369 lines
9.8 KiB
Python
369 lines
9.8 KiB
Python
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# testing/exclusions.py
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# Copyright (C) 2005-2014 the SQLAlchemy authors and contributors
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# <see AUTHORS file>
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#
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# This module is part of SQLAlchemy and is released under
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# the MIT License: http://www.opensource.org/licenses/mit-license.php
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import operator
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from .plugin.plugin_base import SkipTest
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from ..util import decorator
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from . import config
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from .. import util
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import contextlib
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import inspect
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class skip_if(object):
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def __init__(self, predicate, reason=None):
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self.predicate = _as_predicate(predicate)
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self.reason = reason
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_fails_on = None
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def __add__(self, other):
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def decorate(fn):
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return other(self(fn))
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return decorate
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@property
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def enabled(self):
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return self.enabled_for_config(config._current)
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def enabled_for_config(self, config):
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return not self.predicate(config)
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@contextlib.contextmanager
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def fail_if(self, name='block'):
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try:
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yield
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except Exception as ex:
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if self.predicate(config._current):
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print(("%s failed as expected (%s): %s " % (
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name, self.predicate, str(ex))))
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else:
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raise
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else:
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if self.predicate(config._current):
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raise AssertionError(
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"Unexpected success for '%s' (%s)" %
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(name, self.predicate))
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def __call__(self, fn):
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@decorator
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def decorate(fn, *args, **kw):
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if self.predicate(config._current):
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if self.reason:
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msg = "'%s' : %s" % (
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fn.__name__,
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self.reason
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)
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else:
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msg = "'%s': %s" % (
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fn.__name__, self.predicate
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)
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raise SkipTest(msg)
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else:
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if self._fails_on:
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with self._fails_on.fail_if(name=fn.__name__):
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return fn(*args, **kw)
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else:
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return fn(*args, **kw)
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return decorate(fn)
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def fails_on(self, other, reason=None):
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self._fails_on = skip_if(other, reason)
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return self
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def fails_on_everything_except(self, *dbs):
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self._fails_on = skip_if(fails_on_everything_except(*dbs))
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return self
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class fails_if(skip_if):
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def __call__(self, fn):
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@decorator
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def decorate(fn, *args, **kw):
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with self.fail_if(name=fn.__name__):
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return fn(*args, **kw)
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return decorate(fn)
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def only_if(predicate, reason=None):
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predicate = _as_predicate(predicate)
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return skip_if(NotPredicate(predicate), reason)
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def succeeds_if(predicate, reason=None):
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predicate = _as_predicate(predicate)
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return fails_if(NotPredicate(predicate), reason)
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class Predicate(object):
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@classmethod
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def as_predicate(cls, predicate):
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if isinstance(predicate, skip_if):
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return NotPredicate(predicate.predicate)
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elif isinstance(predicate, Predicate):
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return predicate
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elif isinstance(predicate, list):
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return OrPredicate([cls.as_predicate(pred) for pred in predicate])
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elif isinstance(predicate, tuple):
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return SpecPredicate(*predicate)
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elif isinstance(predicate, util.string_types):
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tokens = predicate.split(" ", 2)
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op = spec = None
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db = tokens.pop(0)
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if tokens:
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op = tokens.pop(0)
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if tokens:
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spec = tuple(int(d) for d in tokens.pop(0).split("."))
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return SpecPredicate(db, op, spec)
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elif util.callable(predicate):
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return LambdaPredicate(predicate)
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else:
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assert False, "unknown predicate type: %s" % predicate
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class BooleanPredicate(Predicate):
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def __init__(self, value, description=None):
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self.value = value
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self.description = description or "boolean %s" % value
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def __call__(self, config):
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return self.value
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def _as_string(self, negate=False):
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if negate:
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return "not " + self.description
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else:
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return self.description
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def __str__(self):
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return self._as_string()
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class SpecPredicate(Predicate):
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def __init__(self, db, op=None, spec=None, description=None):
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self.db = db
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self.op = op
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self.spec = spec
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self.description = description
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_ops = {
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'<': operator.lt,
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'>': operator.gt,
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'==': operator.eq,
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'!=': operator.ne,
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'<=': operator.le,
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'>=': operator.ge,
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'in': operator.contains,
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'between': lambda val, pair: val >= pair[0] and val <= pair[1],
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}
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def __call__(self, config):
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engine = config.db
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if "+" in self.db:
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dialect, driver = self.db.split('+')
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else:
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dialect, driver = self.db, None
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if dialect and engine.name != dialect:
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return False
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if driver is not None and engine.driver != driver:
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return False
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if self.op is not None:
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assert driver is None, "DBAPI version specs not supported yet"
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version = _server_version(engine)
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oper = hasattr(self.op, '__call__') and self.op \
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or self._ops[self.op]
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return oper(version, self.spec)
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else:
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return True
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def _as_string(self, negate=False):
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if self.description is not None:
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return self.description
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elif self.op is None:
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if negate:
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return "not %s" % self.db
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else:
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return "%s" % self.db
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else:
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if negate:
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return "not %s %s %s" % (
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self.db,
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self.op,
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self.spec
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)
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else:
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return "%s %s %s" % (
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self.db,
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self.op,
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self.spec
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)
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def __str__(self):
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return self._as_string()
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class LambdaPredicate(Predicate):
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def __init__(self, lambda_, description=None, args=None, kw=None):
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spec = inspect.getargspec(lambda_)
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if not spec[0]:
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self.lambda_ = lambda db: lambda_()
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else:
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self.lambda_ = lambda_
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self.args = args or ()
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self.kw = kw or {}
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if description:
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self.description = description
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elif lambda_.__doc__:
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self.description = lambda_.__doc__
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else:
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self.description = "custom function"
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def __call__(self, config):
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return self.lambda_(config)
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def _as_string(self, negate=False):
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if negate:
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return "not " + self.description
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else:
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return self.description
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def __str__(self):
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return self._as_string()
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class NotPredicate(Predicate):
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def __init__(self, predicate):
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self.predicate = predicate
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def __call__(self, config):
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return not self.predicate(config)
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def __str__(self):
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return self.predicate._as_string(True)
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class OrPredicate(Predicate):
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def __init__(self, predicates, description=None):
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self.predicates = predicates
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self.description = description
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def __call__(self, config):
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for pred in self.predicates:
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if pred(config):
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self._str = pred
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return True
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return False
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_str = None
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def _eval_str(self, negate=False):
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if self._str is None:
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if negate:
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conjunction = " and "
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else:
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conjunction = " or "
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return conjunction.join(p._as_string(negate=negate)
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for p in self.predicates)
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else:
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return self._str._as_string(negate=negate)
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def _negation_str(self):
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if self.description is not None:
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return "Not " + (self.description % {"spec": self._str})
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else:
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return self._eval_str(negate=True)
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def _as_string(self, negate=False):
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if negate:
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return self._negation_str()
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else:
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if self.description is not None:
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return self.description % {"spec": self._str}
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else:
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return self._eval_str()
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def __str__(self):
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return self._as_string()
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_as_predicate = Predicate.as_predicate
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def _is_excluded(db, op, spec):
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return SpecPredicate(db, op, spec)(config._current)
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def _server_version(engine):
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"""Return a server_version_info tuple."""
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# force metadata to be retrieved
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conn = engine.connect()
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version = getattr(engine.dialect, 'server_version_info', ())
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conn.close()
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return version
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def db_spec(*dbs):
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return OrPredicate(
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[Predicate.as_predicate(db) for db in dbs]
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)
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def open():
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return skip_if(BooleanPredicate(False, "mark as execute"))
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def closed():
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return skip_if(BooleanPredicate(True, "marked as skip"))
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def fails():
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return fails_if(BooleanPredicate(True, "expected to fail"))
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@decorator
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def future(fn, *arg):
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return fails_if(LambdaPredicate(fn), "Future feature")
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def fails_on(db, reason=None):
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return fails_if(SpecPredicate(db), reason)
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def fails_on_everything_except(*dbs):
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return succeeds_if(
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OrPredicate([
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SpecPredicate(db) for db in dbs
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])
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)
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def skip(db, reason=None):
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return skip_if(SpecPredicate(db), reason)
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def only_on(dbs, reason=None):
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return only_if(
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OrPredicate([SpecPredicate(db) for db in util.to_list(dbs)])
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)
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def exclude(db, op, spec, reason=None):
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return skip_if(SpecPredicate(db, op, spec), reason)
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def against(config, *queries):
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assert queries, "no queries sent!"
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return OrPredicate([
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Predicate.as_predicate(query)
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for query in queries
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])(config)
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