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python saddle points
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python/saddle-points/.exercism/metadata.json
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python/saddle-points/.exercism/metadata.json
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{"track":"python","exercise":"saddle-points","id":"142ada3a5e35437baa24b9bddb78a991","url":"https://exercism.io/my/solutions/142ada3a5e35437baa24b9bddb78a991","handle":"Xevion","is_requester":true,"auto_approve":false}
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python/saddle-points/README.md
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python/saddle-points/README.md
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# Saddle Points
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Detect saddle points in a matrix.
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So say you have a matrix like so:
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```text
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1 2 3
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|---------
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1 | 9 8 7
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2 | 5 3 2 <--- saddle point at (2,1)
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3 | 6 6 7
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```
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It has a saddle point at (2, 1).
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It's called a "saddle point" because it is greater than or equal to
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every element in its row and less than or equal to every element in
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its column.
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A matrix may have zero or more saddle points.
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Your code should be able to provide the (possibly empty) list of all the
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saddle points for any given matrix.
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Note that you may find other definitions of matrix saddle points online,
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but the tests for this exercise follow the above unambiguous definition.
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## Exception messages
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Sometimes it is necessary to raise an exception. When you do this, you should include a meaningful error message to
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indicate what the source of the error is. This makes your code more readable and helps significantly with debugging. Not
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every exercise will require you to raise an exception, but for those that do, the tests will only pass if you include
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a message.
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To raise a message with an exception, just write it as an argument to the exception type. For example, instead of
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`raise Exception`, you should write:
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```python
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raise Exception("Meaningful message indicating the source of the error")
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```
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## Running the tests
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To run the tests, run the appropriate command below ([why they are different](https://github.com/pytest-dev/pytest/issues/1629#issue-161422224)):
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- Python 2.7: `py.test saddle_points_test.py`
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- Python 3.4+: `pytest saddle_points_test.py`
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Alternatively, you can tell Python to run the pytest module (allowing the same command to be used regardless of Python version):
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`python -m pytest saddle_points_test.py`
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### Common `pytest` options
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- `-v` : enable verbose output
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- `-x` : stop running tests on first failure
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- `--ff` : run failures from previous test before running other test cases
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For other options, see `python -m pytest -h`
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## Submitting Exercises
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Note that, when trying to submit an exercise, make sure the solution is in the `$EXERCISM_WORKSPACE/python/saddle-points` directory.
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You can find your Exercism workspace by running `exercism debug` and looking for the line that starts with `Workspace`.
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For more detailed information about running tests, code style and linting,
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please see [Running the Tests](http://exercism.io/tracks/python/tests).
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## Source
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J Dalbey's Programming Practice problems [http://users.csc.calpoly.edu/~jdalbey/103/Projects/ProgrammingPractice.html](http://users.csc.calpoly.edu/~jdalbey/103/Projects/ProgrammingPractice.html)
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## Submitting Incomplete Solutions
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It's possible to submit an incomplete solution so you can see how others have completed the exercise.
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python/saddle-points/saddle_points.py
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python/saddle-points/saddle_points.py
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def saddle_points(matrix):
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# Check a single point in the matrix for if it's a saddle point
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def saddle(point):
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row = matrix[point[0]]
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column = [row[point[1]] for row in matrix]
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return max(row) == row[point[1]] and min(column) == column[point[0]]
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# Raise a value error if the matrix lengths are not consistent
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if len(set(list(map(len, matrix)))) > 1:
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d = {i : len(m) for i, m in enumerate(matrix)}
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d = sorted(list(set(list(d.values()))), reverse=True)
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raise ValueError(f'Matrix Length of {d[-1]} instead of usual {d[0]} found.')
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saddles = []
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# Check every point for if it's a saddle point
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for x, row in enumerate(matrix):
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for y, point in enumerate(row):
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if saddle((x, y)):
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saddles.append({'row' : x + 1, 'column' : y + 1})
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return saddles or [{}]
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python/saddle-points/saddle_points_test.py
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python/saddle-points/saddle_points_test.py
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"""Tests for the saddle-points exercise
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Implementation note:
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The saddle_points function must validate the input matrix and raise a
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ValueError with a meaningful error message if the matrix turns out to be
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irregular.
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"""
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import unittest
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from saddle_points import saddle_points
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# Tests adapted from `problem-specifications//canonical-data.json` @ v1.5.0
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class SaddlePointsTest(unittest.TestCase):
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def test_identify_single_saddle_point(self):
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matrix = [[9, 8, 7], [5, 3, 2], [6, 6, 7]]
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self.assertEqual(saddle_points(matrix), [{"row": 2, "column": 1}])
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def test_empty_matrix_has_no_saddle_points(self):
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self.assertEqual(saddle_points([]), [dict()])
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def test_matrix_with_one_elem_has_single_saddle_point(self):
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matrix = [[1]]
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self.assertEqual(saddle_points(matrix), [{"row": 1, "column": 1}])
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def test_identify_lack_of_saddle_points_when_there_are_none(self):
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matrix = [[1, 2, 3], [3, 1, 2], [2, 3, 1]]
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self.assertEqual(saddle_points(matrix), [dict()])
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def test_identify_multiple_saddle_points_in_column(self):
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matrix = [[4, 5, 4], [3, 5, 5], [1, 5, 4]]
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expected = [{"row": 1, "column": 2}, {"row": 2, "column": 2},
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{"row": 3, "column": 2}]
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self.assertEqual(saddle_points(matrix), expected)
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def test_identify_multiple_saddle_points_in_row(self):
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matrix = [[6, 7, 8], [5, 5, 5], [7, 5, 6]]
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expected = [{"row": 2, "column": 1}, {"row": 2, "column": 2},
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{"row": 2, "column": 3}]
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self.assertEqual(saddle_points(matrix), expected)
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def test_identify_saddle_point_in_bottom_right_corner(self):
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matrix = [[8, 7, 9], [6, 7, 6], [3, 2, 5]]
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expected = [{"row": 3, "column": 3}]
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self.assertEqual(saddle_points(matrix), expected)
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def test_non_square_matrix_with_2_saddle_points(self):
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matrix = [[3, 1, 3], [3, 2, 4]]
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self.assertEqual(saddle_points(matrix), [{"row": 1, "column": 1},
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{"row": 1, "column": 3}])
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def test_single_column_matrix_has_saddle_point_min_value(self):
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matrix = [[2], [1], [4], [1]]
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self.assertEqual(saddle_points(matrix), [{"row": 2, "column": 1},
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{"row": 4, "column": 1}])
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def test_single_row_matrix_has_saddle_point_in_max_value(self):
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matrix = [[2, 5, 3, 5]]
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self.assertEqual(saddle_points(matrix), [{"row": 1, "column": 2},
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{"row": 1, "column": 4}])
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# Additional tests for this track
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def test_irregular_matrix(self):
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matrix = [[3, 2, 1], [0, 1], [2, 1, 0]]
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with self.assertRaisesWithMessage(ValueError):
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saddle_points(matrix)
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# Utility functions
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def setUp(self):
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try:
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self.assertRaisesRegex
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except AttributeError:
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self.assertRaisesRegex = self.assertRaisesRegexp
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def assertRaisesWithMessage(self, exception):
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return self.assertRaisesRegex(exception, r".+")
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if __name__ == '__main__':
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unittest.main()
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