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app.py 3.5 KB

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  1. # The data set used in this example is from http://archive.ics.uci.edu/ml/datasets/Wine+Quality
  2. # P. Cortez, A. Cerdeira, F. Almeida, T. Matos and J. Reis.
  3. # Modeling wine preferences by data mining from physicochemical properties. In Decision Support Systems, Elsevier, 47(4):547-553, 2009.
  4. import os
  5. import warnings
  6. import sys
  7. import pandas as pd
  8. import numpy as np
  9. from sklearn.metrics import mean_squared_error, mean_absolute_error, r2_score
  10. from sklearn.model_selection import train_test_split
  11. from sklearn.linear_model import ElasticNet
  12. from urllib.parse import urlparse
  13. import mlflow
  14. from mlflow.models import infer_signature
  15. import mlflow.sklearn
  16. import logging
  17. logging.basicConfig(level=logging.DEBUG)
  18. logger = logging.getLogger(__name__)
  19. logging.getLogger("mlflow").setLevel(logging.DEBUG)
  20. def eval_metrics(actual, pred):
  21. rmse = np.sqrt(mean_squared_error(actual, pred))
  22. mae = mean_absolute_error(actual, pred)
  23. r2 = r2_score(actual, pred)
  24. return rmse, mae, r2
  25. if __name__ == "__main__":
  26. warnings.filterwarnings("ignore")
  27. np.random.seed(40)
  28. # Read the wine-quality csv file from the URL
  29. csv_url = (
  30. "https://raw.githubusercontent.com/mlflow/mlflow/master/tests/datasets/winequality-red.csv"
  31. )
  32. try:
  33. data = pd.read_csv(csv_url, sep=";")
  34. except Exception as e:
  35. logger.exception(
  36. "Unable to download training & test CSV, check your internet connection. Error: %s", e
  37. )
  38. # Split the data into training and test sets. (0.75, 0.25) split.
  39. train, test = train_test_split(data)
  40. # The predicted column is "quality" which is a scalar from [3, 9]
  41. train_x = train.drop(["quality"], axis=1)
  42. test_x = test.drop(["quality"], axis=1)
  43. train_y = train[["quality"]]
  44. test_y = test[["quality"]]
  45. alpha = float(sys.argv[1]) if len(sys.argv) > 1 else 0.5
  46. l1_ratio = float(sys.argv[2]) if len(sys.argv) > 2 else 0.5
  47. with mlflow.start_run():
  48. lr = ElasticNet(alpha=alpha, l1_ratio=l1_ratio, random_state=42)
  49. lr.fit(train_x, train_y)
  50. predicted_qualities = lr.predict(test_x)
  51. (rmse, mae, r2) = eval_metrics(test_y, predicted_qualities)
  52. print("Elasticnet model (alpha={:f}, l1_ratio={:f}):".format(alpha, l1_ratio))
  53. print(" RMSE: %s" % rmse)
  54. print(" MAE: %s" % mae)
  55. print(" R2: %s" % r2)
  56. mlflow.log_param("alpha", alpha)
  57. mlflow.log_param("l1_ratio", l1_ratio)
  58. mlflow.log_metric("rmse", rmse)
  59. mlflow.log_metric("r2", r2)
  60. mlflow.log_metric("mae", mae)
  61. predictions = lr.predict(train_x)
  62. signature = infer_signature(train_x, predictions)
  63. # Remote Server set to Dagshub
  64. remote_server_uri = "https://dagshub.com/kalema3502/mlflow_test.mlflow"
  65. mlflow.set_tracking_uri(remote_server_uri)
  66. # Remove code above to use the local server
  67. tracking_url_type_store = urlparse(mlflow.get_tracking_uri()).scheme
  68. # Model registry does not work with file store
  69. if tracking_url_type_store != "file":
  70. # Register the model
  71. # There are other ways to use the Model Registry, which depends on the use case,
  72. # please refer to the doc for more information:
  73. # https://mlflow.org/docs/latest/model-registry.html#api-workflow
  74. mlflow.sklearn.log_model(
  75. lr, "model", registered_model_name="ElasticnetWineModel", signature=signature
  76. )
  77. else:
  78. mlflow.sklearn.log_model(lr, "model", signature=signature)
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