710 lines
23 KiB
Python
710 lines
23 KiB
Python
# Protocol Buffers - Google's data interchange format
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# Copyright 2008 Google Inc. All rights reserved.
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# https://developers.google.com/protocol-buffers/
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#
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# Redistribution and use in source and binary forms, with or without
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# modification, are permitted provided that the following conditions are
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# met:
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#
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# * Redistributions of source code must retain the above copyright
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# notice, this list of conditions and the following disclaimer.
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# * Redistributions in binary form must reproduce the above
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# copyright notice, this list of conditions and the following disclaimer
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# in the documentation and/or other materials provided with the
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# distribution.
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# * Neither the name of Google Inc. nor the names of its
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# contributors may be used to endorse or promote products derived from
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# this software without specific prior written permission.
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#
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# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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# "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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# LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
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# A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
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# OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
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# SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
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# LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
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# DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
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# THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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# (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
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# OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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"""Contains container classes to represent different protocol buffer types.
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This file defines container classes which represent categories of protocol
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buffer field types which need extra maintenance. Currently these categories
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are:
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- Repeated scalar fields - These are all repeated fields which aren't
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composite (e.g. they are of simple types like int32, string, etc).
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- Repeated composite fields - Repeated fields which are composite. This
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includes groups and nested messages.
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"""
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import collections.abc
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import copy
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import pickle
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from typing import (
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Any,
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Iterable,
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Iterator,
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List,
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MutableMapping,
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MutableSequence,
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NoReturn,
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Optional,
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Sequence,
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TypeVar,
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Union,
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overload,
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)
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_T = TypeVar('_T')
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_K = TypeVar('_K')
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_V = TypeVar('_V')
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class BaseContainer(Sequence[_T]):
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"""Base container class."""
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# Minimizes memory usage and disallows assignment to other attributes.
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__slots__ = ['_message_listener', '_values']
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def __init__(self, message_listener: Any) -> None:
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"""
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Args:
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message_listener: A MessageListener implementation.
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The RepeatedScalarFieldContainer will call this object's
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Modified() method when it is modified.
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"""
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self._message_listener = message_listener
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self._values = []
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@overload
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def __getitem__(self, key: int) -> _T:
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...
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@overload
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def __getitem__(self, key: slice) -> List[_T]:
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...
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def __getitem__(self, key):
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"""Retrieves item by the specified key."""
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return self._values[key]
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def __len__(self) -> int:
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"""Returns the number of elements in the container."""
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return len(self._values)
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def __ne__(self, other: Any) -> bool:
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"""Checks if another instance isn't equal to this one."""
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# The concrete classes should define __eq__.
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return not self == other
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__hash__ = None
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def __repr__(self) -> str:
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return repr(self._values)
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def sort(self, *args, **kwargs) -> None:
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# Continue to support the old sort_function keyword argument.
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# This is expected to be a rare occurrence, so use LBYL to avoid
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# the overhead of actually catching KeyError.
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if 'sort_function' in kwargs:
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kwargs['cmp'] = kwargs.pop('sort_function')
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self._values.sort(*args, **kwargs)
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def reverse(self) -> None:
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self._values.reverse()
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# TODO(slebedev): Remove this. BaseContainer does *not* conform to
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# MutableSequence, only its subclasses do.
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collections.abc.MutableSequence.register(BaseContainer)
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class RepeatedScalarFieldContainer(BaseContainer[_T], MutableSequence[_T]):
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"""Simple, type-checked, list-like container for holding repeated scalars."""
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# Disallows assignment to other attributes.
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__slots__ = ['_type_checker']
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def __init__(
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self,
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message_listener: Any,
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type_checker: Any,
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) -> None:
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"""Args:
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message_listener: A MessageListener implementation. The
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RepeatedScalarFieldContainer will call this object's Modified() method
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when it is modified.
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type_checker: A type_checkers.ValueChecker instance to run on elements
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inserted into this container.
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"""
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super().__init__(message_listener)
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self._type_checker = type_checker
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def append(self, value: _T) -> None:
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"""Appends an item to the list. Similar to list.append()."""
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self._values.append(self._type_checker.CheckValue(value))
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if not self._message_listener.dirty:
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self._message_listener.Modified()
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def insert(self, key: int, value: _T) -> None:
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"""Inserts the item at the specified position. Similar to list.insert()."""
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self._values.insert(key, self._type_checker.CheckValue(value))
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if not self._message_listener.dirty:
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self._message_listener.Modified()
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def extend(self, elem_seq: Iterable[_T]) -> None:
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"""Extends by appending the given iterable. Similar to list.extend()."""
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if elem_seq is None:
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return
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try:
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elem_seq_iter = iter(elem_seq)
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except TypeError:
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if not elem_seq:
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# silently ignore falsy inputs :-/.
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# TODO(ptucker): Deprecate this behavior. b/18413862
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return
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raise
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new_values = [self._type_checker.CheckValue(elem) for elem in elem_seq_iter]
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if new_values:
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self._values.extend(new_values)
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self._message_listener.Modified()
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def MergeFrom(
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self,
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other: Union['RepeatedScalarFieldContainer[_T]', Iterable[_T]],
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) -> None:
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"""Appends the contents of another repeated field of the same type to this
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one. We do not check the types of the individual fields.
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"""
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self._values.extend(other)
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self._message_listener.Modified()
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def remove(self, elem: _T):
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"""Removes an item from the list. Similar to list.remove()."""
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self._values.remove(elem)
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self._message_listener.Modified()
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def pop(self, key: Optional[int] = -1) -> _T:
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"""Removes and returns an item at a given index. Similar to list.pop()."""
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value = self._values[key]
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self.__delitem__(key)
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return value
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@overload
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def __setitem__(self, key: int, value: _T) -> None:
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...
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@overload
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def __setitem__(self, key: slice, value: Iterable[_T]) -> None:
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...
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def __setitem__(self, key, value) -> None:
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"""Sets the item on the specified position."""
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if isinstance(key, slice):
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if key.step is not None:
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raise ValueError('Extended slices not supported')
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self._values[key] = map(self._type_checker.CheckValue, value)
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self._message_listener.Modified()
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else:
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self._values[key] = self._type_checker.CheckValue(value)
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self._message_listener.Modified()
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def __delitem__(self, key: Union[int, slice]) -> None:
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"""Deletes the item at the specified position."""
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del self._values[key]
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self._message_listener.Modified()
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def __eq__(self, other: Any) -> bool:
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"""Compares the current instance with another one."""
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if self is other:
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return True
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# Special case for the same type which should be common and fast.
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if isinstance(other, self.__class__):
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return other._values == self._values
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# We are presumably comparing against some other sequence type.
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return other == self._values
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def __deepcopy__(
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self,
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unused_memo: Any = None,
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) -> 'RepeatedScalarFieldContainer[_T]':
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clone = RepeatedScalarFieldContainer(
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copy.deepcopy(self._message_listener), self._type_checker)
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clone.MergeFrom(self)
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return clone
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def __reduce__(self, **kwargs) -> NoReturn:
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raise pickle.PickleError(
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"Can't pickle repeated scalar fields, convert to list first")
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# TODO(slebedev): Constrain T to be a subtype of Message.
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class RepeatedCompositeFieldContainer(BaseContainer[_T], MutableSequence[_T]):
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"""Simple, list-like container for holding repeated composite fields."""
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# Disallows assignment to other attributes.
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__slots__ = ['_message_descriptor']
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def __init__(self, message_listener: Any, message_descriptor: Any) -> None:
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"""
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Note that we pass in a descriptor instead of the generated directly,
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since at the time we construct a _RepeatedCompositeFieldContainer we
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haven't yet necessarily initialized the type that will be contained in the
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container.
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Args:
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message_listener: A MessageListener implementation.
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The RepeatedCompositeFieldContainer will call this object's
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Modified() method when it is modified.
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message_descriptor: A Descriptor instance describing the protocol type
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that should be present in this container. We'll use the
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_concrete_class field of this descriptor when the client calls add().
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"""
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super().__init__(message_listener)
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self._message_descriptor = message_descriptor
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def add(self, **kwargs: Any) -> _T:
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"""Adds a new element at the end of the list and returns it. Keyword
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arguments may be used to initialize the element.
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"""
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new_element = self._message_descriptor._concrete_class(**kwargs)
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new_element._SetListener(self._message_listener)
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self._values.append(new_element)
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if not self._message_listener.dirty:
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self._message_listener.Modified()
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return new_element
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def append(self, value: _T) -> None:
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"""Appends one element by copying the message."""
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new_element = self._message_descriptor._concrete_class()
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new_element._SetListener(self._message_listener)
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new_element.CopyFrom(value)
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self._values.append(new_element)
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if not self._message_listener.dirty:
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self._message_listener.Modified()
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def insert(self, key: int, value: _T) -> None:
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"""Inserts the item at the specified position by copying."""
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new_element = self._message_descriptor._concrete_class()
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new_element._SetListener(self._message_listener)
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new_element.CopyFrom(value)
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self._values.insert(key, new_element)
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if not self._message_listener.dirty:
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self._message_listener.Modified()
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def extend(self, elem_seq: Iterable[_T]) -> None:
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"""Extends by appending the given sequence of elements of the same type
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as this one, copying each individual message.
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"""
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message_class = self._message_descriptor._concrete_class
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listener = self._message_listener
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values = self._values
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for message in elem_seq:
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new_element = message_class()
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new_element._SetListener(listener)
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new_element.MergeFrom(message)
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values.append(new_element)
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listener.Modified()
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def MergeFrom(
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self,
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other: Union['RepeatedCompositeFieldContainer[_T]', Iterable[_T]],
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) -> None:
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"""Appends the contents of another repeated field of the same type to this
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one, copying each individual message.
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"""
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self.extend(other)
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def remove(self, elem: _T) -> None:
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"""Removes an item from the list. Similar to list.remove()."""
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self._values.remove(elem)
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self._message_listener.Modified()
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def pop(self, key: Optional[int] = -1) -> _T:
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"""Removes and returns an item at a given index. Similar to list.pop()."""
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value = self._values[key]
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self.__delitem__(key)
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return value
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@overload
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def __setitem__(self, key: int, value: _T) -> None:
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...
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@overload
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def __setitem__(self, key: slice, value: Iterable[_T]) -> None:
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...
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def __setitem__(self, key, value):
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# This method is implemented to make RepeatedCompositeFieldContainer
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# structurally compatible with typing.MutableSequence. It is
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# otherwise unsupported and will always raise an error.
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raise TypeError(
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f'{self.__class__.__name__} object does not support item assignment')
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def __delitem__(self, key: Union[int, slice]) -> None:
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"""Deletes the item at the specified position."""
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del self._values[key]
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self._message_listener.Modified()
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def __eq__(self, other: Any) -> bool:
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"""Compares the current instance with another one."""
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if self is other:
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return True
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if not isinstance(other, self.__class__):
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raise TypeError('Can only compare repeated composite fields against '
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'other repeated composite fields.')
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return self._values == other._values
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class ScalarMap(MutableMapping[_K, _V]):
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"""Simple, type-checked, dict-like container for holding repeated scalars."""
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# Disallows assignment to other attributes.
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__slots__ = ['_key_checker', '_value_checker', '_values', '_message_listener',
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'_entry_descriptor']
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def __init__(
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self,
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message_listener: Any,
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key_checker: Any,
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value_checker: Any,
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entry_descriptor: Any,
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) -> None:
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"""
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Args:
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message_listener: A MessageListener implementation.
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The ScalarMap will call this object's Modified() method when it
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is modified.
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key_checker: A type_checkers.ValueChecker instance to run on keys
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inserted into this container.
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value_checker: A type_checkers.ValueChecker instance to run on values
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inserted into this container.
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entry_descriptor: The MessageDescriptor of a map entry: key and value.
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"""
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self._message_listener = message_listener
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self._key_checker = key_checker
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self._value_checker = value_checker
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self._entry_descriptor = entry_descriptor
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self._values = {}
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def __getitem__(self, key: _K) -> _V:
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try:
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return self._values[key]
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except KeyError:
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key = self._key_checker.CheckValue(key)
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val = self._value_checker.DefaultValue()
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self._values[key] = val
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return val
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def __contains__(self, item: _K) -> bool:
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# We check the key's type to match the strong-typing flavor of the API.
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# Also this makes it easier to match the behavior of the C++ implementation.
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self._key_checker.CheckValue(item)
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return item in self._values
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@overload
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def get(self, key: _K) -> Optional[_V]:
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...
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@overload
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def get(self, key: _K, default: _T) -> Union[_V, _T]:
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...
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# We need to override this explicitly, because our defaultdict-like behavior
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# will make the default implementation (from our base class) always insert
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# the key.
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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 __setitem__(self, key: _K, value: _V) -> _T:
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checked_key = self._key_checker.CheckValue(key)
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checked_value = self._value_checker.CheckValue(value)
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self._values[checked_key] = checked_value
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self._message_listener.Modified()
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def __delitem__(self, key: _K) -> None:
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del self._values[key]
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self._message_listener.Modified()
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def __len__(self) -> int:
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return len(self._values)
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def __iter__(self) -> Iterator[_K]:
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return iter(self._values)
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def __repr__(self) -> str:
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return repr(self._values)
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def MergeFrom(self, other: 'ScalarMap[_K, _V]') -> None:
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self._values.update(other._values)
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self._message_listener.Modified()
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def InvalidateIterators(self) -> None:
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# It appears that the only way to reliably invalidate iterators to
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# self._values is to ensure that its size changes.
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original = self._values
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self._values = original.copy()
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original[None] = None
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# This is defined in the abstract base, but we can do it much more cheaply.
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def clear(self) -> None:
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self._values.clear()
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self._message_listener.Modified()
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def GetEntryClass(self) -> Any:
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return self._entry_descriptor._concrete_class
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class MessageMap(MutableMapping[_K, _V]):
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"""Simple, type-checked, dict-like container for with submessage values."""
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# Disallows assignment to other attributes.
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__slots__ = ['_key_checker', '_values', '_message_listener',
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'_message_descriptor', '_entry_descriptor']
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def __init__(
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self,
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message_listener: Any,
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message_descriptor: Any,
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key_checker: Any,
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entry_descriptor: Any,
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) -> None:
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"""
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Args:
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message_listener: A MessageListener implementation.
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The ScalarMap will call this object's Modified() method when it
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is modified.
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key_checker: A type_checkers.ValueChecker instance to run on keys
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inserted into this container.
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value_checker: A type_checkers.ValueChecker instance to run on values
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inserted into this container.
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entry_descriptor: The MessageDescriptor of a map entry: key and value.
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"""
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self._message_listener = message_listener
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self._message_descriptor = message_descriptor
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self._key_checker = key_checker
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self._entry_descriptor = entry_descriptor
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self._values = {}
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def __getitem__(self, key: _K) -> _V:
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key = self._key_checker.CheckValue(key)
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try:
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return self._values[key]
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except KeyError:
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new_element = self._message_descriptor._concrete_class()
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new_element._SetListener(self._message_listener)
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self._values[key] = new_element
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self._message_listener.Modified()
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return new_element
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def get_or_create(self, key: _K) -> _V:
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"""get_or_create() is an alias for getitem (ie. map[key]).
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Args:
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key: The key to get or create in the map.
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This is useful in cases where you want to be explicit that the call is
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mutating the map. This can avoid lint errors for statements like this
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that otherwise would appear to be pointless statements:
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msg.my_map[key]
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"""
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return self[key]
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@overload
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def get(self, key: _K) -> Optional[_V]:
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...
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@overload
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def get(self, key: _K, default: _T) -> Union[_V, _T]:
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...
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# We need to override this explicitly, because our defaultdict-like behavior
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# will make the default implementation (from our base class) always insert
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# the key.
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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 __contains__(self, item: _K) -> bool:
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item = self._key_checker.CheckValue(item)
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return item in self._values
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def __setitem__(self, key: _K, value: _V) -> NoReturn:
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raise ValueError('May not set values directly, call my_map[key].foo = 5')
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def __delitem__(self, key: _K) -> None:
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key = self._key_checker.CheckValue(key)
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del self._values[key]
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self._message_listener.Modified()
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def __len__(self) -> int:
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return len(self._values)
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def __iter__(self) -> Iterator[_K]:
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return iter(self._values)
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def __repr__(self) -> str:
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return repr(self._values)
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def MergeFrom(self, other: 'MessageMap[_K, _V]') -> None:
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# pylint: disable=protected-access
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for key in other._values:
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# According to documentation: "When parsing from the wire or when merging,
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# if there are duplicate map keys the last key seen is used".
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if key in self:
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del self[key]
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self[key].CopyFrom(other[key])
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# self._message_listener.Modified() not required here, because
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# mutations to submessages already propagate.
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def InvalidateIterators(self) -> None:
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# It appears that the only way to reliably invalidate iterators to
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# self._values is to ensure that its size changes.
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original = self._values
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self._values = original.copy()
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original[None] = None
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# This is defined in the abstract base, but we can do it much more cheaply.
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def clear(self) -> None:
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self._values.clear()
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self._message_listener.Modified()
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def GetEntryClass(self) -> Any:
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return self._entry_descriptor._concrete_class
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class _UnknownField:
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"""A parsed unknown field."""
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# Disallows assignment to other attributes.
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__slots__ = ['_field_number', '_wire_type', '_data']
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def __init__(self, field_number, wire_type, data):
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self._field_number = field_number
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self._wire_type = wire_type
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self._data = data
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return
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def __lt__(self, other):
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# pylint: disable=protected-access
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return self._field_number < other._field_number
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def __eq__(self, other):
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if self is other:
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return True
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# pylint: disable=protected-access
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return (self._field_number == other._field_number and
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self._wire_type == other._wire_type and
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self._data == other._data)
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class UnknownFieldRef: # pylint: disable=missing-class-docstring
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def __init__(self, parent, index):
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self._parent = parent
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self._index = index
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def _check_valid(self):
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if not self._parent:
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raise ValueError('UnknownField does not exist. '
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'The parent message might be cleared.')
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if self._index >= len(self._parent):
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raise ValueError('UnknownField does not exist. '
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'The parent message might be cleared.')
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@property
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def field_number(self):
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self._check_valid()
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# pylint: disable=protected-access
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return self._parent._internal_get(self._index)._field_number
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@property
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def wire_type(self):
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self._check_valid()
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# pylint: disable=protected-access
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return self._parent._internal_get(self._index)._wire_type
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@property
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def data(self):
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self._check_valid()
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# pylint: disable=protected-access
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return self._parent._internal_get(self._index)._data
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class UnknownFieldSet:
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"""UnknownField container"""
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# Disallows assignment to other attributes.
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__slots__ = ['_values']
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def __init__(self):
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self._values = []
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def __getitem__(self, index):
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if self._values is None:
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raise ValueError('UnknownFields does not exist. '
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'The parent message might be cleared.')
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size = len(self._values)
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if index < 0:
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index += size
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if index < 0 or index >= size:
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raise IndexError('index %d out of range'.index)
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return UnknownFieldRef(self, index)
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def _internal_get(self, index):
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return self._values[index]
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def __len__(self):
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if self._values is None:
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raise ValueError('UnknownFields does not exist. '
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'The parent message might be cleared.')
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return len(self._values)
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def _add(self, field_number, wire_type, data):
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unknown_field = _UnknownField(field_number, wire_type, data)
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self._values.append(unknown_field)
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return unknown_field
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def __iter__(self):
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for i in range(len(self)):
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yield UnknownFieldRef(self, i)
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def _extend(self, other):
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if other is None:
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return
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# pylint: disable=protected-access
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self._values.extend(other._values)
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def __eq__(self, other):
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if self is other:
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return True
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# Sort unknown fields because their order shouldn't
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# affect equality test.
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values = list(self._values)
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if other is None:
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return not values
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values.sort()
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# pylint: disable=protected-access
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other_values = sorted(other._values)
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return values == other_values
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def _clear(self):
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for value in self._values:
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# pylint: disable=protected-access
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if isinstance(value._data, UnknownFieldSet):
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value._data._clear() # pylint: disable=protected-access
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self._values = None
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