mirror of https://gitlab.crans.org/bde/nk20
338 lines
12 KiB
Python
338 lines
12 KiB
Python
# Copyright (C) 2018-2024 by BDE ENS Paris-Saclay
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# SPDX-License-Identifier: GPL-3.0-or-later
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from functools import lru_cache
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from django import forms
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from django.db import transaction
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from django.db.models import Q
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from .base import WEISurvey, WEISurveyInformation, WEISurveyAlgorithm, WEIBusInformation
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from ...models import WEIMembership
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buses_descr = [
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[
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"Magi[Kar]p", "#ef5568",
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"""bus faible en alcool mais fort en connerie avec une partie calme pour les amateurs de sieste et de jeux de société.
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Non discriminant il accepte tout le monde y compris le plus nulle des pokémons (magicarpe !!!!!!). Malgré les
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accusations mensongères, il n'y a aucun weeb dans le Magi[Kar]p""",
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],
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[
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"Va[car]me", "#fd7a28",
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"descr",
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],
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[
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"[Kar]aïbes", "#a5cfdd",
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"descr",
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],
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[
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"[Kar]di [Bus]", "#e46398",
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"descr",
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],
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[
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"Sparta[bus] 🐺🐒🏉", "#ebdac2",
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"descr",
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],
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[
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"Zanzo[Bus]", "#FFFF",
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"descr",
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],
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[
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"Bran[Kar]", "#6da1ac",
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"""Si vous ne connaissez pas le Bran[Kar], c’est comme une grande famille qui fait un apéro, qui se bourre un peu la
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gueule en discutant des heures autour d’une table remplie de bouffe et de super bons cocktails (la plupart des
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barmen/barwomen du bus sont les barmans de Shakens), sauf qu’on est un bus du Wei (vous comprendrez bien le nom de notre
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bus en voyant l’état de certain·e·s). Il nous arrive de faire quelques conneries, mais surtout de jouer au Bière-pong en
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musique !""",
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],
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[
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"Techno [kar]ade", "#8065a3",
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"descr"
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],
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[
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"[Bus]ka-P", "#7c4768",
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"descr",
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],
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]
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def get_survey_info(id):
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s = {"recap": {
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"1": 0,
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"2": 0,
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"3": 0,
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"4": 0,
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"5": 0,
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}}
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s_ = {f"bus{id}": {f"{i}": 0 for i in range(1, 5 + 1)} for id in range(len(buses_descr))}
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s.update(s_)
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s.update({f"bus{id}": {f"{i}": i for i in range(1, 5 + 1)}})
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return {"scores": s}
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def print_bus(id):
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return buses_descr[id][0] + "\n\n" + buses_descr[id][2]
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def print_all_buses():
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liste = [print_bus(id) for id in range(len(buses_descr))]
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return "<br><br>---------<br><br>".join(liste)
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WORDS = {
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"recap":
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[
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"""Chèr⋅e 1A, te voilà arrivé⋅e devant un choix fatidique, le choix de ton bus.......<br>
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(Musique effrayante)<br>
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Petite blagounette évidemment, chacun des bus te permettra de passer un excellent WEI !
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Mais quitte à avoir le choix, voici la liste de tous les bus ainsi qu'une description détaillée de ces derniers !
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Prends ton temps, observe les bien et quand tu te sens prêt⋅e, appuye sur le bouton 'Noter les bus' pour continuer
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(pas besoin d'apprendre par cœur les bus, la description du bus te sera rappeler avant de le noter !) <br><br><br>""" + print_all_buses(),
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{
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"1": "Noter les bus :",
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}
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]
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}
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WORDS.update({
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f"bus{id}": [print_bus(id), {i: f"Noter {i}/5" for i in range(1, 5 + 1)}] for id in range(len(buses_descr))
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})
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class WEISurveyForm2024(forms.Form):
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"""
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Survey form for the year 2024.
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Members answer 20 questions, from which we calculate the best associated bus.
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"""
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def set_registration(self, registration):
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"""
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Filter the bus selector with the buses of the current WEI.
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"""
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information = WEISurveyInformation2024(registration)
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question = information.questions[information.step]
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self.fields[question] = forms.ChoiceField(
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label=WORDS[question][0],
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widget=forms.RadioSelect(),
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)
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answers = [(answer, WORDS[question][1][answer]) for answer in WORDS[question][1]]
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self.fields[question].choices = answers
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class WEIBusInformation2024(WEIBusInformation):
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"""
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For each question, the bus has ordered answers
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"""
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scores: dict
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def __init__(self, bus):
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self.scores = {}
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for question in WORDS:
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self.scores[question] = []
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super().__init__(bus)
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class WEISurveyInformation2024(WEISurveyInformation):
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"""
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We store the id of the selected bus. We store only the name, but is not used in the selection:
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that's only for humans that try to read data.
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"""
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step = 0
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questions = list(WORDS.keys())
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def __init__(self, registration):
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for question in WORDS:
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setattr(self, str(question), None)
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super().__init__(registration)
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class WEISurvey2024(WEISurvey):
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"""
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Survey for the year 2024.
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"""
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@classmethod
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def get_year(cls):
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return 2024
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@classmethod
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def get_survey_information_class(cls):
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return WEISurveyInformation2024
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def get_form_class(self):
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return WEISurveyForm2024
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def update_form(self, form):
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"""
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Filter the bus selector with the buses of the WEI.
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"""
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form.set_registration(self.registration)
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@transaction.atomic
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def form_valid(self, form):
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self.information.step += 1
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for question in WORDS:
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if question in form.cleaned_data:
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answer = form.cleaned_data[question]
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setattr(self.information, question, answer)
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self.save()
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@classmethod
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def get_algorithm_class(cls):
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return WEISurveyAlgorithm2024
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def is_complete(self) -> bool:
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"""
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The survey is complete once the bus is chosen.
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"""
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for question in WORDS:
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if not getattr(self.information, question):
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return False
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return True
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@lru_cache()
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def score(self, bus):
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if not self.is_complete():
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raise ValueError("Survey is not ended, can't calculate score")
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bus_info = self.get_algorithm_class().get_bus_information(bus)
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# Score is the given score by the bus subtracted to the mid-score of the buses.
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s = 0
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for question in WORDS:
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s += bus_info.scores[question][str(getattr(self.information, question))]
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return s
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@lru_cache()
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def scores_per_bus(self):
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return {bus: self.score(bus) for bus in self.get_algorithm_class().get_buses()}
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@lru_cache()
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def ordered_buses(self):
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values = list(self.scores_per_bus().items())
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values.sort(key=lambda item: -item[1])
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return values
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@classmethod
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def clear_cache(cls):
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return super().clear_cache()
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class WEISurveyAlgorithm2024(WEISurveyAlgorithm):
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"""
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The algorithm class for the year 2024.
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We use Gale-Shapley algorithm to attribute 1y students into buses.
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"""
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@classmethod
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def get_survey_class(cls):
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return WEISurvey2024
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@classmethod
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def get_bus_information_class(cls):
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return WEIBusInformation2024
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def run_algorithm(self, display_tqdm=False):
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"""
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Gale-Shapley algorithm implementation.
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We modify it to allow buses to have multiple "weddings".
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"""
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surveys = list(self.get_survey_class()(r) for r in self.get_registrations()) # All surveys
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surveys = [s for s in surveys if s.is_complete()] # Don't consider invalid surveys
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# Don't manage hardcoded people
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surveys = [s for s in surveys if not hasattr(s.information, 'hardcoded') or not s.information.hardcoded]
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# Reset previous algorithm run
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for survey in surveys:
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survey.free()
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survey.save()
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non_men = [s for s in surveys if s.registration.gender != 'male']
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men = [s for s in surveys if s.registration.gender == 'male']
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quotas = {}
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registrations = self.get_registrations()
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non_men_total = registrations.filter(~Q(gender='male')).count()
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for bus in self.get_buses():
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free_seats = bus.size - WEIMembership.objects.filter(bus=bus, registration__first_year=False).count()
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# Remove hardcoded people
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free_seats -= WEIMembership.objects.filter(bus=bus, registration__first_year=True,
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registration__information_json__icontains="hardcoded").count()
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quotas[bus] = 4 + int(non_men_total / registrations.count() * free_seats)
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tqdm_obj = None
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if display_tqdm:
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from tqdm import tqdm
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tqdm_obj = tqdm(total=len(non_men), desc="Non-hommes")
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# Repartition for non men people first
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self.make_repartition(non_men, quotas, tqdm_obj=tqdm_obj)
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quotas = {}
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for bus in self.get_buses():
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free_seats = bus.size - WEIMembership.objects.filter(bus=bus, registration__first_year=False).count()
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free_seats -= sum(1 for s in non_men if s.information.selected_bus_pk == bus.pk)
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# Remove hardcoded people
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free_seats -= WEIMembership.objects.filter(bus=bus, registration__first_year=True,
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registration__information_json__icontains="hardcoded").count()
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quotas[bus] = free_seats
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if display_tqdm:
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tqdm_obj.close()
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from tqdm import tqdm
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tqdm_obj = tqdm(total=len(men), desc="Hommes")
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self.make_repartition(men, quotas, tqdm_obj=tqdm_obj)
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if display_tqdm:
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tqdm_obj.close()
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# Clear cache information after running algorithm
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WEISurvey2024.clear_cache()
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def make_repartition(self, surveys, quotas=None, tqdm_obj=None):
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free_surveys = surveys.copy() # Remaining surveys
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while free_surveys: # Some students are not affected
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survey = free_surveys[0]
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buses = survey.ordered_buses() # Preferences of the student
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for bus, current_score in buses:
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if self.get_bus_information(bus).has_free_seats(surveys, quotas):
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# Selected bus has free places. Put student in the bus
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survey.select_bus(bus)
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survey.save()
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free_surveys.remove(survey)
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break
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else:
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# Current bus has not enough places. Remove the least preferred student from the bus if existing
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least_preferred_survey = None
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least_score = -1
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# Find the least student in the bus that has a lower score than the current student
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for survey2 in surveys:
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if not survey2.information.valid or survey2.information.get_selected_bus() != bus:
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continue
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score2 = survey2.score(bus)
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if current_score <= score2: # Ignore better students
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continue
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if least_preferred_survey is None or score2 < least_score:
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least_preferred_survey = survey2
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least_score = score2
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if least_preferred_survey is not None:
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# Remove the least student from the bus and put the current student in.
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# If it does not exist, choose the next bus.
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least_preferred_survey.free()
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least_preferred_survey.save()
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free_surveys.append(least_preferred_survey)
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survey.select_bus(bus)
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survey.save()
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free_surveys.remove(survey)
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break
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else:
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raise ValueError(f"User {survey.registration.user} has no free seat")
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if tqdm_obj is not None:
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tqdm_obj.n = len(surveys) - len(free_surveys)
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tqdm_obj.refresh()
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