mirror of https://github.com/zulip/zulip.git
721 lines
27 KiB
Python
721 lines
27 KiB
Python
# Core implementation of message retention policies and low-level
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# helpers for deleting messages.
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#
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# Because bugs in code that deletes message content can cause
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# irreversible harm in installations without backups, this is a
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# particularly sensitive system that requires careful design,
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# thoughtful database transaction boundaries, and a well-written test
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# suite to make bugs unlikely and mitigate their impact.
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#
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# The core design principle of this system is we never delete a live
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# Message/Reaction/etc. object. Instead, we use move_rows, which moves
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# objects to a "deleted objects" table like ArchiveMessage, recording
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# the change using a structure linked to an ArchiveTransaction object
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# that can be used to undo that deletion transaction in a clean
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# fashion.
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#
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# We move all of the data associated with a given block of messages in
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# a single database transaction in order to avoid broken intermediate
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# states where, for example, a message's reactions were deleted but
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# not the messages themselves.
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#
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# And then a separate process deletes ArchiveTransaction objects
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# ARCHIVED_DATA_VACUUMING_DELAY_DAYS after they were created.
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#
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# Because of the nice properties of this deletion system, we use the
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# same system for routine deletions via the Zulip UI (deleting a
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# message or group of messages) as we use for message retention policy
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# deletions.
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import logging
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import time
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from datetime import timedelta
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from typing import Any, Dict, List, Mapping, Optional, Tuple, Type, Union
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from django.conf import settings
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from django.db import connection, transaction
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from django.db.models import Model
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from django.utils.timezone import now as timezone_now
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from psycopg2.sql import SQL, Composable, Identifier, Literal
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from zerver.lib.logging_util import log_to_file
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from zerver.lib.request import RequestVariableConversionError
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from zerver.models import (
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ArchivedAttachment,
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ArchivedReaction,
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ArchivedSubMessage,
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ArchivedUserMessage,
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ArchiveTransaction,
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Attachment,
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Message,
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Reaction,
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Realm,
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Recipient,
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Stream,
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SubMessage,
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UserMessage,
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get_realm,
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get_user_including_cross_realm,
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)
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logger = logging.getLogger("zulip.retention")
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log_to_file(logger, settings.RETENTION_LOG_PATH)
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MESSAGE_BATCH_SIZE = 1000
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STREAM_MESSAGE_BATCH_SIZE = 100
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TRANSACTION_DELETION_BATCH_SIZE = 100
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# This data structure declares the details of all database tables that
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# hang off the Message table (with a foreign key to Message being part
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# of its primary lookup key). This structure allows us to share the
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# code for managing these related tables.
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models_with_message_key: List[Dict[str, Any]] = [
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{
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"class": Reaction,
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"archive_class": ArchivedReaction,
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"table_name": "zerver_reaction",
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"archive_table_name": "zerver_archivedreaction",
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},
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{
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"class": SubMessage,
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"archive_class": ArchivedSubMessage,
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"table_name": "zerver_submessage",
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"archive_table_name": "zerver_archivedsubmessage",
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},
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{
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"class": UserMessage,
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"archive_class": ArchivedUserMessage,
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"table_name": "zerver_usermessage",
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"archive_table_name": "zerver_archivedusermessage",
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},
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]
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EXCLUDE_FIELDS = {Message._meta.get_field("search_tsvector")}
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@transaction.atomic(savepoint=False)
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def move_rows(
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base_model: Type[Model],
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raw_query: SQL,
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*,
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src_db_table: Optional[str] = None,
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returning_id: bool = False,
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**kwargs: Composable,
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) -> List[int]:
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"""Core helper for bulk moving rows between a table and its archive table"""
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if src_db_table is None:
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# Use base_model's db_table unless otherwise specified.
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src_db_table = base_model._meta.db_table
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fields = [field for field in base_model._meta.fields if field not in EXCLUDE_FIELDS]
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src_fields = [Identifier(src_db_table, field.column) for field in fields]
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dst_fields = [Identifier(field.column) for field in fields]
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sql_args = {
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"src_fields": SQL(",").join(src_fields),
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"dst_fields": SQL(",").join(dst_fields),
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}
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sql_args.update(kwargs)
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with connection.cursor() as cursor:
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cursor.execute(
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raw_query.format(**sql_args),
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)
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if returning_id:
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return [id for (id,) in cursor.fetchall()] # return list of row ids
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else:
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return []
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def run_archiving_in_chunks(
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query: SQL,
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type: int,
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realm: Optional[Realm] = None,
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chunk_size: int = MESSAGE_BATCH_SIZE,
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**kwargs: Composable,
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) -> int:
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# This function is carefully designed to achieve our
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# transactionality goals: A batch of messages is either fully
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# archived-and-deleted or not transactionally.
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#
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# We implement this design by executing queries that archive messages and their related objects
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# (such as UserMessage, Reaction, and Attachment) inside the same transaction.atomic() block.
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assert type in (ArchiveTransaction.MANUAL, ArchiveTransaction.RETENTION_POLICY_BASED)
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message_count = 0
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while True:
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start_time = time.time()
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with transaction.atomic():
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archive_transaction = ArchiveTransaction.objects.create(type=type, realm=realm)
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new_chunk = move_rows(
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Message,
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query,
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chunk_size=Literal(chunk_size),
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returning_id=Literal(True),
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archive_transaction_id=Literal(archive_transaction.id),
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**kwargs,
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)
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if new_chunk:
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move_related_objects_to_archive(new_chunk)
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delete_messages(new_chunk)
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message_count += len(new_chunk)
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else:
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archive_transaction.delete() # Nothing was archived
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total_time = time.time() - start_time
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# This line needs to be outside of the atomic block, to capture the actual moment
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# archiving of the chunk is finished (since Django does some significant additional work
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# when leaving the block).
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if len(new_chunk) > 0:
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logger.info(
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"Archived %s messages in %.2fs in transaction %s.",
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len(new_chunk),
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total_time,
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archive_transaction.id,
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)
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# We run the loop, until the query returns fewer results than chunk_size,
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# which means we are done:
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if len(new_chunk) < chunk_size:
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break
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return message_count
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# Note about batching these Message archiving queries:
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# We can simply use LIMIT without worrying about OFFSETs and ordering
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# while executing batches, because any Message already archived (in the previous batch)
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# will not show up in the "SELECT ... FROM zerver_message ..." query for the next batches.
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def move_expired_messages_to_archive_by_recipient(
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recipient: Recipient,
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message_retention_days: int,
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realm: Realm,
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chunk_size: int = MESSAGE_BATCH_SIZE,
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) -> int:
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assert message_retention_days != -1
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# This function will archive appropriate messages and their related objects.
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query = SQL(
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"""
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INSERT INTO zerver_archivedmessage ({dst_fields}, archive_transaction_id)
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SELECT {src_fields}, {archive_transaction_id}
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FROM zerver_message
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WHERE zerver_message.recipient_id = {recipient_id}
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AND zerver_message.date_sent < {check_date}
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LIMIT {chunk_size}
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ON CONFLICT (id) DO UPDATE SET archive_transaction_id = {archive_transaction_id}
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RETURNING id
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"""
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)
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check_date = timezone_now() - timedelta(days=message_retention_days)
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return run_archiving_in_chunks(
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query,
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type=ArchiveTransaction.RETENTION_POLICY_BASED,
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realm=realm,
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recipient_id=Literal(recipient.id),
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check_date=Literal(check_date.isoformat()),
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chunk_size=chunk_size,
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)
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def move_expired_personal_and_huddle_messages_to_archive(
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realm: Realm,
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chunk_size: int = MESSAGE_BATCH_SIZE,
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) -> int:
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message_retention_days = realm.message_retention_days
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assert message_retention_days != -1
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check_date = timezone_now() - timedelta(days=message_retention_days)
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# This function will archive appropriate messages and their related objects.
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internal_realm = get_realm(settings.SYSTEM_BOT_REALM)
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cross_realm_bot_ids = [
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get_user_including_cross_realm(email, internal_realm).id
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for email in settings.CROSS_REALM_BOT_EMAILS
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]
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recipient_types = (Recipient.PERSONAL, Recipient.HUDDLE)
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# Archive expired personal and huddle Messages in the realm, except cross-realm messages.
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# The condition zerver_userprofile.realm_id = {realm_id} assures the row won't be
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# a message sent by a cross-realm bot, because cross-realm bots have their own separate realm.
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query = SQL(
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"""
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INSERT INTO zerver_archivedmessage ({dst_fields}, archive_transaction_id)
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SELECT {src_fields}, {archive_transaction_id}
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FROM zerver_message
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INNER JOIN zerver_recipient ON zerver_recipient.id = zerver_message.recipient_id
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INNER JOIN zerver_userprofile ON zerver_userprofile.id = zerver_message.sender_id
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WHERE zerver_userprofile.realm_id = {realm_id}
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AND zerver_recipient.type in {recipient_types}
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AND zerver_message.date_sent < {check_date}
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LIMIT {chunk_size}
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ON CONFLICT (id) DO UPDATE SET archive_transaction_id = {archive_transaction_id}
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RETURNING id
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"""
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)
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message_count = run_archiving_in_chunks(
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query,
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type=ArchiveTransaction.RETENTION_POLICY_BASED,
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realm=realm,
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cross_realm_bot_ids=Literal(tuple(cross_realm_bot_ids)),
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realm_id=Literal(realm.id),
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recipient_types=Literal(recipient_types),
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check_date=Literal(check_date.isoformat()),
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chunk_size=chunk_size,
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)
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# Archive cross-realm personal messages to users in the realm. We
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# don't archive cross-realm huddle messages via retention policy,
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# as we don't support them as a feature in Zulip, and the query to
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# find and delete them would be a lot of complexity and potential
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# performance work for a case that doesn't actually happen.
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query = SQL(
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"""
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INSERT INTO zerver_archivedmessage ({dst_fields}, archive_transaction_id)
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SELECT {src_fields}, {archive_transaction_id}
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FROM zerver_message
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INNER JOIN zerver_userprofile recipient_profile ON recipient_profile.recipient_id = zerver_message.recipient_id
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WHERE zerver_message.sender_id IN {cross_realm_bot_ids}
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AND recipient_profile.realm_id = {realm_id}
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AND zerver_message.date_sent < {check_date}
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LIMIT {chunk_size}
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ON CONFLICT (id) DO UPDATE SET archive_transaction_id = {archive_transaction_id}
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RETURNING id
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"""
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)
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message_count += run_archiving_in_chunks(
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query,
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type=ArchiveTransaction.RETENTION_POLICY_BASED,
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realm=realm,
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cross_realm_bot_ids=Literal(tuple(cross_realm_bot_ids)),
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realm_id=Literal(realm.id),
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check_date=Literal(check_date.isoformat()),
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chunk_size=chunk_size,
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)
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return message_count
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def move_models_with_message_key_to_archive(msg_ids: List[int]) -> None:
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assert len(msg_ids) > 0
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for model in models_with_message_key:
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query = SQL(
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"""
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INSERT INTO {archive_table_name} ({dst_fields})
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SELECT {src_fields}
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FROM {table_name}
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WHERE {table_name}.message_id IN {message_ids}
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ON CONFLICT (id) DO NOTHING
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"""
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)
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move_rows(
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model["class"],
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query,
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table_name=Identifier(model["table_name"]),
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archive_table_name=Identifier(model["archive_table_name"]),
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message_ids=Literal(tuple(msg_ids)),
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)
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# Attachments can't use the common models_with_message_key system,
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# because they can be referenced by more than one Message, and we only
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# want to delete the Attachment if we're deleting the last message
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# referencing them.
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def move_attachments_to_archive(msg_ids: List[int]) -> None:
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assert len(msg_ids) > 0
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query = SQL(
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"""
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INSERT INTO zerver_archivedattachment ({dst_fields})
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SELECT {src_fields}
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FROM zerver_attachment
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INNER JOIN zerver_attachment_messages
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ON zerver_attachment_messages.attachment_id = zerver_attachment.id
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WHERE zerver_attachment_messages.message_id IN {message_ids}
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GROUP BY zerver_attachment.id
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ON CONFLICT (id) DO NOTHING
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"""
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)
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move_rows(Attachment, query, message_ids=Literal(tuple(msg_ids)))
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def move_attachment_messages_to_archive(msg_ids: List[int]) -> None:
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assert len(msg_ids) > 0
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query = SQL(
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"""
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INSERT INTO zerver_archivedattachment_messages (id, archivedattachment_id, archivedmessage_id)
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SELECT zerver_attachment_messages.id, zerver_attachment_messages.attachment_id,
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zerver_attachment_messages.message_id
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FROM zerver_attachment_messages
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WHERE zerver_attachment_messages.message_id IN %(message_ids)s
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ON CONFLICT (id) DO NOTHING
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"""
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)
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with connection.cursor() as cursor:
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cursor.execute(query, dict(message_ids=tuple(msg_ids)))
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def delete_messages(msg_ids: List[int]) -> None:
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# Important note: This also deletes related objects with a foreign
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# key to Message (due to `on_delete=CASCADE` in our models
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# configuration), so we need to be sure we've taken care of
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# archiving the messages before doing this step.
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Message.objects.filter(id__in=msg_ids).delete()
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def delete_expired_attachments(realm: Realm) -> None:
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attachments_deleted, _ = Attachment.objects.filter(
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messages__isnull=True,
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realm_id=realm.id,
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id__in=ArchivedAttachment.objects.filter(realm_id=realm.id),
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).delete()
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if attachments_deleted > 0:
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logger.info("Cleaned up %s attachments for realm %s", attachments_deleted, realm.string_id)
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def move_related_objects_to_archive(msg_ids: List[int]) -> None:
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move_models_with_message_key_to_archive(msg_ids)
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move_attachments_to_archive(msg_ids)
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move_attachment_messages_to_archive(msg_ids)
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def archive_messages_by_recipient(
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recipient: Recipient,
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message_retention_days: int,
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realm: Realm,
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chunk_size: int = MESSAGE_BATCH_SIZE,
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) -> int:
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return move_expired_messages_to_archive_by_recipient(
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recipient, message_retention_days, realm, chunk_size
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)
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def archive_personal_and_huddle_messages(
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realm: Realm, chunk_size: int = MESSAGE_BATCH_SIZE
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) -> None:
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logger.info("Archiving personal and huddle messages for realm %s", realm.string_id)
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message_count = move_expired_personal_and_huddle_messages_to_archive(realm, chunk_size)
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logger.info("Done. Archived %s messages", message_count)
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|
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def archive_stream_messages(
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realm: Realm, streams: List[Stream], chunk_size: int = STREAM_MESSAGE_BATCH_SIZE
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) -> None:
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if not streams:
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return # nocoverage # TODO
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logger.info("Archiving stream messages for realm %s", realm.string_id)
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retention_policy_dict: Dict[int, int] = {}
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for stream in streams:
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# if stream.message_retention_days is null, use the realm's policy
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if stream.message_retention_days:
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retention_policy_dict[stream.id] = stream.message_retention_days
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else:
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assert realm.message_retention_days != -1
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retention_policy_dict[stream.id] = realm.message_retention_days
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recipients = [stream.recipient for stream in streams]
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message_count = 0
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for recipient in recipients:
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assert recipient is not None
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message_count += archive_messages_by_recipient(
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recipient,
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retention_policy_dict[recipient.type_id],
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realm,
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chunk_size,
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)
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logger.info("Done. Archived %s messages.", message_count)
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|
|
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def archive_messages(chunk_size: int = MESSAGE_BATCH_SIZE) -> None:
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logger.info("Starting the archiving process with chunk_size %s", chunk_size)
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for realm, streams in get_realms_and_streams_for_archiving():
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archive_stream_messages(realm, streams, chunk_size=STREAM_MESSAGE_BATCH_SIZE)
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if realm.message_retention_days != -1:
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archive_personal_and_huddle_messages(realm, chunk_size)
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# Messages have been archived for the realm, now we can clean up attachments:
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delete_expired_attachments(realm)
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|
|
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def get_realms_and_streams_for_archiving() -> List[Tuple[Realm, List[Stream]]]:
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"""
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This function constructs a list of (realm, streams_of_the_realm) tuples
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where each realm is a Realm that requires calling the archiving functions on it,
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and streams_of_the_realm is a list of streams of the realm to call archive_stream_messages with.
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The purpose of this is performance - for servers with thousands of realms, it is important
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to fetch all this data in bulk.
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"""
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realm_id_to_realm = {}
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realm_id_to_streams_list: Dict[int, List[Stream]] = {}
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|
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# All realms with a retention policy set qualify for archiving:
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for realm in Realm.objects.exclude(message_retention_days=-1):
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realm_id_to_realm[realm.id] = realm
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realm_id_to_streams_list[realm.id] = []
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# Now we find all streams that require archiving.
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# First category are streams in retention-enabled realms,
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# that don't have retention explicitly disabled (through the value -1).
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query_one = (
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Stream.objects.exclude(message_retention_days=-1)
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.exclude(realm__message_retention_days=-1)
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.select_related("realm", "recipient")
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)
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# Second category are streams that are in realms without a realm-wide retention policy,
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|
# but have their own stream-specific policy enabled.
|
|
query_two = (
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Stream.objects.filter(realm__message_retention_days=-1)
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|
.exclude(message_retention_days__isnull=True)
|
|
.exclude(message_retention_days=-1)
|
|
.select_related("realm", "recipient")
|
|
)
|
|
query = query_one.union(query_two)
|
|
|
|
for stream in query:
|
|
realm = stream.realm
|
|
realm_id_to_realm[realm.id] = realm
|
|
if realm.id not in realm_id_to_streams_list:
|
|
realm_id_to_streams_list[realm.id] = []
|
|
|
|
realm_id_to_streams_list[realm.id].append(stream)
|
|
|
|
return [
|
|
(realm_id_to_realm[realm_id], realm_id_to_streams_list[realm_id])
|
|
for realm_id in realm_id_to_realm
|
|
]
|
|
|
|
|
|
def move_messages_to_archive(
|
|
message_ids: List[int], realm: Optional[Realm] = None, chunk_size: int = MESSAGE_BATCH_SIZE
|
|
) -> None:
|
|
query = SQL(
|
|
"""
|
|
INSERT INTO zerver_archivedmessage ({dst_fields}, archive_transaction_id)
|
|
SELECT {src_fields}, {archive_transaction_id}
|
|
FROM zerver_message
|
|
WHERE zerver_message.id IN {message_ids}
|
|
LIMIT {chunk_size}
|
|
ON CONFLICT (id) DO UPDATE SET archive_transaction_id = {archive_transaction_id}
|
|
RETURNING id
|
|
"""
|
|
)
|
|
count = run_archiving_in_chunks(
|
|
query,
|
|
type=ArchiveTransaction.MANUAL,
|
|
message_ids=Literal(tuple(message_ids)),
|
|
realm=realm,
|
|
chunk_size=chunk_size,
|
|
)
|
|
|
|
if count == 0:
|
|
raise Message.DoesNotExist
|
|
# Clean up attachments:
|
|
archived_attachments = ArchivedAttachment.objects.filter(
|
|
messages__id__in=message_ids
|
|
).distinct()
|
|
Attachment.objects.filter(messages__isnull=True, id__in=archived_attachments).delete()
|
|
|
|
|
|
def restore_messages_from_archive(archive_transaction_id: int) -> List[int]:
|
|
query = SQL(
|
|
"""
|
|
INSERT INTO zerver_message ({dst_fields})
|
|
SELECT {src_fields}
|
|
FROM zerver_archivedmessage
|
|
WHERE zerver_archivedmessage.archive_transaction_id = {archive_transaction_id}
|
|
ON CONFLICT (id) DO NOTHING
|
|
RETURNING id
|
|
"""
|
|
)
|
|
return move_rows(
|
|
Message,
|
|
query,
|
|
src_db_table="zerver_archivedmessage",
|
|
returning_id=Literal(True),
|
|
archive_transaction_id=Literal(archive_transaction_id),
|
|
)
|
|
|
|
|
|
def restore_models_with_message_key_from_archive(archive_transaction_id: int) -> None:
|
|
for model in models_with_message_key:
|
|
query = SQL(
|
|
"""
|
|
INSERT INTO {table_name} ({dst_fields})
|
|
SELECT {src_fields}
|
|
FROM {archive_table_name}
|
|
INNER JOIN zerver_archivedmessage ON {archive_table_name}.message_id = zerver_archivedmessage.id
|
|
WHERE zerver_archivedmessage.archive_transaction_id = {archive_transaction_id}
|
|
ON CONFLICT (id) DO NOTHING
|
|
"""
|
|
)
|
|
|
|
move_rows(
|
|
model["class"],
|
|
query,
|
|
src_db_table=model["archive_table_name"],
|
|
table_name=Identifier(model["table_name"]),
|
|
archive_transaction_id=Literal(archive_transaction_id),
|
|
archive_table_name=Identifier(model["archive_table_name"]),
|
|
)
|
|
|
|
|
|
def restore_attachments_from_archive(archive_transaction_id: int) -> None:
|
|
query = SQL(
|
|
"""
|
|
INSERT INTO zerver_attachment ({dst_fields})
|
|
SELECT {src_fields}
|
|
FROM zerver_archivedattachment
|
|
INNER JOIN zerver_archivedattachment_messages
|
|
ON zerver_archivedattachment_messages.archivedattachment_id = zerver_archivedattachment.id
|
|
INNER JOIN zerver_archivedmessage
|
|
ON zerver_archivedattachment_messages.archivedmessage_id = zerver_archivedmessage.id
|
|
WHERE zerver_archivedmessage.archive_transaction_id = {archive_transaction_id}
|
|
GROUP BY zerver_archivedattachment.id
|
|
ON CONFLICT (id) DO NOTHING
|
|
"""
|
|
)
|
|
move_rows(
|
|
Attachment,
|
|
query,
|
|
src_db_table="zerver_archivedattachment",
|
|
archive_transaction_id=Literal(archive_transaction_id),
|
|
)
|
|
|
|
|
|
def restore_attachment_messages_from_archive(archive_transaction_id: int) -> None:
|
|
query = SQL(
|
|
"""
|
|
INSERT INTO zerver_attachment_messages (id, attachment_id, message_id)
|
|
SELECT zerver_archivedattachment_messages.id,
|
|
zerver_archivedattachment_messages.archivedattachment_id,
|
|
zerver_archivedattachment_messages.archivedmessage_id
|
|
FROM zerver_archivedattachment_messages
|
|
INNER JOIN zerver_archivedmessage
|
|
ON zerver_archivedattachment_messages.archivedmessage_id = zerver_archivedmessage.id
|
|
WHERE zerver_archivedmessage.archive_transaction_id = %(archive_transaction_id)s
|
|
ON CONFLICT (id) DO NOTHING
|
|
"""
|
|
)
|
|
with connection.cursor() as cursor:
|
|
cursor.execute(query, dict(archive_transaction_id=archive_transaction_id))
|
|
|
|
|
|
def restore_data_from_archive(archive_transaction: ArchiveTransaction) -> int:
|
|
logger.info("Restoring %s", archive_transaction)
|
|
# transaction.atomic needs to be used here, rather than being a wrapper on the whole function,
|
|
# so that when we log "Finished", the process has indeed finished - and that happens only after
|
|
# leaving the atomic block - Django does work committing the changes to the database when
|
|
# the block ends.
|
|
with transaction.atomic():
|
|
msg_ids = restore_messages_from_archive(archive_transaction.id)
|
|
restore_models_with_message_key_from_archive(archive_transaction.id)
|
|
restore_attachments_from_archive(archive_transaction.id)
|
|
restore_attachment_messages_from_archive(archive_transaction.id)
|
|
|
|
archive_transaction.restored = True
|
|
archive_transaction.save()
|
|
|
|
logger.info("Finished. Restored %s messages", len(msg_ids))
|
|
return len(msg_ids)
|
|
|
|
|
|
def restore_data_from_archive_by_transactions(
|
|
archive_transactions: List[ArchiveTransaction],
|
|
) -> int:
|
|
# Looping over the list of ids means we're batching the restoration process by the size of the
|
|
# transactions:
|
|
message_count = 0
|
|
for archive_transaction in archive_transactions:
|
|
message_count += restore_data_from_archive(archive_transaction)
|
|
|
|
return message_count
|
|
|
|
|
|
def restore_data_from_archive_by_realm(realm: Realm) -> None:
|
|
transactions = ArchiveTransaction.objects.exclude(restored=True).filter(
|
|
realm=realm, type=ArchiveTransaction.RETENTION_POLICY_BASED
|
|
)
|
|
logger.info("Restoring %s transactions from realm %s", len(transactions), realm.string_id)
|
|
message_count = restore_data_from_archive_by_transactions(transactions)
|
|
|
|
logger.info("Finished. Restored %s messages from realm %s", message_count, realm.string_id)
|
|
|
|
|
|
def restore_all_data_from_archive(restore_manual_transactions: bool = True) -> None:
|
|
for realm in Realm.objects.all():
|
|
restore_data_from_archive_by_realm(realm)
|
|
|
|
if restore_manual_transactions:
|
|
restore_data_from_archive_by_transactions(
|
|
ArchiveTransaction.objects.exclude(restored=True).filter(
|
|
type=ArchiveTransaction.MANUAL
|
|
),
|
|
)
|
|
|
|
|
|
def restore_retention_policy_deletions_for_stream(stream: Stream) -> None:
|
|
"""
|
|
Utility function for calling in the Django shell if a stream's policy was
|
|
set to something too aggressive and the administrator wants to restore
|
|
the messages deleted as a result.
|
|
"""
|
|
relevant_transactions = ArchiveTransaction.objects.filter(
|
|
archivedmessage__recipient=stream.recipient, type=ArchiveTransaction.RETENTION_POLICY_BASED
|
|
).distinct("id")
|
|
|
|
restore_data_from_archive_by_transactions(list(relevant_transactions))
|
|
|
|
|
|
def clean_archived_data() -> None:
|
|
"""This function deletes archived data that was archived at least
|
|
settings.ARCHIVED_DATA_VACUUMING_DELAY_DAYS days ago.
|
|
|
|
It works by deleting ArchiveTransaction objects that are
|
|
sufficiently old. We've configured most archive tables, like
|
|
ArchiveMessage, with on_delete=CASCADE, so that deleting an
|
|
ArchiveTransaction entails deleting associated objects, including
|
|
ArchivedMessage, ArchivedUserMessage, ArchivedReaction.
|
|
|
|
The exception to this rule is ArchivedAttachment. Archive
|
|
attachment objects that were only referenced by ArchivedMessage
|
|
objects that have now been deleted will be left with an empty
|
|
`.messages` relation. A separate step,
|
|
delete_old_unclaimed_attachments, will delete those
|
|
ArchivedAttachment objects (and delete the files themselves from
|
|
the storage).
|
|
"""
|
|
logger.info("Cleaning old archive data.")
|
|
check_date = timezone_now() - timedelta(days=settings.ARCHIVED_DATA_VACUUMING_DELAY_DAYS)
|
|
# Associated archived objects will get deleted through the on_delete=CASCADE property:
|
|
count = 0
|
|
transaction_ids = list(
|
|
ArchiveTransaction.objects.filter(timestamp__lt=check_date).values_list("id", flat=True)
|
|
)
|
|
while len(transaction_ids) > 0:
|
|
transaction_block = transaction_ids[0:TRANSACTION_DELETION_BATCH_SIZE]
|
|
transaction_ids = transaction_ids[TRANSACTION_DELETION_BATCH_SIZE:]
|
|
ArchiveTransaction.objects.filter(id__in=transaction_block).delete()
|
|
count += len(transaction_block)
|
|
|
|
logger.info("Deleted %s old ArchiveTransactions.", count)
|
|
|
|
|
|
def parse_message_retention_days(
|
|
value: Union[int, str],
|
|
special_values_map: Mapping[str, Optional[int]],
|
|
) -> Optional[int]:
|
|
if isinstance(value, str) and value in special_values_map.keys():
|
|
return special_values_map[value]
|
|
if isinstance(value, str) or value <= 0:
|
|
raise RequestVariableConversionError("message_retention_days", value)
|
|
assert isinstance(value, int)
|
|
return value
|