Python: tournament
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python/tournament/.exercism/metadata.json
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python/tournament/.exercism/metadata.json
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{"track":"python","exercise":"tournament","id":"9d29ba55dcb24a2599bd0feab54e2300","url":"https://exercism.io/my/solutions/9d29ba55dcb24a2599bd0feab54e2300","handle":"DmitryKokorin","is_requester":true,"auto_approve":false}
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python/tournament/README.md
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python/tournament/README.md
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# Tournament
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Tally the results of a small football competition.
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Based on an input file containing which team played against which and what the
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outcome was, create a file with a table like this:
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```text
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Team | MP | W | D | L | P
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Devastating Donkeys | 3 | 2 | 1 | 0 | 7
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Allegoric Alaskans | 3 | 2 | 0 | 1 | 6
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Blithering Badgers | 3 | 1 | 0 | 2 | 3
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Courageous Californians | 3 | 0 | 1 | 2 | 1
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```
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What do those abbreviations mean?
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- MP: Matches Played
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- W: Matches Won
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- D: Matches Drawn (Tied)
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- L: Matches Lost
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- P: Points
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A win earns a team 3 points. A draw earns 1. A loss earns 0.
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The outcome should be ordered by points, descending. In case of a tie, teams are ordered alphabetically.
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###
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Input
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Your tallying program will receive input that looks like:
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```text
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Allegoric Alaskans;Blithering Badgers;win
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Devastating Donkeys;Courageous Californians;draw
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Devastating Donkeys;Allegoric Alaskans;win
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Courageous Californians;Blithering Badgers;loss
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Blithering Badgers;Devastating Donkeys;loss
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Allegoric Alaskans;Courageous Californians;win
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```
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The result of the match refers to the first team listed. So this line
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```text
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Allegoric Alaskans;Blithering Badgers;win
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```
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Means that the Allegoric Alaskans beat the Blithering Badgers.
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This line:
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```text
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Courageous Californians;Blithering Badgers;loss
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```
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Means that the Blithering Badgers beat the Courageous Californians.
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And this line:
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```text
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Devastating Donkeys;Courageous Californians;draw
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```
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Means that the Devastating Donkeys and Courageous Californians tied.
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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 `pytest tournament_test.py`
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Alternatively, you can tell Python to run the pytest module:
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`python -m pytest tournament_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/tournament` 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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## 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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51
python/tournament/tournament.py
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python/tournament/tournament.py
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from collections import defaultdict
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SCORES = {'win': 3, 'draw': 1, 'loss': 0}
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GUEST_RESULT = {'win': 'loss', 'draw': 'draw', 'loss': 'win'}
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FORMAT = '{0:<30} | {1:>2} | {2:>2} | {3:>2} | {4:>2} | {5:>2}'
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class TeamStats:
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def __init__(self):
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self.win = 0
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self.draw = 0
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self.loss = 0
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self.__points = None
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def add_game(self, result):
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setattr(self, result, getattr(self, result) + 1)
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self.__points = None
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def played(self):
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return sum(getattr(self, x) for x in SCORES.keys())
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def points(self):
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if self.__points is None:
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self.__points = sum(SCORES[x]*getattr(self, x)
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for x in SCORES.keys())
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return self.__points
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def tally(rows):
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table = [FORMAT.format('Team', 'MP', 'W', 'D', 'L', 'P')]
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stats = defaultdict(TeamStats)
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for team_stats in rows:
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home_team, guest_team, result = team_stats.split(';')
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if result not in SCORES.keys():
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raise ValueError("Invalid game result")
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stats[home_team].add_game(result)
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stats[guest_team].add_game(GUEST_RESULT[result])
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for team, team_stats in sorted(stats.items(),
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key=lambda x: (-x[1].points(), x[0])):
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table.append(FORMAT.format(team, team_stats.played(), team_stats.win,
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team_stats.draw, team_stats.loss,
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team_stats.points()))
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return table
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142
python/tournament/tournament_test.py
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python/tournament/tournament_test.py
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import unittest
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from tournament import tally
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# Tests adapted from `problem-specifications//canonical-data.json`
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class TournamentTest(unittest.TestCase):
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def test_just_the_header_if_no_input(self):
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results = []
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table = ["Team | MP | W | D | L | P"]
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self.assertEqual(tally(results), table)
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def test_a_win_is_three_points_a_loss_is_zero_points(self):
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results = ["Allegoric Alaskans;Blithering Badgers;win"]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 1 | 1 | 0 | 0 | 3",
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"Blithering Badgers | 1 | 0 | 0 | 1 | 0",
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]
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self.assertEqual(tally(results), table)
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def test_a_win_can_also_be_expressed_as_a_loss(self):
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results = ["Blithering Badgers;Allegoric Alaskans;loss"]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 1 | 1 | 0 | 0 | 3",
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"Blithering Badgers | 1 | 0 | 0 | 1 | 0",
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]
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self.assertEqual(tally(results), table)
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def test_a_different_team_can_win(self):
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results = ["Blithering Badgers;Allegoric Alaskans;win"]
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table = [
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"Team | MP | W | D | L | P",
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"Blithering Badgers | 1 | 1 | 0 | 0 | 3",
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"Allegoric Alaskans | 1 | 0 | 0 | 1 | 0",
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]
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self.assertEqual(tally(results), table)
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def test_a_draw_is_one_point_each(self):
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results = ["Allegoric Alaskans;Blithering Badgers;draw"]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 1 | 0 | 1 | 0 | 1",
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"Blithering Badgers | 1 | 0 | 1 | 0 | 1",
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]
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self.assertEqual(tally(results), table)
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def test_there_can_be_more_than_one_match(self):
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results = [
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"Allegoric Alaskans;Blithering Badgers;win",
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"Allegoric Alaskans;Blithering Badgers;win",
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]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 2 | 2 | 0 | 0 | 6",
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"Blithering Badgers | 2 | 0 | 0 | 2 | 0",
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]
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self.assertEqual(tally(results), table)
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def test_there_can_be_more_than_one_winner(self):
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results = [
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"Allegoric Alaskans;Blithering Badgers;loss",
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"Allegoric Alaskans;Blithering Badgers;win",
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]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 2 | 1 | 0 | 1 | 3",
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"Blithering Badgers | 2 | 1 | 0 | 1 | 3",
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]
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self.assertEqual(tally(results), table)
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def test_there_can_be_more_than_two_teams(self):
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results = [
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"Allegoric Alaskans;Blithering Badgers;win",
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"Blithering Badgers;Courageous Californians;win",
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"Courageous Californians;Allegoric Alaskans;loss",
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]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 2 | 2 | 0 | 0 | 6",
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"Blithering Badgers | 2 | 1 | 0 | 1 | 3",
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"Courageous Californians | 2 | 0 | 0 | 2 | 0",
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]
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self.assertEqual(tally(results), table)
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def test_typical_input(self):
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results = [
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"Allegoric Alaskans;Blithering Badgers;win",
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"Devastating Donkeys;Courageous Californians;draw",
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"Devastating Donkeys;Allegoric Alaskans;win",
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"Courageous Californians;Blithering Badgers;loss",
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"Blithering Badgers;Devastating Donkeys;loss",
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"Allegoric Alaskans;Courageous Californians;win",
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]
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table = [
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"Team | MP | W | D | L | P",
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"Devastating Donkeys | 3 | 2 | 1 | 0 | 7",
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"Allegoric Alaskans | 3 | 2 | 0 | 1 | 6",
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"Blithering Badgers | 3 | 1 | 0 | 2 | 3",
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"Courageous Californians | 3 | 0 | 1 | 2 | 1",
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]
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self.assertEqual(tally(results), table)
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def test_incomplete_competition_not_all_pairs_have_played(self):
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results = [
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"Allegoric Alaskans;Blithering Badgers;loss",
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"Devastating Donkeys;Allegoric Alaskans;loss",
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"Courageous Californians;Blithering Badgers;draw",
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"Allegoric Alaskans;Courageous Californians;win",
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]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 3 | 2 | 0 | 1 | 6",
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"Blithering Badgers | 2 | 1 | 1 | 0 | 4",
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"Courageous Californians | 2 | 0 | 1 | 1 | 1",
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"Devastating Donkeys | 1 | 0 | 0 | 1 | 0",
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]
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self.assertEqual(tally(results), table)
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def test_ties_broken_alphabetically(self):
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results = [
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"Courageous Californians;Devastating Donkeys;win",
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"Allegoric Alaskans;Blithering Badgers;win",
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"Devastating Donkeys;Allegoric Alaskans;loss",
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"Courageous Californians;Blithering Badgers;win",
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"Blithering Badgers;Devastating Donkeys;draw",
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"Allegoric Alaskans;Courageous Californians;draw",
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]
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table = [
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"Team | MP | W | D | L | P",
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"Allegoric Alaskans | 3 | 2 | 1 | 0 | 7",
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"Courageous Californians | 3 | 2 | 1 | 0 | 7",
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"Blithering Badgers | 3 | 0 | 1 | 2 | 1",
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"Devastating Donkeys | 3 | 0 | 1 | 2 | 1",
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]
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self.assertEqual(tally(results), table)
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if __name__ == "__main__":
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unittest.main()
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