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\utils\\_indexing.py:361\u001b[0m, in \u001b[0;36m_get_column_indices\u001b[1;34m(X, key)\u001b[0m\n\u001b[0;32m 360\u001b[0m \u001b[38;5;28;01mfor\u001b[39;00m col \u001b[38;5;129;01min\u001b[39;00m columns:\n\u001b[1;32m--> 361\u001b[0m col_idx \u001b[38;5;241m=\u001b[39m \u001b[43mall_columns\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mget_loc\u001b[49m\u001b[43m(\u001b[49m\u001b[43mcol\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 362\u001b[0m \u001b[38;5;28;01mif\u001b[39;00m \u001b[38;5;129;01mnot\u001b[39;00m \u001b[38;5;28misinstance\u001b[39m(col_idx, numbers\u001b[38;5;241m.\u001b[39mIntegral):\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\pandas\\core\\indexes\\base.py:3812\u001b[0m, in \u001b[0;36mIndex.get_loc\u001b[1;34m(self, key)\u001b[0m\n\u001b[0;32m 3811\u001b[0m \u001b[38;5;28;01mraise\u001b[39;00m InvalidIndexError(key)\n\u001b[1;32m-> 3812\u001b[0m \u001b[38;5;28;01mraise\u001b[39;00m \u001b[38;5;167;01mKeyError\u001b[39;00m(key) \u001b[38;5;28;01mfrom\u001b[39;00m \u001b[38;5;21;01merr\u001b[39;00m\n\u001b[0;32m 3813\u001b[0m \u001b[38;5;28;01mexcept\u001b[39;00m \u001b[38;5;167;01mTypeError\u001b[39;00m:\n\u001b[0;32m 3814\u001b[0m \u001b[38;5;66;03m# If we have a listlike key, _check_indexing_error will raise\u001b[39;00m\n\u001b[0;32m 3815\u001b[0m \u001b[38;5;66;03m# InvalidIndexError. Otherwise we fall through and re-raise\u001b[39;00m\n\u001b[0;32m 3816\u001b[0m \u001b[38;5;66;03m# the TypeError.\u001b[39;00m\n",
"\u001b[1;31mKeyError\u001b[0m: 'avg_glucose_level'",
"\nThe above exception was the direct cause of the following exception:\n",
"\u001b[1;31mValueError\u001b[0m Traceback (most recent call last)",
"Cell \u001b[1;32mIn[22], line 8\u001b[0m\n\u001b[0;32m 5\u001b[0m model \u001b[38;5;241m=\u001b[39m class_models[model_name][\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mmodel\u001b[39m\u001b[38;5;124m\"\u001b[39m]\n\u001b[0;32m 7\u001b[0m model_pipeline \u001b[38;5;241m=\u001b[39m Pipeline([(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mpipeline\u001b[39m\u001b[38;5;124m\"\u001b[39m, pipeline_end), (\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mmodel\u001b[39m\u001b[38;5;124m\"\u001b[39m, model)])\n\u001b[1;32m----> 8\u001b[0m model_pipeline \u001b[38;5;241m=\u001b[39m \u001b[43mmodel_pipeline\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mfit\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX_train\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43my_train\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mvalues\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mravel\u001b[49m\u001b[43m(\u001b[49m\u001b[43m)\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 10\u001b[0m y_train_predict \u001b[38;5;241m=\u001b[39m model_pipeline\u001b[38;5;241m.\u001b[39mpredict(X_train)\n\u001b[0;32m 11\u001b[0m y_test_probs \u001b[38;5;241m=\u001b[39m model_pipeline\u001b[38;5;241m.\u001b[39mpredict_proba(X_test)[:, \u001b[38;5;241m1\u001b[39m]\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\base.py:1473\u001b[0m, in \u001b[0;36m_fit_context.<locals>.decorator.<locals>.wrapper\u001b[1;34m(estimator, *args, **kwargs)\u001b[0m\n\u001b[0;32m 1466\u001b[0m estimator\u001b[38;5;241m.\u001b[39m_validate_params()\n\u001b[0;32m 1468\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m config_context(\n\u001b[0;32m 1469\u001b[0m skip_parameter_validation\u001b[38;5;241m=\u001b[39m(\n\u001b[0;32m 1470\u001b[0m prefer_skip_nested_validation \u001b[38;5;129;01mor\u001b[39;00m global_skip_validation\n\u001b[0;32m 1471\u001b[0m )\n\u001b[0;32m 1472\u001b[0m ):\n\u001b[1;32m-> 1473\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m \u001b[43mfit_method\u001b[49m\u001b[43m(\u001b[49m\u001b[43mestimator\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43margs\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mkwargs\u001b[49m\u001b[43m)\u001b[49m\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\pipeline.py:469\u001b[0m, in \u001b[0;36mPipeline.fit\u001b[1;34m(self, X, y, **params)\u001b[0m\n\u001b[0;32m 426\u001b[0m \u001b[38;5;250m\u001b[39m\u001b[38;5;124;03m\"\"\"Fit the model.\u001b[39;00m\n\u001b[0;32m 427\u001b[0m \n\u001b[0;32m 428\u001b[0m \u001b[38;5;124;03mFit all the transformers one after the other and sequentially transform the\u001b[39;00m\n\u001b[1;32m (...)\u001b[0m\n\u001b[0;32m 466\u001b[0m \u001b[38;5;124;03m Pipeline with fitted steps.\u001b[39;00m\n\u001b[0;32m 467\u001b[0m \u001b[38;5;124;03m\"\"\"\u001b[39;00m\n\u001b[0;32m 468\u001b[0m routed_params \u001b[38;5;241m=\u001b[39m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_check_method_params(method\u001b[38;5;241m=\u001b[39m\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mfit\u001b[39m\u001b[38;5;124m\"\u001b[39m, props\u001b[38;5;241m=\u001b[39mparams)\n\u001b[1;32m--> 469\u001b[0m Xt \u001b[38;5;241m=\u001b[39m \u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43m_fit\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43my\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43mrouted_params\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 470\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m _print_elapsed_time(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mPipeline\u001b[39m\u001b[38;5;124m\"\u001b[39m, \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_log_message(\u001b[38;5;28mlen\u001b[39m(\u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39msteps) \u001b[38;5;241m-\u001b[39m \u001b[38;5;241m1\u001b[39m)):\n\u001b[0;32m 471\u001b[0m \u001b[38;5;28;01mif\u001b[39;00m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_final_estimator \u001b[38;5;241m!=\u001b[39m \u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mpassthrough\u001b[39m\u001b[38;5;124m\"\u001b[39m:\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\pipeline.py:406\u001b[0m, in \u001b[0;36mPipeline._fit\u001b[1;34m(self, X, y, routed_params)\u001b[0m\n\u001b[0;32m 404\u001b[0m cloned_transformer \u001b[38;5;241m=\u001b[39m clone(transformer)\n\u001b[0;32m 405\u001b[0m \u001b[38;5;66;03m# Fit or load from cache the current transformer\u001b[39;00m\n\u001b[1;32m--> 406\u001b[0m X, fitted_transformer \u001b[38;5;241m=\u001b[39m \u001b[43mfit_transform_one_cached\u001b[49m\u001b[43m(\u001b[49m\n\u001b[0;32m 407\u001b[0m \u001b[43m \u001b[49m\u001b[43mcloned_transformer\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 408\u001b[0m \u001b[43m \u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 409\u001b[0m \u001b[43m \u001b[49m\u001b[43my\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 410\u001b[0m \u001b[43m \u001b[49m\u001b[38;5;28;43;01mNone\u001b[39;49;00m\u001b[43m,\u001b[49m\n\u001b[0;32m 411\u001b[0m \u001b[43m \u001b[49m\u001b[43mmessage_clsname\u001b[49m\u001b[38;5;241;43m=\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[38;5;124;43mPipeline\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[43m,\u001b[49m\n\u001b[0;32m 412\u001b[0m \u001b[43m \u001b[49m\u001b[43mmessage\u001b[49m\u001b[38;5;241;43m=\u001b[39;49m\u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43m_log_message\u001b[49m\u001b[43m(\u001b[49m\u001b[43mstep_idx\u001b[49m\u001b[43m)\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 413\u001b[0m \u001b[43m \u001b[49m\u001b[43mparams\u001b[49m\u001b[38;5;241;43m=\u001b[39;49m\u001b[43mrouted_params\u001b[49m\u001b[43m[\u001b[49m\u001b[43mname\u001b[49m\u001b[43m]\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 414\u001b[0m \u001b[43m\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 415\u001b[0m \u001b[38;5;66;03m# Replace the transformer of the step with the fitted\u001b[39;00m\n\u001b[0;32m 416\u001b[0m \u001b[38;5;66;03m# transformer. This is necessary when loading the transformer\u001b[39;00m\n\u001b[0;32m 417\u001b[0m \u001b[38;5;66;03m# from the cache.\u001b[39;00m\n\u001b[0;32m 418\u001b[0m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39msteps[step_idx] \u001b[38;5;241m=\u001b[39m (name, fitted_transformer)\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\joblib\\memory.py:312\u001b[0m, in \u001b[0;36mNotMemorizedFunc.__call__\u001b[1;34m(self, *args, **kwargs)\u001b[0m\n\u001b[0;32m 311\u001b[0m \u001b[38;5;28;01mdef\u001b[39;00m \u001b[38;5;21m__call__\u001b[39m(\u001b[38;5;28mself\u001b[39m, \u001b[38;5;241m*\u001b[39margs, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mkwargs):\n\u001b[1;32m--> 312\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m \u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mfunc\u001b[49m\u001b[43m(\u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43margs\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mkwargs\u001b[49m\u001b[43m)\u001b[49m\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\pipeline.py:1310\u001b[0m, in \u001b[0;36m_fit_transform_one\u001b[1;34m(transformer, X, y, weight, message_clsname, message, params)\u001b[0m\n\u001b[0;32m 1308\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m _print_elapsed_time(message_clsname, message):\n\u001b[0;32m 1309\u001b[0m \u001b[38;5;28;01mif\u001b[39;00m \u001b[38;5;28mhasattr\u001b[39m(transformer, \u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mfit_transform\u001b[39m\u001b[38;5;124m\"\u001b[39m):\n\u001b[1;32m-> 1310\u001b[0m res \u001b[38;5;241m=\u001b[39m \u001b[43mtransformer\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mfit_transform\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43my\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mparams\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mget\u001b[49m\u001b[43m(\u001b[49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[38;5;124;43mfit_transform\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43m{\u001b[49m\u001b[43m}\u001b[49m\u001b[43m)\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 1311\u001b[0m \u001b[38;5;28;01melse\u001b[39;00m:\n\u001b[0;32m 1312\u001b[0m res \u001b[38;5;241m=\u001b[39m transformer\u001b[38;5;241m.\u001b[39mfit(X, y, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mparams\u001b[38;5;241m.\u001b[39mget(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mfit\u001b[39m\u001b[38;5;124m\"\u001b[39m, {}))\u001b[38;5;241m.\u001b[39mtransform(\n\u001b[0;32m 1313\u001b[0m X, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mparams\u001b[38;5;241m.\u001b[39mget(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mtransform\u001b[39m\u001b[38;5;124m\"\u001b[39m, {})\n\u001b[0;32m 1314\u001b[0m )\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\base.py:1473\u001b[0m, in \u001b[0;36m_fit_context.<locals>.decorator.<locals>.wrapper\u001b[1;34m(estimator, *args, **kwargs)\u001b[0m\n\u001b[0;32m 1466\u001b[0m estimator\u001b[38;5;241m.\u001b[39m_validate_params()\n\u001b[0;32m 1468\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m config_context(\n\u001b[0;32m 1469\u001b[0m skip_parameter_validation\u001b[38;5;241m=\u001b[39m(\n\u001b[0;32m 1470\u001b[0m prefer_skip_nested_validation \u001b[38;5;129;01mor\u001b[39;00m global_skip_validation\n\u001b[0;32m 1471\u001b[0m )\n\u001b[0;32m 1472\u001b[0m ):\n\u001b[1;32m-> 1473\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m \u001b[43mfit_method\u001b[49m\u001b[43m(\u001b[49m\u001b[43mestimator\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43margs\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mkwargs\u001b[49m\u001b[43m)\u001b[49m\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\pipeline.py:533\u001b[0m, in \u001b[0;36mPipeline.fit_transform\u001b[1;34m(self, X, y, **params)\u001b[0m\n\u001b[0;32m 490\u001b[0m \u001b[38;5;250m\u001b[39m\u001b[38;5;124;03m\"\"\"Fit the model and transform with the final estimator.\u001b[39;00m\n\u001b[0;32m 491\u001b[0m \n\u001b[0;32m 492\u001b[0m \u001b[38;5;124;03mFit all the transformers one after the other and sequentially transform\u001b[39;00m\n\u001b[1;32m (...)\u001b[0m\n\u001b[0;32m 530\u001b[0m \u001b[38;5;124;03m Transformed samples.\u001b[39;00m\n\u001b[0;32m 531\u001b[0m \u001b[38;5;124;03m\"\"\"\u001b[39;00m\n\u001b[0;32m 532\u001b[0m routed_params \u001b[38;5;241m=\u001b[39m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_check_method_params(method\u001b[38;5;241m=\u001b[39m\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mfit_transform\u001b[39m\u001b[38;5;124m\"\u001b[39m, props\u001b[38;5;241m=\u001b[39mparams)\n\u001b[1;32m--> 533\u001b[0m Xt \u001b[38;5;241m=\u001b[39m \u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43m_fit\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43my\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43mrouted_params\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 535\u001b[0m last_step \u001b[38;5;241m=\u001b[39m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_final_estimator\n\u001b[0;32m 536\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m _print_elapsed_time(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mPipeline\u001b[39m\u001b[38;5;124m\"\u001b[39m, \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_log_message(\u001b[38;5;28mlen\u001b[39m(\u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39msteps) \u001b[38;5;241m-\u001b[39m \u001b[38;5;241m1\u001b[39m)):\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\pipeline.py:406\u001b[0m, in \u001b[0;36mPipeline._fit\u001b[1;34m(self, X, y, routed_params)\u001b[0m\n\u001b[0;32m 404\u001b[0m cloned_transformer \u001b[38;5;241m=\u001b[39m clone(transformer)\n\u001b[0;32m 405\u001b[0m \u001b[38;5;66;03m# Fit or load from cache the current transformer\u001b[39;00m\n\u001b[1;32m--> 406\u001b[0m X, fitted_transformer \u001b[38;5;241m=\u001b[39m \u001b[43mfit_transform_one_cached\u001b[49m\u001b[43m(\u001b[49m\n\u001b[0;32m 407\u001b[0m \u001b[43m \u001b[49m\u001b[43mcloned_transformer\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 408\u001b[0m \u001b[43m \u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 409\u001b[0m \u001b[43m \u001b[49m\u001b[43my\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 410\u001b[0m \u001b[43m \u001b[49m\u001b[38;5;28;43;01mNone\u001b[39;49;00m\u001b[43m,\u001b[49m\n\u001b[0;32m 411\u001b[0m \u001b[43m \u001b[49m\u001b[43mmessage_clsname\u001b[49m\u001b[38;5;241;43m=\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[38;5;124;43mPipeline\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[43m,\u001b[49m\n\u001b[0;32m 412\u001b[0m \u001b[43m \u001b[49m\u001b[43mmessage\u001b[49m\u001b[38;5;241;43m=\u001b[39;49m\u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43m_log_message\u001b[49m\u001b[43m(\u001b[49m\u001b[43mstep_idx\u001b[49m\u001b[43m)\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 413\u001b[0m \u001b[43m \u001b[49m\u001b[43mparams\u001b[49m\u001b[38;5;241;43m=\u001b[39;49m\u001b[43mrouted_params\u001b[49m\u001b[43m[\u001b[49m\u001b[43mname\u001b[49m\u001b[43m]\u001b[49m\u001b[43m,\u001b[49m\n\u001b[0;32m 414\u001b[0m \u001b[43m\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 415\u001b[0m \u001b[38;5;66;03m# Replace the transformer of the step with the fitted\u001b[39;00m\n\u001b[0;32m 416\u001b[0m \u001b[38;5;66;03m# transformer. This is necessary when loading the transformer\u001b[39;00m\n\u001b[0;32m 417\u001b[0m \u001b[38;5;66;03m# from the cache.\u001b[39;00m\n\u001b[0;32m 418\u001b[0m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39msteps[step_idx] \u001b[38;5;241m=\u001b[39m (name, fitted_transformer)\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\joblib\\memory.py:312\u001b[0m, in \u001b[0;36mNotMemorizedFunc.__call__\u001b[1;34m(self, *args, **kwargs)\u001b[0m\n\u001b[0;32m 311\u001b[0m \u001b[38;5;28;01mdef\u001b[39;00m \u001b[38;5;21m__call__\u001b[39m(\u001b[38;5;28mself\u001b[39m, \u001b[38;5;241m*\u001b[39margs, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mkwargs):\n\u001b[1;32m--> 312\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m \u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mfunc\u001b[49m\u001b[43m(\u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43margs\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mkwargs\u001b[49m\u001b[43m)\u001b[49m\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\pipeline.py:1310\u001b[0m, in \u001b[0;36m_fit_transform_one\u001b[1;34m(transformer, X, y, weight, message_clsname, message, params)\u001b[0m\n\u001b[0;32m 1308\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m _print_elapsed_time(message_clsname, message):\n\u001b[0;32m 1309\u001b[0m \u001b[38;5;28;01mif\u001b[39;00m \u001b[38;5;28mhasattr\u001b[39m(transformer, \u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mfit_transform\u001b[39m\u001b[38;5;124m\"\u001b[39m):\n\u001b[1;32m-> 1310\u001b[0m res \u001b[38;5;241m=\u001b[39m \u001b[43mtransformer\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mfit_transform\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43my\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mparams\u001b[49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43mget\u001b[49m\u001b[43m(\u001b[49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[38;5;124;43mfit_transform\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43m{\u001b[49m\u001b[43m}\u001b[49m\u001b[43m)\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 1311\u001b[0m \u001b[38;5;28;01melse\u001b[39;00m:\n\u001b[0;32m 1312\u001b[0m res \u001b[38;5;241m=\u001b[39m transformer\u001b[38;5;241m.\u001b[39mfit(X, y, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mparams\u001b[38;5;241m.\u001b[39mget(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mfit\u001b[39m\u001b[38;5;124m\"\u001b[39m, {}))\u001b[38;5;241m.\u001b[39mtransform(\n\u001b[0;32m 1313\u001b[0m X, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mparams\u001b[38;5;241m.\u001b[39mget(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mtransform\u001b[39m\u001b[38;5;124m\"\u001b[39m, {})\n\u001b[0;32m 1314\u001b[0m )\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\utils\\_set_output.py:316\u001b[0m, in \u001b[0;36m_wrap_method_output.<locals>.wrapped\u001b[1;34m(self, X, *args, **kwargs)\u001b[0m\n\u001b[0;32m 314\u001b[0m \u001b[38;5;129m@wraps\u001b[39m(f)\n\u001b[0;32m 315\u001b[0m \u001b[38;5;28;01mdef\u001b[39;00m \u001b[38;5;21mwrapped\u001b[39m(\u001b[38;5;28mself\u001b[39m, X, \u001b[38;5;241m*\u001b[39margs, \u001b[38;5;241m*\u001b[39m\u001b[38;5;241m*\u001b[39mkwargs):\n\u001b[1;32m--> 316\u001b[0m data_to_wrap \u001b[38;5;241m=\u001b[39m \u001b[43mf\u001b[49m\u001b[43m(\u001b[49m\u001b[38;5;28;43mself\u001b[39;49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43margs\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mkwargs\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 317\u001b[0m \u001b[38;5;28;01mif\u001b[39;00m \u001b[38;5;28misinstance\u001b[39m(data_to_wrap, \u001b[38;5;28mtuple\u001b[39m):\n\u001b[0;32m 318\u001b[0m \u001b[38;5;66;03m# only wrap the first output for cross decomposition\u001b[39;00m\n\u001b[0;32m 319\u001b[0m return_tuple \u001b[38;5;241m=\u001b[39m (\n\u001b[0;32m 320\u001b[0m _wrap_data_with_container(method, data_to_wrap[\u001b[38;5;241m0\u001b[39m], X, \u001b[38;5;28mself\u001b[39m),\n\u001b[0;32m 321\u001b[0m \u001b[38;5;241m*\u001b[39mdata_to_wrap[\u001b[38;5;241m1\u001b[39m:],\n\u001b[0;32m 322\u001b[0m )\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\base.py:1473\u001b[0m, in \u001b[0;36m_fit_context.<locals>.decorator.<locals>.wrapper\u001b[1;34m(estimator, *args, **kwargs)\u001b[0m\n\u001b[0;32m 1466\u001b[0m estimator\u001b[38;5;241m.\u001b[39m_validate_params()\n\u001b[0;32m 1468\u001b[0m \u001b[38;5;28;01mwith\u001b[39;00m config_context(\n\u001b[0;32m 1469\u001b[0m skip_parameter_validation\u001b[38;5;241m=\u001b[39m(\n\u001b[0;32m 1470\u001b[0m prefer_skip_nested_validation \u001b[38;5;129;01mor\u001b[39;00m global_skip_validation\n\u001b[0;32m 1471\u001b[0m )\n\u001b[0;32m 1472\u001b[0m ):\n\u001b[1;32m-> 1473\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m \u001b[43mfit_method\u001b[49m\u001b[43m(\u001b[49m\u001b[43mestimator\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43margs\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[38;5;241;43m*\u001b[39;49m\u001b[43mkwargs\u001b[49m\u001b[43m)\u001b[49m\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\compose\\_column_transformer.py:968\u001b[0m, in \u001b[0;36mColumnTransformer.fit_transform\u001b[1;34m(self, X, y, **params)\u001b[0m\n\u001b[0;32m 965\u001b[0m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_validate_transformers()\n\u001b[0;32m 966\u001b[0m n_samples \u001b[38;5;241m=\u001b[39m _num_samples(X)\n\u001b[1;32m--> 968\u001b[0m \u001b[38;5;28;43mself\u001b[39;49m\u001b[38;5;241;43m.\u001b[39;49m\u001b[43m_validate_column_callables\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 969\u001b[0m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_validate_remainder(X)\n\u001b[0;32m 971\u001b[0m \u001b[38;5;28;01mif\u001b[39;00m _routing_enabled():\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\compose\\_column_transformer.py:536\u001b[0m, in \u001b[0;36mColumnTransformer._validate_column_callables\u001b[1;34m(self, X)\u001b[0m\n\u001b[0;32m 534\u001b[0m columns \u001b[38;5;241m=\u001b[39m columns(X)\n\u001b[0;32m 535\u001b[0m all_columns\u001b[38;5;241m.\u001b[39mappend(columns)\n\u001b[1;32m--> 536\u001b[0m transformer_to_input_indices[name] \u001b[38;5;241m=\u001b[39m \u001b[43m_get_column_indices\u001b[49m\u001b[43m(\u001b[49m\u001b[43mX\u001b[49m\u001b[43m,\u001b[49m\u001b[43m \u001b[49m\u001b[43mcolumns\u001b[49m\u001b[43m)\u001b[49m\n\u001b[0;32m 538\u001b[0m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_columns \u001b[38;5;241m=\u001b[39m all_columns\n\u001b[0;32m 539\u001b[0m \u001b[38;5;28mself\u001b[39m\u001b[38;5;241m.\u001b[39m_transformer_to_input_indices \u001b[38;5;241m=\u001b[39m transformer_to_input_indices\n",
"File \u001b[1;32md:\\code\\mai\\labs\\AIM-PIbd-31-Bakalskaya-E-D\\lab_4\\venv\\Lib\\site-packages\\sklearn\\utils\\_indexing.py:369\u001b[0m, in \u001b[0;36m_get_column_indices\u001b[1;34m(X, key)\u001b[0m\n\u001b[0;32m 366\u001b[0m column_indices\u001b[38;5;241m.\u001b[39mappend(col_idx)\n\u001b[0;32m 368\u001b[0m \u001b[38;5;28;01mexcept\u001b[39;00m \u001b[38;5;167;01mKeyError\u001b[39;00m \u001b[38;5;28;01mas\u001b[39;00m e:\n\u001b[1;32m--> 369\u001b[0m \u001b[38;5;28;01mraise\u001b[39;00m \u001b[38;5;167;01mValueError\u001b[39;00m(\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mA given column is not a column of the dataframe\u001b[39m\u001b[38;5;124m\"\u001b[39m) \u001b[38;5;28;01mfrom\u001b[39;00m \u001b[38;5;21;01me\u001b[39;00m\n\u001b[0;32m 371\u001b[0m \u001b[38;5;28;01mreturn\u001b[39;00m column_indices\n",
"\u001b[1;31mValueError\u001b[0m: A given column is not a column of the dataframe"
] ]
} }
], ],
@ -1753,9 +1762,16 @@
}, },
{ {
"cell_type": "code", "cell_type": "code",
"execution_count": 19, "execution_count": 21,
"metadata": {}, "metadata": {},
"outputs": [ "outputs": [
{
"name": "stdout",
"output_type": "stream",
"text": [
"['model', 'pipeline', 'train_preds', 'preds', 'RMSE_train', 'RMSE_test', 'RMAE_test', 'R2_test']\n"
]
},
{ {
"ename": "KeyError", "ename": "KeyError",
"evalue": "'Confusion_matrix'", "evalue": "'Confusion_matrix'",
@ -1763,7 +1779,7 @@
"traceback": [ "traceback": [
"\u001b[1;31m---------------------------------------------------------------------------\u001b[0m", "\u001b[1;31m---------------------------------------------------------------------------\u001b[0m",
"\u001b[1;31mKeyError\u001b[0m Traceback (most recent call last)", "\u001b[1;31mKeyError\u001b[0m Traceback (most recent call last)",
"Cell \u001b[1;32mIn[19], line 19\u001b[0m\n\u001b[0;32m 16\u001b[0m fig, ax \u001b[38;5;241m=\u001b[39m plt\u001b[38;5;241m.\u001b[39msubplots(\u001b[38;5;241m2\u001b[39m, \u001b[38;5;241m2\u001b[39m, figsize\u001b[38;5;241m=\u001b[39m(\u001b[38;5;241m12\u001b[39m, \u001b[38;5;241m10\u001b[39m))\n\u001b[0;32m 18\u001b[0m \u001b[38;5;28;01mfor\u001b[39;00m index, (key, model_info) \u001b[38;5;129;01min\u001b[39;00m \u001b[38;5;28menumerate\u001b[39m(class_models\u001b[38;5;241m.\u001b[39mitems()):\n\u001b[1;32m---> 19\u001b[0m c_matrix \u001b[38;5;241m=\u001b[39m \u001b[43mmodel_info\u001b[49m\u001b[43m[\u001b[49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[38;5;124;43mConfusion_matrix\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[43m]\u001b[49m\n\u001b[0;32m 21\u001b[0m \u001b[38;5;66;03m# Генерация кастомных цветов\u001b[39;00m\n\u001b[0;32m 22\u001b[0m disp \u001b[38;5;241m=\u001b[39m ConfusionMatrixDisplay(\n\u001b[0;32m 23\u001b[0m confusion_matrix\u001b[38;5;241m=\u001b[39mc_matrix, display_labels\u001b[38;5;241m=\u001b[39m[\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mNot stroke\u001b[39m\u001b[38;5;124m\"\u001b[39m, \u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mStroke\u001b[39m\u001b[38;5;124m\"\u001b[39m]\n\u001b[0;32m 24\u001b[0m )\n", "Cell \u001b[1;32mIn[21], line 8\u001b[0m\n\u001b[0;32m 6\u001b[0m \u001b[38;5;28;01mfor\u001b[39;00m index, (key, model_info) \u001b[38;5;129;01min\u001b[39;00m \u001b[38;5;28menumerate\u001b[39m(class_models\u001b[38;5;241m.\u001b[39mitems()):\n\u001b[0;32m 7\u001b[0m \u001b[38;5;28mprint\u001b[39m(\u001b[38;5;28mlist\u001b[39m(model_info\u001b[38;5;241m.\u001b[39mkeys()))\n\u001b[1;32m----> 8\u001b[0m c_matrix \u001b[38;5;241m=\u001b[39m \u001b[43mmodel_info\u001b[49m\u001b[43m[\u001b[49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[38;5;124;43mConfusion_matrix\u001b[39;49m\u001b[38;5;124;43m\"\u001b[39;49m\u001b[43m]\u001b[49m\n\u001b[0;32m 10\u001b[0m disp \u001b[38;5;241m=\u001b[39m ConfusionMatrixDisplay(\n\u001b[0;32m 11\u001b[0m confusion_matrix\u001b[38;5;241m=\u001b[39mc_matrix, display_labels\u001b[38;5;241m=\u001b[39m[\u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mNot stroke\u001b[39m\u001b[38;5;124m\"\u001b[39m, \u001b[38;5;124m\"\u001b[39m\u001b[38;5;124mStroke\u001b[39m\u001b[38;5;124m\"\u001b[39m]\n\u001b[0;32m 12\u001b[0m )\u001b[38;5;241m.\u001b[39mplot(ax\u001b[38;5;241m=\u001b[39max\u001b[38;5;241m.\u001b[39mflat[index])\n\u001b[0;32m 14\u001b[0m disp\u001b[38;5;241m.\u001b[39max_\u001b[38;5;241m.\u001b[39mset_title(key)\n",
"\u001b[1;31mKeyError\u001b[0m: 'Confusion_matrix'" "\u001b[1;31mKeyError\u001b[0m: 'Confusion_matrix'"
] ]
}, },
@ -1781,29 +1797,16 @@
"source": [ "source": [
"from sklearn.metrics import ConfusionMatrixDisplay\n", "from sklearn.metrics import ConfusionMatrixDisplay\n",
"import matplotlib.pyplot as plt\n", "import matplotlib.pyplot as plt\n",
"import numpy as np\n",
"\n",
"# Цветовая схема: светло-голубой для правильных, бледно-красный для ошибок\n",
"def custom_color_map(c_matrix):\n",
" colors = np.empty_like(c_matrix, dtype=str)\n",
" for i in range(c_matrix.shape[0]):\n",
" for j in range(c_matrix.shape[1]):\n",
" if i == j:\n",
" colors[i, j] = \"#add8e6\" # Светло-голубой\n",
" else:\n",
" colors[i, j] = \"#f08080\" # Бледно-красный\n",
" return colors\n",
"\n", "\n",
"fig, ax = plt.subplots(2, 2, figsize=(12, 10))\n", "fig, ax = plt.subplots(2, 2, figsize=(12, 10))\n",
"\n", "\n",
"for index, (key, model_info) in enumerate(class_models.items()):\n", "for index, (key, model_info) in enumerate(class_models.items()):\n",
" print(list(model_info.keys()))\n",
" c_matrix = model_info[\"Confusion_matrix\"]\n", " c_matrix = model_info[\"Confusion_matrix\"]\n",
" \n", " \n",
" # Генерация кастомных цветов\n",
" disp = ConfusionMatrixDisplay(\n", " disp = ConfusionMatrixDisplay(\n",
" confusion_matrix=c_matrix, display_labels=[\"Not stroke\", \"Stroke\"]\n", " confusion_matrix=c_matrix, display_labels=[\"Not stroke\", \"Stroke\"]\n",
" )\n", " ).plot(ax=ax.flat[index])\n",
" disp.plot(ax=ax.flat[index], cmap=custom_color_map(c_matrix), colorbar=False)\n",
" \n", " \n",
" disp.ax_.set_title(key)\n", " disp.ax_.set_title(key)\n",
"\n", "\n",
@ -1812,7 +1815,8 @@
" fig.delaxes(ax.flat[i])\n", " fig.delaxes(ax.flat[i])\n",
"\n", "\n",
"plt.subplots_adjust(top=0.9, bottom=0.1, hspace=0.4, wspace=0.3)\n", "plt.subplots_adjust(top=0.9, bottom=0.1, hspace=0.4, wspace=0.3)\n",
"plt.show()\n" "\n",
"plt.show()"
] ]
}, },
{ {

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lab_5/requirements.txt Normal file
View File

@ -0,0 +1,70 @@
asttokens==2.4.1
certifi==2024.8.30
charset-normalizer==3.4.0
cloudpickle==3.1.0
colorama==0.4.6
comm==0.2.2
contourpy==1.3.0
cycler==0.12.1
debugpy==1.8.5
decorator==5.1.1
executing==2.1.0
featuretools==1.31.0
filelock==3.16.1
fonttools==4.53.1
fsspec==2024.10.0
holidays==0.59
huggingface-hub==0.26.2
idna==3.10
imbalanced-learn==0.12.4
importlib_resources==6.4.5
ipykernel==6.29.5
ipython==8.27.0
jedi==0.19.1
Jinja2==3.1.4
joblib==1.4.2
jupyter_client==8.6.2
jupyter_core==5.7.2
kiwisolver==1.4.7
MarkupSafe==3.0.2
matplotlib==3.9.2
matplotlib-inline==0.1.7
nest-asyncio==1.6.0
numpy==2.1.1
packaging==24.1
pandas==2.2.2
parso==0.8.4
pillow==10.4.0
platformdirs==4.3.3
prompt_toolkit==3.0.47
psutil==6.0.0
pure_eval==0.2.3
Pygments==2.18.0
pyparsing==3.1.4
python-dateutil==2.9.0.post0
python-utils==3.9.0
pytz==2024.2
pywin32==306
PyYAML==6.0.2
pyzmq==26.2.0
regex==2024.11.6
requests==2.32.3
safetensors==0.4.5
scikit-learn==1.5.2
scipy==1.14.1
seaborn==0.13.2
setuptools==75.3.0
six==1.16.0
smogn==0.1.2
stack-data==0.6.3
threadpoolctl==3.5.0
tokenizers==0.20.3
tornado==6.4.1
tqdm==4.66.5
traitlets==5.14.3
transformers==4.46.2
typing_extensions==4.12.2
tzdata==2024.1
urllib3==2.2.3
wcwidth==0.2.13
woodwork==0.31.0

View File

@ -0,0 +1,502 @@
<#
.Synopsis
Activate a Python virtual environment for the current PowerShell session.
.Description
Pushes the python executable for a virtual environment to the front of the
$Env:PATH environment variable and sets the prompt to signify that you are
in a Python virtual environment. Makes use of the command line switches as
well as the `pyvenv.cfg` file values present in the virtual environment.
.Parameter VenvDir
Path to the directory that contains the virtual environment to activate. The
default value for this is the parent of the directory that the Activate.ps1
script is located within.
.Parameter Prompt
The prompt prefix to display when this virtual environment is activated. By
default, this prompt is the name of the virtual environment folder (VenvDir)
surrounded by parentheses and followed by a single space (ie. '(.venv) ').
.Example
Activate.ps1
Activates the Python virtual environment that contains the Activate.ps1 script.
.Example
Activate.ps1 -Verbose
Activates the Python virtual environment that contains the Activate.ps1 script,
and shows extra information about the activation as it executes.
.Example
Activate.ps1 -VenvDir C:\Users\MyUser\Common\.venv
Activates the Python virtual environment located in the specified location.
.Example
Activate.ps1 -Prompt "MyPython"
Activates the Python virtual environment that contains the Activate.ps1 script,
and prefixes the current prompt with the specified string (surrounded in
parentheses) while the virtual environment is active.
.Notes
On Windows, it may be required to enable this Activate.ps1 script by setting the
execution policy for the user. You can do this by issuing the following PowerShell
command:
PS C:\> Set-ExecutionPolicy -ExecutionPolicy RemoteSigned -Scope CurrentUser
For more information on Execution Policies:
https://go.microsoft.com/fwlink/?LinkID=135170
#>
Param(
[Parameter(Mandatory = $false)]
[String]
$VenvDir,
[Parameter(Mandatory = $false)]
[String]
$Prompt
)
<# Function declarations --------------------------------------------------- #>
<#
.Synopsis
Remove all shell session elements added by the Activate script, including the
addition of the virtual environment's Python executable from the beginning of
the PATH variable.
.Parameter NonDestructive
If present, do not remove this function from the global namespace for the
session.
#>
function global:deactivate ([switch]$NonDestructive) {
# Revert to original values
# The prior prompt:
if (Test-Path -Path Function:_OLD_VIRTUAL_PROMPT) {
Copy-Item -Path Function:_OLD_VIRTUAL_PROMPT -Destination Function:prompt
Remove-Item -Path Function:_OLD_VIRTUAL_PROMPT
}
# The prior PYTHONHOME:
if (Test-Path -Path Env:_OLD_VIRTUAL_PYTHONHOME) {
Copy-Item -Path Env:_OLD_VIRTUAL_PYTHONHOME -Destination Env:PYTHONHOME
Remove-Item -Path Env:_OLD_VIRTUAL_PYTHONHOME
}
# The prior PATH:
if (Test-Path -Path Env:_OLD_VIRTUAL_PATH) {
Copy-Item -Path Env:_OLD_VIRTUAL_PATH -Destination Env:PATH
Remove-Item -Path Env:_OLD_VIRTUAL_PATH
}
# Just remove the VIRTUAL_ENV altogether:
if (Test-Path -Path Env:VIRTUAL_ENV) {
Remove-Item -Path env:VIRTUAL_ENV
}
# Just remove VIRTUAL_ENV_PROMPT altogether.
if (Test-Path -Path Env:VIRTUAL_ENV_PROMPT) {
Remove-Item -Path env:VIRTUAL_ENV_PROMPT
}
# Just remove the _PYTHON_VENV_PROMPT_PREFIX altogether:
if (Get-Variable -Name "_PYTHON_VENV_PROMPT_PREFIX" -ErrorAction SilentlyContinue) {
Remove-Variable -Name _PYTHON_VENV_PROMPT_PREFIX -Scope Global -Force
}
# Leave deactivate function in the global namespace if requested:
if (-not $NonDestructive) {
Remove-Item -Path function:deactivate
}
}
<#
.Description
Get-PyVenvConfig parses the values from the pyvenv.cfg file located in the
given folder, and returns them in a map.
For each line in the pyvenv.cfg file, if that line can be parsed into exactly
two strings separated by `=` (with any amount of whitespace surrounding the =)
then it is considered a `key = value` line. The left hand string is the key,
the right hand is the value.
If the value starts with a `'` or a `"` then the first and last character is
stripped from the value before being captured.
.Parameter ConfigDir
Path to the directory that contains the `pyvenv.cfg` file.
#>
function Get-PyVenvConfig(
[String]
$ConfigDir
) {
Write-Verbose "Given ConfigDir=$ConfigDir, obtain values in pyvenv.cfg"
# Ensure the file exists, and issue a warning if it doesn't (but still allow the function to continue).
$pyvenvConfigPath = Join-Path -Resolve -Path $ConfigDir -ChildPath 'pyvenv.cfg' -ErrorAction Continue
# An empty map will be returned if no config file is found.
$pyvenvConfig = @{ }
if ($pyvenvConfigPath) {
Write-Verbose "File exists, parse `key = value` lines"
$pyvenvConfigContent = Get-Content -Path $pyvenvConfigPath
$pyvenvConfigContent | ForEach-Object {
$keyval = $PSItem -split "\s*=\s*", 2
if ($keyval[0] -and $keyval[1]) {
$val = $keyval[1]
# Remove extraneous quotations around a string value.
if ("'""".Contains($val.Substring(0, 1))) {
$val = $val.Substring(1, $val.Length - 2)
}
$pyvenvConfig[$keyval[0]] = $val
Write-Verbose "Adding Key: '$($keyval[0])'='$val'"
}
}
}
return $pyvenvConfig
}
<# Begin Activate script --------------------------------------------------- #>
# Determine the containing directory of this script
$VenvExecPath = Split-Path -Parent $MyInvocation.MyCommand.Definition
$VenvExecDir = Get-Item -Path $VenvExecPath
Write-Verbose "Activation script is located in path: '$VenvExecPath'"
Write-Verbose "VenvExecDir Fullname: '$($VenvExecDir.FullName)"
Write-Verbose "VenvExecDir Name: '$($VenvExecDir.Name)"
# Set values required in priority: CmdLine, ConfigFile, Default
# First, get the location of the virtual environment, it might not be
# VenvExecDir if specified on the command line.
if ($VenvDir) {
Write-Verbose "VenvDir given as parameter, using '$VenvDir' to determine values"
}
else {
Write-Verbose "VenvDir not given as a parameter, using parent directory name as VenvDir."
$VenvDir = $VenvExecDir.Parent.FullName.TrimEnd("\\/")
Write-Verbose "VenvDir=$VenvDir"
}
# Next, read the `pyvenv.cfg` file to determine any required value such
# as `prompt`.
$pyvenvCfg = Get-PyVenvConfig -ConfigDir $VenvDir
# Next, set the prompt from the command line, or the config file, or
# just use the name of the virtual environment folder.
if ($Prompt) {
Write-Verbose "Prompt specified as argument, using '$Prompt'"
}
else {
Write-Verbose "Prompt not specified as argument to script, checking pyvenv.cfg value"
if ($pyvenvCfg -and $pyvenvCfg['prompt']) {
Write-Verbose " Setting based on value in pyvenv.cfg='$($pyvenvCfg['prompt'])'"
$Prompt = $pyvenvCfg['prompt'];
}
else {
Write-Verbose " Setting prompt based on parent's directory's name. (Is the directory name passed to venv module when creating the virtual environment)"
Write-Verbose " Got leaf-name of $VenvDir='$(Split-Path -Path $venvDir -Leaf)'"
$Prompt = Split-Path -Path $venvDir -Leaf
}
}
Write-Verbose "Prompt = '$Prompt'"
Write-Verbose "VenvDir='$VenvDir'"
# Deactivate any currently active virtual environment, but leave the
# deactivate function in place.
deactivate -nondestructive
# Now set the environment variable VIRTUAL_ENV, used by many tools to determine
# that there is an activated venv.
$env:VIRTUAL_ENV = $VenvDir
if (-not $Env:VIRTUAL_ENV_DISABLE_PROMPT) {
Write-Verbose "Setting prompt to '$Prompt'"
# Set the prompt to include the env name
# Make sure _OLD_VIRTUAL_PROMPT is global
function global:_OLD_VIRTUAL_PROMPT { "" }
Copy-Item -Path function:prompt -Destination function:_OLD_VIRTUAL_PROMPT
New-Variable -Name _PYTHON_VENV_PROMPT_PREFIX -Description "Python virtual environment prompt prefix" -Scope Global -Option ReadOnly -Visibility Public -Value $Prompt
function global:prompt {
Write-Host -NoNewline -ForegroundColor Green "($_PYTHON_VENV_PROMPT_PREFIX) "
_OLD_VIRTUAL_PROMPT
}
$env:VIRTUAL_ENV_PROMPT = $Prompt
}
# Clear PYTHONHOME
if (Test-Path -Path Env:PYTHONHOME) {
Copy-Item -Path Env:PYTHONHOME -Destination Env:_OLD_VIRTUAL_PYTHONHOME
Remove-Item -Path Env:PYTHONHOME
}
# Add the venv to the PATH
Copy-Item -Path Env:PATH -Destination Env:_OLD_VIRTUAL_PATH
$Env:PATH = "$VenvExecDir$([System.IO.Path]::PathSeparator)$Env:PATH"
# SIG # Begin signature block
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# SIG # End signature block

View File

@ -0,0 +1,70 @@
# This file must be used with "source bin/activate" *from bash*
# You cannot run it directly
deactivate () {
# reset old environment variables
if [ -n "${_OLD_VIRTUAL_PATH:-}" ] ; then
PATH="${_OLD_VIRTUAL_PATH:-}"
export PATH
unset _OLD_VIRTUAL_PATH
fi
if [ -n "${_OLD_VIRTUAL_PYTHONHOME:-}" ] ; then
PYTHONHOME="${_OLD_VIRTUAL_PYTHONHOME:-}"
export PYTHONHOME
unset _OLD_VIRTUAL_PYTHONHOME
fi
# Call hash to forget past commands. Without forgetting
# past commands the $PATH changes we made may not be respected
hash -r 2> /dev/null
if [ -n "${_OLD_VIRTUAL_PS1:-}" ] ; then
PS1="${_OLD_VIRTUAL_PS1:-}"
export PS1
unset _OLD_VIRTUAL_PS1
fi
unset VIRTUAL_ENV
unset VIRTUAL_ENV_PROMPT
if [ ! "${1:-}" = "nondestructive" ] ; then
# Self destruct!
unset -f deactivate
fi
}
# unset irrelevant variables
deactivate nondestructive
# on Windows, a path can contain colons and backslashes and has to be converted:
if [ "${OSTYPE:-}" = "cygwin" ] || [ "${OSTYPE:-}" = "msys" ] ; then
# transform D:\path\to\venv to /d/path/to/venv on MSYS
# and to /cygdrive/d/path/to/venv on Cygwin
export VIRTUAL_ENV=$(cygpath "D:\code\mai\labs\AIM-PIbd-31-Bakalskaya-E-D\lab_5\vev")
else
# use the path as-is
export VIRTUAL_ENV="D:\code\mai\labs\AIM-PIbd-31-Bakalskaya-E-D\lab_5\vev"
fi
_OLD_VIRTUAL_PATH="$PATH"
PATH="$VIRTUAL_ENV/Scripts:$PATH"
export PATH
# unset PYTHONHOME if set
# this will fail if PYTHONHOME is set to the empty string (which is bad anyway)
# could use `if (set -u; : $PYTHONHOME) ;` in bash
if [ -n "${PYTHONHOME:-}" ] ; then
_OLD_VIRTUAL_PYTHONHOME="${PYTHONHOME:-}"
unset PYTHONHOME
fi
if [ -z "${VIRTUAL_ENV_DISABLE_PROMPT:-}" ] ; then
_OLD_VIRTUAL_PS1="${PS1:-}"
PS1="(vev) ${PS1:-}"
export PS1
VIRTUAL_ENV_PROMPT="(vev) "
export VIRTUAL_ENV_PROMPT
fi
# Call hash to forget past commands. Without forgetting
# past commands the $PATH changes we made may not be respected
hash -r 2> /dev/null

View File

@ -0,0 +1,34 @@
@echo off
rem This file is UTF-8 encoded, so we need to update the current code page while executing it
for /f "tokens=2 delims=:." %%a in ('"%SystemRoot%\System32\chcp.com"') do (
set _OLD_CODEPAGE=%%a
)
if defined _OLD_CODEPAGE (
"%SystemRoot%\System32\chcp.com" 65001 > nul
)
set VIRTUAL_ENV=D:\code\mai\labs\AIM-PIbd-31-Bakalskaya-E-D\lab_5\vev
if not defined PROMPT set PROMPT=$P$G
if defined _OLD_VIRTUAL_PROMPT set PROMPT=%_OLD_VIRTUAL_PROMPT%
if defined _OLD_VIRTUAL_PYTHONHOME set PYTHONHOME=%_OLD_VIRTUAL_PYTHONHOME%
set _OLD_VIRTUAL_PROMPT=%PROMPT%
set PROMPT=(vev) %PROMPT%
if defined PYTHONHOME set _OLD_VIRTUAL_PYTHONHOME=%PYTHONHOME%
set PYTHONHOME=
if defined _OLD_VIRTUAL_PATH set PATH=%_OLD_VIRTUAL_PATH%
if not defined _OLD_VIRTUAL_PATH set _OLD_VIRTUAL_PATH=%PATH%
set PATH=%VIRTUAL_ENV%\Scripts;%PATH%
set VIRTUAL_ENV_PROMPT=(vev)
:END
if defined _OLD_CODEPAGE (
"%SystemRoot%\System32\chcp.com" %_OLD_CODEPAGE% > nul
set _OLD_CODEPAGE=
)

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@echo off
if defined _OLD_VIRTUAL_PROMPT (
set "PROMPT=%_OLD_VIRTUAL_PROMPT%"
)
set _OLD_VIRTUAL_PROMPT=
if defined _OLD_VIRTUAL_PYTHONHOME (
set "PYTHONHOME=%_OLD_VIRTUAL_PYTHONHOME%"
set _OLD_VIRTUAL_PYTHONHOME=
)
if defined _OLD_VIRTUAL_PATH (
set "PATH=%_OLD_VIRTUAL_PATH%"
)
set _OLD_VIRTUAL_PATH=
set VIRTUAL_ENV=
set VIRTUAL_ENV_PROMPT=
:END

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# postinstall script for pywin32
#
# copies PyWinTypesxx.dll and PythonCOMxx.dll into the system directory,
# and creates a pth file
import glob
import os
import shutil
import sys
import sysconfig
try:
import winreg as winreg
except:
import winreg
# Send output somewhere so it can be found if necessary...
import tempfile
tee_f = open(os.path.join(tempfile.gettempdir(), "pywin32_postinstall.log"), "w")
class Tee:
def __init__(self, file):
self.f = file
def write(self, what):
if self.f is not None:
try:
self.f.write(what.replace("\n", "\r\n"))
except IOError:
pass
tee_f.write(what)
def flush(self):
if self.f is not None:
try:
self.f.flush()
except IOError:
pass
tee_f.flush()
# For some unknown reason, when running under bdist_wininst we will start up
# with sys.stdout as None but stderr is hooked up. This work-around allows
# bdist_wininst to see the output we write and display it at the end of
# the install.
if sys.stdout is None:
sys.stdout = sys.stderr
sys.stderr = Tee(sys.stderr)
sys.stdout = Tee(sys.stdout)
com_modules = [
# module_name, class_names
("win32com.servers.interp", "Interpreter"),
("win32com.servers.dictionary", "DictionaryPolicy"),
("win32com.axscript.client.pyscript", "PyScript"),
]
# Is this a 'silent' install - ie, avoid all dialogs.
# Different than 'verbose'
silent = 0
# Verbosity of output messages.
verbose = 1
root_key_name = "Software\\Python\\PythonCore\\" + sys.winver
try:
# When this script is run from inside the bdist_wininst installer,
# file_created() and directory_created() are additional builtin
# functions which write lines to Python23\pywin32-install.log. This is
# a list of actions for the uninstaller, the format is inspired by what
# the Wise installer also creates.
file_created
is_bdist_wininst = True
except NameError:
is_bdist_wininst = False # we know what it is not - but not what it is :)
def file_created(file):
pass
def directory_created(directory):
pass
def get_root_hkey():
try:
winreg.OpenKey(
winreg.HKEY_LOCAL_MACHINE, root_key_name, 0, winreg.KEY_CREATE_SUB_KEY
)
return winreg.HKEY_LOCAL_MACHINE
except OSError:
# Either not exist, or no permissions to create subkey means
# must be HKCU
return winreg.HKEY_CURRENT_USER
try:
create_shortcut
except NameError:
# Create a function with the same signature as create_shortcut provided
# by bdist_wininst
def create_shortcut(
path, description, filename, arguments="", workdir="", iconpath="", iconindex=0
):
import pythoncom
from win32com.shell import shell
ilink = pythoncom.CoCreateInstance(
shell.CLSID_ShellLink,
None,
pythoncom.CLSCTX_INPROC_SERVER,
shell.IID_IShellLink,
)
ilink.SetPath(path)
ilink.SetDescription(description)
if arguments:
ilink.SetArguments(arguments)
if workdir:
ilink.SetWorkingDirectory(workdir)
if iconpath or iconindex:
ilink.SetIconLocation(iconpath, iconindex)
# now save it.
ipf = ilink.QueryInterface(pythoncom.IID_IPersistFile)
ipf.Save(filename, 0)
# Support the same list of "path names" as bdist_wininst.
def get_special_folder_path(path_name):
from win32com.shell import shell, shellcon
for maybe in """
CSIDL_COMMON_STARTMENU CSIDL_STARTMENU CSIDL_COMMON_APPDATA
CSIDL_LOCAL_APPDATA CSIDL_APPDATA CSIDL_COMMON_DESKTOPDIRECTORY
CSIDL_DESKTOPDIRECTORY CSIDL_COMMON_STARTUP CSIDL_STARTUP
CSIDL_COMMON_PROGRAMS CSIDL_PROGRAMS CSIDL_PROGRAM_FILES_COMMON
CSIDL_PROGRAM_FILES CSIDL_FONTS""".split():
if maybe == path_name:
csidl = getattr(shellcon, maybe)
return shell.SHGetSpecialFolderPath(0, csidl, False)
raise ValueError("%s is an unknown path ID" % (path_name,))
def CopyTo(desc, src, dest):
import win32api
import win32con
while 1:
try:
win32api.CopyFile(src, dest, 0)
return
except win32api.error as details:
if details.winerror == 5: # access denied - user not admin.
raise
if silent:
# Running silent mode - just re-raise the error.
raise
full_desc = (
"Error %s\n\n"
"If you have any Python applications running, "
"please close them now\nand select 'Retry'\n\n%s"
% (desc, details.strerror)
)
rc = win32api.MessageBox(
0, full_desc, "Installation Error", win32con.MB_ABORTRETRYIGNORE
)
if rc == win32con.IDABORT:
raise
elif rc == win32con.IDIGNORE:
return
# else retry - around we go again.
# We need to import win32api to determine the Windows system directory,
# so we can copy our system files there - but importing win32api will
# load the pywintypes.dll already in the system directory preventing us
# from updating them!
# So, we pull the same trick pywintypes.py does, but it loads from
# our pywintypes_system32 directory.
def LoadSystemModule(lib_dir, modname):
# See if this is a debug build.
import importlib.machinery
import importlib.util
suffix = "_d" if "_d.pyd" in importlib.machinery.EXTENSION_SUFFIXES else ""
filename = "%s%d%d%s.dll" % (
modname,
sys.version_info[0],
sys.version_info[1],
suffix,
)
filename = os.path.join(lib_dir, "pywin32_system32", filename)
loader = importlib.machinery.ExtensionFileLoader(modname, filename)
spec = importlib.machinery.ModuleSpec(name=modname, loader=loader, origin=filename)
mod = importlib.util.module_from_spec(spec)
spec.loader.exec_module(mod)
def SetPyKeyVal(key_name, value_name, value):
root_hkey = get_root_hkey()
root_key = winreg.OpenKey(root_hkey, root_key_name)
try:
my_key = winreg.CreateKey(root_key, key_name)
try:
winreg.SetValueEx(my_key, value_name, 0, winreg.REG_SZ, value)
if verbose:
print("-> %s\\%s[%s]=%r" % (root_key_name, key_name, value_name, value))
finally:
my_key.Close()
finally:
root_key.Close()
def UnsetPyKeyVal(key_name, value_name, delete_key=False):
root_hkey = get_root_hkey()
root_key = winreg.OpenKey(root_hkey, root_key_name)
try:
my_key = winreg.OpenKey(root_key, key_name, 0, winreg.KEY_SET_VALUE)
try:
winreg.DeleteValue(my_key, value_name)
if verbose:
print("-> DELETE %s\\%s[%s]" % (root_key_name, key_name, value_name))
finally:
my_key.Close()
if delete_key:
winreg.DeleteKey(root_key, key_name)
if verbose:
print("-> DELETE %s\\%s" % (root_key_name, key_name))
except OSError as why:
winerror = getattr(why, "winerror", why.errno)
if winerror != 2: # file not found
raise
finally:
root_key.Close()
def RegisterCOMObjects(register=True):
import win32com.server.register
if register:
func = win32com.server.register.RegisterClasses
else:
func = win32com.server.register.UnregisterClasses
flags = {}
if not verbose:
flags["quiet"] = 1
for module, klass_name in com_modules:
__import__(module)
mod = sys.modules[module]
flags["finalize_register"] = getattr(mod, "DllRegisterServer", None)
flags["finalize_unregister"] = getattr(mod, "DllUnregisterServer", None)
klass = getattr(mod, klass_name)
func(klass, **flags)
def RegisterHelpFile(register=True, lib_dir=None):
if lib_dir is None:
lib_dir = sysconfig.get_paths()["platlib"]
if register:
# Register the .chm help file.
chm_file = os.path.join(lib_dir, "PyWin32.chm")
if os.path.isfile(chm_file):
# This isn't recursive, so if 'Help' doesn't exist, we croak
SetPyKeyVal("Help", None, None)
SetPyKeyVal("Help\\Pythonwin Reference", None, chm_file)
return chm_file
else:
print("NOTE: PyWin32.chm can not be located, so has not " "been registered")
else:
UnsetPyKeyVal("Help\\Pythonwin Reference", None, delete_key=True)
return None
def RegisterPythonwin(register=True, lib_dir=None):
"""Add (or remove) Pythonwin to context menu for python scripts.
??? Should probably also add Edit command for pys files also.
Also need to remove these keys on uninstall, but there's no function
like file_created to add registry entries to uninstall log ???
"""
import os
if lib_dir is None:
lib_dir = sysconfig.get_paths()["platlib"]
classes_root = get_root_hkey()
## Installer executable doesn't seem to pass anything to postinstall script indicating if it's a debug build,
pythonwin_exe = os.path.join(lib_dir, "Pythonwin", "Pythonwin.exe")
pythonwin_edit_command = pythonwin_exe + ' -edit "%1"'
keys_vals = [
(
"Software\\Microsoft\\Windows\\CurrentVersion\\App Paths\\Pythonwin.exe",
"",
pythonwin_exe,
),
(
"Software\\Classes\\Python.File\\shell\\Edit with Pythonwin",
"command",
pythonwin_edit_command,
),
(
"Software\\Classes\\Python.NoConFile\\shell\\Edit with Pythonwin",
"command",
pythonwin_edit_command,
),
]
try:
if register:
for key, sub_key, val in keys_vals:
## Since winreg only uses the character Api functions, this can fail if Python
## is installed to a path containing non-ascii characters
hkey = winreg.CreateKey(classes_root, key)
if sub_key:
hkey = winreg.CreateKey(hkey, sub_key)
winreg.SetValueEx(hkey, None, 0, winreg.REG_SZ, val)
hkey.Close()
else:
for key, sub_key, val in keys_vals:
try:
if sub_key:
hkey = winreg.OpenKey(classes_root, key)
winreg.DeleteKey(hkey, sub_key)
hkey.Close()
winreg.DeleteKey(classes_root, key)
except OSError as why:
winerror = getattr(why, "winerror", why.errno)
if winerror != 2: # file not found
raise
finally:
# tell windows about the change
from win32com.shell import shell, shellcon
shell.SHChangeNotify(
shellcon.SHCNE_ASSOCCHANGED, shellcon.SHCNF_IDLIST, None, None
)
def get_shortcuts_folder():
if get_root_hkey() == winreg.HKEY_LOCAL_MACHINE:
try:
fldr = get_special_folder_path("CSIDL_COMMON_PROGRAMS")
except OSError:
# No CSIDL_COMMON_PROGRAMS on this platform
fldr = get_special_folder_path("CSIDL_PROGRAMS")
else:
# non-admin install - always goes in this user's start menu.
fldr = get_special_folder_path("CSIDL_PROGRAMS")
try:
install_group = winreg.QueryValue(
get_root_hkey(), root_key_name + "\\InstallPath\\InstallGroup"
)
except OSError:
vi = sys.version_info
install_group = "Python %d.%d" % (vi[0], vi[1])
return os.path.join(fldr, install_group)
# Get the system directory, which may be the Wow64 directory if we are a 32bit
# python on a 64bit OS.
def get_system_dir():
import win32api # we assume this exists.
try:
import pythoncom
import win32process
from win32com.shell import shell, shellcon
try:
if win32process.IsWow64Process():
return shell.SHGetSpecialFolderPath(0, shellcon.CSIDL_SYSTEMX86)
return shell.SHGetSpecialFolderPath(0, shellcon.CSIDL_SYSTEM)
except (pythoncom.com_error, win32process.error):
return win32api.GetSystemDirectory()
except ImportError:
return win32api.GetSystemDirectory()
def fixup_dbi():
# We used to have a dbi.pyd with our .pyd files, but now have a .py file.
# If the user didn't uninstall, they will find the .pyd which will cause
# problems - so handle that.
import win32api
import win32con
pyd_name = os.path.join(os.path.dirname(win32api.__file__), "dbi.pyd")
pyd_d_name = os.path.join(os.path.dirname(win32api.__file__), "dbi_d.pyd")
py_name = os.path.join(os.path.dirname(win32con.__file__), "dbi.py")
for this_pyd in (pyd_name, pyd_d_name):
this_dest = this_pyd + ".old"
if os.path.isfile(this_pyd) and os.path.isfile(py_name):
try:
if os.path.isfile(this_dest):
print(
"Old dbi '%s' already exists - deleting '%s'"
% (this_dest, this_pyd)
)
os.remove(this_pyd)
else:
os.rename(this_pyd, this_dest)
print("renamed '%s'->'%s.old'" % (this_pyd, this_pyd))
file_created(this_pyd + ".old")
except os.error as exc:
print("FAILED to rename '%s': %s" % (this_pyd, exc))
def install(lib_dir):
import traceback
# The .pth file is now installed as a regular file.
# Create the .pth file in the site-packages dir, and use only relative paths
# We used to write a .pth directly to sys.prefix - clobber it.
if os.path.isfile(os.path.join(sys.prefix, "pywin32.pth")):
os.unlink(os.path.join(sys.prefix, "pywin32.pth"))
# The .pth may be new and therefore not loaded in this session.
# Setup the paths just in case.
for name in "win32 win32\\lib Pythonwin".split():
sys.path.append(os.path.join(lib_dir, name))
# It is possible people with old versions installed with still have
# pywintypes and pythoncom registered. We no longer need this, and stale
# entries hurt us.
for name in "pythoncom pywintypes".split():
keyname = "Software\\Python\\PythonCore\\" + sys.winver + "\\Modules\\" + name
for root in winreg.HKEY_LOCAL_MACHINE, winreg.HKEY_CURRENT_USER:
try:
winreg.DeleteKey(root, keyname + "\\Debug")
except WindowsError:
pass
try:
winreg.DeleteKey(root, keyname)
except WindowsError:
pass
LoadSystemModule(lib_dir, "pywintypes")
LoadSystemModule(lib_dir, "pythoncom")
import win32api
# and now we can get the system directory:
files = glob.glob(os.path.join(lib_dir, "pywin32_system32\\*.*"))
if not files:
raise RuntimeError("No system files to copy!!")
# Try the system32 directory first - if that fails due to "access denied",
# it implies a non-admin user, and we use sys.prefix
for dest_dir in [get_system_dir(), sys.prefix]:
# and copy some files over there
worked = 0
try:
for fname in files:
base = os.path.basename(fname)
dst = os.path.join(dest_dir, base)
CopyTo("installing %s" % base, fname, dst)
if verbose:
print("Copied %s to %s" % (base, dst))
# Register the files with the uninstaller
file_created(dst)
worked = 1
# Nuke any other versions that may exist - having
# duplicates causes major headaches.
bad_dest_dirs = [
os.path.join(sys.prefix, "Library\\bin"),
os.path.join(sys.prefix, "Lib\\site-packages\\win32"),
]
if dest_dir != sys.prefix:
bad_dest_dirs.append(sys.prefix)
for bad_dest_dir in bad_dest_dirs:
bad_fname = os.path.join(bad_dest_dir, base)
if os.path.exists(bad_fname):
# let exceptions go here - delete must succeed
os.unlink(bad_fname)
if worked:
break
except win32api.error as details:
if details.winerror == 5:
# access denied - user not admin - try sys.prefix dir,
# but first check that a version doesn't already exist
# in that place - otherwise that one will still get used!
if os.path.exists(dst):
msg = (
"The file '%s' exists, but can not be replaced "
"due to insufficient permissions. You must "
"reinstall this software as an Administrator" % dst
)
print(msg)
raise RuntimeError(msg)
continue
raise
else:
raise RuntimeError(
"You don't have enough permissions to install the system files"
)
# Pythonwin 'compiles' config files - record them for uninstall.
pywin_dir = os.path.join(lib_dir, "Pythonwin", "pywin")
for fname in glob.glob(os.path.join(pywin_dir, "*.cfg")):
file_created(fname[:-1] + "c") # .cfg->.cfc
# Register our demo COM objects.
try:
try:
RegisterCOMObjects()
except win32api.error as details:
if details.winerror != 5: # ERROR_ACCESS_DENIED
raise
print("You do not have the permissions to install COM objects.")
print("The sample COM objects were not registered.")
except Exception:
print("FAILED to register the Python COM objects")
traceback.print_exc()
# There may be no main Python key in HKCU if, eg, an admin installed
# python itself.
winreg.CreateKey(get_root_hkey(), root_key_name)
chm_file = None
try:
chm_file = RegisterHelpFile(True, lib_dir)
except Exception:
print("Failed to register help file")
traceback.print_exc()
else:
if verbose:
print("Registered help file")
# misc other fixups.
fixup_dbi()
# Register Pythonwin in context menu
try:
RegisterPythonwin(True, lib_dir)
except Exception:
print("Failed to register pythonwin as editor")
traceback.print_exc()
else:
if verbose:
print("Pythonwin has been registered in context menu")
# Create the win32com\gen_py directory.
make_dir = os.path.join(lib_dir, "win32com", "gen_py")
if not os.path.isdir(make_dir):
if verbose:
print("Creating directory %s" % (make_dir,))
directory_created(make_dir)
os.mkdir(make_dir)
try:
# create shortcuts
# CSIDL_COMMON_PROGRAMS only available works on NT/2000/XP, and
# will fail there if the user has no admin rights.
fldr = get_shortcuts_folder()
# If the group doesn't exist, then we don't make shortcuts - its
# possible that this isn't a "normal" install.
if os.path.isdir(fldr):
dst = os.path.join(fldr, "PythonWin.lnk")
create_shortcut(
os.path.join(lib_dir, "Pythonwin\\Pythonwin.exe"),
"The Pythonwin IDE",
dst,
"",
sys.prefix,
)
file_created(dst)
if verbose:
print("Shortcut for Pythonwin created")
# And the docs.
if chm_file:
dst = os.path.join(fldr, "Python for Windows Documentation.lnk")
doc = "Documentation for the PyWin32 extensions"
create_shortcut(chm_file, doc, dst)
file_created(dst)
if verbose:
print("Shortcut to documentation created")
else:
if verbose:
print("Can't install shortcuts - %r is not a folder" % (fldr,))
except Exception as details:
print(details)
# importing win32com.client ensures the gen_py dir created - not strictly
# necessary to do now, but this makes the installation "complete"
try:
import win32com.client # noqa
except ImportError:
# Don't let this error sound fatal
pass
print("The pywin32 extensions were successfully installed.")
if is_bdist_wininst:
# Open a web page with info about the .exe installers being deprecated.
import webbrowser
try:
webbrowser.open("https://mhammond.github.io/pywin32_installers.html")
except webbrowser.Error:
print("Please visit https://mhammond.github.io/pywin32_installers.html")
def uninstall(lib_dir):
# First ensure our system modules are loaded from pywin32_system, so
# we can remove the ones we copied...
LoadSystemModule(lib_dir, "pywintypes")
LoadSystemModule(lib_dir, "pythoncom")
try:
RegisterCOMObjects(False)
except Exception as why:
print("Failed to unregister COM objects: %s" % (why,))
try:
RegisterHelpFile(False, lib_dir)
except Exception as why:
print("Failed to unregister help file: %s" % (why,))
else:
if verbose:
print("Unregistered help file")
try:
RegisterPythonwin(False, lib_dir)
except Exception as why:
print("Failed to unregister Pythonwin: %s" % (why,))
else:
if verbose:
print("Unregistered Pythonwin")
try:
# remove gen_py directory.
gen_dir = os.path.join(lib_dir, "win32com", "gen_py")
if os.path.isdir(gen_dir):
shutil.rmtree(gen_dir)
if verbose:
print("Removed directory %s" % (gen_dir,))
# Remove pythonwin compiled "config" files.
pywin_dir = os.path.join(lib_dir, "Pythonwin", "pywin")
for fname in glob.glob(os.path.join(pywin_dir, "*.cfc")):
os.remove(fname)
# The dbi.pyd.old files we may have created.
try:
os.remove(os.path.join(lib_dir, "win32", "dbi.pyd.old"))
except os.error:
pass
try:
os.remove(os.path.join(lib_dir, "win32", "dbi_d.pyd.old"))
except os.error:
pass
except Exception as why:
print("Failed to remove misc files: %s" % (why,))
try:
fldr = get_shortcuts_folder()
for link in ("PythonWin.lnk", "Python for Windows Documentation.lnk"):
fqlink = os.path.join(fldr, link)
if os.path.isfile(fqlink):
os.remove(fqlink)
if verbose:
print("Removed %s" % (link,))
except Exception as why:
print("Failed to remove shortcuts: %s" % (why,))
# Now remove the system32 files.
files = glob.glob(os.path.join(lib_dir, "pywin32_system32\\*.*"))
# Try the system32 directory first - if that fails due to "access denied",
# it implies a non-admin user, and we use sys.prefix
try:
for dest_dir in [get_system_dir(), sys.prefix]:
# and copy some files over there
worked = 0
for fname in files:
base = os.path.basename(fname)
dst = os.path.join(dest_dir, base)
if os.path.isfile(dst):
try:
os.remove(dst)
worked = 1
if verbose:
print("Removed file %s" % (dst))
except Exception:
print("FAILED to remove %s" % (dst,))
if worked:
break
except Exception as why:
print("FAILED to remove system files: %s" % (why,))
# NOTE: If this script is run from inside the bdist_wininst created
# binary installer or uninstaller, the command line args are either
# '-install' or '-remove'.
# Important: From inside the binary installer this script MUST NOT
# call sys.exit() or raise SystemExit, otherwise not only this script
# but also the installer will terminate! (Is there a way to prevent
# this from the bdist_wininst C code?)
def verify_destination(location):
if not os.path.isdir(location):
raise argparse.ArgumentTypeError('Path "{}" does not exist!'.format(location))
return location
def main():
import argparse
parser = argparse.ArgumentParser(
formatter_class=argparse.RawDescriptionHelpFormatter,
description="""A post-install script for the pywin32 extensions.
* Typical usage:
> python pywin32_postinstall.py -install
If you installed pywin32 via a .exe installer, this should be run
automatically after installation, but if it fails you can run it again.
If you installed pywin32 via PIP, you almost certainly need to run this to
setup the environment correctly.
Execute with script with a '-install' parameter, to ensure the environment
is setup correctly.
""",
)
parser.add_argument(
"-install",
default=False,
action="store_true",
help="Configure the Python environment correctly for pywin32.",
)
parser.add_argument(
"-remove",
default=False,
action="store_true",
help="Try and remove everything that was installed or copied.",
)
parser.add_argument(
"-wait",
type=int,
help="Wait for the specified process to terminate before starting.",
)
parser.add_argument(
"-silent",
default=False,
action="store_true",
help='Don\'t display the "Abort/Retry/Ignore" dialog for files in use.',
)
parser.add_argument(
"-quiet",
default=False,
action="store_true",
help="Don't display progress messages.",
)
parser.add_argument(
"-destination",
default=sysconfig.get_paths()["platlib"],
type=verify_destination,
help="Location of the PyWin32 installation",
)
args = parser.parse_args()
if not args.quiet:
print("Parsed arguments are: {}".format(args))
if not args.install ^ args.remove:
parser.error("You need to either choose to -install or -remove!")
if args.wait is not None:
try:
os.waitpid(args.wait, 0)
except os.error:
# child already dead
pass
silent = args.silent
verbose = not args.quiet
if args.install:
install(args.destination)
if args.remove:
if not is_bdist_wininst:
uninstall(args.destination)
if __name__ == "__main__":
main()

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@ -0,0 +1,124 @@
"""A test runner for pywin32"""
import os
import site
import subprocess
import sys
# locate the dirs based on where this script is - it may be either in the
# source tree, or in an installed Python 'Scripts' tree.
this_dir = os.path.dirname(__file__)
site_packages = [
site.getusersitepackages(),
] + site.getsitepackages()
failures = []
# Run a test using subprocess and wait for the result.
# If we get an returncode != 0, we know that there was an error, but we don't
# abort immediately - we run as many tests as we can.
def run_test(script, cmdline_extras):
dirname, scriptname = os.path.split(script)
# some tests prefer to be run from their directory.
cmd = [sys.executable, "-u", scriptname] + cmdline_extras
print("--- Running '%s' ---" % script)
sys.stdout.flush()
result = subprocess.run(cmd, check=False, cwd=dirname)
print("*** Test script '%s' exited with %s" % (script, result.returncode))
sys.stdout.flush()
if result.returncode:
failures.append(script)
def find_and_run(possible_locations, extras):
for maybe in possible_locations:
if os.path.isfile(maybe):
run_test(maybe, extras)
break
else:
raise RuntimeError(
"Failed to locate a test script in one of %s" % possible_locations
)
def main():
import argparse
code_directories = [this_dir] + site_packages
parser = argparse.ArgumentParser(
description="A script to trigger tests in all subprojects of PyWin32."
)
parser.add_argument(
"-no-user-interaction",
default=False,
action="store_true",
help="(This is now the default - use `-user-interaction` to include them)",
)
parser.add_argument(
"-user-interaction",
action="store_true",
help="Include tests which require user interaction",
)
parser.add_argument(
"-skip-adodbapi",
default=False,
action="store_true",
help="Skip the adodbapi tests; useful for CI where there's no provider",
)
args, remains = parser.parse_known_args()
# win32, win32ui / Pythonwin
extras = []
if args.user_interaction:
extras += ["-user-interaction"]
extras.extend(remains)
scripts = [
"win32/test/testall.py",
"Pythonwin/pywin/test/all.py",
]
for script in scripts:
maybes = [os.path.join(directory, script) for directory in code_directories]
find_and_run(maybes, extras)
# win32com
maybes = [
os.path.join(directory, "win32com", "test", "testall.py")
for directory in [
os.path.join(this_dir, "com"),
]
+ site_packages
]
extras = remains + ["1"] # only run "level 1" tests in CI
find_and_run(maybes, extras)
# adodbapi
if not args.skip_adodbapi:
maybes = [
os.path.join(directory, "adodbapi", "test", "adodbapitest.py")
for directory in code_directories
]
find_and_run(maybes, remains)
# This script has a hard-coded sql server name in it, (and markh typically
# doesn't have a different server to test on) but there is now supposed to be a server out there on the Internet
# just to run these tests, so try it...
maybes = [
os.path.join(directory, "adodbapi", "test", "test_adodbapi_dbapi20.py")
for directory in code_directories
]
find_and_run(maybes, remains)
if failures:
print("The following scripts failed")
for failure in failures:
print(">", failure)
sys.exit(1)
print("All tests passed \\o/")
if __name__ == "__main__":
main()

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home = C:\Users\elena\AppData\Local\Programs\Python\Python312
include-system-site-packages = false
version = 3.12.6
executable = C:\Users\elena\AppData\Local\Programs\Python\Python312\python.exe
command = C:\Users\elena\AppData\Local\Programs\Python\Python312\python.exe -m venv D:\code\mai\labs\AIM-PIbd-31-Bakalskaya-E-D\lab_5\vev

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@ -0,0 +1,14 @@
{
"argv": [
"python",
"-m",
"ipykernel_launcher",
"-f",
"{connection_file}"
],
"display_name": "Python 3 (ipykernel)",
"language": "python",
"metadata": {
"debugger": true
}
}

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.\" Hey, EMACS: -*- nroff -*-
.\" First parameter, NAME, should be all caps
.\" Second parameter, SECTION, should be 1-8, maybe w/ subsection
.\" other parameters are allowed: see man(7), man(1)
.TH IPYTHON 1 "July 15, 2011"
.\" Please adjust this date whenever revising the manpage.
.\"
.\" Some roff macros, for reference:
.\" .nh disable hyphenation
.\" .hy enable hyphenation
.\" .ad l left justify
.\" .ad b justify to both left and right margins
.\" .nf disable filling
.\" .fi enable filling
.\" .br insert line break
.\" .sp <n> insert n+1 empty lines
.\" for manpage-specific macros, see man(7) and groff_man(7)
.\" .SH section heading
.\" .SS secondary section heading
.\"
.\"
.\" To preview this page as plain text: nroff -man ipython.1
.\"
.SH NAME
ipython \- Tools for Interactive Computing in Python.
.SH SYNOPSIS
.B ipython
.RI [ options ] " files" ...
.B ipython subcommand
.RI [ options ] ...
.SH DESCRIPTION
An interactive Python shell with automatic history (input and output), dynamic
object introspection, easier configuration, command completion, access to the
system shell, integration with numerical and scientific computing tools,
web notebook, Qt console, and more.
For more information on how to use IPython, see 'ipython \-\-help',
or 'ipython \-\-help\-all' for all available command\(hyline options.
.SH "ENVIRONMENT VARIABLES"
.sp
.PP
\fIIPYTHONDIR\fR
.RS 4
This is the location where IPython stores all its configuration files. The default
is $HOME/.ipython if IPYTHONDIR is not defined.
You can see the computed value of IPYTHONDIR with `ipython locate`.
.SH FILES
IPython uses various configuration files stored in profiles within IPYTHONDIR.
To generate the default configuration files and start configuring IPython,
do 'ipython profile create', and edit '*_config.py' files located in
IPYTHONDIR/profile_default.
.SH AUTHORS
IPython is written by the IPython Development Team <https://github.com/ipython/ipython>.

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@ -0,0 +1,225 @@
.Dd May 18, 2004
.\" ttx is not specific to any OS, but contrary to what groff_mdoc(7)
.\" seems to imply, entirely omitting the .Os macro causes 'BSD' to
.\" be used, so I give a zero-width space as its argument.
.Os \&
.\" The "FontTools Manual" argument apparently has no effect in
.\" groff 1.18.1. I think it is a bug in the -mdoc groff package.
.Dt TTX 1 "FontTools Manual"
.Sh NAME
.Nm ttx
.Nd tool for manipulating TrueType and OpenType fonts
.Sh SYNOPSIS
.Nm
.Bk
.Op Ar option ...
.Ek
.Bk
.Ar file ...
.Ek
.Sh DESCRIPTION
.Nm
is a tool for manipulating TrueType and OpenType fonts. It can convert
TrueType and OpenType fonts to and from an
.Tn XML Ns -based format called
.Tn TTX .
.Tn TTX
files have a
.Ql .ttx
extension.
.Pp
For each
.Ar file
argument it is given,
.Nm
detects whether it is a
.Ql .ttf ,
.Ql .otf
or
.Ql .ttx
file and acts accordingly: if it is a
.Ql .ttf
or
.Ql .otf
file, it generates a
.Ql .ttx
file; if it is a
.Ql .ttx
file, it generates a
.Ql .ttf
or
.Ql .otf
file.
.Pp
By default, every output file is created in the same directory as the
corresponding input file and with the same name except for the
extension, which is substituted appropriately.
.Nm
never overwrites existing files; if necessary, it appends a suffix to
the output file name before the extension, as in
.Pa Arial#1.ttf .
.Ss "General options"
.Bl -tag -width ".Fl t Ar table"
.It Fl h
Display usage information.
.It Fl d Ar dir
Write the output files to directory
.Ar dir
instead of writing every output file to the same directory as the
corresponding input file.
.It Fl o Ar file
Write the output to
.Ar file
instead of writing it to the same directory as the
corresponding input file.
.It Fl v
Be verbose. Write more messages to the standard output describing what
is being done.
.It Fl a
Allow virtual glyphs ID's on compile or decompile.
.El
.Ss "Dump options"
The following options control the process of dumping font files
(TrueType or OpenType) to
.Tn TTX
files.
.Bl -tag -width ".Fl t Ar table"
.It Fl l
List table information. Instead of dumping the font to a
.Tn TTX
file, display minimal information about each table.
.It Fl t Ar table
Dump table
.Ar table .
This option may be given multiple times to dump several tables at
once. When not specified, all tables are dumped.
.It Fl x Ar table
Exclude table
.Ar table
from the list of tables to dump. This option may be given multiple
times to exclude several tables from the dump. The
.Fl t
and
.Fl x
options are mutually exclusive.
.It Fl s
Split tables. Dump each table to a separate
.Tn TTX
file and write (under the name that would have been used for the output
file if the
.Fl s
option had not been given) one small
.Tn TTX
file containing references to the individual table dump files. This
file can be used as input to
.Nm
as long as the referenced files can be found in the same directory.
.It Fl i
.\" XXX: I suppose OpenType programs (exist and) are also affected.
Don't disassemble TrueType instructions. When this option is specified,
all TrueType programs (glyph programs, the font program and the
pre-program) are written to the
.Tn TTX
file as hexadecimal data instead of
assembly. This saves some time and results in smaller
.Tn TTX
files.
.It Fl y Ar n
When decompiling a TrueType Collection (TTC) file,
decompile font number
.Ar n ,
starting from 0.
.El
.Ss "Compilation options"
The following options control the process of compiling
.Tn TTX
files into font files (TrueType or OpenType):
.Bl -tag -width ".Fl t Ar table"
.It Fl m Ar fontfile
Merge the input
.Tn TTX
file
.Ar file
with
.Ar fontfile .
No more than one
.Ar file
argument can be specified when this option is used.
.It Fl b
Don't recalculate glyph bounding boxes. Use the values in the
.Tn TTX
file as is.
.El
.Sh "THE TTX FILE FORMAT"
You can find some information about the
.Tn TTX
file format in
.Pa documentation.html .
In particular, you will find in that file the list of tables understood by
.Nm
and the relations between TrueType GlyphIDs and the glyph names used in
.Tn TTX
files.
.Sh EXAMPLES
In the following examples, all files are read from and written to the
current directory. Additionally, the name given for the output file
assumes in every case that it did not exist before
.Nm
was invoked.
.Pp
Dump the TrueType font contained in
.Pa FreeSans.ttf
to
.Pa FreeSans.ttx :
.Pp
.Dl ttx FreeSans.ttf
.Pp
Compile
.Pa MyFont.ttx
into a TrueType or OpenType font file:
.Pp
.Dl ttx MyFont.ttx
.Pp
List the tables in
.Pa FreeSans.ttf
along with some information:
.Pp
.Dl ttx -l FreeSans.ttf
.Pp
Dump the
.Sq cmap
table from
.Pa FreeSans.ttf
to
.Pa FreeSans.ttx :
.Pp
.Dl ttx -t cmap FreeSans.ttf
.Sh NOTES
On MS\-Windows and MacOS,
.Nm
is available as a graphical application to which files can be dropped.
.Sh SEE ALSO
.Pa documentation.html
.Pp
.Xr fontforge 1 ,
.Xr ftinfo 1 ,
.Xr gfontview 1 ,
.Xr xmbdfed 1 ,
.Xr Font::TTF 3pm
.Sh AUTHORS
.Nm
was written by
.An -nosplit
.An "Just van Rossum" Aq just@letterror.com .
.Pp
This manual page was written by
.An "Florent Rougon" Aq f.rougon@free.fr
for the Debian GNU/Linux system based on the existing FontTools
documentation. It may be freely used, modified and distributed without
restrictions.
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