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905 lines
24 KiB
905 lines
24 KiB
# util/_collections.py
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# Copyright (C) 2005-2012 the SQLAlchemy authors and contributors <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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"""Collection classes and helpers."""
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import sys
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import itertools
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import weakref
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import operator
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from langhelpers import symbol
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from compat import time_func, threading
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EMPTY_SET = frozenset()
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class NamedTuple(tuple):
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"""tuple() subclass that adds labeled names.
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Is also pickleable.
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"""
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def __new__(cls, vals, labels=None):
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t = tuple.__new__(cls, vals)
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if labels:
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t.__dict__.update(zip(labels, vals))
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t._labels = labels
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return t
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def keys(self):
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return [l for l in self._labels if l is not None]
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class ImmutableContainer(object):
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def _immutable(self, *arg, **kw):
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raise TypeError("%s object is immutable" % self.__class__.__name__)
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__delitem__ = __setitem__ = __setattr__ = _immutable
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class immutabledict(ImmutableContainer, dict):
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clear = pop = popitem = setdefault = \
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update = ImmutableContainer._immutable
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def __new__(cls, *args):
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new = dict.__new__(cls)
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dict.__init__(new, *args)
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return new
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def __init__(self, *args):
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pass
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def __reduce__(self):
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return immutabledict, (dict(self), )
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def union(self, d):
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if not self:
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return immutabledict(d)
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else:
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d2 = immutabledict(self)
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dict.update(d2, d)
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return d2
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def __repr__(self):
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return "immutabledict(%s)" % dict.__repr__(self)
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class Properties(object):
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"""Provide a __getattr__/__setattr__ interface over a dict."""
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def __init__(self, data):
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self.__dict__['_data'] = data
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def __len__(self):
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return len(self._data)
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def __iter__(self):
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return self._data.itervalues()
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def __add__(self, other):
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return list(self) + list(other)
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def __setitem__(self, key, object):
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self._data[key] = object
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def __getitem__(self, key):
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return self._data[key]
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def __delitem__(self, key):
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del self._data[key]
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def __setattr__(self, key, object):
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self._data[key] = object
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def __getstate__(self):
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return {'_data': self.__dict__['_data']}
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def __setstate__(self, state):
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self.__dict__['_data'] = state['_data']
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def __getattr__(self, key):
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try:
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return self._data[key]
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except KeyError:
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raise AttributeError(key)
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def __contains__(self, key):
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return key in self._data
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def as_immutable(self):
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"""Return an immutable proxy for this :class:`.Properties`."""
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return ImmutableProperties(self._data)
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def update(self, value):
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self._data.update(value)
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def get(self, key, default=None):
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if key in self:
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return self[key]
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else:
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return default
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def keys(self):
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return self._data.keys()
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def has_key(self, key):
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return key in self._data
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def clear(self):
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self._data.clear()
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class OrderedProperties(Properties):
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"""Provide a __getattr__/__setattr__ interface with an OrderedDict
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as backing store."""
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def __init__(self):
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Properties.__init__(self, OrderedDict())
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class ImmutableProperties(ImmutableContainer, Properties):
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"""Provide immutable dict/object attribute to an underlying dictionary."""
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class OrderedDict(dict):
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"""A dict that returns keys/values/items in the order they were added."""
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def __init__(self, ____sequence=None, **kwargs):
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self._list = []
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if ____sequence is None:
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if kwargs:
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self.update(**kwargs)
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else:
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self.update(____sequence, **kwargs)
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def clear(self):
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self._list = []
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dict.clear(self)
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def copy(self):
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return self.__copy__()
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def __copy__(self):
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return OrderedDict(self)
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def sort(self, *arg, **kw):
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self._list.sort(*arg, **kw)
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def update(self, ____sequence=None, **kwargs):
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if ____sequence is not None:
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if hasattr(____sequence, 'keys'):
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for key in ____sequence.keys():
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self.__setitem__(key, ____sequence[key])
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else:
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for key, value in ____sequence:
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self[key] = value
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if kwargs:
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self.update(kwargs)
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def setdefault(self, key, value):
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if key not in self:
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self.__setitem__(key, value)
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return value
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else:
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return self.__getitem__(key)
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def __iter__(self):
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return iter(self._list)
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def values(self):
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return [self[key] for key in self._list]
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def itervalues(self):
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return iter([self[key] for key in self._list])
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def keys(self):
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return list(self._list)
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def iterkeys(self):
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return iter(self.keys())
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def items(self):
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return [(key, self[key]) for key in self.keys()]
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def iteritems(self):
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return iter(self.items())
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def __setitem__(self, key, object):
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if key not in self:
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try:
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self._list.append(key)
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except AttributeError:
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# work around Python pickle loads() with
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# dict subclass (seems to ignore __setstate__?)
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self._list = [key]
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dict.__setitem__(self, key, object)
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def __delitem__(self, key):
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dict.__delitem__(self, key)
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self._list.remove(key)
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def pop(self, key, *default):
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present = key in self
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value = dict.pop(self, key, *default)
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if present:
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self._list.remove(key)
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return value
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def popitem(self):
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item = dict.popitem(self)
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self._list.remove(item[0])
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return item
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class OrderedSet(set):
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def __init__(self, d=None):
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set.__init__(self)
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self._list = []
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if d is not None:
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self.update(d)
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def add(self, element):
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if element not in self:
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self._list.append(element)
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set.add(self, element)
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def remove(self, element):
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set.remove(self, element)
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self._list.remove(element)
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def insert(self, pos, element):
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if element not in self:
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self._list.insert(pos, element)
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set.add(self, element)
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def discard(self, element):
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if element in self:
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self._list.remove(element)
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set.remove(self, element)
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def clear(self):
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set.clear(self)
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self._list = []
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def __getitem__(self, key):
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return self._list[key]
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def __iter__(self):
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return iter(self._list)
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def __add__(self, other):
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return self.union(other)
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def __repr__(self):
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return '%s(%r)' % (self.__class__.__name__, self._list)
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__str__ = __repr__
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def update(self, iterable):
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for e in iterable:
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if e not in self:
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self._list.append(e)
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set.add(self, e)
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return self
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__ior__ = update
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def union(self, other):
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result = self.__class__(self)
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result.update(other)
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return result
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__or__ = union
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def intersection(self, other):
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other = set(other)
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return self.__class__(a for a in self if a in other)
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__and__ = intersection
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def symmetric_difference(self, other):
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other = set(other)
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result = self.__class__(a for a in self if a not in other)
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result.update(a for a in other if a not in self)
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return result
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__xor__ = symmetric_difference
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def difference(self, other):
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other = set(other)
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return self.__class__(a for a in self if a not in other)
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__sub__ = difference
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def intersection_update(self, other):
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other = set(other)
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set.intersection_update(self, other)
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self._list = [ a for a in self._list if a in other]
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return self
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__iand__ = intersection_update
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def symmetric_difference_update(self, other):
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set.symmetric_difference_update(self, other)
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self._list = [ a for a in self._list if a in self]
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self._list += [ a for a in other._list if a in self]
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return self
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__ixor__ = symmetric_difference_update
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def difference_update(self, other):
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set.difference_update(self, other)
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self._list = [ a for a in self._list if a in self]
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return self
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__isub__ = difference_update
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class IdentitySet(object):
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"""A set that considers only object id() for uniqueness.
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This strategy has edge cases for builtin types- it's possible to have
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two 'foo' strings in one of these sets, for example. Use sparingly.
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"""
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_working_set = set
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def __init__(self, iterable=None):
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self._members = dict()
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if iterable:
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for o in iterable:
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self.add(o)
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def add(self, value):
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self._members[id(value)] = value
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def __contains__(self, value):
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return id(value) in self._members
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def remove(self, value):
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del self._members[id(value)]
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def discard(self, value):
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try:
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self.remove(value)
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except KeyError:
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pass
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def pop(self):
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try:
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pair = self._members.popitem()
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return pair[1]
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except KeyError:
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raise KeyError('pop from an empty set')
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def clear(self):
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self._members.clear()
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def __sub__(self, other):
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return self.difference(other)
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def __cmp__(self, other):
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raise TypeError('cannot compare sets using cmp()')
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def __eq__(self, other):
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if isinstance(other, IdentitySet):
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return self._members == other._members
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else:
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return False
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def __ne__(self, other):
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if isinstance(other, IdentitySet):
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return self._members != other._members
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else:
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return True
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def issubset(self, iterable):
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other = type(self)(iterable)
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if len(self) > len(other):
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return False
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for m in itertools.ifilterfalse(other._members.__contains__,
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self._members.iterkeys()):
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return False
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return True
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def __le__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return self.issubset(other)
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def __lt__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return len(self) < len(other) and self.issubset(other)
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def issuperset(self, iterable):
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other = type(self)(iterable)
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if len(self) < len(other):
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return False
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for m in itertools.ifilterfalse(self._members.__contains__,
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other._members.iterkeys()):
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return False
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return True
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def __ge__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return self.issuperset(other)
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def __gt__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return len(self) > len(other) and self.issuperset(other)
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def union(self, iterable):
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result = type(self)()
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# testlib.pragma exempt:__hash__
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result._members.update(
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self._working_set(self._member_id_tuples()).union(_iter_id(iterable)))
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return result
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def __or__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return self.union(other)
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def update(self, iterable):
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self._members = self.union(iterable)._members
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def __ior__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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self.update(other)
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return self
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def difference(self, iterable):
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result = type(self)()
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# testlib.pragma exempt:__hash__
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result._members.update(
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self._working_set(self._member_id_tuples()).difference(_iter_id(iterable)))
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return result
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def __sub__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return self.difference(other)
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def difference_update(self, iterable):
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self._members = self.difference(iterable)._members
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def __isub__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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self.difference_update(other)
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return self
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def intersection(self, iterable):
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result = type(self)()
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# testlib.pragma exempt:__hash__
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result._members.update(
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self._working_set(self._member_id_tuples()).intersection(_iter_id(iterable)))
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return result
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def __and__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return self.intersection(other)
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def intersection_update(self, iterable):
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self._members = self.intersection(iterable)._members
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def __iand__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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self.intersection_update(other)
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return self
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def symmetric_difference(self, iterable):
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result = type(self)()
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# testlib.pragma exempt:__hash__
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result._members.update(
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self._working_set(self._member_id_tuples()).symmetric_difference(_iter_id(iterable)))
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return result
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def _member_id_tuples(self):
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return ((id(v), v) for v in self._members.itervalues())
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def __xor__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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return self.symmetric_difference(other)
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def symmetric_difference_update(self, iterable):
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self._members = self.symmetric_difference(iterable)._members
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def __ixor__(self, other):
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if not isinstance(other, IdentitySet):
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return NotImplemented
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self.symmetric_difference(other)
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return self
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def copy(self):
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return type(self)(self._members.itervalues())
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__copy__ = copy
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|
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def __len__(self):
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return len(self._members)
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|
|
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def __iter__(self):
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return self._members.itervalues()
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|
|
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def __hash__(self):
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raise TypeError('set objects are unhashable')
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|
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def __repr__(self):
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return '%s(%r)' % (type(self).__name__, self._members.values())
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|
|
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class OrderedIdentitySet(IdentitySet):
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class _working_set(OrderedSet):
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# a testing pragma: exempt the OIDS working set from the test suite's
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# "never call the user's __hash__" assertions. this is a big hammer,
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# but it's safe here: IDS operates on (id, instance) tuples in the
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# working set.
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__sa_hash_exempt__ = True
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|
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def __init__(self, iterable=None):
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IdentitySet.__init__(self)
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self._members = OrderedDict()
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if iterable:
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for o in iterable:
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self.add(o)
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|
|
|
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if sys.version_info >= (2, 5):
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class PopulateDict(dict):
|
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"""A dict which populates missing values via a creation function.
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|
|
Note the creation function takes a key, unlike
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collections.defaultdict.
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"""
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def __init__(self, creator):
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self.creator = creator
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|
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def __missing__(self, key):
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self[key] = val = self.creator(key)
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return val
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else:
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class PopulateDict(dict):
|
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"""A dict which populates missing values via a creation function."""
|
|
|
|
def __init__(self, creator):
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self.creator = creator
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|
|
|
def __getitem__(self, key):
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try:
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return dict.__getitem__(self, key)
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except KeyError:
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self[key] = value = self.creator(key)
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return value
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|
|
# define collections that are capable of storing
|
|
# ColumnElement objects as hashable keys/elements.
|
|
column_set = set
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column_dict = dict
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ordered_column_set = OrderedSet
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populate_column_dict = PopulateDict
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|
|
def unique_list(seq, hashfunc=None):
|
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seen = {}
|
|
if not hashfunc:
|
|
return [x for x in seq
|
|
if x not in seen
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|
and not seen.__setitem__(x, True)]
|
|
else:
|
|
return [x for x in seq
|
|
if hashfunc(x) not in seen
|
|
and not seen.__setitem__(hashfunc(x), True)]
|
|
|
|
class UniqueAppender(object):
|
|
"""Appends items to a collection ensuring uniqueness.
|
|
|
|
Additional appends() of the same object are ignored. Membership is
|
|
determined by identity (``is a``) not equality (``==``).
|
|
"""
|
|
|
|
def __init__(self, data, via=None):
|
|
self.data = data
|
|
self._unique = {}
|
|
if via:
|
|
self._data_appender = getattr(data, via)
|
|
elif hasattr(data, 'append'):
|
|
self._data_appender = data.append
|
|
elif hasattr(data, 'add'):
|
|
self._data_appender = data.add
|
|
|
|
def append(self, item):
|
|
id_ = id(item)
|
|
if id_ not in self._unique:
|
|
self._data_appender(item)
|
|
self._unique[id_] = True
|
|
|
|
def __iter__(self):
|
|
return iter(self.data)
|
|
|
|
def to_list(x, default=None):
|
|
if x is None:
|
|
return default
|
|
if not isinstance(x, (list, tuple)):
|
|
return [x]
|
|
else:
|
|
return x
|
|
|
|
def to_set(x):
|
|
if x is None:
|
|
return set()
|
|
if not isinstance(x, set):
|
|
return set(to_list(x))
|
|
else:
|
|
return x
|
|
|
|
def to_column_set(x):
|
|
if x is None:
|
|
return column_set()
|
|
if not isinstance(x, column_set):
|
|
return column_set(to_list(x))
|
|
else:
|
|
return x
|
|
|
|
def update_copy(d, _new=None, **kw):
|
|
"""Copy the given dict and update with the given values."""
|
|
|
|
d = d.copy()
|
|
if _new:
|
|
d.update(_new)
|
|
d.update(**kw)
|
|
return d
|
|
|
|
def flatten_iterator(x):
|
|
"""Given an iterator of which further sub-elements may also be
|
|
iterators, flatten the sub-elements into a single iterator.
|
|
|
|
"""
|
|
for elem in x:
|
|
if not isinstance(elem, basestring) and hasattr(elem, '__iter__'):
|
|
for y in flatten_iterator(elem):
|
|
yield y
|
|
else:
|
|
yield elem
|
|
|
|
class WeakIdentityMapping(weakref.WeakKeyDictionary):
|
|
"""A WeakKeyDictionary with an object identity index.
|
|
|
|
Adds a .by_id dictionary to a regular WeakKeyDictionary. Trades
|
|
performance during mutation operations for accelerated lookups by id().
|
|
|
|
The usual cautions about weak dictionaries and iteration also apply to
|
|
this subclass.
|
|
|
|
"""
|
|
_none = symbol('none')
|
|
|
|
def __init__(self):
|
|
weakref.WeakKeyDictionary.__init__(self)
|
|
self.by_id = {}
|
|
self._weakrefs = {}
|
|
|
|
def __setitem__(self, object, value):
|
|
oid = id(object)
|
|
self.by_id[oid] = value
|
|
if oid not in self._weakrefs:
|
|
self._weakrefs[oid] = self._ref(object)
|
|
weakref.WeakKeyDictionary.__setitem__(self, object, value)
|
|
|
|
def __delitem__(self, object):
|
|
del self._weakrefs[id(object)]
|
|
del self.by_id[id(object)]
|
|
weakref.WeakKeyDictionary.__delitem__(self, object)
|
|
|
|
def setdefault(self, object, default=None):
|
|
value = weakref.WeakKeyDictionary.setdefault(self, object, default)
|
|
oid = id(object)
|
|
if value is default:
|
|
self.by_id[oid] = default
|
|
if oid not in self._weakrefs:
|
|
self._weakrefs[oid] = self._ref(object)
|
|
return value
|
|
|
|
def pop(self, object, default=_none):
|
|
if default is self._none:
|
|
value = weakref.WeakKeyDictionary.pop(self, object)
|
|
else:
|
|
value = weakref.WeakKeyDictionary.pop(self, object, default)
|
|
if id(object) in self.by_id:
|
|
del self._weakrefs[id(object)]
|
|
del self.by_id[id(object)]
|
|
return value
|
|
|
|
def popitem(self):
|
|
item = weakref.WeakKeyDictionary.popitem(self)
|
|
oid = id(item[0])
|
|
del self._weakrefs[oid]
|
|
del self.by_id[oid]
|
|
return item
|
|
|
|
def clear(self):
|
|
# Py2K
|
|
# in 3k, MutableMapping calls popitem()
|
|
self._weakrefs.clear()
|
|
self.by_id.clear()
|
|
# end Py2K
|
|
weakref.WeakKeyDictionary.clear(self)
|
|
|
|
def update(self, *a, **kw):
|
|
raise NotImplementedError
|
|
|
|
def _cleanup(self, wr, key=None):
|
|
if key is None:
|
|
key = wr.key
|
|
try:
|
|
del self._weakrefs[key]
|
|
except (KeyError, AttributeError): # pragma: no cover
|
|
pass # pragma: no cover
|
|
try:
|
|
del self.by_id[key]
|
|
except (KeyError, AttributeError): # pragma: no cover
|
|
pass # pragma: no cover
|
|
|
|
class _keyed_weakref(weakref.ref):
|
|
def __init__(self, object, callback):
|
|
weakref.ref.__init__(self, object, callback)
|
|
self.key = id(object)
|
|
|
|
def _ref(self, object):
|
|
return self._keyed_weakref(object, self._cleanup)
|
|
|
|
|
|
class LRUCache(dict):
|
|
"""Dictionary with 'squishy' removal of least
|
|
recently used items.
|
|
|
|
"""
|
|
def __init__(self, capacity=100, threshold=.5):
|
|
self.capacity = capacity
|
|
self.threshold = threshold
|
|
self._counter = 0
|
|
|
|
def _inc_counter(self):
|
|
self._counter += 1
|
|
return self._counter
|
|
|
|
def __getitem__(self, key):
|
|
item = dict.__getitem__(self, key)
|
|
item[2] = self._inc_counter()
|
|
return item[1]
|
|
|
|
def values(self):
|
|
return [i[1] for i in dict.values(self)]
|
|
|
|
def setdefault(self, key, value):
|
|
if key in self:
|
|
return self[key]
|
|
else:
|
|
self[key] = value
|
|
return value
|
|
|
|
def __setitem__(self, key, value):
|
|
item = dict.get(self, key)
|
|
if item is None:
|
|
item = [key, value, self._inc_counter()]
|
|
dict.__setitem__(self, key, item)
|
|
else:
|
|
item[1] = value
|
|
self._manage_size()
|
|
|
|
def _manage_size(self):
|
|
while len(self) > self.capacity + self.capacity * self.threshold:
|
|
by_counter = sorted(dict.values(self),
|
|
key=operator.itemgetter(2),
|
|
reverse=True)
|
|
for item in by_counter[self.capacity:]:
|
|
try:
|
|
del self[item[0]]
|
|
except KeyError:
|
|
# if we couldnt find a key, most
|
|
# likely some other thread broke in
|
|
# on us. loop around and try again
|
|
break
|
|
|
|
|
|
class ScopedRegistry(object):
|
|
"""A Registry that can store one or multiple instances of a single
|
|
class on the basis of a "scope" function.
|
|
|
|
The object implements ``__call__`` as the "getter", so by
|
|
calling ``myregistry()`` the contained object is returned
|
|
for the current scope.
|
|
|
|
:param createfunc:
|
|
a callable that returns a new object to be placed in the registry
|
|
|
|
:param scopefunc:
|
|
a callable that will return a key to store/retrieve an object.
|
|
"""
|
|
|
|
def __init__(self, createfunc, scopefunc):
|
|
"""Construct a new :class:`.ScopedRegistry`.
|
|
|
|
:param createfunc: A creation function that will generate
|
|
a new value for the current scope, if none is present.
|
|
|
|
:param scopefunc: A function that returns a hashable
|
|
token representing the current scope (such as, current
|
|
thread identifier).
|
|
|
|
"""
|
|
self.createfunc = createfunc
|
|
self.scopefunc = scopefunc
|
|
self.registry = {}
|
|
|
|
def __call__(self):
|
|
key = self.scopefunc()
|
|
try:
|
|
return self.registry[key]
|
|
except KeyError:
|
|
return self.registry.setdefault(key, self.createfunc())
|
|
|
|
def has(self):
|
|
"""Return True if an object is present in the current scope."""
|
|
|
|
return self.scopefunc() in self.registry
|
|
|
|
def set(self, obj):
|
|
"""Set the value forthe current scope."""
|
|
|
|
self.registry[self.scopefunc()] = obj
|
|
|
|
def clear(self):
|
|
"""Clear the current scope, if any."""
|
|
|
|
try:
|
|
del self.registry[self.scopefunc()]
|
|
except KeyError:
|
|
pass
|
|
|
|
class ThreadLocalRegistry(ScopedRegistry):
|
|
"""A :class:`.ScopedRegistry` that uses a ``threading.local()``
|
|
variable for storage.
|
|
|
|
"""
|
|
def __init__(self, createfunc):
|
|
self.createfunc = createfunc
|
|
self.registry = threading.local()
|
|
|
|
def __call__(self):
|
|
try:
|
|
return self.registry.value
|
|
except AttributeError:
|
|
val = self.registry.value = self.createfunc()
|
|
return val
|
|
|
|
def has(self):
|
|
return hasattr(self.registry, "value")
|
|
|
|
def set(self, obj):
|
|
self.registry.value = obj
|
|
|
|
def clear(self):
|
|
try:
|
|
del self.registry.value
|
|
except AttributeError:
|
|
pass
|
|
|
|
def _iter_id(iterable):
|
|
"""Generator: ((id(o), o) for o in iterable)."""
|
|
|
|
for item in iterable:
|
|
yield id(item), item
|
|
|
|
|