331 lines
14 KiB
Python
331 lines
14 KiB
Python
import uuid
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from django.conf import settings
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from django.db.backends.base.operations import BaseDatabaseOperations
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from django.utils import timezone
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from django.utils.duration import duration_microseconds
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from django.utils.encoding import force_str
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class DatabaseOperations(BaseDatabaseOperations):
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compiler_module = "django.db.backends.mysql.compiler"
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# MySQL stores positive fields as UNSIGNED ints.
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integer_field_ranges = {
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**BaseDatabaseOperations.integer_field_ranges,
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'PositiveSmallIntegerField': (0, 65535),
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'PositiveIntegerField': (0, 4294967295),
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'PositiveBigIntegerField': (0, 18446744073709551615),
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}
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cast_data_types = {
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'AutoField': 'signed integer',
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'BigAutoField': 'signed integer',
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'SmallAutoField': 'signed integer',
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'CharField': 'char(%(max_length)s)',
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'DecimalField': 'decimal(%(max_digits)s, %(decimal_places)s)',
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'TextField': 'char',
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'IntegerField': 'signed integer',
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'BigIntegerField': 'signed integer',
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'SmallIntegerField': 'signed integer',
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'PositiveBigIntegerField': 'unsigned integer',
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'PositiveIntegerField': 'unsigned integer',
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'PositiveSmallIntegerField': 'unsigned integer',
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}
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cast_char_field_without_max_length = 'char'
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explain_prefix = 'EXPLAIN'
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def date_extract_sql(self, lookup_type, field_name):
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# https://dev.mysql.com/doc/mysql/en/date-and-time-functions.html
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if lookup_type == 'week_day':
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# DAYOFWEEK() returns an integer, 1-7, Sunday=1.
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return "DAYOFWEEK(%s)" % field_name
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elif lookup_type == 'iso_week_day':
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# WEEKDAY() returns an integer, 0-6, Monday=0.
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return "WEEKDAY(%s) + 1" % field_name
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elif lookup_type == 'week':
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# Override the value of default_week_format for consistency with
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# other database backends.
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# Mode 3: Monday, 1-53, with 4 or more days this year.
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return "WEEK(%s, 3)" % field_name
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elif lookup_type == 'iso_year':
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# Get the year part from the YEARWEEK function, which returns a
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# number as year * 100 + week.
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return "TRUNCATE(YEARWEEK(%s, 3), -2) / 100" % field_name
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else:
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# EXTRACT returns 1-53 based on ISO-8601 for the week number.
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return "EXTRACT(%s FROM %s)" % (lookup_type.upper(), field_name)
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def date_trunc_sql(self, lookup_type, field_name):
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fields = {
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'year': '%%Y-01-01',
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'month': '%%Y-%%m-01',
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} # Use double percents to escape.
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if lookup_type in fields:
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format_str = fields[lookup_type]
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return "CAST(DATE_FORMAT(%s, '%s') AS DATE)" % (field_name, format_str)
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elif lookup_type == 'quarter':
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return "MAKEDATE(YEAR(%s), 1) + INTERVAL QUARTER(%s) QUARTER - INTERVAL 1 QUARTER" % (
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field_name, field_name
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)
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elif lookup_type == 'week':
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return "DATE_SUB(%s, INTERVAL WEEKDAY(%s) DAY)" % (
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field_name, field_name
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)
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else:
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return "DATE(%s)" % (field_name)
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def _prepare_tzname_delta(self, tzname):
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if '+' in tzname:
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return tzname[tzname.find('+'):]
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elif '-' in tzname:
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return tzname[tzname.find('-'):]
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return tzname
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def _convert_field_to_tz(self, field_name, tzname):
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if settings.USE_TZ and self.connection.timezone_name != tzname:
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field_name = "CONVERT_TZ(%s, '%s', '%s')" % (
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field_name,
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self.connection.timezone_name,
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self._prepare_tzname_delta(tzname),
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)
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return field_name
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def datetime_cast_date_sql(self, field_name, tzname):
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field_name = self._convert_field_to_tz(field_name, tzname)
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return "DATE(%s)" % field_name
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def datetime_cast_time_sql(self, field_name, tzname):
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field_name = self._convert_field_to_tz(field_name, tzname)
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return "TIME(%s)" % field_name
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def datetime_extract_sql(self, lookup_type, field_name, tzname):
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field_name = self._convert_field_to_tz(field_name, tzname)
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return self.date_extract_sql(lookup_type, field_name)
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def datetime_trunc_sql(self, lookup_type, field_name, tzname):
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field_name = self._convert_field_to_tz(field_name, tzname)
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fields = ['year', 'month', 'day', 'hour', 'minute', 'second']
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format = ('%%Y-', '%%m', '-%%d', ' %%H:', '%%i', ':%%s') # Use double percents to escape.
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format_def = ('0000-', '01', '-01', ' 00:', '00', ':00')
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if lookup_type == 'quarter':
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return (
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"CAST(DATE_FORMAT(MAKEDATE(YEAR({field_name}), 1) + "
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"INTERVAL QUARTER({field_name}) QUARTER - " +
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"INTERVAL 1 QUARTER, '%%Y-%%m-01 00:00:00') AS DATETIME)"
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).format(field_name=field_name)
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if lookup_type == 'week':
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return (
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"CAST(DATE_FORMAT(DATE_SUB({field_name}, "
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"INTERVAL WEEKDAY({field_name}) DAY), "
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"'%%Y-%%m-%%d 00:00:00') AS DATETIME)"
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).format(field_name=field_name)
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try:
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i = fields.index(lookup_type) + 1
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except ValueError:
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sql = field_name
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else:
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format_str = ''.join(format[:i] + format_def[i:])
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sql = "CAST(DATE_FORMAT(%s, '%s') AS DATETIME)" % (field_name, format_str)
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return sql
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def time_trunc_sql(self, lookup_type, field_name):
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fields = {
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'hour': '%%H:00:00',
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'minute': '%%H:%%i:00',
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'second': '%%H:%%i:%%s',
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} # Use double percents to escape.
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if lookup_type in fields:
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format_str = fields[lookup_type]
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return "CAST(DATE_FORMAT(%s, '%s') AS TIME)" % (field_name, format_str)
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else:
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return "TIME(%s)" % (field_name)
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def date_interval_sql(self, timedelta):
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return 'INTERVAL %s MICROSECOND' % duration_microseconds(timedelta)
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def format_for_duration_arithmetic(self, sql):
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return 'INTERVAL %s MICROSECOND' % sql
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def force_no_ordering(self):
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"""
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"ORDER BY NULL" prevents MySQL from implicitly ordering by grouped
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columns. If no ordering would otherwise be applied, we don't want any
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implicit sorting going on.
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"""
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return [(None, ("NULL", [], False))]
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def last_executed_query(self, cursor, sql, params):
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# With MySQLdb, cursor objects have an (undocumented) "_executed"
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# attribute where the exact query sent to the database is saved.
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# See MySQLdb/cursors.py in the source distribution.
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# MySQLdb returns string, PyMySQL bytes.
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return force_str(getattr(cursor, '_executed', None), errors='replace')
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def no_limit_value(self):
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# 2**64 - 1, as recommended by the MySQL documentation
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return 18446744073709551615
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def quote_name(self, name):
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if name.startswith("`") and name.endswith("`"):
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return name # Quoting once is enough.
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return "`%s`" % name
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def random_function_sql(self):
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return 'RAND()'
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def sql_flush(self, style, tables, sequences, allow_cascade=False):
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# NB: The generated SQL below is specific to MySQL
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# 'TRUNCATE x;', 'TRUNCATE y;', 'TRUNCATE z;'... style SQL statements
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# to clear all tables of all data
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if tables:
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sql = ['SET FOREIGN_KEY_CHECKS = 0;']
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for table in tables:
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sql.append('%s %s;' % (
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style.SQL_KEYWORD('TRUNCATE'),
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style.SQL_FIELD(self.quote_name(table)),
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))
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sql.append('SET FOREIGN_KEY_CHECKS = 1;')
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sql.extend(self.sequence_reset_by_name_sql(style, sequences))
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return sql
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else:
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return []
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def validate_autopk_value(self, value):
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# MySQLism: zero in AUTO_INCREMENT field does not work. Refs #17653.
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if value == 0:
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raise ValueError('The database backend does not accept 0 as a '
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'value for AutoField.')
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return value
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def adapt_datetimefield_value(self, value):
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if value is None:
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return None
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# Expression values are adapted by the database.
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if hasattr(value, 'resolve_expression'):
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return value
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# MySQL doesn't support tz-aware datetimes
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if timezone.is_aware(value):
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if settings.USE_TZ:
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value = timezone.make_naive(value, self.connection.timezone)
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else:
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raise ValueError("MySQL backend does not support timezone-aware datetimes when USE_TZ is False.")
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return str(value)
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def adapt_timefield_value(self, value):
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if value is None:
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return None
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# Expression values are adapted by the database.
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if hasattr(value, 'resolve_expression'):
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return value
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# MySQL doesn't support tz-aware times
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if timezone.is_aware(value):
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raise ValueError("MySQL backend does not support timezone-aware times.")
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return str(value)
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def max_name_length(self):
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return 64
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def bulk_insert_sql(self, fields, placeholder_rows):
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placeholder_rows_sql = (", ".join(row) for row in placeholder_rows)
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values_sql = ", ".join("(%s)" % sql for sql in placeholder_rows_sql)
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return "VALUES " + values_sql
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def combine_expression(self, connector, sub_expressions):
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if connector == '^':
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return 'POW(%s)' % ','.join(sub_expressions)
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# Convert the result to a signed integer since MySQL's binary operators
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# return an unsigned integer.
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elif connector in ('&', '|', '<<', '#'):
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connector = '^' if connector == '#' else connector
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return 'CONVERT(%s, SIGNED)' % connector.join(sub_expressions)
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elif connector == '>>':
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lhs, rhs = sub_expressions
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return 'FLOOR(%(lhs)s / POW(2, %(rhs)s))' % {'lhs': lhs, 'rhs': rhs}
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return super().combine_expression(connector, sub_expressions)
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def get_db_converters(self, expression):
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converters = super().get_db_converters(expression)
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internal_type = expression.output_field.get_internal_type()
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if internal_type in ['BooleanField', 'NullBooleanField']:
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converters.append(self.convert_booleanfield_value)
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elif internal_type == 'DateTimeField':
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if settings.USE_TZ:
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converters.append(self.convert_datetimefield_value)
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elif internal_type == 'UUIDField':
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converters.append(self.convert_uuidfield_value)
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return converters
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def convert_booleanfield_value(self, value, expression, connection):
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if value in (0, 1):
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value = bool(value)
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return value
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def convert_datetimefield_value(self, value, expression, connection):
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if value is not None:
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value = timezone.make_aware(value, self.connection.timezone)
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return value
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def convert_uuidfield_value(self, value, expression, connection):
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if value is not None:
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value = uuid.UUID(value)
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return value
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def binary_placeholder_sql(self, value):
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return '_binary %s' if value is not None and not hasattr(value, 'as_sql') else '%s'
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def subtract_temporals(self, internal_type, lhs, rhs):
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lhs_sql, lhs_params = lhs
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rhs_sql, rhs_params = rhs
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if internal_type == 'TimeField':
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if self.connection.mysql_is_mariadb:
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# MariaDB includes the microsecond component in TIME_TO_SEC as
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# a decimal. MySQL returns an integer without microseconds.
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return 'CAST((TIME_TO_SEC(%(lhs)s) - TIME_TO_SEC(%(rhs)s)) * 1000000 AS SIGNED)' % {
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'lhs': lhs_sql, 'rhs': rhs_sql
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}, (*lhs_params, *rhs_params)
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return (
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"((TIME_TO_SEC(%(lhs)s) * 1000000 + MICROSECOND(%(lhs)s)) -"
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" (TIME_TO_SEC(%(rhs)s) * 1000000 + MICROSECOND(%(rhs)s)))"
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) % {'lhs': lhs_sql, 'rhs': rhs_sql}, tuple(lhs_params) * 2 + tuple(rhs_params) * 2
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params = (*rhs_params, *lhs_params)
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return "TIMESTAMPDIFF(MICROSECOND, %s, %s)" % (rhs_sql, lhs_sql), params
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def explain_query_prefix(self, format=None, **options):
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# Alias MySQL's TRADITIONAL to TEXT for consistency with other backends.
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if format and format.upper() == 'TEXT':
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format = 'TRADITIONAL'
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elif not format and 'TREE' in self.connection.features.supported_explain_formats:
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# Use TREE by default (if supported) as it's more informative.
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format = 'TREE'
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analyze = options.pop('analyze', False)
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prefix = super().explain_query_prefix(format, **options)
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if analyze and self.connection.features.supports_explain_analyze:
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# MariaDB uses ANALYZE instead of EXPLAIN ANALYZE.
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prefix = 'ANALYZE' if self.connection.mysql_is_mariadb else prefix + ' ANALYZE'
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if format and not (analyze and not self.connection.mysql_is_mariadb):
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# Only MariaDB supports the analyze option with formats.
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prefix += ' FORMAT=%s' % format
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if self.connection.features.needs_explain_extended and not analyze and format is None:
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# ANALYZE, EXTENDED, and FORMAT are mutually exclusive options.
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prefix += ' EXTENDED'
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return prefix
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def regex_lookup(self, lookup_type):
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# REGEXP BINARY doesn't work correctly in MySQL 8+ and REGEXP_LIKE
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# doesn't exist in MySQL 5.6 or in MariaDB.
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if self.connection.mysql_version < (8, 0, 0) or self.connection.mysql_is_mariadb:
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if lookup_type == 'regex':
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return '%s REGEXP BINARY %s'
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return '%s REGEXP %s'
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match_option = 'c' if lookup_type == 'regex' else 'i'
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return "REGEXP_LIKE(%%s, %%s, '%s')" % match_option
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def insert_statement(self, ignore_conflicts=False):
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return 'INSERT IGNORE INTO' if ignore_conflicts else super().insert_statement(ignore_conflicts)
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