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https://gitlab2.federez.net/re2o/re2o
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515 lines
18 KiB
Python
515 lines
18 KiB
Python
# Re2o est un logiciel d'administration développé initiallement au rezometz. Il
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# se veut agnostique au réseau considéré, de manière à être installable en
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# quelques clics.
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#
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# Copyright © 2017 Gabriel Détraz
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# Copyright © 2017 Lara Kermarec
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# Copyright © 2017 Augustin Lemesle
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# Copyright © 2019 Jean-Romain Garnier
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#
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# This program is free software; you can redistribute it and/or modify
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# it under the terms of the GNU General Public License as published by
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# the Free Software Foundation; either version 2 of the License, or
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# (at your option) any later version.
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#
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# This program is distributed in the hope that it will be useful,
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# but WITHOUT ANY WARRANTY; without even the implied warranty of
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# MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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# GNU General Public License for more details.
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#
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# You should have received a copy of the GNU General Public License along
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# with this program; if not, write to the Free Software Foundation, Inc.,
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# 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
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"""The views for the search app, responsible for finding the matches
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Augustin lemesle, Gabriel Détraz, Lara Kermarec, Maël Kervella,
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Jean-Romain Garnier
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Gplv2"""
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from __future__ import unicode_literals
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from netaddr import EUI, AddrFormatError
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from django.db.models import Q
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from django.db.models import Value
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from django.db.models.functions import Concat
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from users.models import User, Adherent, Club, Ban, Whitelist
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from machines.models import Machine
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from topologie.models import Port, Switch, Room
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from cotisations.models import Facture
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from preferences.models import GeneralOption
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from re2o.base import SortTable, re2o_paginator
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class Query:
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"""Class representing a query.
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It can contain the user-entered text, the operator for the query,
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and a list of subqueries"""
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def __init__(self, text="", case_sensitive=False):
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self.text = text # Content of the query
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self.operator = None # Whether a special char (ex "+") was used
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self.subqueries = None # When splitting the query in subparts
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self.case_sensitive = case_sensitive
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def add_char(self, char):
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"""Add the given char to the query's text"""
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self.text += char
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def add_operator(self, operator):
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"""Consider a new operator was entered, and that it must be processed.
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The query's current text is moved to self.subqueries in the form
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of a plain Query object"""
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self.operator = operator
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if self.subqueries is None:
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self.subqueries = []
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self.subqueries.append(Query(self.text, self.case_sensitive))
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self.text = ""
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self.case_sensitive = False
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@property
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def plaintext(self):
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"""Returns a textual representation of the query's content"""
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if self.operator is not None:
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return self.operator.join([q.plaintext for q in self.subqueries])
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if self.case_sensitive:
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return "\"{}\"".format(self.text)
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return self.text
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def filter_fields():
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"""Return the list of fields the search applies to"""
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return ["users",
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"clubs",
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"machines",
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"factures",
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"bans",
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"whitelists",
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"rooms",
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"ports",
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"switches"]
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def empty_filters():
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"""Build empty filters used by Django"""
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return {f: Q() for f in filter_fields()}
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def is_int(variable):
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""" Check if the variable can be casted to an integer """
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try:
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int(variable)
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except ValueError:
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return False
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else:
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return True
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def finish_results(request, results, col, order):
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"""Sort the results by applying filters and then limit them to the
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number of max results. Finally add the info of the nmax number of results
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to the dict"""
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results["users"] = SortTable.sort(
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results["users"], col, order, SortTable.USERS_INDEX
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)
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results["clubs"] = SortTable.sort(
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results["clubs"], col, order, SortTable.USERS_INDEX
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)
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results["machines"] = SortTable.sort(
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results["machines"], col, order, SortTable.MACHINES_INDEX
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)
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results["factures"] = SortTable.sort(
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results["factures"], col, order, SortTable.COTISATIONS_INDEX
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)
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results["bans"] = SortTable.sort(
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results["bans"], col, order, SortTable.USERS_INDEX_BAN
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)
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results["whitelists"] = SortTable.sort(
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results["whitelists"], col, order, SortTable.USERS_INDEX_WHITE
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)
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results["rooms"] = SortTable.sort(
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results["rooms"], col, order, SortTable.TOPOLOGIE_INDEX_ROOM
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)
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results["ports"] = SortTable.sort(
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results["ports"], col, order, SortTable.TOPOLOGIE_INDEX_PORT
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)
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results["switches"] = SortTable.sort(
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results["switches"], col, order, SortTable.TOPOLOGIE_INDEX
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)
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max_result = GeneralOption.get_cached_value("search_display_page")
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for name, val in results.items():
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page_arg = name + "_page"
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results[name] = re2o_paginator(request,
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val.distinct(),
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max_result,
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page_arg=page_arg)
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results.update({"max_result": max_result})
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return results
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def contains_filter(attribute, word, case_sensitive=False):
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"""Create a django model filtering whether the given attribute
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contains the specified value."""
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if case_sensitive:
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attr = "{}__{}".format(attribute, "contains")
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else:
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attr = "{}__{}".format(attribute, "icontains")
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return Q(**{attr: word})
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def search_single_word(word, filters, user, start, end,
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user_state, aff, case_sensitive=False):
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""" Construct the correct filters to match differents fields of some models
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with the given query according to the given filters.
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The match field are either CharField or IntegerField that will be displayed
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on the results page (else, one might not see why a result has matched the
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query). IntegerField are matched against the query only if it can be casted
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to an int."""
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# Users
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if "0" in aff:
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filter_clubs = (
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contains_filter("surname", word, case_sensitive)
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| contains_filter("pseudo", word, case_sensitive)
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| contains_filter("email", word, case_sensitive)
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| contains_filter("telephone", word, case_sensitive)
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# Added through annotate
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| contains_filter("room_full_name", word, case_sensitive)
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| contains_filter("room_full_name_stuck", word, case_sensitive)
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)
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# Users have a name whereas clubs only have a surname
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filter_users = (
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filter_clubs
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| contains_filter("name", word, case_sensitive)
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)
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if not User.can_view_all(user)[0]:
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filter_clubs &= Q(id=user.id)
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filter_users &= Q(id=user.id)
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filter_clubs &= Q(state__in=user_state)
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filter_users &= Q(state__in=user_state)
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filters["users"] |= filter_users
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filters["clubs"] |= filter_clubs
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# Machines
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if "1" in aff:
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filter_machines = (
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contains_filter("name", word, case_sensitive)
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| (contains_filter("user__pseudo", word, case_sensitive)
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& Q(user__state__in=user_state))
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| contains_filter("interface__domain__name", word, case_sensitive)
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| contains_filter("interface__domain__related_domain__name",
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word, case_sensitive)
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| contains_filter("interface__mac_address", word, case_sensitive)
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| contains_filter("interface__ipv4__ipv4", word, case_sensitive)
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)
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try:
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_ = EUI(word, 48)
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filter_machines |= Q(interface__mac_address=word)
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except AddrFormatError:
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pass
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if not Machine.can_view_all(user)[0]:
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filter_machines &= Q(user__id=user.id)
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filters["machines"] |= filter_machines
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# Factures
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if "2" in aff:
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filter_factures = (
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contains_filter("user__pseudo", word, case_sensitive)
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& Q(user__state__in=user_state)
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)
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if start is not None:
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filter_factures &= Q(date__gte=start)
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if end is not None:
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filter_factures &= Q(date__lte=end)
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filters["factures"] |= filter_factures
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# Bans
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if "3" in aff:
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filter_bans = (
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contains_filter("user__pseudo", word, case_sensitive)
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& Q(user__state__in=user_state)
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) | contains_filter("raison", word, case_sensitive)
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if start is not None:
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filter_bans &= (
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(Q(date_start__gte=start) & Q(date_end__gte=start))
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| (Q(date_start__lte=start) & Q(date_end__gte=start))
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| (Q(date_start__gte=start) & Q(date_end__lte=start))
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)
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if end is not None:
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filter_bans &= (
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(Q(date_start__lte=end) & Q(date_end__lte=end))
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| (Q(date_start__lte=end) & Q(date_end__gte=end))
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| (Q(date_start__gte=end) & Q(date_end__lte=end))
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)
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filters["bans"] |= filter_bans
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# Whitelists
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if "4" in aff:
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filter_whitelists = (
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contains_filter("user__pseudo", word, case_sensitive)
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& Q(user__state__in=user_state)
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) | contains_filter("raison", word, case_sensitive)
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if start is not None:
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filter_whitelists &= (
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(Q(date_start__gte=start) & Q(date_end__gte=start))
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| (Q(date_start__lte=start) & Q(date_end__gte=start))
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| (Q(date_start__gte=start) & Q(date_end__lte=start))
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)
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if end is not None:
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filter_whitelists &= (
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(Q(date_start__lte=end) & Q(date_end__lte=end))
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| (Q(date_start__lte=end) & Q(date_end__gte=end))
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| (Q(date_start__gte=end) & Q(date_end__lte=end))
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)
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filters["whitelists"] |= filter_whitelists
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# Rooms
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if "5" in aff and Room.can_view_all(user):
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filter_rooms = (
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contains_filter("details", word, case_sensitive)
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# Added through annotate
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| contains_filter("full_name", word, case_sensitive)
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| contains_filter("full_name_stuck", word, case_sensitive)
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| Q(port__details=word)
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)
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filters["rooms"] |= filter_rooms
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# Switch ports
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if "6" in aff and User.can_view_all(user):
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filter_ports = (
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contains_filter("machine_interface__domain__name",
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word, case_sensitive)
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| contains_filter("related__switch__interface__domain__name",
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word, case_sensitive)
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| contains_filter("custom_profile__name", word, case_sensitive)
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| contains_filter("custom_profile__profil_default",
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word, case_sensitive)
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| contains_filter("details", word, case_sensitive)
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# Added through annotate
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| contains_filter("room_full_name", word, case_sensitive)
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| contains_filter("room_full_name_stuck", word, case_sensitive)
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)
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if is_int(word):
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filter_ports |= Q(port=word)
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filters["ports"] |= filter_ports
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# Switches
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if "7" in aff and Switch.can_view_all(user):
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filter_switches = (
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contains_filter("interface__domain__name", word, case_sensitive)
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| contains_filter("interface__ipv4__ipv4", word, case_sensitive)
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| contains_filter("switchbay__building__name",
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word, case_sensitive)
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| contains_filter("stack__name", word, case_sensitive)
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| contains_filter("model__reference", word, case_sensitive)
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| contains_filter("model__constructor__name", word, case_sensitive)
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| contains_filter("interface__details", word, case_sensitive)
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)
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if is_int(word):
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filter_switches |= Q(number=word) | Q(stack_member_id=word)
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filters["switches"] |= filter_switches
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return filters
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def apply_filters(filters, user, aff):
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""" Apply the filters constructed by search_single_query.
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It also takes into account the visual filters defined during
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the search query.
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"""
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# Results are later filled-in depending on the display filter
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# In some cases, annotations are used to match what is displayed in the
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# results. For example, the displayed room is actually
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# "room__building__name room__name", so queries wouldn't match what the
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# user expects if we just kept the database's format
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results = {
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"users": Adherent.objects.none(),
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"clubs": Club.objects.none(),
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"machines": Machine.objects.none(),
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"factures": Facture.objects.none(),
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"bans": Ban.objects.none(),
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"whitelists": Whitelist.objects.none(),
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"rooms": Room.objects.none(),
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"ports": Port.objects.none(),
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"switches": Switch.objects.none(),
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}
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# Users and clubs
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if "0" in aff:
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results["users"] = Adherent.objects.annotate(
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room_full_name=Concat("room__building__name",
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Value(" "), "room__name"),
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room_full_name_stuck=Concat("room__building__name", "room__name"),
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).filter(filters["users"])
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results["clubs"] = Club.objects.annotate(
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room_full_name=Concat("room__building__name",
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Value(" "), "room__name"),
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room_full_name_stuck=Concat("room__building__name", "room__name"),
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).filter(filters["clubs"])
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# Machines
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if "1" in aff:
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results["machines"] = Machine.objects.filter(filters["machines"])
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# Factures
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if "2" in aff:
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results["factures"] = Facture.objects.filter(filters["factures"])
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# Bans
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if "3" in aff:
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results["bans"] = Ban.objects.filter(filters["bans"])
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# Whitelists
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if "4" in aff:
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results["whitelists"] = Whitelist.objects.filter(filters["whitelists"])
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# Rooms
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if "5" in aff and Room.can_view_all(user):
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results["rooms"] = Room.objects.annotate(
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full_name=Concat("building__name", Value(" "), "name"),
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full_name_stuck=Concat("building__name", "name"),
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).filter(filters["rooms"])
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# Switch ports
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if "6" in aff and User.can_view_all(user):
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results["ports"] = Port.objects.annotate(
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room_full_name=Concat("room__building__name",
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Value(" "), "room__name"),
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room_full_name_stuck=Concat("room__building__name", "room__name"),
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).filter(filters["ports"])
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# Switches
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if "7" in aff and Switch.can_view_all(user):
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results["switches"] = Switch.objects.filter(filters["switches"])
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return results
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def search_single_query(query, filters, user, start, end, user_state, aff):
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""" Handle different queries an construct the correct filters using
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search_single_word"""
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if query.operator == "+":
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# Special queries with "+" operators should use & rather than |
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newfilters = empty_filters()
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for q in query.subqueries:
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# Construct an independent filter for each subquery
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subfilters = search_single_query(q, empty_filters(), user,
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start, end, user_state, aff)
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# Apply the subfilter
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for field in filter_fields():
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newfilters[field] &= subfilters[field]
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# Add these filters to the existing ones
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for field in filter_fields():
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filters[field] |= newfilters[field]
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return filters
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# Handle standard queries
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return search_single_word(query.text, filters, user, start, end,
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user_state, aff, query.case_sensitive)
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def create_queries(query):
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"""Function used to split the query in different words to look for.
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The rules are the following :
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- anti-slash ('\\') is used to escape characters
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- anything between quotation marks ('"') is kept intact (not
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interpreted as separators) excepts anti-slashes used to escape
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Values in between quotation marks are not searched accross
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multiple field in the database (contrary to +)
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- spaces (' ') and commas (',') are used to separated words
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- "+" signs are used as "and" operators
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"""
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# A dict representing the different queries extracted from the user's text
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queries = []
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current_query = None
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# Whether the query is between "
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keep_intact = False
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# Whether the previous char was a \
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escaping_char = False
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for char in query:
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if current_query is None:
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# We are starting a new word
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current_query = Query()
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if escaping_char:
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# The last char war a \ so we escape this char
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escaping_char = False
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current_query.add_char(char)
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continue
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if char == "\\":
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# We need to escape the next char
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escaping_char = True
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continue
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if char == '"':
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# Toogle the keep_intact state, if true, we are between two "
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keep_intact = not keep_intact
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if keep_intact:
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current_query.case_sensitive = True
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continue
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if keep_intact:
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# If we are between two ", ignore separators
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current_query.add_char(char)
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continue
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if char == "+":
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if len(current_query.text) == 0:
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# Can't sart a query with a "+", consider it escaped
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current_query.add_char(char)
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continue
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current_query.add_operator("+")
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continue
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if char == " " or char == ",":
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# If we encouter a separator outside of ", we create a new word
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if len(current_query.text) == 0:
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# Discard empty queries
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continue
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if current_query.operator is not None:
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# If we were building a special structure, finish building it
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current_query.add_operator(current_query.operator)
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# Save the query and start a new one
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queries.append(current_query)
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current_query = None
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continue
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# If we haven't encountered any special case, add the char to the word
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current_query.add_char(char)
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# Save the current working query if necessary
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if current_query is not None:
|
|
if current_query.operator is not None:
|
|
# There was an operator supposed to split multiple words
|
|
if len(current_query.text) > 0:
|
|
# Finish the current search
|
|
current_query.add_operator(current_query.operator)
|
|
|
|
queries.append(current_query)
|
|
|
|
return queries
|