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419 lines
14 KiB
Python
419 lines
14 KiB
Python
# Copyright © 2017 Tom Hacohen
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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 Affero General Public License as
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# published by the Free Software Foundation, version 3.
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#
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# This library 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
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# along with this program. If not, see <http://www.gnu.org/licenses/>.
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import base64
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from django.core.files.base import ContentFile
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from django.contrib.auth import get_user_model
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from django.db import transaction
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from rest_framework import serializers
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from . import models
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User = get_user_model()
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def process_revisions_for_item(item, revision_data):
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chunks_objs = []
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chunks = revision_data.pop('chunks_relation')
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for chunk in chunks:
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uid = chunk[0]
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if len(chunk) > 1:
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content = chunk[1]
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chunk = models.CollectionItemChunk(uid=uid, item=item)
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chunk.chunkFile.save('IGNORED', ContentFile(content))
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chunk.save()
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chunks_objs.append(chunk)
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else:
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chunk = models.CollectionItemChunk.objects.get(uid=uid)
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chunks_objs.append(chunk)
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stoken = models.Stoken.objects.create()
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revision = models.CollectionItemRevision.objects.create(**revision_data, item=item, stoken=stoken)
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for chunk in chunks_objs:
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models.RevisionChunkRelation.objects.create(chunk=chunk, revision=revision)
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return revision
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def b64encode(value):
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return base64.urlsafe_b64encode(value).decode('ascii').strip('=')
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def b64decode(data):
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data += "=" * ((4 - len(data) % 4) % 4)
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return base64.urlsafe_b64decode(data)
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class BinaryBase64Field(serializers.Field):
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def to_representation(self, value):
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return b64encode(value)
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def to_internal_value(self, data):
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return b64decode(data)
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class CollectionEncryptionKeyField(BinaryBase64Field):
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def get_attribute(self, instance):
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request = self.context.get('request', None)
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if request is not None:
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return instance.members.get(user=request.user).encryptionKey
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return None
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class CollectionContentField(BinaryBase64Field):
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def get_attribute(self, instance):
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request = self.context.get('request', None)
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if request is not None:
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return instance.members.get(user=request.user).encryptionKey
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return None
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class ChunksField(serializers.RelatedField):
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def to_representation(self, obj):
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obj = obj.chunk
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inline = self.context.get('inline', False)
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if inline:
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with open(obj.chunkFile.path, 'rb') as f:
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return (obj.uid, b64encode(f.read()))
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else:
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return (obj.uid, )
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def to_internal_value(self, data):
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return (data[0], b64decode(data[1]))
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class CollectionItemChunkSerializer(serializers.ModelSerializer):
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class Meta:
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model = models.CollectionItemChunk
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fields = ('uid', 'chunkFile')
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class CollectionItemRevisionSerializer(serializers.ModelSerializer):
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chunks = ChunksField(
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source='chunks_relation',
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queryset=models.RevisionChunkRelation.objects.all(),
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many=True
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)
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meta = BinaryBase64Field()
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class Meta:
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model = models.CollectionItemRevision
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fields = ('chunks', 'meta', 'uid', 'deleted')
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class CollectionItemSerializer(serializers.ModelSerializer):
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encryptionKey = BinaryBase64Field()
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etag = serializers.CharField(allow_null=True, write_only=True)
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content = CollectionItemRevisionSerializer(many=False)
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class Meta:
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model = models.CollectionItem
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fields = ('uid', 'version', 'encryptionKey', 'content', 'etag')
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def create(self, validated_data):
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"""Function that's called when this serializer creates an item"""
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validate_etag = self.context.get('validate_etag', False)
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etag = validated_data.pop('etag')
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revision_data = validated_data.pop('content')
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uid = validated_data.pop('uid')
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Model = self.__class__.Meta.model
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with transaction.atomic():
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instance, created = Model.objects.get_or_create(uid=uid, defaults=validated_data)
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cur_etag = instance.etag if not created else None
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if validate_etag and cur_etag != etag:
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raise serializers.ValidationError('Wrong etag. Expected {} got {}'.format(cur_etag, etag))
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if not created:
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# We don't have to use select_for_update here because the unique constraint on current guards against
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# the race condition. But it's a good idea because it'll lock and wait rather than fail.
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current_revision = instance.revisions.filter(current=True).select_for_update().first()
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current_revision.current = None
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current_revision.save()
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process_revisions_for_item(instance, revision_data)
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return instance
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def update(self, instance, validated_data):
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# We never update, we always update in the create method
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raise NotImplementedError()
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class CollectionItemDepSerializer(serializers.ModelSerializer):
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etag = serializers.CharField()
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class Meta:
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model = models.CollectionItem
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fields = ('uid', 'etag')
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def validate(self, data):
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item = self.__class__.Meta.model.objects.get(uid=data['uid'])
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etag = data['etag']
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if item.etag != etag:
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raise serializers.ValidationError('Wrong etag. Expected {} got {}'.format(item.etag, etag))
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return data
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class CollectionItemBulkGetSerializer(serializers.ModelSerializer):
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etag = serializers.CharField(required=False)
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class Meta:
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model = models.CollectionItem
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fields = ('uid', 'etag')
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class CollectionSerializer(serializers.ModelSerializer):
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encryptionKey = CollectionEncryptionKeyField()
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accessLevel = serializers.SerializerMethodField('get_access_level_from_context')
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stoken = serializers.CharField(read_only=True)
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etag = serializers.CharField(allow_null=True, write_only=True)
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content = CollectionItemRevisionSerializer(many=False)
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class Meta:
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model = models.Collection
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fields = ('uid', 'version', 'accessLevel', 'encryptionKey', 'content', 'stoken', 'etag')
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def get_access_level_from_context(self, obj):
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request = self.context.get('request', None)
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if request is not None:
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return obj.members.get(user=request.user).accessLevel
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return None
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def create(self, validated_data):
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"""Function that's called when this serializer creates an item"""
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etag = validated_data.pop('etag')
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revision_data = validated_data.pop('content')
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encryption_key = validated_data.pop('encryptionKey')
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instance = self.__class__.Meta.model(**validated_data)
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with transaction.atomic():
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if etag is not None:
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raise serializers.ValidationError('etag is not None')
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instance.save()
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main_item = models.CollectionItem.objects.create(
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uid=None, encryptionKey=None, version=instance.version, collection=instance)
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process_revisions_for_item(main_item, revision_data)
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models.CollectionMember(collection=instance,
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stoken=models.Stoken.objects.create(),
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user=validated_data.get('owner'),
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accessLevel=models.AccessLevels.ADMIN,
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encryptionKey=encryption_key,
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).save()
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return instance
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def update(self, instance, validated_data):
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"""Function that's called when this serializer is meant to update an item"""
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revision_data = validated_data.pop('content')
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with transaction.atomic():
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main_item = instance.main_item
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# We don't have to use select_for_update here because the unique constraint on current guards against
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# the race condition. But it's a good idea because it'll lock and wait rather than fail.
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current_revision = main_item.revisions.filter(current=True).select_for_update().first()
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current_revision.current = None
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current_revision.save()
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process_revisions_for_item(main_item, revision_data)
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return instance
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class CollectionMemberSerializer(serializers.ModelSerializer):
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username = serializers.SlugRelatedField(
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source='user',
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slug_field=User.USERNAME_FIELD,
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queryset=User.objects
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)
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class Meta:
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model = models.CollectionMember
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fields = ('username', 'accessLevel')
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def create(self, validated_data):
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raise NotImplementedError()
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def update(self, instance, validated_data):
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with transaction.atomic():
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# We only allow updating accessLevel
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access_level = validated_data.pop('accessLevel')
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if instance.accessLevel != access_level:
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instance.stoken = models.Stoken.objects.create()
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instance.accessLevel = access_level
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instance.save()
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return instance
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class CollectionInvitationSerializer(serializers.ModelSerializer):
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username = serializers.SlugRelatedField(
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source='user',
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slug_field=User.USERNAME_FIELD,
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queryset=User.objects
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)
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collection = serializers.CharField(source='collection.uid')
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fromPubkey = BinaryBase64Field(source='fromMember.user.userinfo.pubkey', read_only=True)
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signedEncryptionKey = BinaryBase64Field()
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class Meta:
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model = models.CollectionInvitation
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fields = ('username', 'uid', 'collection', 'signedEncryptionKey', 'accessLevel', 'fromPubkey', 'version')
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def validate_user(self, value):
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request = self.context['request']
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if request.user == value.lower():
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raise serializers.ValidationError('Inviting yourself is not allowed')
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return value
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def create(self, validated_data):
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request = self.context['request']
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collection = validated_data.pop('collection')
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member = collection.members.get(user=request.user)
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with transaction.atomic():
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return type(self).Meta.model.objects.create(**validated_data, fromMember=member)
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def update(self, instance, validated_data):
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with transaction.atomic():
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instance.accessLevel = validated_data.pop('accessLevel')
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instance.signedEncryptionKey = validated_data.pop('signedEncryptionKey')
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instance.save()
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return instance
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class InvitationAcceptSerializer(serializers.Serializer):
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encryptionKey = BinaryBase64Field()
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def create(self, validated_data):
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with transaction.atomic():
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invitation = self.context['invitation']
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encryption_key = validated_data.get('encryptionKey')
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member = models.CollectionMember.objects.create(
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collection=invitation.collection,
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stoken=models.Stoken.objects.create(),
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user=invitation.user,
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accessLevel=invitation.accessLevel,
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encryptionKey=encryption_key,
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)
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models.CollectionMemberRemoved.objects.filter(
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user=invitation.user, collection=invitation.collection).delete()
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invitation.delete()
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return member
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def update(self, instance, validated_data):
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raise NotImplementedError()
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class UserSerializer(serializers.ModelSerializer):
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pubkey = BinaryBase64Field(source='userinfo.pubkey')
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encryptedSeckey = BinaryBase64Field(source='userinfo.encryptedSeckey')
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class Meta:
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model = User
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fields = (User.USERNAME_FIELD, User.EMAIL_FIELD, 'pubkey', 'encryptedSeckey')
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class UserQuerySerializer(serializers.ModelSerializer):
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class Meta:
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model = User
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fields = (User.USERNAME_FIELD, User.EMAIL_FIELD)
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class UserInfoPubkeySerializer(serializers.ModelSerializer):
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pubkey = BinaryBase64Field()
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class Meta:
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model = models.UserInfo
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fields = ('pubkey', )
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class AuthenticationSignupSerializer(serializers.Serializer):
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user = UserQuerySerializer(many=False)
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salt = BinaryBase64Field()
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loginPubkey = BinaryBase64Field()
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pubkey = BinaryBase64Field()
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encryptedSeckey = BinaryBase64Field()
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def create(self, validated_data):
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"""Function that's called when this serializer creates an item"""
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user_data = validated_data.pop('user')
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with transaction.atomic():
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instance, _ = User.objects.get_or_create(**user_data)
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if hasattr(instance, 'userinfo'):
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raise serializers.ValidationError('User already exists')
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instance.set_unusable_password()
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# FIXME: send email verification
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models.UserInfo.objects.create(**validated_data, owner=instance)
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return instance
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def update(self, instance, validated_data):
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raise NotImplementedError()
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class AuthenticationLoginChallengeSerializer(serializers.Serializer):
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username = serializers.CharField(required=False)
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email = serializers.EmailField(required=False)
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def validate(self, data):
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if not data.get('email') and not data.get('username'):
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raise serializers.ValidationError('Either email or username must be set')
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return data
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def create(self, validated_data):
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raise NotImplementedError()
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def update(self, instance, validated_data):
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raise NotImplementedError()
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class AuthenticationLoginSerializer(serializers.Serializer):
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response = BinaryBase64Field()
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signature = BinaryBase64Field()
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def create(self, validated_data):
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raise NotImplementedError()
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def update(self, instance, validated_data):
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raise NotImplementedError()
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class AuthenticationLoginInnerSerializer(AuthenticationLoginChallengeSerializer):
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challenge = BinaryBase64Field()
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host = serializers.CharField()
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def create(self, validated_data):
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raise NotImplementedError()
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def update(self, instance, validated_data):
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raise NotImplementedError()
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